chore(game-server): merge main (emulator fixes: contracts, shop, fortuna, friends, admin, presence) #16

Merged
neckfire merged 35 commits from main into game-server 2026-07-16 08:25:21 +00:00
18 changed files with 889 additions and 61 deletions
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using System.Diagnostics;
using System.Security.Cryptography.X509Certificates;
using System.Text;
using System.Text.Json;
namespace Prospect.Client.Config;
// Cross-platform (Linux/Proton + Windows) helper to point a The Cycle: Frontier client at a
// server. The Prospect agent reads the target PlayFab URL from `backend.txt` next to the game
// executable, so switching servers = writing that one file. This tool also imports the server
// certificate and launches the game (natively on Windows, guided on Linux/Proton).
internal static class Program
{
private const string AppId = "868270";
// Presets use the public domains so the same target works for everyone (LAN or internet):
// DNS resolves to the public IP for friends, and the unified TLS cert covers both hostnames.
// On the same LAN, add a hosts entry (domain -> 192.168.1.136) to avoid hairpin NAT.
private static readonly (string Key, string Label, string Url)[] Presets =
{
("prod", "PROD", "https://tc.nfteam.ovh:8443"),
("preprod", "PREPROD", "https://rd-tc.nfteam.ovh:8444"),
};
private static string SettingsPath => Path.Combine(
Environment.GetFolderPath(Environment.SpecialFolder.ApplicationData),
"ProspectSwitcher", "settings.json");
private static Settings _settings = new();
private static int Main(string[] args)
{
try { Console.OutputEncoding = Encoding.UTF8; } catch { /* some terminals reject it */ }
LoadSettings();
return args.Length > 0 ? RunCli(args) : MenuLoop();
}
// ---- Scriptable CLI ----------------------------------------------------
private static int RunCli(string[] args)
{
string? folder = null, target = null;
for (var i = 0; i < args.Length; i++)
{
switch (args[i])
{
case "--folder" when i + 1 < args.Length: folder = args[++i]; break;
case "--set" when i + 1 < args.Length: target = args[++i]; break;
case "-h" or "--help": PrintCliHelp(); return 0;
}
}
if (folder != null) { _settings.GameFolder = folder; SaveSettings(); }
if (target == null) { PrintCliHelp(); return folder != null ? 0 : 1; }
var url = ResolveTarget(target);
if (url == null) { Console.Error.WriteLine("Cible inconnue : " + target); return 1; }
return WriteBackend(url) ? 0 : 1;
}
private static void PrintCliHelp()
{
Console.WriteLine("ProspectServerSwitcher — sélecteur de serveur The Cycle (multi-OS)");
Console.WriteLine();
Console.WriteLine(" (sans argument) menu interactif");
Console.WriteLine(" --folder <chemin Win64> définit le dossier du jeu (mémorisé)");
Console.WriteLine(" --set <cible> écrit backend.txt");
Console.WriteLine();
Console.WriteLine("Cibles : " + string.Join(", ", Presets.Select(p => p.Key)) + ", ou une URL https://…");
Console.WriteLine("Ex : ProspectServerSwitcher --folder \"…/Prospect/Binaries/Win64\" --set preprod-lan");
}
private static string? ResolveTarget(string t)
{
foreach (var p in Presets)
if (string.Equals(p.Key, t, StringComparison.OrdinalIgnoreCase)) return p.Url;
if (t.StartsWith("http", StringComparison.OrdinalIgnoreCase)) return t;
return null;
}
// ---- Interactive menu --------------------------------------------------
private static int MenuLoop()
{
while (true)
{
Console.WriteLine();
Console.WriteLine("=== The Cycle — Sélecteur de serveur ===");
Console.WriteLine("Dossier du jeu : " + (string.IsNullOrEmpty(_settings.GameFolder) ? "(non défini)" : _settings.GameFolder));
Console.WriteLine("backend.txt : " + ReadCurrentBackend());
Console.WriteLine();
Console.WriteLine(" 1) Définir le dossier du jeu (Win64)");
for (var i = 0; i < Presets.Length; i++)
Console.WriteLine($" {i + 2}) {Presets[i].Label,-24} {Presets[i].Url}");
var n = Presets.Length + 2;
Console.WriteLine($" {n}) Serveur personnalisé…");
Console.WriteLine($" {n + 1}) Importer un certificat…");
Console.WriteLine($" {n + 2}) Lancer le jeu");
Console.WriteLine(" 0) Quitter");
Console.Write("> ");
var raw = Console.ReadLine()?.Trim();
if (raw is null or "0") return 0;
if (!int.TryParse(raw, out var choice)) { Console.WriteLine("Choix invalide."); continue; }
if (choice == 1) SetFolder();
else if (choice >= 2 && choice < n) WriteBackend(Presets[choice - 2].Url);
else if (choice == n) SetCustom();
else if (choice == n + 1) ImportCert();
else if (choice == n + 2) LaunchGame();
else Console.WriteLine("Choix invalide.");
}
}
private static void SetFolder()
{
Console.Write("Chemin du dossier Win64 : ");
var p = Console.ReadLine()?.Trim().Trim('"');
if (string.IsNullOrEmpty(p)) return;
if (!Directory.Exists(p)) { Console.WriteLine("⚠ Dossier introuvable."); return; }
_settings.GameFolder = p;
SaveSettings();
Console.WriteLine("✔ Dossier mémorisé.");
}
private static void SetCustom()
{
Console.Write("URL du serveur (ex : https://mon-serveur:8443) : ");
var u = Console.ReadLine()?.Trim();
if (!string.IsNullOrWhiteSpace(u)) WriteBackend(u);
}
// ---- backend.txt -------------------------------------------------------
private static bool WriteBackend(string url)
{
if (!EnsureFolder(out var dir)) return false;
try
{
// No trailing newline: the agent reads the raw file and requires it to start with https://.
File.WriteAllText(Path.Combine(dir, "backend.txt"), url, new UTF8Encoding(false));
Console.WriteLine($"✔ backend.txt → {url}");
Console.WriteLine(" (relance le jeu : backend.txt n'est lu qu'au démarrage du loader.)");
return true;
}
catch (Exception ex) { Console.WriteLine("✖ " + ex.Message); return false; }
}
private static string ReadCurrentBackend()
{
if (string.IsNullOrEmpty(_settings.GameFolder)) return "(dossier non défini)";
var f = Path.Combine(_settings.GameFolder, "backend.txt");
try
{
if (!File.Exists(f)) return "(absent)";
var v = File.ReadAllText(f).Trim();
var match = Presets.FirstOrDefault(p => p.Url == v);
return match.Key != null ? $"{v} [{match.Label.Trim()}]" : v;
}
catch { return "(illisible)"; }
}
// ---- Certificate -------------------------------------------------------
private static void ImportCert()
{
// Prefer fetching the cert live from the server the client points at (backend.txt), so
// it's always the current one; fall back to a .crt file.
X509Certificate2? cert = null;
var target = ReadBackendUrl();
if (target != null && TryFetchServerCert(target, out cert))
Console.WriteLine($"Certificat récupéré depuis {target}");
else
{
Console.Write("Chemin d'un certificat (.crt) : ");
var p = Console.ReadLine()?.Trim().Trim('"');
if (string.IsNullOrEmpty(p) || !File.Exists(p)) { Console.WriteLine("⚠ Annulé."); return; }
try { cert = new X509Certificate2(p); } catch (Exception ex) { Console.WriteLine("✖ " + ex.Message); return; }
}
if (cert == null) { Console.WriteLine("⚠ Aucun certificat."); return; }
Console.WriteLine($" empreinte : {cert.Thumbprint}");
if (OperatingSystem.IsWindows()) ImportCertWindows(cert);
else ImportCertProton(cert);
}
private static string? ReadBackendUrl()
{
if (string.IsNullOrEmpty(_settings.GameFolder)) return null;
var f = Path.Combine(_settings.GameFolder, "backend.txt");
try { return File.Exists(f) ? File.ReadAllText(f).Trim() : null; } catch { return null; }
}
private static bool TryFetchServerCert(string url, out X509Certificate2? cert)
{
cert = null;
try
{
var uri = new Uri(url);
using var tcp = new System.Net.Sockets.TcpClient();
tcp.Connect(uri.Host, uri.Port <= 0 ? 443 : uri.Port);
X509Certificate2? captured = null;
using var ssl = new System.Net.Security.SslStream(tcp.GetStream(), false,
(_, c, _, _) => { if (c != null) captured = new X509Certificate2(c.Export(X509ContentType.Cert)); return true; });
ssl.AuthenticateAsClient(uri.Host);
cert = captured;
return cert != null;
}
catch { return false; }
}
[System.Runtime.Versioning.SupportedOSPlatform("windows")]
private static void ImportCertWindows(X509Certificate2 cert)
{
try
{
using var store = new X509Store(StoreName.Root, StoreLocation.CurrentUser);
store.Open(OpenFlags.ReadWrite);
store.Add(cert);
Console.WriteLine("✔ Certificat importé (Autorités racines de confiance, utilisateur).");
}
catch (Exception ex) { Console.WriteLine("✖ Import : " + ex.Message); }
}
// Trust the cert inside the game's Proton/Wine prefix by writing the serialized cert blob
// into the prefix Root store via `wine reg import` (the wine `certutil` tool is unreliable
// under Proton). The prefix is chosen explicitly, so it works even though the client runs
// as a non-Steam shortcut (whose appid isn't the game's 868270).
private static void ImportCertProton(X509Certificate2 cert)
{
var wine = FindProtonWine();
if (wine == null) { Console.WriteLine("⚠ Aucun wine Proton trouvé (Steam/Proton installé ?)."); return; }
var prefix = SelectPrefix();
if (prefix == null) return;
// Wine serialized cert blob: SHA1-hash property (id 3) + encoded cert property (id 0x20).
var der = cert.RawData;
var sha1 = cert.GetCertHash();
byte[] blob;
using (var ms = new MemoryStream())
{
void Prop(uint id, byte[] data)
{
ms.Write(BitConverter.GetBytes(id));
ms.Write(BitConverter.GetBytes(1u));
ms.Write(BitConverter.GetBytes((uint)data.Length));
ms.Write(data);
}
Prop(3, sha1);
Prop(0x20, der);
blob = ms.ToArray();
}
var thumb = Convert.ToHexString(sha1);
var hex = string.Join(",", blob.Select(b => b.ToString("x2")));
var regFile = Path.Combine(Path.GetTempPath(), "prospect-cert.reg");
File.WriteAllText(regFile,
"REGEDIT4\r\n\r\n" +
$"[HKEY_LOCAL_MACHINE\\Software\\Microsoft\\SystemCertificates\\Root\\Certificates\\{thumb}]\r\n" +
$"\"Blob\"=hex:{hex}\r\n");
Console.WriteLine("⚠ Ferme complètement le jeu avant de continuer (sinon le registre ne sera pas pris en compte).");
Console.Write("Appuie sur Entrée pour importer… ");
Console.ReadLine();
var wineserver = Path.Combine(Path.GetDirectoryName(wine)!, "wineserver");
var regWinePath = "Z:" + regFile.Replace('/', '\\'); // Z: maps to / inside the prefix
RunWine(wineserver, "-k", prefix); // stop any running wineserver (flush)
RunWine(wine, $"reg import \"{regWinePath}\"", prefix);
RunWine(wineserver, "-k", prefix); // flush the change to disk
var sysreg = Path.Combine(prefix, "system.reg");
var ok = File.Exists(sysreg) && File.ReadAllText(sysreg).Contains(thumb, StringComparison.OrdinalIgnoreCase);
Console.WriteLine(ok
? $"✔ Certificat importé dans le préfixe : {prefix}\n Relance le jeu."
: "✖ Import non confirmé — assure-toi que le jeu est fermé et réessaie.");
}
private static void RunWine(string exe, string args, string prefix)
{
try
{
var psi = new ProcessStartInfo(exe, args)
{
UseShellExecute = false,
RedirectStandardOutput = true,
RedirectStandardError = true,
};
psi.Environment["WINEPREFIX"] = prefix;
psi.Environment["WINEDEBUG"] = "-all";
using var p = Process.Start(psi);
p?.WaitForExit(20000);
}
catch (Exception ex) { Console.WriteLine(" (wine) " + ex.Message); }
}
private static string? FindProtonWine()
{
foreach (var root in SteamRoots())
{
var common = Path.Combine(root, "steamapps", "common");
if (!Directory.Exists(common)) continue;
var candidates = Directory.GetDirectories(common, "Proton*")
.Select(d => Path.Combine(d, "files", "bin", "wine"))
.Where(File.Exists)
.OrderByDescending(w => w.Contains("Experimental"))
.ThenByDescending(File.GetLastWriteTimeUtc)
.ToList();
if (candidates.Count > 0) return candidates[0];
}
return null;
}
private static string? SelectPrefix()
{
if (!string.IsNullOrEmpty(_settings.WinePrefix) && Directory.Exists(_settings.WinePrefix))
return _settings.WinePrefix;
var prefixes = new List<string>();
foreach (var root in SteamRoots())
{
var cd = Path.Combine(root, "steamapps", "compatdata");
if (!Directory.Exists(cd)) continue;
foreach (var d in Directory.GetDirectories(cd))
{
var pfx = Path.Combine(d, "pfx");
if (File.Exists(Path.Combine(pfx, "system.reg"))) prefixes.Add(Path.GetFullPath(pfx));
}
}
prefixes = prefixes.Distinct()
.OrderByDescending(p => File.GetLastWriteTimeUtc(Path.Combine(p, "system.reg")))
.ToList();
if (prefixes.Count == 0) { Console.WriteLine("⚠ Aucun préfixe Proton trouvé."); return null; }
Console.WriteLine("Préfixes Proton détectés (le plus récemment utilisé en premier = sûrement ton jeu) :");
for (var i = 0; i < prefixes.Count; i++)
Console.WriteLine($" {i + 1}) {prefixes[i]}");
Console.Write("Numéro du préfixe (Entrée = 1) : ");
var raw = Console.ReadLine()?.Trim();
var idx = string.IsNullOrEmpty(raw) ? 0 : (int.TryParse(raw, out var n) ? n - 1 : -1);
if (idx < 0 || idx >= prefixes.Count) { Console.WriteLine("⚠ Choix invalide."); return null; }
_settings.WinePrefix = prefixes[idx];
SaveSettings();
return _settings.WinePrefix;
}
private static IEnumerable<string> SteamRoots()
{
var home = Environment.GetFolderPath(Environment.SpecialFolder.UserProfile);
yield return Path.Combine(home, ".steam", "steam");
yield return Path.Combine(home, ".local", "share", "Steam");
}
// ---- Launch ------------------------------------------------------------
private static void LaunchGame()
{
if (OperatingSystem.IsWindows())
{
if (!EnsureFolder(out var dir)) return;
var loader = Path.Combine(dir, "Prospect.Client.Loader.exe");
if (!File.Exists(loader)) { Console.WriteLine("⚠ Prospect.Client.Loader.exe introuvable dans le dossier."); return; }
try
{
Process.Start(new ProcessStartInfo(loader) { WorkingDirectory = dir, UseShellExecute = true });
Console.WriteLine("▶ Jeu lancé.");
}
catch (Exception ex) { Console.WriteLine("✖ " + ex.Message); }
return;
}
Console.WriteLine("Sous Linux/Proton, lance via Steam (le loader doit tourner dans le préfixe Proton) :");
Console.WriteLine(" steam steam://rungameid/" + AppId);
}
// ---- Helpers -----------------------------------------------------------
private static bool EnsureFolder(out string dir)
{
dir = _settings.GameFolder;
if (string.IsNullOrEmpty(dir) || !Directory.Exists(dir))
{
Console.WriteLine("⚠ Définis d'abord le dossier du jeu (option 1).");
return false;
}
return true;
}
private static void LoadSettings()
{
try
{
if (File.Exists(SettingsPath))
_settings = JsonSerializer.Deserialize<Settings>(File.ReadAllText(SettingsPath)) ?? new Settings();
}
catch { _settings = new Settings(); }
}
private static void SaveSettings()
{
try
{
Directory.CreateDirectory(Path.GetDirectoryName(SettingsPath)!);
File.WriteAllText(SettingsPath, JsonSerializer.Serialize(_settings));
}
catch { /* best-effort persistence */ }
}
private sealed class Settings
{
public string GameFolder { get; set; } = "";
public string WinePrefix { get; set; } = "";
}
}
@@ -0,0 +1,15 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<OutputType>Exe</OutputType>
<TargetFramework>net8.0</TargetFramework>
<ImplicitUsings>enable</ImplicitUsings>
<Nullable>enable</Nullable>
<AssemblyName>ProspectServerSwitcher</AssemblyName>
<RootNamespace>Prospect.Client.Config</RootNamespace>
<InvariantGlobalization>true</InvariantGlobalization>
<!-- Cross-platform client tool (Linux/Proton + Windows). Never built by the Linux server CI. -->
<Configurations>Debug;Release;Season 3 Release;Season 2 Release;Season 2 Debug;Season 3 Debug</Configurations>
</PropertyGroup>
</Project>
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# ProspectServerSwitcher
Petit utilitaire **multi-OS** (Linux/Proton + Windows) pour pointer un client
*The Cycle: Frontier* vers un serveur, importer le certificat, et lancer le jeu.
## Pourquoi
L'agent Prospect (`Prospect.Agent.dll`, injecté par `Prospect.Client.Loader.exe`)
hooke l'URL de l'API PlayFab et la remplace par le contenu de **`backend.txt`**,
placé à côté de l'exécutable du jeu (`Prospect/Binaries/Win64`). S'il est absent,
l'agent retombe sur `https://127.0.0.1:8443`.
**Tout l'aiguillage du client tient donc dans cette seule valeur.** Cet outil ne fait
essentiellement qu'écrire le bon `backend.txt` — plus quelques commodités (cert, launch).
## Serveurs (presets)
Les presets utilisent les **domaines publics** pour que la même cible marche pour
tout le monde (le DNS résout vers l'IP publique pour les amis, et le certificat TLS
unifié couvre les deux hostnames) :
| Preset | URL |
|-----------|----------------------------------|
| `prod` | `https://tc.nfteam.ovh:8443` |
| `preprod` | `https://rd-tc.nfteam.ovh:8444` |
> **Sur le même LAN que le serveur**, ajoute une entrée hosts pour éviter le hairpin NAT :
> ```
> 192.168.1.136 tc.nfteam.ovh
> 192.168.1.136 rd-tc.nfteam.ovh
> ```
## Utilisation
### Menu interactif
Lance le binaire sans argument :
- **1** : définir le dossier du jeu (`…/Prospect/Binaries/Win64`) — mémorisé
- **2/3** : basculer sur PROD / PREPROD
- **4** : URL personnalisée
- **5** : importer un certificat (`.crt`)
- **6** : lancer le jeu
- **0** : quitter
### En ligne de commande (scriptable)
```
ProspectServerSwitcher --folder "<...>/Prospect/Binaries/Win64" --set preprod
ProspectServerSwitcher --set prod
ProspectServerSwitcher --set https://mon-serveur:8443 # URL libre
```
> ⚠️ `backend.txt` n'est lu qu'**au démarrage** du loader → relance le jeu après un switch.
> Le serveur ciblé doit **tourner** (conteneurs on-demand `the-cycle-api` / `the-cycle-api-rd`).
## Certificat
L'outil récupère le certificat **en direct depuis le serveur** ciblé (il lit `backend.txt`
et se connecte en TLS), puis le rend fiable :
- **Windows** : import automatique dans *Autorités de certification racines de confiance*
(utilisateur courant), via le magasin `X509Store`.
- **Linux/Proton** : import **automatique dans le préfixe Wine** du jeu. Comme `wine certutil`
est cassé sous Proton, l'outil écrit directement le *blob* sérialisé du certificat
(propriété SHA1 `id=3` + certificat encodé `id=0x20`) dans le magasin `Root` du préfixe via
`wine reg import`. Il :
1. détecte le binaire `wine` de Proton (`…/common/Proton*/files/bin/wine`),
2. liste les préfixes `compatdata/*/pfx` (le plus récemment utilisé en premier),
3. importe dans le préfixe choisi (⚠️ **le jeu doit être fermé**), mémorisé ensuite.
> ⚠️ Le client tourne souvent comme **raccourci non-Steam** → son préfixe n'est **pas**
> `compatdata/868270` mais un appid généré (ex. `3883998305`). D'où la sélection explicite
> du préfixe plutôt qu'une déduction sur l'appid du jeu.
## Lancement
- **Windows** : démarre `Prospect.Client.Loader.exe` depuis le dossier du jeu.
- **Linux/Proton** : passe par Steam (`steam steam://rungameid/868270`) — le loader doit
tourner dans le préfixe Proton.
## Réglages
Le dossier du jeu est mémorisé dans
`…/ApplicationData/ProspectSwitcher/settings.json`
(`%AppData%` sous Windows, `~/.config` sous Linux).
## Build / publication
Projet console **net8.0** (cross-platform, `InvariantGlobalization`), jamais buildé par
la CI serveur (Linux).
```bash
# build simple
dotnet build src/Prospect.Client.Config -c Release
# binaires autonomes single-file (aucun .NET requis chez l'utilisateur)
dotnet publish src/Prospect.Client.Config -c Release -r win-x64 --self-contained \
-p:PublishSingleFile=true -p:IncludeNativeLibrariesForSelfExtract=true -p:EnableCompressionInSingleFile=true
dotnet publish src/Prospect.Client.Config -c Release -r linux-x64 --self-contained \
-p:PublishSingleFile=true -p:EnableCompressionInSingleFile=true
```
Les binaires publiés sont distribués via la release Gitea **`friends-client`**
(`ProspectServerSwitcher.exe` pour Windows, `ProspectServerSwitcher-linux-x64` pour Linux).
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@@ -1,12 +1,31 @@
using Microsoft.AspNetCore.SignalR; using Microsoft.AspNetCore.SignalR;
namespace Prospect.Server.Api.Hubs; namespace Prospect.Server.Api.Hubs;
public class CycleHub : Hub public class CycleHub : Hub
{ {
private readonly SignalRConnectionRegistry _registry;
public CycleHub(SignalRConnectionRegistry registry)
{
_registry = registry;
}
public override async Task OnConnectedAsync() public override async Task OnConnectedAsync()
{ {
Console.WriteLine("Connected {0}", Context.ConnectionId); // The client connects with the SignalR URL returned by GetSignalRConnection, which
// carries a `uid` query param — use it to map this connection to the player so
// server-initiated messages can target a single player instead of everyone.
var uid = Context.GetHttpContext()?.Request.Query["uid"].ToString();
if (!string.IsNullOrEmpty(uid))
_registry.Add(uid, Context.ConnectionId);
Console.WriteLine("Connected {0} (uid={1})", Context.ConnectionId, uid);
await base.OnConnectedAsync(); await base.OnConnectedAsync();
} }
public override async Task OnDisconnectedAsync(Exception? exception)
{
_registry.Remove(Context.ConnectionId);
await base.OnDisconnectedAsync(exception);
}
} }
@@ -0,0 +1,29 @@
using System.Collections.Concurrent;
namespace Prospect.Server.Api.Hubs;
// Maps players to their live SignalR connection so server-initiated messages (e.g. the
// matchmaking-success "travel to match" signal) can target a single player instead of being
// broadcast to everyone. The client's SignalR URL carries a `uid` query param (added by
// GetSignalRConnection); CycleHub records it on connect.
public class SignalRConnectionRegistry
{
private readonly ConcurrentDictionary<string, string> _userToConn = new();
private readonly ConcurrentDictionary<string, string> _connToUser = new();
public void Add(string userId, string connectionId)
{
if (string.IsNullOrEmpty(userId)) return;
_userToConn[userId] = connectionId;
_connToUser[connectionId] = userId;
}
public void Remove(string connectionId)
{
if (_connToUser.TryRemove(connectionId, out var userId))
_userToConn.TryRemove(userId, out _);
}
public string? GetConnection(string userId)
=> _userToConn.TryGetValue(userId, out var c) ? c : null;
}
@@ -72,6 +72,21 @@ public enum EYContractObjectiveType {
MAX = 8 MAX = 8
} }
public static class ContractObjectiveTypeExtensions {
// Objectives that can only be observed while a raid is running (kills, dead-drops,
// visiting an area, looting a container). The raid is hosted by the player's own
// client and there is no dedicated game server, so their progress is never reported
// to the backend (UpdatePlayerActiveContracts is never called). They are therefore
// auto-credited server-side, otherwise these contracts can never be completed.
// OwnNumOfItem is excluded (validated against the real stash) and so are the meta
// objectives FactionLevel / CompletedMission (validated from persisted player data).
public static bool IsRaidRuntime(this EYContractObjectiveType type) =>
type is EYContractObjectiveType.Kills
or EYContractObjectiveType.DeadDrop
or EYContractObjectiveType.VisitArea
or EYContractObjectiveType.LootContainer;
}
public enum EYContractDifficulty public enum EYContractDifficulty
{ {
Invalid = 0, Invalid = 0,
@@ -131,16 +131,17 @@ public class ClaimActiveContract : ICloudScriptFunction<FYClaimCompletedActiveCo
break; break;
} }
} }
} else if (objective.Type == EYContractObjectiveType.Kills) { } else if (objective.Type.IsRaidRuntime()) {
// Kill objectives can't be tracked in a client-hosted raid (no dedicated // Raid-runtime objectives (kills, dead-drops, visited areas, looted
// game server reports kills). They are auto-credited on deploy // containers) can't be tracked in a client-hosted raid — no dedicated
// (EnterMatchmakingMatch); accept them here even if a contract was // game server reports them, so their progress is never saved. They are
// activated before that so kill contracts remain completable. // auto-credited on deploy (EnterMatchmakingMatch); accept them here too
// (safety net for a contract activated after deploy) so these contracts
// remain completable instead of being stuck on "Objective not met".
remaining = 0; remaining = 0;
} else { } else {
// NOTE: A game server must write the correct progress // Meta objectives (FactionLevel / CompletedMission): validated from the
// for other types of objectives. // persisted progress. The objectives are mapped by array index.
// The objectives are mapped by array index.
remaining -= targetContract.Progress[i]; remaining -= targetContract.Progress[i];
} }
if (remaining > 0) { if (remaining > 0) {
@@ -25,6 +25,24 @@ public class EnterMatchmakingFunction : ICloudScriptFunction<FYEnterMatchAzureFu
// SquadID = request.SquadId, // SquadID = request.SquadId,
//}); //});
// Dedicated-server mode (2nd preprod): if GAMESERVER_ADDRESS ("host:port") is set, hand
// the client the real game server to travel to instead of the client-hosted station.
// Same image as preprod — only this env var flips the deployment type.
var gameServer = Environment.GetEnvironmentVariable("GAMESERVER_ADDRESS");
if (!string.IsNullOrEmpty(gameServer))
{
var parts = gameServer.Split(':');
return new FYEnterMatchAzureFunctionResult
{
Success = true,
ErrorMessage = "",
SingleplayerStation = false,
Address = parts[0],
Port = parts.Length > 1 && int.TryParse(parts[1], out var gsPort) ? gsPort : 7777,
MaintenanceMode = false,
};
}
return new FYEnterMatchAzureFunctionResult return new FYEnterMatchAzureFunctionResult
{ {
Success = true, Success = true,
@@ -24,13 +24,15 @@ public class EnterMatchmakingMatchFunction : ICloudScriptFunction<FYEnterMatchAz
private readonly IHubContext<CycleHub> _hubContext; private readonly IHubContext<CycleHub> _hubContext;
private readonly UserDataService _userDataService; private readonly UserDataService _userDataService;
private readonly TitleDataService _titleDataService; private readonly TitleDataService _titleDataService;
private readonly SignalRConnectionRegistry _registry;
public EnterMatchmakingMatchFunction(IHubContext<CycleHub> hubContext, IHttpContextAccessor httpContextAccessor, UserDataService userDataService, TitleDataService titleDataService) public EnterMatchmakingMatchFunction(IHubContext<CycleHub> hubContext, IHttpContextAccessor httpContextAccessor, UserDataService userDataService, TitleDataService titleDataService, SignalRConnectionRegistry registry)
{ {
_httpContextAccessor = httpContextAccessor; _httpContextAccessor = httpContextAccessor;
_hubContext = hubContext; _hubContext = hubContext;
_userDataService = userDataService; _userDataService = userDataService;
_titleDataService = titleDataService; _titleDataService = titleDataService;
_registry = registry;
} }
public async Task<FYEnterMatchmakingResult> ExecuteAsync(FYEnterMatchAzureFunction request) public async Task<FYEnterMatchmakingResult> ExecuteAsync(FYEnterMatchAzureFunction request)
@@ -60,12 +62,17 @@ public class EnterMatchmakingMatchFunction : ICloudScriptFunction<FYEnterMatchAz
continue; continue;
} }
for (var i = 0; i < contract.Objectives.Length; i++) { for (var i = 0; i < contract.Objectives.Length; i++) {
if (i >= contractActive.Progress.Length) {
// Defensive: player progress array shorter than the objective list.
break;
}
var objective = contract.Objectives[i]; var objective = contract.Objectives[i];
// Kill objectives: the client-hosted raid has no dedicated game server // Raid-runtime objectives (kills, dead-drops, visited areas, looted
// to report per-kill progress to the backend, so kills would never be // containers) are simulated inside the client-hosted raid; with no
// saved. Auto-credit them on deploy so the objective can be completed // dedicated game server their progress is never reported to the backend,
// (mirrors the player-kill auto-credit done in ActivateContract). // so they would never be saved. Auto-credit them on deploy so the
if (objective.Type == EYContractObjectiveType.Kills) { // objective persists and the station shows the contract as completable.
if (objective.Type.IsRaidRuntime()) {
contractActive.Progress[i] = objective.MaxProgress; contractActive.Progress[i] = objective.MaxProgress;
continue; continue;
} }
@@ -94,11 +101,23 @@ public class EnterMatchmakingMatchFunction : ICloudScriptFunction<FYEnterMatchAz
} }
); );
await _hubContext.Clients.All.SendAsync("OnSquadMatchmakingSuccess", new OnSquadMatchmakingSuccessMessage { // Send the "matchmaking succeeded / travel to match" signal only to the deploying
// player (via their mapped SignalR connection) — broadcasting to Clients.All made
// every connected player travel too. Fall back to broadcast only if the connection
// isn't mapped yet.
// Dedicated-server mode (2nd preprod): point the client at the real game server address
// to travel to; otherwise keep the map name (client-hosted). Same image — env flips it.
var gameServer = Environment.GetEnvironmentVariable("GAMESERVER_ADDRESS");
var deployMessage = new OnSquadMatchmakingSuccessMessage {
Success = true, Success = true,
SessionID = request.MapName, // TODO: Need to implement TryGetCompleteSquadInfo and pass squad info SessionID = string.IsNullOrEmpty(gameServer) ? request.MapName : gameServer,
SquadID = request.SquadId, SquadID = request.SquadId,
}); };
var connectionId = _registry.GetConnection(userId);
if (connectionId != null)
await _hubContext.Clients.Client(connectionId).SendAsync("OnSquadMatchmakingSuccess", deployMessage);
else
await _hubContext.Clients.All.SendAsync("OnSquadMatchmakingSuccess", deployMessage);
return new FYEnterMatchmakingResult return new FYEnterMatchmakingResult
{ {
@@ -1,5 +1,8 @@
using Microsoft.Extensions.Options; using System.Net;
using System.Net.Sockets;
using Microsoft.Extensions.Options;
using Prospect.Server.Api.Config; using Prospect.Server.Api.Config;
using Prospect.Server.Api.Services.Auth.Extensions;
using Prospect.Server.Api.Services.CloudScript.Models; using Prospect.Server.Api.Services.CloudScript.Models;
namespace Prospect.Server.Api.Services.CloudScript.Functions; namespace Prospect.Server.Api.Services.CloudScript.Functions;
@@ -7,20 +10,63 @@ namespace Prospect.Server.Api.Services.CloudScript.Functions;
[CloudScriptFunction("GetSignalRConnection")] [CloudScriptFunction("GetSignalRConnection")]
public class GetSignalRConnection : ICloudScriptFunction<FYGetSignalRConnection, FYGetSignalRConnectionResult> public class GetSignalRConnection : ICloudScriptFunction<FYGetSignalRConnection, FYGetSignalRConnectionResult>
{ {
private readonly PlayFabSettings _settings; // LAN address of the homelab host. Clients on the local network get the SignalR URL on
// this IP (which their cert already validates via the IP/DNS SAN), while external clients
// keep the public domain from configuration. This matters because the real-time WebSocket
// (libwebsockets, incl. under Proton/Wine) can't reach the public domain from inside the
// LAN (hairpin NAT), which surfaced as "error code 5" right after the intro.
private const string LanHost = "192.168.1.136";
public GetSignalRConnection(IOptions<PlayFabSettings> settings) private readonly PlayFabSettings _settings;
private readonly IHttpContextAccessor _httpContextAccessor;
private readonly ILogger<GetSignalRConnection> _logger;
public GetSignalRConnection(IOptions<PlayFabSettings> settings, IHttpContextAccessor httpContextAccessor, ILogger<GetSignalRConnection> logger)
{ {
_settings = settings.Value; _settings = settings.Value;
_httpContextAccessor = httpContextAccessor;
_logger = logger;
} }
public Task<FYGetSignalRConnectionResult> ExecuteAsync(FYGetSignalRConnection request) public Task<FYGetSignalRConnectionResult> ExecuteAsync(FYGetSignalRConnection request)
{ {
// The game client connects to SignalR only over HTTPS // The game client connects to SignalR only over HTTPS.
var url = _settings.SignalRURL;
var remote = _httpContextAccessor.HttpContext?.Connection.RemoteIpAddress;
var lan = remote != null && IsLan(remote);
if (lan)
{
try
{
url = new UriBuilder(url) { Host = LanHost }.Uri.AbsoluteUri;
}
catch { /* keep the configured URL on any parsing issue */ }
}
// Tag the connection with the player id so the hub can map connection -> user and
// target server messages (deploy signal) instead of broadcasting to everyone.
var userId = _httpContextAccessor.HttpContext?.User.FindAuthUserId();
if (!string.IsNullOrEmpty(userId))
url += (url.Contains('?') ? "&" : "?") + "uid=" + Uri.EscapeDataString(userId);
_logger.LogInformation("GetSignalRConnection: remoteIp={Remote} lan={Lan} uid={Uid} -> {Url}", remote, lan, userId, url);
return Task.FromResult(new FYGetSignalRConnectionResult return Task.FromResult(new FYGetSignalRConnectionResult
{ {
Url = _settings.SignalRURL, Url = url,
AccessToken = _settings.SignalRAccessToken AccessToken = _settings.SignalRAccessToken
}); });
} }
private static bool IsLan(IPAddress ip)
{
if (IPAddress.IsLoopback(ip)) return true;
if (ip.IsIPv4MappedToIPv6) ip = ip.MapToIPv4();
if (ip.AddressFamily != AddressFamily.InterNetwork) return false;
var b = ip.GetAddressBytes();
return b[0] == 10
|| (b[0] == 172 && b[1] >= 16 && b[1] <= 31)
|| (b[0] == 192 && b[1] == 168);
}
} }
@@ -1,6 +1,9 @@
using System.Text.Json.Serialization; using System.Text.Json.Serialization;
using Prospect.Server.Api.Services.CloudScript; using Prospect.Server.Api.Services.CloudScript;
using Prospect.Server.Api.Services.Auth.Extensions; using Prospect.Server.Api.Services.Auth.Extensions;
using Prospect.Server.Api.Services.Database;
using Prospect.Server.Api.Services.Database.Models;
using Prospect.Server.Api.Services.Squad;
using Microsoft.AspNetCore.SignalR; using Microsoft.AspNetCore.SignalR;
using Prospect.Server.Api.Hubs; using Prospect.Server.Api.Hubs;
@@ -28,12 +31,16 @@ public class SquadMemberReadyForMatchFunction : ICloudScriptFunction<SquadMember
private readonly ILogger<SquadMemberReadyForMatchFunction> _logger; private readonly ILogger<SquadMemberReadyForMatchFunction> _logger;
private readonly IHttpContextAccessor _httpContextAccessor; private readonly IHttpContextAccessor _httpContextAccessor;
private readonly IHubContext<CycleHub> _hubContext; private readonly IHubContext<CycleHub> _hubContext;
private readonly SquadService _squadService;
private readonly DbUserService _userService;
public SquadMemberReadyForMatchFunction(ILogger<SquadMemberReadyForMatchFunction> logger, IHttpContextAccessor httpContextAccessor, IHubContext<CycleHub> hubContext) public SquadMemberReadyForMatchFunction(ILogger<SquadMemberReadyForMatchFunction> logger, IHttpContextAccessor httpContextAccessor, IHubContext<CycleHub> hubContext, SquadService squadService, DbUserService userService)
{ {
_httpContextAccessor = httpContextAccessor; _httpContextAccessor = httpContextAccessor;
_logger = logger; _logger = logger;
_hubContext = hubContext; _hubContext = hubContext;
_squadService = squadService;
_userService = userService;
} }
public async Task<SquadMemberReadyForMatchResponse> ExecuteAsync(SquadMemberReadyForMatchRequest request) public async Task<SquadMemberReadyForMatchResponse> ExecuteAsync(SquadMemberReadyForMatchRequest request)
@@ -44,27 +51,25 @@ public class SquadMemberReadyForMatchFunction : ICloudScriptFunction<SquadMember
throw new CloudScriptException("CloudScript was not called within a http request"); throw new CloudScriptException("CloudScript was not called within a http request");
} }
var userId = context.User.FindAuthUserId(); var userId = context.User.FindAuthUserId();
var squadId = string.IsNullOrEmpty(request.SquadID) ? userId : request.SquadID;
// Register the caller into the squad (party is formed client-side; each member's client
// calls this with the shared squadId) and record their readiness / selected map.
var displayName = (await _userService.FindByIdAsync(userId))?.DisplayName ?? "";
_squadService.JoinOrCreate(squadId, userId, displayName);
var ready = request.matchmakingSettings?.isReadyForMatch ?? false;
_squadService.SetReady(squadId, userId, ready, request.matchmakingSettings?.selectedMapName);
var squad = _squadService.Get(squadId)!;
var isSquadReady = _squadService.IsSquadReady(squadId);
_logger.LogInformation("SquadMemberReadyForMatch: {User} ready={Ready} in squad {Squad} ({Count} member(s), squadReady={SquadReady})",
userId, ready, squadId, squad.Members.Count, isSquadReady);
return new SquadMemberReadyForMatchResponse return new SquadMemberReadyForMatchResponse
{ {
Result = 0, // EYSquadActionResult::OK Result = 0, // EYSquadActionResult::OK
Squad = new FYPlayFabSquad { Squad = _squadService.ToClientSquad(squad),
SquadID = "100", // TODO IsSquadReadyForMatch = isSquadReady,
// Members = [
// new FYPlayFabSquadMember {
// Profile = new FYPlayFabPlayerProfile {
// PlayerId = userId,
// },
// onlineState = 0, // EYUserState::IN_STATION
// matchmakingSettings = new FYUserMatchmakingSettings {
// isReadyForMatch = true,
// isSecretLeader = true,
// selectedMapName = "Map01",
// }
// }
// ],
},
IsSquadReadyForMatch = true,
}; };
} }
} }
@@ -1,5 +1,8 @@
using System.Text.Json.Serialization; using System.Text.Json.Serialization;
using Prospect.Server.Api.Services.Auth.Extensions;
using Prospect.Server.Api.Services.CloudScript; using Prospect.Server.Api.Services.CloudScript;
using Prospect.Server.Api.Services.Squad;
public class SquadMemberSelectedMapRequest public class SquadMemberSelectedMapRequest
{ {
[JsonPropertyName("squadId")] [JsonPropertyName("squadId")]
@@ -17,15 +20,26 @@ public class SquadMemberSelectedMapResponse
public class SquadMemberSelectedMapFunction : ICloudScriptFunction<SquadMemberSelectedMapRequest, SquadMemberSelectedMapResponse> public class SquadMemberSelectedMapFunction : ICloudScriptFunction<SquadMemberSelectedMapRequest, SquadMemberSelectedMapResponse>
{ {
private readonly ILogger<SquadMemberSelectedMapFunction> _logger; private readonly ILogger<SquadMemberSelectedMapFunction> _logger;
private readonly IHttpContextAccessor _httpContextAccessor;
private readonly SquadService _squadService;
public SquadMemberSelectedMapFunction(ILogger<SquadMemberSelectedMapFunction> logger) public SquadMemberSelectedMapFunction(ILogger<SquadMemberSelectedMapFunction> logger, IHttpContextAccessor httpContextAccessor, SquadService squadService)
{ {
_logger = logger; _logger = logger;
_httpContextAccessor = httpContextAccessor;
_squadService = squadService;
} }
public async Task<SquadMemberSelectedMapResponse> ExecuteAsync(SquadMemberSelectedMapRequest request) public Task<SquadMemberSelectedMapResponse> ExecuteAsync(SquadMemberSelectedMapRequest request)
{ {
return new SquadMemberSelectedMapResponse var context = _httpContextAccessor.HttpContext;
{}; if (context != null && !string.IsNullOrEmpty(request.SquadID))
{
var userId = context.User.FindAuthUserId();
_squadService.JoinOrCreate(request.SquadID, userId, "");
_squadService.SetMap(request.SquadID, userId, request.SelectedMapName ?? "");
_logger.LogInformation("SquadMemberSelectedMap: {User} -> {Map} (squad {Squad})", userId, request.SelectedMapName, request.SquadID);
}
return Task.FromResult(new SquadMemberSelectedMapResponse { });
} }
} }
@@ -1,5 +1,8 @@
using System.Text.Json.Serialization; using System.Text.Json.Serialization;
using Prospect.Server.Api.Services.Auth.Extensions;
using Prospect.Server.Api.Services.CloudScript; using Prospect.Server.Api.Services.CloudScript;
using Prospect.Server.Api.Services.Database;
using Prospect.Server.Api.Services.Squad;
public class TryGetCompleteSquadInfoRequest public class TryGetCompleteSquadInfoRequest
{ {
@@ -51,26 +54,30 @@ public class TryGetCompleteSquadInfoFunction : ICloudScriptFunction<TryGetComple
{ {
private readonly ILogger<TryGetCompleteSquadInfoFunction> _logger; private readonly ILogger<TryGetCompleteSquadInfoFunction> _logger;
private readonly IHttpContextAccessor _httpContextAccessor; private readonly IHttpContextAccessor _httpContextAccessor;
private readonly SquadService _squadService;
public TryGetCompleteSquadInfoFunction(ILogger<TryGetCompleteSquadInfoFunction> logger, IHttpContextAccessor httpContextAccessor) public TryGetCompleteSquadInfoFunction(ILogger<TryGetCompleteSquadInfoFunction> logger, IHttpContextAccessor httpContextAccessor, SquadService squadService)
{ {
_httpContextAccessor = httpContextAccessor; _httpContextAccessor = httpContextAccessor;
_logger = logger; _logger = logger;
_squadService = squadService;
} }
public async Task<FYPlayFabSquad> ExecuteAsync(TryGetCompleteSquadInfoRequest request) public Task<FYPlayFabSquad> ExecuteAsync(TryGetCompleteSquadInfoRequest request)
{ {
var context = _httpContextAccessor.HttpContext; var context = _httpContextAccessor.HttpContext;
if (context == null) if (context == null)
{ {
throw new CloudScriptException("CloudScript was not called within a http request"); throw new CloudScriptException("CloudScript was not called within a http request");
} }
// var userId = context.User.FindAuthUserId(); var userId = context.User.FindAuthUserId();
var squad = _squadService.GetByUser(userId);
return new FYPlayFabSquad if (squad == null)
{ {
// SquadID = "100", // Not in a squad yet — return an empty squad (same as the previous stub).
// Members = [], return Task.FromResult(new FYPlayFabSquad());
}; }
_logger.LogInformation("TryGetCompleteSquadInfo: user {User} in squad {Squad} ({Count} member(s))", userId, squad.SquadId, squad.Members.Count);
return Task.FromResult(_squadService.ToClientSquad(squad));
} }
} }
@@ -18,6 +18,12 @@ public class DbUserService : BaseDbService<PlayFabUser>
auth.Key == key)).FirstOrDefaultAsync(); auth.Key == key)).FirstOrDefaultAsync();
} }
// Resolve a player by its PlayFab id (used to display squad member names).
public async Task<PlayFabUser> FindByIdAsync(string id)
{
return await Collection.Find(user => user.Id == id).FirstOrDefaultAsync();
}
private async Task<PlayFabUser> CreateAsync(PlayFabUserAuthType type, string key) private async Task<PlayFabUser> CreateAsync(PlayFabUserAuthType type, string key)
{ {
var user = new PlayFabUser var user = new PlayFabUser
@@ -0,0 +1,99 @@
using System.Collections.Concurrent;
namespace Prospect.Server.Api.Services.Squad;
// In-memory squad/lobby state. Squads are keyed by the squadId the client provides on the
// SquadMember* calls (the client forms the party and shares a squadId; each member's client
// then calls the backend with it). A member is (lazily) registered into that squad on any
// squad call, and the current squad for a user is tracked so TryGetCompleteSquadInfo — which
// carries no squadId — can still return it. State is process-local (fine for a small server).
public class SquadMemberInfo
{
public string UserId { get; set; } = "";
public string DisplayName { get; set; } = "";
public int OnlineState { get; set; }
public bool IsReady { get; set; }
public string SelectedMap { get; set; } = "";
public bool IsLeader { get; set; }
}
public class SquadInfo
{
public string SquadId { get; set; } = "";
public ConcurrentDictionary<string, SquadMemberInfo> Members { get; } = new();
}
public class SquadService
{
private readonly ConcurrentDictionary<string, SquadInfo> _squads = new();
private readonly ConcurrentDictionary<string, string> _userToSquad = new();
public SquadInfo JoinOrCreate(string squadId, string userId, string displayName)
{
var squad = _squads.GetOrAdd(squadId, id => new SquadInfo { SquadId = id });
var isFirst = squad.Members.IsEmpty;
var member = squad.Members.GetOrAdd(userId, uid => new SquadMemberInfo { UserId = uid, IsLeader = isFirst });
if (!string.IsNullOrEmpty(displayName)) member.DisplayName = displayName;
_userToSquad[userId] = squadId;
return squad;
}
public SquadInfo? GetByUser(string userId)
=> _userToSquad.TryGetValue(userId, out var sid) && _squads.TryGetValue(sid, out var sq) ? sq : null;
public SquadInfo? Get(string squadId)
=> _squads.TryGetValue(squadId, out var sq) ? sq : null;
public void SetReady(string squadId, string userId, bool ready, string? selectedMap)
{
if (_squads.TryGetValue(squadId, out var sq) && sq.Members.TryGetValue(userId, out var m))
{
m.IsReady = ready;
if (!string.IsNullOrEmpty(selectedMap)) m.SelectedMap = selectedMap;
}
}
public void SetMap(string squadId, string userId, string map)
{
if (_squads.TryGetValue(squadId, out var sq) && sq.Members.TryGetValue(userId, out var m))
m.SelectedMap = map;
}
public bool IsSquadReady(string squadId)
=> _squads.TryGetValue(squadId, out var sq) && !sq.Members.IsEmpty && sq.Members.Values.All(m => m.IsReady);
public void Leave(string userId)
{
if (_userToSquad.TryRemove(userId, out var sid) && _squads.TryGetValue(sid, out var sq))
{
sq.Members.TryRemove(userId, out _);
if (sq.Members.IsEmpty) _squads.TryRemove(sid, out _);
}
}
// Build the client-facing squad object (models live in the global namespace).
public FYPlayFabSquad ToClientSquad(SquadInfo squad)
{
return new FYPlayFabSquad
{
SquadID = squad.SquadId,
Members = squad.Members.Values.Select(m => new FYPlayFabSquadMember
{
Profile = new FYPlayFabPlayerProfile
{
PlayerId = m.UserId,
DisplayName = m.DisplayName,
AvatarUrl = "",
},
onlineState = m.OnlineState,
matchmakingSettings = new FYUserMatchmakingSettings
{
isReadyForMatch = m.IsReady,
selectedMapName = m.SelectedMap,
isSecretLeader = m.IsLeader,
},
mapRowNamesUnlocked = Array.Empty<string>(),
}).ToArray(),
};
}
}
File diff suppressed because one or more lines are too long
+3
View File
@@ -35,6 +35,9 @@ public class Startup
services.AddSingleton<DbUserDataService>(); services.AddSingleton<DbUserDataService>();
services.AddSingleton<Prospect.Server.Api.Services.Squad.SquadService>();
services.AddSingleton<Prospect.Server.Api.Hubs.SignalRConnectionRegistry>();
services.AddHostedService<QosService>(); services.AddHostedService<QosService>();
services.AddSingleton<QosServer>(); services.AddSingleton<QosServer>();
+26
View File
@@ -25,6 +25,8 @@ Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "Prospect.Client.Loader", "P
EndProject EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "Prospect.Agent", "Prospect.Agent\Prospect.Agent.vcxproj", "{A9BA7D25-F239-4320-A0DC-85E8001FD669}" Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "Prospect.Agent", "Prospect.Agent\Prospect.Agent.vcxproj", "{A9BA7D25-F239-4320-A0DC-85E8001FD669}"
EndProject EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "Prospect.Client.Config", "Prospect.Client.Config\Prospect.Client.Config.csproj", "{6DECEB07-996B-4EBC-927C-13E170161107}"
EndProject
Global Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|x64 = Debug|x64 Debug|x64 = Debug|x64
@@ -233,6 +235,30 @@ Global
{A9BA7D25-F239-4320-A0DC-85E8001FD669}.Season 3 Release|x64.Build.0 = Release|x64 {A9BA7D25-F239-4320-A0DC-85E8001FD669}.Season 3 Release|x64.Build.0 = Release|x64
{A9BA7D25-F239-4320-A0DC-85E8001FD669}.Season 3 Release|x86.ActiveCfg = Release|x64 {A9BA7D25-F239-4320-A0DC-85E8001FD669}.Season 3 Release|x86.ActiveCfg = Release|x64
{A9BA7D25-F239-4320-A0DC-85E8001FD669}.Season 3 Release|x86.Build.0 = Release|x64 {A9BA7D25-F239-4320-A0DC-85E8001FD669}.Season 3 Release|x86.Build.0 = Release|x64
{6DECEB07-996B-4EBC-927C-13E170161107}.Debug|x64.ActiveCfg = Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Debug|x64.Build.0 = Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Debug|x86.ActiveCfg = Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Debug|x86.Build.0 = Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Release|x64.ActiveCfg = Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Release|x64.Build.0 = Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Release|x86.ActiveCfg = Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Release|x86.Build.0 = Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Debug|x64.ActiveCfg = Season 2 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Debug|x64.Build.0 = Season 2 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Debug|x86.ActiveCfg = Season 2 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Debug|x86.Build.0 = Season 2 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Release|x64.ActiveCfg = Season 2 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Release|x64.Build.0 = Season 2 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Release|x86.ActiveCfg = Season 2 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 2 Release|x86.Build.0 = Season 2 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Debug|x64.ActiveCfg = Season 3 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Debug|x64.Build.0 = Season 3 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Debug|x86.ActiveCfg = Season 3 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Debug|x86.Build.0 = Season 3 Debug|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Release|x64.ActiveCfg = Season 3 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Release|x64.Build.0 = Season 3 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Release|x86.ActiveCfg = Season 3 Release|Any CPU
{6DECEB07-996B-4EBC-927C-13E170161107}.Season 3 Release|x86.Build.0 = Season 3 Release|Any CPU
EndGlobalSection EndGlobalSection
GlobalSection(SolutionProperties) = preSolution GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE HideSolutionNode = FALSE