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38 Commits

Author SHA1 Message Date
942a882cdb hra vertical bird 2026-06-03 11:03:32 +02:00
fdc14a4288 VerticalBird minihra v procesu 2026-05-17 12:39:46 +02:00
208696487e Mergnuta minihra 2026-04-26 09:11:01 +02:00
1de91b0d57 Hra kabely 2026-03-28 19:28:59 +01:00
b0e90221dc fixed merges 2026-03-28 11:19:27 +01:00
dcb1066d80 Fixed merge conflict 2026-03-28 11:18:01 +01:00
d80ac111c2 Removed meta files 2026-03-28 11:06:53 +01:00
b872b52632 Added gps and ITask update 2026-03-28 10:59:01 +01:00
4fdfdea5cf udpatnuty na vsechny cudliky 2026-03-28 10:45:51 +01:00
32c7589ab3 prepinani scen 2026-03-28 10:36:08 +01:00
44155796d0 rename Misovych slozek, clean up 2026-03-28 09:43:53 +01:00
5b166244b2 added Packages 2026-03-28 09:24:20 +01:00
114a0d3997 player list + animace pro něj 2026-03-26 18:33:43 +01:00
ce6e4450e6 nove screeny(myslim)zvuky pro tlacitka klikani tlacitek novy font pro texty a uprava hvězd 2026-03-22 21:31:20 +01:00
be595da357 Added test mode and manual positioning 2026-03-21 22:40:20 +01:00
95f2f63259 6 novych screenu posledni 3 asi celkem nic moc 2026-03-20 20:24:16 +01:00
dc5ed7d49f napis na zemeguli, jestli nekdo chce, tak doladte barvu, vic belejsi mi to udelat neslo(ve scene neni svetlo, tak jsem radsi nic nedelal) 2026-03-04 18:26:34 +01:00
Jan Racek
2fadf819cc Upraveno hlavni menu, pridana 3D zeme bez rendertexture, pridano space HDRI 2026-03-01 21:14:00 +01:00
a1465de9a0 Merge pull request 'Added map' (#3) from GameClient into main
Reviewed-on: #3

Líbí se mi to. Je to fajn.
2026-03-01 20:52:28 +01:00
a1b40ad102 Added map 2026-03-01 13:26:13 +01:00
ff9a2cebd3 main menu 2026-02-27 20:22:49 +01:00
f7926a218e MinHraKrystof 2026-02-22 20:59:10 +01:00
e14a3ddf2b scaling a cerny pozadí 2026-02-21 14:47:54 +01:00
5bd6eabec6 Opraven TMP, pridan anchoring hlavniho menu 2026-02-21 14:17:12 +01:00
f2ebd125f3 zeme kutululu 2026-02-21 14:04:25 +01:00
2fdfabe2b8 main menu 2026-02-21 13:44:23 +01:00
4a84e729f3 Added packages 2026-02-21 13:18:55 +01:00
055e8aa426 Added Metas 2026-02-21 13:16:44 +01:00
1957d26b1f added cables 2026-02-21 13:07:16 +01:00
8f62dc8873 scena_minigame-kabely. ps pridat ui 2026-02-21 12:32:31 +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
gravitrax-bublina
9f71b6a84a Init 2026-02-21 10:23:17 +01:00
587 changed files with 208564 additions and 13030 deletions

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@@ -0,0 +1,13 @@
{
"permissions": {
"allow": [
"Bash(nul)",
"Bash(mkdir:*)",
"Bash(dir:*)",
"Bash(findstr:*)",
"Bash(move \"Assets\\Scripts\\TiltUI.cs\" \"Assets\\Scripts\\TiltUI.cs.DISABLED\")"
],
"deny": [],
"ask": []
}
}

2
.gitignore vendored
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@@ -186,7 +186,6 @@ StyleCopReport.xml
*_p.c *_p.c
*_h.h *_h.h
*.ilk *.ilk
*.meta
*.obj *.obj
*.iobj *.iobj
*.pch *.pch
@@ -305,7 +304,6 @@ PublishScripts/
# NuGet Symbol Packages # NuGet Symbol Packages
*.snupkg *.snupkg
# The packages folder can be ignored because of Package Restore # The packages folder can be ignored because of Package Restore
**/[Pp]ackages/*
# except build/, which is used as an MSBuild target. # except build/, which is used as an MSBuild target.
!**/[Pp]ackages/build/ !**/[Pp]ackages/build/
# Uncomment if necessary however generally it will be regenerated when needed # Uncomment if necessary however generally it will be regenerated when needed

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@@ -0,0 +1,810 @@
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# 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

@@ -0,0 +1,791 @@
/* 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__)
/* __VISUALDSPVERSION__ = 0xVVRRPP00 */
# define COMPILER_VERSION_MAJOR HEX(__VISUALDSPVERSION__>>24)
# define COMPILER_VERSION_MINOR HEX(__VISUALDSPVERSION__>>16 & 0xFF)
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<!DOCTYPE html>
<html lang="en">
<head>
<meta charset="UTF-8">
<meta name="viewport" content="width=device-width, initial-scale=1.0">
<meta http-equiv="X-UA-Compatible" content="ie=edge">
<title>Rounded Rect Mask 2D</title>
<link href="https://fonts.cdnfonts.com/css/inter" rel="stylesheet">
<style>
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/* outline: 1px solid red; */
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/* THESE ENSURE THE WEBVIEW WILL BE OF CORRECT HEIGHT
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/* FIXES SCROLLING
* =======================================================================
*/
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/* MAIN STYLING
* =======================================================================
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padding: 16px;
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margin-top: 2rem;
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</style>
</head>
<body>
<h1 id="rounded-rect-mask-2d">Rounded Rect Mask 2D</h1>
<p><img src="./Resources/RRM2D_Banner.png" alt="screenshot" /><br />
available on the <a href="https://assetstore.unity.com/packages/slug/326028" rel="noopener noreferrer" target="_blank">Asset Store</a></p>
<h2 id="documentation">Documentation</h2>
<p><img src="./Resources/RRM2D_ScreenshotScene.png" alt="screenshot" /></p>
<h3 id="basics">Basics</h3>
<ul>
<li>All Graphics (<a href="https://docs.unity3d.com/Packages/com.unity.ugui@1.0/manual/comp-UIVisual.html" rel="noopener noreferrer" target="_blank">Visuals</a> &amp; <a href="https://docs.unity3d.com/Packages/com.unity.ugui@1.0/manual/comp-UIInteraction.html" rel="noopener noreferrer" target="_blank">Interactions</a>) components child of the Rounded Mask need the <em>Default UI (Rounded Mask)</em> material to work.</li>
<li>All TextMeshPro texts need the <em>TMP SDF-Mobile (Rounded Mask)</em> material inside the TMP_FontAsset that needs to work with the rounded corners. If your text is only clipped on the straight edges of the mask, they don't need to be changed.</li>
<li>You will need one <em>Default UI (Rounded Mask)</em> material per RoundedRectMask2D radius configuration. If you always use the same corners throughout your project, you can use the Material provided in the package. Same for the TMP_FontAssets.</li>
<li>If you have different radii in your project, either <strong>duplicate the materials</strong>, or tick the checkbox <strong>Clone maskable materials on Start</strong> to automatically create new instances of the materials (for both Default UI &amp; TMP_FontAsset's material).</li>
</ul>
<h3 id="limitations">Limitations</h3>
<ul>
<li>As Rounded RectMask2D uses a special UI shader to work, it can only be used with normal UI (ie: Images with no special material). If you have custom UI shaders for your UI you will need to tweak them to support the RoundedRectMask2D component (otherwise the corners will not be correctly clipped).</li>
<li>Moreover, you will need one Material per corners configuration. If you always use the same values, you can use one Material for all of your UI, but otherwise, RoundedRectMask2D can auto instantiate your materials at runtime, allowing you to have any mask values.</li>
<li>Softness doesn't work with RoundedRectMask2D. If you need softness in your mask, you will have to use both RoundedRectMask2D &amp; a regular RectMask2D nested into each other.</li>
</ul>
<h3 id="custom-shaders">Custom Shaders</h3>
<p>If you have custom UI shaders and would like them to work with the RoundedRectMask2D component, you will need to edit them, to support the feature. You can check how it's done in the custom Shaders (UI Default &amp; TMP_SDF Mobile). <br />
Here is what you need to do:</p>
<ol>
<li>Either move your shaders to the AntoineCherel/RoundedRectMask2D/Shaders folder, or copy &amp; paste the <em>RoundedMaskCommon.hlsl</em> library to your custom shader's folder</li>
<li>in the <em>Pass</em>, include the library <br />
<code>#include "RoundedMaskCommon.hlsl"</code></li>
<li>in the Vertex to Fragment or Vertext to Pixel struct, add <br />
<code>float3 posLocal : TEXCOORD8;</code></li>
<li>fill it in the V2F or V2P function <br />
<code>OUT.posLocal = v.vertex.xyz;</code></li>
<li>in the frag or pixel return function, replace the existing clipping method by<br />
<code>clip( RMUnityUIClipRect(IN.posLocal.xy, _ClipRect, _ClipRectRadii) - 0.5);</code><br />
all of these added lines should be encapsulated inside <code>#ifdef UNITY_UI_CLIP_RECT</code> statements.</li>
</ol>
<p>If something goes wrong double check with the implemented shaders inside the Shaders folder.<br />
You can also reach out to me contact (at) antoinecherel.dev</p>
<h2 id="credits">Credits</h2>
<p>Unity Plugin, developped by <a href="https://www.antoinecherel.dev/" target="_blank">Antoine Cherel</a></p>
</body>
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using UnityEditor;
using UnityEditor.UI;
using UnityEngine;
namespace ACRoundedRectMask
{
/// <summary>
/// Custom editor for the RoundedRectMask2D component.
/// </summary>
[CustomEditor(typeof(RoundedRectMask2D), true)]
[CanEditMultipleObjects]
public class RoundedRectMask2DInspector : RectMask2DEditor
{
private static GUIContent radiusContent = new GUIContent("Corner Radius", "Determines the radius of the rect mask's corners.");
private static GUIContent radiiContent = new GUIContent("Corner Radii", "Determines the radius of each corner of the rect mask.");
private static GUIContent topLeftContent = new GUIContent("Top Left", "Local -X, +Y corner.");
private static GUIContent topRightContent = new GUIContent("Top Right", "Local +X, +Y corner.");
private static GUIContent bottomLeftContent = new GUIContent("Bottom Left", "Local -X, -Y corner.");
private static GUIContent bottomRightContent = new GUIContent("Bottom Right", "Local +X, -Y corner.");
private static bool showRadii = false;
private static GUIContent paddingContent = new GUIContent("Padding");
private static GUIContent leftContent = new GUIContent("Left");
private static GUIContent rightContent = new GUIContent("Right");
private static GUIContent topContent = new GUIContent("Top");
private static GUIContent bottomContent = new GUIContent("Bottom");
private static bool showOffsets = false;
private SerializedProperty independentRadii;
private SerializedProperty radii;
private SerializedProperty padding;
private SerializedProperty cloneMaterials;
/// <inheritdoc/>
protected override void OnEnable()
{
independentRadii = serializedObject.FindProperty("independantRadii");
radii = serializedObject.FindProperty("radii");
padding = serializedObject.FindProperty("m_Padding");
cloneMaterials = serializedObject.FindProperty("cloneMaskableMaterialsOnStart");
base.OnEnable();
}
/// <summary>
/// Renders a custom inspector GUI that displays radius options and hides softness properties.
/// </summary>
public override void OnInspectorGUI()
{
EditorGUILayout.PropertyField(independentRadii);
if (independentRadii.boolValue)
{
showRadii = EditorGUILayout.Foldout(showRadii, radiiContent, true);
if (showRadii)
{
using (var check = new EditorGUI.ChangeCheckScope())
{
EditorGUI.indentLevel++;
Vector4 newRadii = radii.vector4Value;
newRadii.x = Mathf.Max(0.0f, EditorGUILayout.FloatField(topLeftContent, newRadii.x));
newRadii.y = Mathf.Max(0.0f, EditorGUILayout.FloatField(topRightContent, newRadii.y));
newRadii.z = Mathf.Max(0.0f, EditorGUILayout.FloatField(bottomLeftContent, newRadii.z));
newRadii.w = Mathf.Max(0.0f, EditorGUILayout.FloatField(bottomRightContent, newRadii.w));
if (check.changed)
{
radii.vector4Value = newRadii;
}
EditorGUI.indentLevel--;
}
}
}
else
{
using (var check = new EditorGUI.ChangeCheckScope())
{
float newRadius = radii.vector4Value.x;
newRadius = Mathf.Max(0.0f, EditorGUILayout.FloatField(radiusContent, newRadius));
if (check.changed)
{
Vector4 newRadii = radii.vector4Value;
newRadii = Vector4.one * newRadius;
radii.vector4Value = newRadii;
}
}
}
// Rather than call base.OnInspectorGUI() manually showing padding so that softness can be hidden since it is not supported by rounded rect masks.
showOffsets = EditorGUILayout.Foldout(showOffsets, paddingContent, true);
if (showOffsets)
{
using (var check = new EditorGUI.ChangeCheckScope())
{
EditorGUI.indentLevel++;
Vector4 newPadding = padding.vector4Value;
newPadding.x = EditorGUILayout.FloatField(leftContent, newPadding.x);
newPadding.z = EditorGUILayout.FloatField(rightContent, newPadding.z);
newPadding.w = EditorGUILayout.FloatField(topContent, newPadding.w);
newPadding.y = EditorGUILayout.FloatField(bottomContent, newPadding.y);
if (check.changed)
{
padding.vector4Value = newPadding;
}
EditorGUI.indentLevel--;
}
}
EditorGUILayout.PropertyField(cloneMaterials);
serializedObject.ApplyModifiedProperties();
}
}
}

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using System.Collections.Generic;
using UnityEngine;
using UnityEngine.UI;
using System.Reflection;
using TMPro;
#if UNITY_2021_1_OR_NEWER
using UnityEngine.Pool;
#endif
namespace ACRoundedRectMask
{
/// <summary>
/// Overrides the RectMask2D.PerformClipping method to add extra checks before doing exhaustive culling on
/// each maskable target.
/// </summary>
public class RoundedRectMask2D : RectMask2D
{
public static readonly string RadiiPropertyName = "_ClipRectRadii";
[SerializeField]
private bool independantRadii;
[Tooltip("The four corner radii of the rounded rect. (x: top left, y: top right, z: bottom left, w: bottom right)")]
[SerializeField]
private Vector4 radii = Vector4.one * 10.0f;
public Vector4 Radii
{
get => radii;
set
{
radii = value;
MaskUtilities.Notify2DMaskStateChanged(this);
ForceClip = true;
}
}
[Tooltip("If not set to true, you will need to handle that all masked UI elements have their own material instances")]
[SerializeField]
private bool cloneMaskableMaterialsOnStart = true;
private static int clipRectRadiiID = 0;
private HashSet<IClippable> clipTargets = null;
private HashSet<MaskableGraphic> maskableTargets = null;
private int lastclipTargetsCount = 0;
private int lastmaskableTargetsCount = 0;
private bool shouldRecalculateClipRects = false;
private Canvas cachedCanvas = null;
private Vector3[] cachedCorners = new Vector3[4];
private Rect lastClipRectCanvasSpace = new Rect();
private Vector2Int lastSoftness = new Vector2Int();
private List<RectMask2D> clippers = new List<RectMask2D>();
#region MonoBehaviour Implementation
/// <inheritdoc />
protected override void OnEnable()
{
base.OnEnable();
shouldRecalculateClipRects = true;
ForceClip = true;
}
#if UNITY_EDITOR
/// <inheritdoc />
protected override void OnValidate()
{
base.OnValidate();
shouldRecalculateClipRects = true;
ForceClip = true;
}
#endif
/// <inheritdoc />
protected override void OnDidApplyAnimationProperties()
{
base.OnDidApplyAnimationProperties();
shouldRecalculateClipRects = true;
ForceClip = true;
}
#endregion MonoBehaviour Implementation
#region RectMask2D Implementation
/// <inheritdoc />
protected override void OnTransformParentChanged()
{
base.OnTransformParentChanged();
shouldRecalculateClipRects = true;
}
/// <inheritdoc />
protected override void OnCanvasHierarchyChanged()
{
cachedCanvas = null;
base.OnCanvasHierarchyChanged();
shouldRecalculateClipRects = true;
}
protected override void Start()
{
base.Start();
shouldRecalculateClipRects = true;
PerformClipping();
if (cloneMaskableMaterialsOnStart && maskableTargets != null)
{
foreach (MaskableGraphic mg in maskableTargets)
{
if (mg.materialForRendering.Equals(mg.material))
{
Material m = new Material(mg.material);
mg.material = m;
}
else if (mg is TMP_Text tmpText)
{
Material m = new Material(tmpText.fontMaterial);
tmpText.fontMaterial = m;
}
else
{
Debug.Log("[RoundedRectMask2d] Can't clone material for " + mg.name + ". This will result in same rounded corners for all assets sharing its materiel " + mg.materialForRendering);
continue;
}
OnSetClipRect(mg);
}
}
}
/// <summary>
/// Improves the base class method by:
/// - Checks if the canvas renderer has moved before exhaustive culling.
/// - Interleaves UpdateClipSoftness so objects are not iterated over twice.
/// - Adds a OnSetClipRect callback for derived classes to use.
/// </summary>
public override void PerformClipping()
{
// Not calling the base class method intentionally to provide a more optimal version.
//base.PerformClipping();
if (clipRectRadiiID == 0)
{
clipRectRadiiID = Shader.PropertyToID(RadiiPropertyName);
}
Initialize();
if (ReferenceEquals(Canvas, null))
{
return;
}
//TODO See if an IsActive() test would work well here or whether it might cause unexpected side effects (re case 776771)
// if the parents are changed
// or something similar we
// do a recalculate here
if (shouldRecalculateClipRects || ForceClip)
{
MaskUtilities.GetRectMasksForClip(this, clippers);
shouldRecalculateClipRects = false;
}
// get the compound rects from
// the clippers that are valid
bool validRect = true;
Rect clipRect = Clipping.FindCullAndClipWorldRect(clippers, out validRect);
// If the mask is in ScreenSpaceOverlay/Camera render mode, its content is only rendered when its rect
// overlaps that of the root canvas.
RenderMode renderMode = Canvas.rootCanvas.renderMode;
bool maskIsCulled =
(renderMode == RenderMode.ScreenSpaceCamera || renderMode == RenderMode.ScreenSpaceOverlay) &&
!clipRect.Overlaps(RootCanvasRect, true);
if (maskIsCulled)
{
// Children are only displayed when inside the mask. If the mask is culled, then the children
// inside the mask are also culled. In that situation, we pass an invalid rect to allow callees
// to avoid some processing.
clipRect = Rect.zero;
validRect = false;
}
if (clipRect != lastClipRectCanvasSpace || softness != lastSoftness)
{
foreach (IClippable clipTarget in clipTargets)
{
clipTarget.SetClipRect(clipRect, validRect);
clipTarget.SetClipSoftness(softness);
}
foreach (MaskableGraphic maskableTarget in maskableTargets)
{
maskableTarget.SetClipRect(clipRect, validRect);
maskableTarget.SetClipSoftness(softness);
OnSetClipRect(maskableTarget);
maskableTarget.Cull(clipRect, validRect);
}
}
else if (ForceClip)
{
foreach (IClippable clipTarget in clipTargets)
{
clipTarget.SetClipRect(clipRect, validRect);
clipTarget.SetClipSoftness(softness);
}
foreach (MaskableGraphic maskableTarget in maskableTargets)
{
maskableTarget.SetClipRect(clipRect, validRect);
maskableTarget.SetClipSoftness(softness);
OnSetClipRect(maskableTarget);
if (maskableTarget.canvasRenderer.hasMoved)
{
maskableTarget.Cull(clipRect, validRect);
}
}
}
else
{
foreach (MaskableGraphic maskableTarget in maskableTargets)
{
if (!maskableTarget.canvasRenderer.hasMoved)
{
continue;
}
maskableTarget.Cull(clipRect, validRect);
}
}
ForceClip = false;
lastClipRectCanvasSpace = clipRect;
lastSoftness = softness;
}
#endregion RectMask2D Implementation
public bool ForceClip
{
get
{
// This is an imprecise check if a clip or mask target gets added then removed on the same frame.
// But... the alternative is we reflect into m_ForceClip base member which would be a per frame allocation due to it being a value type.
// If this check is return false negatives in your scenario, then set ForceClip to true.
return clipTargets.Count != lastclipTargetsCount ||
maskableTargets.Count != lastmaskableTargetsCount;
}
set
{
if (value == true)
{
lastclipTargetsCount = 0;
lastmaskableTargetsCount = 0;
}
else
{
Initialize();
lastclipTargetsCount = clipTargets.Count;
lastmaskableTargetsCount = maskableTargets.Count;
}
}
}
/// <summary>
/// Callback whenever the clip rect is mutated.
/// </summary>
protected virtual void OnSetClipRect(IClippable clippable)
{
}
/// <summary>
/// Callback whenever the clip rect is mutated.
/// </summary>
protected virtual void OnSetClipRect(MaskableGraphic maskableTarget)
{
Material targetMaterial = maskableTarget.materialForRendering;
if (targetMaterial != null)
{
targetMaterial.SetVector(clipRectRadiiID, Radii);
}
Debug.Log("Setting clip rect for " + maskableTarget.name);
}
private void Initialize()
{
// Check if we have already initialized.
if (clipTargets != null)
{
return;
}
// Many of the properties we need access to for clipping are not exposed. So, we have to do reflection to get access to them.
BindingFlags bindFlags = BindingFlags.Instance | BindingFlags.Public | BindingFlags.NonPublic | BindingFlags.Static;
clipTargets = (HashSet<IClippable>)typeof(RectMask2D).GetField("m_ClipTargets", bindFlags).GetValue(this);
maskableTargets = (HashSet<MaskableGraphic>)typeof(RectMask2D).GetField("m_MaskableTargets", bindFlags).GetValue(this);
}
private Canvas Canvas
{
get
{
if (cachedCanvas == null)
{
#if UNITY_2021_1_OR_NEWER
var list = ListPool<Canvas>.Get();
gameObject.GetComponentsInParent(false, list);
if (list.Count > 0)
cachedCanvas = list[list.Count - 1];
else
cachedCanvas = null;
ListPool<Canvas>.Release(list);
#else
var list = gameObject.GetComponentsInParent<Canvas>(false);
if (list.Length > 0)
cachedCanvas = list[list.Length - 1];
else
cachedCanvas = null;
#endif
}
return cachedCanvas;
}
}
private Rect RootCanvasRect
{
get
{
rectTransform.GetWorldCorners(cachedCorners);
if (!ReferenceEquals(Canvas, null))
{
Canvas rootCanvas = Canvas.rootCanvas;
for (int i = 0; i < 4; ++i)
cachedCorners[i] = rootCanvas.transform.InverseTransformPoint(cachedCorners[i]);
}
return new Rect(cachedCorners[0].x, cachedCorners[0].y, cachedCorners[2].x - cachedCorners[0].x, cachedCorners[2].y - cachedCorners[0].y);
}
}
}
}

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#ifndef RM_COMMON
#define RM_COMMON
/// <summary>
/// Constants
/// </summary>
#define RM_PI 3.14159265359
#define RM_DEGREES_TO_RADIANS (RM_PI / 180.0)
#define RM_HALF_MIN 6.103515625e-5 // 2^-14, the same value for 10, 11 and 16-bit: https://www.khronos.org/opengl/wiki/Small_Float_Formats
#define RM_MIN_CORNER_VALUE 1e-3
#define RM_MIN_CORNER_VALUE_RECT 1e-3
/// <summary>
/// SDF methods.
/// </summary>
inline float RMPointVsRoundedBox(in float2 position, in float2 cornerCircleDistance, in float cornerCircleRadius)
{
return length(max(abs(position) - cornerCircleDistance, 0.0)) - cornerCircleRadius;
}
inline float FilterDistance(in float distance)
{
float pixelDistance = distance / fwidth(distance);
#if defined(_INDEPENDENT_CORNERS) || defined(_UI_CLIP_RECT_ROUNDED_INDEPENDENT)
// To avoid artifacts at discontinuities in the SDF distance increase the pixel width.
return saturate(1.0 - pixelDistance);
#else
return saturate(0.5 - pixelDistance);
#endif
}
inline float RMRoundCornersSmooth(in float2 position, in float2 cornerCircleDistance, in float cornerCircleRadius, in float smoothingValue)
{
float distance = RMPointVsRoundedBox(position, cornerCircleDistance, cornerCircleRadius);
#if defined(_EDGE_SMOOTHING_AUTOMATIC)
return FilterDistance(distance);
#else
return smoothstep(1.0, 0.0, distance / smoothingValue);
#endif
}
inline float RMRoundCorners(in float2 position, in float2 cornerCircleDistance, in float cornerCircleRadius, in float smoothingValue)
{
#if defined(_TRANSPARENT)
return RMRoundCornersSmooth(position, cornerCircleDistance, cornerCircleRadius, smoothingValue);
#else
return (RMPointVsRoundedBox(position, cornerCircleDistance, cornerCircleRadius) < 0.0);
#endif
}
inline float RMFindCornerRadius(in float2 uv, in float4 radii)
{
if (uv.x < 0.5)
{
if (uv.y > 0.5) { return radii.x; } // Top left.
else { return radii.z; } // Bottom left.
}
else
{
if (uv.y > 0.5) { return radii.y; } // Top right.
else { return radii.w; } // Bottom right.
}
}
/// <summary>
/// UnityUI methods.
/// </summary>
inline float RMGet2DClippingRounded(in float2 position, in float4 clipRect, in float radius)
{
float2 halfSize = (clipRect.zw - clipRect.xy) * 0.5;
float2 center = clipRect.xy + halfSize;
float2 offset = position - center;
return RMPointVsRoundedBox(offset, halfSize - radius, radius);
}
inline float RMGet2DClippingRoundedSoft(in float2 position, in float4 clipRect, in float radius)
{
return saturate(FilterDistance(RMGet2DClippingRounded(position, clipRect, radius)));
}
inline float RMGet2DClippingRoundedIndependent(in float2 position, in float4 clipRect, in float4 radii)
{
float2 halfSize = (clipRect.zw - clipRect.xy) * 0.5;
float2 center = clipRect.xy + halfSize;
float2 offset = position - center;
float radius = RMFindCornerRadius(offset, radii);
return RMPointVsRoundedBox(offset, halfSize - radius, radius);
}
inline float RMGet2DClippingRoundedIndependentSoft(in float2 position, in float4 clipRect, in float4 radii)
{
return saturate(FilterDistance(RMGet2DClippingRoundedIndependent(position, clipRect, radii)));
}
inline float RMUnityUIClipRect(in float2 position, in float4 clipRect, in float4 radii)
{
radii = max(radii, RM_MIN_CORNER_VALUE_RECT);
#if defined(UNITY_UI_ALPHACLIP)
return RMGet2DClippingRoundedIndependent(position, clipRect, radii) <= 0.0;
#else
return RMGet2DClippingRoundedIndependentSoft(position, clipRect, radii);
#endif
}
#endif // RM_COMMON

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// Unity built-in shader source. Copyright (c) 2016 Unity Technologies. MIT license (see license.txt)
Shader "RoundedMask/UI/Default (RoundedMask)"
{
Properties
{
[PerRendererData] _MainTex ("Sprite Texture", 2D) = "white" {}
_Color ("Tint", Color) = (1,1,1,1)
_StencilComp ("Stencil Comparison", Float) = 8
_Stencil ("Stencil ID", Float) = 0
_StencilOp ("Stencil Operation", Float) = 0
_StencilWriteMask ("Stencil Write Mask", Float) = 255
_StencilReadMask ("Stencil Read Mask", Float) = 255
_ColorMask ("Color Mask", Float) = 15
[Toggle(UNITY_UI_ALPHACLIP)] _UseUIAlphaClip ("Use Alpha Clip", Float) = 0
[HideInInspector] _ClipRect("Clip Rect", Vector) = (-32767.0, -32767.0, 32767.0, 32767.0)
[HideInInspector] _ClipRectRadii("Clip Rect Radii", Vector) = (10.0, 10.0, 10.0, 10.0)
}
SubShader
{
Tags
{
"Queue"="Transparent"
"IgnoreProjector"="True"
"RenderType"="Transparent"
"PreviewType"="Plane"
"CanUseSpriteAtlas"="True"
}
Stencil
{
Ref [_Stencil]
Comp [_StencilComp]
Pass [_StencilOp]
ReadMask [_StencilReadMask]
WriteMask [_StencilWriteMask]
}
Cull Off
Lighting Off
ZWrite Off
ZTest [unity_GUIZTestMode]
Blend SrcAlpha OneMinusSrcAlpha
ColorMask [_ColorMask]
Pass
{
Name "Default"
CGPROGRAM
#pragma vertex vert
#pragma fragment frag
#pragma target 2.0
#include "UnityCG.cginc"
#include "UnityUI.cginc"
#include "RoundedMaskCommon.hlsl"
#pragma multi_compile_local _ UNITY_UI_CLIP_RECT
#pragma multi_compile_local _ UNITY_UI_ALPHACLIP
struct appdata_t
{
float4 vertex : POSITION;
float4 color : COLOR;
float2 texcoord : TEXCOORD0;
UNITY_VERTEX_INPUT_INSTANCE_ID
};
struct v2f
{
float4 vertex : SV_POSITION;
fixed4 color : COLOR;
float2 texcoord : TEXCOORD0;
float4 worldPosition : TEXCOORD1;
#ifdef UNITY_UI_CLIP_RECT
float3 posLocal : TEXCOORD8;
#endif
UNITY_VERTEX_OUTPUT_STEREO
};
sampler2D _MainTex;
fixed4 _Color;
fixed4 _TextureSampleAdd;
float4 _ClipRect;
float4 _ClipRectRadii;
float4 _MainTex_ST;
v2f vert(appdata_t v)
{
v2f OUT;
UNITY_SETUP_INSTANCE_ID(v);
UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(OUT);
OUT.worldPosition = v.vertex;
OUT.vertex = UnityObjectToClipPos(OUT.worldPosition);
OUT.texcoord = TRANSFORM_TEX(v.texcoord, _MainTex);
#ifdef UNITY_UI_CLIP_RECT
OUT.posLocal = v.vertex.xyz;
#endif
OUT.color = v.color * _Color;
return OUT;
}
fixed4 frag(v2f IN) : SV_Target
{
#ifdef UNITY_UI_CLIP_RECT
clip( RMUnityUIClipRect(IN.posLocal.xy, _ClipRect, _ClipRectRadii) - 0.5);
#endif
half4 color = (tex2D(_MainTex, IN.texcoord) + _TextureSampleAdd) * IN.color;
#ifdef UNITY_UI_ALPHACLIP
clip (color.a - 0.001);
#endif
return color;
}
ENDCG
}
}
}

View File

@@ -1,249 +0,0 @@
// Simplified SDF shader:
// - No Shading Option (bevel / bump / env map)
// - No Glow Option
// - Softness is applied on both side of the outline
Shader "RoundedMask/TextMeshPro/Mobile/Distance Field (RoundedMask)" {
Properties {
[HDR]_FaceColor ("Face Color", Color) = (1,1,1,1)
_FaceDilate ("Face Dilate", Range(-1,1)) = 0
[HDR]_OutlineColor ("Outline Color", Color) = (0,0,0,1)
_OutlineWidth ("Outline Thickness", Range(0,1)) = 0
_OutlineSoftness ("Outline Softness", Range(0,1)) = 0
[HDR]_UnderlayColor ("Border Color", Color) = (0,0,0,.5)
_UnderlayOffsetX ("Border OffsetX", Range(-1,1)) = 0
_UnderlayOffsetY ("Border OffsetY", Range(-1,1)) = 0
_UnderlayDilate ("Border Dilate", Range(-1,1)) = 0
_UnderlaySoftness ("Border Softness", Range(0,1)) = 0
_WeightNormal ("Weight Normal", float) = 0
_WeightBold ("Weight Bold", float) = .5
_ShaderFlags ("Flags", float) = 0
_ScaleRatioA ("Scale RatioA", float) = 1
_ScaleRatioB ("Scale RatioB", float) = 1
_ScaleRatioC ("Scale RatioC", float) = 1
_MainTex ("Font Atlas", 2D) = "white" {}
_TextureWidth ("Texture Width", float) = 512
_TextureHeight ("Texture Height", float) = 512
_GradientScale ("Gradient Scale", float) = 5
_ScaleX ("Scale X", float) = 1
_ScaleY ("Scale Y", float) = 1
_PerspectiveFilter ("Perspective Correction", Range(0, 1)) = 0.875
_Sharpness ("Sharpness", Range(-1,1)) = 0
_VertexOffsetX ("Vertex OffsetX", float) = 0
_VertexOffsetY ("Vertex OffsetY", float) = 0
_ClipRect ("Clip Rect", vector) = (-32767, -32767, 32767, 32767)
[HideInInspector]
_ClipRectRadii ("Clip Rect Radii", vector) = (10.0, 10.0, 10.0, 10.0)
_MaskSoftnessX ("Mask SoftnessX", float) = 0
_MaskSoftnessY ("Mask SoftnessY", float) = 0
_StencilComp ("Stencil Comparison", Float) = 8
_Stencil ("Stencil ID", Float) = 0
_StencilOp ("Stencil Operation", Float) = 0
_StencilWriteMask ("Stencil Write Mask", Float) = 255
_StencilReadMask ("Stencil Read Mask", Float) = 255
_CullMode ("Cull Mode", Float) = 0
_ColorMask ("Color Mask", Float) = 15
}
SubShader {
Tags
{
"Queue"="Transparent"
"IgnoreProjector"="True"
"RenderType"="Transparent"
}
Stencil
{
Ref [_Stencil]
Comp [_StencilComp]
Pass [_StencilOp]
ReadMask [_StencilReadMask]
WriteMask [_StencilWriteMask]
}
Cull [_CullMode]
ZWrite Off
Lighting Off
Fog { Mode Off }
ZTest [unity_GUIZTestMode]
Blend One OneMinusSrcAlpha
ColorMask [_ColorMask]
Pass {
CGPROGRAM
#pragma vertex VertShader
#pragma fragment PixShader
#pragma shader_feature __ OUTLINE_ON
#pragma shader_feature __ UNDERLAY_ON UNDERLAY_INNER
#pragma multi_compile __ UNITY_UI_CLIP_RECT
#pragma multi_compile __ UNITY_UI_ALPHACLIP
#include "UnityCG.cginc"
#include "UnityUI.cginc"
#include "RoundedMaskCommon.hlsl"
#include "Assets/TextMesh Pro/Shaders/TMPro_Properties.cginc"
struct vertex_t {
UNITY_VERTEX_INPUT_INSTANCE_ID
float4 vertex : POSITION;
float3 normal : NORMAL;
fixed4 color : COLOR;
float2 texcoord0 : TEXCOORD0;
float2 texcoord1 : TEXCOORD1;
};
struct pixel_t {
UNITY_VERTEX_INPUT_INSTANCE_ID
UNITY_VERTEX_OUTPUT_STEREO
float4 vertex : SV_POSITION;
fixed4 faceColor : COLOR;
fixed4 outlineColor : COLOR1;
float4 texcoord0 : TEXCOORD0; // Texture UV, Mask UV
half4 param : TEXCOORD1; // Scale(x), BiasIn(y), BiasOut(z), Bias(w)
half4 mask : TEXCOORD2; // Position in clip space(xy), Softness(zw)
#if (UNDERLAY_ON | UNDERLAY_INNER)
float4 texcoord1 : TEXCOORD3; // Texture UV, alpha, reserved
half2 underlayParam : TEXCOORD4; // Scale(x), Bias(y)
#endif
#ifdef UNITY_UI_CLIP_RECT
float3 posLocal : TEXCOORD8;
#endif
};
float4 _ClipRectRadii;
pixel_t VertShader(vertex_t input)
{
pixel_t output;
UNITY_INITIALIZE_OUTPUT(pixel_t, output);
UNITY_SETUP_INSTANCE_ID(input);
UNITY_TRANSFER_INSTANCE_ID(input, output);
UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);
float bold = step(input.texcoord1.y, 0);
float4 vert = input.vertex;
vert.x += _VertexOffsetX;
vert.y += _VertexOffsetY;
float4 vPosition = UnityObjectToClipPos(vert);
float2 pixelSize = vPosition.w;
pixelSize /= float2(_ScaleX, _ScaleY) * abs(mul((float2x2)UNITY_MATRIX_P, _ScreenParams.xy));
float scale = rsqrt(dot(pixelSize, pixelSize));
scale *= abs(input.texcoord1.y) * _GradientScale * (_Sharpness + 1);
if(UNITY_MATRIX_P[3][3] == 0) scale = lerp(abs(scale) * (1 - _PerspectiveFilter), scale, abs(dot(UnityObjectToWorldNormal(input.normal.xyz), normalize(WorldSpaceViewDir(vert)))));
float weight = lerp(_WeightNormal, _WeightBold, bold) / 4.0;
weight = (weight + _FaceDilate) * _ScaleRatioA * 0.5;
float layerScale = scale;
scale /= 1 + (_OutlineSoftness * _ScaleRatioA * scale);
float bias = (0.5 - weight) * scale - 0.5;
float outline = _OutlineWidth * _ScaleRatioA * 0.5 * scale;
float opacity = input.color.a;
#if (UNDERLAY_ON | UNDERLAY_INNER)
opacity = 1.0;
#endif
fixed4 faceColor = fixed4(input.color.rgb, opacity) * _FaceColor;
faceColor.rgb *= faceColor.a;
fixed4 outlineColor = _OutlineColor;
outlineColor.a *= opacity;
outlineColor.rgb *= outlineColor.a;
outlineColor = lerp(faceColor, outlineColor, sqrt(min(1.0, (outline * 2))));
#if (UNDERLAY_ON | UNDERLAY_INNER)
layerScale /= 1 + ((_UnderlaySoftness * _ScaleRatioC) * layerScale);
float layerBias = (.5 - weight) * layerScale - .5 - ((_UnderlayDilate * _ScaleRatioC) * .5 * layerScale);
float x = -(_UnderlayOffsetX * _ScaleRatioC) * _GradientScale / _TextureWidth;
float y = -(_UnderlayOffsetY * _ScaleRatioC) * _GradientScale / _TextureHeight;
float2 layerOffset = float2(x, y);
#endif
// Generate UV for the Masking Texture
float4 clampedRect = clamp(_ClipRect, -2e10, 2e10);
float2 maskUV = (vert.xy - clampedRect.xy) / (clampedRect.zw - clampedRect.xy);
// Populate structure for pixel shader
output.vertex = vPosition;
output.faceColor = faceColor;
output.outlineColor = outlineColor;
output.texcoord0 = float4(input.texcoord0.x, input.texcoord0.y, maskUV.x, maskUV.y);
output.param = half4(scale, bias - outline, bias + outline, bias);
output.mask = half4(vert.xy * 2 - clampedRect.xy - clampedRect.zw, 0.25 / (0.25 * half2(_MaskSoftnessX, _MaskSoftnessY) + pixelSize.xy));
#if (UNDERLAY_ON || UNDERLAY_INNER)
output.texcoord1 = float4(input.texcoord0 + layerOffset, input.color.a, 0);
output.underlayParam = half2(layerScale, layerBias);
#endif
#ifdef UNITY_UI_CLIP_RECT
output.posLocal = vert.xyz;
#endif
return output;
}
// PIXEL SHADER
fixed4 PixShader(pixel_t input) : SV_Target
{
UNITY_SETUP_INSTANCE_ID(input);
half d = tex2D(_MainTex, input.texcoord0.xy).a * input.param.x;
half4 c = input.faceColor * saturate(d - input.param.w);
#ifdef OUTLINE_ON
c = lerp(input.outlineColor, input.faceColor, saturate(d - input.param.z));
c *= saturate(d - input.param.y);
#endif
#if UNDERLAY_ON
d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x;
c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * saturate(d - input.underlayParam.y) * (1 - c.a);
#endif
#if UNDERLAY_INNER
half sd = saturate(d - input.param.z);
d = tex2D(_MainTex, input.texcoord1.xy).a * input.underlayParam.x;
c += float4(_UnderlayColor.rgb * _UnderlayColor.a, _UnderlayColor.a) * (1 - saturate(d - input.underlayParam.y)) * sd * (1 - c.a);
#endif
// Alternative implementation to UnityGet2DClipping with support for softness.
#if UNITY_UI_CLIP_RECT
clip( RMUnityUIClipRect(input.posLocal.xy, _ClipRect, _ClipRectRadii) - 0.5);
#endif
#if (UNDERLAY_ON | UNDERLAY_INNER)
c *= input.texcoord1.z;
#endif
#if UNITY_UI_ALPHACLIP
clip(c.a - 0.001);
#endif
return c;
}
ENDCG
}
}
CustomEditor "TMPro.EditorUtilities.TMP_SDFShaderGUI"
}

8
Assets/ClientSDK.meta Normal file
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@@ -0,0 +1,8 @@
fileFormatVersion: 2
guid: 50a0b21c151e150428fd2803d6b95db0
folderAsset: yes
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guid: 1d2251b279edb0147bd274a884ac878b

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fileFormatVersion: 2
guid: 91e0f647c37b0b94b83f53bb854db28c

View File

@@ -39,8 +39,9 @@ public struct Position
return R * c; return R * c;
} }
public static bool operator ==(Position left, Position right) { if (left.Lat == right.Lat && left.Lon == right.Lon) { return true; } else { return false; } }
public static bool operator !=(Position left, Position right) { return !(left == right); }
} }
[JsonConverter(typeof(StringEnumConverter))] [JsonConverter(typeof(StringEnumConverter))]
public enum PlayerRole { Crew, Impostor } public enum PlayerRole { Crew, Impostor }

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@@ -1,10 +1,8 @@
using UnityEngine; using UnityEngine;
using GeoSus.Client; using GeoSus.Client;
using Subsystems; using Subsystems;
using System.Threading;
using System.Threading.Tasks;
using System.Collections; using System.Collections;
using System.Collections.Generic; using System;
using TMPro; using TMPro;
/* /*
GameManager - hlavní tøida pro správu hry GameManager - hlavní tøida pro správu hry
@@ -20,26 +18,60 @@ public class GameManager : MonoBehaviour
[Header("Subsystems")] [Header("Subsystems")]
protected GameManager_Network networkSubsystem; protected GameManager_Network networkSubsystem;
protected GameManager_UI uiSubsystem; protected GameManager_UI uiSubsystem;
protected GameManager_Map mapSubsystem;
protected GameManager_Input inputSubsystem;
protected GameClient gameClient; protected GameClient gameClient;
[Header("Player Info")] [Header("Player Info")]
public string displayName; public string displayName;
[Header("UI Elements")] [Header("UI Elements")]
public Canvas JoinCreateLobby; public Canvas JoinCreateLobby;
public Canvas InLobby; 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() void Start()
{ {
DontDestroyOnLoad(this); DontDestroyOnLoad(this);
if (displayName == null || displayName == "") if (displayName == null || displayName == "")
{ {
displayName = "Player_" + Random.Range(1000, 9999).ToString(); displayName = GenerateUsername();
} }
gameClient = new GameClient(GenerateUUID(), /*displayName*/ GenerateUsername()); if (testMode)
uiSubsystem = new GameManager_UI(gameClient, JoinCreateLobby, InLobby); {
_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); networkSubsystem = new GameManager_Network(gameClient);
mapSubsystem = new GameManager_Map(gameClient, MapCenterPoint, buildingSettings, pathwaySettings, areaSettings);
inputSubsystem = new GameManager_Input(gameClient, Player, testMode);
networkSubsystem.OpenConection(); networkSubsystem.OpenConection();
} }
private void Update() private void Update()
@@ -47,8 +79,17 @@ public class GameManager : MonoBehaviour
if (gameClient.CurrentLobbyState != null) if (gameClient.CurrentLobbyState != null)
{ {
uiSubsystem.UpdateLobbyUI(); uiSubsystem.UpdateLobbyUI();
} }
try
{
if (gameClient.CurrentLobbyState.MapDataReady)
{
mapSubsystem.BuildMap();
gameClient.CurrentLobbyState.MapDataReady = false;
}
}
catch (NullReferenceException ex) { }
inputSubsystem.positionCheck();
} }
@@ -60,13 +101,17 @@ public class GameManager : MonoBehaviour
} }
protected string GenerateUsername() protected string GenerateUsername()
{ {
string Username = Random.Range(0,10).ToString() + Random.Range(0, 10).ToString() + Random.Range(0, 10).ToString() + Random.Range(0, 10).ToString(); 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); Debug.Log(Username);
return Username; return Username;
} }
public void CreateLobbyButton() public void CreateLobbyButton()
{ {
networkSubsystem.CrateLobby(50.0755, 14.4378); networkSubsystem.CrateLobby(50.7727264, 15.0719876);
if (testMode)
{
StartCoroutine(ConnectTestClients());
}
} }
public void JoinLobbyButton() public void JoinLobbyButton()
{ {
@@ -84,8 +129,20 @@ public class GameManager : MonoBehaviour
{ {
networkSubsystem.LeaveLobby(); networkSubsystem.LeaveLobby();
} }
public void StartGameButton()
{
networkSubsystem.StartGame();
}
void OnApplicationQuit() void OnApplicationQuit()
{ {
gameClient.Disconnect(); gameClient.Disconnect();
_secondClient?.Disconnect();
_thirdClient?.Disconnect();
}
IEnumerator ConnectTestClients()
{
yield return new WaitForSeconds(2f);
_secondNetwork.JoinLobby(gameClient.CurrentLobbyState.JoinCode);
_thirdNetwork.JoinLobby(gameClient.CurrentLobbyState.JoinCode);
} }
} }

View File

@@ -0,0 +1,2 @@
fileFormatVersion: 2
guid: 22bf82e679cf6e1419440d236360ba3b

View File

@@ -0,0 +1,254 @@
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
}
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;
private GPSState _GPSState = GPSState.Uninitialized;
private float _speed = 0.00001f;
private Position _mapCenter;
private CoroutineHost _coroutineHost = new CoroutineHost();
public GameManager_Input(GameClient gameClient, GameObject player, bool testMode)
{
_gameClient = gameClient;
_player = player;
_testMode = testMode;
}
public void positionCheck()
{
try
{
if (_gameClient.CurrentLobbyState.Phase == GamePhase.Playing)
{
if (_testMode)
{
if (_currentPosition == null || _currentPosition == new Position(0, 0))
{
//Init blok
_currentPosition = _gameClient.CurrentLobbyState.MapData.Center;
_mapCenter = _gameClient.CurrentLobbyState.MapData.Center;
_lastSentPosition = _currentPosition;
}
TestPlayerPosition();
}
else
{
if (_GPSState == GPSState.Uninitialized)
{
_coroutineHost.StartCoroutine(InitiallizeGPS());
return;
}
else if (_GPSState == GPSState.Initializing)
{
return;
}
else if (_GPSState == GPSState.Running)
{
try
{
if (_currentPosition != _lastSentPosition)
{
_gameClient.UpdatePosition(_currentPosition);
_lastSentPosition = _currentPosition;
_player.transform.position = _currentPosition.ToLocalVector3(_mapCenter);
_player.transform.rotation = Quaternion.Euler(0, (float)CalculateHeading(_lastSentPosition.ToLocalVector3(_mapCenter), _currentPosition.ToLocalVector3(_mapCenter)), 0);
}
}
catch (Exception ex)
{
Debug.Log(ex);
}
}
else
{
Debug.Log("GPS failed, trying again...");
_GPSState = GPSState.Uninitialized;
}
}
}
}
catch (NullReferenceException ex) { Debug.Log(ex); }
}
private void TestPlayerPosition()
{
double x = Input.GetAxis("Horizontal");
double y = Input.GetAxis("Vertical");
Debug.Log($"Input: {x}, {y}");
_currentPosition = new Position( _lastSentPosition.Lat + y * _speed, _lastSentPosition.Lon + x * _speed);
Debug.Log($"Current Position: {_currentPosition.Lat}, {_currentPosition.Lon}");
var localCurrent = _currentPosition.ToLocalVector3(_mapCenter);
Debug.Log($"Local Current Position: {localCurrent}");
var heading = CalculateHeading(_lastSentPosition.ToLocalVector3(_mapCenter), localCurrent);
if (heading != null)
{
Debug.Log($"Heading: {heading}");
_player.transform.rotation = Quaternion.Euler(0, (float)heading, 0);
}
_player.transform.position = localCurrent;
try
{
if (_currentPosition != _lastSentPosition)
{
_gameClient.UpdatePosition(_currentPosition);
_lastSentPosition = _currentPosition;
}
}
catch
{
_gameClient.UpdatePosition(_currentPosition);
_lastSentPosition = _currentPosition;
}
}
private double? CalculateHeading(Vector3 first, Vector3 second)
{
double? heading = null;
if ((first - second).magnitude == 0)
{
return null;
}
else if (first.x == second.x && first.z < second.z)
{
return 0;
}
else if (first.x == second.x && first.z > second.z)
{
return 180;
}
else if (first.x > second.x && first.z == second.z)
{
return 270;
}
else if (first.x < second.x && first.z == second.z)
{
return 90;
}
else if (first.x < second.x && first.z < second.z)
{
heading = Math.Asin((second.z - first.z) / first.DistanceTo(second));
return (heading * 180) / Math.PI;
}
else if (first.x < second.x && first.z > second.z)
{
heading = Math.Asin((second.z - first.z) / first.DistanceTo(second));
return (heading * 180) / Math.PI + 180;
}
else if (first.x > second.x && first.z < second.z)
{
heading = Math.Asin((second.z - first.z) / first.DistanceTo(second));
return (heading * 180) / Math.PI - 90;
}
else if (first.x > second.x && first.z > second.z)
{
heading = Math.Asin((second.z - first.z) / first.DistanceTo(second));
return (heading * 180) / Math.PI - 90;
}
else
{
return heading;
}
}
IEnumerator InitiallizeGPS()
{
_GPSState = GPSState.Initializing;
if (!Input.location.isEnabledByUser)
{
Debug.LogError("Location not enabled on device or app does not have permission to access location");
}
// Starts the location service.
float desiredAccuracyInMeters = 10f;
float updateDistanceInMeters = 10f;
Input.location.Start(desiredAccuracyInMeters, updateDistanceInMeters);
// Waits until the location service initializes
int maxWait = 20;
while (Input.location.status == LocationServiceStatus.Initializing && maxWait > 0)
{
yield return new WaitForSeconds(1);
maxWait--;
}
// If the service didn't initialize in 20 seconds this cancels location service use.
if (maxWait < 1)
{
_GPSState = GPSState.Failed;
Debug.LogError("Timed out");
yield break;
}
_GPSState = GPSState.Running;
yield return _coroutineHost.StartCoroutine(GPSService());
}
IEnumerator GPSService()
{
// Check if the user has location service enabled.
// If the connection failed this cancels location service use.
if (Input.location.status == LocationServiceStatus.Failed)
{
Debug.LogError("Unable to determine device location");
yield break;
}
else
{
// If the connection succeeded, this retrieves the device's current location and displays it in the Console window.
_currentPosition = new Position(Input.location.lastData.latitude, Input.location.lastData.longitude);
Debug.Log("Location: " + Input.location.lastData.latitude + " " + Input.location.lastData.longitude + " " + Input.location.lastData.altitude + " " + Input.location.lastData.horizontalAccuracy + " " + Input.location.lastData.timestamp);
yield return new WaitForSeconds(5f);
}
// Stops the location service if there is no need to query location updates continuously.
yield return _coroutineHost.StartCoroutine(GPSService());
}
}
}

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@@ -0,0 +1,2 @@
fileFormatVersion: 2
guid: 2ef1abfb1e85a7943925f9dc3cfea742

View File

@@ -0,0 +1,376 @@
using GeoSus.Client;
using System;
using System.Collections;
using System.Collections.Generic;
using System.Globalization;
using UnityEditor;
using UnityEngine;
using UnityEngine.Localization.Pseudo;
using UnityEngine.UI;
namespace Subsystems{
[System.Serializable]
public class BuildingSettings
{
public Material ResidentalBuildingsMat;
public float ResidentalBuildingHeight;
public Material CommercialBuildingsMat;
public float CommercialBuildingHeight;
public Material IndustrialBuildingsMat;
public float IndustrialBuildingHeight;
public Material DefaultBuildingMat;
public float DefaultBuildingHeight;
}
[System.Serializable]
public class PathwaySettings
{
public Material FootwayMat;
public float FootwayWidth;
public Material PathMat;
public float PathWidth;
public Material StepsMat;
public float StepsWidth;
public Material CyclewayMat;
public float CyclewayWidth;
public Material PedestrianMat;
public float PedestrianWidth;
public Material RoadMat;
public float RoadWidth;
public Material ServiceMat;
public float ServiceWidth;
public Material ResidentialMat;
public float ResidentialWidth;
public Material TrackMat;
public float TrackWidth;
public Material DefaultMat;
public float DefaultWidth;
}
[System.Serializable]
public class AreaSettings
{
public Material ParkMat;
public Material GardenMat;
public Material PlaygroundMat;
public Material ForestMat;
public Material GrassMat;
public Material WaterMat;
public Material DefaultMat;
}
public class GameManager_Map
{
private GameClient _gameClient;
private GameObject _mapCenterPoint;
private Position _centerPosition;
private BuildingSettings _buildingSettings;
private PathwaySettings _pathwaySettings;
private AreaSettings _areaSettings;
private const float _metersPerUnit = 1f;
public GameManager_Map(GameClient gameClient, GameObject mapCenterPoint, BuildingSettings buildingSettings, PathwaySettings pathwaySettings, AreaSettings areaSettings)
{
_gameClient = gameClient;
_mapCenterPoint = mapCenterPoint;
_buildingSettings = buildingSettings;
_pathwaySettings = pathwaySettings;
_areaSettings = areaSettings;
}
public void BuildMap()
{
ClearChildren();
_centerPosition = _gameClient.CurrentLobbyState.MapData.Center;
GameObject buildingsRoot = new GameObject("Buildings");
buildingsRoot.transform.parent = _mapCenterPoint.transform;
GameObject pathRoot = new GameObject("Pathways");
pathRoot.transform.parent = _mapCenterPoint.transform;
GameObject areaRoot = new GameObject("Areas");
areaRoot.transform.parent = _mapCenterPoint.transform;
foreach (var building in _gameClient.CurrentLobbyState.MapData.GetBuildings())
{
string buildingType = "Unknown";
try
{
buildingType = _gameClient.CurrentLobbyState.MapData.BuildingTypes[_gameClient.CurrentLobbyState.MapData.GetBuildings().IndexOf(building)];
}
catch (Exception ex) { Debug.Log($"Error: {ex.Message}"); }
building.Name = buildingType;
GameObject b = BuildBuildingMesh(building);
b.transform.parent = buildingsRoot.transform;
}
foreach (var path in _gameClient.CurrentLobbyState.MapData.GetPathways())
{
GameObject p = BuildPathwayMesh(path);
p.transform.parent = pathRoot.transform;
}
foreach (var area in _gameClient.CurrentLobbyState.MapData.GetAreas())
{
GameObject a = BuildAreaMesh(area);
a.transform.parent = areaRoot.transform;
}
//TODO: POIs
}
void ClearChildren()
{
List<GameObject> toDestroy = new List<GameObject>();
foreach (Transform t in _mapCenterPoint.transform)
toDestroy.Add(t.gameObject);
foreach (var g in toDestroy)
{
UnityEngine.Object.DestroyImmediate(g);
}
}
#region Mesh Building
GameObject BuildBuildingMesh(MapBuilding b)
{
var building = new GameObject($"Building_{b.Name ?? "Unknown"}");
// Výpočet středu budovy
Vector3 center = CalculatePolygonCenter(b.Outline);
building.transform.position = center;
// Vytvoření mesh pro budovu
MeshFilter meshFilter = building.AddComponent<MeshFilter>();
MeshRenderer meshRenderer = building.AddComponent<MeshRenderer>();
float height;
Material mat;
switch (b.BuildingType.ToLower())
{
case "residential":
mat = _buildingSettings.ResidentalBuildingsMat;
height = _buildingSettings.ResidentalBuildingHeight;
break;
case "commercial":
mat = _buildingSettings.CommercialBuildingsMat;
height = _buildingSettings.CommercialBuildingHeight;
break;
case "industrial":
mat = _buildingSettings.IndustrialBuildingsMat;
height = _buildingSettings.IndustrialBuildingHeight;
break;
default:
mat = _buildingSettings.DefaultBuildingMat;
height = _buildingSettings.DefaultBuildingHeight;
break;
}
Mesh mesh = CreateExtrudedPolygonMesh(b.Outline, height);
meshFilter.mesh = mesh;
//TODO: material by type
// Použijeme barvu podle typu budovy
meshRenderer.material = mat;
// Přidání collideru pro interakci
building.AddComponent<MeshCollider>();
return building;
}
GameObject BuildPathwayMesh(MapPathway w)
{
var path = new GameObject($"Path_{w.Name ?? "Unknown"}");
// Použijeme LineRenderer pro jednoduchost
LineRenderer line = path.AddComponent<LineRenderer>();
float width;
Material mat;
switch (w.PathType)
{
case PathType.Footway:
mat = _pathwaySettings.FootwayMat;
width = _pathwaySettings.FootwayWidth;
break;
case PathType.Path:
mat = _pathwaySettings.PathMat;
width = _pathwaySettings.PathWidth;
break;
case PathType.Steps:
mat = _pathwaySettings.StepsMat;
width = _pathwaySettings.PathWidth;
break;
case PathType.Cycleway:
mat = _pathwaySettings.CyclewayMat;
width = _pathwaySettings.CyclewayWidth;
break;
case PathType.Pedestrian:
mat = _pathwaySettings.PedestrianMat;
width = _pathwaySettings.PedestrianWidth;
break;
case PathType.Road:
mat = _pathwaySettings.RoadMat;
width = _pathwaySettings.RoadWidth;
break;
case PathType.Service:
mat = _pathwaySettings.ServiceMat;
width = _pathwaySettings.ServiceWidth;
break;
case PathType.Residential:
mat = _pathwaySettings.ResidentialMat;
width = _pathwaySettings.ResidentialWidth;
break;
case PathType.Track:
mat = _pathwaySettings.TrackMat;
width = _pathwaySettings.TrackWidth;
break;
default:
mat = _pathwaySettings.DefaultMat;
width = _pathwaySettings.DefaultWidth;
break;
}
line.material = mat;
line.widthMultiplier = width;
// Nastavení bodů cesty
line.positionCount = w.Points.Count;
for (int i = 0; i < w.Points.Count; i++)
{
Vector3 pos = w.Points[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center);
pos.y = 0.1f; // Mírně nad zemí
line.SetPosition(i, pos);
}
return path;
}
GameObject BuildAreaMesh(MapArea a)
{
var area = new GameObject($"Area_{a.Name ?? "Unknown"}");
MeshFilter meshFilter = area.AddComponent<MeshFilter>();
MeshRenderer meshRenderer = area.AddComponent<MeshRenderer>();
// Vytvoření plochého mesh
Mesh mesh = CreateFlatPolygonMesh(a.Outline);
meshFilter.mesh = mesh;
Material mat;
switch (a.AreaType)
{
case MapAreaType.Park:
mat = _areaSettings.ParkMat;
break;
case MapAreaType.Garden:
mat = _areaSettings.GardenMat;
break;
case MapAreaType.Playground:
mat = _areaSettings.PlaygroundMat;
break;
case MapAreaType.Forest:
mat = _areaSettings.ForestMat;
break;
case MapAreaType.Grass:
mat = _areaSettings.GrassMat;
break;
case MapAreaType.Water:
mat = _areaSettings.WaterMat;
break;
default:
mat = _areaSettings.DefaultMat;
break;
}
meshRenderer.material = mat;
area.transform.position = new Vector3(0, 0.05f, 0); // Těsně nad zemí
return area;
}
//TODO: POIs
#endregion
#region Polygon Utils
private Vector3 CalculatePolygonCenter(List<Position> points)
{
Vector3 center = Vector3.zero;
foreach (var point in points)
{
center += point.ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center);
}
return center / points.Count;
}
private Mesh CreateExtrudedPolygonMesh(List<Position> outline, float height)
{
Mesh mesh = new Mesh();
int vertexCount = outline.Count;
// Vertices - spodní a horní podstava
Vector3[] vertices = new Vector3[vertexCount * 2];
Vector3 center = CalculatePolygonCenter(outline);
for (int i = 0; i < vertexCount; i++)
{
Vector3 pos = outline[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center) - center;
vertices[i] = pos; // Spodní
vertices[i + vertexCount] = pos + Vector3.up * height; // Horní
}
// Triangles - jen boční stěny pro jednoduchost
List<int> triangles = new List<int>();
for (int i = 0; i < vertexCount; i++)
{
int next = (i + 1) % vertexCount;
// Boční stěna - dva trojúhelníky
triangles.Add(i);
triangles.Add(i + vertexCount);
triangles.Add(next);
triangles.Add(next);
triangles.Add(i + vertexCount);
triangles.Add(next + vertexCount);
}
// Horní podstava - zjednodušená triangulace (fan)
if (vertexCount >= 3)
{
for (int i = 1; i < vertexCount - 1; i++)
{
triangles.Add(vertexCount); // Střed (první bod horní)
triangles.Add(vertexCount + i);
triangles.Add(vertexCount + i + 1);
}
}
mesh.vertices = vertices;
mesh.triangles = triangles.ToArray();
mesh.RecalculateNormals();
mesh.RecalculateBounds();
return mesh;
}
private Mesh CreateFlatPolygonMesh(List<Position> outline)
{
Mesh mesh = new Mesh();
int vertexCount = outline.Count;
Vector3[] vertices = new Vector3[vertexCount];
Vector3 center = CalculatePolygonCenter(outline);
for (int i = 0; i < vertexCount; i++)
{
vertices[i] = outline[i].ToLocalVector3(_gameClient.CurrentLobbyState.MapData.Center) - center;
}
// Triangulace - fan pattern
List<int> triangles = new List<int>();
if (vertexCount >= 3)
{
for (int i = 1; i < vertexCount - 1; i++)
{
triangles.Add(0);
triangles.Add(i);
triangles.Add(i + 1);
}
}
mesh.vertices = vertices;
mesh.triangles = triangles.ToArray();
mesh.RecalculateNormals();
return mesh;
}
#endregion
}
}

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@@ -0,0 +1,2 @@
fileFormatVersion: 2
guid: 71870ee18b89dd7438e5362ff9e02a3b

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@@ -2,6 +2,9 @@ using GeoSus.Client;
using System.Collections; using System.Collections;
using System.Threading.Tasks; using System.Threading.Tasks;
using UnityEngine; using UnityEngine;
using System.Collections.Generic;
using Subsystems;
using System.Linq;
namespace Subsystems namespace Subsystems
{ {
@@ -10,6 +13,7 @@ namespace Subsystems
private const string _serverAddress = "geosus.honzuvkod.dev"; private const string _serverAddress = "geosus.honzuvkod.dev";
private const int _serverPort = 7777; private const int _serverPort = 7777;
private GameClient _gameClient; private GameClient _gameClient;
private GameManager_Map _mapSubsystem;
public async void OpenConection() public async void OpenConection()
{ {
while (true) while (true)
@@ -78,14 +82,31 @@ namespace Subsystems
} }
private void OnGameEvent(GameEvent gameEvent) private void OnGameEvent(GameEvent gameEvent)
{ {
switch (gameEvent.Type) switch (gameEvent.EventType)
{ {
case "PlayerJoined": case "PlayerJoined":
Debug.Log($"Player {gameEvent.GetPayload<PlayerJoinedPayload>().DisplayName} joined"); Debug.Log($"Player {gameEvent.GetPayload<PlayerJoinedPayload>().DisplayName} joined");
HandlePlayerJoined(gameEvent); 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; break;
default: default:
Debug.Log("Received GameEvent of type: " + gameEvent.Type); Debug.Log("Received GameEvent of type: " + gameEvent.EventType);
break; break;
} }
} }
@@ -111,20 +132,6 @@ namespace Subsystems
Debug.LogError("Failed to create lobby: " + message.Error); Debug.LogError("Failed to create lobby: " + message.Error);
} }
} }
private void HandlePlayerJoined(GameEvent gameEvent)
{
var payload = gameEvent.GetPayload<PlayerJoinedPayload>();
_gameClient.CurrentLobbyState.Players.Add(new PlayerInfo
{
ClientUuid = payload.ClientUuid,
DisplayName = payload.DisplayName,
IsOwner = false,
IsReady = false,
State = PlayerState.Alive
});
}
public void CrateLobby(double lat, double lon) public void CrateLobby(double lat, double lon)
{ {
_gameClient.CreateLobby(new Position(lat, lon)); _gameClient.CreateLobby(new Position(lat, lon));
@@ -145,8 +152,11 @@ namespace Subsystems
_gameClient.Disconnect(); _gameClient.Disconnect();
Application.Quit(); Application.Quit();
} }
public void StartGame()
{
_gameClient.StartGame();
} }
} }
}

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@@ -0,0 +1,2 @@
fileFormatVersion: 2
guid: 989e9292fe24c2a4ba95ceae191dd330

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@@ -2,7 +2,7 @@ using UnityEngine;
using Subsystems; using Subsystems;
using GeoSus.Client; using GeoSus.Client;
using System.ComponentModel; using System.ComponentModel;
using System.Threading;
namespace Subsystems namespace Subsystems
{ {
@@ -11,15 +11,39 @@ namespace Subsystems
private GameClient _gameClient; private GameClient _gameClient;
private Canvas _CreateJoinLobby; private Canvas _CreateJoinLobby;
private Canvas _InLobby; private Canvas _InLobby;
public GameManager_UI(GameClient gameClient, Canvas CreateJoinLobby, Canvas InLobby) private Canvas _LoadingScreen;
private Canvas _GameScreen;
public GameManager_UI(GameClient gameClient, Canvas CreateJoinLobby, Canvas InLobby, Canvas LoadingScreen, Canvas GameScreen)
{ {
_gameClient = gameClient; _gameClient = gameClient;
_CreateJoinLobby = CreateJoinLobby; _CreateJoinLobby = CreateJoinLobby;
_LoadingScreen = LoadingScreen;
_GameScreen = GameScreen;
_InLobby = InLobby; _InLobby = InLobby;
_CreateJoinLobby.enabled = true; _CreateJoinLobby.enabled = true;
_InLobby.enabled = false; _InLobby.enabled = false;
_GameScreen.enabled = false;
_LoadingScreen.enabled = false;
} }
public void UpdateLobbyUI() 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; _InLobby.enabled = true;
_CreateJoinLobby.enabled = false; _CreateJoinLobby.enabled = false;
@@ -30,6 +54,18 @@ namespace Subsystems
playerList.text += player.DisplayName + "\n"; playerList.text += player.DisplayName + "\n";
} }
_InLobby.transform.Find("JoinCode").GetComponent<TMPro.TMP_Text>().text = _gameClient.CurrentLobbyState.JoinCode; _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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@@ -0,0 +1,2 @@
fileFormatVersion: 2
guid: cbe0afd6cfb57b44781533cfa4ce4196

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@@ -1,4 +1,4 @@
using GeoSus.Client; //using GeoSus.Client;
using System; using System;
using UnityEngine; using UnityEngine;

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