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bind/lib/samples/resolve.c

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/*
* Copyright (C) Internet Systems Consortium, Inc. ("ISC")
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/.
*
* See the COPYRIGHT file distributed with this work for additional
* information regarding copyright ownership.
*/
#ifndef WIN32
#include <arpa/inet.h>
#include <netdb.h>
#include <netinet/in.h>
#include <sys/socket.h>
#include <sys/types.h>
#include <unistd.h>
#endif /* ifndef WIN32 */
#include <stdbool.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <isc/app.h>
Complete rewrite the BIND 9 build system The rewrite of BIND 9 build system is a large work and cannot be reasonable split into separate merge requests. Addition of the automake has a positive effect on the readability and maintainability of the build system as it is more declarative, it allows conditional and we are able to drop all of the custom make code that BIND 9 developed over the years to overcome the deficiencies of autoconf + custom Makefile.in files. This squashed commit contains following changes: - conversion (or rather fresh rewrite) of all Makefile.in files to Makefile.am by using automake - the libtool is now properly integrated with automake (the way we used it was rather hackish as the only official way how to use libtool is via automake - the dynamic module loading was rewritten from a custom patchwork to libtool's libltdl (which includes the patchwork to support module loading on different systems internally) - conversion of the unit test executor from kyua to automake parallel driver - conversion of the system test executor from custom make/shell to automake parallel driver - The GSSAPI has been refactored, the custom SPNEGO on the basis that all major KRB5/GSSAPI (mit-krb5, heimdal and Windows) implementations support SPNEGO mechanism. - The various defunct tests from bin/tests have been removed: bin/tests/optional and bin/tests/pkcs11 - The text files generated from the MD files have been removed, the MarkDown has been designed to be readable by both humans and computers - The xsl header is now generated by a simple sed command instead of perl helper - The <irs/platform.h> header has been removed - cleanups of configure.ac script to make it more simpler, addition of multiple macros (there's still work to be done though) - the tarball can now be prepared with `make dist` - the system tests are partially able to run in oot build Here's a list of unfinished work that needs to be completed in subsequent merge requests: - `make distcheck` doesn't yet work (because of system tests oot run is not yet finished) - documentation is not yet built, there's a different merge request with docbook to sphinx-build rst conversion that needs to be rebased and adapted on top of the automake - msvc build is non functional yet and we need to decide whether we will just cross-compile bind9 using mingw-w64 or fix the msvc build - contributed dlz modules are not included neither in the autoconf nor automake
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#include <isc/attributes.h>
#include <isc/base64.h>
#include <isc/buffer.h>
#include <isc/commandline.h>
#include <isc/lib.h>
#include <isc/mem.h>
#include <isc/print.h>
#include <isc/sockaddr.h>
#include <isc/socket.h>
#include <isc/task.h>
#include <isc/timer.h>
#include <isc/util.h>
#include <dns/client.h>
#include <dns/fixedname.h>
#include <dns/keyvalues.h>
#include <dns/lib.h>
#include <dns/name.h>
#include <dns/rdata.h>
#include <dns/rdataset.h>
#include <dns/rdatastruct.h>
#include <dns/rdatatype.h>
#include <dns/result.h>
#include <dns/secalg.h>
#include <dst/dst.h>
#include <irs/resconf.h>
static char *algname;
static isc_result_t
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printdata(dns_rdataset_t *rdataset, dns_name_t *owner) {
isc_buffer_t target;
isc_result_t result;
isc_region_t r;
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char t[4096];
if (!dns_rdataset_isassociated(rdataset)) {
printf("[WARN: empty]\n");
return (ISC_R_SUCCESS);
}
isc_buffer_init(&target, t, sizeof(t));
result = dns_rdataset_totext(rdataset, owner, false, false, &target);
if (result != ISC_R_SUCCESS) {
return (result);
}
isc_buffer_usedregion(&target, &r);
printf("%.*s", (int)r.length, (char *)r.base);
return (ISC_R_SUCCESS);
}
Complete rewrite the BIND 9 build system The rewrite of BIND 9 build system is a large work and cannot be reasonable split into separate merge requests. Addition of the automake has a positive effect on the readability and maintainability of the build system as it is more declarative, it allows conditional and we are able to drop all of the custom make code that BIND 9 developed over the years to overcome the deficiencies of autoconf + custom Makefile.in files. This squashed commit contains following changes: - conversion (or rather fresh rewrite) of all Makefile.in files to Makefile.am by using automake - the libtool is now properly integrated with automake (the way we used it was rather hackish as the only official way how to use libtool is via automake - the dynamic module loading was rewritten from a custom patchwork to libtool's libltdl (which includes the patchwork to support module loading on different systems internally) - conversion of the unit test executor from kyua to automake parallel driver - conversion of the system test executor from custom make/shell to automake parallel driver - The GSSAPI has been refactored, the custom SPNEGO on the basis that all major KRB5/GSSAPI (mit-krb5, heimdal and Windows) implementations support SPNEGO mechanism. - The various defunct tests from bin/tests have been removed: bin/tests/optional and bin/tests/pkcs11 - The text files generated from the MD files have been removed, the MarkDown has been designed to be readable by both humans and computers - The xsl header is now generated by a simple sed command instead of perl helper - The <irs/platform.h> header has been removed - cleanups of configure.ac script to make it more simpler, addition of multiple macros (there's still work to be done though) - the tarball can now be prepared with `make dist` - the system tests are partially able to run in oot build Here's a list of unfinished work that needs to be completed in subsequent merge requests: - `make distcheck` doesn't yet work (because of system tests oot run is not yet finished) - documentation is not yet built, there's a different merge request with docbook to sphinx-build rst conversion that needs to be rebased and adapted on top of the automake - msvc build is non functional yet and we need to decide whether we will just cross-compile bind9 using mingw-w64 or fix the msvc build - contributed dlz modules are not included neither in the autoconf nor automake
2018-08-07 16:46:53 +02:00
ISC_NORETURN static void
usage(void);
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static void
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usage(void) {
fprintf(stderr, "resolve [-t RRtype] "
"[[-a algorithm] [-e] -k keyname -K keystring] "
"[-S domain:serveraddr_for_domain ] [-s server_address]"
"[-b address[#port]] hostname\n");
exit(1);
}
static void
set_key(dns_client_t *client, char *keynamestr, char *keystr, bool is_sep,
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isc_mem_t **mctxp) {
isc_result_t result;
dns_fixedname_t fkeyname;
unsigned int namelen;
dns_name_t *keyname;
dns_rdata_dnskey_t keystruct;
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unsigned char keydata[4096];
isc_buffer_t keydatabuf;
unsigned char rrdata[4096];
isc_buffer_t rrdatabuf;
isc_buffer_t b;
isc_textregion_t tr;
isc_region_t r;
dns_secalg_t alg;
isc_mem_create(mctxp);
if (algname != NULL) {
tr.base = algname;
tr.length = strlen(algname);
result = dns_secalg_fromtext(&alg, &tr);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "failed to identify the algorithm\n");
exit(1);
}
} else {
alg = DNS_KEYALG_RSASHA1;
}
keystruct.common.rdclass = dns_rdataclass_in;
keystruct.common.rdtype = dns_rdatatype_dnskey;
keystruct.flags = DNS_KEYOWNER_ZONE; /* fixed */
if (is_sep) {
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keystruct.flags |= DNS_KEYFLAG_KSK;
}
keystruct.protocol = DNS_KEYPROTO_DNSSEC; /* fixed */
keystruct.algorithm = alg;
isc_buffer_init(&keydatabuf, keydata, sizeof(keydata));
isc_buffer_init(&rrdatabuf, rrdata, sizeof(rrdata));
result = isc_base64_decodestring(keystr, &keydatabuf);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "base64 decode failed\n");
exit(1);
}
isc_buffer_usedregion(&keydatabuf, &r);
keystruct.datalen = r.length;
keystruct.data = r.base;
result = dns_rdata_fromstruct(NULL, keystruct.common.rdclass,
keystruct.common.rdtype, &keystruct,
&rrdatabuf);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "failed to construct key rdata\n");
exit(1);
}
namelen = strlen(keynamestr);
isc_buffer_init(&b, keynamestr, namelen);
isc_buffer_add(&b, namelen);
keyname = dns_fixedname_initname(&fkeyname);
result = dns_name_fromtext(keyname, &b, dns_rootname, 0, NULL);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "failed to construct key name\n");
exit(1);
}
result = dns_client_addtrustedkey(client, dns_rdataclass_in,
dns_rdatatype_dnskey, keyname,
&rrdatabuf);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "failed to add key for %s\n", keynamestr);
exit(1);
}
}
static void
addserver(dns_client_t *client, const char *addrstr, const char *port,
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const char *name_space) {
struct addrinfo hints, *res;
int gaierror;
isc_sockaddr_t sa;
isc_sockaddrlist_t servers;
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isc_result_t result;
unsigned int namelen;
isc_buffer_t b;
dns_fixedname_t fname;
dns_name_t *name = NULL;
memset(&hints, 0, sizeof(hints));
hints.ai_family = AF_UNSPEC;
hints.ai_socktype = SOCK_DGRAM;
hints.ai_protocol = IPPROTO_UDP;
hints.ai_flags = AI_NUMERICHOST;
gaierror = getaddrinfo(addrstr, port, &hints, &res);
if (gaierror != 0) {
fprintf(stderr, "getaddrinfo failed: %s\n",
gai_strerror(gaierror));
exit(1);
}
INSIST(res->ai_addrlen <= sizeof(sa.type));
memmove(&sa.type, res->ai_addr, res->ai_addrlen);
sa.length = (unsigned int)res->ai_addrlen;
freeaddrinfo(res);
ISC_LINK_INIT(&sa, link);
ISC_LIST_INIT(servers);
ISC_LIST_APPEND(servers, &sa, link);
if (name_space != NULL) {
namelen = strlen(name_space);
isc_buffer_constinit(&b, name_space, namelen);
isc_buffer_add(&b, namelen);
name = dns_fixedname_initname(&fname);
result = dns_name_fromtext(name, &b, dns_rootname, 0, NULL);
if (result != ISC_R_SUCCESS) {
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fprintf(stderr, "failed to convert qname: %u\n",
result);
exit(1);
}
}
result = dns_client_setservers(client, dns_rdataclass_in, name,
&servers);
if (result != ISC_R_SUCCESS) {
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fprintf(stderr, "set server failed: %u\n", result);
exit(1);
}
}
int
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main(int argc, char *argv[]) {
int ch;
isc_textregion_t tr;
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char *server = NULL;
char *altserver = NULL;
char *altserveraddr = NULL;
char *altservername = NULL;
dns_client_t *client = NULL;
char *keynamestr = NULL;
char *keystr = NULL;
isc_result_t result;
isc_buffer_t b;
dns_fixedname_t qname0;
unsigned int namelen;
dns_name_t *qname, *name;
dns_rdatatype_t type = dns_rdatatype_a;
dns_rdataset_t *rdataset;
dns_namelist_t namelist;
isc_mem_t *keymctx = NULL;
unsigned int clientopt, resopt;
bool is_sep = false;
const char *port = "53";
isc_mem_t *mctx = NULL;
isc_appctx_t *actx = NULL;
isc_taskmgr_t *taskmgr = NULL;
isc_socketmgr_t *socketmgr = NULL;
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isc_timermgr_t *timermgr = NULL;
struct in_addr in4;
struct in6_addr in6;
isc_sockaddr_t a4, a6;
isc_sockaddr_t *addr4 = NULL, *addr6 = NULL;
while ((ch = isc_commandline_parse(argc, argv, "a:b:es:t:k:K:p:S:")) !=
-1) {
switch (ch) {
case 't':
tr.base = isc_commandline_argument;
tr.length = strlen(isc_commandline_argument);
result = dns_rdatatype_fromtext(&type, &tr);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "invalid RRtype: %s\n",
isc_commandline_argument);
exit(1);
}
break;
case 'a':
algname = isc_commandline_argument;
break;
case 'b':
if (inet_pton(AF_INET, isc_commandline_argument,
&in4) == 1) {
if (addr4 != NULL) {
fprintf(stderr, "only one local "
"address per family "
"can be specified\n");
exit(1);
}
isc_sockaddr_fromin(&a4, &in4, 0);
addr4 = &a4;
} else if (inet_pton(AF_INET6, isc_commandline_argument,
&in6) == 1) {
if (addr6 != NULL) {
fprintf(stderr, "only one local "
"address per family "
"can be specified\n");
exit(1);
}
isc_sockaddr_fromin6(&a6, &in6, 0);
addr6 = &a6;
} else {
fprintf(stderr, "invalid address %s\n",
isc_commandline_argument);
exit(1);
}
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break;
case 'e':
is_sep = true;
break;
case 'S':
if (altserver != NULL) {
fprintf(stderr,
"alternate server "
"already defined: %s\n",
altserver);
exit(1);
}
altserver = isc_commandline_argument;
break;
case 's':
if (server != NULL) {
fprintf(stderr,
"server "
"already defined: %s\n",
server);
exit(1);
}
server = isc_commandline_argument;
break;
case 'k':
keynamestr = isc_commandline_argument;
break;
case 'K':
keystr = isc_commandline_argument;
break;
case 'p':
port = isc_commandline_argument;
break;
default:
usage();
}
}
argc -= isc_commandline_index;
argv += isc_commandline_index;
if (argc < 1) {
usage();
}
if (altserver != NULL) {
char *cp;
cp = strchr(altserver, ':');
if (cp == NULL) {
fprintf(stderr, "invalid alternate server: %s\n",
altserver);
exit(1);
}
*cp = '\0';
altservername = altserver;
altserveraddr = cp + 1;
}
isc_lib_register();
result = dns_lib_init();
if (result != ISC_R_SUCCESS) {
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fprintf(stderr, "dns_lib_init failed: %u\n", result);
exit(1);
}
isc_mem_create(&mctx);
result = isc_appctx_create(mctx, &actx);
if (result != ISC_R_SUCCESS) {
goto cleanup;
}
result = isc_app_ctxstart(actx);
if (result != ISC_R_SUCCESS) {
goto cleanup;
}
result = isc_taskmgr_createinctx(mctx, 1, 0, &taskmgr);
if (result != ISC_R_SUCCESS) {
goto cleanup;
}
result = isc_socketmgr_createinctx(mctx, &socketmgr);
if (result != ISC_R_SUCCESS) {
goto cleanup;
}
result = isc_timermgr_createinctx(mctx, &timermgr);
if (result != ISC_R_SUCCESS) {
goto cleanup;
}
clientopt = 0;
result = dns_client_createx(mctx, actx, taskmgr, socketmgr, timermgr,
clientopt, &client, addr4, addr6);
if (result != ISC_R_SUCCESS) {
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fprintf(stderr, "dns_client_create failed: %u, %s\n", result,
isc_result_totext(result));
exit(1);
}
/* Set the nameserver */
if (server == NULL) {
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irs_resconf_t *resconf = NULL;
isc_sockaddrlist_t *nameservers;
result = irs_resconf_load(mctx, "/etc/resolv.conf", &resconf);
if (result != ISC_R_SUCCESS && result != ISC_R_FILENOTFOUND) {
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fprintf(stderr, "irs_resconf_load failed: %u\n",
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result);
exit(1);
}
nameservers = irs_resconf_getnameservers(resconf);
result = dns_client_setservers(client, dns_rdataclass_in, NULL,
nameservers);
if (result != ISC_R_SUCCESS) {
irs_resconf_destroy(&resconf);
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fprintf(stderr, "dns_client_setservers failed: %u\n",
result);
exit(1);
}
irs_resconf_destroy(&resconf);
} else {
addserver(client, server, port, NULL);
}
/* Set the alternate nameserver (when specified) */
if (altserver != NULL) {
addserver(client, altserveraddr, port, altservername);
}
/* Install DNSSEC key (if given) */
if (keynamestr != NULL) {
if (keystr == NULL) {
fprintf(stderr, "key string is missing "
"while key name is provided\n");
exit(1);
}
set_key(client, keynamestr, keystr, is_sep, &keymctx);
}
/* Construct qname */
namelen = strlen(argv[0]);
isc_buffer_init(&b, argv[0], namelen);
isc_buffer_add(&b, namelen);
qname = dns_fixedname_initname(&qname0);
result = dns_name_fromtext(qname, &b, dns_rootname, 0, NULL);
if (result != ISC_R_SUCCESS) {
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fprintf(stderr, "failed to convert qname: %u\n", result);
}
/* Perform resolution */
resopt = DNS_CLIENTRESOPT_ALLOWRUN;
if (keynamestr == NULL) {
resopt |= DNS_CLIENTRESOPT_NODNSSEC;
}
ISC_LIST_INIT(namelist);
result = dns_client_resolve(client, qname, dns_rdataclass_in, type,
resopt, &namelist);
if (result != ISC_R_SUCCESS) {
fprintf(stderr, "resolution failed: %s\n",
dns_result_totext(result));
}
for (name = ISC_LIST_HEAD(namelist); name != NULL;
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name = ISC_LIST_NEXT(name, link))
{
for (rdataset = ISC_LIST_HEAD(name->list); rdataset != NULL;
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rdataset = ISC_LIST_NEXT(rdataset, link))
{
if (printdata(rdataset, name) != ISC_R_SUCCESS) {
fprintf(stderr, "print data failed\n");
}
}
}
dns_client_freeresanswer(client, &namelist);
/* Cleanup */
cleanup:
dns_client_destroy(&client);
if (taskmgr != NULL) {
isc_taskmgr_destroy(&taskmgr);
}
if (timermgr != NULL) {
isc_timermgr_destroy(&timermgr);
}
if (socketmgr != NULL) {
isc_socketmgr_destroy(&socketmgr);
}
if (actx != NULL) {
isc_appctx_destroy(&actx);
}
isc_mem_detach(&mctx);
if (keynamestr != NULL) {
isc_mem_destroy(&keymctx);
}
dns_lib_shutdown();
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return (0);
}