441 lines
13 KiB
C++
441 lines
13 KiB
C++
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//
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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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extern "C" {
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#include <sys/time.h>
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}
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#include <map>
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#include <sstream>
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#include <utility>
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#include "atf-c/defs.h"
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#include "atf-c++/detail/parser.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 "reader.hpp"
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namespace impl = atf::atf_report;
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#define IMPL_NAME "atf::atf_report"
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// ------------------------------------------------------------------------
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// Auxiliary functions.
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// ------------------------------------------------------------------------
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template< typename Type >
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Type
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string_to_int(const std::string& str)
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{
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std::istringstream ss(str);
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Type s;
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ss >> s;
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return s;
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}
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// ------------------------------------------------------------------------
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// The "atf_tps" auxiliary parser.
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// ------------------------------------------------------------------------
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namespace atf_tps {
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static const atf::parser::token_type eof_type = 0;
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static const atf::parser::token_type nl_type = 1;
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static const atf::parser::token_type text_type = 2;
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static const atf::parser::token_type colon_type = 3;
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static const atf::parser::token_type comma_type = 4;
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static const atf::parser::token_type tps_count_type = 5;
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static const atf::parser::token_type tp_start_type = 6;
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static const atf::parser::token_type tp_end_type = 7;
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static const atf::parser::token_type tc_start_type = 8;
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static const atf::parser::token_type tc_so_type = 9;
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static const atf::parser::token_type tc_se_type = 10;
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static const atf::parser::token_type tc_end_type = 11;
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static const atf::parser::token_type passed_type = 12;
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static const atf::parser::token_type failed_type = 13;
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static const atf::parser::token_type skipped_type = 14;
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static const atf::parser::token_type info_type = 16;
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static const atf::parser::token_type expected_death_type = 17;
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static const atf::parser::token_type expected_exit_type = 18;
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static const atf::parser::token_type expected_failure_type = 19;
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static const atf::parser::token_type expected_signal_type = 20;
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static const atf::parser::token_type expected_timeout_type = 21;
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class tokenizer : public atf::parser::tokenizer< std::istream > {
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public:
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tokenizer(std::istream& is, size_t curline) :
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atf::parser::tokenizer< std::istream >
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(is, true, eof_type, nl_type, text_type, curline)
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{
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add_delim(':', colon_type);
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add_delim(',', comma_type);
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add_keyword("tps-count", tps_count_type);
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add_keyword("tp-start", tp_start_type);
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add_keyword("tp-end", tp_end_type);
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add_keyword("tc-start", tc_start_type);
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add_keyword("tc-so", tc_so_type);
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add_keyword("tc-se", tc_se_type);
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add_keyword("tc-end", tc_end_type);
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add_keyword("passed", passed_type);
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add_keyword("failed", failed_type);
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add_keyword("skipped", skipped_type);
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add_keyword("info", info_type);
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add_keyword("expected_death", expected_death_type);
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add_keyword("expected_exit", expected_exit_type);
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add_keyword("expected_failure", expected_failure_type);
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add_keyword("expected_signal", expected_signal_type);
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add_keyword("expected_timeout", expected_timeout_type);
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}
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};
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} // namespace atf_tps
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struct timeval
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read_timeval(atf::parser::parser< atf_tps::tokenizer >& parser)
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{
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using namespace atf_tps;
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atf::parser::token t = parser.expect(text_type, "timestamp");
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const std::string::size_type divider = t.text().find('.');
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if (divider == std::string::npos || divider == 0 ||
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divider == t.text().length() - 1)
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throw atf::parser::parse_error(t.lineno(),
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"Malformed timestamp value " + t.text());
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struct timeval tv;
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tv.tv_sec = string_to_int< long >(t.text().substr(0, divider));
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tv.tv_usec = string_to_int< long >(t.text().substr(divider + 1));
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return tv;
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}
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// ------------------------------------------------------------------------
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// The "atf_tps_reader" class.
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// ------------------------------------------------------------------------
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impl::atf_tps_reader::atf_tps_reader(std::istream& is) :
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m_is(is)
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{
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}
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impl::atf_tps_reader::~atf_tps_reader(void)
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{
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}
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void
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impl::atf_tps_reader::got_info(
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const std::string& what ATF_DEFS_ATTRIBUTE_UNUSED,
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const std::string& val ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_ntps(size_t ntps ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_tp_start(
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const std::string& tp ATF_DEFS_ATTRIBUTE_UNUSED,
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size_t ntcs ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_tp_end(
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struct timeval* tv ATF_DEFS_ATTRIBUTE_UNUSED,
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const std::string& reason ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_tc_start(
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const std::string& tcname ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_tc_stdout_line(
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const std::string& line ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_tc_stderr_line(
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const std::string& line ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_tc_end(
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const std::string& state ATF_DEFS_ATTRIBUTE_UNUSED,
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struct timeval* tv ATF_DEFS_ATTRIBUTE_UNUSED,
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const std::string& reason ATF_DEFS_ATTRIBUTE_UNUSED)
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{
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}
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void
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impl::atf_tps_reader::got_eof(void)
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{
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}
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void
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impl::atf_tps_reader::read_info(void* pptr)
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{
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using atf::parser::parse_error;
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using namespace atf_tps;
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atf::parser::parser< tokenizer >& p =
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*reinterpret_cast< atf::parser::parser< tokenizer >* >
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(pptr);
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(void)p.expect(colon_type, "`:'");
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atf::parser::token t = p.expect(text_type, "info property name");
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(void)p.expect(comma_type, "`,'");
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got_info(t.text(), atf::text::trim(p.rest_of_line()));
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(void)p.expect(nl_type, "new line");
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}
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void
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impl::atf_tps_reader::read_tp(void* pptr)
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{
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using atf::parser::parse_error;
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using namespace atf_tps;
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atf::parser::parser< tokenizer >& p =
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*reinterpret_cast< atf::parser::parser< tokenizer >* >
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(pptr);
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atf::parser::token t = p.expect(tp_start_type,
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"start of test program");
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t = p.expect(colon_type, "`:'");
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struct timeval s1 = read_timeval(p);
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t = p.expect(comma_type, "`,'");
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t = p.expect(text_type, "test program name");
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std::string tpname = t.text();
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t = p.expect(comma_type, "`,'");
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t = p.expect(text_type, "number of test programs");
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size_t ntcs = string_to_int< std::size_t >(t.text());
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t = p.expect(nl_type, "new line");
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ATF_PARSER_CALLBACK(p, got_tp_start(tpname, ntcs));
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size_t i = 0;
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while (p.good() && i < ntcs) {
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try {
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read_tc(&p);
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i++;
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} catch (const parse_error& pe) {
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p.add_error(pe);
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p.reset(nl_type);
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}
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}
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t = p.expect(tp_end_type, "end of test program");
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t = p.expect(colon_type, "`:'");
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struct timeval s2 = read_timeval(p);
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struct timeval s3;
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timersub(&s2, &s1, &s3);
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t = p.expect(comma_type, "`,'");
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t = p.expect(text_type, "test program name");
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if (t.text() != tpname)
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throw parse_error(t.lineno(), "Test program name used in "
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"terminator does not match "
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"opening");
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t = p.expect(nl_type, comma_type,
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"new line or comma_type");
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std::string reason;
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if (t.type() == comma_type) {
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reason = text::trim(p.rest_of_line());
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if (reason.empty())
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throw parse_error(t.lineno(),
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"Empty reason for failed test program");
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t = p.next();
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}
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ATF_PARSER_CALLBACK(p, got_tp_end(&s3, reason));
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}
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void
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impl::atf_tps_reader::read_tc(void* pptr)
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{
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using atf::parser::parse_error;
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using namespace atf_tps;
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atf::parser::parser< tokenizer >& p =
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*reinterpret_cast< atf::parser::parser< tokenizer >* >
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(pptr);
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atf::parser::token t = p.expect(tc_start_type, "start of test case");
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t = p.expect(colon_type, "`:'");
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struct timeval s1 = read_timeval(p);
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t = p.expect(comma_type, "`,'");
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t = p.expect(text_type, "test case name");
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std::string tcname = t.text();
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ATF_PARSER_CALLBACK(p, got_tc_start(tcname));
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t = p.expect(nl_type, "new line");
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t = p.expect(tc_end_type, tc_so_type, tc_se_type,
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"end of test case or test case's stdout/stderr line");
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while (t.type() != tc_end_type &&
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(t.type() == tc_so_type || t.type() == tc_se_type)) {
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atf::parser::token t2 = t;
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t = p.expect(colon_type, "`:'");
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std::string line = p.rest_of_line();
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if (t2.type() == tc_so_type) {
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ATF_PARSER_CALLBACK(p, got_tc_stdout_line(line));
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} else {
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INV(t2.type() == tc_se_type);
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ATF_PARSER_CALLBACK(p, got_tc_stderr_line(line));
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}
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t = p.expect(nl_type, "new line");
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t = p.expect(tc_end_type, tc_so_type, tc_se_type,
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"end of test case or test case's stdout/stderr line");
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}
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t = p.expect(colon_type, "`:'");
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struct timeval s2 = read_timeval(p);
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struct timeval s3;
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timersub(&s2, &s1, &s3);
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t = p.expect(comma_type, "`,'");
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t = p.expect(text_type, "test case name");
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if (t.text() != tcname)
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throw parse_error(t.lineno(),
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"Test case name used in terminator does not "
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"match opening");
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t = p.expect(comma_type, "`,'");
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t = p.expect(expected_death_type, expected_exit_type, expected_failure_type,
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expected_signal_type, expected_timeout_type, passed_type, failed_type,
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skipped_type, "expected_{death,exit,failure,signal,timeout}, failed, "
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"passed or skipped");
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if (t.type() == passed_type) {
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ATF_PARSER_CALLBACK(p, got_tc_end("passed", &s3, ""));
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} else {
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std::string state;
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if (t.type() == expected_death_type) state = "expected_death";
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else if (t.type() == expected_exit_type) state = "expected_exit";
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else if (t.type() == expected_failure_type) state = "expected_failure";
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else if (t.type() == expected_signal_type) state = "expected_signal";
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else if (t.type() == expected_timeout_type) state = "expected_timeout";
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else if (t.type() == failed_type) state = "failed";
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else if (t.type() == skipped_type) state = "skipped";
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else UNREACHABLE;
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t = p.expect(comma_type, "`,'");
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std::string reason = text::trim(p.rest_of_line());
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if (reason.empty())
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throw parse_error(t.lineno(), "Empty reason for " + state +
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" test case result");
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ATF_PARSER_CALLBACK(p, got_tc_end(state, &s3, reason));
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}
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t = p.expect(nl_type, "new line");
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}
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void
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impl::atf_tps_reader::read(void)
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{
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using atf::parser::parse_error;
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using namespace atf_tps;
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std::pair< size_t, atf::parser::headers_map > hml =
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atf::parser::read_headers(m_is, 1);
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atf::parser::validate_content_type(hml.second, "application/X-atf-tps", 3);
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tokenizer tkz(m_is, hml.first);
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atf::parser::parser< tokenizer > p(tkz);
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try {
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atf::parser::token t;
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while ((t = p.expect(tps_count_type, info_type, "tps-count or info "
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"field")).type() == info_type)
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read_info(&p);
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t = p.expect(colon_type, "`:'");
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t = p.expect(text_type, "number of test programs");
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|
size_t ntps = string_to_int< std::size_t >(t.text());
|
||
|
ATF_PARSER_CALLBACK(p, got_ntps(ntps));
|
||
|
|
||
|
t = p.expect(nl_type, "new line");
|
||
|
|
||
|
size_t i = 0;
|
||
|
while (p.good() && i < ntps) {
|
||
|
try {
|
||
|
read_tp(&p);
|
||
|
i++;
|
||
|
} catch (const parse_error& pe) {
|
||
|
p.add_error(pe);
|
||
|
p.reset(nl_type);
|
||
|
}
|
||
|
}
|
||
|
|
||
|
while ((t = p.expect(eof_type, info_type, "end of stream or info "
|
||
|
"field")).type() == info_type)
|
||
|
read_info(&p);
|
||
|
ATF_PARSER_CALLBACK(p, got_eof());
|
||
|
} catch (const parse_error& pe) {
|
||
|
p.add_error(pe);
|
||
|
p.reset(nl_type);
|
||
|
}
|
||
|
}
|