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bind/lib/dns/tests/dispatch_test.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.
*/
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#if HAVE_CMOCKA
#include <stdarg.h>
#include <stddef.h>
#include <setjmp.h>
#include <inttypes.h>
Include <sched.h> where necessary for musl libc All unit tests define the UNIT_TESTING macro, which causes <cmocka.h> to replace malloc(), calloc(), realloc(), and free() with its own functions tracking memory allocations. In order for this not to break compilation, the system header declaring the prototypes for these standard functions must be included before <cmocka.h>. Normally, these prototypes are only present in <stdlib.h>, so we make sure it is included before <cmocka.h>. However, musl libc also defines the prototypes for calloc() and free() in <sched.h>, which is included by <pthread.h>, which is included e.g. by <isc/mutex.h>. Thus, unit tests including "dnstest.h" (which includes <isc/mem.h>, which includes <isc/mutex.h>) after <cmocka.h> will not compile with musl libc as for these programs, <sched.h> will be included after <cmocka.h>. Always including <cmocka.h> after all other header files is not a feasible solution as that causes the mock assertion macros defined in <isc/util.h> to mangle the contents of <cmocka.h>, thus breaking compilation. We cannot really use the __noreturn__ or analyzer_noreturn attributes with cmocka assertion functions because they do return if the tested condition is true. The problem is that what BIND unit tests do is incompatible with Clang Static Analyzer's assumptions: since we use cmocka, our custom assertion handlers are present in a shared library (i.e. it is the cmocka library that checks the assertion condition, not a macro in unit test code). Redefining cmocka's assertion macros in <isc/util.h> is an ugly hack to overcome that problem - unfortunately, this is the only way we can think of to make Clang Static Analyzer properly process unit test code. Giving up on Clang Static Analyzer being able to properly process unit test code is not a satisfactory solution. Undefining _GNU_SOURCE for unit test code could work around the problem (musl libc's <sched.h> only defines the prototypes for calloc() and free() when _GNU_SOURCE is defined), but doing that could introduce discrepancies for unit tests including entire *.c files, so it is also not a good solution. All in all, including <sched.h> before <cmocka.h> for all affected unit tests seems to be the most benign way of working around this musl libc quirk. While quite an ugly solution, it achieves our goals here, which are to keep the benefit of proper static analysis of unit test code and to fix compilation against musl libc.
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#include <sched.h> /* IWYU pragma: keep */
#include <stdbool.h>
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#include <stdlib.h>
#include <string.h>
#include <unistd.h>
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#define UNIT_TESTING
#include <cmocka.h>
#include <isc/app.h>
#include <isc/buffer.h>
#include <isc/refcount.h>
#include <isc/socket.h>
#include <isc/task.h>
#include <isc/timer.h>
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#include <isc/util.h>
#include <dns/dispatch.h>
#include <dns/name.h>
#include <dns/view.h>
#include "dnstest.h"
dns_dispatchmgr_t *dispatchmgr = NULL;
dns_dispatchset_t *dset = NULL;
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static int
_setup(void **state) {
isc_result_t result;
UNUSED(state);
result = dns_test_begin(NULL, true);
assert_int_equal(result, ISC_R_SUCCESS);
return (0);
}
static int
_teardown(void **state) {
UNUSED(state);
dns_test_end();
return (0);
}
static isc_result_t
make_dispatchset(unsigned int ndisps) {
isc_result_t result;
isc_sockaddr_t any;
unsigned int attrs;
dns_dispatch_t *disp = NULL;
result = dns_dispatchmgr_create(dt_mctx, &dispatchmgr);
if (result != ISC_R_SUCCESS)
return (result);
isc_sockaddr_any(&any);
attrs = DNS_DISPATCHATTR_IPV4 | DNS_DISPATCHATTR_UDP;
result = dns_dispatch_getudp(dispatchmgr, socketmgr, taskmgr,
&any, 512, 6, 1024, 17, 19, attrs,
attrs, &disp);
if (result != ISC_R_SUCCESS)
return (result);
result = dns_dispatchset_create(dt_mctx, socketmgr, taskmgr, disp,
&dset, ndisps);
dns_dispatch_detach(&disp);
return (result);
}
static void
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reset(void) {
if (dset != NULL) {
dns_dispatchset_destroy(&dset);
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}
if (dispatchmgr != NULL) {
dns_dispatchmgr_destroy(&dispatchmgr);
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}
}
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/* create dispatch set */
static void
dispatchset_create(void **state) {
isc_result_t result;
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UNUSED(state);
result = make_dispatchset(1);
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assert_int_equal(result, ISC_R_SUCCESS);
reset();
result = make_dispatchset(10);
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assert_int_equal(result, ISC_R_SUCCESS);
reset();
}
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/* test dispatch set round-robin */
static void
dispatchset_get(void **state) {
isc_result_t result;
dns_dispatch_t *d1, *d2, *d3, *d4, *d5;
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UNUSED(state);
result = make_dispatchset(1);
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assert_int_equal(result, ISC_R_SUCCESS);
d1 = dns_dispatchset_get(dset);
d2 = dns_dispatchset_get(dset);
d3 = dns_dispatchset_get(dset);
d4 = dns_dispatchset_get(dset);
d5 = dns_dispatchset_get(dset);
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assert_int_equal(d1, d2);
assert_int_equal(d2, d3);
assert_int_equal(d3, d4);
assert_int_equal(d4, d5);
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reset();
result = make_dispatchset(4);
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assert_int_equal(result, ISC_R_SUCCESS);
d1 = dns_dispatchset_get(dset);
d2 = dns_dispatchset_get(dset);
d3 = dns_dispatchset_get(dset);
d4 = dns_dispatchset_get(dset);
d5 = dns_dispatchset_get(dset);
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assert_int_equal(d1, d5);
assert_true(d1 != d2);
assert_true(d2 != d3);
assert_true(d3 != d4);
assert_true(d4 != d5);
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reset();
}
static void
senddone(isc_task_t *task, isc_event_t *event) {
isc_socket_t *sock = event->ev_arg;
UNUSED(task);
isc_socket_detach(&sock);
isc_event_free(&event);
}
static void
nameserver(isc_task_t *task, isc_event_t *event) {
isc_result_t result;
isc_region_t region;
isc_socket_t *dummy;
isc_socket_t *sock = event->ev_arg;
isc_socketevent_t *ev = (isc_socketevent_t *)event;
static unsigned char buf1[16];
static unsigned char buf2[16];
memmove(buf1, ev->region.base, 12);
memset(buf1 + 12, 0, 4);
buf1[2] |= 0x80; /* qr=1 */
memmove(buf2, ev->region.base, 12);
memset(buf2 + 12, 1, 4);
buf2[2] |= 0x80; /* qr=1 */
/*
* send message to be discarded.
*/
region.base = buf1;
region.length = sizeof(buf1);
dummy = NULL;
isc_socket_attach(sock, &dummy);
result = isc_socket_sendto(sock, &region, task, senddone, sock,
&ev->address, NULL);
if (result != ISC_R_SUCCESS)
isc_socket_detach(&dummy);
/*
* send nextitem message.
*/
region.base = buf2;
region.length = sizeof(buf2);
dummy = NULL;
isc_socket_attach(sock, &dummy);
result = isc_socket_sendto(sock, &region, task, senddone, sock,
&ev->address, NULL);
if (result != ISC_R_SUCCESS)
isc_socket_detach(&dummy);
isc_event_free(&event);
}
static dns_dispatch_t *dispatch = NULL;
static dns_dispentry_t *dispentry = NULL;
static atomic_bool first = ATOMIC_VAR_INIT(true);
static isc_sockaddr_t local;
static atomic_uint_fast32_t responses;
static void
response(isc_task_t *task, isc_event_t *event) {
dns_dispatchevent_t *devent = (dns_dispatchevent_t *)event;
bool exp_true = true;
UNUSED(task);
atomic_fetch_add_relaxed(&responses, 1);
if (atomic_compare_exchange_strong(&first, &exp_true, false)) {
isc_result_t result = dns_dispatch_getnext(dispentry, &devent);
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assert_int_equal(result, ISC_R_SUCCESS);
} else {
dns_dispatch_removeresponse(&dispentry, &devent);
isc_app_shutdown();
}
}
static void
startit(isc_task_t *task, isc_event_t *event) {
isc_result_t result;
isc_socket_t *sock = NULL;
isc_socket_attach(dns_dispatch_getsocket(dispatch), &sock);
result = isc_socket_sendto(sock, event->ev_arg, task, senddone, sock,
&local, NULL);
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assert_int_equal(result, ISC_R_SUCCESS);
isc_event_free(&event);
}
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/* test dispatch getnext */
static void
dispatch_getnext(void **state) {
isc_region_t region;
isc_result_t result;
isc_socket_t *sock = NULL;
isc_task_t *task = NULL;
uint16_t id;
struct in_addr ina;
unsigned char message[12];
unsigned int attrs;
unsigned char rbuf[12];
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UNUSED(state);
atomic_init(&responses, 0);
result = isc_task_create(taskmgr, 0, &task);
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assert_int_equal(result, ISC_R_SUCCESS);
result = dns_dispatchmgr_create(dt_mctx, &dispatchmgr);
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assert_int_equal(result, ISC_R_SUCCESS);
ina.s_addr = htonl(INADDR_LOOPBACK);
isc_sockaddr_fromin(&local, &ina, 0);
attrs = DNS_DISPATCHATTR_IPV4 | DNS_DISPATCHATTR_UDP;
result = dns_dispatch_getudp(dispatchmgr, socketmgr, taskmgr,
&local, 512, 6, 1024, 17, 19, attrs,
attrs, &dispatch);
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assert_int_equal(result, ISC_R_SUCCESS);
/*
* Create a local udp nameserver on the loopback.
*/
result = isc_socket_create(socketmgr, AF_INET, isc_sockettype_udp,
&sock);
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assert_int_equal(result, ISC_R_SUCCESS);
ina.s_addr = htonl(INADDR_LOOPBACK);
isc_sockaddr_fromin(&local, &ina, 0);
result = isc_socket_bind(sock, &local, 0);
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assert_int_equal(result, ISC_R_SUCCESS);
result = isc_socket_getsockname(sock, &local);
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assert_int_equal(result, ISC_R_SUCCESS);
region.base = rbuf;
region.length = sizeof(rbuf);
result = isc_socket_recv(sock, &region, 1, task, nameserver, sock);
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assert_int_equal(result, ISC_R_SUCCESS);
result = dns_dispatch_addresponse(dispatch, 0, &local, task, response,
NULL, &id, &dispentry, NULL);
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assert_int_equal(result, ISC_R_SUCCESS);
memset(message, 0, sizeof(message));
message[0] = (id >> 8) & 0xff;
message[1] = id & 0xff;
region.base = message;
region.length = sizeof(message);
result = isc_app_onrun(dt_mctx, task, startit, &region);
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assert_int_equal(result, ISC_R_SUCCESS);
result = isc_app_run();
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assert_int_equal(result, ISC_R_SUCCESS);
assert_int_equal(atomic_load_acquire(&responses), 2);
/*
* Shutdown nameserver.
*/
isc_socket_cancel(sock, task, ISC_SOCKCANCEL_RECV);
isc_socket_detach(&sock);
isc_task_detach(&task);
/*
* Shutdown the dispatch.
*/
dns_dispatch_detach(&dispatch);
dns_dispatchmgr_destroy(&dispatchmgr);
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}
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int
main(void) {
const struct CMUnitTest tests[] = {
cmocka_unit_test_setup_teardown(dispatchset_create,
_setup, _teardown),
cmocka_unit_test_setup_teardown(dispatchset_get,
_setup, _teardown),
cmocka_unit_test_setup_teardown(dispatch_getnext,
_setup, _teardown),
};
return (cmocka_run_group_tests(tests, NULL, NULL));
}
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#else /* HAVE_CMOCKA */
#include <stdio.h>
int
main(void) {
printf("1..0 # Skipped: cmocka not available\n");
return (0);
}
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#endif