AuroraRuntime/Include/Aurora/Async/Legacy/JobFrom.hpp
J Reece Wilson fd0c5b51b2 Further Linux support
[+] Begin work on IO futexes for io release on process/thread exit
[+] Linux ::readdir iteration
[+] AuConsole buffering API
[*] Fix sleep as to not get interrupted by signals
[*] Switch the type of FS lock used under Linux
[*] Linux: Use new IPCHandle encoding scheme
[*] Fix undefined behaviour: unintialized timeout values (AuLoop/Linux)
[*] Fix undefined behaviour: ConsoleTTY clear line was called of a color of a random value on stack
[-] Remainings of std dir iterator
[*] Fix pthread_kill (aka send signal to pthread handle) always kills process. This is what you expect bc signal handler inheritance.
[*] Reformat the build Aurora.json file
[+] Added clang warning ignores to the build file
[*] Fix: UNIX need to use STDOUT_FILENO. Was using CRT handle in place of fd by mistake.
[+] Linux implementation for IO yield (AuIO::IOYield() - UNIX::LinuxOverlappedYield())
[*] Fix: Linux async end of stream processing. res 0 = zero bytes consumed. <= was detecting this as an error of code 0. Should succeed with zero bytes.
[+] Linux LoopQueue missing epilogue hook for the IO processor
[*] Various refactors and minor bug fixes
[*] Linux fix: Handle pipe EOS as zero
[*] Linux fix: thread termination via a user signal of 77. Need a force terminate.
[*] IPC handle: fix improper int to bool cast in the header setup within ToString
[*] Linux fix: HWInfo CPU topology regression
[-] Linux fix: remove SIGABRT handler
[*] Missing override in compression, exit, and consoletty headers.
[+] Unix Syslog logger backend
2022-08-02 05:52:57 +01:00

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C++

/***
Copyright (C) 2021 J Reece Wilson (a/k/a "Reece"). All rights reserved.
File: JobFrom.hpp
Date: 2021-11-1
Author: Reece
***/
#pragma once
namespace Aurora::Async
{
template<class Info_t = AVoid, class Result_t = AVoid, class Callable_t>
static inline FJob<Info_t, Result_t> JobFromPairConsumer(const /*AuConsumer<const Info_t &, const Result_t &> */ Callable_t&onSuccess)
{
FJob<Info_t, Result_t> ret;
ret.onSuccess = [=](const Info_t &in, const Result_t &a)
{
onSuccess(in, a);
};
return ret;
}
template<class Info_t = AVoid, class Result_t = AVoid, class Callable_t>
static inline FJob<Info_t, Result_t> JobFromResultConsumer(/*AuConsumer<const Result_t &> */ Callable_t onSuccess)
{
FJob<Info_t, Result_t> ret;
ret.onSuccess = [=](const Info_t &in, const Result_t &a)
{
onSuccess(a);
};
return ret;
}
template<typename Out_t = AVoid, typename ... Args, typename Callable_t>
FJob<AuTuple<Args...>, Out_t> JobFromTupleConsumer(/*AuConsumer<Args..., const Result_t &> */ Callable_t onSuccess)
{
FJob<AuTuple<Args...>, Out_t> ret;
ret.onSuccess = [=](const AuTuple<Args...> &in, const Out_t &a)
{
AuTupleApply(onSuccess, AuTupleCat(in, AuMakeTuple<const Out_t &>(a)));
};
return ret;
}
template<typename Out_t = AVoid, typename ... Args, typename Callable_t, typename FailureCallable_t>
FJob<AuTuple<Args...>, Out_t> JobFromTupleConsumerEx(/*AuConsumer<Args..., const Result_t &> */ Callable_t onSuccess, FailureCallable_t onFailure)
{
FJob<AuTuple<Args...>, Out_t> ret;
ret.onSuccess = [=](const AuTuple<Args...> &in, const Out_t &a)
{
AuTupleApply(onSuccess, AuTupleCat(in, AuMakeTuple<const Out_t &>(a)));
};
ret.onFailure = [=](const AuTuple<Args...> &in)
{
AuTupleApply(onFailure, in);
};
return ret;
}
template<class Info_t = AVoid, class Result_t = AVoid>
static inline FJob<Info_t, Result_t> JobFromPairConsumerEx(const AuConsumer<const Info_t &, const Result_t &> &onSuccess, const AuConsumer<const Info_t &> &onFailure)
{
FJob<Info_t, Result_t> ret;
ret.onSuccess = [=](const Info_t &in, const Result_t &a)
{
onSuccess(in, a);
};
ret.onFailure = [=](const Info_t &a)
{
onFailure(a);
};
return ret;
}
template<class Info_t = AVoid, class Result_t = AVoid>
static inline FJob<Info_t, Result_t> JobFromConsumer(const AuConsumer<const Result_t &> &onSuccess, const AuVoidFunc &onFailure)
{
FJob<Info_t, Result_t> ret;
ret.onSuccess = [=](const Info_t &in, const Result_t &a)
{
onSuccess(a);
};
ret.onFailure = [=](const Info_t &a)
{
onFailure();
};
return ret;
}
template<class Info_t = AVoid, class Result_t = AVoid, class BaseInfo_t = AVoid, class BaseResult_t = AVoid>
static inline FJob<Info_t, Result_t> JobFromDerivedJob(const FJob<BaseInfo_t, BaseResult_t> &reference)
{
FJob<Info_t, Result_t> ret;
ret.onSuccess = [=](const Info_t &in, const Result_t &a)
{
if (reference.onSuccess)
{
reference.onSuccess(in, a);
}
};
ret.onFailure = [=](const Info_t &a)
{
if (reference.onFailure)
{
reference.onFailure(a);
}
};
return ret;
}
template<typename ReturnValue_t = void, typename Arg0_t, typename ... Args>
static inline FJob<AuTuple<Arg0_t, Args...>, ReturnValue_t> JobFromTupleClazz(const AuConsumer<const Arg0_t &, const ReturnValue_t &> &onSuccess)
{
FJob<AuTuple<Arg0_t, Args...>, ReturnValue_t> ret;
ret.onSuccess = [=](const AuTuple<Arg0_t, Args...> &in, const ReturnValue_t &out)
{
onSuccess(AuGet<0>(in), out);
};
return ret;
}
template<typename ReturnValue_t = void, typename Arg0_t, typename ... Args>
static inline FJob<AuTuple<Arg0_t, Args...>, ReturnValue_t> JobFromTupleClazzEx(const AuConsumer<const Arg0_t &, const ReturnValue_t &> &onSuccess, const AuConsumer<const Arg0_t &> &onFailure)
{
FJob<AuTuple<Arg0_t, Args...>, ReturnValue_t> ret;
ret.onSuccess = [=](const AuTuple<Arg0_t, Args...> &in, const ReturnValue_t &out)
{
onSuccess(AuGet<0>(in), out);
};
ret.onFailure = [=](const AuTuple<Arg0_t, Args...> &in)
{
onFailure(AuGet<0>(in));
};
return ret;
}
#if 0
template<typename ReturnValue_t = void, typename Clazz_t, typename ... Args>
static inline FJob<AuTuple<AuSPtr<Clazz_t>, Args...>, ReturnValue_t> JobFromTupleClazz(const AuConsumer<const ReturnValue_t &> &onSuccess)
{
FJob<AuTuple<AuSPtr<Clazz_t>, Args...>, ReturnValue_t> ret;
ret.onSuccess = [=](const AuTuple<AuSPtr<Clazz_t>, Args...> &in, const ReturnValue_t &out)
{
onSuccess(out);
};
return ret;
}
template<typename ReturnValue_t = void, typename Clazz_t, typename ... Args>
static inline FJob<AuTuple<AuSPtr<Clazz_t>, Args...>, ReturnValue_t> JobFromTupleClazz(const AuConsumer<Args..., const ReturnValue_t &> &onSuccess)
{
FJob<AuTuple<AuSPtr<Clazz_t>, Args...>, ReturnValue_t> ret;
ret.onSuccess = [=](const AuTuple<AuSPtr<Clazz_t>, Args...> &in, const ReturnValue_t &out)
{
AuTupleApply(onSuccess, AuTupleCat(AuTuplePopFront(in), AuMakeTuple<const ReturnValue_t &>(out)));
};
return ret;
}
#endif
template<typename ReturnValue_t = void, typename ... Args>
static inline FJob<AuTuple<Args...>, ReturnValue_t> JobFromTupleResultConsumer(const AuConsumer<const ReturnValue_t &> &onSuccess)
{
FJob<AuTuple<Args...>, ReturnValue_t> ret;
ret.onSuccess = [=](const AuTuple<Args...> &in, const ReturnValue_t &out)
{
onSuccess(out);
};
return ret;
}
template<typename ReturnValue_t = void, typename ... Args>
static inline FJob<AuTuple<Args...>, ReturnValue_t> JobFromTuple(const AuConsumer<Args..., const ReturnValue_t &> &onSuccess)
{
FJob<AuTuple<Args...>, ReturnValue_t> ret;
ret.onSuccess = [=](const AuTuple<Args...> &in, const ReturnValue_t &out)
{
AuTupleApply(onSuccess, AuTupleCat(in, AuMakeTuple<const ReturnValue_t &>(out)));
};
return ret;
}
}