1 | // Copyright Vladimir Prus 2004.
|
---|
2 | // Distributed under the Boost Software License, Version 1.0.
|
---|
3 | // (See accompanying file LICENSE_1_0.txt
|
---|
4 | // or copy at http://www.boost.org/LICENSE_1_0.txt)
|
---|
5 |
|
---|
6 | // This file defines template functions that are declared in
|
---|
7 | // ../value_semantic.hpp.
|
---|
8 |
|
---|
9 | #include <boost/throw_exception.hpp>
|
---|
10 |
|
---|
11 | namespace boost { namespace program_options {
|
---|
12 |
|
---|
13 | extern BOOST_PROGRAM_OPTIONS_DECL std::string arg;
|
---|
14 |
|
---|
15 | template<class T, class charT>
|
---|
16 | std::string
|
---|
17 | typed_value<T, charT>::name() const
|
---|
18 | {
|
---|
19 | if (!m_default_value.empty() && !m_default_value_as_text.empty()) {
|
---|
20 | return arg + " (=" + m_default_value_as_text + ")";
|
---|
21 | } else {
|
---|
22 | return arg;
|
---|
23 | }
|
---|
24 | }
|
---|
25 |
|
---|
26 | template<class T, class charT>
|
---|
27 | void
|
---|
28 | typed_value<T, charT>::notify(const boost::any& value_store) const
|
---|
29 | {
|
---|
30 | const T* value = boost::any_cast<const T>(&value_store);
|
---|
31 | if (m_store_to) {
|
---|
32 | *m_store_to = *value;
|
---|
33 | }
|
---|
34 | if (m_notifier) {
|
---|
35 | m_notifier(*value);
|
---|
36 | }
|
---|
37 | }
|
---|
38 |
|
---|
39 | namespace validators {
|
---|
40 | /* If v.size() > 1, throw validation_error.
|
---|
41 | If v.size() == 1, return v.front()
|
---|
42 | Otherwise, returns a reference to a statically allocated
|
---|
43 | empty string if 'allow_empty' and throws validation_error
|
---|
44 | otherwise. */
|
---|
45 | template<class charT>
|
---|
46 | const std::basic_string<charT>& get_single_string(
|
---|
47 | const std::vector<std::basic_string<charT> >& v,
|
---|
48 | bool allow_empty = false)
|
---|
49 | {
|
---|
50 | static std::basic_string<charT> empty;
|
---|
51 | if (v.size() > 1)
|
---|
52 | throw validation_error("multiple values not allowed");
|
---|
53 | if (v.size() == 1)
|
---|
54 | return v.front();
|
---|
55 | else if (allow_empty)
|
---|
56 | return empty;
|
---|
57 | else
|
---|
58 | throw validation_error("at least one value required");
|
---|
59 | }
|
---|
60 |
|
---|
61 | /* Throws multiple_occurrences if 'value' is not empty. */
|
---|
62 | BOOST_PROGRAM_OPTIONS_DECL void
|
---|
63 | check_first_occurrence(const boost::any& value);
|
---|
64 | }
|
---|
65 |
|
---|
66 | using namespace validators;
|
---|
67 |
|
---|
68 | /** Validates 's' and updates 'v'.
|
---|
69 | @pre 'v' is either empty or in the state assigned by the previous
|
---|
70 | invocation of 'validate'.
|
---|
71 | The target type is specified via a parameter which has the type of
|
---|
72 | pointer to the desired type. This is workaround for compilers without
|
---|
73 | partial template ordering, just like the last 'long/int' parameter.
|
---|
74 | */
|
---|
75 | template<class T, class charT>
|
---|
76 | void validate(boost::any& v,
|
---|
77 | const std::vector< std::basic_string<charT> >& xs,
|
---|
78 | T*, long)
|
---|
79 | {
|
---|
80 | validators::check_first_occurrence(v);
|
---|
81 | std::basic_string<charT> s(validators::get_single_string(xs));
|
---|
82 | try {
|
---|
83 | v = any(lexical_cast<T>(s));
|
---|
84 | }
|
---|
85 | catch(const bad_lexical_cast&) {
|
---|
86 | boost::throw_exception(invalid_option_value(s));
|
---|
87 | }
|
---|
88 | }
|
---|
89 |
|
---|
90 | BOOST_PROGRAM_OPTIONS_DECL void validate(boost::any& v,
|
---|
91 | const std::vector<std::string>& xs,
|
---|
92 | bool*,
|
---|
93 | int);
|
---|
94 |
|
---|
95 | #if !defined(BOOST_NO_STD_WSTRING)
|
---|
96 | BOOST_PROGRAM_OPTIONS_DECL void validate(boost::any& v,
|
---|
97 | const std::vector<std::wstring>& xs,
|
---|
98 | bool*,
|
---|
99 | int);
|
---|
100 | #endif
|
---|
101 | // For some reason, this declaration, which is require by the standard,
|
---|
102 | // cause gcc 3.2 to not generate code to specialization defined in
|
---|
103 | // value_semantic.cpp
|
---|
104 | #if ! ( ( BOOST_WORKAROUND(__GNUC__, <= 3) &&\
|
---|
105 | BOOST_WORKAROUND(__GNUC_MINOR__, < 3) ) || \
|
---|
106 | ( BOOST_WORKAROUND(BOOST_MSVC, == 1310) ) \
|
---|
107 | )
|
---|
108 | BOOST_PROGRAM_OPTIONS_DECL void validate(boost::any& v,
|
---|
109 | const std::vector<std::string>& xs,
|
---|
110 | std::string*,
|
---|
111 | int);
|
---|
112 |
|
---|
113 | #if !defined(BOOST_NO_STD_WSTRING)
|
---|
114 | BOOST_PROGRAM_OPTIONS_DECL void validate(boost::any& v,
|
---|
115 | const std::vector<std::wstring>& xs,
|
---|
116 | std::string*,
|
---|
117 | int);
|
---|
118 | #endif
|
---|
119 | #endif
|
---|
120 |
|
---|
121 | /** Validates sequences. Allows multiple values per option occurrence
|
---|
122 | and multiple occurrences. */
|
---|
123 | template<class T, class charT>
|
---|
124 | void validate(boost::any& v,
|
---|
125 | const std::vector<std::basic_string<charT> >& s,
|
---|
126 | std::vector<T>*,
|
---|
127 | int)
|
---|
128 | {
|
---|
129 | if (v.empty()) {
|
---|
130 | v = boost::any(std::vector<T>());
|
---|
131 | }
|
---|
132 | std::vector<T>* tv = boost::any_cast< std::vector<T> >(&v);
|
---|
133 | assert(NULL != tv);
|
---|
134 | for (unsigned i = 0; i < s.size(); ++i)
|
---|
135 | {
|
---|
136 | try {
|
---|
137 | tv->push_back(boost::lexical_cast<T>(s[i]));
|
---|
138 | }
|
---|
139 | catch(const bad_lexical_cast& /*e*/) {
|
---|
140 | boost::throw_exception(invalid_option_value(s[i]));
|
---|
141 | }
|
---|
142 | }
|
---|
143 | }
|
---|
144 |
|
---|
145 | template<class T, class charT>
|
---|
146 | void
|
---|
147 | typed_value<T, charT>::
|
---|
148 | xparse(boost::any& value_store,
|
---|
149 | const std::vector<std::basic_string<charT> >& new_tokens) const
|
---|
150 | {
|
---|
151 | validate(value_store, new_tokens, (T*)0, 0);
|
---|
152 | }
|
---|
153 |
|
---|
154 | template<class T>
|
---|
155 | typed_value<T>*
|
---|
156 | value()
|
---|
157 | {
|
---|
158 | // Explicit qualification is vc6 workaround.
|
---|
159 | return boost::program_options::value<T>(0);
|
---|
160 | }
|
---|
161 |
|
---|
162 | template<class T>
|
---|
163 | typed_value<T>*
|
---|
164 | value(T* v)
|
---|
165 | {
|
---|
166 | typed_value<T>* r = new typed_value<T>(v);
|
---|
167 |
|
---|
168 | return r;
|
---|
169 | }
|
---|
170 |
|
---|
171 | template<class T>
|
---|
172 | typed_value<T, wchar_t>*
|
---|
173 | wvalue()
|
---|
174 | {
|
---|
175 | return wvalue<T>(0);
|
---|
176 | }
|
---|
177 |
|
---|
178 | template<class T>
|
---|
179 | typed_value<T, wchar_t>*
|
---|
180 | wvalue(T* v)
|
---|
181 | {
|
---|
182 | typed_value<T, wchar_t>* r = new typed_value<T, wchar_t>(v);
|
---|
183 |
|
---|
184 | return r;
|
---|
185 | }
|
---|
186 |
|
---|
187 |
|
---|
188 |
|
---|
189 | }}
|
---|