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47 Commits

Author SHA1 Message Date
c8d8b6b802 Conflict resolve 2026-05-17 11:25:21 +02:00
f800e78f14 kontrola simulace na telefonu 2026-04-26 11:40:58 +02:00
e29581cc21 opravene kabely (je jen 1 scena) 2026-04-26 10:30:47 +02:00
208696487e Mergnuta minihra 2026-04-26 09:11:01 +02:00
1de91b0d57 Hra kabely 2026-03-28 19:28:59 +01:00
b0e90221dc fixed merges 2026-03-28 11:19:27 +01:00
dcb1066d80 Fixed merge conflict 2026-03-28 11:18:01 +01:00
d80ac111c2 Removed meta files 2026-03-28 11:06:53 +01:00
b872b52632 Added gps and ITask update 2026-03-28 10:59:01 +01:00
4fdfdea5cf udpatnuty na vsechny cudliky 2026-03-28 10:45:51 +01:00
32c7589ab3 prepinani scen 2026-03-28 10:36:08 +01:00
44155796d0 rename Misovych slozek, clean up 2026-03-28 09:43:53 +01:00
5b166244b2 added Packages 2026-03-28 09:24:20 +01:00
114a0d3997 player list + animace pro něj 2026-03-26 18:33:43 +01:00
ce6e4450e6 nove screeny(myslim)zvuky pro tlacitka klikani tlacitek novy font pro texty a uprava hvězd 2026-03-22 21:31:20 +01:00
be595da357 Added test mode and manual positioning 2026-03-21 22:40:20 +01:00
95f2f63259 6 novych screenu posledni 3 asi celkem nic moc 2026-03-20 20:24:16 +01:00
dc5ed7d49f napis na zemeguli, jestli nekdo chce, tak doladte barvu, vic belejsi mi to udelat neslo(ve scene neni svetlo, tak jsem radsi nic nedelal) 2026-03-04 18:26:34 +01:00
Jan Racek
2fadf819cc Upraveno hlavni menu, pridana 3D zeme bez rendertexture, pridano space HDRI 2026-03-01 21:14:00 +01:00
a1465de9a0 Merge pull request 'Added map' (#3) from GameClient into main
Reviewed-on: #3

Líbí se mi to. Je to fajn.
2026-03-01 20:52:28 +01:00
a1b40ad102 Added map 2026-03-01 13:26:13 +01:00
ff9a2cebd3 main menu 2026-02-27 20:22:49 +01:00
f7926a218e MinHraKrystof 2026-02-22 20:59:10 +01:00
e14a3ddf2b scaling a cerny pozadí 2026-02-21 14:47:54 +01:00
5bd6eabec6 Opraven TMP, pridan anchoring hlavniho menu 2026-02-21 14:17:12 +01:00
f2ebd125f3 zeme kutululu 2026-02-21 14:04:25 +01:00
2fdfabe2b8 main menu 2026-02-21 13:44:23 +01:00
4b8e4c69f5 Fixed meta files 2026-02-21 11:58:53 +01:00
e086bedb19 Opravena textura 2026-02-21 11:53:57 +01:00
13300e885b Opravena moje objektivni a naprosto nezpochybnitelna neschopnost, ktera predstavuje hrozbu pro celou planetu na budocích 40 let (vic se nedoziju zeru moc KFC) 2026-02-21 11:52:25 +01:00
a73f75ffa4 funguj 2026-02-21 11:06:54 +01:00
e9beb05083 Merge pull request 'UI update' (#2) from GameClient into main
Reviewed-on: #2
2026-02-21 11:06:13 +01:00
7294466604 UI patch 2026-02-21 11:02:26 +01:00
67d3ee76c1 UI update 2026-02-21 10:59:27 +01:00
a04ce40779 Merge pull request 'GameClient' (#1) from GameClient into main
Reviewed-on: #1
2026-02-21 10:08:32 +01:00
94a40e3d14 Added Lobbies 2026-02-19 16:14:30 +01:00
eeaf092780 double patch 2026-02-01 20:10:52 +01:00
fc22d4f544 Added ITask and basic connection 2026-01-31 15:44:30 +01:00
3b36d53b39 Merge pull request 'Mapz' (#5) from Mapz into main
Reviewed-on: BlueCabinetGames/Game#5
Reviewed-by: jracek <racek.janek@gmail.com>
2025-11-30 09:54:51 +01:00
b1fc3ac24a Coroutines patch 2025-11-30 08:46:19 +01:00
655d378dbb Added GPS 2025-11-23 19:42:34 +01:00
39b42e1e90 Code cleanup 2025-11-15 20:05:19 +01:00
0cb7d4b64d Functioning renderer 2025-11-15 17:38:49 +01:00
1c103a1496 Map renderer 2025-11-15 14:58:40 +01:00
1618ecd432 Map branch 2025-11-15 09:40:28 +01:00
ed6347e6bc Přidán build profile pro Android 2025-10-18 17:54:56 +02:00
59b6708437 Uklizeny assety 2025-10-18 17:41:24 +02:00
543 changed files with 247768 additions and 2208 deletions

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using System;
using System.IO;
using System.Security.Cryptography;
using System.Text;
namespace GeoSus.Client
{
// Klientská strana šifrování - generuje session key, šifruje RSA, AES-CBC session
// Používá AES-CBC místo AES-GCM pro kompatibilitu s Unity
public class ClientEncryption : IDisposable
{
private byte[] _sessionKey;
private byte[] _sessionIv;
private long _nonceCounter;
private readonly object _lock = new object();
// Kontrola, zda je session key nastaven
public bool HasSessionKey => _sessionKey != null && _sessionIv != null;
// Generuje nový session key a IV
public void GenerateSessionKey()
{
_sessionKey = new byte[32]; // AES-256
_sessionIv = new byte[16]; // CBC IV (16 bytes)
using (var rng = RandomNumberGenerator.Create())
{
rng.GetBytes(_sessionKey);
rng.GetBytes(_sessionIv);
}
}
public byte[] SessionKey => _sessionKey ?? throw new InvalidOperationException("Session key not generated");
public byte[] SessionIV => _sessionIv ?? throw new InvalidOperationException("Session IV not generated");
// Zašifruje session key pomocí RSA public key serveru
public (string EncryptedKey, string EncryptedIV) EncryptSessionKeyForServer(string rsaPublicKeyPem)
{
if (_sessionKey == null || _sessionIv == null)
throw new InvalidOperationException("Session key not generated");
using (var rsa = RSA.Create())
{
// Parse PEM - extrahuj Base64 obsah
var pemLines = rsaPublicKeyPem.Split('\n');
var base64 = new StringBuilder();
foreach (var line in pemLines)
{
var trimmed = line.Trim();
if (!trimmed.StartsWith("-----") && !string.IsNullOrEmpty(trimmed))
{
base64.Append(trimmed);
}
}
var keyBytes = Convert.FromBase64String(base64.ToString());
// Unity kompatibilní import - parsujeme SubjectPublicKeyInfo ručně
ImportSubjectPublicKeyInfoManual(rsa, keyBytes);
// Používáme OaepSHA1 pro Unity kompatibilitu (OaepSHA256 není podporován)
var encryptedKey = rsa.Encrypt(_sessionKey, RSAEncryptionPadding.OaepSHA1);
var encryptedIv = rsa.Encrypt(_sessionIv, RSAEncryptionPadding.OaepSHA1);
return (Convert.ToBase64String(encryptedKey), Convert.ToBase64String(encryptedIv));
}
}
// Ručně parsuje SubjectPublicKeyInfo (DER) a importuje RSA klíč - Unity kompatibilní
private static void ImportSubjectPublicKeyInfoManual(RSA rsa, byte[] subjectPublicKeyInfo)
{
// SubjectPublicKeyInfo ::= SEQUENCE {
// algorithm AlgorithmIdentifier,
// subjectPublicKey BIT STRING }
// RSAPublicKey ::= SEQUENCE { modulus INTEGER, publicExponent INTEGER }
int index = 0;
// Outer SEQUENCE
if (subjectPublicKeyInfo[index++] != 0x30)
throw new InvalidOperationException("Invalid SubjectPublicKeyInfo");
ReadLength(subjectPublicKeyInfo, ref index);
// AlgorithmIdentifier SEQUENCE - skip it
if (subjectPublicKeyInfo[index++] != 0x30)
throw new InvalidOperationException("Invalid AlgorithmIdentifier");
int algLen = ReadLength(subjectPublicKeyInfo, ref index);
index += algLen;
// BIT STRING containing RSAPublicKey
if (subjectPublicKeyInfo[index++] != 0x03)
throw new InvalidOperationException("Invalid BIT STRING");
ReadLength(subjectPublicKeyInfo, ref index);
index++; // Skip unused bits byte (should be 0)
// RSAPublicKey SEQUENCE
if (subjectPublicKeyInfo[index++] != 0x30)
throw new InvalidOperationException("Invalid RSAPublicKey");
ReadLength(subjectPublicKeyInfo, ref index);
// Modulus INTEGER
byte[] modulus = ReadInteger(subjectPublicKeyInfo, ref index);
// Exponent INTEGER
byte[] exponent = ReadInteger(subjectPublicKeyInfo, ref index);
var parameters = new RSAParameters
{
Modulus = modulus,
Exponent = exponent
};
rsa.ImportParameters(parameters);
}
private static int ReadLength(byte[] data, ref int index)
{
int length = data[index++];
if ((length & 0x80) != 0)
{
int numBytes = length & 0x7F;
length = 0;
for (int i = 0; i < numBytes; i++)
{
length = (length << 8) | data[index++];
}
}
return length;
}
private static byte[] ReadInteger(byte[] data, ref int index)
{
if (data[index++] != 0x02)
throw new InvalidOperationException("Expected INTEGER");
int length = ReadLength(data, ref index);
// Skip leading zero if present (used for positive sign in DER)
int originalLength = length;
int start = index;
if (length > 1 && data[start] == 0x00)
{
start++;
length--;
}
byte[] result = new byte[length];
Buffer.BlockCopy(data, start, result, 0, length);
index += originalLength;
return result;
}
// Šifruje zprávu pomocí AES-256-CBC s HMAC
public byte[] Encrypt(byte[] plaintext)
{
if (_sessionKey == null || _sessionIv == null)
throw new InvalidOperationException("Session key not set");
lock (_lock)
{
// Generuj unikátní IV pro tuto zprávu
var iv = GetNextIV();
using (var aes = Aes.Create())
{
aes.Key = _sessionKey;
aes.IV = iv;
aes.Mode = CipherMode.CBC;
aes.Padding = PaddingMode.PKCS7;
byte[] ciphertext;
using (var encryptor = aes.CreateEncryptor())
using (var ms = new MemoryStream())
{
using (var cs = new CryptoStream(ms, encryptor, CryptoStreamMode.Write))
{
cs.Write(plaintext, 0, plaintext.Length);
}
ciphertext = ms.ToArray();
}
// Compute HMAC pro integritu
byte[] hmac;
using (var hmacSha = new HMACSHA256(_sessionKey))
{
var toSign = new byte[iv.Length + ciphertext.Length];
Buffer.BlockCopy(iv, 0, toSign, 0, iv.Length);
Buffer.BlockCopy(ciphertext, 0, toSign, iv.Length, ciphertext.Length);
hmac = hmacSha.ComputeHash(toSign);
}
// Výstup: [16 bytes IV][32 bytes HMAC][ciphertext]
var result = new byte[16 + 32 + ciphertext.Length];
Buffer.BlockCopy(iv, 0, result, 0, 16);
Buffer.BlockCopy(hmac, 0, result, 16, 32);
Buffer.BlockCopy(ciphertext, 0, result, 48, ciphertext.Length);
return result;
}
}
}
// Dešifruje zprávu pomocí AES-256-CBC s HMAC ověřením
public byte[] Decrypt(byte[] encrypted)
{
if (_sessionKey == null)
throw new InvalidOperationException("Session key not set");
if (encrypted.Length < 48) return null;
try
{
var iv = new byte[16];
var hmac = new byte[32];
var ciphertext = new byte[encrypted.Length - 48];
Buffer.BlockCopy(encrypted, 0, iv, 0, 16);
Buffer.BlockCopy(encrypted, 16, hmac, 0, 32);
Buffer.BlockCopy(encrypted, 48, ciphertext, 0, ciphertext.Length);
// Ověř HMAC
byte[] expectedHmac;
using (var hmacSha = new HMACSHA256(_sessionKey))
{
var toVerify = new byte[iv.Length + ciphertext.Length];
Buffer.BlockCopy(iv, 0, toVerify, 0, iv.Length);
Buffer.BlockCopy(ciphertext, 0, toVerify, iv.Length, ciphertext.Length);
expectedHmac = hmacSha.ComputeHash(toVerify);
}
// Constant-time compare
var diff = 0;
for (int i = 0; i < 32; i++)
{
diff |= hmac[i] ^ expectedHmac[i];
}
if (diff != 0) return null; // HMAC mismatch
using (var aes = Aes.Create())
{
aes.Key = _sessionKey;
aes.IV = iv;
aes.Mode = CipherMode.CBC;
aes.Padding = PaddingMode.PKCS7;
using (var decryptor = aes.CreateDecryptor())
using (var ms = new MemoryStream(ciphertext))
using (var cs = new CryptoStream(ms, decryptor, CryptoStreamMode.Read))
using (var output = new MemoryStream())
{
cs.CopyTo(output);
return output.ToArray();
}
}
}
catch (CryptographicException)
{
return null;
}
}
private byte[] GetNextIV()
{
if (_sessionIv == null)
throw new InvalidOperationException("Session IV not set");
var iv = new byte[16];
Buffer.BlockCopy(_sessionIv, 0, iv, 0, 8);
var counter = System.Threading.Interlocked.Increment(ref _nonceCounter);
var counterBytes = BitConverter.GetBytes(counter);
Buffer.BlockCopy(counterBytes, 0, iv, 8, 8);
return iv;
}
public void Dispose()
{
if (_sessionKey != null)
{
Array.Clear(_sessionKey, 0, _sessionKey.Length);
_sessionKey = null;
}
}
}
}

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guid: bc06bb57786c7e142b06ec231e5cf709

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using System;
using System.Collections.Generic;
using System.Threading;
namespace GeoSus.Client
{
// Event dispatcher pro Unity main thread
// Unity může přidat SynchronizationContext, nebo polling z Update()
public class EventDispatcher
{
private readonly Queue<Action> _pendingActions = new Queue<Action>();
private readonly object _lock = new object();
private SynchronizationContext? _syncContext;
public EventDispatcher()
{
// Pokusíme se zachytit aktuální synchronization context (Unity main thread)
_syncContext = SynchronizationContext.Current;
}
// Volat z networking vlákna - naplánuje callback na main thread
public void Post(Action action)
{
if (_syncContext != null)
{
_syncContext.Post(_ => action(), null);
}
else
{
// Fallback - přidáme do fronty pro polling
lock (_lock)
{
_pendingActions.Enqueue(action);
}
}
}
// Volat z Unity Update() pokud není SynchronizationContext
public void ProcessPendingActions()
{
Action[] actions;
lock (_lock)
{
if (_pendingActions.Count == 0) return;
actions = _pendingActions.ToArray();
_pendingActions.Clear();
}
foreach (var action in actions)
{
try
{
action();
}
catch (Exception ex)
{
Console.WriteLine($"EventDispatcher error: {ex}");
}
}
}
public int PendingCount
{
get
{
lock (_lock)
{
return _pendingActions.Count;
}
}
}
}
}

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guid: 1d2251b279edb0147bd274a884ac878b

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using System;
using System.Collections.Generic;
using System.Linq;
using System.Net.Sockets;
using System.Threading;
using System.Threading.Tasks;
namespace GeoSus.Client
{
// Hlavní klientská třída pro připojení k serveru
public class GameClient : IDisposable
{
private TcpClient? _tcpClient;
private NetworkStream? _stream;
private ClientEncryption? _encryption;
private CancellationTokenSource? _cts;
private Task? _receiveTask;
private int _clientSeq;
private readonly object _sendLock = new object();
private bool _handshakeComplete;
public string ClientUuid { get; }
public string DisplayName { get; set; }
public bool IsConnected => _tcpClient?.Connected ?? false;
public bool IsReady => IsConnected && _handshakeComplete && (_encryption?.HasSessionKey ?? false);
public EventDispatcher Dispatcher { get; }
// Events - voláno na main thread přes dispatcher
public event Action? OnConnected;
public event Action<string>? OnDisconnected;
public event Action<string>? OnError;
public event Action<Message>? OnMessage;
public event Action<GameEvent>? OnGameEvent;
// Lobby state
public string? LobbyId { get; private set; }
public string? JoinCode { get; private set; }
public LobbyState? CurrentLobbyState { get; private set; }
public PlayerRole? MyRole { get; private set; }
public List<GameTask> MyTasks { get; } = new List<GameTask>();
public Position MyPosition { get; set; }
public Dictionary<string, PlayerPositionInfo> PlayerPositions { get; } = new Dictionary<string, PlayerPositionInfo>();
public List<Body> Bodies { get; } = new List<Body>();
public int Ping { get; private set; }
public long LastEventId { get; private set; }
/// <summary>Returns true if this client is the current lobby owner</summary>
public bool IsOwner => CurrentLobbyState?.OwnerId == ClientUuid;
public GameClient(string clientUuid, string displayName)
{
ClientUuid = clientUuid;
DisplayName = displayName;
Dispatcher = new EventDispatcher();
}
#region Connection
public async Task<bool> ConnectAsync(string host, int port)
{
try
{
_tcpClient = new TcpClient();
await _tcpClient.ConnectAsync(host, port);
_stream = _tcpClient.GetStream();
_encryption = new ClientEncryption();
_cts = new CancellationTokenSource();
// Handshake
if (!await PerformHandshakeAsync())
{
Disconnect("Handshake failed");
return false;
}
// Spustíme příjem zpráv
_receiveTask = Task.Run(() => ReceiveLoopAsync(_cts.Token));
Dispatcher.Post(() => OnConnected?.Invoke());
return true;
}
catch (Exception ex)
{
Dispatcher.Post(() => OnError?.Invoke(ex.Message));
return false;
}
}
private async Task<bool> PerformHandshakeAsync()
{
if (_stream == null || _encryption == null) return false;
// 1. ClientHello
var hello = new ClientHello
{
ClientUuid = ClientUuid,
DisplayName = DisplayName
};
await SendPlainAsync(hello);
// 2. ServerHello
var serverHelloData = await ReadMessageAsync();
if (serverHelloData == null) return false;
var serverHello = MessageSerializer.Deserialize(serverHelloData) as ServerHello;
if (serverHello == null) return false;
// 3. Generujeme session key a šifrujeme RSA
_encryption.GenerateSessionKey();
var (encKey, encIv) = _encryption.EncryptSessionKeyForServer(serverHello.RsaPublicKeyPem);
var keyExchange = new KeyExchange
{
EncryptedSessionKey = encKey,
EncryptedIV = encIv
};
await SendPlainAsync(keyExchange);
// 4. KeyExchangeAck (šifrovaně)
var ackData = await ReadMessageAsync();
if (ackData == null) return false;
var decrypted = _encryption.Decrypt(ackData);
if (decrypted == null) return false;
var ack = MessageSerializer.Deserialize(decrypted) as KeyExchangeAck;
if (ack?.Status == "success")
{
_handshakeComplete = true;
return true;
}
return false;
}
public void Disconnect(string reason = "User disconnected")
{
_cts?.Cancel();
_tcpClient?.Close();
_tcpClient = null;
_stream = null;
_encryption?.Dispose();
_encryption = null;
LobbyId = null;
JoinCode = null;
CurrentLobbyState = null;
MyRole = null;
MyTasks.Clear();
PlayerPositions.Clear();
Bodies.Clear();
Dispatcher.Post(() => OnDisconnected?.Invoke(reason));
}
#endregion
#region Sending
public void Send(Message message)
{
if (_stream == null || _encryption == null || !IsConnected) return;
message.ClientSeq = Interlocked.Increment(ref _clientSeq);
if (string.IsNullOrEmpty(message.ActionId))
{
message.ActionId = Guid.NewGuid().ToString("N").Substring(0, 8);
}
var plain = MessageSerializer.Serialize(message);
var encrypted = _encryption.Encrypt(plain);
lock (_sendLock)
{
try
{
SendData(encrypted);
}
catch (Exception ex)
{
Dispatcher.Post(() => OnError?.Invoke($"Send error: {ex.Message}"));
}
}
}
private async Task SendPlainAsync(Message message)
{
if (_stream == null) return;
var data = MessageSerializer.Serialize(message);
await SendDataAsync(data);
}
private void SendData(byte[] data)
{
if (_stream == null) return;
var lengthBuffer = BitConverter.GetBytes(data.Length);
if (BitConverter.IsLittleEndian)
Array.Reverse(lengthBuffer);
_stream.Write(lengthBuffer, 0, 4);
_stream.Write(data, 0, data.Length);
_stream.Flush();
}
private async Task SendDataAsync(byte[] data)
{
if (_stream == null) return;
var lengthBuffer = BitConverter.GetBytes(data.Length);
if (BitConverter.IsLittleEndian)
Array.Reverse(lengthBuffer);
await _stream.WriteAsync(lengthBuffer, 0, 4);
await _stream.WriteAsync(data, 0, data.Length);
await _stream.FlushAsync();
}
#endregion
#region Receiving
private async Task ReceiveLoopAsync(CancellationToken ct)
{
int decryptFailures = 0;
try
{
while (!ct.IsCancellationRequested && IsConnected)
{
var data = await ReadMessageAsync();
if (data == null) break;
var decrypted = _encryption?.Decrypt(data);
if (decrypted == null)
{
decryptFailures++;
if (decryptFailures >= 3)
{
Disconnect("Too many decryption failures");
return;
}
continue;
}
decryptFailures = 0;
var message = MessageSerializer.Deserialize(decrypted);
if (message != null)
{
ProcessMessage(message);
}
}
}
catch (Exception ex) when (!ct.IsCancellationRequested)
{
Disconnect($"Connection error: {ex.Message}");
}
}
private async Task<byte[]?> ReadMessageAsync()
{
if (_stream == null) return null;
var lengthBuffer = new byte[4];
var read = await _stream.ReadAsync(lengthBuffer, 0, 4);
if (read < 4) return null;
if (BitConverter.IsLittleEndian)
Array.Reverse(lengthBuffer);
var length = BitConverter.ToInt32(lengthBuffer, 0);
if (length <= 0 || length > 1048576) return null;
var buffer = new byte[length];
var totalRead = 0;
while (totalRead < length)
{
read = await _stream.ReadAsync(buffer, totalRead, length - totalRead);
if (read == 0) return null;
totalRead += read;
}
return buffer;
}
private void ProcessMessage(Message message)
{
// Zpracujeme speciální typy
switch (message)
{
case CreateLobbyResponse r:
if (r.Success)
{
LobbyId = r.LobbyId;
JoinCode = r.JoinCode;
CurrentLobbyState = r.LobbyState;
}
break;
case JoinLobbyResponse r:
if (r.Success)
{
LobbyId = r.LobbyId;
CurrentLobbyState = r.LobbyState;
JoinCode = r.LobbyState?.JoinCode;
}
break;
case PositionBroadcast b:
ProcessPositionBroadcast(b);
break;
case Pong p:
var now = DateTimeOffset.UtcNow.ToUnixTimeMilliseconds();
Ping = (int)(now - p.ClientTime);
break;
case GameEvent evt:
ProcessGameEvent(evt);
Dispatcher.Post(() => OnGameEvent?.Invoke(evt));
break;
}
Dispatcher.Post(() => OnMessage?.Invoke(message));
}
private void ProcessPositionBroadcast(PositionBroadcast broadcast)
{
PlayerPositions.Clear();
foreach (var player in broadcast.Players)
{
PlayerPositions[player.ClientUuid] = player;
}
}
private void ProcessGameEvent(GameEvent evt)
{
LastEventId = evt.EventId;
switch (evt.EventType)
{
case "PlayerJoined":
// Add player to lobby state
var joinedPayload = evt.GetPayload<PlayerJoinedPayload>();
if (joinedPayload != null && CurrentLobbyState?.Players != null)
{
// Check if player already exists
bool exists = CurrentLobbyState.Players.Any(p => p.ClientUuid == joinedPayload.ClientUuid);
if (!exists)
{
CurrentLobbyState.Players.Add(new PlayerInfo
{
ClientUuid = joinedPayload.ClientUuid,
DisplayName = joinedPayload.DisplayName,
IsOwner = false,
IsReady = false,
State = PlayerState.Alive
});
}
}
break;
case "PlayerLeft":
// Remove player from lobby state
var leftPayload = evt.GetPayload<PlayerLeftPayload>();
if (leftPayload != null && CurrentLobbyState?.Players != null)
{
CurrentLobbyState.Players.RemoveAll(p => p.ClientUuid == leftPayload.ClientUuid);
}
break;
case "HostChanged":
// Update lobby owner
var hostPayload = evt.GetPayload<HostChangedPayload>();
if (hostPayload != null && CurrentLobbyState != null)
{
CurrentLobbyState.OwnerId = hostPayload.NewHostId;
// Update IsOwner flag on all players
foreach (var player in CurrentLobbyState.Players)
{
player.IsOwner = player.ClientUuid == hostPayload.NewHostId;
}
}
break;
case "GameStarting":
// Game is entering loading phase - update lobby state if available
if (CurrentLobbyState != null)
{
CurrentLobbyState.Phase = GamePhase.Loading;
}
break;
case "MapDataReady":
// Map data received - store it and send confirmation
var mapDataPayload = evt.GetPayload<MapDataReadyPayload>();
if (mapDataPayload != null && CurrentLobbyState != null)
{
CurrentLobbyState.MapData = mapDataPayload.MapData;
CurrentLobbyState.MapDataReady = true;
}
// Send confirmation to server
Send(new MapDataReceived());
break;
case "GameStarted":
// Game officially started - update phase
if (CurrentLobbyState != null)
{
CurrentLobbyState.Phase = GamePhase.Playing;
}
break;
case "RoleAssigned":
var rolePayload = evt.GetPayload<RoleAssignedPayload>();
if (rolePayload != null && rolePayload.ClientUuid == ClientUuid)
{
MyRole = rolePayload.Role;
MyTasks.Clear();
if (rolePayload.Tasks != null)
{
MyTasks.AddRange(rolePayload.Tasks);
}
}
break;
case "PlayerKilled":
var killPayload = evt.GetPayload<PlayerKilledPayload>();
if (killPayload != null)
{
Bodies.Add(new Body
{
BodyId = killPayload.BodyId,
VictimId = killPayload.VictimId,
Location = killPayload.Location
});
}
break;
case "MeetingStarted":
if (CurrentLobbyState != null)
{
CurrentLobbyState.Phase = GamePhase.Meeting;
}
break;
case "VotingClosed":
Bodies.Clear(); // Bodies zmizí po meetingu
if (CurrentLobbyState != null)
{
CurrentLobbyState.Phase = GamePhase.Playing;
}
break;
case "GameEnded":
if (CurrentLobbyState != null)
{
CurrentLobbyState.Phase = GamePhase.Ended;
}
break;
}
}
#endregion
#region Game Actions
public void CreateLobby(Position? center = null, int impostorCount = 1, int taskCount = 5, string? password = null, double playAreaRadius = 500)
{
Send(new CreateLobby
{
PlayAreaCenter = center,
PlayAreaRadius = playAreaRadius,
ImpostorCount = impostorCount,
TaskCount = taskCount,
Password = password
});
}
public void JoinLobby(string joinCode, string? password = null)
{
Send(new JoinLobby
{
JoinCode = joinCode.ToUpperInvariant(),
Password = password
});
}
public void LeaveLobby()
{
Send(new LeaveLobby());
LobbyId = null;
JoinCode = null;
}
public void StartGame()
{
Send(new StartGame());
}
public void ReturnToLobby()
{
Send(new ReturnToLobby());
}
public void UpdatePosition(Position position)
{
MyPosition = position;
Send(new UpdatePosition { Position = position });
}
public void Kill(string targetUuid)
{
Send(new KillAttempt { TargetClientUuid = targetUuid });
}
public void ReportBody(string bodyId)
{
Send(new ReportBody { BodyId = bodyId });
}
public void CallEmergencyMeeting()
{
Send(new CallEmergencyMeeting());
}
public void Vote(string? targetUuid)
{
Send(new CastVote { TargetClientUuid = targetUuid });
}
/// <summary>
/// Pokus o dokončení tasku. Server ověří že hráč je na správné pozici.
/// </summary>
public void CompleteTask(string taskId)
{
Send(new TaskComplete { TaskId = taskId });
}
public void SendPing()
{
Send(new Ping { ClientTime = DateTimeOffset.UtcNow.ToUnixTimeMilliseconds() });
}
public void Reconnect(string lobbyId)
{
Send(new Reconnect { LobbyId = lobbyId, LastEventId = LastEventId });
}
#endregion
#region Helpers
public Body? FindNearbyBody(double maxDistance)
{
foreach (var body in Bodies)
{
if (MyPosition.DistanceTo(body.Location) <= maxDistance)
{
return body;
}
}
return null;
}
public string? FindNearbyPlayer(double maxDistance, bool aliveOnly = true)
{
foreach (var (uuid, info) in PlayerPositions)
{
if (uuid == ClientUuid) continue;
if (aliveOnly && info.State != PlayerState.Alive) continue;
if (MyPosition.DistanceTo(info.Position) <= maxDistance)
{
return uuid;
}
}
return null;
}
public GameTask? FindNearbyTask(double maxDistance)
{
foreach (var task in MyTasks)
{
if (MyPosition.DistanceTo(task.Location) <= maxDistance)
{
return task;
}
}
return null;
}
// Volat z Unity Update() pro zpracování callbacků
public void Update()
{
Dispatcher.ProcessPendingActions();
}
#endregion
public void Dispose()
{
Disconnect("Disposed");
_encryption?.Dispose();
}
}
}

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using UnityEngine;
using GeoSus.Client;
using Subsystems;
using System.Collections;
using System;
using TMPro;
/*
GameManager - hlavní tøida pro správu hry
GameManager_Network - subsystém pro správu komunikace se serverem
GameManager_Game - subsystém pro správu logiky hry (sabotáže, tasky, atd.)
GameManager_Map - subsystém pro správu mapy a prostøedí
GameManager_Input - subsystém pro správu vstupu od hráèe
GameManager_UI - subsystém pro správu uživatelského rozhraní
GamaManager_Stats - subsystém pro správu statistik pro server
*/
public class GameManager : MonoBehaviour
{
[Header("Subsystems")]
protected GameManager_Network networkSubsystem;
protected GameManager_UI uiSubsystem;
protected GameManager_Map mapSubsystem;
protected GameManager_Input inputSubsystem;
protected GameClient gameClient;
[Header("Player Info")]
public string displayName;
[Header("UI Elements")]
public Canvas JoinCreateLobby;
public Canvas InLobby;
public Canvas LoadingScreen;
public Canvas GameScreen;
[Header("Map")]
public GameObject MapCenterPoint;
public BuildingSettings buildingSettings;
public PathwaySettings pathwaySettings;
public AreaSettings areaSettings;
[Header("GPS")]
public GameObject Player;
[Header("Debug")]
public bool testMode = false;
private GameClient _secondClient;
private GameClient _thirdClient;
private GameManager_Network _secondNetwork;
private GameManager_Network _thirdNetwork;
void Start()
{
DontDestroyOnLoad(this);
if (displayName == null || displayName == "")
{
displayName = GenerateUsername();
}
if (testMode)
{
_secondClient = new GameClient(GenerateUUID(), GenerateUsername());
_secondNetwork = new GameManager_Network(_secondClient);
_thirdClient = new GameClient(GenerateUUID(), GenerateUsername());
_thirdNetwork = new GameManager_Network(_thirdClient);
_secondNetwork.OpenConection();
_thirdNetwork.OpenConection();
}
gameClient = new GameClient(GenerateUUID(), displayName);
uiSubsystem = new GameManager_UI(gameClient, JoinCreateLobby, InLobby, LoadingScreen, GameScreen);
networkSubsystem = new GameManager_Network(gameClient);
mapSubsystem = new GameManager_Map(gameClient, MapCenterPoint, buildingSettings, pathwaySettings, areaSettings);
inputSubsystem = new GameManager_Input(gameClient, Player, testMode);
networkSubsystem.OpenConection();
}
private void Update()
{
if (gameClient.CurrentLobbyState != null)
{
uiSubsystem.UpdateLobbyUI();
}
try
{
if (gameClient.CurrentLobbyState.MapDataReady)
{
mapSubsystem.BuildMap();
gameClient.CurrentLobbyState.MapDataReady = false;
}
}
catch (NullReferenceException ex) { }
inputSubsystem.positionCheck();
}
protected string GenerateUUID()
{
string UUID = System.Guid.NewGuid().ToString();
Debug.Log(UUID);
return UUID;
}
protected string GenerateUsername()
{
string Username = UnityEngine.Random.Range(0,10).ToString() + UnityEngine.Random.Range(0, 10).ToString() + UnityEngine.Random.Range(0, 10).ToString() + UnityEngine.Random.Range(0, 10).ToString();
Debug.Log(Username);
return Username;
}
public void CreateLobbyButton()
{
networkSubsystem.CrateLobby(50.7727264, 15.0719876);
if (testMode)
{
StartCoroutine(ConnectTestClients());
}
}
public void JoinLobbyButton()
{
TMP_InputField joinCode = JoinCreateLobby.transform.Find("InputCode").GetComponent<TMP_InputField>();
if (joinCode.text != null && joinCode.text != "")
{
networkSubsystem.JoinLobby(joinCode.text);
}
else
{
Debug.Log("Join code is empty!");
}
}
public void LeaveLobbyButton()
{
networkSubsystem.LeaveLobby();
}
public void StartGameButton()
{
networkSubsystem.StartGame();
}
void OnApplicationQuit()
{
gameClient.Disconnect();
_secondClient?.Disconnect();
_thirdClient?.Disconnect();
}
IEnumerator ConnectTestClients()
{
yield return new WaitForSeconds(2f);
_secondNetwork.JoinLobby(gameClient.CurrentLobbyState.JoinCode);
_thirdNetwork.JoinLobby(gameClient.CurrentLobbyState.JoinCode);
}
}

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using UnityEngine;
using GeoSus.Client;
using System;
using System.Collections;
namespace Subsystems
{
internal class CoroutineHost : MonoBehaviour
{
public CoroutineHost() { }
}
internal enum GPSState
{
Uninitialized,
Initializing,
Running,
Failed
}
/// <summary>
/// Position source backend. Selectable at runtime via the GPS overlay
/// "Source" button so the user can recover when one path misbehaves on
/// their phone:
/// Auto - JNI: subscribe to gps + network, pick most recent fix.
/// GpsOnly - JNI: subscribe to gps only (network's frequent indoor
/// fixes don't drown out the slower-but-precise gps fix).
/// NetworkOnly - JNI: subscribe to network only (cell tower / WiFi).
/// Useful indoors when no satellite lock is possible.
/// UnityInput - Unity's Input.location wrapper. Verified to hang on
/// Mi 9T / A20e (which is why JNI exists), but works on
/// newer Android where the JNI streaming-callbacks path
/// silently doesn't fire (MIUI/HyperOS battery saver,
/// approximate-vs-precise permission split, minDistance
/// gating on stationary phones).
/// EditorWasd - WASD-driven simulated position. Available regardless
/// of testMode flag so desktop builds and editor sessions
/// can navigate the map without real GPS.
/// </summary>
public enum PositionSource
{
Auto,
GpsOnly,
NetworkOnly,
UnityInput,
EditorWasd,
}
#if UNITY_ANDROID && !UNITY_EDITOR
/// <summary>
/// Bridges android.location.LocationListener to managed code. The method
/// names here must match Java's LocationListener interface exactly so
/// AndroidJavaProxy's reflection dispatcher can find them.
/// </summary>
internal class AndroidLocationProxy : AndroidJavaProxy
{
public AndroidLocationProvider Owner { get; set; }
public AndroidLocationProxy() : base("android.location.LocationListener") { }
// Called by Android each time a new fix arrives from the registered provider.
public void onLocationChanged(AndroidJavaObject location)
{
try
{
if (location == null) return;
double lat = location.Call<double>("getLatitude");
double lon = location.Call<double>("getLongitude");
long t = location.Call<long>("getTime");
string provider = "";
try { provider = location.Call<string>("getProvider"); } catch { }
// Streaming callbacks are LIVE (never cached). The cached path
// calls UpdateLocation directly with isCached=true.
Owner?.UpdateLocation(lat, lon, t, provider, isCached: false);
}
catch (Exception ex)
{
Debug.LogWarning("[GPS-JNI] onLocationChanged failed: " + ex.Message);
}
}
// Required by the LocationListener interface even if we don't use them.
// Missing methods cause java.lang.AbstractMethodError at runtime.
public void onStatusChanged(string provider, int status, AndroidJavaObject extras) { }
public void onProviderEnabled(string provider) { }
public void onProviderDisabled(string provider) { }
}
/// <summary>
/// Direct wrapper around android.location.LocationManager via JNI, used as
/// a replacement for Unity's Input.location on Android when the user picks
/// Auto/GpsOnly/NetworkOnly. Subscribed providers are configurable so the
/// position-source picker can rewire live without restart.
/// </summary>
internal class AndroidLocationProvider
{
private AndroidJavaObject _activity;
private AndroidJavaObject _locationManager;
private AndroidLocationProxy _gpsListener;
private AndroidLocationProxy _networkListener;
private double _lat, _lon;
private long _lastTimeMillis;
private long _lastLiveTimeMillis; // Time of most recent NON-cached fix.
private bool _hasFix;
private bool _hasLiveFix; // True once any streaming callback fired.
private string _activeProvider = "";
// Captured at Initialize() so the diagnostic can report
// "GPS provider DISABLED, only network enabled" etc.
private bool _gpsProviderEnabled;
private bool _networkProviderEnabled;
private bool _gpsLastKnownExists;
private bool _networkLastKnownExists;
private string _enabledProvidersList = "";
// Subscription scope - set in Initialize, used in Shutdown to know
// which listeners we registered.
private bool _subscribedGps;
private bool _subscribedNetwork;
public bool HasFix => _hasFix;
public bool HasLiveFix => _hasLiveFix;
public long LastLiveTimeMillis => _lastLiveTimeMillis;
public long LastTimeMillis => _lastTimeMillis;
public double Lat => _lat;
public double Lon => _lon;
public string ActiveProvider => _activeProvider;
public bool GpsProviderEnabled => _gpsProviderEnabled;
public bool NetworkProviderEnabled => _networkProviderEnabled;
public bool GpsLastKnownExists => _gpsLastKnownExists;
public bool NetworkLastKnownExists => _networkLastKnownExists;
public string EnabledProvidersList => _enabledProvidersList;
public bool SubscribedGps => _subscribedGps;
public bool SubscribedNetwork => _subscribedNetwork;
public bool Initialize(out string error, bool useGps, bool useNetwork)
{
error = "";
try
{
using (var unityPlayer = new AndroidJavaClass("com.unity3d.player.UnityPlayer"))
{
_activity = unityPlayer.GetStatic<AndroidJavaObject>("currentActivity");
}
if (_activity == null) { error = "no current activity"; return false; }
_locationManager = _activity.Call<AndroidJavaObject>("getSystemService", "location");
if (_locationManager == null) { error = "getSystemService(\"location\") returned null"; return false; }
// Capture provider enable state up front so the diagnostic
// can distinguish "provider disabled at OS level" from
// "provider enabled but produced no fix yet".
_gpsProviderEnabled = SafeIsProviderEnabled("gps");
_networkProviderEnabled = SafeIsProviderEnabled("network");
_enabledProvidersList = SafeGetEnabledProviders();
Debug.Log($"[GPS-JNI] init useGps={useGps} useNetwork={useNetwork} gps enabled={_gpsProviderEnabled} network enabled={_networkProviderEnabled} all enabled=[{_enabledProvidersList}]");
// Try cached last-known fixes from the providers we're about
// to subscribe to. If the OS already knows where we are
// (e.g. from another app that recently used GPS), we get a
// fix at zero cost and zero wait time. Tagged isCached so
// the diagnostic can mark them and we know we still need
// to wait for a streaming callback.
if (useNetwork) TryLastKnown("network", out _networkLastKnownExists);
if (useGps) TryLastKnown("gps", out _gpsLastKnownExists);
_subscribedGps = useGps;
_subscribedNetwork = useNetwork;
if (useGps) _gpsListener = new AndroidLocationProxy { Owner = this };
if (useNetwork) _networkListener = new AndroidLocationProxy { Owner = this };
// requestLocationUpdates must be called on a thread with a
// Looper. Use the Activity's UI thread, which always has one.
// minTime=1000ms, minDistance=0f - we want updates on every
// fix the OS produces. Previously this was 1f which gated
// out updates from a stationary phone (MIUI/newer Android
// are stricter about this and that's the suspected cause of
// "via gps (cached)" sticking forever).
_activity.Call("runOnUiThread", new AndroidJavaRunnable(() =>
{
if (useGps)
{
try { _locationManager.Call("requestLocationUpdates", "gps", 1000L, 0f, _gpsListener); }
catch (Exception ex) { Debug.LogWarning("[GPS-JNI] gps subscribe failed: " + ex.Message); }
}
if (useNetwork)
{
try { _locationManager.Call("requestLocationUpdates", "network", 1000L, 0f, _networkListener); }
catch (Exception ex) { Debug.LogWarning("[GPS-JNI] network subscribe failed: " + ex.Message); }
}
}));
return true;
}
catch (Exception ex)
{
error = "JNI init exception: " + ex.Message;
return false;
}
}
void TryLastKnown(string provider, out bool nonNullReturned)
{
nonNullReturned = false;
try
{
var loc = _locationManager.Call<AndroidJavaObject>("getLastKnownLocation", provider);
if (loc != null)
{
nonNullReturned = true;
double lat = loc.Call<double>("getLatitude");
double lon = loc.Call<double>("getLongitude");
long t = loc.Call<long>("getTime");
UpdateLocation(lat, lon, t, provider, isCached: true);
}
}
catch (Exception ex)
{
Debug.LogWarning($"[GPS-JNI] getLastKnownLocation({provider}) failed: " + ex.Message);
}
}
bool SafeIsProviderEnabled(string provider)
{
try
{
return _locationManager.Call<bool>("isProviderEnabled", provider);
}
catch (Exception ex)
{
Debug.LogWarning($"[GPS-JNI] isProviderEnabled({provider}) failed: " + ex.Message);
return false;
}
}
// Build a comma-separated list of currently-enabled providers via
// LocationManager.getProviders(true). We iterate the returned
// java.util.List by index because AndroidJavaObject does not
// implement IEnumerable.
string SafeGetEnabledProviders()
{
try
{
var list = _locationManager.Call<AndroidJavaObject>("getProviders", true);
if (list == null) return "";
int size = list.Call<int>("size");
var parts = new System.Text.StringBuilder();
for (int i = 0; i < size; i++)
{
var name = list.Call<string>("get", i);
if (i > 0) parts.Append(",");
parts.Append(name);
}
return parts.ToString();
}
catch (Exception ex)
{
Debug.LogWarning("[GPS-JNI] getProviders failed: " + ex.Message);
return "";
}
}
public void UpdateLocation(double lat, double lon, long timeMillis, string provider, bool isCached)
{
// Ignore older fixes if a newer one is already in hand. This lets
// both gps + network listeners feed us without ping-ponging
// between stale and fresh data.
if (timeMillis < _lastTimeMillis) return;
_lat = lat;
_lon = lon;
_lastTimeMillis = timeMillis;
// Active-provider name carries cached/live state in the diagnostic
// banner so the user can see at a glance whether streaming has
// kicked in or we're still on the initial cached snapshot.
_activeProvider = (provider ?? "") + (isCached ? " (cached)" : "");
_hasFix = true;
if (!isCached)
{
_hasLiveFix = true;
_lastLiveTimeMillis = timeMillis;
}
}
public void Shutdown()
{
try
{
if (_locationManager != null)
{
if (_gpsListener != null) _locationManager.Call("removeUpdates", _gpsListener);
if (_networkListener != null) _locationManager.Call("removeUpdates", _networkListener);
}
}
catch (Exception ex)
{
Debug.LogWarning("[GPS-JNI] Shutdown failed: " + ex.Message);
}
_gpsListener = null;
_networkListener = null;
_locationManager = null;
_activity = null;
}
}
#endif
public static class PositonExtensions
{
public static Position ToLocal(this Position position, Position center)
{
double latDiff = position.Lat - center.Lat;
double lonDiff = position.Lon - center.Lon;
double metersPerDegreeLat = 111320.0;
double metersPerDegreeLon = 111320.0 * Math.Cos(center.Lat * Math.PI / 180.0);
float x = (float)(lonDiff * metersPerDegreeLon);
float z = (float)(latDiff * metersPerDegreeLat);
return new Position(z, x);
}
public static Vector3 ToLocalVector3(this Position position, Position center)
{
return position.ToLocal(center).ToVector3(); //TODO: Implementace v subsystemech
}
public static Vector3 ToVector3(this Position position)
{
return new Vector3((float)position.Lon, 0, (float)position.Lat); //TODO: Implementace v subsystemech
}
public static double DistanceTo(this Vector3 pos, Vector3 other)
{
return Math.Sqrt((other.x - pos.x) * (other.x - pos.x) + (other.z - pos.z) * (other.z - pos.z));
}
}
public class GameManager_Input
{
private GameClient _gameClient;
private Position _currentPosition;
private Position _lastSentPosition;
private GameObject _player;
private bool _testMode;
// PlayerPrefs key for the user's chosen position source. Persists
// across app restarts so a user who flipped to UnityInput because
// their phone hated the JNI path doesn't have to flip again every
// launch.
private const string PrefsSourceKey = "PositionSource_v1";
private PositionSource _currentSource = PositionSource.Auto;
// When the multi-client editor test mode picks a non-host bot as
// active, we need the host's WASD path to NOT also move. Set true
// by GameManager when active slot != 0.
public bool SuppressWasd = false;
private GPSState _GPSState = GPSState.Uninitialized;
private float _speed = 0.00001f;
private Position _mapCenter;
private CoroutineHost _coroutineHost;
private int _gpsRetryCount = 0;
private const int _maxGpsRetries = 5;
private float _lastPositionSendTime;
private const float _positionKeepAliveSeconds = 1.0f;
// Diagnostic state. We capture *why* GPS init failed so the UI can
// surface it to the user without requiring logcat. Older Android
// phones (Mi 9T, A20e) hit silent failure modes that are impossible
// to distinguish from "still warming up" without this.
private string _lastGpsError = "";
private float _gpsInitStartTime = -1f;
// Bump from the original 20s. Cold-start GPS on older Android can
// easily exceed 20s indoors or under cloud cover - by the time the
// user notices nothing is happening, we've already given up.
private const int _gpsInitTimeoutSeconds = 60;
#if UNITY_ANDROID && !UNITY_EDITOR
// JNI-backed location provider, used for Auto/GpsOnly/NetworkOnly.
// UnityInput uses Input.location instead and leaves this null.
private AndroidLocationProvider _androidProvider;
#endif
/// <summary>Last known GPS position (for CreateLobby centre point)</summary>
public Position? LastKnownPosition => _currentPosition.Lat != 0 || _currentPosition.Lon != 0 ? _currentPosition : (Position?)null;
/// <summary>Current GPS state machine value (debug/diagnostic).</summary>
public string GpsStateName => _GPSState.ToString();
/// <summary>Last GPS error reason captured during init (empty if none).</summary>
public string LastGpsError => _lastGpsError ?? "";
/// <summary>Retry count out of max (debug/diagnostic).</summary>
public string GpsRetryProgress => $"{_gpsRetryCount}/{_maxGpsRetries}";
/// <summary>Currently selected position source (for UI cycle button).</summary>
public PositionSource CurrentSource => _currentSource;
/// <summary>Display name for the current source (for UI label).</summary>
public string CurrentSourceName
{
get
{
switch (_currentSource)
{
case PositionSource.Auto: return "Auto (GPS+Net)";
case PositionSource.GpsOnly: return "GPS only";
case PositionSource.NetworkOnly: return "Network only";
case PositionSource.UnityInput: return "Unity Input";
case PositionSource.EditorWasd: return "WASD";
default: return _currentSource.ToString();
}
}
}
/// <summary>
/// Human-readable one-line GPS status for on-screen overlay. Designed
/// to be visible without ADB so users can self-diagnose permission
/// vs. timeout vs. device-disabled vs. running-but-no-fix-yet.
/// </summary>
public string GpsDiagnostic
{
get
{
if (_currentSource == PositionSource.EditorWasd)
{
if (_currentPosition.Lat == 0 && _currentPosition.Lon == 0)
return "WASD: waiting for map center";
return $"WASD lat={_currentPosition.Lat:F5} lon={_currentPosition.Lon:F5}";
}
switch (_GPSState)
{
case GPSState.Uninitialized:
return "Uninitialized (will start on first lobby action)";
case GPSState.Initializing:
{
float elapsed = _gpsInitStartTime >= 0 ? Time.time - _gpsInitStartTime : 0;
string providers = "";
#if UNITY_ANDROID && !UNITY_EDITOR
if (_androidProvider != null && !string.IsNullOrEmpty(_androidProvider.EnabledProvidersList))
providers = $" providers=[{_androidProvider.EnabledProvidersList}]";
#endif
return $"Initializing ({elapsed:F1}s / max {_gpsInitTimeoutSeconds}s){providers}";
}
case GPSState.Running:
{
string suffix = "";
#if UNITY_ANDROID && !UNITY_EDITOR
if (_androidProvider != null)
{
string p = _androidProvider.ActiveProvider;
if (!string.IsNullOrEmpty(p)) suffix = " via " + p;
// Show how stale the most recent fix is (ms-level
// resolution) so "stuck on cached" is obvious at
// a glance: "via gps (cached) [no live, 47s old]".
if (!_androidProvider.HasLiveFix)
{
long now = (long)(DateTime.UtcNow - new DateTime(1970, 1, 1, 0, 0, 0, DateTimeKind.Utc)).TotalMilliseconds;
long ageMs = now - _androidProvider.LastTimeMillis;
if (_androidProvider.LastTimeMillis > 0 && ageMs > 0)
suffix += $" [no live, {ageMs / 1000}s old]";
else
suffix += " [no live]";
}
else
{
long now = (long)(DateTime.UtcNow - new DateTime(1970, 1, 1, 0, 0, 0, DateTimeKind.Utc)).TotalMilliseconds;
long ageMs = now - _androidProvider.LastLiveTimeMillis;
if (ageMs > 5000) suffix += $" [live {ageMs / 1000}s old]";
}
}
#endif
if (_currentPosition.Lat == 0 && _currentPosition.Lon == 0)
return "Running but no fix yet (waiting for satellites)" + suffix;
return $"Running lat={_currentPosition.Lat:F5} lon={_currentPosition.Lon:F5}" + suffix;
}
case GPSState.Failed:
return $"Failed: {(_lastGpsError ?? "unknown")} (retries {GpsRetryProgress})";
default:
return "?";
}
}
}
public GameManager_Input(GameClient gameClient, GameObject player, bool testMode)
{
_gameClient = gameClient;
_player = player;
_testMode = testMode;
// CoroutineHost needs a MonoBehaviour on a real GameObject
var hostGO = new UnityEngine.GameObject("_CoroutineHost");
UnityEngine.Object.DontDestroyOnLoad(hostGO);
_coroutineHost = hostGO.AddComponent<CoroutineHost>();
// Restore the user's last picked source. Default depends on
// platform: editor defaults to EditorWasd (no GPS hardware in
// editor anyway); device defaults to Auto.
string saved = PlayerPrefs.GetString(PrefsSourceKey, "");
if (!string.IsNullOrEmpty(saved) && Enum.TryParse(saved, out PositionSource parsed))
{
_currentSource = parsed;
}
else
{
#if UNITY_EDITOR
_currentSource = PositionSource.EditorWasd;
#else
_currentSource = PositionSource.Auto;
#endif
}
// Legacy testMode flag forces EditorWasd. New code paths should
// use SwitchPositionSource(EditorWasd) instead, but we keep the
// old behavior for backward compatibility with the inspector flag.
if (_testMode) _currentSource = PositionSource.EditorWasd;
}
/// <summary>Called from OnSceneLoaded when Client.unity loads so the
/// Player capsule (which lives in Client.unity) can be wired at runtime.</summary>
public void SetPlayerObject(GameObject player) { _player = player; }
/// <summary>
/// Switch the active position source backend live. Tears down the
/// current backend's listeners (JNI proxies, Input.location), resets
/// the state machine, and kicks off init for the new source. Persists
/// the choice to PlayerPrefs.
/// </summary>
public void SwitchPositionSource(PositionSource newSource)
{
if (_currentSource == newSource) return;
Debug.Log($"[GPS] SwitchPositionSource {_currentSource} -> {newSource}");
// Tear down whatever's running.
ShutdownCurrentBackend();
_currentSource = newSource;
PlayerPrefs.SetString(PrefsSourceKey, newSource.ToString());
PlayerPrefs.Save();
_GPSState = GPSState.Uninitialized;
_gpsRetryCount = 0;
_lastGpsError = "";
_gpsInitStartTime = -1f;
// Don't clear _currentPosition - the user has presumably been
// playing somewhere. Map markers/avatar position can stay until
// the next fix arrives from the new source.
EnsureGPSStarted();
}
/// <summary>Cycle through the available sources for tap-to-cycle UI.</summary>
public void CycleNextPositionSource()
{
var values = (PositionSource[])Enum.GetValues(typeof(PositionSource));
int idx = Array.IndexOf(values, _currentSource);
var next = values[(idx + 1) % values.Length];
SwitchPositionSource(next);
}
private void ShutdownCurrentBackend()
{
#if UNITY_ANDROID && !UNITY_EDITOR
if (_androidProvider != null)
{
_androidProvider.Shutdown();
_androidProvider = null;
}
#endif
// Stop Unity Input.location too, in case it was running.
try { Input.location.Stop(); } catch { }
}
/// <summary>
/// Kick off GPS initialization if it hasn't started yet. Safe to call
/// repeatedly. Hosts must call this from the lobby setup screen so
/// that by the time they click "Create Lobby" we have a real GPS
/// fix to use as the play-area center, instead of falling back to
/// the hardcoded coordinates.
/// </summary>
public void EnsureGPSStarted()
{
if (_currentSource == PositionSource.EditorWasd) return;
if (_coroutineHost == null) return;
// Allow tapping "Create Lobby" again (or any caller of this
// method) to retry from Failed up to _maxGpsRetries times.
if (_GPSState == GPSState.Uninitialized)
{
_coroutineHost.StartCoroutine(InitiallizeGPS());
}
else if (_GPSState == GPSState.Failed && _gpsRetryCount < _maxGpsRetries)
{
_gpsRetryCount++;
_coroutineHost.StartCoroutine(InitiallizeGPS());
}
}
public void positionCheck()
{
var state = _gameClient?.CurrentLobbyState;
if (state == null || state.Phase != GamePhase.Playing)
return;
try
{
if (_currentSource == PositionSource.EditorWasd)
{
if (_currentPosition == new Position(0, 0))
{
if (state.MapData == null)
return;
//Init blok
_currentPosition = state.MapData.Center;
_mapCenter = state.MapData.Center;
_lastSentPosition = _currentPosition;
}
if (!SuppressWasd)
TestPlayerPosition();
else
TrySendCurrentPosition(); // keep-alive only
}
else
{
if (_GPSState == GPSState.Uninitialized)
{
_coroutineHost.StartCoroutine(InitiallizeGPS());
return;
}
else if (_GPSState == GPSState.Initializing)
{
return;
}
else if (_GPSState == GPSState.Running)
{
EnsureMapCenter();
TrySendCurrentPosition();
}
else
{
Debug.Log("GPS failed, trying again...");
if (_gpsRetryCount < _maxGpsRetries)
{
_gpsRetryCount++;
_GPSState = GPSState.Uninitialized;
}
else
{
Debug.LogWarning("GPS unavailable after max retries. Using last known position.");
// Keep _GPSState = Failed so we stop retrying
}
}
}
}
catch (Exception ex)
{
Debug.LogWarning($"[Input] positionCheck failed: {ex.Message}");
}
}
private void EnsureMapCenter()
{
if (_mapCenter.Lat != 0 || _mapCenter.Lon != 0)
return;
var md = _gameClient?.CurrentLobbyState?.MapData;
if (md != null)
_mapCenter = md.Center;
}
private void TrySendCurrentPosition()
{
bool moved = _currentPosition != _lastSentPosition;
bool keepAliveDue = (Time.time - _lastPositionSendTime) >= _positionKeepAliveSeconds;
if (!moved && !keepAliveDue)
return;
var previous = _lastSentPosition;
_gameClient.UpdatePosition(_currentPosition);
_lastSentPosition = _currentPosition;
_lastPositionSendTime = Time.time;
if (_player == null || (_mapCenter.Lat == 0 && _mapCenter.Lon == 0))
return;
var localCurrent = _currentPosition.ToLocalVector3(_mapCenter);
_player.transform.position = localCurrent;
if (previous.Lat == 0 && previous.Lon == 0)
return;
var heading = CalculateHeading(previous.ToLocalVector3(_mapCenter), localCurrent);
if (heading.HasValue)
_player.transform.rotation = Quaternion.Euler(0, (float)heading.Value, 0);
}
private void TestPlayerPosition()
{
double x = Input.GetAxis("Horizontal");
double y = Input.GetAxis("Vertical");
_currentPosition = new Position( _lastSentPosition.Lat + y * _speed, _lastSentPosition.Lon + x * _speed);
var localCurrent = _currentPosition.ToLocalVector3(_mapCenter);
var heading = CalculateHeading(_lastSentPosition.ToLocalVector3(_mapCenter), localCurrent);
if (heading != null)
{
if (_player != null)
_player.transform.rotation = Quaternion.Euler(0, (float)heading, 0);
}
if (_player != null)
_player.transform.position = localCurrent;
try
{
TrySendCurrentPosition();
}
catch
{
_gameClient.UpdatePosition(_currentPosition);
_lastSentPosition = _currentPosition;
}
}
private double? CalculateHeading(Vector3 first, Vector3 second)
{
if ((first - second).magnitude < 0.0001f) return null;
float dx = second.x - first.x;
float dz = second.z - first.z;
float heading = Mathf.Atan2(dx, dz) * Mathf.Rad2Deg;
if (heading < 0) heading += 360f;
return heading;
}
IEnumerator InitiallizeGPS()
{
_GPSState = GPSState.Initializing;
_gpsInitStartTime = Time.time;
_lastGpsError = "";
#if UNITY_ANDROID
// Request fine location permission if not already granted.
// On Android 12+ a "precise" toggle exists separately from coarse,
// but Unity's FineLocation request covers both for our purposes.
if (!UnityEngine.Android.Permission.HasUserAuthorizedPermission(UnityEngine.Android.Permission.FineLocation))
{
UnityEngine.Android.Permission.RequestUserPermission(UnityEngine.Android.Permission.FineLocation);
// Wait up to 10 seconds for user to respond to the permission dialog
float waited = 0f;
while (!UnityEngine.Android.Permission.HasUserAuthorizedPermission(UnityEngine.Android.Permission.FineLocation) && waited < 10f)
{
yield return new WaitForSeconds(0.5f);
waited += 0.5f;
}
if (!UnityEngine.Android.Permission.HasUserAuthorizedPermission(UnityEngine.Android.Permission.FineLocation))
{
_lastGpsError = "Permission denied (fine location)";
Debug.LogError("[GPS] " + _lastGpsError);
_GPSState = GPSState.Failed;
yield break;
}
}
#endif
#if UNITY_ANDROID && !UNITY_EDITOR
// Choose subscription scope based on selected source. UnityInput
// skips JNI entirely and falls through to the Input.location path
// below (the same path iOS / editor use).
if (_currentSource == PositionSource.Auto ||
_currentSource == PositionSource.GpsOnly ||
_currentSource == PositionSource.NetworkOnly)
{
bool useGps = (_currentSource != PositionSource.NetworkOnly);
bool useNetwork = (_currentSource != PositionSource.GpsOnly);
if (_androidProvider != null)
{
_androidProvider.Shutdown();
_androidProvider = null;
}
_androidProvider = new AndroidLocationProvider();
if (!_androidProvider.Initialize(out var initError, useGps, useNetwork))
{
_lastGpsError = "Native LocationManager failed: " + initError;
Debug.LogError("[GPS] " + _lastGpsError);
_androidProvider = null;
_GPSState = GPSState.Failed;
yield break;
}
// Fast-fail if neither subscribed provider is enabled at OS
// level. Waiting 60s for fixes from disabled providers is
// pointless - tell the user immediately what's wrong.
bool anyUsableEnabled =
(useGps && _androidProvider.GpsProviderEnabled) ||
(useNetwork && _androidProvider.NetworkProviderEnabled);
if (!anyUsableEnabled)
{
string which = useGps && useNetwork ? "gps + network"
: useGps ? "gps"
: "network";
_lastGpsError = $"{which} provider DISABLED at OS level. Open Settings > Location and switch it ON. Or tap [Source] to try a different backend.";
Debug.LogError("[GPS] " + _lastGpsError);
_androidProvider.Shutdown();
_androidProvider = null;
_GPSState = GPSState.Failed;
yield break;
}
// Wait for the first fix (cached or live).
int maxWaitJni = _gpsInitTimeoutSeconds;
while (!_androidProvider.HasFix && maxWaitJni > 0)
{
yield return new WaitForSeconds(1);
maxWaitJni--;
}
if (!_androidProvider.HasFix)
{
string enabled = _androidProvider.EnabledProvidersList ?? "";
string gpsState = _androidProvider.GpsProviderEnabled ? "ON" : "OFF";
string netState = _androidProvider.NetworkProviderEnabled ? "ON" : "OFF";
string lastKnown = $"lastKnown[gps={(_androidProvider.GpsLastKnownExists ? "yes" : "no")}, net={(_androidProvider.NetworkLastKnownExists ? "yes" : "no")}]";
_lastGpsError = $"Timeout {_gpsInitTimeoutSeconds}s on {_currentSource}. enabled=[{enabled}] gps={gpsState} net={netState} {lastKnown}. Try [Source] cycle to switch backends.";
Debug.LogError("[GPS] " + _lastGpsError);
_androidProvider.Shutdown();
_androidProvider = null;
_GPSState = GPSState.Failed;
yield break;
}
_currentPosition = new Position(_androidProvider.Lat, _androidProvider.Lon);
_GPSState = GPSState.Running;
_gpsRetryCount = 0;
_coroutineHost.StartCoroutine(AndroidGPSService());
yield break;
}
// _currentSource == UnityInput on Android: fall through to the
// Input.location path below. This is the recovery path for
// newer Android phones where JNI's streaming-callbacks don't
// fire (MIUI/HyperOS background restrictions, approximate-vs-
// precise permission, minDistance gating on stationary phones).
#endif
// iOS / editor / non-Android / Android-with-UnityInput-source:
// use Unity's Input.location.
if (!Input.location.isEnabledByUser)
{
_lastGpsError = "Location services not enabled by user";
Debug.LogError("[GPS] " + _lastGpsError);
_GPSState = GPSState.Failed;
yield break;
}
float desiredAccuracyInMeters = 5f;
float updateDistanceInMeters = 1f;
Input.location.Start(desiredAccuracyInMeters, updateDistanceInMeters);
int maxWait = _gpsInitTimeoutSeconds;
while (Input.location.status == LocationServiceStatus.Initializing && maxWait > 0)
{
yield return new WaitForSeconds(1);
maxWait--;
}
if (maxWait < 1)
{
_lastGpsError = $"Timed out after {_gpsInitTimeoutSeconds}s waiting for first fix (try moving outdoors, or tap [Source] to try a different backend)";
Debug.LogError("[GPS] " + _lastGpsError);
_GPSState = GPSState.Failed;
yield break;
}
if (Input.location.status == LocationServiceStatus.Failed)
{
_lastGpsError = "Unity Input.location reported Failed status";
Debug.LogError("[GPS] " + _lastGpsError);
_GPSState = GPSState.Failed;
yield break;
}
_GPSState = GPSState.Running;
_gpsRetryCount = 0;
_coroutineHost.StartCoroutine(GPSService());
}
#if UNITY_ANDROID && !UNITY_EDITOR
/// <summary>
/// Mirrors the JNI provider's most recent fix into _currentPosition
/// every 0.5s so the rest of the game (which polls _currentPosition
/// indirectly via LastKnownPosition / TrySendCurrentPosition) keeps
/// working unchanged. Replaces GPSService on Android.
/// </summary>
IEnumerator AndroidGPSService()
{
while (_GPSState == GPSState.Running && _androidProvider != null)
{
if (_androidProvider.HasFix)
{
_currentPosition = new Position(_androidProvider.Lat, _androidProvider.Lon);
}
yield return new WaitForSeconds(0.5f);
}
// Loop ended (state != Running or provider disposed). Clean up
// listeners so we don't leak across retries.
if (_androidProvider != null)
{
_androidProvider.Shutdown();
_androidProvider = null;
}
}
#endif
IEnumerator GPSService()
{
while (_GPSState == GPSState.Running)
{
if (Input.location.status == LocationServiceStatus.Failed)
{
_lastGpsError = "Location service died after init (provider stopped)";
Debug.LogError("[GPS] " + _lastGpsError);
_GPSState = GPSState.Failed;
yield break;
}
// Keep current GPS position fresh; sending is throttled in positionCheck().
var data = Input.location.lastData;
_currentPosition = new Position(data.latitude, data.longitude);
yield return new WaitForSeconds(0.5f);
}
}
}
}

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using GeoSus.Client;
using System;
using System.Collections;
using System.Collections.Generic;
using System.Globalization;
using UnityEditor;
using UnityEngine;
using UnityEngine.UI;
namespace Subsystems{
[System.Serializable]
public class BuildingSettings
{
public Material ResidentalBuildingsMat;
public float ResidentalBuildingHeight;
public Material CommercialBuildingsMat;
public float CommercialBuildingHeight;
public Material IndustrialBuildingsMat;
public float IndustrialBuildingHeight;
public Material DefaultBuildingMat;
public float DefaultBuildingHeight;
}
[System.Serializable]
public class PathwaySettings
{
public Material FootwayMat;
public float FootwayWidth;
public Material PathMat;
public float PathWidth;
public Material StepsMat;
public float StepsWidth;
public Material CyclewayMat;
public float CyclewayWidth;
public Material PedestrianMat;
public float PedestrianWidth;
public Material RoadMat;
public float RoadWidth;
public Material ServiceMat;
public float ServiceWidth;
public Material ResidentialMat;
public float ResidentialWidth;
public Material TrackMat;
public float TrackWidth;
public Material DefaultMat;
public float DefaultWidth;
}
[System.Serializable]
public class AreaSettings
{
public Material ParkMat;
public Material GardenMat;
public Material PlaygroundMat;
public Material ForestMat;
public Material GrassMat;
public Material WaterMat;
public Material DefaultMat;
}
public class GameManager_Map
{
private GameClient _gameClient;
private GameObject _mapCenterPoint;
private Position _centerPosition;
private BuildingSettings _buildingSettings;
private PathwaySettings _pathwaySettings;
private AreaSettings _areaSettings;
private const float _metersPerUnit = 1f;
public GameManager_Map(GameClient gameClient, GameObject mapCenterPoint, BuildingSettings buildingSettings, PathwaySettings pathwaySettings, AreaSettings areaSettings)
{
_gameClient = gameClient;
_mapCenterPoint = mapCenterPoint;
_buildingSettings = buildingSettings;
_pathwaySettings = pathwaySettings;
_areaSettings = areaSettings;
}
public void BuildMap()
{
ClearChildren();
_centerPosition = _gameClient.CurrentLobbyState.MapData.Center;
GameObject buildingsRoot = new GameObject("Buildings");
buildingsRoot.transform.parent = _mapCenterPoint.transform;
GameObject pathRoot = new GameObject("Pathways");
pathRoot.transform.parent = _mapCenterPoint.transform;
GameObject areaRoot = new GameObject("Areas");
areaRoot.transform.parent = _mapCenterPoint.transform;
foreach (var building in _gameClient.CurrentLobbyState.MapData.GetBuildings())
{
string buildingType = "Unknown";
try
{
buildingType = _gameClient.CurrentLobbyState.MapData.BuildingTypes[_gameClient.CurrentLobbyState.MapData.GetBuildings().IndexOf(building)];
}
catch (Exception ex) { Debug.Log($"Error: {ex.Message}"); }
building.Name = buildingType;
GameObject b = BuildBuildingMesh(building);
b.transform.parent = buildingsRoot.transform;
}
foreach (var path in _gameClient.CurrentLobbyState.MapData.GetPathways())
{
GameObject p = BuildPathwayMesh(path);
p.transform.parent = pathRoot.transform;
}
foreach (var area in _gameClient.CurrentLobbyState.MapData.GetAreas())
{
GameObject a = BuildAreaMesh(area);
a.transform.parent = areaRoot.transform;
}
//TODO: POIs
}
void ClearChildren()
{
List<GameObject> toDestroy = new List<GameObject>();
foreach (Transform t in _mapCenterPoint.transform)
toDestroy.Add(t.gameObject);
foreach (var g in toDestroy)
{
UnityEngine.Object.DestroyImmediate(g);
}
}
#region Mesh Building
GameObject BuildBuildingMesh(MapBuilding b)
{
var building = new GameObject($"Building_{b.Name ?? "Unknown"}");
// Výpočet středu budovy
Vector3 center = CalculatePolygonCenter(b.Outline);
building.transform.position = center;
// Vytvoření mesh pro budovu
MeshFilter meshFilter = building.AddComponent<MeshFilter>();
MeshRenderer meshRenderer = building.AddComponent<MeshRenderer>();
float height;
Material mat;
switch (b.BuildingType.ToLower())
{
case "residential":
mat = _buildingSettings.ResidentalBuildingsMat;
height = _buildingSettings.ResidentalBuildingHeight;
break;
case "commercial":
mat = _buildingSettings.CommercialBuildingsMat;
height = _buildingSettings.CommercialBuildingHeight;
break;
case "industrial":
mat = _buildingSettings.IndustrialBuildingsMat;
height = _buildingSettings.IndustrialBuildingHeight;
break;
default:
mat = _buildingSettings.DefaultBuildingMat;
height = _buildingSettings.DefaultBuildingHeight;
break;
}
Mesh mesh = CreateExtrudedPolygonMesh(b.Outline, height);
meshFilter.mesh = mesh;
//TODO: material by type
// Použijeme barvu podle typu budovy
meshRenderer.material = mat;
// Přidání collideru pro interakci
building.AddComponent<MeshCollider>();
return building;
}
GameObject BuildPathwayMesh(MapPathway w)
{
var path = new GameObject($"Path_{w.Name ?? "Unknown"}");
// Použijeme LineRenderer pro jednoduchost
LineRenderer line = path.AddComponent<LineRenderer>();
float width;
Material mat;
switch (w.PathType)
{
case PathType.Footway:
mat = _pathwaySettings.FootwayMat;
width = _pathwaySettings.FootwayWidth;
break;
case PathType.Path:
mat = _pathwaySettings.PathMat;
width = _pathwaySettings.PathWidth;
break;
case PathType.Steps:
mat = _pathwaySettings.StepsMat;
width = _pathwaySettings.PathWidth;
break;
case PathType.Cycleway:
mat = _pathwaySettings.CyclewayMat;
width = _pathwaySettings.CyclewayWidth;
break;
case PathType.Pedestrian:
mat = _pathwaySettings.PedestrianMat;
width = _pathwaySettings.PedestrianWidth;
break;
case PathType.Road:
mat = _pathwaySettings.RoadMat;
width = _pathwaySettings.RoadWidth;
break;
case PathType.Service:
mat = _pathwaySettings.ServiceMat;
width = _pathwaySettings.ServiceWidth;
break;
case PathType.Residential:
mat = _pathwaySettings.ResidentialMat;
width = _pathwaySettings.ResidentialWidth;
break;
case PathType.Track:
mat = _pathwaySettings.TrackMat;
width = _pathwaySettings.TrackWidth;
break;
default:
mat = _pathwaySettings.DefaultMat;
width = _pathwaySettings.DefaultWidth;
break;
}
line.material = mat;
line.widthMultiplier = width;
// Nastavení bodů cesty
line.positionCount = w.Points.Count;
for (int i = 0; i < w.Points.Count; i++)
{
Vector3 pos = w.Points[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center);
pos.y = 0.1f; // Mírně nad zemí
line.SetPosition(i, pos);
}
return path;
}
GameObject BuildAreaMesh(MapArea a)
{
var area = new GameObject($"Area_{a.Name ?? "Unknown"}");
MeshFilter meshFilter = area.AddComponent<MeshFilter>();
MeshRenderer meshRenderer = area.AddComponent<MeshRenderer>();
// Vytvoření plochého mesh
Mesh mesh = CreateFlatPolygonMesh(a.Outline);
meshFilter.mesh = mesh;
Material mat;
switch (a.AreaType)
{
case MapAreaType.Park:
mat = _areaSettings.ParkMat;
break;
case MapAreaType.Garden:
mat = _areaSettings.GardenMat;
break;
case MapAreaType.Playground:
mat = _areaSettings.PlaygroundMat;
break;
case MapAreaType.Forest:
mat = _areaSettings.ForestMat;
break;
case MapAreaType.Grass:
mat = _areaSettings.GrassMat;
break;
case MapAreaType.Water:
mat = _areaSettings.WaterMat;
break;
default:
mat = _areaSettings.DefaultMat;
break;
}
meshRenderer.material = mat;
area.transform.position = new Vector3(0, 0.05f, 0); // Těsně nad zemí
return area;
}
//TODO: POIs
#endregion
#region Polygon Utils
private Vector3 CalculatePolygonCenter(List<Position> points)
{
Vector3 center = Vector3.zero;
foreach (var point in points)
{
center += point.ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center);
}
return center / points.Count;
}
private Mesh CreateExtrudedPolygonMesh(List<Position> outline, float height)
{
Mesh mesh = new Mesh();
int vertexCount = outline.Count;
// Vertices - spodní a horní podstava
Vector3[] vertices = new Vector3[vertexCount * 2];
Vector3 center = CalculatePolygonCenter(outline);
for (int i = 0; i < vertexCount; i++)
{
Vector3 pos = outline[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center) - center;
vertices[i] = pos; // Spodní
vertices[i + vertexCount] = pos + Vector3.up * height; // Horní
}
// Triangles - jen boční stěny pro jednoduchost
List<int> triangles = new List<int>();
for (int i = 0; i < vertexCount; i++)
{
int next = (i + 1) % vertexCount;
// Boční stěna - dva trojúhelníky
triangles.Add(i);
triangles.Add(i + vertexCount);
triangles.Add(next);
triangles.Add(next);
triangles.Add(i + vertexCount);
triangles.Add(next + vertexCount);
}
// Horní podstava - zjednodušená triangulace (fan)
if (vertexCount >= 3)
{
for (int i = 1; i < vertexCount - 1; i++)
{
triangles.Add(vertexCount); // Střed (první bod horní)
triangles.Add(vertexCount + i);
triangles.Add(vertexCount + i + 1);
}
}
mesh.vertices = vertices;
mesh.triangles = triangles.ToArray();
mesh.RecalculateNormals();
mesh.RecalculateBounds();
return mesh;
}
private Mesh CreateFlatPolygonMesh(List<Position> outline)
{
Mesh mesh = new Mesh();
int vertexCount = outline.Count;
Vector3[] vertices = new Vector3[vertexCount];
Vector3 center = CalculatePolygonCenter(outline);
for (int i = 0; i < vertexCount; i++)
{
vertices[i] = outline[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center) - center;
}
// Triangulace - fan pattern
List<int> triangles = new List<int>();
if (vertexCount >= 3)
{
for (int i = 1; i < vertexCount - 1; i++)
{
triangles.Add(0);
triangles.Add(i);
triangles.Add(i + 1);
}
}
mesh.vertices = vertices;
mesh.triangles = triangles.ToArray();
mesh.RecalculateNormals();
return mesh;
}
#endregion
}
}

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fileFormatVersion: 2
guid: 71870ee18b89dd7438e5362ff9e02a3b

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using GeoSus.Client;
using System.Collections;
using System.Threading.Tasks;
using UnityEngine;
using System.Collections.Generic;
using Subsystems;
using System.Linq;
namespace Subsystems
{
public class GameManager_Network
{
private const string _serverAddress = "geosus.honzuvkod.dev";
private const int _serverPort = 7777;
private GameClient _gameClient;
private GameManager_Map _mapSubsystem;
public async void OpenConection()
{
while (true)
{
Task<bool> state = _gameClient.ConnectAsync(_serverAddress, _serverPort);
await state;
if (state.Result)
{
Debug.Log("Connected to server.");
break;
}
else
{
Debug.Log("Failed to connect to server");
}
await Task.Delay(5000);
}
}
public GameManager_Network(GameClient gameClient)
{
_gameClient = gameClient;
RegisterEventHandlers();
}
public void RegisterEventHandlers()
{
_gameClient.OnConnected += OnConnected;
_gameClient.OnDisconnected += OnDisconnected;
_gameClient.OnError += OnError;
_gameClient.OnMessage += OnMessage;
_gameClient.OnGameEvent += OnGameEvent;
}
private void OnConnected()
{
Debug.Log("Successfully connected to the server.");
}
private void OnDisconnected(string reason)
{
Debug.Log($"Host disconnected due to {reason}");
}
private void OnError(string error)
{
Debug.LogError($"Network error: {error}");
}
private void OnMessage(Message message)
{
switch (message.Type)
{
case "GameEvent":
OnGameEvent(message as GameEvent);
break;
case "CreateLobbyResponse":
Debug.Log("Received CreateLobbyResponse message");
HandleCreateLobbyResponse(message as CreateLobbyResponse);
break;
case "JoinLobbyResponse":
Debug.Log("Received JoinLobbyResponse message");
HandleJoinLobbyResponse(message as JoinLobbyResponse);
break;
case "Ack":
Debug.Log("Received Ack message");
break;
default:
Debug.Log("Received message of type: " + message.Type);
break;
}
}
private void OnGameEvent(GameEvent gameEvent)
{
switch (gameEvent.EventType)
{
case "PlayerJoined":
Debug.Log($"Player {gameEvent.GetPayload<PlayerJoinedPayload>().DisplayName} joined");
break;
case "PlayerLeft":
Debug.Log($"Player {gameEvent.GetPayload<PlayerLeftPayload>()} left");
break;
case "GameStarting":
Debug.Log("Game is starting!");
break;
case "GameStarted":
Debug.Log("Game started");
break;
case "MapDataReady":
Debug.Log("Map data ready");
break;
case "PlayerMapDataReceived":
Debug.Log("Player map data recieved");
break;
case "MapDataError":
Debug.Log("Received MapData server error");
break;
default:
Debug.Log("Received GameEvent of type: " + gameEvent.EventType);
break;
}
}
private void HandleCreateLobbyResponse(CreateLobbyResponse message)
{
if (message.Success)
{
Debug.Log("Lobby created successfully. Join Code: " + message.JoinCode + ", Lobby ID: " + message.LobbyId);
}
else
{
Debug.LogError("Failed to create lobby: " + message.Error);
}
}
private void HandleJoinLobbyResponse(JoinLobbyResponse message)
{
if (message.Success)
{
Debug.Log("Lobby created successfully." + ", Lobby ID: " + message.LobbyId);
}
else
{
Debug.LogError("Failed to create lobby: " + message.Error);
}
}
public void CrateLobby(double lat, double lon)
{
_gameClient.CreateLobby(new Position(lat, lon));
}
public void JoinLobby(string joinCode)
{
try
{
_gameClient.JoinLobby(joinCode);
}
catch (System.Exception ex)
{
Debug.LogError("Error joining lobby: " + ex.Message);
}
}
public void LeaveLobby()
{
_gameClient.Disconnect();
Application.Quit();
}
public void StartGame()
{
_gameClient.StartGame();
}
}
}

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fileFormatVersion: 2
guid: 989e9292fe24c2a4ba95ceae191dd330

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using UnityEngine;
using Subsystems;
using GeoSus.Client;
using System.ComponentModel;
using System.Threading;
namespace Subsystems
{
public class GameManager_UI
{
private GameClient _gameClient;
private Canvas _CreateJoinLobby;
private Canvas _InLobby;
private Canvas _LoadingScreen;
private Canvas _GameScreen;
public GameManager_UI(GameClient gameClient, Canvas CreateJoinLobby, Canvas InLobby, Canvas LoadingScreen, Canvas GameScreen)
{
_gameClient = gameClient;
_CreateJoinLobby = CreateJoinLobby;
_LoadingScreen = LoadingScreen;
_GameScreen = GameScreen;
_InLobby = InLobby;
_CreateJoinLobby.enabled = true;
_InLobby.enabled = false;
_GameScreen.enabled = false;
_LoadingScreen.enabled = false;
}
public void UpdateLobbyUI()
{
if (_gameClient.CurrentLobbyState == null)
{
_CreateJoinLobby.enabled = true;
_InLobby.enabled = false;
_GameScreen.enabled = false;
_LoadingScreen.enabled = false;
return;
}
else if (_gameClient.CurrentLobbyState.Phase == GamePhase.Loading)
{
_CreateJoinLobby.enabled = false;
_InLobby.enabled = false;
_GameScreen.enabled = false;
_LoadingScreen.enabled = true;
return;
}
else if (_gameClient.CurrentLobbyState.Phase == GamePhase.Lobby)
{
_InLobby.enabled = true;
_CreateJoinLobby.enabled = false;
var playerList = _InLobby.transform.Find("PlayerList").GetComponent<TMPro.TMP_Text>();
playerList.text = "";
foreach (var player in _gameClient.CurrentLobbyState.Players)
{
playerList.text += player.DisplayName + "\n";
}
_InLobby.transform.Find("JoinCode").GetComponent<TMPro.TMP_Text>().text = _gameClient.CurrentLobbyState.JoinCode;
return;
}
else if (_gameClient.CurrentLobbyState.Phase == GamePhase.Playing)
{
_CreateJoinLobby.enabled = false;
_InLobby.enabled = false;
_GameScreen.enabled = true;
_LoadingScreen.enabled = false;
_GameScreen.transform.Find("Role").GetComponent<TMPro.TMP_Text>().text = _gameClient.MyRole.ToString() ;
return;
}
}
}
}

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using UnityEngine;
//clankr
public class RotaceZeme : MonoBehaviour
{
public float rychlost = 20f;
// Start is called once before the first execution of Update after the MonoBehaviour is created
void Start()
{
}
// Update is called once per frame
void Update()
{
transform.Rotate(Vector3.up, rychlost * Time.deltaTime);
}
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