Files
OpenVPNAdapter/openvpn/addr/ipv6.hpp
T
Sergey Abramchuk 82fea30fcc Squashed 'OpenVPN Adapter/Vendors/openvpn/' changes from 4095565..3e002c8
3e002c8 remove unused Jenkinsfile
16b1055 [OVPN3-140] Update company names in copyrights
6caca2c [OVPN3-140] Relicense back to AGPLv3
4f9ae74 cliproto: react to tls_warnings
546547b Proto: export tls_warnings attribute from SSL session
7cbaa26 SSLAPI: add tls_warning attribute
7ed93a3 clievent: add Warn event class
7a71ba1 win: get 'arch' param value from environment
61bb21b win: make parameter optional
15d66c4 [OVPN3-141] win: disable WPO
97d9c28 [OU-15] mbedtls: remove duplicated code
95aec32 [OU-15] mbedtls: refactor X509Cert to allow reuse der2pem
946753e [OVPN3-135] Win: remove unneeded default route
d7f8c47 nrpt: create separate policy per dns suffix
577b5ca cli.cpp: fix typ0 in define
fc8f89d [OVPN3-129] android: ensure all SWIG files are archived and saved
e143bc0 [OVPN3-129] android: improve build system in order to perform full build
06d23ec [OVPN3-129] build-system: let scripts download dependencies
76bb99c fix usage of to_string() in Android
44c183a time: mute type conversion warnings for UWP client
7d7490c transport: enable socket protect call for UWP
1c003ac transport: pass protocol type to external factory
c0de92c transport: add stop_requeueing method
e2c60c8 android: build core library with MD5 support
3928069 [OVPN3-119] mbedTLS: create INSECURE profile including MD5
4f99310 remove function accidentally duplicated by last merge
b91d841 self-test: add missing includes
19e33c4 [OA-14] mbedTLS: relax x509 date/time format check
f3cf645 [OVPN3-116] disable SSL_CBC_RECORD_SPLITTING
fca9ed2 [OVPN3-105] ParseClientConfig: avoid crash when not all key material is provided
7299fef [OC-42] Android: specify API level on command line
d3da3df android: build client lib for x86 (for emulator)
8e501c5 Update version for mbedTLS and lz4
e57676e ParseClientConfig: export config to json format
9aa715f ParseClientConfig: export configuration to ovpn file format
1eab4cb ParseClientConfig: add helper constructor
71a59e4 ParseClientConfig: store the entire ovpn profile
e0bb85a Transport: convert from transport protocol to config string
2fe56c3 Compress: convert from ctx type to config string
174ee25 OpenSSL: implement stub methods for new private_key_type/length() SSLAPIs
3d57708 mbedTLS: implement private_key_type/length() API
a3210f0 SSLAPI: add private_key_type/length() getter methods
8ffe888 OpenSSL: implement stub methods for new extract_* SSLAPIs
16e9160 mbedTLS: implement extended API for key material extraction
fe3d519 SSLAPI: extend API with methods to extract key material
2b4c850 Debugging: added header and build flag for valgrind run-time extensions.
b948cde ManClientInstance::Factory: added virtual stop() method.
121e975 client API: added portOverride
106981c JSON: allow alternative JSON library implementations
f206ae2 logging: added logdatetime.hpp which prepends date/time to log lines
49e933d Time: added to_double, delta_float, and delta_str methods
569b1da daemon.hpp: added class WritePid for managing pid files
63e9e04 ClientProto: reset CoarseTime object when AsioTimer is canceled
f64b501 Cleanup: allow functor to be passed by value.
ebe2560 RunContext: add configurable exit via EXIT_IN env var for debugging
1fbff4f tls-crypt: revised server-side validate_initial_packet() methods to use a BufferAllocated rather than a Buffer.
0090c51 SSLConst: added new ssl_flags() method which filters out non-ssl flags from given argument.
8379b0a CryptoDCInstance: added new RekeyType PRIMARY_SECONDARY_SWAP and use it in ProtoContext::promote_secondary_to_primary() since it more accurately reflects the underlying implementation.
18f45c2 ManClientInstance::Send: added AuthStatus::Type parameter to disconnect_user() method.
4bba803 Listen::List: added expand_ports() method.
5122e7d Listen::List: in port_offset(), set n_threads to 0 since number-of-threads data for port_offset items isn't really relevant.
4e11a6c StaticKey: added render_to_base64() and init_from_rng() methods.
190ece9 CryptoAlgs: added mode() method.
76e65cf CryptoAlgs: added AEAD_NONCE_TAIL_SIZE constant (set to 8 bytes) to represent the size in bytes of AEAD "nonce tail" normally taken from the HMAC key material.
2738718 compress: added method_to_string() method, i.e. the inverse of parse_method().
7b47f99 compress: since parse_method() performs a linear search on method, reorder so that more frequently used methods appear at the top of the list.
b428f74 library: added integer is_pow2() and log2() methods based on efficient __builtin_ffs and __builtin_clz intrinsics.
4926011 Android: adapt toolchain scripts to new SDK and move to API 26
ad4e995 mbedTLS: use mbedtls API to initialize cert object
908c611 transport: use socket_protect to communicate socket handle on UWP
92a6216 build win: read certain params from env
8166ea8 common: define uwp platform macro
0186bf6 common: report platform name as "uwp"
3f291b0 netconf: disable getting hwaddr for UWP
6365d26 transport: external factory
2ffa0c9 transport: synchronous DNS lookup
2c09c7c cliconnect.hpp: support for AsioWork always on
4f5a04d rand.hpp: allow external entropy source
b19c5da time.hpp: use GetTickCount64 on Vista and newer
712ccfc android: export DEP_DIR via vars files only if not already defined
1b5a784 asio: make sure to switch to DEP_DIR before building
4302651 changes to support android building
6f56b2b Merge pull request #21 from OpenVPN/make_test_proto_deterministic
3a5ef2b travis-ci: make testing binary deterministic
b76882d mbedtls: fix typ0 in exception message
40065a6 avoid "uninitialized variable warning"
f33e7c2 [OVPN3-5] tls-crypt: add tls-crypt support in proto.hpp test unit
74c5f4f [OVPN3-5] tls-crypt: introduce tls-crypt support
389353c proto.cpp: uninit process at the end of the execution
56a831f [OVPN3-5] crypto/ssl: add support for AES-256-CTR
7cbf539 [OVPN3-5] build script: allow user to specify its own mbedTLS folder and LDFLAGS
8ae2a3f Integrate Google Test framework
68ae101 Add swig build to jenkins pipeline
d496311 ovpncli.hpp: inline LogInfo constructor for clarity
96e0d89 Revert "Merged in OVPN3-21-prepend-log-record-with-unique- (pull request #7)"
7db95cc Make build fail on compilation errors
860129a TunBuilderCapture: make (to|from)_json methods public
2486494 random: added helper class Rand2 containing a crypto and non-crypto RNG
04175c2 appversion.hpp: Stringize VERSION -> MY_VERSION
81cb887 build script: added DPROF=1 flag
a3dd47f timestr.hpp: moved milliseconds_since_epoch() to time/epoch.hpp
59b9492 sslchoose.hpp: added SSL_LIB_NAME
8fcb797 ProtoContext::KeyContext::raw_recv() : fix state transition
e49e993 ProtoContext: comment edit
1d941aa VPNServerNetblock::Netblock refactor
7190495 Server-side renamings to break up long class names using namespaces.
3f74ec1 Listen::List: minor changes
79c789b RandomAPI: comment edit
5b5af36 Added SSLConst::SERVER_TO_SERVER flag
fe00df4 OpenSSLContext::Config::set_rng: call assert_crypto()
3ae0076 In sslchoose.hpp, move OPENVPN_LOG_SSL macro to new file ssllog.hpp
1502cf6 URL::Parse: made is_valid_uri_char() standalone and moved to validate_uri.hpp
2dcb189 Added HTTP::Status::SwitchingProtocols constant
2f57024 HTTP::HeaderList: added get_value_trim_lower() method
bee94d2 HTTP::HeaderList: get_value() and get_value_trim() should return std::string instead of const std::string
5debab1 Frame::Context: #define OPENVPN_NO_IO to allow building without i/o layer
faf8f8f StaticKey: added parse_from_base64() method
d11f250 HashString: added final_base64() method
c373bf8 CompressContext: use C++11 member initialization and remove explicit attribute on constructor
bd75cd7 RCPtr: added operator==() and operator!=() methods
7be33c5 PThreadBarrier: fixed incorrect comment
6f5f77b Link: use move semantics
17a5d89 inotify.hpp: no longer used
8ce39fc added render_hex() and render_hex_sep() methods that accept void* data
ddc8e8a Function: use std::forward
76ee587 write_binary_atomic(): added tmpdir (temporary directory) parameter
f366d55 base64: encode() now accepts void* data
462fe90 BufferType: added read(), write(), and prepend() variants that accept void* data
9ad1be4 IP::RouteType: added host_bits() method
3ebc8c7 IPv[46]::Addr::to_sockaddr() now accepts optional port number
ce0977b Support Cityhash.
fdbb0b9 IP::Addr: added validate_prefix_len()
25146d8 IP::Addr::from_ipv[4|6](): use move semantics
a264f99 Merge pull request #20 from OpenVPN/fix_travis_ci_coverity
966e212 travis: don't mess up the SSL libs for wget/curl
2b8f09d Merge pull request #19 from OpenVPN/antonio/travis-ci-to-coverity
127cbb0 travis.yml: send build to Coverity SCAN when building master
2bca49b Merge pull request #15 from OpenVPN/antonio/travis-ci
a5ce566 add basic support for Travis CI
f9b14e9 macOS: add basic logging support
2b9188d Remotelist: pass meaningful port value to resolve::async_resolve()
4ebdbd0 Merged in OVPN3-38-improve-jenkins-pipeline-script (pull request #8)
832cf7f Report build status to Bitbucket
62423c9 Merged in OVPN3-21-prepend-log-record-with-unique- (pull request #7)
cce2455 Prepend log string with unique reference.
f26b08b Merged in OVPN3-25-pipeline-build (pull request #4)
dc5ff1f Add OpenSSL version building.
c77e1d6 Add pipeline script for multiplatform build.
4fab9b0 Merged in OVPN3-18-vs-project (pull request #2)
8eb0d6c Add Visual Studio project info to README
67c4989 Visual Studio 2015 solution and project files
52bfcd3 Merged in OVPN3-17 (pull request #1)
5f648ce Document Windows build process
3213c48 Support for local build settings
b3ec01b Support for gpl version of mbedtls
903abc8 Support for zipballs
4029579 AsioPolySock: support bind to local address.
1e85566 Use openvpn::strerror_str() instead of std::strerror().
3ba37fc OpenVPN 3 client: added OPENVPN_OVPNCLI_ASYNC_SETUP flag.

git-subtree-dir: OpenVPN Adapter/Vendors/openvpn
git-subtree-split: 3e002c83ce2e9f9f40ddcee750d3cfa664238abe
2018-01-08 11:44:56 +03:00

829 lines
19 KiB
C++

// OpenVPN -- An application to securely tunnel IP networks
// over a single port, with support for SSL/TLS-based
// session authentication and key exchange,
// packet encryption, packet authentication, and
// packet compression.
//
// Copyright (C) 2012-2017 OpenVPN Inc.
//
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU Affero General Public License Version 3
// as published by the Free Software Foundation.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Affero General Public License for more details.
//
// You should have received a copy of the GNU Affero General Public License
// along with this program in the COPYING file.
// If not, see <http://www.gnu.org/licenses/>.
#ifndef OPENVPN_ADDR_IPV6_H
#define OPENVPN_ADDR_IPV6_H
#include <cstring> // for std::memcpy, std::memset
#include <algorithm> // for std::min
#include <cstdint> // for std::uint32_t
#include <openvpn/io/io.hpp>
#include <openvpn/common/size.hpp>
#include <openvpn/common/exception.hpp>
#include <openvpn/common/ostream.hpp>
#include <openvpn/common/socktypes.hpp>
#include <openvpn/common/ffs.hpp>
#include <openvpn/common/hexstr.hpp>
#include <openvpn/addr/ipv4.hpp>
#include <openvpn/addr/iperr.hpp>
namespace openvpn {
namespace IP {
class Addr;
}
// Fundamental classes for representing an IPv6 IP address.
namespace IPv6 {
OPENVPN_EXCEPTION(ipv6_exception);
class Addr // NOTE: must be union-legal, so default constructor does not initialize
{
friend class IP::Addr;
public:
enum { SIZE=128 };
static Addr from_addr(const Addr& addr)
{
return addr;
}
static Addr from_in6_addr(const struct in6_addr *in6)
{
Addr ret;
network_to_host_order(&ret.u, (const union ipv6addr *)in6->s6_addr);
ret.scope_id_ = 0;
return ret;
}
struct in6_addr to_in6_addr() const
{
struct in6_addr ret;
host_to_network_order((union ipv6addr *)&ret, &u);
return ret;
}
static Addr from_sockaddr(const struct sockaddr_in6 *sa)
{
Addr ret;
network_to_host_order(&ret.u, (const union ipv6addr *)sa->sin6_addr.s6_addr);
ret.scope_id_ = sa->sin6_scope_id;
return ret;
}
struct sockaddr_in6 to_sockaddr(const unsigned short port=0) const
{
struct sockaddr_in6 ret;
std::memset(&ret, 0, sizeof(ret));
ret.sin6_family = AF_INET6;
ret.sin6_port = htons(port);
host_to_network_order((union ipv6addr *)&ret.sin6_addr.s6_addr, &u);
ret.sin6_scope_id = scope_id_;
return ret;
}
static Addr from_string(const std::string& ipstr, const char *title = nullptr)
{
openvpn_io::error_code ec;
openvpn_io::ip::address_v6 a = openvpn_io::ip::make_address_v6(ipstr, ec);
if (ec)
throw ipv6_exception(IP::internal::format_error(ipstr, title, "v6", ec));
return from_asio(a);
}
std::string to_string() const
{
const openvpn_io::ip::address_v6 a = to_asio();
std::string ret = a.to_string();
return ret;
}
static Addr from_hex(const std::string& s)
{
Addr ret;
ret.scope_id_ = 0;
ret.zero();
size_t len = s.length();
size_t base = 0;
if (len > 0 && s[len-1] == 'L')
len -= 1;
if (len >= 2 && s[0] == '0' && s[1] == 'x')
{
base = 2;
len -= 2;
}
if (len < 1 || len > 32)
throw ipv6_exception("parse hex error");
size_t di = (len-1)>>1;
for (int i = (len & 1) ? -1 : 0; i < int(len); i += 2)
{
const size_t idx = base + i;
const int bh = (i >= 0) ? parse_hex_char(s[idx]) : 0;
const int bl = parse_hex_char(s[idx+1]);
if (bh == -1 || bl == -1)
throw ipv6_exception("parse hex error");
ret.u.bytes[Endian::e16(di--)] = (bh<<4) + bl;
}
return ret;
}
std::string to_hex() const
{
std::string ret;
ret.reserve(32);
bool firstnonzero = false;
for (size_t i = 0; i < 16; ++i)
{
const unsigned char b = u.bytes[Endian::e16rev(i)];
if (b || firstnonzero || i == 15)
{
const char bh = b >> 4;
if (bh || firstnonzero)
ret += render_hex_char(bh);
ret += render_hex_char(b & 0x0F);
firstnonzero = true;
}
}
return ret;
}
static Addr from_ulong(unsigned long ul)
{
Addr ret;
ret.scope_id_ = 0;
ret.u.u64[Endian::e2(0)] = std::uint64_t(ul);
ret.u.u64[Endian::e2(1)] = 0;
return ret;
}
// return *this as a unsigned long
unsigned long to_ulong() const
{
const unsigned long ret = (unsigned long)u.u64[Endian::e2(0)];
const std::uint64_t cmp = std::uint64_t(ret);
if (u.u64[Endian::e2(1)] || cmp != u.u64[Endian::e2(0)])
throw ipv6_exception("overflow in conversion from IPv6.Addr to unsigned long");
return ret;
}
static Addr from_long(long ul)
{
bool neg = false;
Addr ret;
ret.scope_id_ = 0;
if (ul < 0)
{
ul = -(ul + 1);
neg = true;
}
ret.u.u64[Endian::e2(0)] = std::uint64_t(ul);
ret.u.u64[Endian::e2(1)] = 0;
if (neg)
ret.negate();
return ret;
}
// return *this as a long
long to_long() const
{
bool neg = false;
Addr a = *this;
if (a.u.u64[Endian::e2(1)])
{
a.negate();
neg = true;
}
const long ret = (long)a.u.u64[Endian::e2(0)];
const std::uint64_t cmp = std::uint64_t(ret);
if (a.u.u64[Endian::e2(1)] || cmp != a.u.u64[Endian::e2(0)])
throw ipv6_exception("overflow in conversion from IPv6.Addr to long");
return neg ? -(ret + 1) : ret;
}
std::string arpa() const
{
throw ipv6_exception("arpa() not implemented");
}
static Addr from_asio(const openvpn_io::ip::address_v6& asio_addr)
{
Addr ret;
union ipv6addr addr;
addr.asio_bytes = asio_addr.to_bytes();
network_to_host_order(&ret.u, &addr);
ret.scope_id_ = (unsigned int)asio_addr.scope_id();
return ret;
}
static Addr from_byte_string(const unsigned char *bytestr)
{
Addr ret;
network_to_host_order(&ret.u, (const union ipv6addr *)bytestr);
ret.scope_id_ = 0;
return ret;
}
void to_byte_string(unsigned char *bytestr) const
{
host_to_network_order((union ipv6addr *)bytestr, &u);
}
static void v4_to_byte_string(unsigned char *bytestr,
const std::uint32_t v4addr)
{
union ipv6addr *a = (union ipv6addr *)bytestr;
a->u32[0] = a->u32[1] = a->u32[2] = 0;
a->u32[3] = v4addr;
}
static bool byte_string_is_v4(const unsigned char *bytestr)
{
const union ipv6addr *a = (const union ipv6addr *)bytestr;
return a->u32[0] == 0 && a->u32[1] == 0 && a->u32[2] == 0;
}
static std::uint32_t v4_from_byte_string(const unsigned char *bytestr)
{
const union ipv6addr *a = (const union ipv6addr *)bytestr;
return a->u32[3];
}
openvpn_io::ip::address_v6 to_asio() const
{
union ipv6addr addr;
host_to_network_order(&addr, &u);
return openvpn_io::ip::address_v6(addr.asio_bytes, scope_id_);
}
static Addr from_zero()
{
Addr ret;
ret.scope_id_ = 0;
ret.zero();
return ret;
}
static Addr from_one()
{
Addr ret;
ret.scope_id_ = 0;
ret.one();
return ret;
}
static Addr from_zero_complement()
{
Addr ret;
ret.scope_id_ = 0;
ret.zero_complement();
return ret;
}
// build a netmask using given prefix_len
static Addr netmask_from_prefix_len(const unsigned int prefix_len)
{
Addr ret;
ret.scope_id_ = 0;
ret.prefix_len_to_netmask(prefix_len);
return ret;
}
// build a netmask using given extent
Addr netmask_from_extent() const
{
const Addr lb = *this - 1;
for (size_t i = 4; i --> 0 ;)
{
const std::uint32_t v = lb.u.u32[Endian::e4(i)];
if (v)
return netmask_from_prefix_len(SIZE - (((unsigned int)i<<5) + find_last_set(v)));
}
return from_zero_complement();
}
Addr operator&(const Addr& other) const {
Addr ret;
ret.scope_id_ = scope_id_;
ret.u.u64[0] = u.u64[0] & other.u.u64[0];
ret.u.u64[1] = u.u64[1] & other.u.u64[1];
return ret;
}
Addr operator|(const Addr& other) const {
Addr ret;
ret.scope_id_ = scope_id_;
ret.u.u64[0] = u.u64[0] | other.u.u64[0];
ret.u.u64[1] = u.u64[1] | other.u.u64[1];
return ret;
}
Addr operator+(const long delta) const {
Addr ret = *this;
ret.u.u64[Endian::e2(0)] += delta;
ret.u.u64[Endian::e2(1)] += (delta >= 0)
? (ret.u.u64[Endian::e2(0)] < u.u64[Endian::e2(0)])
: -(ret.u.u64[Endian::e2(0)] > u.u64[Endian::e2(0)]);
return ret;
}
Addr operator+(const Addr& other) const {
Addr ret = *this;
add(ret.u, other.u);
return ret;
}
Addr operator-(const long delta) const {
return operator+(-delta);
}
Addr operator-(const Addr& other) const {
Addr ret = *this;
sub(ret.u, other.u);
return ret;
}
Addr operator*(const Addr& d) const {
Addr m = d;
Addr ret = from_zero();
for (unsigned int i = 0; i < SIZE; ++i)
{
if (bit(i))
ret += m;
m <<= 1;
}
return ret;
}
Addr operator/(const Addr& d) const {
Addr q, r;
div(*this, d, q, r);
return q;
}
Addr operator%(const Addr& d) const {
Addr q, r;
div(*this, d, q, r);
return r;
}
Addr operator<<(const unsigned int shift) const {
Addr ret = *this;
shiftl128(ret.u.u64[Endian::e2(0)],
ret.u.u64[Endian::e2(1)],
shift);
return ret;
}
Addr operator>>(const unsigned int shift) const {
Addr ret = *this;
shiftr128(ret.u.u64[Endian::e2(0)],
ret.u.u64[Endian::e2(1)],
shift);
return ret;
}
Addr operator~() const {
Addr ret;
ret.scope_id_ = scope_id_;
ret.u.u64[0] = ~u.u64[0];
ret.u.u64[1] = ~u.u64[1];
return ret;
}
// return the network that contains the current address
Addr network_addr(const unsigned int prefix_len) const
{
return *this & netmask_from_prefix_len(prefix_len);
}
bool operator==(const Addr& other) const
{
return u.u64[0] == other.u.u64[0] && u.u64[1] == other.u.u64[1] && scope_id_ == other.scope_id_;
}
bool operator!=(const Addr& other) const
{
return !operator==(other);
}
#define OPENVPN_IPV6_OPERATOR_REL(OP) \
bool operator OP(const Addr& other) const \
{ \
if (u.u64[Endian::e2(1)] == other.u.u64[Endian::e2(1)]) \
{ \
if (u.u64[Endian::e2(0)] != other.u.u64[Endian::e2(0)]) \
return u.u64[Endian::e2(0)] OP other.u.u64[Endian::e2(0)]; \
else \
return scope_id_ OP other.scope_id_; \
} \
else \
return u.u64[Endian::e2(1)] OP other.u.u64[Endian::e2(1)]; \
}
OPENVPN_IPV6_OPERATOR_REL(<)
OPENVPN_IPV6_OPERATOR_REL(>)
OPENVPN_IPV6_OPERATOR_REL(<=)
OPENVPN_IPV6_OPERATOR_REL(>=)
#undef OPENVPN_IPV6_OPERATOR_REL
bool unspecified() const
{
return all_zeros();
}
bool specified() const
{
return !unspecified();
}
bool all_zeros() const
{
return u.u64[0] == 0 && u.u64[1] == 0;
}
bool all_ones() const
{
return u.u64[0] == ~std::uint64_t(0) && u.u64[1] == ~std::uint64_t(0);
}
bool is_loopback() const // ::1
{
return u.u64[Endian::e2(1)] == 0 && u.u64[Endian::e2(0)] == 1;
}
bool bit(unsigned int pos) const
{
if (pos < 64)
return (u.u64[Endian::e2(0)] & (std::uint64_t(1)<<pos)) != 0;
else
return (u.u64[Endian::e2(1)] & (std::uint64_t(1)<<(pos-64))) != 0;
}
// number of network bits in netmask,
// throws exception if addr is not a netmask
unsigned int prefix_len() const
{
int idx = -1;
if (u.u32[Endian::e4(3)] != ~std::uint32_t(0))
{
if (!u.u32[Endian::e4(0)] && !u.u32[Endian::e4(1)] && !u.u32[Endian::e4(2)])
idx = 0;
}
else if (u.u32[Endian::e4(2)] != ~std::uint32_t(0))
{
if (!u.u32[Endian::e4(0)] && !u.u32[Endian::e4(1)])
idx = 1;
}
else if (u.u32[Endian::e4(1)] != ~std::uint32_t(0))
{
if (!u.u32[Endian::e4(0)])
idx = 2;
}
else
idx = 3;
if (idx >= 0)
{
const int ret = IPv4::Addr::prefix_len_32(u.u32[Endian::e4rev(idx)]);
if (ret >= 0)
return ret + (idx<<5);
}
throw ipv6_exception("malformed netmask");
}
// number of host bits in netmask
unsigned int host_len() const
{
return SIZE - prefix_len();
}
// return the number of host addresses contained within netmask
Addr extent_from_netmask() const
{
const unsigned int hl = host_len();
if (hl < SIZE)
{
Addr a;
a.scope_id_ = 0;
a.one();
return a << hl;
}
else if (hl == SIZE)
return from_zero();
else
throw ipv6_exception("extent overflow");
}
// address size in bits
static unsigned int size()
{
return SIZE;
}
template <typename HASH>
void hash(HASH& h) const
{
h(u.bytes, sizeof(u.bytes));
}
#ifdef OPENVPN_IP_IMMUTABLE
private:
#endif
void negate()
{
u.u64[0] = ~u.u64[0];
u.u64[1] = ~u.u64[1];
}
void zero()
{
u.u64[0] = 0;
u.u64[1] = 0;
}
void zero_complement()
{
u.u64[0] = ~std::uint64_t(0);
u.u64[1] = ~std::uint64_t(0);
}
void one()
{
u.u64[0] = 1;
u.u64[1] = 0;
}
Addr& operator++()
{
if (++u.u64[Endian::e2(0)] == 0)
++u.u64[Endian::e2(1)];
return *this;
}
Addr& operator+=(const long delta)
{
*this = *this + delta;
return *this;
}
Addr& operator-=(const long delta)
{
return operator+=(-delta);
}
Addr& operator+=(const Addr& other) {
add(u, other.u);
return *this;
}
Addr& operator-=(const Addr& other) {
sub(u, other.u);
return *this;
}
Addr& operator<<=(const unsigned int shift) {
shiftl128(u.u64[Endian::e2(0)],
u.u64[Endian::e2(1)],
shift);
return *this;
}
Addr& operator>>=(const unsigned int shift) {
shiftr128(u.u64[Endian::e2(0)],
u.u64[Endian::e2(1)],
shift);
return *this;
}
void set_clear_bit(unsigned int pos, bool value)
{
if (pos < 64)
{
if (value)
u.u64[Endian::e2(0)] |= (std::uint64_t(1)<<pos);
else
u.u64[Endian::e2(0)] &= ~(std::uint64_t(1)<<pos);
}
else
{
if (value)
u.u64[Endian::e2(1)] |= (std::uint64_t(1)<<(pos-64));
else
u.u64[Endian::e2(1)] &= ~(std::uint64_t(1)<<(pos-64));
}
}
void set_bit(unsigned int pos, bool value)
{
if (value)
{
if (pos < 64)
u.u64[Endian::e2(0)] |= (std::uint64_t(1)<<pos);
else
u.u64[Endian::e2(1)] |= (std::uint64_t(1)<<(pos-64));
}
}
static void div(const Addr& n, const Addr& d, Addr& q, Addr& r)
{
if (d.all_zeros())
throw ipv6_exception("division by 0");
q = from_zero(); // quotient
r = n; // remainder (init to numerator)
Addr ml = from_zero(); // mask low
Addr mh = d; // mask high (init to denominator)
for (unsigned int i = 0; i < SIZE; ++i)
{
ml >>= 1;
ml.set_bit(SIZE-1, mh.bit(0));
mh >>= 1;
if (mh.all_zeros() && r >= ml)
{
r -= ml;
q.set_bit((SIZE-1)-i, true);
}
}
}
int scope_id() const
{
return scope_id_;
}
private:
union ipv6addr {
std::uint64_t u64[2];
std::uint32_t u32[4]; // generally stored in host byte order
unsigned char bytes[16];
openvpn_io::ip::address_v6::bytes_type asio_bytes;
};
void prefix_len_to_netmask_unchecked(const unsigned int prefix_len)
{
if (prefix_len > 0)
{
const unsigned int pl = prefix_len - 1;
const std::uint32_t mask = ~((1 << (31 - (pl & 31))) - 1);
switch (pl >> 5)
{
case 0:
u.u32[Endian::e4(0)] = 0;
u.u32[Endian::e4(1)] = 0;
u.u32[Endian::e4(2)] = 0;
u.u32[Endian::e4(3)] = mask;
break;
case 1:
u.u32[Endian::e4(0)] = 0;
u.u32[Endian::e4(1)] = 0;
u.u32[Endian::e4(2)] = mask;
u.u32[Endian::e4(3)] = ~0;
break;
case 2:
u.u32[Endian::e4(0)] = 0;
u.u32[Endian::e4(1)] = mask;
u.u32[Endian::e4(2)] = ~0;
u.u32[Endian::e4(3)] = ~0;
break;
case 3:
u.u32[Endian::e4(0)] = mask;
u.u32[Endian::e4(1)] = ~0;
u.u32[Endian::e4(2)] = ~0;
u.u32[Endian::e4(3)] = ~0;
break;
}
}
else
zero();
}
void prefix_len_to_netmask(const unsigned int prefix_len)
{
if (prefix_len <= SIZE)
return prefix_len_to_netmask_unchecked(prefix_len);
else
throw ipv6_exception("bad prefix len");
}
static void host_to_network_order(union ipv6addr *dest, const union ipv6addr *src)
{
dest->u32[0] = htonl(src->u32[Endian::e4rev(0)]);
dest->u32[1] = htonl(src->u32[Endian::e4rev(1)]);
dest->u32[2] = htonl(src->u32[Endian::e4rev(2)]);
dest->u32[3] = htonl(src->u32[Endian::e4rev(3)]);
}
static void network_to_host_order(union ipv6addr *dest, const union ipv6addr *src)
{
dest->u32[0] = ntohl(src->u32[Endian::e4rev(0)]);
dest->u32[1] = ntohl(src->u32[Endian::e4rev(1)]);
dest->u32[2] = ntohl(src->u32[Endian::e4rev(2)]);
dest->u32[3] = ntohl(src->u32[Endian::e4rev(3)]);
}
static void shiftl128(std::uint64_t& low,
std::uint64_t& high,
unsigned int shift)
{
if (shift == 1)
{
high <<= 1;
if (low & (std::uint64_t(1) << 63))
high |= 1;
low <<= 1;
}
else if (shift == 0)
;
else if (shift <= 128)
{
if (shift >= 64)
{
high = low;
low = 0;
shift -= 64;
}
if (shift < 64)
{
high = (high << shift) | (low >> (64-shift));
low <<= shift;
}
else // shift == 64
high = 0;
}
else
throw ipv6_exception("l-shift too large");
}
static void shiftr128(std::uint64_t& low,
std::uint64_t& high,
unsigned int shift)
{
if (shift == 1)
{
low >>= 1;
if (high & 1)
low |= (std::uint64_t(1) << 63);
high >>= 1;
}
else if (shift == 0)
;
else if (shift <= 128)
{
if (shift >= 64)
{
low = high;
high = 0;
shift -= 64;
}
if (shift < 64)
{
low = (low >> shift) | (high << (64-shift));
high >>= shift;
}
else // shift == 64
low = 0;
}
else
throw ipv6_exception("r-shift too large");
}
static void add(ipv6addr& dest, const ipv6addr& src) {
const std::uint64_t dorigl = dest.u64[Endian::e2(0)];
dest.u64[Endian::e2(0)] += src.u64[Endian::e2(0)];
dest.u64[Endian::e2(1)] += src.u64[Endian::e2(1)];
// check for overflow of low 64 bits, add carry to high
if (dest.u64[Endian::e2(0)] < dorigl)
++dest.u64[Endian::e2(1)];
}
static void sub(ipv6addr& dest, const ipv6addr& src) {
const std::uint64_t dorigl = dest.u64[Endian::e2(0)];
dest.u64[Endian::e2(0)] -= src.u64[Endian::e2(0)];
dest.u64[Endian::e2(1)] -= src.u64[Endian::e2(1)]
+ (dorigl < dest.u64[Endian::e2(0)]);
}
union ipv6addr u;
unsigned int scope_id_;
};
OPENVPN_OSTREAM(Addr, to_string)
}
}
#endif // OPENVPN_ADDR_IPV6_H