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Resolveall feature. Fixes #949
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@@ -1,5 +1,10 @@
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# Nmap Changelog ($Id$); -*-text-*-
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o Nmap can now resolve and scan all IP addresses of a host. Instead of using
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the resolveall NSE script, append "*all" to a target hostname:
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nmap example.com*all another.example.com*all/24
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[Daniel Miller]
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o [GH#957] Fix reporting of zlib and libssh2 versions in "nmap --version". We
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were always reporting the version number of the included source, even when a
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different version was linked. [Pavel Zhukov]
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@@ -163,6 +163,9 @@ public:
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std::string hostname;
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std::list<struct sockaddr_storage> resolvedaddrs;
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std::list<struct sockaddr_storage> unscanned_addrs;
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std::list<struct sockaddr_storage>::const_iterator current_addr;
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/* Scan all resolved addresses? */
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bool resolveall;
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/* Parses an expression such as 192.168.0.0/16, 10.1.0-5.1-254, or
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fe80::202:e3ff:fe14:1102/112 and returns a newly allocated NetBlock. The af
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@@ -214,7 +217,7 @@ private:
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class NetBlockHostname : public NetBlock {
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public:
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NetBlockHostname(const char *hostname, int af);
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NetBlockHostname(const char *hostname, int af, bool resolveall);
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int af;
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int bits;
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@@ -319,9 +322,32 @@ static int parse_ipv4_ranges(octet_bitvector octets[4], const char *spec) {
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return 0;
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}
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static char *split_resolveall(const char *expr, bool *resolveall) {
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const char *star;
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star = strrchr(expr, '*');
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if (star != NULL) {
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if (strcmp(star + 1, "all") == 0) {
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*resolveall = true;
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}
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else {
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// Invalid syntax
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return NULL;
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}
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}
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else {
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star = expr + strlen(expr);
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*resolveall = false;
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}
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return mkstr(expr, star);
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}
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static NetBlock *parse_expr_without_netmask(const char *hostexp, int af) {
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struct sockaddr_storage ss;
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size_t sslen;
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char *hostn;
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bool resolveall = false;
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if (af == AF_INET) {
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NetBlockIPv4Ranges *netblock_ranges;
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@@ -346,7 +372,15 @@ static NetBlock *parse_expr_without_netmask(const char *hostexp, int af) {
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return netblock_ipv6;
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}
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return new NetBlockHostname(hostexp, af);
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hostn = split_resolveall(hostexp, &resolveall);
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if (hostn == NULL) {
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error("Invalid '*' in target expression: \"%s\"", hostexp);
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return NULL;
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}
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NetBlockHostname *netblock_hostname = new NetBlockHostname(hostn, af, resolveall);
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free(hostn);
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return netblock_hostname;
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}
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/* Parses an expression such as 192.168.0.0/16, 10.1.0-5.1-254, or
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@@ -439,12 +473,17 @@ bool NetBlockIPv4Ranges::next(struct sockaddr_storage *ss, size_t *sslen) {
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break;
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}
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if (i >= 4) {
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if (this->resolveall && current_addr != this->resolvedaddrs.end() && ++current_addr != this->resolvedaddrs.end()) {
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this->set_addr((struct sockaddr_in *) &*current_addr);
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}
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else {
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/* We cycled all counters. Mark them invalid for the next call. */
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this->counter[0] = 256;
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this->counter[1] = 256;
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this->counter[2] = 256;
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this->counter[3] = 256;
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}
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}
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return true;
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}
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@@ -552,6 +591,7 @@ void NetBlockIPv4Ranges::set_addr(const struct sockaddr_in *addr) {
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assert(addr->sin_family == AF_INET);
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ip = ntohl(addr->sin_addr.s_addr);
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memset(this->octets, 0, sizeof(this->octets));
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BIT_SET(this->octets[0], (ip & 0xFF000000) >> 24);
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BIT_SET(this->octets[1], (ip & 0x00FF0000) >> 16);
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BIT_SET(this->octets[2], (ip & 0x0000FF00) >> 8);
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@@ -593,8 +633,14 @@ static bool ipv6_equal(const struct in6_addr *a, const struct in6_addr *b) {
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bool NetBlockIPv6Netmask::next(struct sockaddr_storage *ss, size_t *sslen) {
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struct sockaddr_in6 *sin6;
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if (this->exhausted)
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if (this->exhausted){
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if (this->resolveall && current_addr != this->resolvedaddrs.end() && ++current_addr != this->resolvedaddrs.end()) {
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this->set_addr((struct sockaddr_in6 *) &*current_addr);
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}
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else {
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return false;
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}
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}
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memset(ss, 0, sizeof(*ss));
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sin6 = (struct sockaddr_in6 *) ss;
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@@ -717,7 +763,6 @@ NetBlock *NetBlockHostname::resolve() {
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std::list<struct sockaddr_storage> resolvedaddrs;
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std::list<struct sockaddr_storage> unscanned_addrs;
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NetBlock *netblock;
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const struct sockaddr_storage *sp = NULL;
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struct sockaddr_storage ss;
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size_t sslen;
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@@ -725,9 +770,8 @@ NetBlock *NetBlockHostname::resolve() {
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for (addr = addrs; addr != NULL; addr = addr->ai_next) {
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if (addr->ai_addrlen < sizeof(ss)) {
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memcpy(&ss, addr->ai_addr, addr->ai_addrlen);
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if (sp == NULL && addr->ai_family == this->af) {
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if ((resolveall || resolvedaddrs.empty()) && addr->ai_family == this->af) {
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resolvedaddrs.push_back(ss);
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sp = &resolvedaddrs.back();
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}
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else {
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unscanned_addrs.push_back(ss);
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@@ -737,10 +781,10 @@ NetBlock *NetBlockHostname::resolve() {
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if (addrs != NULL)
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freeaddrinfo(addrs);
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if (resolvedaddrs.empty() && unscanned_addrs.empty())
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if (resolvedaddrs.empty()) {
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if (unscanned_addrs.empty())
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return NULL;
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if (sp == NULL) {
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switch (this->af) {
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case AF_INET:
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error("Warning: Hostname %s resolves, but not to any IPv4 address. Try scanning with -6", this->hostname.c_str());
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@@ -754,10 +798,10 @@ NetBlock *NetBlockHostname::resolve() {
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}
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return NULL;
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}
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ss = *sp;
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ss = resolvedaddrs.front();
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sslen = sizeof(ss);
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if (!unscanned_addrs.empty() > 1 && o.verbose > 1) {
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if (!unscanned_addrs.empty() && o.verbose > 1) {
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error("Warning: Hostname %s resolves to %lu IPs. Using %s.", this->hostname.c_str(),
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(unsigned long) unscanned_addrs.size() + resolvedaddrs.size(), inet_ntop_ez(&ss, sslen));
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}
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@@ -783,15 +827,18 @@ NetBlock *NetBlockHostname::resolve() {
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netblock->hostname = this->hostname;
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netblock->resolvedaddrs = resolvedaddrs;
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netblock->unscanned_addrs = unscanned_addrs;
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netblock->resolveall = this->resolveall;
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netblock->current_addr = netblock->resolvedaddrs.begin();
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netblock->apply_netmask(this->bits);
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return netblock;
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}
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NetBlockHostname::NetBlockHostname(const char *hostname, int af) {
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NetBlockHostname::NetBlockHostname(const char *hostname, int af, bool resolveall) {
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this->hostname = hostname;
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this->af = af;
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this->bits = -1;
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this->resolveall = resolveall;
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}
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bool NetBlockHostname::next(struct sockaddr_storage *ss, size_t *sslen) {
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