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00011 #ifndef ASIO_IP_ADDRESS_V6_HPP
00012 #define ASIO_IP_ADDRESS_V6_HPP
00013
00014 #if defined(_MSC_VER) && (_MSC_VER >= 1200)
00015 # pragma once
00016 #endif // defined(_MSC_VER) && (_MSC_VER >= 1200)
00017
00018 #include "asio/detail/push_options.hpp"
00019
00020 #include "asio/detail/push_options.hpp"
00021 #include <cstring>
00022 #include <string>
00023 #include <stdexcept>
00024 #include <typeinfo>
00025 #include <boost/array.hpp>
00026 #include <boost/throw_exception.hpp>
00027 #include "asio/detail/pop_options.hpp"
00028
00029 #include "asio/error.hpp"
00030 #include "asio/detail/socket_ops.hpp"
00031 #include "asio/detail/socket_types.hpp"
00032 #include "asio/detail/throw_error.hpp"
00033 #include "asio/ip/address_v4.hpp"
00034
00035 namespace asio {
00036 namespace ip {
00037
00039
00047 class address_v6
00048 {
00049 public:
00051 typedef boost::array<unsigned char, 16> bytes_type;
00052
00054 address_v6()
00055 : scope_id_(0)
00056 {
00057 asio::detail::in6_addr_type tmp_addr = IN6ADDR_ANY_INIT;
00058 addr_ = tmp_addr;
00059 }
00060
00062 explicit address_v6(const bytes_type& bytes, unsigned long scope_id = 0)
00063 : scope_id_(scope_id)
00064 {
00065 using namespace std;
00066 memcpy(addr_.s6_addr, bytes.elems, 16);
00067 }
00068
00070 address_v6(const address_v6& other)
00071 : addr_(other.addr_),
00072 scope_id_(other.scope_id_)
00073 {
00074 }
00075
00077 address_v6& operator=(const address_v6& other)
00078 {
00079 addr_ = other.addr_;
00080 scope_id_ = other.scope_id_;
00081 return *this;
00082 }
00083
00085
00088 unsigned long scope_id() const
00089 {
00090 return scope_id_;
00091 }
00092
00094
00097 void scope_id(unsigned long id)
00098 {
00099 scope_id_ = id;
00100 }
00101
00103 bytes_type to_bytes() const
00104 {
00105 using namespace std;
00106 bytes_type bytes;
00107 memcpy(bytes.elems, addr_.s6_addr, 16);
00108 return bytes;
00109 }
00110
00112 std::string to_string() const
00113 {
00114 asio::error_code ec;
00115 std::string addr = to_string(ec);
00116 asio::detail::throw_error(ec);
00117 return addr;
00118 }
00119
00121 std::string to_string(asio::error_code& ec) const
00122 {
00123 char addr_str[asio::detail::max_addr_v6_str_len];
00124 const char* addr =
00125 asio::detail::socket_ops::inet_ntop(AF_INET6, &addr_, addr_str,
00126 asio::detail::max_addr_v6_str_len, scope_id_, ec);
00127 if (addr == 0)
00128 return std::string();
00129 return addr;
00130 }
00131
00133 static address_v6 from_string(const char* str)
00134 {
00135 asio::error_code ec;
00136 address_v6 addr = from_string(str, ec);
00137 asio::detail::throw_error(ec);
00138 return addr;
00139 }
00140
00142 static address_v6 from_string(const char* str, asio::error_code& ec)
00143 {
00144 address_v6 tmp;
00145 if (asio::detail::socket_ops::inet_pton(
00146 AF_INET6, str, &tmp.addr_, &tmp.scope_id_, ec) <= 0)
00147 return address_v6();
00148 return tmp;
00149 }
00150
00152 static address_v6 from_string(const std::string& str)
00153 {
00154 return from_string(str.c_str());
00155 }
00156
00158 static address_v6 from_string(const std::string& str,
00159 asio::error_code& ec)
00160 {
00161 return from_string(str.c_str(), ec);
00162 }
00163
00165 address_v4 to_v4() const
00166 {
00167 if (!is_v4_mapped() && !is_v4_compatible())
00168 throw std::bad_cast();
00169 address_v4::bytes_type v4_bytes = { { addr_.s6_addr[12],
00170 addr_.s6_addr[13], addr_.s6_addr[14], addr_.s6_addr[15] } };
00171 return address_v4(v4_bytes);
00172 }
00173
00175 bool is_loopback() const
00176 {
00177 #if defined(__BORLANDC__)
00178 return ((addr_.s6_addr[0] == 0) && (addr_.s6_addr[1] == 0)
00179 && (addr_.s6_addr[2] == 0) && (addr_.s6_addr[3] == 0)
00180 && (addr_.s6_addr[4] == 0) && (addr_.s6_addr[5] == 0)
00181 && (addr_.s6_addr[6] == 0) && (addr_.s6_addr[7] == 0)
00182 && (addr_.s6_addr[8] == 0) && (addr_.s6_addr[9] == 0)
00183 && (addr_.s6_addr[10] == 0) && (addr_.s6_addr[11] == 0)
00184 && (addr_.s6_addr[12] == 0) && (addr_.s6_addr[13] == 0)
00185 && (addr_.s6_addr[14] == 0) && (addr_.s6_addr[15] == 1));
00186 #else
00187 using namespace asio::detail;
00188 return IN6_IS_ADDR_LOOPBACK(&addr_) != 0;
00189 #endif
00190 }
00191
00193 bool is_unspecified() const
00194 {
00195 #if defined(__BORLANDC__)
00196 return ((addr_.s6_addr[0] == 0) && (addr_.s6_addr[1] == 0)
00197 && (addr_.s6_addr[2] == 0) && (addr_.s6_addr[3] == 0)
00198 && (addr_.s6_addr[4] == 0) && (addr_.s6_addr[5] == 0)
00199 && (addr_.s6_addr[6] == 0) && (addr_.s6_addr[7] == 0)
00200 && (addr_.s6_addr[8] == 0) && (addr_.s6_addr[9] == 0)
00201 && (addr_.s6_addr[10] == 0) && (addr_.s6_addr[11] == 0)
00202 && (addr_.s6_addr[12] == 0) && (addr_.s6_addr[13] == 0)
00203 && (addr_.s6_addr[14] == 0) && (addr_.s6_addr[15] == 0));
00204 #else
00205 using namespace asio::detail;
00206 return IN6_IS_ADDR_UNSPECIFIED(&addr_) != 0;
00207 #endif
00208 }
00209
00211 bool is_link_local() const
00212 {
00213 using namespace asio::detail;
00214 return IN6_IS_ADDR_LINKLOCAL(&addr_) != 0;
00215 }
00216
00218 bool is_site_local() const
00219 {
00220 using namespace asio::detail;
00221 return IN6_IS_ADDR_SITELOCAL(&addr_) != 0;
00222 }
00223
00225 bool is_v4_mapped() const
00226 {
00227 using namespace asio::detail;
00228 return IN6_IS_ADDR_V4MAPPED(&addr_) != 0;
00229 }
00230
00232 bool is_v4_compatible() const
00233 {
00234 using namespace asio::detail;
00235 return IN6_IS_ADDR_V4COMPAT(&addr_) != 0;
00236 }
00237
00239 bool is_multicast() const
00240 {
00241 using namespace asio::detail;
00242 return IN6_IS_ADDR_MULTICAST(&addr_) != 0;
00243 }
00244
00246 bool is_multicast_global() const
00247 {
00248 using namespace asio::detail;
00249 return IN6_IS_ADDR_MC_GLOBAL(&addr_) != 0;
00250 }
00251
00253 bool is_multicast_link_local() const
00254 {
00255 using namespace asio::detail;
00256 return IN6_IS_ADDR_MC_LINKLOCAL(&addr_) != 0;
00257 }
00258
00260 bool is_multicast_node_local() const
00261 {
00262 using namespace asio::detail;
00263 return IN6_IS_ADDR_MC_NODELOCAL(&addr_) != 0;
00264 }
00265
00267 bool is_multicast_org_local() const
00268 {
00269 using namespace asio::detail;
00270 return IN6_IS_ADDR_MC_ORGLOCAL(&addr_) != 0;
00271 }
00272
00274 bool is_multicast_site_local() const
00275 {
00276 using namespace asio::detail;
00277 return IN6_IS_ADDR_MC_SITELOCAL(&addr_) != 0;
00278 }
00279
00281 friend bool operator==(const address_v6& a1, const address_v6& a2)
00282 {
00283 using namespace std;
00284 return memcmp(&a1.addr_, &a2.addr_,
00285 sizeof(asio::detail::in6_addr_type)) == 0
00286 && a1.scope_id_ == a2.scope_id_;
00287 }
00288
00290 friend bool operator!=(const address_v6& a1, const address_v6& a2)
00291 {
00292 using namespace std;
00293 return memcmp(&a1.addr_, &a2.addr_,
00294 sizeof(asio::detail::in6_addr_type)) != 0
00295 || a1.scope_id_ != a2.scope_id_;
00296 }
00297
00299 friend bool operator<(const address_v6& a1, const address_v6& a2)
00300 {
00301 using namespace std;
00302 int memcmp_result = memcmp(&a1.addr_, &a2.addr_,
00303 sizeof(asio::detail::in6_addr_type));
00304 if (memcmp_result < 0)
00305 return true;
00306 if (memcmp_result > 0)
00307 return false;
00308 return a1.scope_id_ < a2.scope_id_;
00309 }
00310
00312 friend bool operator>(const address_v6& a1, const address_v6& a2)
00313 {
00314 return a2 < a1;
00315 }
00316
00318 friend bool operator<=(const address_v6& a1, const address_v6& a2)
00319 {
00320 return !(a2 < a1);
00321 }
00322
00324 friend bool operator>=(const address_v6& a1, const address_v6& a2)
00325 {
00326 return !(a1 < a2);
00327 }
00328
00330 static address_v6 any()
00331 {
00332 return address_v6();
00333 }
00334
00336 static address_v6 loopback()
00337 {
00338 address_v6 tmp;
00339 asio::detail::in6_addr_type tmp_addr = IN6ADDR_LOOPBACK_INIT;
00340 tmp.addr_ = tmp_addr;
00341 return tmp;
00342 }
00343
00345 static address_v6 v4_mapped(const address_v4& addr)
00346 {
00347 address_v4::bytes_type v4_bytes = addr.to_bytes();
00348 bytes_type v6_bytes = { { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0xFF, 0xFF,
00349 v4_bytes[0], v4_bytes[1], v4_bytes[2], v4_bytes[3] } };
00350 return address_v6(v6_bytes);
00351 }
00352
00354 static address_v6 v4_compatible(const address_v4& addr)
00355 {
00356 address_v4::bytes_type v4_bytes = addr.to_bytes();
00357 bytes_type v6_bytes = { { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
00358 v4_bytes[0], v4_bytes[1], v4_bytes[2], v4_bytes[3] } };
00359 return address_v6(v6_bytes);
00360 }
00361
00362 private:
00363
00364 asio::detail::in6_addr_type addr_;
00365
00366
00367 unsigned long scope_id_;
00368 };
00369
00371
00382 template <typename Elem, typename Traits>
00383 std::basic_ostream<Elem, Traits>& operator<<(
00384 std::basic_ostream<Elem, Traits>& os, const address_v6& addr)
00385 {
00386 asio::error_code ec;
00387 std::string s = addr.to_string(ec);
00388 if (ec)
00389 {
00390 if (os.exceptions() & std::ios::failbit)
00391 asio::detail::throw_error(ec);
00392 else
00393 os.setstate(std::ios_base::failbit);
00394 }
00395 else
00396 for (std::string::iterator i = s.begin(); i != s.end(); ++i)
00397 os << os.widen(*i);
00398 return os;
00399 }
00400
00401 }
00402 }
00403
00404 #include "asio/detail/pop_options.hpp"
00405
00406 #endif // ASIO_IP_ADDRESS_V6_HPP