minix/external/bsd/kyua-cli/dist/utils/process/child.hpp
Lionel Sambuc 11be35a165 Importing NetBSD "Kyua" test framework
To do so, a few dependencies have been imported:

 * external/bsd/lutok
 * external/mit/lua
 * external/public-domain/sqlite
 * external/public-domain/xz

The Kyua framework is the new generation of ATF (Automated Test
Framework), it is composed of:

 * external/bsd/atf
 * external/bsd/kyua-atf-compat
 * external/bsd/kyua-cli
 * external/bsd/kyua-tester
 * tests

Kyua/ATF being written in C++, it depends on libstdc++ which is
provided by GCC. As this is not part of the sources, Kyua is only
compiled when the native GCC utils are installed.

To install Kyua do the following:

 * In a cross-build enviromnent, add the following to the build.sh
   commandline: -V MKBINUTILS=yes -V MKGCCCMDS=yes

WARNING:
  At this point the import is still experimental, and not supported
  on native builds (a.k.a make build).

Change-Id: I26aee23c5bbd2d64adcb7c1beb98fe0d479d7ada
2013-07-23 20:43:41 +02:00

106 lines
3.8 KiB
C++

// Copyright 2010 Google Inc.
// All rights reserved.
//
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
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// may be used to endorse or promote products derived from this software
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//
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/// \file utils/process/child.hpp
/// Spawning and manipulation of children processes.
///
/// The child module provides a set of functions to spawn subprocesses with
/// different settings, and the corresponding set of classes to interact with
/// said subprocesses. The interfaces to fork subprocesses are very simplified
/// and only provide the minimum functionality required by the rest of the
/// project.
///
/// Be aware that the semantics of the fork and wait methods exposed by this
/// module are slightly different from that of the native calls. Any process
/// spawned by fork here will be isolated in its own process group; once any of
/// such children processes is awaited for, its whole process group will be
/// terminated. This is the semantics we want in the above layers to ensure
/// that test programs (and, for that matter, external utilities) do not leak
/// subprocesses on the system.
#if !defined(UTILS_PROCESS_CHILD_HPP)
#define UTILS_PROCESS_CHILD_HPP
#include <istream>
#include <memory>
#include <string>
#include <vector>
#include "utils/fs/path.hpp"
#include "utils/noncopyable.hpp"
#include "utils/process/status.hpp"
namespace utils {
namespace process {
/// Arguments to a program, without the program name.
typedef std::vector< std::string > args_vector;
/// Child process spawner and controller.
class child : noncopyable {
struct impl;
/// Pointer to the shared internal implementation.
std::auto_ptr< impl > _pimpl;
static std::auto_ptr< child > fork_capture_aux(void);
static std::auto_ptr< child > fork_files_aux(const fs::path&,
const fs::path&);
explicit child(impl *);
public:
~child(void);
template< typename Hook >
static std::auto_ptr< child > fork_capture(Hook);
std::istream& output(void);
template< typename Hook >
static std::auto_ptr< child > fork_files(Hook, const fs::path&,
const fs::path&);
static std::auto_ptr< child > spawn_capture(
const fs::path&, const args_vector&);
static std::auto_ptr< child > spawn_files(
const fs::path&, const args_vector&, const fs::path&, const fs::path&);
int pid(void) const;
status wait(void);
};
} // namespace process
} // namespace utils
#endif // !defined(UTILS_PROCESS_CHILD_HPP)