mirror of
https://gitlab.torproject.org/tpo/core/tor.git
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366 lines
14 KiB
C
366 lines
14 KiB
C
/* Copyright (c) 2003-2004, Roger Dingledine
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* Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
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* Copyright (c) 2007-2016, The Tor Project, Inc. */
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/* See LICENSE for licensing information */
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/**
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* \file address.h
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* \brief Headers for address.h
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**/
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#ifndef TOR_ADDRESS_H
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#define TOR_ADDRESS_H
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//#include <sys/sockio.h>
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#include "orconfig.h"
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#include "torint.h"
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#include "compat.h"
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#include "container.h"
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#ifdef ADDRESS_PRIVATE
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#if defined(HAVE_SYS_IOCTL_H)
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#include <sys/ioctl.h>
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#endif
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#ifdef HAVE_GETIFADDRS
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#define HAVE_IFADDRS_TO_SMARTLIST
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#endif
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#ifdef _WIN32
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#define HAVE_IP_ADAPTER_TO_SMARTLIST
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#endif
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#if defined(SIOCGIFCONF) && defined(HAVE_IOCTL)
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#define HAVE_IFCONF_TO_SMARTLIST
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#endif
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#if defined(HAVE_NET_IF_H)
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#include <net/if.h> // for struct ifconf
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#endif
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#if defined(HAVE_IFADDRS_TO_SMARTLIST)
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#include <ifaddrs.h>
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#endif
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// TODO win32 specific includes
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#endif // ADDRESS_PRIVATE
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/** The number of bits from an address to consider while doing a masked
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* comparison. */
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typedef uint8_t maskbits_t;
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struct in_addr;
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/** Holds an IPv4 or IPv6 address. (Uses less memory than struct
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* sockaddr_storage.) */
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typedef struct tor_addr_t
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{
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sa_family_t family;
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union {
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uint32_t dummy_; /* This field is here so we have something to initialize
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* with a reliable cross-platform type. */
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struct in_addr in_addr;
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struct in6_addr in6_addr;
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} addr;
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} tor_addr_t;
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/** Holds an IP address and a TCP/UDP port. */
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typedef struct tor_addr_port_t
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{
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tor_addr_t addr;
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uint16_t port;
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} tor_addr_port_t;
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#define TOR_ADDR_NULL {AF_UNSPEC, {0}}
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static inline const struct in6_addr *tor_addr_to_in6(const tor_addr_t *a);
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static inline uint32_t tor_addr_to_ipv4n(const tor_addr_t *a);
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static inline uint32_t tor_addr_to_ipv4h(const tor_addr_t *a);
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static inline uint32_t tor_addr_to_mapped_ipv4h(const tor_addr_t *a);
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static inline sa_family_t tor_addr_family(const tor_addr_t *a);
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static inline const struct in_addr *tor_addr_to_in(const tor_addr_t *a);
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static inline int tor_addr_eq_ipv4h(const tor_addr_t *a, uint32_t u);
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socklen_t tor_addr_to_sockaddr(const tor_addr_t *a, uint16_t port,
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struct sockaddr *sa_out, socklen_t len);
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int tor_addr_from_sockaddr(tor_addr_t *a, const struct sockaddr *sa,
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uint16_t *port_out);
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void tor_addr_make_unspec(tor_addr_t *a);
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void tor_addr_make_null(tor_addr_t *a, sa_family_t family);
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char *tor_sockaddr_to_str(const struct sockaddr *sa);
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/** Return an in6_addr* equivalent to <b>a</b>, or NULL if <b>a</b> is not
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* an IPv6 address. */
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static inline const struct in6_addr *
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tor_addr_to_in6(const tor_addr_t *a)
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{
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return a->family == AF_INET6 ? &a->addr.in6_addr : NULL;
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}
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/** Given an IPv6 address <b>x</b>, yield it as an array of uint8_t.
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*
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* Requires that <b>x</b> is actually an IPv6 address.
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*/
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#define tor_addr_to_in6_addr8(x) tor_addr_to_in6(x)->s6_addr
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/** Given an IPv6 address <b>x</b>, yield it as an array of uint16_t.
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*
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* Requires that <b>x</b> is actually an IPv6 address.
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*/
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#define tor_addr_to_in6_addr16(x) S6_ADDR16(*tor_addr_to_in6(x))
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/** Given an IPv6 address <b>x</b>, yield it as an array of uint32_t.
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*
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* Requires that <b>x</b> is actually an IPv6 address.
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*/
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#define tor_addr_to_in6_addr32(x) S6_ADDR32(*tor_addr_to_in6(x))
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/** Return an IPv4 address in network order for <b>a</b>, or 0 if
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* <b>a</b> is not an IPv4 address. */
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static inline uint32_t
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tor_addr_to_ipv4n(const tor_addr_t *a)
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{
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return a->family == AF_INET ? a->addr.in_addr.s_addr : 0;
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}
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/** Return an IPv4 address in host order for <b>a</b>, or 0 if
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* <b>a</b> is not an IPv4 address. */
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static inline uint32_t
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tor_addr_to_ipv4h(const tor_addr_t *a)
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{
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return ntohl(tor_addr_to_ipv4n(a));
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}
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/** Given an IPv6 address, return its mapped IPv4 address in host order, or
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* 0 if <b>a</b> is not an IPv6 address.
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*
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* (Does not check whether the address is really a mapped address */
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static inline uint32_t
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tor_addr_to_mapped_ipv4h(const tor_addr_t *a)
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{
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if (a->family == AF_INET6) {
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uint32_t *addr32 = NULL;
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// Work around an incorrect NULL pointer dereference warning in
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// "clang --analyze" due to limited analysis depth
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addr32 = tor_addr_to_in6_addr32(a);
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// To improve performance, wrap this assertion in:
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// #if !defined(__clang_analyzer__) || PARANOIA
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tor_assert(addr32);
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return ntohl(addr32[3]);
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} else {
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return 0;
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}
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}
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/** Return the address family of <b>a</b>. Possible values are:
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* AF_INET6, AF_INET, AF_UNSPEC. */
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static inline sa_family_t
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tor_addr_family(const tor_addr_t *a)
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{
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return a->family;
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}
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/** Return an in_addr* equivalent to <b>a</b>, or NULL if <b>a</b> is not
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* an IPv4 address. */
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static inline const struct in_addr *
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tor_addr_to_in(const tor_addr_t *a)
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{
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return a->family == AF_INET ? &a->addr.in_addr : NULL;
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}
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/** Return true iff <b>a</b> is an IPv4 address equal to the host-ordered
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* address in <b>u</b>. */
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static inline int
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tor_addr_eq_ipv4h(const tor_addr_t *a, uint32_t u)
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{
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return a->family == AF_INET ? (tor_addr_to_ipv4h(a) == u) : 0;
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}
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/** Length of a buffer that you need to allocate to be sure you can encode
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* any tor_addr_t.
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*
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* This allows enough space for
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* "[ffff:ffff:ffff:ffff:ffff:ffff:255.255.255.255]",
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* plus a terminating NUL.
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*/
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#define TOR_ADDR_BUF_LEN 48
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int tor_addr_lookup(const char *name, uint16_t family, tor_addr_t *addr_out);
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char *tor_dup_addr(const tor_addr_t *addr) ATTR_MALLOC;
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/** Wrapper function of fmt_addr_impl(). It does not decorate IPv6
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* addresses. */
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#define fmt_addr(a) fmt_addr_impl((a), 0)
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/** Wrapper function of fmt_addr_impl(). It decorates IPv6
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* addresses. */
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#define fmt_and_decorate_addr(a) fmt_addr_impl((a), 1)
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const char *fmt_addr_impl(const tor_addr_t *addr, int decorate);
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const char *fmt_addrport(const tor_addr_t *addr, uint16_t port);
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const char * fmt_addr32(uint32_t addr);
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MOCK_DECL(int,get_interface_address6,(int severity, sa_family_t family,
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tor_addr_t *addr));
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void free_interface_address6_list(smartlist_t * addrs);
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MOCK_DECL(smartlist_t *,get_interface_address6_list,(int severity,
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sa_family_t family,
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int include_internal));
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/** Flag to specify how to do a comparison between addresses. In an "exact"
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* comparison, addresses are equivalent only if they are in the same family
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* with the same value. In a "semantic" comparison, IPv4 addresses match all
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* IPv6 encodings of those addresses. */
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typedef enum {
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CMP_EXACT,
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CMP_SEMANTIC,
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} tor_addr_comparison_t;
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int tor_addr_compare(const tor_addr_t *addr1, const tor_addr_t *addr2,
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tor_addr_comparison_t how);
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int tor_addr_compare_masked(const tor_addr_t *addr1, const tor_addr_t *addr2,
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maskbits_t mask, tor_addr_comparison_t how);
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/** Return true iff a and b are the same address. The comparison is done
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* "exactly". */
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#define tor_addr_eq(a,b) (0==tor_addr_compare((a),(b),CMP_EXACT))
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uint64_t tor_addr_hash(const tor_addr_t *addr);
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int tor_addr_is_v4(const tor_addr_t *addr);
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int tor_addr_is_internal_(const tor_addr_t *ip, int for_listening,
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const char *filename, int lineno);
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#define tor_addr_is_internal(addr, for_listening) \
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tor_addr_is_internal_((addr), (for_listening), SHORT_FILE__, __LINE__)
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int tor_addr_is_multicast(const tor_addr_t *a);
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/** Longest length that can be required for a reverse lookup name. */
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/* 32 nybbles, 32 dots, 8 characters of "ip6.arpa", 1 NUL: 73 characters. */
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#define REVERSE_LOOKUP_NAME_BUF_LEN 73
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int tor_addr_to_PTR_name(char *out, size_t outlen,
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const tor_addr_t *addr);
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int tor_addr_parse_PTR_name(tor_addr_t *result, const char *address,
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int family, int accept_regular);
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int tor_addr_port_lookup(const char *s, tor_addr_t *addr_out,
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uint16_t *port_out);
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/* Does the address * yield an AF_UNSPEC wildcard address (1),
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* which expands to corresponding wildcard IPv4 and IPv6 rules, and do we
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* allow *4 and *6 for IPv4 and IPv6 wildcards, respectively;
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* or does the address * yield IPv4 wildcard address (0). */
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#define TAPMP_EXTENDED_STAR 1
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/* Does the address * yield an IPv4 wildcard address rule (1);
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* or does it yield wildcard IPv4 and IPv6 rules (0) */
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#define TAPMP_STAR_IPV4_ONLY (1 << 1)
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/* Does the address * yield an IPv6 wildcard address rule (1);
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* or does it yield wildcard IPv4 and IPv6 rules (0) */
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#define TAPMP_STAR_IPV6_ONLY (1 << 2)
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/* TAPMP_STAR_IPV4_ONLY and TAPMP_STAR_IPV6_ONLY are mutually exclusive. */
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int tor_addr_parse_mask_ports(const char *s, unsigned flags,
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tor_addr_t *addr_out, maskbits_t *mask_out,
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uint16_t *port_min_out, uint16_t *port_max_out);
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const char * tor_addr_to_str(char *dest, const tor_addr_t *addr, size_t len,
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int decorate);
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int tor_addr_parse(tor_addr_t *addr, const char *src);
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void tor_addr_copy(tor_addr_t *dest, const tor_addr_t *src);
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void tor_addr_copy_tight(tor_addr_t *dest, const tor_addr_t *src);
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void tor_addr_from_ipv4n(tor_addr_t *dest, uint32_t v4addr);
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/** Set <b>dest</b> to the IPv4 address encoded in <b>v4addr</b> in host
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* order. */
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#define tor_addr_from_ipv4h(dest, v4addr) \
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tor_addr_from_ipv4n((dest), htonl(v4addr))
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void tor_addr_from_ipv6_bytes(tor_addr_t *dest, const char *bytes);
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/** Set <b>dest</b> to the IPv4 address incoded in <b>in</b>. */
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#define tor_addr_from_in(dest, in) \
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tor_addr_from_ipv4n((dest), (in)->s_addr);
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void tor_addr_from_in6(tor_addr_t *dest, const struct in6_addr *in6);
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int tor_addr_is_null(const tor_addr_t *addr);
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int tor_addr_is_loopback(const tor_addr_t *addr);
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int tor_addr_is_valid(const tor_addr_t *addr, int for_listening);
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int tor_addr_is_valid_ipv4n(uint32_t v4n_addr, int for_listening);
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#define tor_addr_is_valid_ipv4h(v4h_addr, for_listening) \
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tor_addr_is_valid_ipv4n(htonl(v4h_addr), (for_listening))
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int tor_port_is_valid(uint16_t port, int for_listening);
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/* Are addr and port both valid? */
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#define tor_addr_port_is_valid(addr, port, for_listening) \
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(tor_addr_is_valid((addr), (for_listening)) && \
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tor_port_is_valid((port), (for_listening)))
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/* Are ap->addr and ap->port both valid? */
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#define tor_addr_port_is_valid_ap(ap, for_listening) \
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tor_addr_port_is_valid(&(ap)->addr, (ap)->port, (for_listening))
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/* Are the network-order v4addr and port both valid? */
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#define tor_addr_port_is_valid_ipv4n(v4n_addr, port, for_listening) \
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(tor_addr_is_valid_ipv4n((v4n_addr), (for_listening)) && \
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tor_port_is_valid((port), (for_listening)))
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/* Are the host-order v4addr and port both valid? */
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#define tor_addr_port_is_valid_ipv4h(v4h_addr, port, for_listening) \
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(tor_addr_is_valid_ipv4h((v4h_addr), (for_listening)) && \
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tor_port_is_valid((port), (for_listening)))
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int tor_addr_port_split(int severity, const char *addrport,
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char **address_out, uint16_t *port_out);
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int tor_addr_port_parse(int severity, const char *addrport,
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tor_addr_t *address_out, uint16_t *port_out,
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int default_port);
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int tor_addr_hostname_is_local(const char *name);
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/* IPv4 helpers */
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int addr_port_lookup(int severity, const char *addrport, char **address,
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uint32_t *addr, uint16_t *port_out);
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int parse_port_range(const char *port, uint16_t *port_min_out,
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uint16_t *port_max_out);
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int addr_mask_get_bits(uint32_t mask);
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/** Length of a buffer to allocate to hold the results of tor_inet_ntoa.*/
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#define INET_NTOA_BUF_LEN 16
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int tor_inet_ntoa(const struct in_addr *in, char *buf, size_t buf_len);
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char *tor_dup_ip(uint32_t addr) ATTR_MALLOC;
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MOCK_DECL(int,get_interface_address,(int severity, uint32_t *addr));
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/** Free a smartlist of IP addresses returned by get_interface_address_list.
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*/
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static inline void
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free_interface_address_list(smartlist_t *addrs)
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{
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free_interface_address6_list(addrs);
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}
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/** Return a smartlist of the IPv4 addresses of all interfaces on the server.
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* Excludes loopback and multicast addresses. Only includes internal addresses
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* if include_internal is true. (Note that a relay behind NAT may use an
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* internal address to connect to the Internet.)
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* An empty smartlist means that there are no IPv4 addresses.
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* Returns NULL on failure.
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* Use free_interface_address_list to free the returned list.
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*/
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static inline smartlist_t *
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get_interface_address_list(int severity, int include_internal)
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{
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return get_interface_address6_list(severity, AF_INET, include_internal);
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}
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tor_addr_port_t *tor_addr_port_new(const tor_addr_t *addr, uint16_t port);
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#ifdef ADDRESS_PRIVATE
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MOCK_DECL(smartlist_t *,get_interface_addresses_raw,(int severity,
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sa_family_t family));
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MOCK_DECL(int,get_interface_address6_via_udp_socket_hack,(int severity,
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sa_family_t family,
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tor_addr_t *addr));
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#ifdef HAVE_IFADDRS_TO_SMARTLIST
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STATIC smartlist_t *ifaddrs_to_smartlist(const struct ifaddrs *ifa,
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sa_family_t family);
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STATIC smartlist_t *get_interface_addresses_ifaddrs(int severity,
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sa_family_t family);
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#endif
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#ifdef HAVE_IP_ADAPTER_TO_SMARTLIST
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STATIC smartlist_t *ip_adapter_addresses_to_smartlist(
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const IP_ADAPTER_ADDRESSES *addresses);
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STATIC smartlist_t *get_interface_addresses_win32(int severity,
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sa_family_t family);
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#endif
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#ifdef HAVE_IFCONF_TO_SMARTLIST
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STATIC smartlist_t *ifreq_to_smartlist(char *ifr,
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size_t buflen);
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STATIC smartlist_t *get_interface_addresses_ioctl(int severity,
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sa_family_t family);
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#endif
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#endif // ADDRESS_PRIVATE
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#endif
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