11be35a165
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
563 lines
18 KiB
C++
563 lines
18 KiB
C++
//
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// Automated Testing Framework (atf)
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//
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// Copyright (c) 2007 The NetBSD Foundation, Inc.
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions
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// are met:
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// 1. Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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// 2. Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the distribution.
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//
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// THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND
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// CONTRIBUTORS ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
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// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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// MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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// IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS BE LIABLE FOR ANY
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// DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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// DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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// GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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// INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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// IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
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// OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN
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// IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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#if defined(HAVE_CONFIG_H)
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#include "bconfig.h"
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#endif
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extern "C" {
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#include <sys/types.h>
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#include <sys/param.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#include <unistd.h>
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}
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#include <algorithm>
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#include <cerrno>
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#include <cstdlib>
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#include <cstring>
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#include <fstream>
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#include <iostream>
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#include <map>
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#include <string>
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#include "atf-c++/detail/application.hpp"
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#include "atf-c++/config.hpp"
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#include "atf-c++/tests.hpp"
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#include "atf-c++/detail/env.hpp"
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#include "atf-c++/detail/exceptions.hpp"
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#include "atf-c++/detail/fs.hpp"
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#include "atf-c++/detail/parser.hpp"
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#include "atf-c++/detail/process.hpp"
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#include "atf-c++/detail/sanity.hpp"
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#include "atf-c++/detail/text.hpp"
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#include "atffile.hpp"
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#include "config.hpp"
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#include "fs.hpp"
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#include "requirements.hpp"
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#include "test-program.hpp"
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namespace impl = atf::atf_run;
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#if defined(MAXCOMLEN)
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static const std::string::size_type max_core_name_length = MAXCOMLEN;
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#else
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static const std::string::size_type max_core_name_length = std::string::npos;
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#endif
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class atf_run : public atf::application::app {
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static const char* m_description;
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atf::tests::vars_map m_cmdline_vars;
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static atf::tests::vars_map::value_type parse_var(const std::string&);
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void process_option(int, const char*);
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std::string specific_args(void) const;
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options_set specific_options(void) const;
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void parse_vflag(const std::string&);
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std::vector< std::string > conf_args(void) const;
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size_t count_tps(std::vector< std::string >) const;
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int run_test(const atf::fs::path&, impl::atf_tps_writer&,
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const atf::tests::vars_map&);
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int run_test_directory(const atf::fs::path&, impl::atf_tps_writer&);
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int run_test_program(const atf::fs::path&, impl::atf_tps_writer&,
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const atf::tests::vars_map&);
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impl::test_case_result get_test_case_result(const std::string&,
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const atf::process::status&, const atf::fs::path&) const;
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public:
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atf_run(void);
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int main(void);
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};
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static void
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sanitize_gdb_env(void)
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{
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try {
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atf::env::unset("TERM");
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} catch (...) {
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// Just swallow exceptions here; they cannot propagate into C, which
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// is where this function is called from, and even if these exceptions
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// appear they are benign.
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}
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}
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static void
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dump_stacktrace(const atf::fs::path& tp, const atf::process::status& s,
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const atf::fs::path& workdir, impl::atf_tps_writer& w)
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{
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PRE(s.signaled() && s.coredump());
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w.stderr_tc("Test program crashed; attempting to get stack trace");
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const atf::fs::path corename = workdir /
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(tp.leaf_name().substr(0, max_core_name_length) + ".core");
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if (!atf::fs::exists(corename)) {
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w.stderr_tc("Expected file " + corename.str() + " not found");
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return;
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}
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const atf::fs::path gdb(GDB);
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const atf::fs::path gdbout = workdir / "gdb.out";
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const atf::process::argv_array args(gdb.leaf_name().c_str(), "-batch",
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"-q", "-ex", "bt", tp.c_str(),
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corename.c_str(), NULL);
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atf::process::status status = atf::process::exec(
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gdb, args,
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atf::process::stream_redirect_path(gdbout),
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atf::process::stream_redirect_path(atf::fs::path("/dev/null")),
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sanitize_gdb_env);
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if (!status.exited() || status.exitstatus() != EXIT_SUCCESS) {
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w.stderr_tc("Execution of " GDB " failed");
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return;
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}
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std::ifstream input(gdbout.c_str());
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if (input) {
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std::string line;
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while (std::getline(input, line).good())
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w.stderr_tc(line);
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input.close();
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}
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w.stderr_tc("Stack trace complete");
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}
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const char* atf_run::m_description =
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"atf-run is a tool that runs tests programs and collects their "
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"results.";
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atf_run::atf_run(void) :
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app(m_description, "atf-run(1)", "atf(7)")
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{
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}
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void
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atf_run::process_option(int ch, const char* arg)
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{
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switch (ch) {
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case 'v':
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parse_vflag(arg);
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break;
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default:
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UNREACHABLE;
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}
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}
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std::string
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atf_run::specific_args(void)
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const
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{
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return "[test-program1 .. test-programN]";
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}
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atf_run::options_set
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atf_run::specific_options(void)
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const
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{
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using atf::application::option;
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options_set opts;
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opts.insert(option('v', "var=value", "Sets the configuration variable "
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"`var' to `value'; overrides "
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"values in configuration files"));
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return opts;
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}
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void
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atf_run::parse_vflag(const std::string& str)
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{
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if (str.empty())
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throw std::runtime_error("-v requires a non-empty argument");
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std::vector< std::string > ws = atf::text::split(str, "=");
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if (ws.size() == 1 && str[str.length() - 1] == '=') {
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m_cmdline_vars[ws[0]] = "";
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} else {
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if (ws.size() != 2)
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throw std::runtime_error("-v requires an argument of the form "
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"var=value");
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m_cmdline_vars[ws[0]] = ws[1];
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}
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}
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int
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atf_run::run_test(const atf::fs::path& tp,
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impl::atf_tps_writer& w,
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const atf::tests::vars_map& config)
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{
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atf::fs::file_info fi(tp);
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int errcode;
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if (fi.get_type() == atf::fs::file_info::dir_type)
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errcode = run_test_directory(tp, w);
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else {
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const atf::tests::vars_map effective_config =
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impl::merge_configs(config, m_cmdline_vars);
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errcode = run_test_program(tp, w, effective_config);
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}
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return errcode;
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}
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int
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atf_run::run_test_directory(const atf::fs::path& tp,
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impl::atf_tps_writer& w)
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{
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impl::atffile af = impl::read_atffile(tp / "Atffile");
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atf::tests::vars_map test_suite_vars;
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{
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atf::tests::vars_map::const_iterator iter =
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af.props().find("test-suite");
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INV(iter != af.props().end());
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test_suite_vars = impl::read_config_files((*iter).second);
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}
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bool ok = true;
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for (std::vector< std::string >::const_iterator iter = af.tps().begin();
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iter != af.tps().end(); iter++) {
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const bool result = run_test(tp / *iter, w,
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impl::merge_configs(af.conf(), test_suite_vars));
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ok &= (result == EXIT_SUCCESS);
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}
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return ok ? EXIT_SUCCESS : EXIT_FAILURE;
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}
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impl::test_case_result
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atf_run::get_test_case_result(const std::string& broken_reason,
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const atf::process::status& s,
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const atf::fs::path& resfile)
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const
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{
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using atf::text::to_string;
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using impl::read_test_case_result;
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using impl::test_case_result;
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if (!broken_reason.empty()) {
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test_case_result tcr;
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try {
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tcr = read_test_case_result(resfile);
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if (tcr.state() == "expected_timeout") {
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return tcr;
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} else {
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return test_case_result("failed", -1, broken_reason);
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}
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} catch (const std::runtime_error&) {
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return test_case_result("failed", -1, broken_reason);
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}
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}
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if (s.exited()) {
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test_case_result tcr;
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try {
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tcr = read_test_case_result(resfile);
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} catch (const std::runtime_error& e) {
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return test_case_result("failed", -1, "Test case exited "
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"normally but failed to create the results file: " +
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std::string(e.what()));
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}
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if (tcr.state() == "expected_death") {
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return tcr;
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} else if (tcr.state() == "expected_exit") {
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if (tcr.value() == -1 || s.exitstatus() == tcr.value())
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return tcr;
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else
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return test_case_result("failed", -1, "Test case was "
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"expected to exit with a " + to_string(tcr.value()) +
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" error code but returned " + to_string(s.exitstatus()));
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} else if (tcr.state() == "expected_failure") {
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if (s.exitstatus() == EXIT_SUCCESS)
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return tcr;
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else
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return test_case_result("failed", -1, "Test case returned an "
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"error in expected_failure mode but it should not have");
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} else if (tcr.state() == "expected_signal") {
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return test_case_result("failed", -1, "Test case exited cleanly "
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"but was expected to receive a signal");
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} else if (tcr.state() == "failed") {
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if (s.exitstatus() == EXIT_SUCCESS)
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return test_case_result("failed", -1, "Test case "
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"exited successfully but reported failure");
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else
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return tcr;
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} else if (tcr.state() == "passed") {
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if (s.exitstatus() == EXIT_SUCCESS)
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return tcr;
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else
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return test_case_result("failed", -1, "Test case exited as "
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"passed but reported an error");
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} else if (tcr.state() == "skipped") {
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if (s.exitstatus() == EXIT_SUCCESS)
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return tcr;
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else
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return test_case_result("failed", -1, "Test case exited as "
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"skipped but reported an error");
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}
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} else if (s.signaled()) {
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test_case_result tcr;
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try {
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tcr = read_test_case_result(resfile);
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} catch (const std::runtime_error&) {
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return test_case_result("failed", -1, "Test program received "
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"signal " + atf::text::to_string(s.termsig()) +
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(s.coredump() ? " (core dumped)" : ""));
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}
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if (tcr.state() == "expected_death") {
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return tcr;
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} else if (tcr.state() == "expected_signal") {
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if (tcr.value() == -1 || s.termsig() == tcr.value())
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return tcr;
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else
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return test_case_result("failed", -1, "Test case was "
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"expected to exit due to a " + to_string(tcr.value()) +
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" signal but got " + to_string(s.termsig()));
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} else {
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return test_case_result("failed", -1, "Test program received "
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"signal " + atf::text::to_string(s.termsig()) +
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(s.coredump() ? " (core dumped)" : "") + " and created a "
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"bogus results file");
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}
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}
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UNREACHABLE;
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return test_case_result();
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}
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int
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atf_run::run_test_program(const atf::fs::path& tp,
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impl::atf_tps_writer& w,
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const atf::tests::vars_map& config)
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{
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int errcode = EXIT_SUCCESS;
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impl::metadata md;
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try {
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md = impl::get_metadata(tp, config);
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} catch (const atf::parser::format_error& e) {
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w.start_tp(tp.str(), 0);
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w.end_tp("Invalid format for test case list: " + std::string(e.what()));
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return EXIT_FAILURE;
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} catch (const atf::parser::parse_errors& e) {
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const std::string reason = atf::text::join(e, "; ");
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w.start_tp(tp.str(), 0);
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w.end_tp("Invalid format for test case list: " + reason);
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return EXIT_FAILURE;
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}
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impl::temp_dir resdir(atf::fs::path(atf::config::get("atf_workdir")) /
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"atf-run.XXXXXX");
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w.start_tp(tp.str(), md.test_cases.size());
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if (md.test_cases.empty()) {
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w.end_tp("Bogus test program: reported 0 test cases");
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errcode = EXIT_FAILURE;
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} else {
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for (std::map< std::string, atf::tests::vars_map >::const_iterator iter
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= md.test_cases.begin(); iter != md.test_cases.end(); iter++) {
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const std::string& tcname = (*iter).first;
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const atf::tests::vars_map& tcmd = (*iter).second;
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w.start_tc(tcname);
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try {
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const std::string& reqfail = impl::check_requirements(
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tcmd, config);
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if (!reqfail.empty()) {
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w.end_tc("skipped", reqfail);
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continue;
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}
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} catch (const std::runtime_error& e) {
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w.end_tc("failed", e.what());
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errcode = EXIT_FAILURE;
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continue;
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}
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const std::pair< int, int > user = impl::get_required_user(
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tcmd, config);
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atf::fs::path resfile = resdir.get_path() / "tcr";
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INV(!atf::fs::exists(resfile));
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try {
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const bool has_cleanup = atf::text::to_bool(
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(*tcmd.find("has.cleanup")).second);
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impl::temp_dir workdir(atf::fs::path(atf::config::get(
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"atf_workdir")) / "atf-run.XXXXXX");
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if (user.first != -1 && user.second != -1) {
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if (::chown(workdir.get_path().c_str(), user.first,
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user.second) == -1) {
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throw atf::system_error("chown(" +
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workdir.get_path().str() + ")", "chown(2) failed",
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errno);
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}
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resfile = workdir.get_path() / "tcr";
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}
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std::pair< std::string, const atf::process::status > s =
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impl::run_test_case(tp, tcname, "body", tcmd, config,
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resfile, workdir.get_path(), w);
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if (s.second.signaled() && s.second.coredump())
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dump_stacktrace(tp, s.second, workdir.get_path(), w);
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if (has_cleanup)
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(void)impl::run_test_case(tp, tcname, "cleanup", tcmd,
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config, resfile, workdir.get_path(), w);
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// TODO: Force deletion of workdir.
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impl::test_case_result tcr = get_test_case_result(s.first,
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s.second, resfile);
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w.end_tc(tcr.state(), tcr.reason());
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if (tcr.state() == "failed")
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errcode = EXIT_FAILURE;
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} catch (...) {
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if (atf::fs::exists(resfile))
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atf::fs::remove(resfile);
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throw;
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}
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if (atf::fs::exists(resfile))
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atf::fs::remove(resfile);
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}
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w.end_tp("");
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}
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return errcode;
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}
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size_t
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atf_run::count_tps(std::vector< std::string > tps)
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const
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{
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size_t ntps = 0;
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for (std::vector< std::string >::const_iterator iter = tps.begin();
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iter != tps.end(); iter++) {
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atf::fs::path tp(*iter);
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atf::fs::file_info fi(tp);
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if (fi.get_type() == atf::fs::file_info::dir_type) {
|
|
impl::atffile af = impl::read_atffile(tp / "Atffile");
|
|
std::vector< std::string > aux = af.tps();
|
|
for (std::vector< std::string >::iterator i2 = aux.begin();
|
|
i2 != aux.end(); i2++)
|
|
*i2 = (tp / *i2).str();
|
|
ntps += count_tps(aux);
|
|
} else
|
|
ntps++;
|
|
}
|
|
|
|
return ntps;
|
|
}
|
|
|
|
static
|
|
void
|
|
call_hook(const std::string& tool, const std::string& hook)
|
|
{
|
|
const atf::fs::path sh(atf::config::get("atf_shell"));
|
|
const atf::fs::path hooks =
|
|
atf::fs::path(atf::config::get("atf_pkgdatadir")) / (tool + ".hooks");
|
|
|
|
const atf::process::status s =
|
|
atf::process::exec(sh,
|
|
atf::process::argv_array(sh.c_str(), hooks.c_str(),
|
|
hook.c_str(), NULL),
|
|
atf::process::stream_inherit(),
|
|
atf::process::stream_inherit());
|
|
|
|
|
|
if (!s.exited() || s.exitstatus() != EXIT_SUCCESS)
|
|
throw std::runtime_error("Failed to run the '" + hook + "' hook "
|
|
"for '" + tool + "'");
|
|
}
|
|
|
|
int
|
|
atf_run::main(void)
|
|
{
|
|
impl::atffile af = impl::read_atffile(atf::fs::path("Atffile"));
|
|
|
|
std::vector< std::string > tps;
|
|
tps = af.tps();
|
|
if (m_argc >= 1) {
|
|
// TODO: Ensure that the given test names are listed in the
|
|
// Atffile. Take into account that the file can be using globs.
|
|
tps.clear();
|
|
for (int i = 0; i < m_argc; i++)
|
|
tps.push_back(m_argv[i]);
|
|
}
|
|
|
|
// Read configuration data for this test suite.
|
|
atf::tests::vars_map test_suite_vars;
|
|
{
|
|
atf::tests::vars_map::const_iterator iter =
|
|
af.props().find("test-suite");
|
|
INV(iter != af.props().end());
|
|
test_suite_vars = impl::read_config_files((*iter).second);
|
|
}
|
|
|
|
impl::atf_tps_writer w(std::cout);
|
|
call_hook("atf-run", "info_start_hook");
|
|
w.ntps(count_tps(tps));
|
|
|
|
bool ok = true;
|
|
for (std::vector< std::string >::const_iterator iter = tps.begin();
|
|
iter != tps.end(); iter++) {
|
|
const bool result = run_test(atf::fs::path(*iter), w,
|
|
impl::merge_configs(af.conf(), test_suite_vars));
|
|
ok &= (result == EXIT_SUCCESS);
|
|
}
|
|
|
|
call_hook("atf-run", "info_end_hook");
|
|
|
|
return ok ? EXIT_SUCCESS : EXIT_FAILURE;
|
|
}
|
|
|
|
int
|
|
main(int argc, char* const* argv)
|
|
{
|
|
return atf_run().run(argc, argv);
|
|
}
|