AuroraRuntime/Source/RNG/RNGStaticUtilities.cpp
Reece Wilson 8a2947ffc5 [+] RMD128+BScFwd based HashCash (bcrypt DoS mitigation, acc creation, antibot, etc)
[*] Refactor bcrypt api: HashPW[Ex] -> HashPassword[Ex]
[+] ByteBuffer::GetOrAllocateLinearWriteable
[+] ByteBuffer::Can[Read/Write](n)
[+] ByteBuffer::GetLinear[Read/Writable]able(n)
[*] Split RNG.cpp into two files
[+] EHashType::eSHA2_48 (_32, _64 was already in place. missed 48/384 bit)
[+] AuCrypto::HMAC and IHMACContext
(AuHashing)
[+] EHashType::eSHA3_28
[+] EHashType::eSHA3_32
[+] EHashType::eSHA3_48
[+] EHashType::eSHA3_64
(AuCrypto)
[+] EHashType::eSHA2_48_384
[+] EHashType::eSHA2_64_512
[+] EHashType::eSHA3_28_224
[+] EHashType::eSHA3_32_256
[+] EHashType::eSHA3_48_384
[+] EHashType::eSHA3_64_512
[*] (IRandomDevice) class -> struct
[*] Bugfix: cast in Promise<SuccessValue_t, ErrorValue_t>::WriteIntoError
[+] Missing AuHashing namespace alias
[*] Time util: pad ms when fraction of a second to 3 digits
2022-09-19 02:34:57 +01:00

70 lines
1.5 KiB
C++

/***
Copyright (C) 2022 J Reece Wilson (a/k/a "Reece"). All rights reserved.
File: RNGStaticUtilities.cpp
Date: 2022-9-17
File: RNG.cpp
Date: 2021-6-11
Author: Reece
***/
#include <Source/RuntimeInternal.hpp>
#include "RNG.hpp"
#include "RNGStaticUtilities.hpp"
namespace Aurora::RNG
{
AUKN_SYM AuString ReadString(AuUInt32 length, ERngStringCharacters type)
{
return gFastDevice->NextString(length, type);
}
AUKN_SYM void RngString(char *string, AuUInt32 length, ERngStringCharacters type)
{
gFastDevice->NextString(string, length, type);
}
AUKN_SYM AuUInt8 RngByte()
{
return gFastDevice->NextByte();
}
AUKN_SYM bool RngBoolean()
{
return gFastDevice->NextBoolean();
}
AUKN_SYM AuUInt32 RngU32()
{
return gFastDevice->NextU32();
}
AUKN_SYM AuUInt32 RngU32(AuUInt32 min, AuUInt32 max)
{
return gFastDevice->NextU32(min, max);
}
AUKN_SYM AuUInt64 RngU64()
{
return gFastDevice->NextU64();
}
AUKN_SYM AuInt32 RngInt(AuInt32 min, AuInt32 max)
{
return gFastDevice->NextInt(min, max);
}
AUKN_SYM double RngDecimal()
{
return gFastDevice->NextDecimal();
}
AUKN_SYM float RngNumber(float min, float max)
{
return gFastDevice->NextNumber(min, max);
}
AUKN_SYM AuUInt32 RngIndex(AuUInt32 count /* = max + 1*/)
{
return gFastDevice->NextIndex(count);
}
}