text
stringlengths
0
2.2M
false /* is_used_for_training */,
true /* is_root_operator */,
false /* include_all_overloads */);
printOpsYAML(
yaml_out,
tracer_result.traced_operators,
false /* is_used_for_training */,
false /* is_root_operator */,
false /* include_all_overloads */);
return 0;
}
// bdlt_iso8601util.t.cpp -*-C++-*-
#include <bdlt_iso8601util.h>
#include <bdlt_date.h>
#include <bdlt_datetime.h>
#include <bdlt_datetimetz.h>
#include <bdlt_datetz.h>
#include <bdlt_time.h>
#include <bdlt_timetz.h>
#include <bslim_testutil.h>
#include <bsls_asserttest.h>
#include <bsls_review.h>
#include <bsl_cctype.h> // 'isdigit'
#include <bsl_cstdlib.h>
#include <bsl_cstring.h>
#include <bsl_iostream.h>
#include <bsl_sstream.h>
#include <bsl_string.h>
#undef SEC
using namespace BloombergLP;
using namespace bsl;
//=============================================================================
// TEST PLAN
//-----------------------------------------------------------------------------
// Overview
// --------
// The component under test consists of a suite of static member functions
// (pure functions) that perform conversions between the values of several
// 'bdlt' vocabulary types and corresponding string representations, where the
// latter are defined by the ISO 8601 standard. The general plan is that each
// function is to be independently tested using the table-driven technique. A
// set of test vectors is defined globally for use in testing all functions.
// This global data is sufficient for thoroughly testing the string generating
// functions, but additional test vectors are required to address concerns
// specific to the string parsing functions. Hence, additional test data is
// defined locally to the test cases that verify parsing.
//
// Global Concerns:
//: o No memory is ever allocated from the global allocator.
//: o Precondition violations are detected in appropriate build modes.
//-----------------------------------------------------------------------------
// CLASS METHODS
// [ 1] int generate(char *, int, const TimeInterval&);
// [ 1] int generate(char *, int, const TimeInterval&, const Config&);
// [ 2] int generate(char *, int, const Date&);
// [ 2] int generate(char *, int, const Date&, const Config&);
// [ 3] int generate(char *, int, const Time&);
// [ 3] int generate(char *, int, const Time&, const Config&);
// [ 4] int generate(char *, int, const Datetime&);
// [ 4] int generate(char *, int, const Datetime&, const Config&);
// [ 5] int generate(char *, int, const DateTz&);
// [ 5] int generate(char *, int, const DateTz&, const Config&);
// [ 6] int generate(char *, int, const TimeTz&);
// [ 6] int generate(char *, int, const TimeTz&, const Config&);
// [ 7] int generate(char *, int, const DatetimeTz&);
// [ 7] int generate(char *, int, const DatetimeTz&, const Config&);
// [ 1] int generate(string *, const TimeInterval&);
// [ 1] int generate(string *, const TimeInterval&, const Config&);
// [ 2] int generate(string *, const Date&);
// [ 2] int generate(string *, const Date&, const Config&);
// [ 3] int generate(string *, const Time&);
// [ 3] int generate(string *, const Time&, const Config&);
// [ 4] int generate(string *, const Datetime&);
// [ 4] int generate(string *, const Datetime&, const Config&);
// [ 5] int generate(string *, const DateTz&);
// [ 5] int generate(string *, const DateTz&, const Config&);
// [ 6] int generate(string *, const TimeTz&);
// [ 6] int generate(string *, const TimeTz&, const Config&);
// [ 7] int generate(string *, const DatetimeTz&);
// [ 7] int generate(string *, const DatetimeTz&, const Config&);
// [ 1] ostream generate(ostream&, const TimeInterval&);
// [ 1] ostream generate(ostream&, const TimeInterval&, const Config&);
// [ 2] ostream generate(ostream&, const Date&);
// [ 2] ostream generate(ostream&, const Date&, const Config&);
// [ 3] ostream generate(ostream&, const Time&);
// [ 3] ostream generate(ostream&, const Time&, const Config&);
// [ 4] ostream generate(ostream&, const Datetime&);
// [ 4] ostream generate(ostream&, const Datetime&, const Config&);
// [ 5] ostream generate(ostream&, const DateTz&);
// [ 5] ostream generate(ostream&, const DateTz&, const Config&);
// [ 6] ostream generate(ostream&, const TimeTz&);