bind9/lib/dns/dyndb.c
Ondřej Surý 37b9511ce1 Use libuv's shared library handling capabilities
While libltdl is a feature-rich library, BIND 9 code only uses its basic
capabilities, which are also provided by libuv and which BIND 9 already
uses for other purposes.  As libuv's cross-platform shared library
handling interface is modeled after the POSIX dlopen() interface,
converting code using the latter to the former is simple.  Replace
libltdl function calls with their libuv counterparts, refactoring the
code as necessary.  Remove all use of libltdl from the BIND 9 source
tree.
2020-10-28 15:48:58 +01:00

323 lines
7.8 KiB
C

/*
* 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 https://mozilla.org/MPL/2.0/.
*
* See the COPYRIGHT file distributed with this work for additional
* information regarding copyright ownership.
*/
#include <string.h>
#include <uv.h>
#include <isc/buffer.h>
#include <isc/mem.h>
#include <isc/mutex.h>
#include <isc/once.h>
#include <isc/region.h>
#include <isc/result.h>
#include <isc/task.h>
#include <isc/types.h>
#include <isc/util.h>
#include <dns/dyndb.h>
#include <dns/log.h>
#include <dns/types.h>
#include <dns/view.h>
#include <dns/zone.h>
#define CHECK(op) \
do { \
result = (op); \
if (result != ISC_R_SUCCESS) \
goto cleanup; \
} while (0)
typedef struct dyndb_implementation dyndb_implementation_t;
struct dyndb_implementation {
isc_mem_t *mctx;
uv_lib_t handle;
dns_dyndb_register_t *register_func;
dns_dyndb_destroy_t *destroy_func;
char *name;
void *inst;
LINK(dyndb_implementation_t) link;
};
/*
* List of dyndb implementations. Locked by dyndb_lock.
*
* These are stored here so they can be cleaned up on shutdown.
* (The order in which they are stored is not important.)
*/
static LIST(dyndb_implementation_t) dyndb_implementations;
/* Locks dyndb_implementations. */
static isc_mutex_t dyndb_lock;
static isc_once_t once = ISC_ONCE_INIT;
static void
dyndb_initialize(void) {
isc_mutex_init(&dyndb_lock);
INIT_LIST(dyndb_implementations);
}
static dyndb_implementation_t *
impfind(const char *name) {
dyndb_implementation_t *imp;
for (imp = ISC_LIST_HEAD(dyndb_implementations); imp != NULL;
imp = ISC_LIST_NEXT(imp, link))
{
if (strcasecmp(name, imp->name) == 0) {
return (imp);
}
}
return (NULL);
}
static isc_result_t
load_symbol(uv_lib_t *handle, const char *filename, const char *symbol_name,
void **symbolp) {
void *symbol;
int r;
REQUIRE(handle != NULL);
REQUIRE(symbolp != NULL && *symbolp == NULL);
r = uv_dlsym(handle, symbol_name, &symbol);
if (r != 0) {
const char *errmsg = uv_dlerror(handle);
if (errmsg == NULL) {
errmsg = "returned function pointer is NULL";
}
isc_log_write(dns_lctx, DNS_LOGCATEGORY_DATABASE,
DNS_LOGMODULE_DYNDB, ISC_LOG_ERROR,
"failed to lookup symbol %s in "
"DynDB module '%s': %s",
symbol_name, filename, errmsg);
return (ISC_R_FAILURE);
}
*symbolp = symbol;
return (ISC_R_SUCCESS);
}
static void
unload_library(dyndb_implementation_t **impp);
static isc_result_t
load_library(isc_mem_t *mctx, const char *filename, const char *instname,
dyndb_implementation_t **impp) {
isc_result_t result;
dyndb_implementation_t *imp = NULL;
dns_dyndb_version_t *version_func = NULL;
int version;
int r;
REQUIRE(impp != NULL && *impp == NULL);
isc_log_write(dns_lctx, DNS_LOGCATEGORY_DATABASE, DNS_LOGMODULE_DYNDB,
ISC_LOG_INFO, "loading DynDB instance '%s' driver '%s'",
instname, filename);
imp = isc_mem_get(mctx, sizeof(*imp));
memset(imp, 0, sizeof(*imp));
isc_mem_attach(mctx, &imp->mctx);
imp->name = isc_mem_strdup(imp->mctx, instname);
INIT_LINK(imp, link);
r = uv_dlopen(filename, &imp->handle);
if (r != 0) {
const char *errmsg = uv_dlerror(&imp->handle);
if (errmsg == NULL) {
errmsg = "unknown error";
}
isc_log_write(dns_lctx, DNS_LOGCATEGORY_DATABASE,
DNS_LOGMODULE_DYNDB, ISC_LOG_ERROR,
"failed to dlopen() DynDB instance '%s' driver "
"'%s': %s",
instname, filename, errmsg);
CHECK(ISC_R_FAILURE);
}
CHECK(load_symbol(&imp->handle, filename, "dyndb_version",
(void **)&version_func));
version = version_func(NULL);
if (version < (DNS_DYNDB_VERSION - DNS_DYNDB_AGE) ||
version > DNS_DYNDB_VERSION)
{
isc_log_write(dns_lctx, DNS_LOGCATEGORY_DATABASE,
DNS_LOGMODULE_DYNDB, ISC_LOG_ERROR,
"driver API version mismatch: %d/%d", version,
DNS_DYNDB_VERSION);
CHECK(ISC_R_FAILURE);
}
CHECK(load_symbol(&imp->handle, filename, "dyndb_init",
(void **)&imp->register_func));
CHECK(load_symbol(&imp->handle, filename, "dyndb_destroy",
(void **)&imp->destroy_func));
*impp = imp;
return (ISC_R_SUCCESS);
cleanup:
isc_log_write(dns_lctx, DNS_LOGCATEGORY_DATABASE, DNS_LOGMODULE_DYNDB,
ISC_LOG_ERROR,
"failed to dynamically load DynDB instance '%s' driver "
"'%s': %s",
instname, filename, isc_result_totext(result));
unload_library(&imp);
return (result);
}
static void
unload_library(dyndb_implementation_t **impp) {
dyndb_implementation_t *imp;
REQUIRE(impp != NULL && *impp != NULL);
imp = *impp;
*impp = NULL;
/*
* This is a resource leak, but there is nothing we can currently do
* about it due to how configuration loading/reloading is designed.
*/
/* uv_dlclose(&imp->handle); */
isc_mem_free(imp->mctx, imp->name);
isc_mem_putanddetach(&imp->mctx, imp, sizeof(*imp));
}
isc_result_t
dns_dyndb_load(const char *libname, const char *name, const char *parameters,
const char *file, unsigned long line, isc_mem_t *mctx,
const dns_dyndbctx_t *dctx) {
isc_result_t result;
dyndb_implementation_t *implementation = NULL;
REQUIRE(DNS_DYNDBCTX_VALID(dctx));
REQUIRE(name != NULL);
RUNTIME_CHECK(isc_once_do(&once, dyndb_initialize) == ISC_R_SUCCESS);
LOCK(&dyndb_lock);
/* duplicate instance names are not allowed */
if (impfind(name) != NULL) {
CHECK(ISC_R_EXISTS);
}
CHECK(load_library(mctx, libname, name, &implementation));
CHECK(implementation->register_func(mctx, name, parameters, file, line,
dctx, &implementation->inst));
APPEND(dyndb_implementations, implementation, link);
result = ISC_R_SUCCESS;
cleanup:
if (result != ISC_R_SUCCESS) {
if (implementation != NULL) {
unload_library(&implementation);
}
}
UNLOCK(&dyndb_lock);
return (result);
}
void
dns_dyndb_cleanup(bool exiting) {
dyndb_implementation_t *elem;
dyndb_implementation_t *prev;
RUNTIME_CHECK(isc_once_do(&once, dyndb_initialize) == ISC_R_SUCCESS);
LOCK(&dyndb_lock);
elem = TAIL(dyndb_implementations);
while (elem != NULL) {
prev = PREV(elem, link);
UNLINK(dyndb_implementations, elem, link);
isc_log_write(dns_lctx, DNS_LOGCATEGORY_DATABASE,
DNS_LOGMODULE_DYNDB, ISC_LOG_INFO,
"unloading DynDB instance '%s'", elem->name);
elem->destroy_func(&elem->inst);
ENSURE(elem->inst == NULL);
unload_library(&elem);
elem = prev;
}
UNLOCK(&dyndb_lock);
if (exiting) {
isc_mutex_destroy(&dyndb_lock);
}
}
isc_result_t
dns_dyndb_createctx(isc_mem_t *mctx, const void *hashinit, isc_log_t *lctx,
dns_view_t *view, dns_zonemgr_t *zmgr, isc_task_t *task,
isc_timermgr_t *tmgr, dns_dyndbctx_t **dctxp) {
dns_dyndbctx_t *dctx;
REQUIRE(dctxp != NULL && *dctxp == NULL);
dctx = isc_mem_get(mctx, sizeof(*dctx));
memset(dctx, 0, sizeof(*dctx));
if (view != NULL) {
dns_view_attach(view, &dctx->view);
}
if (zmgr != NULL) {
dns_zonemgr_attach(zmgr, &dctx->zmgr);
}
if (task != NULL) {
isc_task_attach(task, &dctx->task);
}
dctx->timermgr = tmgr;
dctx->hashinit = hashinit;
dctx->lctx = lctx;
dctx->refvar = &isc_bind9;
isc_mem_attach(mctx, &dctx->mctx);
dctx->magic = DNS_DYNDBCTX_MAGIC;
*dctxp = dctx;
return (ISC_R_SUCCESS);
}
void
dns_dyndb_destroyctx(dns_dyndbctx_t **dctxp) {
dns_dyndbctx_t *dctx;
REQUIRE(dctxp != NULL && DNS_DYNDBCTX_VALID(*dctxp));
dctx = *dctxp;
*dctxp = NULL;
dctx->magic = 0;
if (dctx->view != NULL) {
dns_view_detach(&dctx->view);
}
if (dctx->zmgr != NULL) {
dns_zonemgr_detach(&dctx->zmgr);
}
if (dctx->task != NULL) {
isc_task_detach(&dctx->task);
}
dctx->timermgr = NULL;
dctx->lctx = NULL;
isc_mem_putanddetach(&dctx->mctx, dctx, sizeof(*dctx));
}