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44 Commits

Author SHA1 Message Date
e0a4cf31b2 prejmenovani souboru na mapu a design mapy fixnuto 2026-05-17 14:20:33 +02:00
023bddc91b conflict partially resolved 2026-05-17 11:31:00 +02:00
ab6263cb10 skybox,design domecku a cest 2026-04-26 13:17:30 +02:00
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
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
747 changed files with 244281 additions and 22920 deletions

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@@ -1,13 +0,0 @@
{
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"Bash(mkdir:*)",
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1
.gitignore vendored
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@@ -303,7 +303,6 @@ PublishScripts/
*.nupkg
# NuGet Symbol Packages
*.snupkg
# The packages folder can be ignored because of Package Restore
# except build/, which is used as an MSBuild target.
!**/[Pp]ackages/build/
# Uncomment if necessary however generally it will be regenerated when needed

View File

@@ -1,810 +0,0 @@
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#elif defined(_SCO_SV) || defined(SCO_SV) || defined(sco_sv)
# define PLATFORM_ID "SCO_SV"
#elif defined(__ultrix) || defined(__ultrix__) || defined(_ULTRIX)
# define PLATFORM_ID "ULTRIX"
#elif defined(__XENIX__) || defined(_XENIX) || defined(XENIX)
# define PLATFORM_ID "Xenix"
#elif defined(__WATCOMC__)
# if defined(__LINUX__)
# define PLATFORM_ID "Linux"
# elif defined(__DOS__)
# define PLATFORM_ID "DOS"
# elif defined(__OS2__)
# define PLATFORM_ID "OS2"
# elif defined(__WINDOWS__)
# define PLATFORM_ID "Windows3x"
# elif defined(__VXWORKS__)
# define PLATFORM_ID "VxWorks"
# else /* unknown platform */
# define PLATFORM_ID
# endif
#elif defined(__INTEGRITY)
# if defined(INT_178B)
# define PLATFORM_ID "Integrity178"
# else /* regular Integrity */
# define PLATFORM_ID "Integrity"
# endif
#else /* unknown platform */
# define PLATFORM_ID
#endif
/* For windows compilers MSVC and Intel we can determine
the architecture of the compiler being used. This is because
the compilers do not have flags that can change the architecture,
but rather depend on which compiler is being used
*/
#if defined(_WIN32) && defined(_MSC_VER)
# if defined(_M_IA64)
# define ARCHITECTURE_ID "IA64"
# elif defined(_M_ARM64EC)
# define ARCHITECTURE_ID "ARM64EC"
# elif defined(_M_X64) || defined(_M_AMD64)
# define ARCHITECTURE_ID "x64"
# elif defined(_M_IX86)
# define ARCHITECTURE_ID "X86"
# elif defined(_M_ARM64)
# define ARCHITECTURE_ID "ARM64"
# elif defined(_M_ARM)
# if _M_ARM == 4
# define ARCHITECTURE_ID "ARMV4I"
# elif _M_ARM == 5
# define ARCHITECTURE_ID "ARMV5I"
# else
# define ARCHITECTURE_ID "ARMV" STRINGIFY(_M_ARM)
# endif
# elif defined(_M_MIPS)
# define ARCHITECTURE_ID "MIPS"
# elif defined(_M_SH)
# define ARCHITECTURE_ID "SHx"
# else /* unknown architecture */
# define ARCHITECTURE_ID ""
# endif
#elif defined(__WATCOMC__)
# if defined(_M_I86)
# define ARCHITECTURE_ID "I86"
# elif defined(_M_IX86)
# define ARCHITECTURE_ID "X86"
# else /* unknown architecture */
# define ARCHITECTURE_ID ""
# endif
#elif defined(__IAR_SYSTEMS_ICC__) || defined(__IAR_SYSTEMS_ICC)
# if defined(__ICCARM__)
# define ARCHITECTURE_ID "ARM"
# elif defined(__ICCRX__)
# define ARCHITECTURE_ID "RX"
# elif defined(__ICCRH850__)
# define ARCHITECTURE_ID "RH850"
# elif defined(__ICCRL78__)
# define ARCHITECTURE_ID "RL78"
# elif defined(__ICCRISCV__)
# define ARCHITECTURE_ID "RISCV"
# elif defined(__ICCAVR__)
# define ARCHITECTURE_ID "AVR"
# elif defined(__ICC430__)
# define ARCHITECTURE_ID "MSP430"
# elif defined(__ICCV850__)
# define ARCHITECTURE_ID "V850"
# elif defined(__ICC8051__)
# define ARCHITECTURE_ID "8051"
# elif defined(__ICCSTM8__)
# define ARCHITECTURE_ID "STM8"
# else /* unknown architecture */
# define ARCHITECTURE_ID ""
# endif
#elif defined(__ghs__)
# if defined(__PPC64__)
# define ARCHITECTURE_ID "PPC64"
# elif defined(__ppc__)
# define ARCHITECTURE_ID "PPC"
# elif defined(__ARM__)
# define ARCHITECTURE_ID "ARM"
# elif defined(__x86_64__)
# define ARCHITECTURE_ID "x64"
# elif defined(__i386__)
# define ARCHITECTURE_ID "X86"
# else /* unknown architecture */
# define ARCHITECTURE_ID ""
# endif
#elif defined(__TI_COMPILER_VERSION__)
# if defined(__TI_ARM__)
# define ARCHITECTURE_ID "ARM"
# elif defined(__MSP430__)
# define ARCHITECTURE_ID "MSP430"
# elif defined(__TMS320C28XX__)
# define ARCHITECTURE_ID "TMS320C28x"
# elif defined(__TMS320C6X__) || defined(_TMS320C6X)
# define ARCHITECTURE_ID "TMS320C6x"
# else /* unknown architecture */
# define ARCHITECTURE_ID ""
# endif
#else
# define ARCHITECTURE_ID
#endif
/* Convert integer to decimal digit literals. */
#define DEC(n) \
('0' + (((n) / 10000000)%10)), \
('0' + (((n) / 1000000)%10)), \
('0' + (((n) / 100000)%10)), \
('0' + (((n) / 10000)%10)), \
('0' + (((n) / 1000)%10)), \
('0' + (((n) / 100)%10)), \
('0' + (((n) / 10)%10)), \
('0' + ((n) % 10))
/* Convert integer to hex digit literals. */
#define HEX(n) \
('0' + ((n)>>28 & 0xF)), \
('0' + ((n)>>24 & 0xF)), \
('0' + ((n)>>20 & 0xF)), \
('0' + ((n)>>16 & 0xF)), \
('0' + ((n)>>12 & 0xF)), \
('0' + ((n)>>8 & 0xF)), \
('0' + ((n)>>4 & 0xF)), \
('0' + ((n) & 0xF))
/* Construct a string literal encoding the version number. */
#ifdef COMPILER_VERSION
char const* info_version = "INFO" ":" "compiler_version[" COMPILER_VERSION "]";
/* Construct a string literal encoding the version number components. */
#elif defined(COMPILER_VERSION_MAJOR)
char const info_version[] = {
'I', 'N', 'F', 'O', ':',
'c','o','m','p','i','l','e','r','_','v','e','r','s','i','o','n','[',
COMPILER_VERSION_MAJOR,
# ifdef COMPILER_VERSION_MINOR
'.', COMPILER_VERSION_MINOR,
# ifdef COMPILER_VERSION_PATCH
'.', COMPILER_VERSION_PATCH,
# ifdef COMPILER_VERSION_TWEAK
'.', COMPILER_VERSION_TWEAK,
# endif
# endif
# endif
']','\0'};
#endif
/* Construct a string literal encoding the internal version number. */
#ifdef COMPILER_VERSION_INTERNAL
char const info_version_internal[] = {
'I', 'N', 'F', 'O', ':',
'c','o','m','p','i','l','e','r','_','v','e','r','s','i','o','n','_',
'i','n','t','e','r','n','a','l','[',
COMPILER_VERSION_INTERNAL,']','\0'};
#elif defined(COMPILER_VERSION_INTERNAL_STR)
char const* info_version_internal = "INFO" ":" "compiler_version_internal[" COMPILER_VERSION_INTERNAL_STR "]";
#endif
/* Construct a string literal encoding the version number components. */
#ifdef SIMULATE_VERSION_MAJOR
char const info_simulate_version[] = {
'I', 'N', 'F', 'O', ':',
's','i','m','u','l','a','t','e','_','v','e','r','s','i','o','n','[',
SIMULATE_VERSION_MAJOR,
# ifdef SIMULATE_VERSION_MINOR
'.', SIMULATE_VERSION_MINOR,
# ifdef SIMULATE_VERSION_PATCH
'.', SIMULATE_VERSION_PATCH,
# ifdef SIMULATE_VERSION_TWEAK
'.', SIMULATE_VERSION_TWEAK,
# endif
# endif
# endif
']','\0'};
#endif
/* Construct the string literal in pieces to prevent the source from
getting matched. Store it in a pointer rather than an array
because some compilers will just produce instructions to fill the
array rather than assigning a pointer to a static array. */
char const* info_platform = "INFO" ":" "platform[" PLATFORM_ID "]";
char const* info_arch = "INFO" ":" "arch[" ARCHITECTURE_ID "]";
#if !defined(__STDC__) && !defined(__clang__)
# if defined(_MSC_VER) || defined(__ibmxl__) || defined(__IBMC__)
# define C_VERSION "90"
# else
# define C_VERSION
# endif
#elif __STDC_VERSION__ > 201710L
# define C_VERSION "23"
#elif __STDC_VERSION__ >= 201710L
# define C_VERSION "17"
#elif __STDC_VERSION__ >= 201000L
# define C_VERSION "11"
#elif __STDC_VERSION__ >= 199901L
# define C_VERSION "99"
#else
# define C_VERSION "90"
#endif
const char* info_language_standard_default =
"INFO" ":" "standard_default[" C_VERSION "]";
const char* info_language_extensions_default = "INFO" ":" "extensions_default["
/* !defined(_MSC_VER) to exclude Clang's MSVC compatibility mode. */
#if (defined(__clang__) || defined(__GNUC__) || \
defined(__TI_COMPILER_VERSION__)) && \
!defined(__STRICT_ANSI__) && !defined(_MSC_VER)
"ON"
#else
"OFF"
#endif
"]";
/*--------------------------------------------------------------------------*/
#ifdef ID_VOID_MAIN
void main() {}
#else
# if defined(__CLASSIC_C__)
int main(argc, argv) int argc; char *argv[];
# else
int main(int argc, char* argv[])
# endif
{
int require = 0;
require += info_compiler[argc];
require += info_platform[argc];
require += info_arch[argc];
#ifdef COMPILER_VERSION_MAJOR
require += info_version[argc];
#endif
#ifdef COMPILER_VERSION_INTERNAL
require += info_version_internal[argc];
#endif
#ifdef SIMULATE_ID
require += info_simulate[argc];
#endif
#ifdef SIMULATE_VERSION_MAJOR
require += info_simulate_version[argc];
#endif
#if defined(__CRAYXT_COMPUTE_LINUX_TARGET)
require += info_cray[argc];
#endif
require += info_language_standard_default[argc];
require += info_language_extensions_default[argc];
(void)argv;
return require;
}
#endif

View File

@@ -1,791 +0,0 @@
/* This source file must have a .cpp extension so that all C++ compilers
recognize the extension without flags. Borland does not know .cxx for
example. */
#ifndef __cplusplus
# error "A C compiler has been selected for C++."
#endif
#if !defined(__has_include)
/* If the compiler does not have __has_include, pretend the answer is
always no. */
# define __has_include(x) 0
#endif
/* Version number components: V=Version, R=Revision, P=Patch
Version date components: YYYY=Year, MM=Month, DD=Day */
#if defined(__COMO__)
# define COMPILER_ID "Comeau"
/* __COMO_VERSION__ = VRR */
# define COMPILER_VERSION_MAJOR DEC(__COMO_VERSION__ / 100)
# define COMPILER_VERSION_MINOR DEC(__COMO_VERSION__ % 100)
#elif defined(__INTEL_COMPILER) || defined(__ICC)
# define COMPILER_ID "Intel"
# if defined(_MSC_VER)
# define SIMULATE_ID "MSVC"
# endif
# if defined(__GNUC__)
# define SIMULATE_ID "GNU"
# endif
/* __INTEL_COMPILER = VRP prior to 2021, and then VVVV for 2021 and later,
except that a few beta releases use the old format with V=2021. */
# if __INTEL_COMPILER < 2021 || __INTEL_COMPILER == 202110 || __INTEL_COMPILER == 202111
# define COMPILER_VERSION_MAJOR DEC(__INTEL_COMPILER/100)
# define COMPILER_VERSION_MINOR DEC(__INTEL_COMPILER/10 % 10)
# if defined(__INTEL_COMPILER_UPDATE)
# define COMPILER_VERSION_PATCH DEC(__INTEL_COMPILER_UPDATE)
# else
# define COMPILER_VERSION_PATCH DEC(__INTEL_COMPILER % 10)
# endif
# else
# define COMPILER_VERSION_MAJOR DEC(__INTEL_COMPILER)
# define COMPILER_VERSION_MINOR DEC(__INTEL_COMPILER_UPDATE)
/* The third version component from --version is an update index,
but no macro is provided for it. */
# define COMPILER_VERSION_PATCH DEC(0)
# endif
# if defined(__INTEL_COMPILER_BUILD_DATE)
/* __INTEL_COMPILER_BUILD_DATE = YYYYMMDD */
# define COMPILER_VERSION_TWEAK DEC(__INTEL_COMPILER_BUILD_DATE)
# endif
# if defined(_MSC_VER)
/* _MSC_VER = VVRR */
# define SIMULATE_VERSION_MAJOR DEC(_MSC_VER / 100)
# define SIMULATE_VERSION_MINOR DEC(_MSC_VER % 100)
# endif
# if defined(__GNUC__)
# define SIMULATE_VERSION_MAJOR DEC(__GNUC__)
# elif defined(__GNUG__)
# define SIMULATE_VERSION_MAJOR DEC(__GNUG__)
# endif
# if defined(__GNUC_MINOR__)
# define SIMULATE_VERSION_MINOR DEC(__GNUC_MINOR__)
# endif
# if defined(__GNUC_PATCHLEVEL__)
# define SIMULATE_VERSION_PATCH DEC(__GNUC_PATCHLEVEL__)
# endif
#elif (defined(__clang__) && defined(__INTEL_CLANG_COMPILER)) || defined(__INTEL_LLVM_COMPILER)
# define COMPILER_ID "IntelLLVM"
#if defined(_MSC_VER)
# define SIMULATE_ID "MSVC"
#endif
#if defined(__GNUC__)
# define SIMULATE_ID "GNU"
#endif
/* __INTEL_LLVM_COMPILER = VVVVRP prior to 2021.2.0, VVVVRRPP for 2021.2.0 and
* later. Look for 6 digit vs. 8 digit version number to decide encoding.
* VVVV is no smaller than the current year when a version is released.
*/
#if __INTEL_LLVM_COMPILER < 1000000L
# define COMPILER_VERSION_MAJOR DEC(__INTEL_LLVM_COMPILER/100)
# define COMPILER_VERSION_MINOR DEC(__INTEL_LLVM_COMPILER/10 % 10)
# define COMPILER_VERSION_PATCH DEC(__INTEL_LLVM_COMPILER % 10)
#else
# define COMPILER_VERSION_MAJOR DEC(__INTEL_LLVM_COMPILER/10000)
# define COMPILER_VERSION_MINOR DEC(__INTEL_LLVM_COMPILER/100 % 100)
# define COMPILER_VERSION_PATCH DEC(__INTEL_LLVM_COMPILER % 100)
#endif
#if defined(_MSC_VER)
/* _MSC_VER = VVRR */
# define SIMULATE_VERSION_MAJOR DEC(_MSC_VER / 100)
# define SIMULATE_VERSION_MINOR DEC(_MSC_VER % 100)
#endif
#if defined(__GNUC__)
# define SIMULATE_VERSION_MAJOR DEC(__GNUC__)
#elif defined(__GNUG__)
# define SIMULATE_VERSION_MAJOR DEC(__GNUG__)
#endif
#if defined(__GNUC_MINOR__)
# define SIMULATE_VERSION_MINOR DEC(__GNUC_MINOR__)
#endif
#if defined(__GNUC_PATCHLEVEL__)
# define SIMULATE_VERSION_PATCH DEC(__GNUC_PATCHLEVEL__)
#endif
#elif defined(__PATHCC__)
# define COMPILER_ID "PathScale"
# define COMPILER_VERSION_MAJOR DEC(__PATHCC__)
# define COMPILER_VERSION_MINOR DEC(__PATHCC_MINOR__)
# if defined(__PATHCC_PATCHLEVEL__)
# define COMPILER_VERSION_PATCH DEC(__PATHCC_PATCHLEVEL__)
# endif
#elif defined(__BORLANDC__) && defined(__CODEGEARC_VERSION__)
# define COMPILER_ID "Embarcadero"
# define COMPILER_VERSION_MAJOR HEX(__CODEGEARC_VERSION__>>24 & 0x00FF)
# define COMPILER_VERSION_MINOR HEX(__CODEGEARC_VERSION__>>16 & 0x00FF)
# define COMPILER_VERSION_PATCH DEC(__CODEGEARC_VERSION__ & 0xFFFF)
#elif defined(__BORLANDC__)
# define COMPILER_ID "Borland"
/* __BORLANDC__ = 0xVRR */
# define COMPILER_VERSION_MAJOR HEX(__BORLANDC__>>8)
# define COMPILER_VERSION_MINOR HEX(__BORLANDC__ & 0xFF)
#elif defined(__WATCOMC__) && __WATCOMC__ < 1200
# define COMPILER_ID "Watcom"
/* __WATCOMC__ = VVRR */
# define COMPILER_VERSION_MAJOR DEC(__WATCOMC__ / 100)
# define COMPILER_VERSION_MINOR DEC((__WATCOMC__ / 10) % 10)
# if (__WATCOMC__ % 10) > 0
# define COMPILER_VERSION_PATCH DEC(__WATCOMC__ % 10)
# endif
#elif defined(__WATCOMC__)
# define COMPILER_ID "OpenWatcom"
/* __WATCOMC__ = VVRP + 1100 */
# define COMPILER_VERSION_MAJOR DEC((__WATCOMC__ - 1100) / 100)
# define COMPILER_VERSION_MINOR DEC((__WATCOMC__ / 10) % 10)
# if (__WATCOMC__ % 10) > 0
# define COMPILER_VERSION_PATCH DEC(__WATCOMC__ % 10)
# endif
#elif defined(__SUNPRO_CC)
# define COMPILER_ID "SunPro"
# if __SUNPRO_CC >= 0x5100
/* __SUNPRO_CC = 0xVRRP */
# define COMPILER_VERSION_MAJOR HEX(__SUNPRO_CC>>12)
# define COMPILER_VERSION_MINOR HEX(__SUNPRO_CC>>4 & 0xFF)
# define COMPILER_VERSION_PATCH HEX(__SUNPRO_CC & 0xF)
# else
/* __SUNPRO_CC = 0xVRP */
# define COMPILER_VERSION_MAJOR HEX(__SUNPRO_CC>>8)
# define COMPILER_VERSION_MINOR HEX(__SUNPRO_CC>>4 & 0xF)
# define COMPILER_VERSION_PATCH HEX(__SUNPRO_CC & 0xF)
# endif
#elif defined(__HP_aCC)
# define COMPILER_ID "HP"
/* __HP_aCC = VVRRPP */
# define COMPILER_VERSION_MAJOR DEC(__HP_aCC/10000)
# define COMPILER_VERSION_MINOR DEC(__HP_aCC/100 % 100)
# define COMPILER_VERSION_PATCH DEC(__HP_aCC % 100)
#elif defined(__DECCXX)
# define COMPILER_ID "Compaq"
/* __DECCXX_VER = VVRRTPPPP */
# define COMPILER_VERSION_MAJOR DEC(__DECCXX_VER/10000000)
# define COMPILER_VERSION_MINOR DEC(__DECCXX_VER/100000 % 100)
# define COMPILER_VERSION_PATCH DEC(__DECCXX_VER % 10000)
#elif defined(__IBMCPP__) && defined(__COMPILER_VER__)
# define COMPILER_ID "zOS"
/* __IBMCPP__ = VRP */
# define COMPILER_VERSION_MAJOR DEC(__IBMCPP__/100)
# define COMPILER_VERSION_MINOR DEC(__IBMCPP__/10 % 10)
# define COMPILER_VERSION_PATCH DEC(__IBMCPP__ % 10)
#elif defined(__ibmxl__) && defined(__clang__)
# define COMPILER_ID "XLClang"
# define COMPILER_VERSION_MAJOR DEC(__ibmxl_version__)
# define COMPILER_VERSION_MINOR DEC(__ibmxl_release__)
# define COMPILER_VERSION_PATCH DEC(__ibmxl_modification__)
# define COMPILER_VERSION_TWEAK DEC(__ibmxl_ptf_fix_level__)
#elif defined(__IBMCPP__) && !defined(__COMPILER_VER__) && __IBMCPP__ >= 800
# define COMPILER_ID "XL"
/* __IBMCPP__ = VRP */
# define COMPILER_VERSION_MAJOR DEC(__IBMCPP__/100)
# define COMPILER_VERSION_MINOR DEC(__IBMCPP__/10 % 10)
# define COMPILER_VERSION_PATCH DEC(__IBMCPP__ % 10)
#elif defined(__IBMCPP__) && !defined(__COMPILER_VER__) && __IBMCPP__ < 800
# define COMPILER_ID "VisualAge"
/* __IBMCPP__ = VRP */
# define COMPILER_VERSION_MAJOR DEC(__IBMCPP__/100)
# define COMPILER_VERSION_MINOR DEC(__IBMCPP__/10 % 10)
# define COMPILER_VERSION_PATCH DEC(__IBMCPP__ % 10)
#elif defined(__NVCOMPILER)
# define COMPILER_ID "NVHPC"
# define COMPILER_VERSION_MAJOR DEC(__NVCOMPILER_MAJOR__)
# define COMPILER_VERSION_MINOR DEC(__NVCOMPILER_MINOR__)
# if defined(__NVCOMPILER_PATCHLEVEL__)
# define COMPILER_VERSION_PATCH DEC(__NVCOMPILER_PATCHLEVEL__)
# endif
#elif defined(__PGI)
# define COMPILER_ID "PGI"
# define COMPILER_VERSION_MAJOR DEC(__PGIC__)
# define COMPILER_VERSION_MINOR DEC(__PGIC_MINOR__)
# if defined(__PGIC_PATCHLEVEL__)
# define COMPILER_VERSION_PATCH DEC(__PGIC_PATCHLEVEL__)
# endif
#elif defined(_CRAYC)
# define COMPILER_ID "Cray"
# define COMPILER_VERSION_MAJOR DEC(_RELEASE_MAJOR)
# define COMPILER_VERSION_MINOR DEC(_RELEASE_MINOR)
#elif defined(__TI_COMPILER_VERSION__)
# define COMPILER_ID "TI"
/* __TI_COMPILER_VERSION__ = VVVRRRPPP */
# define COMPILER_VERSION_MAJOR DEC(__TI_COMPILER_VERSION__/1000000)
# define COMPILER_VERSION_MINOR DEC(__TI_COMPILER_VERSION__/1000 % 1000)
# define COMPILER_VERSION_PATCH DEC(__TI_COMPILER_VERSION__ % 1000)
#elif defined(__CLANG_FUJITSU)
# define COMPILER_ID "FujitsuClang"
# define COMPILER_VERSION_MAJOR DEC(__FCC_major__)
# define COMPILER_VERSION_MINOR DEC(__FCC_minor__)
# define COMPILER_VERSION_PATCH DEC(__FCC_patchlevel__)
# define COMPILER_VERSION_INTERNAL_STR __clang_version__
#elif defined(__FUJITSU)
# define COMPILER_ID "Fujitsu"
# if defined(__FCC_version__)
# define COMPILER_VERSION __FCC_version__
# elif defined(__FCC_major__)
# define COMPILER_VERSION_MAJOR DEC(__FCC_major__)
# define COMPILER_VERSION_MINOR DEC(__FCC_minor__)
# define COMPILER_VERSION_PATCH DEC(__FCC_patchlevel__)
# endif
# if defined(__fcc_version)
# define COMPILER_VERSION_INTERNAL DEC(__fcc_version)
# elif defined(__FCC_VERSION)
# define COMPILER_VERSION_INTERNAL DEC(__FCC_VERSION)
# endif
#elif defined(__ghs__)
# define COMPILER_ID "GHS"
/* __GHS_VERSION_NUMBER = VVVVRP */
# ifdef __GHS_VERSION_NUMBER
# define COMPILER_VERSION_MAJOR DEC(__GHS_VERSION_NUMBER / 100)
# define COMPILER_VERSION_MINOR DEC(__GHS_VERSION_NUMBER / 10 % 10)
# define COMPILER_VERSION_PATCH DEC(__GHS_VERSION_NUMBER % 10)
# endif
#elif defined(__SCO_VERSION__)
# define COMPILER_ID "SCO"
#elif defined(__ARMCC_VERSION) && !defined(__clang__)
# define COMPILER_ID "ARMCC"
#if __ARMCC_VERSION >= 1000000
/* __ARMCC_VERSION = VRRPPPP */
# define COMPILER_VERSION_MAJOR DEC(__ARMCC_VERSION/1000000)
# define COMPILER_VERSION_MINOR DEC(__ARMCC_VERSION/10000 % 100)
# define COMPILER_VERSION_PATCH DEC(__ARMCC_VERSION % 10000)
#else
/* __ARMCC_VERSION = VRPPPP */
# define COMPILER_VERSION_MAJOR DEC(__ARMCC_VERSION/100000)
# define COMPILER_VERSION_MINOR DEC(__ARMCC_VERSION/10000 % 10)
# define COMPILER_VERSION_PATCH DEC(__ARMCC_VERSION % 10000)
#endif
#elif defined(__clang__) && defined(__apple_build_version__)
# define COMPILER_ID "AppleClang"
# if defined(_MSC_VER)
# define SIMULATE_ID "MSVC"
# endif
# define COMPILER_VERSION_MAJOR DEC(__clang_major__)
# define COMPILER_VERSION_MINOR DEC(__clang_minor__)
# define COMPILER_VERSION_PATCH DEC(__clang_patchlevel__)
# if defined(_MSC_VER)
/* _MSC_VER = VVRR */
# define SIMULATE_VERSION_MAJOR DEC(_MSC_VER / 100)
# define SIMULATE_VERSION_MINOR DEC(_MSC_VER % 100)
# endif
# define COMPILER_VERSION_TWEAK DEC(__apple_build_version__)
#elif defined(__clang__) && defined(__ARMCOMPILER_VERSION)
# define COMPILER_ID "ARMClang"
# define COMPILER_VERSION_MAJOR DEC(__ARMCOMPILER_VERSION/1000000)
# define COMPILER_VERSION_MINOR DEC(__ARMCOMPILER_VERSION/10000 % 100)
# define COMPILER_VERSION_PATCH DEC(__ARMCOMPILER_VERSION % 10000)
# define COMPILER_VERSION_INTERNAL DEC(__ARMCOMPILER_VERSION)
#elif defined(__clang__)
# define COMPILER_ID "Clang"
# if defined(_MSC_VER)
# define SIMULATE_ID "MSVC"
# endif
# define COMPILER_VERSION_MAJOR DEC(__clang_major__)
# define COMPILER_VERSION_MINOR DEC(__clang_minor__)
# define COMPILER_VERSION_PATCH DEC(__clang_patchlevel__)
# if defined(_MSC_VER)
/* _MSC_VER = VVRR */
# define SIMULATE_VERSION_MAJOR DEC(_MSC_VER / 100)
# define SIMULATE_VERSION_MINOR DEC(_MSC_VER % 100)
# endif
#elif defined(__GNUC__) || defined(__GNUG__)
# define COMPILER_ID "GNU"
# if defined(__GNUC__)
# define COMPILER_VERSION_MAJOR DEC(__GNUC__)
# else
# define COMPILER_VERSION_MAJOR DEC(__GNUG__)
# endif
# if defined(__GNUC_MINOR__)
# define COMPILER_VERSION_MINOR DEC(__GNUC_MINOR__)
# endif
# if defined(__GNUC_PATCHLEVEL__)
# define COMPILER_VERSION_PATCH DEC(__GNUC_PATCHLEVEL__)
# endif
#elif defined(_MSC_VER)
# define COMPILER_ID "MSVC"
/* _MSC_VER = VVRR */
# define COMPILER_VERSION_MAJOR DEC(_MSC_VER / 100)
# define COMPILER_VERSION_MINOR DEC(_MSC_VER % 100)
# if defined(_MSC_FULL_VER)
# if _MSC_VER >= 1400
/* _MSC_FULL_VER = VVRRPPPPP */
# define COMPILER_VERSION_PATCH DEC(_MSC_FULL_VER % 100000)
# else
/* _MSC_FULL_VER = VVRRPPPP */
# define COMPILER_VERSION_PATCH DEC(_MSC_FULL_VER % 10000)
# endif
# endif
# if defined(_MSC_BUILD)
# define COMPILER_VERSION_TWEAK DEC(_MSC_BUILD)
# endif
#elif defined(__VISUALDSPVERSION__) || defined(__ADSPBLACKFIN__) || defined(__ADSPTS__) || defined(__ADSP21000__)
# define COMPILER_ID "ADSP"
#if defined(__VISUALDSPVERSION__)
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View File

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View File

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View File

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View File

@@ -1,21 +0,0 @@
-HC:\Users\gravi\Game\Library\Bee\Android\Prj\IL2CPP\Gradle\unityLibrary\src\main\cpp
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View File

@@ -1,18 +0,0 @@
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INTERFACE_INCLUDE_DIRECTORIES "C:/Users/gravi/.gradle/caches/8.13/transforms/1e7cc65d4e74b23bd94dca9ec0ac2eb3/transformed/jetified-games-activity-3.0.5/prefab/modules/game-activity_static/include"
INTERFACE_LINK_LIBRARIES ""
)
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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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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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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 TMPro;
using UnityEngine;
using UnityEngine.UI;
namespace Subsystems{
[System.Serializable]
public class BuildingSettings
{
public Material ResidentialBuildingsMat;
public float ResidentialBuildingHeight;
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;
// ── Layer Y separation (single source of truth for vertical stacking) ───
// Areas at the bottom, paths above areas, buildings extruded upward from
// their own base, POIs floating well above everything else. Z-fighting
// happens when adjacent geometry shares a Y; these constants keep each
// logical layer at a distinct elevation.
private const float kAreaBaseY = 0.10f;
private const float kPathY = 0.30f;
private const float kBuildingBaseY = 0.50f;
private const float kPoiY = 2.00f;
// Render-queue forcing was tried in P3 to disambiguate same-Y geometry
// but turned out to be the cause of the "blank map in mobile game view,
// fine in scene view" regression: forcing transparent-class shaders
// (default queue 3000+) into the Geometry range (2000-2150) breaks
// their depth-write/blend assumptions on mobile shader paths. The
// editor's scene view masks it because it uses different render paths
// and post-process is off there. Queue forcing removed in P8;
// disambiguation is now via Y-layering + per-area Y-stagger alone,
// which the depth buffer resolves correctly even on weak mobile GPUs.
// ── Marker sizing (top-down camera, units = meters) ─────────────────
// The camera's orthographic size pushes "1 meter" to a small fraction
// of the screen. Markers need to be visibly larger than buildings'
// footprints for instant recognition.
private const float kMarkerHeight = 8f; // pillar height
private const float kMarkerRadius = 3f; // pillar radius (cylinder X/Z)
private const float kMarkerY = 4f; // base Y so pillar centers ~mid-height
private const float kLabelY = 9f; // text label sits above pillar top
private const float kLabelFontSize = 14f; // 3D text size in world units
// Runtime marker collections
private Dictionary<string, GameObject> _taskMarkers = new Dictionary<string, GameObject>();
private Dictionary<string, GameObject> _bodyMarkers = new Dictionary<string, GameObject>();
private Dictionary<string, GameObject> _playerAvatars = new Dictionary<string, GameObject>();
private List<GameObject> _sabotageMarkers = new List<GameObject>();
public GameManager_Map(GameClient gameClient, GameObject mapCenterPoint, BuildingSettings buildingSettings, PathwaySettings pathwaySettings, AreaSettings areaSettings)
{
_gameClient = gameClient;
_mapCenterPoint = mapCenterPoint;
_buildingSettings = buildingSettings;
_pathwaySettings = pathwaySettings;
_areaSettings = areaSettings;
}
public bool IsSceneReady => _mapCenterPoint != null;
/// <summary>Called from OnSceneLoaded when Client.unity is loaded so the
/// MapCenterPoint (which lives in Client.unity) can be wired at runtime.</summary>
public void SetMapCenterPoint(GameObject go) { _mapCenterPoint = go; }
public void BuildMap()
{
if (_mapCenterPoint == null)
{
Debug.LogWarning("[Map] BuildMap skipped: MapCenterPoint is not yet bound.");
return;
}
if (_gameClient?.CurrentLobbyState?.MapData == null)
{
Debug.LogWarning("[Map] BuildMap skipped: no MapData in CurrentLobbyState.");
return;
}
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($"Error: {ex.Message}"); }
building.Name = buildingType;
GameObject b = BuildBuildingMesh(building);
b.transform.parent = buildingsRoot.transform;
}
foreach (var path in _gameClient.CurrentLobbyState.MapData.GetPathways())
{
GameObject p = BuildPathwayMesh(path);
p.transform.parent = pathRoot.transform;
}
foreach (var area in _gameClient.CurrentLobbyState.MapData.GetAreas())
{
GameObject a = BuildAreaMesh(area);
a.transform.parent = areaRoot.transform;
}
GameObject poiRoot = new GameObject("POIs");
poiRoot.transform.parent = _mapCenterPoint.transform;
int poiCount = 0;
foreach (var poi in _gameClient.CurrentLobbyState.MapData.GetPOIs())
{
GameObject p = BuildPOIMarker(poi);
if (p != null) { p.transform.parent = poiRoot.transform; poiCount++; }
}
// Diagnostic - if the user reports "map missing in game view" but
// the counts here are non-zero, the bug is camera/culling related,
// not a build issue.
int buildings = _gameClient.CurrentLobbyState.MapData.GetBuildings()?.Count ?? 0;
int paths = _gameClient.CurrentLobbyState.MapData.GetPathways()?.Count ?? 0;
int areas = _gameClient.CurrentLobbyState.MapData.GetAreas()?.Count ?? 0;
Debug.Log($"[Map] BuildMap done: {buildings} buildings, {paths} paths, " +
$"{areas} areas, {poiCount} POIs. MapCenterPoint={_mapCenterPoint.name} " +
$"layer={_mapCenterPoint.layer} pos={_mapCenterPoint.transform.position} " +
$"scale={_mapCenterPoint.transform.localScale}");
}
/// <summary>
/// Build a tall, brightly-colored pillar for a Point of Interest with
/// a 3D text label above it (e.g. "FOOD", "SHOP"). The label is laid
/// flat on the XZ plane facing UP so it reads correctly under the
/// orthogonal top-down camera.
/// </summary>
private GameObject BuildPOIMarker(MapPOI poi)
{
if (poi == null) return null;
var color = ColorForPOI(poi.POIType);
string label = LabelForPOI(poi.POIType);
var pos = poi.Location.ToLocalVector3(_centerPosition);
return CreateMarkerWithLabel($"POI_{poi.POIType}_{poi.Id}", pos, color, label);
}
/// <summary>
/// Shared marker builder: tall colored cylinder pillar + 3D text label
/// above it. Used by POIs, tasks, bodies, and sabotage stations so
/// they all share a visual language ("colored pillar with a name").
/// </summary>
private GameObject CreateMarkerWithLabel(string name, Vector3 worldPos, Color color, string label)
{
var go = GameObject.CreatePrimitive(PrimitiveType.Cylinder);
go.name = name;
// Strip the auto-added collider - markers are visual only.
var col = go.GetComponent<Collider>();
if (col != null) UnityEngine.Object.Destroy(col);
go.transform.position = worldPos + Vector3.up * kMarkerY;
// Cylinder's default unit is 2 tall, 1 wide. Scale Y by half of
// kMarkerHeight (built-in is 2 units), X/Z by kMarkerRadius.
go.transform.localScale = new Vector3(kMarkerRadius, kMarkerHeight * 0.5f, kMarkerRadius);
var mr = go.GetComponent<MeshRenderer>();
if (mr != null)
{
// One .material access -> single clone of the primitive's
// default mat. Don't touch renderQueue (P3 regression cause).
var inst = mr.material;
if (inst != null) inst.color = color;
}
// 3D text label - lays flat on top of the pillar facing up.
// Parented to the marker so it follows position changes.
var labelGO = new GameObject("Label");
labelGO.transform.SetParent(go.transform, worldPositionStays: false);
// Local Y offset: pillar's local scale Y is kMarkerHeight/2, but
// the cylinder primitive is 2 units tall in local space, so its
// top is at local +1. Label sits a hair above that.
labelGO.transform.localPosition = new Vector3(0, 1.05f, 0);
// Rotate 90 around X so the text quad's normal points +Y (toward
// the top-down camera). The default TMP forward is +Z.
labelGO.transform.localRotation = Quaternion.Euler(90f, 0f, 0f);
// Compensate for the cylinder's non-uniform parent scale so the
// text size in world units matches kLabelFontSize regardless of
// how the pillar was scaled.
labelGO.transform.localScale = new Vector3(
1f / kMarkerRadius,
1f / (kMarkerHeight * 0.5f),
1f / kMarkerRadius);
var tmp = labelGO.AddComponent<TextMeshPro>();
tmp.text = label;
tmp.fontSize = kLabelFontSize;
tmp.color = Color.white;
tmp.fontStyle = FontStyles.Bold;
tmp.alignment = TextAlignmentOptions.Center;
tmp.outlineColor = Color.black;
tmp.outlineWidth = 0.25f;
// Reasonable bounds so the text mesh isn't auto-clipped.
var rt = tmp.rectTransform;
rt.sizeDelta = new Vector2(20, 4);
return go;
}
private static Color ColorForPOI(MapPOIType type)
{
switch (type)
{
case MapPOIType.FoodDrink: return new Color(1.00f, 0.55f, 0.00f); // orange
case MapPOIType.Shop: return new Color(0.20f, 0.60f, 1.00f); // blue
case MapPOIType.Health: return new Color(0.96f, 0.27f, 0.27f); // red
case MapPOIType.Transport: return new Color(0.85f, 0.85f, 0.20f); // yellow
case MapPOIType.Culture: return new Color(0.65f, 0.30f, 0.95f); // purple
case MapPOIType.Landmark: return new Color(0.95f, 0.85f, 0.40f); // gold
case MapPOIType.Recreation: return new Color(0.30f, 0.85f, 0.30f); // green
default: return new Color(0.75f, 0.75f, 0.80f); // muted grey
}
}
private static string LabelForPOI(MapPOIType type)
{
switch (type)
{
case MapPOIType.FoodDrink: return "FOOD";
case MapPOIType.Shop: return "SHOP";
case MapPOIType.Health: return "HEALTH";
case MapPOIType.Transport: return "TRANSIT";
case MapPOIType.Culture: return "CULTURE";
case MapPOIType.Landmark: return "LANDMARK";
case MapPOIType.Recreation: return "PARK";
default: return "POI";
}
}
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($"Building_{b.Name ?? "Unknown"}");
// Výpočet středu budovy. Lift the base above kPathY so building
// walls visibly extrude *upward* from above the road/area layer
// instead of starting at ground (which made them clip into paved
// areas that share their footprint).
Vector3 center = CalculatePolygonCenter(b.Outline);
building.transform.position = center + Vector3.up * kBuildingBaseY;
// Vytvoření mesh pro budovu
MeshFilter meshFilter = building.AddComponent<MeshFilter>();
MeshRenderer meshRenderer = building.AddComponent<MeshRenderer>();
float height;
Material mat;
switch (b.BuildingType.ToLower())
{
case "residential":
mat = _buildingSettings.ResidentialBuildingsMat;
height = _buildingSettings.ResidentialBuildingHeight;
break;
case "commercial":
mat = _buildingSettings.CommercialBuildingsMat;
height = _buildingSettings.CommercialBuildingHeight;
break;
case "industrial":
mat = _buildingSettings.IndustrialBuildingsMat;
height = _buildingSettings.IndustrialBuildingHeight;
break;
default:
mat = _buildingSettings.DefaultBuildingMat;
height = _buildingSettings.DefaultBuildingHeight;
break;
}
Mesh mesh = CreateExtrudedPolygonMesh(b.Outline, height);
meshFilter.mesh = mesh;
//TODO: material by type
// Použijeme barvu podle typu budovy. Use sharedMaterial to keep
// the project's Material asset reference - no clone, no leak.
// Y-position alone disambiguates building geometry from area/path
// layers; we don't need renderQueue overrides (which broke mobile
// rendering for transparent-class shaders in P3).
meshRenderer.sharedMaterial = mat;
// Přidání collideru pro interakci
building.AddComponent<MeshCollider>();
return building;
}
GameObject BuildPathwayMesh(MapPathway w)
{
var path = new GameObject($"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;
}
// sharedMaterial avoids the LineRenderer cloning the project's
// shared path Material on every BuildMap call. Queue overrides
// dropped (P3 mobile-render regression cause).
line.sharedMaterial = mat;
line.widthMultiplier = width;
// Nastavení bodů cesty - kPathY sits above all area polygons but
// below building bases, so paths visibly run on top of areas.
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 = kPathY;
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;
}
// sharedMaterial: no per-area material clone. Render-queue forcing
// dropped in P8 (caused mobile-render regression). The Y-stagger
// below alone now drives "smaller polygon on top of larger one"
// depth ordering - which is what the depth buffer was always
// designed to do, and works on mobile GPUs with weak precision
// because the stagger spread (0.04 units) is well above any
// reasonable depth-buffer epsilon.
meshRenderer.sharedMaterial = mat;
// Y stagger: smaller polygons sit a hair higher than larger ones,
// so depth-test draws them on top of bigger area polygons they sit
// inside (e.g. a playground inside a park). Total spread is 0.04
// units - visually invisible but plenty for the depth buffer.
float yStagger = ComputeAreaYStagger(a.Outline);
area.transform.position = new Vector3(0, kAreaBaseY + yStagger, 0);
return area;
}
/// <summary>
/// Returns a non-negative size proxy used to bucket areas by footprint.
/// Larger polygons return higher numbers; used inversely for queue/Y.
/// </summary>
private float AreaSizeBucket(List<Position> outline)
{
if (outline == null || outline.Count < 3) return 1f;
// Cheap bbox area in lat-lon space scaled by 1e6 - we only need a
// monotonic ordering, not a real geographic area.
double minLat = outline[0].Lat, maxLat = outline[0].Lat;
double minLon = outline[0].Lon, maxLon = outline[0].Lon;
for (int i = 1; i < outline.Count; i++)
{
if (outline[i].Lat < minLat) minLat = outline[i].Lat;
if (outline[i].Lat > maxLat) maxLat = outline[i].Lat;
if (outline[i].Lon < minLon) minLon = outline[i].Lon;
if (outline[i].Lon > maxLon) maxLon = outline[i].Lon;
}
double bbox = (maxLat - minLat) * (maxLon - minLon) * 1e6;
return (float)System.Math.Max(0.001, bbox);
}
/// <summary>
/// Smaller areas get a higher Y so they render on top of any larger
/// area they overlap. Returns a value in [0, 0.04] units.
/// </summary>
private float ComputeAreaYStagger(List<Position> outline)
{
float bucket = AreaSizeBucket(outline);
// Inverse mapping: huge area -> 0, tiny area -> 0.04.
float t = Mathf.Clamp01(1f - bucket / (bucket + 50f));
return t * 0.04f;
}
#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;
}
/// <summary>
/// Signed XZ shoelace area for a polygon expressed in local Vector3.
/// Positive = CCW (Unity left-handed Y-up: upward-facing normal),
/// negative = CW (downward-facing normal -> top face invisible from
/// above unless we reverse the winding before triangulating).
/// </summary>
private static float PolygonSignedAreaXZ(List<Vector3> verts)
{
float area = 0f;
int n = verts.Count;
for (int i = 0; i < n; i++)
{
var a = verts[i];
var b = verts[(i + 1) % n];
area += (b.x - a.x) * (a.z + b.z);
}
return area * 0.5f;
}
private Mesh CreateExtrudedPolygonMesh(List<Position> outline, float height)
{
Mesh mesh = new Mesh();
// Reject degenerates - Recast/Overpass can hand back 1-2 vertex
// outlines on broken ways. Empty mesh -> renderer draws nothing,
// safer than a malformed triangle list.
if (outline == null || outline.Count < 3) return mesh;
// Convert to local space first so we can run a winding check, then
// reverse if needed. Without this, CW outlines from Overpass yield
// downward-facing top normals and the building roof is invisible
// from the top-down map camera.
int vertexCount = outline.Count;
var localVerts = new List<Vector3>(vertexCount);
Vector3 center = CalculatePolygonCenter(outline);
for (int i = 0; i < vertexCount; i++)
localVerts.Add(outline[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center) - center);
if (PolygonSignedAreaXZ(localVerts) < 0f)
localVerts.Reverse();
// Vertices - spodní a horní podstava
Vector3[] vertices = new Vector3[vertexCount * 2];
for (int i = 0; i < vertexCount; i++)
{
Vector3 pos = localVerts[i];
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();
// Reject degenerates (matches CreateExtrudedPolygonMesh).
if (outline == null || outline.Count < 3) return mesh;
int vertexCount = outline.Count;
var localVerts = new List<Vector3>(vertexCount);
Vector3 center = CalculatePolygonCenter(outline);
for (int i = 0; i < vertexCount; i++)
localVerts.Add(outline[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center) - center);
// Force CCW so RecalculateNormals produces an upward-facing normal.
// CW polygons from Overpass would otherwise render as black voids
// when the top-down camera looks at their back face.
if (PolygonSignedAreaXZ(localVerts) < 0f)
localVerts.Reverse();
Vector3[] vertices = localVerts.ToArray();
// Triangulace - fan pattern
List<int> triangles = new List<int>();
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
#region Markers
public void CreateTaskMarkers(List<GeoSus.Client.GameTask> tasks)
{
if (_mapCenterPoint == null) return;
if (_centerPosition.Lat == 0 && _centerPosition.Lon == 0)
{
var md = _gameClient?.CurrentLobbyState?.MapData;
if (md != null) _centerPosition = md.Center;
}
if (_centerPosition.Lat == 0 && _centerPosition.Lon == 0) return;
var taskColor = new Color(0.20f, 0.95f, 0.55f); // bright green - "GO HERE"
foreach (var task in tasks)
{
if (_taskMarkers.ContainsKey(task.TaskId)) continue;
var pos = task.Location.ToLocalVector3(_centerPosition);
var go = CreateMarkerWithLabel($"Task_{task.TaskId}", pos, taskColor, "TASK");
go.transform.parent = _mapCenterPoint.transform;
// Pulsing point light so the task literally glows on the map.
var light = go.AddComponent<Light>();
light.color = taskColor;
light.intensity = 3f;
light.range = 25f;
_taskMarkers[task.TaskId] = go;
}
}
public void RemoveTaskMarker(string taskId)
{
if (_taskMarkers.TryGetValue(taskId, out var go))
{
UnityEngine.Object.Destroy(go);
_taskMarkers.Remove(taskId);
}
}
public void CreateBodyMarker(string bodyId, Position location)
{
if (_mapCenterPoint == null) return;
if (_bodyMarkers.ContainsKey(bodyId)) return;
var pos = location.ToLocalVector3(_centerPosition);
// Bright red pillar with "BODY" label - players need to see this
// from across the map to call it in.
var go = CreateMarkerWithLabel($"Body_{bodyId}", pos,
new Color(0.96f, 0.18f, 0.18f), "BODY");
go.transform.parent = _mapCenterPoint?.transform;
_bodyMarkers[bodyId] = go;
}
public void ClearBodyMarkers()
{
foreach (var go in _bodyMarkers.Values)
if (go) UnityEngine.Object.Destroy(go);
_bodyMarkers.Clear();
}
// ── Player avatar sizing ────────────────────────────────────────────
// The default Unity capsule primitive is 2m tall in local space. The
// map camera defaults to 150m orthographic-ish height (see
// MapCameraController), so anything smaller than ~3m world-size is a
// pixel on screen. Original code used scale=0.4 (~0.8m capsule) which
// was invisible. Markers (POIs/tasks/bodies) are 8m pillars; players
// need to be visibly distinct from those AND from each other. The
// local player gets a halo light + larger scale so the user can find
// themselves on the map at a glance.
private const float kLocalPlayerScale = 4f; // ~8m capsule (matches marker height)
private const float kRemotePlayerScale = 2f; // ~4m capsule (smaller than markers)
private const float kLocalPlayerHaloRange = 18f;
private const float kLocalPlayerHaloIntensity = 2.5f;
public void UpdatePlayerAvatars(Dictionary<string, PlayerPositionInfo> positions, string myUuid)
{
if (_mapCenterPoint == null) return;
if (_centerPosition.Lat == 0 && _centerPosition.Lon == 0)
{
var md = _gameClient?.CurrentLobbyState?.MapData;
if (md != null) _centerPosition = md.Center;
}
if (_centerPosition.Lat == 0 && _centerPosition.Lon == 0) return;
foreach (var kvp in positions)
{
string uuid = kvp.Key;
var info = kvp.Value;
bool isLocal = uuid == myUuid;
if (!_playerAvatars.TryGetValue(uuid, out var go) || go == null)
{
go = GameObject.CreatePrimitive(PrimitiveType.Capsule);
go.name = $"Player_{uuid.Substring(0, Mathf.Min(8, uuid.Length))}";
go.transform.parent = _mapCenterPoint?.transform;
// Strip the auto-collider - avatars are visual only and the
// collider would interact with the map's MeshColliders.
var col = go.GetComponent<Collider>();
if (col != null) UnityEngine.Object.Destroy(col);
float scale = isLocal ? kLocalPlayerScale : kRemotePlayerScale;
go.transform.localScale = Vector3.one * scale;
if (isLocal)
{
// Halo light around the local player so the user can
// find themselves at a glance even at the widest zoom.
// Range/intensity tuned so it reads as "this is me"
// without bleeding far enough to drown POI markers.
var halo = go.AddComponent<Light>();
halo.color = new Color(0.30f, 1.00f, 0.55f); // matches green capsule color
halo.intensity = kLocalPlayerHaloIntensity;
halo.range = kLocalPlayerHaloRange;
}
_playerAvatars[uuid] = go;
}
// Lift the avatar so the bottom of the capsule sits roughly at
// ground level despite the larger scale. Capsule's local pivot
// is at center, height = 2 * localScale.y world units, so we
// raise by half the local height.
float halfHeight = (isLocal ? kLocalPlayerScale : kRemotePlayerScale);
go.transform.position = info.Position.ToLocalVector3(_centerPosition)
+ Vector3.up * halfHeight;
var mr = go.GetComponent<MeshRenderer>();
if (mr)
{
if (isLocal) mr.material.color = new Color(0.30f, 1.00f, 0.55f);
else if (info.State == GeoSus.Client.PlayerState.Dead) mr.material.color = Color.grey;
else mr.material.color = Color.white;
}
}
}
public void CreateSabotageMarkers(List<RepairStationInfo> stations)
{
var color = new Color(1.0f, 0.55f, 0.0f); // strong orange = repair urgency
foreach (var station in stations)
{
var pos = station.Location.ToLocalVector3(_centerPosition);
var go = CreateMarkerWithLabel($"Sabotage_{station.StationId}", pos,
color, "REPAIR");
go.transform.parent = _mapCenterPoint?.transform;
// Repair stations also pulse light so impostors and crew see
// the urgency from across the map.
var light = go.AddComponent<Light>();
light.color = color;
light.intensity = 4f;
light.range = 30f;
_sabotageMarkers.Add(go);
}
}
public void ClearSabotageMarkers()
{
foreach (var go in _sabotageMarkers)
if (go) UnityEngine.Object.Destroy(go);
_sabotageMarkers.Clear();
}
#endregion
}
}

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fileFormatVersion: 2
guid: 71870ee18b89dd7438e5362ff9e02a3b

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@@ -0,0 +1,162 @@
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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fileFormatVersion: 2
guid: cbe0afd6cfb57b44781533cfa4ce4196

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@@ -1,11 +1,11 @@
//using GeoSus.Client;
using GeoSus.Client;
using System;
using UnityEngine;
public enum TaskType
/*public enum TaskType
{
Task //TODO: Typy úkolù
}
}*/
@@ -14,7 +14,7 @@ public interface ITask
public string TaskID { get; } // Unikátní ID úkolu pro server
public TaskType TaskType { get; } // Typ úkolu
public string TaskName { get; } // Viditelný název úkolu
public (double, double) TaskLocation { get; } // Polohy na mapì
public Position TaskLocation { get; } // Polohy na mapì
public bool IsCompleted { get; } // Stav dokonèení úkolu
void Initialize(Action<ITask> onCompleted); // Vytvoøení tasku + naètení postupu
@@ -27,7 +27,7 @@ public class Wires : ITask{
public string TaskID { get; set; } // Unikátní ID úkolu pro server
public TaskType TaskType { get; set; } // Typ úkolu
public string TaskName { get; set; } // Viditelný název úkolu
public (double, double) TaskLocation { get; set; } // Poloha na mapì
public Position TaskLocation { get; set; } // Poloha na mapì
public bool IsCompleted { get; private set; } // Stav dokonèení úkolu
private Action<ITask> _onCompleted;

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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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