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e2aa8a5f98
Libcody's configurey was overly 'clever'. That didn't play well with GCC's structure. This removes lots of that overengineering, using libcpp as an example. libcody/ * Makefile.in: Remove auto parallelize, swallow Makesub.in. Don't check compiler name here. * Makesub.in: Delete. * build-aux/config.guess: Delete. * build-aux/config.sub: Delete. * build-aux/install-sh: Delete. * dox.cfg.in: Delete. * gdbinit.in: Delete. * internal.hh (BuildNote): Delete. * fatal.cc (BuildNote): Delete. * config.m4: Remove unneeded fns. * configure.ac: Remove unneccessary checks and configures. * configure: Rebuilt. * config.h.in: Rebuilt.
134 lines
3.1 KiB
C++
134 lines
3.1 KiB
C++
// CODYlib -*- mode:c++ -*-
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// Copyright (C) 2020 Nathan Sidwell, nathan@acm.org
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// License: Apache v2.0
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#include "cody.hh"
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#ifndef __has_builtin
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#define __has_builtin(X) 0
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#endif
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#ifndef __has_include
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#define __has_include(X) 0
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#endif
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// C++
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#if __has_builtin(__builtin_FILE) && __has_builtin(__builtin_LINE)
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#define CODY_LOC_BUILTIN 1
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#elif __has_include (<source_location>)
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#include <source_location>
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#ifdef __cpp_lib_source_location
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#define CODY_LOC_SOURCE 1
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#endif
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#endif
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// C
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#include <cstdio>
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namespace Cody {
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// Location is needed regardless of checking, to make the fatal
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// handler simpler
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class Location
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{
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protected:
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char const *file;
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unsigned line;
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public:
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constexpr Location (char const *file_
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#if CODY_LOC_BUILTIN
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= __builtin_FILE ()
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#elif !CODY_LOC_SOURCE
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= nullptr
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#endif
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, unsigned line_
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#if CODY_LOC_BUILTIN
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= __builtin_LINE ()
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#elif !CODY_LOC_SOURCE
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= 0
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#endif
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)
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:file (file_), line (line_)
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{
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}
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#if !CODY_LOC_BUILTIN && CODY_LOC_SOURCE
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using source_location = std::source_location;
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constexpr Location (source_location loc = source_location::current ())
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: Location (loc.file (), loc.line ())
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{
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}
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#endif
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public:
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constexpr char const *File () const
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{
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return file;
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}
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constexpr unsigned Line () const
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{
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return line;
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}
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};
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void HCF [[noreturn]]
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(
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char const *msg
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#if NMS_CHECKING
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, Location const = Location ()
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#if !CODY_LOC_BUILTIN && !CODY_LOC_SOURCE
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#define HCF(M) HCF ((M), Cody::Location (__FILE__, __LINE__))
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#endif
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#endif
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) noexcept;
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#if NMS_CHECKING
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void AssertFailed [[noreturn]] (Location loc = Location ()) noexcept;
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void Unreachable [[noreturn]] (Location loc = Location ()) noexcept;
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#if !CODY_LOC_BUILTIN && !CODY_LOC_SOURCE
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#define AssertFailed() AssertFailed (Cody::Location (__FILE__, __LINE__))
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#define Unreachable() Unreachable (Cody::Location (__FILE__, __LINE__))
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#endif
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// Do we have __VA_OPT__, alas no specific feature macro for it :(
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// From stack overflow
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// https://stackoverflow.com/questions/48045470/portably-detect-va-opt-support
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// Relies on having variadic macros, but they're a C++11 thing, so
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// we're good
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#define HAVE_ARG_3(a,b,c,...) c
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#define HAVE_VA_OPT_(...) HAVE_ARG_3(__VA_OPT__(,),true,false,)
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#define HAVE_VA_OPT HAVE_VA_OPT_(?)
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// Oh, for lazily evaluated function parameters
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#if HAVE_VA_OPT
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// Assert is variadic, so you can write Assert (TPL<A,B>(C)) without
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// extraneous parens. I don't think we need that though.
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#define Assert(EXPR, ...) \
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(__builtin_expect (bool (EXPR __VA_OPT__ (, __VA_ARGS__)), true) \
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? (void)0 : AssertFailed ())
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#else
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// If you don't have the GNU ,##__VA_ARGS__ pasting extension, we'll
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// need another fallback
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#define Assert(EXPR, ...) \
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(__builtin_expect (bool (EXPR, ##__VA_ARGS__), true) \
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? (void)0 : AssertFailed ())
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#endif
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#else
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// Not asserting, use EXPR in an unevaluated context
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#if HAVE_VA_OPT
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#define Assert(EXPR, ...) \
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((void)sizeof (bool (EXPR __VA_OPT__ (, __VA_ARGS__))), (void)0)
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#else
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#define Assert(EXPR, ...) \
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((void)sizeof (bool (EXPR, ##__VA_ARGS__)), (void)0)
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#endif
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inline void Unreachable () noexcept
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{
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__builtin_unreachable ();
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}
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#endif
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}
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