diff --git a/daemons/attrd/pacemaker-attrd.c b/daemons/attrd/pacemaker-attrd.c
index 358e84127d..837459f643 100644
--- a/daemons/attrd/pacemaker-attrd.c
+++ b/daemons/attrd/pacemaker-attrd.c
@@ -1,424 +1,426 @@
/*
- * Copyright 2013-2019 Andrew Beekhof
+ * Copyright 2013-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include "pacemaker-attrd.h"
lrmd_t *the_lrmd = NULL;
crm_cluster_t *attrd_cluster = NULL;
crm_trigger_t *attrd_config_read = NULL;
static crm_exit_t attrd_exit_status = CRM_EX_OK;
static void
attrd_cpg_dispatch(cpg_handle_t handle,
const struct cpg_name *groupName,
uint32_t nodeid, uint32_t pid, void *msg, size_t msg_len)
{
uint32_t kind = 0;
xmlNode *xml = NULL;
const char *from = NULL;
char *data = pcmk_message_common_cs(handle, nodeid, pid, msg, &kind, &from);
if(data == NULL) {
return;
}
if (kind == crm_class_cluster) {
xml = string2xml(data);
}
if (xml == NULL) {
crm_err("Bad message of class %d received from %s[%u]: '%.120s'", kind, from, nodeid, data);
} else {
crm_node_t *peer = crm_get_peer(nodeid, from);
attrd_peer_message(peer, xml);
}
free_xml(xml);
free(data);
}
static void
attrd_cpg_destroy(gpointer unused)
{
if (attrd_shutting_down()) {
crm_info("Corosync disconnection complete");
} else {
crm_crit("Lost connection to cluster layer, shutting down");
attrd_exit_status = CRM_EX_DISCONNECT;
attrd_shutdown(0);
}
}
static void
attrd_cib_replaced_cb(const char *event, xmlNode * msg)
{
if (attrd_shutting_down()) {
return;
}
if (attrd_election_won()) {
crm_notice("Updating all attributes after %s event", event);
write_attributes(TRUE, FALSE);
}
// Check for changes in alerts
mainloop_set_trigger(attrd_config_read);
}
static void
attrd_cib_destroy_cb(gpointer user_data)
{
cib_t *conn = user_data;
conn->cmds->signoff(conn); /* Ensure IPC is cleaned up */
if (attrd_shutting_down()) {
crm_info("Connection disconnection complete");
} else {
/* eventually this should trigger a reconnect, not a shutdown */
crm_crit("Lost connection to the CIB manager, shutting down");
attrd_exit_status = CRM_EX_DISCONNECT;
attrd_shutdown(0);
}
return;
}
static void
attrd_erase_cb(xmlNode *msg, int call_id, int rc, xmlNode *output,
void *user_data)
{
do_crm_log_unlikely((rc? LOG_NOTICE : LOG_DEBUG),
"Cleared transient attributes: %s "
CRM_XS " xpath=%s rc=%d",
pcmk_strerror(rc), (char *) user_data, rc);
}
#define XPATH_TRANSIENT "//node_state[@uname='%s']/" XML_TAG_TRANSIENT_NODEATTRS
/*!
* \internal
* \brief Wipe all transient attributes for this node from the CIB
*
* Clear any previous transient node attributes from the CIB. This is
* normally done by the DC's controller when this node leaves the cluster, but
* this handles the case where the node restarted so quickly that the
* cluster layer didn't notice.
*
* \todo If pacemaker-attrd respawns after crashing (see PCMK_respawned),
* ideally we'd skip this and sync our attributes from the writer.
* However, currently we reject any values for us that the writer has, in
* attrd_peer_update().
*/
static void
attrd_erase_attrs()
{
int call_id;
char *xpath = crm_strdup_printf(XPATH_TRANSIENT, attrd_cluster->uname);
crm_info("Clearing transient attributes from CIB " CRM_XS " xpath=%s",
xpath);
call_id = the_cib->cmds->remove(the_cib, xpath, NULL,
cib_quorum_override | cib_xpath);
the_cib->cmds->register_callback_full(the_cib, call_id, 120, FALSE, xpath,
"attrd_erase_cb", attrd_erase_cb,
free);
}
static int
attrd_cib_connect(int max_retry)
{
static int attempts = 0;
int rc = -ENOTCONN;
the_cib = cib_new();
if (the_cib == NULL) {
return -ENOTCONN;
}
do {
if(attempts > 0) {
sleep(attempts);
}
attempts++;
crm_debug("Connection attempt %d to the CIB manager", attempts);
rc = the_cib->cmds->signon(the_cib, T_ATTRD, cib_command);
} while(rc != pcmk_ok && attempts < max_retry);
if (rc != pcmk_ok) {
crm_err("Connection to the CIB manager failed: %s " CRM_XS " rc=%d",
pcmk_strerror(rc), rc);
goto cleanup;
}
crm_debug("Connected to the CIB manager after %d attempts", attempts);
rc = the_cib->cmds->set_connection_dnotify(the_cib, attrd_cib_destroy_cb);
if (rc != pcmk_ok) {
crm_err("Could not set disconnection callback");
goto cleanup;
}
rc = the_cib->cmds->add_notify_callback(the_cib, T_CIB_REPLACE_NOTIFY, attrd_cib_replaced_cb);
if(rc != pcmk_ok) {
crm_err("Could not set CIB notification callback");
goto cleanup;
}
rc = the_cib->cmds->add_notify_callback(the_cib, T_CIB_DIFF_NOTIFY, attrd_cib_updated_cb);
if (rc != pcmk_ok) {
crm_err("Could not set CIB notification callback (update)");
goto cleanup;
}
return pcmk_ok;
cleanup:
the_cib->cmds->signoff(the_cib);
cib_delete(the_cib);
the_cib = NULL;
return -ENOTCONN;
}
/*!
* \internal
* \brief Prepare the CIB after cluster is connected
*/
static void
attrd_cib_init()
{
// We have no attribute values in memory, wipe the CIB to match
attrd_erase_attrs();
// Set a trigger for reading the CIB (for the alerts section)
attrd_config_read = mainloop_add_trigger(G_PRIORITY_HIGH, attrd_read_options, NULL);
// Always read the CIB at start-up
mainloop_set_trigger(attrd_config_read);
}
static qb_ipcs_service_t *ipcs = NULL;
static int32_t
attrd_ipc_dispatch(qb_ipcs_connection_t * c, void *data, size_t size)
{
uint32_t id = 0;
uint32_t flags = 0;
crm_client_t *client = crm_client_get(c);
xmlNode *xml = crm_ipcs_recv(client, data, size, &id, &flags);
const char *op;
if (xml == NULL) {
crm_debug("No msg from %d (%p)", crm_ipcs_client_pid(c), c);
return 0;
}
#if ENABLE_ACL
CRM_ASSERT(client->user != NULL);
crm_acl_get_set_user(xml, F_ATTRD_USER, client->user);
#endif
crm_trace("Processing msg from %d (%p)", crm_ipcs_client_pid(c), c);
crm_log_xml_trace(xml, __FUNCTION__);
op = crm_element_value(xml, F_ATTRD_TASK);
if (client->name == NULL) {
const char *value = crm_element_value(xml, F_ORIG);
client->name = crm_strdup_printf("%s.%d", value?value:"unknown", client->pid);
}
if (safe_str_eq(op, ATTRD_OP_PEER_REMOVE)) {
attrd_send_ack(client, id, flags);
attrd_client_peer_remove(client->name, xml);
} else if (safe_str_eq(op, ATTRD_OP_CLEAR_FAILURE)) {
attrd_send_ack(client, id, flags);
attrd_client_clear_failure(xml);
} else if (safe_str_eq(op, ATTRD_OP_UPDATE)) {
attrd_send_ack(client, id, flags);
attrd_client_update(xml);
} else if (safe_str_eq(op, ATTRD_OP_UPDATE_BOTH)) {
attrd_send_ack(client, id, flags);
attrd_client_update(xml);
} else if (safe_str_eq(op, ATTRD_OP_UPDATE_DELAY)) {
attrd_send_ack(client, id, flags);
attrd_client_update(xml);
} else if (safe_str_eq(op, ATTRD_OP_REFRESH)) {
attrd_send_ack(client, id, flags);
attrd_client_refresh();
} else if (safe_str_eq(op, ATTRD_OP_QUERY)) {
/* queries will get reply, so no ack is necessary */
attrd_client_query(client, id, flags, xml);
} else {
crm_info("Ignoring request from client %s with unknown operation %s",
client->name, op);
}
free_xml(xml);
return 0;
}
void
attrd_ipc_fini()
{
if (ipcs != NULL) {
crm_client_disconnect_all(ipcs);
qb_ipcs_destroy(ipcs);
ipcs = NULL;
}
}
static int
attrd_cluster_connect()
{
attrd_cluster = calloc(1, sizeof(crm_cluster_t));
attrd_cluster->destroy = attrd_cpg_destroy;
attrd_cluster->cpg.cpg_deliver_fn = attrd_cpg_dispatch;
attrd_cluster->cpg.cpg_confchg_fn = pcmk_cpg_membership;
crm_set_status_callback(&attrd_peer_change_cb);
if (crm_cluster_connect(attrd_cluster) == FALSE) {
crm_err("Cluster connection failed");
return -ENOTCONN;
}
return pcmk_ok;
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
int flag = 0;
int index = 0;
int argerr = 0;
attrd_init_mainloop();
crm_log_preinit(NULL, argc, argv);
crm_set_options(NULL, "[options]", long_options,
"Daemon for aggregating and atomically storing node attribute updates into the CIB");
mainloop_add_signal(SIGTERM, attrd_shutdown);
while (1) {
flag = crm_get_option(argc, argv, &index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case 'h': /* Help message */
crm_help(flag, CRM_EX_OK);
break;
default:
++argerr;
break;
}
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
crm_log_init(T_ATTRD, LOG_INFO, TRUE, FALSE, argc, argv, FALSE);
crm_info("Starting up");
attributes = g_hash_table_new_full(crm_str_hash, g_str_equal, NULL, free_attribute);
/* Connect to the CIB before connecting to the cluster or listening for IPC.
* This allows us to assume the CIB is connected whenever we process a
* cluster or IPC message (which also avoids start-up race conditions).
*/
if (attrd_cib_connect(10) != pcmk_ok) {
attrd_exit_status = CRM_EX_FATAL;
goto done;
}
crm_info("CIB connection active");
if (attrd_cluster_connect() != pcmk_ok) {
attrd_exit_status = CRM_EX_FATAL;
goto done;
}
crm_info("Cluster connection active");
// Initialization that requires the cluster to be connected
attrd_election_init();
attrd_cib_init();
/* Set a private attribute for ourselves with the protocol version we
* support. This lets all nodes determine the minimum supported version
* across all nodes. It also ensures that the writer learns our node name,
* so it can send our attributes to the CIB.
*/
attrd_broadcast_protocol();
attrd_init_ipc(&ipcs, attrd_ipc_dispatch);
crm_info("Accepting attribute updates");
attrd_run_mainloop();
done:
crm_info("Shutting down attribute manager");
attrd_election_fini();
attrd_ipc_fini();
attrd_lrmd_disconnect();
attrd_cib_disconnect();
g_hash_table_destroy(attributes);
- return crm_exit(attrd_exit_status);
+ crm_exit(attrd_exit_status);
}
diff --git a/daemons/based/pacemaker-based.c b/daemons/based/pacemaker-based.c
index 7791e0a771..c5d1812aa9 100644
--- a/daemons/based/pacemaker-based.c
+++ b/daemons/based/pacemaker-based.c
@@ -1,371 +1,373 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#if HAVE_BZLIB_H
# include
#endif
extern int init_remote_listener(int port, gboolean encrypted);
gboolean cib_shutdown_flag = FALSE;
int cib_status = pcmk_ok;
crm_cluster_t crm_cluster;
GMainLoop *mainloop = NULL;
const char *cib_root = NULL;
char *cib_our_uname = NULL;
static gboolean preserve_status = FALSE;
/* volatile because it may be changed in a signal handler */
volatile gboolean cib_writes_enabled = TRUE;
int remote_fd = 0;
int remote_tls_fd = 0;
GHashTable *config_hash = NULL;
GHashTable *local_notify_queue = NULL;
int cib_init(void);
void cib_shutdown(int nsig);
static bool startCib(const char *filename);
extern int write_cib_contents(gpointer p);
void cib_cleanup(void);
static void
cib_enable_writes(int nsig)
{
crm_info("(Re)enabling disk writes");
cib_writes_enabled = TRUE;
}
static void
log_cib_client(gpointer key, gpointer value, gpointer user_data)
{
crm_info("Client %s", crm_client_name(value));
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{"stand-alone", 0, 0, 's', "\tAdvanced use only"},
{"disk-writes", 0, 0, 'w', "\tAdvanced use only"},
{"cib-root", 1, 0, 'r', "\tAdvanced use only"},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
int flag;
int rc = 0;
int index = 0;
int argerr = 0;
struct passwd *pwentry = NULL;
crm_log_preinit(NULL, argc, argv);
crm_set_options(NULL, "[options]",
long_options, "Daemon for storing and replicating the cluster configuration");
crm_peer_init();
mainloop_add_signal(SIGTERM, cib_shutdown);
mainloop_add_signal(SIGPIPE, cib_enable_writes);
cib_writer = mainloop_add_trigger(G_PRIORITY_LOW, write_cib_contents, NULL);
while (1) {
flag = crm_get_option(argc, argv, &index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case 's':
stand_alone = TRUE;
preserve_status = TRUE;
cib_writes_enabled = FALSE;
pwentry = getpwnam(CRM_DAEMON_USER);
CRM_CHECK(pwentry != NULL,
crm_perror(LOG_ERR, "Invalid uid (%s) specified", CRM_DAEMON_USER);
return CRM_EX_FATAL);
rc = setgid(pwentry->pw_gid);
if (rc < 0) {
crm_perror(LOG_ERR, "Could not set group to %d", pwentry->pw_gid);
return CRM_EX_FATAL;
}
rc = initgroups(CRM_DAEMON_USER, pwentry->pw_gid);
if (rc < 0) {
crm_perror(LOG_ERR, "Could not setup groups for user %d", pwentry->pw_uid);
return CRM_EX_FATAL;
}
rc = setuid(pwentry->pw_uid);
if (rc < 0) {
crm_perror(LOG_ERR, "Could not set user to %d", pwentry->pw_uid);
return CRM_EX_FATAL;
}
break;
case '?': /* Help message */
crm_help(flag, CRM_EX_OK);
break;
case 'w':
cib_writes_enabled = TRUE;
break;
case 'r':
cib_root = optarg;
break;
case 'm':
cib_metadata();
return CRM_EX_OK;
default:
++argerr;
break;
}
}
if (argc - optind == 1 && safe_str_eq("metadata", argv[optind])) {
cib_metadata();
return CRM_EX_OK;
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
crm_log_init(NULL, LOG_INFO, TRUE, FALSE, argc, argv, FALSE);
if (cib_root == NULL) {
cib_root = CRM_CONFIG_DIR;
} else {
crm_notice("Using custom config location: %s", cib_root);
}
if (pcmk__daemon_can_write(cib_root, NULL) == FALSE) {
crm_err("Terminating due to bad permissions on %s", cib_root);
fprintf(stderr, "ERROR: Bad permissions on %s (see logs for details)\n",
cib_root);
fflush(stderr);
return CRM_EX_FATAL;
}
/* read local config file */
cib_init();
// This should not be reachable
CRM_CHECK(crm_hash_table_size(client_connections) == 0,
crm_warn("Not all clients gone at exit"));
g_hash_table_foreach(client_connections, log_cib_client, NULL);
cib_cleanup();
crm_info("Done");
return CRM_EX_OK;
}
void
cib_cleanup(void)
{
crm_peer_destroy();
if (local_notify_queue) {
g_hash_table_destroy(local_notify_queue);
}
crm_client_cleanup();
g_hash_table_destroy(config_hash);
free(cib_our_uname);
}
#if SUPPORT_COROSYNC
static void
cib_cs_dispatch(cpg_handle_t handle,
const struct cpg_name *groupName,
uint32_t nodeid, uint32_t pid, void *msg, size_t msg_len)
{
uint32_t kind = 0;
xmlNode *xml = NULL;
const char *from = NULL;
char *data = pcmk_message_common_cs(handle, nodeid, pid, msg, &kind, &from);
if(data == NULL) {
return;
}
if (kind == crm_class_cluster) {
xml = string2xml(data);
if (xml == NULL) {
crm_err("Invalid XML: '%.120s'", data);
free(data);
return;
}
crm_xml_add(xml, F_ORIG, from);
/* crm_xml_add_int(xml, F_SEQ, wrapper->id); */
cib_peer_callback(xml, NULL);
}
free_xml(xml);
free(data);
}
static void
cib_cs_destroy(gpointer user_data)
{
if (cib_shutdown_flag) {
crm_info("Corosync disconnection complete");
} else {
crm_crit("Lost connection to cluster layer, shutting down");
terminate_cib(__FUNCTION__, CRM_EX_DISCONNECT);
}
}
#endif
static void
cib_peer_update_callback(enum crm_status_type type, crm_node_t * node, const void *data)
{
switch (type) {
case crm_status_processes:
if (cib_legacy_mode()
&& is_not_set(node->processes, crm_get_cluster_proc())) {
uint32_t old = data? *(const uint32_t *)data : 0;
if ((node->processes ^ old) & crm_proc_cpg) {
crm_info("Attempting to disable legacy mode after %s left the cluster",
node->uname);
legacy_mode = FALSE;
}
}
break;
case crm_status_uname:
case crm_status_nstate:
if (cib_shutdown_flag && (crm_active_peers() < 2)
&& crm_hash_table_size(client_connections) == 0) {
crm_info("No more peers");
terminate_cib(__FUNCTION__, -1);
}
break;
}
}
int
cib_init(void)
{
if (is_corosync_cluster()) {
#if SUPPORT_COROSYNC
crm_cluster.destroy = cib_cs_destroy;
crm_cluster.cpg.cpg_deliver_fn = cib_cs_dispatch;
crm_cluster.cpg.cpg_confchg_fn = pcmk_cpg_membership;
#endif
}
config_hash = crm_str_table_new();
if (startCib("cib.xml") == FALSE) {
crm_crit("Cannot start CIB... terminating");
crm_exit(CRM_EX_NOINPUT);
}
if (stand_alone == FALSE) {
if (is_corosync_cluster()) {
crm_set_status_callback(&cib_peer_update_callback);
}
if (crm_cluster_connect(&crm_cluster) == FALSE) {
crm_crit("Cannot sign in to the cluster... terminating");
crm_exit(CRM_EX_FATAL);
}
cib_our_uname = crm_cluster.uname;
} else {
cib_our_uname = strdup("localhost");
}
cib_ipc_servers_init(&ipcs_ro,
&ipcs_rw,
&ipcs_shm,
&ipc_ro_callbacks,
&ipc_rw_callbacks);
if (stand_alone) {
cib_is_master = TRUE;
}
/* Create the mainloop and run it... */
mainloop = g_main_loop_new(NULL, FALSE);
crm_info("Starting %s mainloop", crm_system_name);
g_main_loop_run(mainloop);
/* If main loop returned, clean up and exit. We disconnect in case
* terminate_cib() was called with fast=-1.
*/
crm_cluster_disconnect(&crm_cluster);
cib_ipc_servers_destroy(ipcs_ro, ipcs_rw, ipcs_shm);
- return crm_exit(CRM_EX_OK);
+ crm_exit(CRM_EX_OK);
}
static bool
startCib(const char *filename)
{
gboolean active = FALSE;
xmlNode *cib = readCibXmlFile(cib_root, filename, !preserve_status);
if (activateCibXml(cib, TRUE, "start") == 0) {
int port = 0;
const char *port_s = NULL;
active = TRUE;
cib_read_config(config_hash, cib);
port_s = crm_element_value(cib, "remote-tls-port");
if (port_s) {
port = crm_parse_int(port_s, "0");
remote_tls_fd = init_remote_listener(port, TRUE);
}
port_s = crm_element_value(cib, "remote-clear-port");
if (port_s) {
port = crm_parse_int(port_s, "0");
remote_fd = init_remote_listener(port, FALSE);
}
crm_info("CIB Initialization completed successfully");
}
return active;
}
diff --git a/daemons/controld/controld_control.c b/daemons/controld/controld_control.c
index 1bccaef808..7443d3b0af 100644
--- a/daemons/controld/controld_control.c
+++ b/daemons/controld/controld_control.c
@@ -1,901 +1,903 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
qb_ipcs_service_t *ipcs = NULL;
#if SUPPORT_COROSYNC
extern gboolean crm_connect_corosync(crm_cluster_t * cluster);
#endif
void crm_shutdown(int nsig);
gboolean crm_read_options(gpointer user_data);
gboolean fsa_has_quorum = FALSE;
crm_trigger_t *fsa_source = NULL;
crm_trigger_t *config_read = NULL;
bool no_quorum_suicide_escalation = FALSE;
/* A_HA_CONNECT */
void
do_ha_control(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state,
enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
gboolean registered = FALSE;
static crm_cluster_t *cluster = NULL;
if (cluster == NULL) {
cluster = calloc(1, sizeof(crm_cluster_t));
}
if (action & A_HA_DISCONNECT) {
crm_cluster_disconnect(cluster);
crm_info("Disconnected from the cluster");
set_bit(fsa_input_register, R_HA_DISCONNECTED);
}
if (action & A_HA_CONNECT) {
crm_set_status_callback(&peer_update_callback);
crm_set_autoreap(FALSE);
if (is_corosync_cluster()) {
#if SUPPORT_COROSYNC
registered = crm_connect_corosync(cluster);
#endif
}
controld_election_init(cluster->uname);
fsa_our_uname = cluster->uname;
fsa_our_uuid = cluster->uuid;
if(cluster->uuid == NULL) {
crm_err("Could not obtain local uuid");
registered = FALSE;
}
if (registered == FALSE) {
set_bit(fsa_input_register, R_HA_DISCONNECTED);
register_fsa_error(C_FSA_INTERNAL, I_ERROR, NULL);
return;
}
populate_cib_nodes(node_update_none, __FUNCTION__);
clear_bit(fsa_input_register, R_HA_DISCONNECTED);
crm_info("Connected to the cluster");
}
if (action & ~(A_HA_CONNECT | A_HA_DISCONNECT)) {
crm_err("Unexpected action %s in %s", fsa_action2string(action), __FUNCTION__);
}
}
/* A_SHUTDOWN */
void
do_shutdown(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state, enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
/* just in case */
set_bit(fsa_input_register, R_SHUTDOWN);
if (stonith_api) {
/* Prevent it from coming up again */
clear_bit(fsa_input_register, R_ST_REQUIRED);
crm_info("Disconnecting from fencer");
stonith_api->cmds->disconnect(stonith_api);
}
}
/* A_SHUTDOWN_REQ */
void
do_shutdown_req(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state,
enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
xmlNode *msg = NULL;
set_bit(fsa_input_register, R_SHUTDOWN);
crm_info("Sending shutdown request to all peers (DC is %s)",
(fsa_our_dc? fsa_our_dc : "not set"));
msg = create_request(CRM_OP_SHUTDOWN_REQ, NULL, NULL, CRM_SYSTEM_CRMD, CRM_SYSTEM_CRMD, NULL);
/* set_bit(fsa_input_register, R_STAYDOWN); */
if (send_cluster_message(NULL, crm_msg_crmd, msg, TRUE) == FALSE) {
register_fsa_error(C_FSA_INTERNAL, I_ERROR, NULL);
}
free_xml(msg);
}
extern crm_ipc_t *attrd_ipc;
extern char *max_generation_from;
extern xmlNode *max_generation_xml;
extern GHashTable *resource_history;
extern GHashTable *voted;
extern char *te_client_id;
crm_exit_t
crmd_fast_exit(crm_exit_t exit_code)
{
if (is_set(fsa_input_register, R_STAYDOWN)) {
crm_warn("Inhibiting respawn "CRM_XS" remapping exit code %d to %d",
exit_code, CRM_EX_FATAL);
exit_code = CRM_EX_FATAL;
} else if ((exit_code == CRM_EX_OK)
&& is_set(fsa_input_register, R_IN_RECOVERY)) {
crm_err("Could not recover from internal error");
exit_code = CRM_EX_ERROR;
}
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
crm_exit_t
crmd_exit(crm_exit_t exit_code)
{
GListPtr gIter = NULL;
GMainLoop *mloop = crmd_mainloop;
static bool in_progress = FALSE;
if (in_progress && (exit_code == CRM_EX_OK)) {
crm_debug("Exit is already in progress");
return exit_code;
} else if(in_progress) {
crm_notice("Error during shutdown process, exiting now with status %d (%s)",
exit_code, crm_exit_str(exit_code));
crm_write_blackbox(SIGTRAP, NULL);
crmd_fast_exit(exit_code);
}
in_progress = TRUE;
crm_trace("Preparing to exit with status %d (%s)",
exit_code, crm_exit_str(exit_code));
/* Suppress secondary errors resulting from us disconnecting everything */
set_bit(fsa_input_register, R_HA_DISCONNECTED);
/* Close all IPC servers and clients to ensure any and all shared memory files are cleaned up */
if(ipcs) {
crm_trace("Closing IPC server");
mainloop_del_ipc_server(ipcs);
ipcs = NULL;
}
if (attrd_ipc) {
crm_trace("Closing connection to pacemaker-attrd");
crm_ipc_close(attrd_ipc);
crm_ipc_destroy(attrd_ipc);
attrd_ipc = NULL;
}
pe_subsystem_free();
if(stonith_api) {
crm_trace("Disconnecting fencing API");
clear_bit(fsa_input_register, R_ST_REQUIRED);
stonith_api->cmds->free(stonith_api); stonith_api = NULL;
}
if ((exit_code == CRM_EX_OK) && (crmd_mainloop == NULL)) {
crm_debug("No mainloop detected");
exit_code = CRM_EX_ERROR;
}
/* On an error, just get out.
*
* Otherwise, make the effort to have mainloop exit gracefully so
* that it (mostly) cleans up after itself and valgrind has less
* to report on - allowing real errors stand out
*/
if (exit_code != CRM_EX_OK) {
crm_notice("Forcing immediate exit with status %d (%s)",
exit_code, crm_exit_str(exit_code));
crm_write_blackbox(SIGTRAP, NULL);
return crmd_fast_exit(exit_code);
}
/* Clean up as much memory as possible for valgrind */
for (gIter = fsa_message_queue; gIter != NULL; gIter = gIter->next) {
fsa_data_t *fsa_data = gIter->data;
crm_info("Dropping %s: [ state=%s cause=%s origin=%s ]",
fsa_input2string(fsa_data->fsa_input),
fsa_state2string(fsa_state),
fsa_cause2string(fsa_data->fsa_cause), fsa_data->origin);
delete_fsa_input(fsa_data);
}
clear_bit(fsa_input_register, R_MEMBERSHIP);
g_list_free(fsa_message_queue); fsa_message_queue = NULL;
metadata_cache_fini();
controld_election_fini();
/* Tear down the CIB manager connection, but don't free it yet -- it could
* be used when we drain the mainloop later.
*/
cib_free_callbacks(fsa_cib_conn);
fsa_cib_conn->cmds->signoff(fsa_cib_conn);
verify_stopped(fsa_state, LOG_WARNING);
clear_bit(fsa_input_register, R_LRM_CONNECTED);
lrm_state_destroy_all();
/* This basically will not work, since mainloop has a reference to it */
mainloop_destroy_trigger(fsa_source); fsa_source = NULL;
mainloop_destroy_trigger(config_read); config_read = NULL;
mainloop_destroy_trigger(stonith_reconnect); stonith_reconnect = NULL;
mainloop_destroy_trigger(transition_trigger); transition_trigger = NULL;
crm_client_cleanup();
crm_peer_destroy();
crm_timer_stop(transition_timer);
crm_timer_stop(integration_timer);
crm_timer_stop(finalization_timer);
crm_timer_stop(election_trigger);
crm_timer_stop(shutdown_escalation_timer);
crm_timer_stop(wait_timer);
crm_timer_stop(recheck_timer);
free(transition_timer); transition_timer = NULL;
free(integration_timer); integration_timer = NULL;
free(finalization_timer); finalization_timer = NULL;
free(election_trigger); election_trigger = NULL;
free(shutdown_escalation_timer); shutdown_escalation_timer = NULL;
free(wait_timer); wait_timer = NULL;
free(recheck_timer); recheck_timer = NULL;
free(fsa_our_dc_version); fsa_our_dc_version = NULL;
free(fsa_our_uname); fsa_our_uname = NULL;
free(fsa_our_uuid); fsa_our_uuid = NULL;
free(fsa_our_dc); fsa_our_dc = NULL;
free(fsa_cluster_name); fsa_cluster_name = NULL;
free(te_uuid); te_uuid = NULL;
free(te_client_id); te_client_id = NULL;
free(fsa_pe_ref); fsa_pe_ref = NULL;
free(failed_stop_offset); failed_stop_offset = NULL;
free(failed_start_offset); failed_start_offset = NULL;
free(max_generation_from); max_generation_from = NULL;
free_xml(max_generation_xml); max_generation_xml = NULL;
mainloop_destroy_signal(SIGPIPE);
mainloop_destroy_signal(SIGUSR1);
mainloop_destroy_signal(SIGTERM);
mainloop_destroy_signal(SIGTRAP);
/* leave SIGCHLD engaged as we might still want to drain some service-actions */
if (mloop) {
GMainContext *ctx = g_main_loop_get_context(crmd_mainloop);
/* Don't re-enter this block */
crmd_mainloop = NULL;
/* no signals on final draining anymore */
mainloop_destroy_signal(SIGCHLD);
crm_trace("Draining mainloop %d %d", g_main_loop_is_running(mloop), g_main_context_pending(ctx));
{
int lpc = 0;
while((g_main_context_pending(ctx) && lpc < 10)) {
lpc++;
crm_trace("Iteration %d", lpc);
g_main_context_dispatch(ctx);
}
}
crm_trace("Closing mainloop %d %d", g_main_loop_is_running(mloop), g_main_context_pending(ctx));
g_main_loop_quit(mloop);
/* Won't do anything yet, since we're inside it now */
g_main_loop_unref(mloop);
} else {
mainloop_destroy_signal(SIGCHLD);
}
cib_delete(fsa_cib_conn);
fsa_cib_conn = NULL;
throttle_fini();
/* Graceful */
crm_trace("Done preparing for exit with status %d (%s)",
exit_code, crm_exit_str(exit_code));
return exit_code;
}
/* A_EXIT_0, A_EXIT_1 */
void
do_exit(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state, enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
crm_exit_t exit_code = CRM_EX_OK;
int log_level = LOG_INFO;
const char *exit_type = "gracefully";
if (action & A_EXIT_1) {
log_level = LOG_ERR;
exit_type = "forcefully";
exit_code = CRM_EX_ERROR;
}
verify_stopped(cur_state, LOG_ERR);
do_crm_log(log_level, "Performing %s - %s exiting the controller",
fsa_action2string(action), exit_type);
crm_info("[%s] stopped (%d)", crm_system_name, exit_code);
crmd_exit(exit_code);
}
static void sigpipe_ignore(int nsig) { return; }
/* A_STARTUP */
void
do_startup(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state, enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
int was_error = 0;
crm_debug("Registering Signal Handlers");
mainloop_add_signal(SIGTERM, crm_shutdown);
mainloop_add_signal(SIGPIPE, sigpipe_ignore);
fsa_source = mainloop_add_trigger(G_PRIORITY_HIGH, crm_fsa_trigger, NULL);
config_read = mainloop_add_trigger(G_PRIORITY_HIGH, crm_read_options, NULL);
transition_trigger = mainloop_add_trigger(G_PRIORITY_LOW, te_graph_trigger, NULL);
crm_debug("Creating CIB manager and executor objects");
fsa_cib_conn = cib_new();
lrm_state_init_local();
/* set up the timers */
transition_timer = calloc(1, sizeof(fsa_timer_t));
integration_timer = calloc(1, sizeof(fsa_timer_t));
finalization_timer = calloc(1, sizeof(fsa_timer_t));
election_trigger = calloc(1, sizeof(fsa_timer_t));
shutdown_escalation_timer = calloc(1, sizeof(fsa_timer_t));
wait_timer = calloc(1, sizeof(fsa_timer_t));
recheck_timer = calloc(1, sizeof(fsa_timer_t));
if (election_trigger != NULL) {
election_trigger->source_id = 0;
election_trigger->period_ms = -1;
election_trigger->fsa_input = I_DC_TIMEOUT;
election_trigger->callback = crm_timer_popped;
election_trigger->repeat = FALSE;
} else {
was_error = TRUE;
}
if (transition_timer != NULL) {
transition_timer->source_id = 0;
transition_timer->period_ms = -1;
transition_timer->fsa_input = I_PE_CALC;
transition_timer->callback = crm_timer_popped;
transition_timer->repeat = FALSE;
} else {
was_error = TRUE;
}
if (integration_timer != NULL) {
integration_timer->source_id = 0;
integration_timer->period_ms = -1;
integration_timer->fsa_input = I_INTEGRATED;
integration_timer->callback = crm_timer_popped;
integration_timer->repeat = FALSE;
} else {
was_error = TRUE;
}
if (finalization_timer != NULL) {
finalization_timer->source_id = 0;
finalization_timer->period_ms = -1;
finalization_timer->fsa_input = I_FINALIZED;
finalization_timer->callback = crm_timer_popped;
finalization_timer->repeat = FALSE;
/* for possible enabling... a bug in the join protocol left
* a slave in S_PENDING while we think it's in S_NOT_DC
*
* raising I_FINALIZED put us into a transition loop which is
* never resolved.
* in this loop we continually send probes which the node
* NACK's because it's in S_PENDING
*
* if we have nodes where the cluster layer is active but the
* CRM is not... then this will be handled in the
* integration phase
*/
finalization_timer->fsa_input = I_ELECTION;
} else {
was_error = TRUE;
}
if (shutdown_escalation_timer != NULL) {
shutdown_escalation_timer->source_id = 0;
shutdown_escalation_timer->period_ms = -1;
shutdown_escalation_timer->fsa_input = I_STOP;
shutdown_escalation_timer->callback = crm_timer_popped;
shutdown_escalation_timer->repeat = FALSE;
} else {
was_error = TRUE;
}
if (wait_timer != NULL) {
wait_timer->source_id = 0;
wait_timer->period_ms = 2000;
wait_timer->fsa_input = I_NULL;
wait_timer->callback = crm_timer_popped;
wait_timer->repeat = FALSE;
} else {
was_error = TRUE;
}
if (recheck_timer != NULL) {
recheck_timer->source_id = 0;
recheck_timer->period_ms = -1;
recheck_timer->fsa_input = I_PE_CALC;
recheck_timer->callback = crm_timer_popped;
recheck_timer->repeat = FALSE;
} else {
was_error = TRUE;
}
if (was_error) {
register_fsa_error(C_FSA_INTERNAL, I_ERROR, NULL);
}
}
static int32_t
crmd_ipc_accept(qb_ipcs_connection_t * c, uid_t uid, gid_t gid)
{
crm_trace("Connection %p", c);
if (crm_client_new(c, uid, gid) == NULL) {
return -EIO;
}
return 0;
}
static void
crmd_ipc_created(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p", c);
}
static int32_t
crmd_ipc_dispatch(qb_ipcs_connection_t * c, void *data, size_t size)
{
uint32_t id = 0;
uint32_t flags = 0;
crm_client_t *client = crm_client_get(c);
xmlNode *msg = crm_ipcs_recv(client, data, size, &id, &flags);
crm_trace("Invoked: %s", crm_client_name(client));
crm_ipcs_send_ack(client, id, flags, "ack", __FUNCTION__, __LINE__);
if (msg == NULL) {
return 0;
}
#if ENABLE_ACL
CRM_ASSERT(client->user != NULL);
crm_acl_get_set_user(msg, F_CRM_USER, client->user);
#endif
crm_trace("Processing msg from %s", crm_client_name(client));
crm_log_xml_trace(msg, "controller[inbound]");
crm_xml_add(msg, F_CRM_SYS_FROM, client->id);
if (crmd_authorize_message(msg, client, NULL)) {
route_message(C_IPC_MESSAGE, msg);
}
trigger_fsa(fsa_source);
free_xml(msg);
return 0;
}
static int32_t
crmd_ipc_closed(qb_ipcs_connection_t * c)
{
crm_client_t *client = crm_client_get(c);
if (client) {
crm_trace("Disconnecting %sregistered client %s (%p/%p)",
(client->userdata? "" : "un"), crm_client_name(client),
c, client);
free(client->userdata);
crm_client_destroy(client);
trigger_fsa(fsa_source);
}
return 0;
}
static void
crmd_ipc_destroy(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p", c);
crmd_ipc_closed(c);
}
/* A_STOP */
void
do_stop(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state, enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
crm_trace("Closing IPC server");
mainloop_del_ipc_server(ipcs); ipcs = NULL;
register_fsa_input(C_FSA_INTERNAL, I_TERMINATE, NULL);
}
/* A_STARTED */
void
do_started(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state, enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
static struct qb_ipcs_service_handlers crmd_callbacks = {
.connection_accept = crmd_ipc_accept,
.connection_created = crmd_ipc_created,
.msg_process = crmd_ipc_dispatch,
.connection_closed = crmd_ipc_closed,
.connection_destroyed = crmd_ipc_destroy
};
if (cur_state != S_STARTING) {
crm_err("Start cancelled... %s", fsa_state2string(cur_state));
return;
} else if (is_set(fsa_input_register, R_MEMBERSHIP) == FALSE) {
crm_info("Delaying start, no membership data (%.16llx)", R_MEMBERSHIP);
crmd_fsa_stall(TRUE);
return;
} else if (is_set(fsa_input_register, R_LRM_CONNECTED) == FALSE) {
crm_info("Delaying start, not connected to executor (%.16llx)", R_LRM_CONNECTED);
crmd_fsa_stall(TRUE);
return;
} else if (is_set(fsa_input_register, R_CIB_CONNECTED) == FALSE) {
crm_info("Delaying start, CIB not connected (%.16llx)", R_CIB_CONNECTED);
crmd_fsa_stall(TRUE);
return;
} else if (is_set(fsa_input_register, R_READ_CONFIG) == FALSE) {
crm_info("Delaying start, Config not read (%.16llx)", R_READ_CONFIG);
crmd_fsa_stall(TRUE);
return;
} else if (is_set(fsa_input_register, R_PEER_DATA) == FALSE) {
crm_info("Delaying start, No peer data (%.16llx)", R_PEER_DATA);
crmd_fsa_stall(TRUE);
return;
}
crm_debug("Init server comms");
ipcs = crmd_ipc_server_init(&crmd_callbacks);
if (ipcs == NULL) {
crm_err("Failed to create IPC server: shutting down and inhibiting respawn");
register_fsa_error(C_FSA_INTERNAL, I_ERROR, NULL);
}
if (stonith_reconnect == NULL) {
int dummy;
stonith_reconnect = mainloop_add_trigger(G_PRIORITY_LOW, te_connect_stonith, &dummy);
}
set_bit(fsa_input_register, R_ST_REQUIRED);
mainloop_set_trigger(stonith_reconnect);
crm_notice("The local CRM is operational");
clear_bit(fsa_input_register, R_STARTING);
register_fsa_input(msg_data->fsa_cause, I_PENDING, NULL);
}
/* A_RECOVER */
void
do_recover(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state, enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
set_bit(fsa_input_register, R_IN_RECOVERY);
crm_warn("Fast-tracking shutdown in response to errors");
register_fsa_input(C_FSA_INTERNAL, I_TERMINATE, NULL);
}
/* *INDENT-OFF* */
static pe_cluster_option crmd_opts[] = {
/* name, old-name, validate, values, default, short description, long description */
{ "dc-version", NULL, "string", NULL, "none", NULL,
"Version of Pacemaker on the cluster's DC.",
"Includes the hash which identifies the exact changeset it was built from. Used for diagnostic purposes."
},
{ "cluster-infrastructure", NULL, "string", NULL, "corosync", NULL,
"The messaging stack on which Pacemaker is currently running.",
"Used for informational and diagnostic purposes." },
{ XML_CONFIG_ATTR_DC_DEADTIME, NULL, "time", NULL, "20s", &check_time,
"How long to wait for a response from other nodes during startup.",
"The \"correct\" value will depend on the speed/load of your network and the type of switches used."
},
{ XML_CONFIG_ATTR_RECHECK, NULL, "time",
"Zero disables polling. Positive values are an interval in seconds (unless other SI units are specified. eg. 5min)",
"15min", &check_timer,
"Polling interval for time based changes to options, resource parameters and constraints.",
"The Cluster is primarily event driven, however the configuration can have elements that change based on time."
" To ensure these changes take effect, we can optionally poll the cluster's status for changes."
},
{ "load-threshold", NULL, "percentage", NULL, "80%", &check_utilization,
"The maximum amount of system resources that should be used by nodes in the cluster",
"The cluster will slow down its recovery process when the amount of system resources used"
" (currently CPU) approaches this limit",
},
{ "node-action-limit", NULL, "integer", NULL, "0", &check_number,
"The maximum number of jobs that can be scheduled per node. Defaults to 2x cores"},
{ XML_CONFIG_ATTR_ELECTION_FAIL, NULL, "time", NULL, "2min", &check_timer,
"*** Advanced Use Only ***.", "If need to adjust this value, it probably indicates the presence of a bug."
},
{ XML_CONFIG_ATTR_FORCE_QUIT, NULL, "time", NULL, "20min", &check_timer,
"*** Advanced Use Only ***.", "If need to adjust this value, it probably indicates the presence of a bug."
},
{
"join-integration-timeout", "crmd-integration-timeout",
"time", NULL, "3min", &check_timer,
"*** Advanced Use Only ***",
"If need to adjust this value, it probably indicates the presence of a bug"
},
{
"join-finalization-timeout", "crmd-finalization-timeout",
"time", NULL, "30min", &check_timer,
"*** Advanced Use Only ***",
"If you need to adjust this value, it probably indicates the presence of a bug"
},
{
"transition-delay", "crmd-transition-delay",
"time", NULL, "0s", &check_timer,
"*** Advanced Use Only *** Enabling this option will slow down cluster recovery under all conditions",
"Delay cluster recovery for the configured interval to allow for additional/related events to occur.\n"
"Useful if your configuration is sensitive to the order in which ping updates arrive."
},
{ "stonith-watchdog-timeout", NULL, "time", NULL, NULL, &check_sbd_timeout,
"How long to wait before we can assume nodes are safely down", NULL
},
{ "stonith-max-attempts",NULL,"integer",NULL,"10",&check_positive_number,
"How many times stonith can fail before it will no longer be attempted on a target"
},
{ "no-quorum-policy", NULL, "enum", "stop, freeze, ignore, suicide", "stop", &check_quorum, NULL, NULL },
};
/* *INDENT-ON* */
void
crmd_metadata(void)
{
config_metadata("pacemaker-controld", "1.0",
"controller properties",
"Cluster properties used by Pacemaker's controller,"
" formerly known as crmd",
crmd_opts, DIMOF(crmd_opts));
}
static void
verify_crmd_options(GHashTable * options)
{
verify_all_options(options, crmd_opts, DIMOF(crmd_opts));
}
static const char *
crmd_pref(GHashTable * options, const char *name)
{
return get_cluster_pref(options, crmd_opts, DIMOF(crmd_opts), name);
}
static void
config_query_callback(xmlNode * msg, int call_id, int rc, xmlNode * output, void *user_data)
{
const char *value = NULL;
GHashTable *config_hash = NULL;
crm_time_t *now = crm_time_new(NULL);
xmlNode *crmconfig = NULL;
xmlNode *alerts = NULL;
if (rc != pcmk_ok) {
fsa_data_t *msg_data = NULL;
crm_err("Local CIB query resulted in an error: %s", pcmk_strerror(rc));
register_fsa_error(C_FSA_INTERNAL, I_ERROR, NULL);
if (rc == -EACCES || rc == -pcmk_err_schema_validation) {
crm_err("The cluster is mis-configured - shutting down and staying down");
set_bit(fsa_input_register, R_STAYDOWN);
}
goto bail;
}
crmconfig = output;
if ((crmconfig) &&
(crm_element_name(crmconfig)) &&
(strcmp(crm_element_name(crmconfig), XML_CIB_TAG_CRMCONFIG) != 0)) {
crmconfig = first_named_child(crmconfig, XML_CIB_TAG_CRMCONFIG);
}
if (!crmconfig) {
fsa_data_t *msg_data = NULL;
crm_err("Local CIB query for " XML_CIB_TAG_CRMCONFIG " section failed");
register_fsa_error(C_FSA_INTERNAL, I_ERROR, NULL);
goto bail;
}
crm_debug("Call %d : Parsing CIB options", call_id);
config_hash = crm_str_table_new();
unpack_instance_attributes(crmconfig, crmconfig, XML_CIB_TAG_PROPSET, NULL, config_hash,
CIB_OPTIONS_FIRST, FALSE, now);
verify_crmd_options(config_hash);
value = crmd_pref(config_hash, XML_CONFIG_ATTR_DC_DEADTIME);
election_trigger->period_ms = crm_get_msec(value);
value = crmd_pref(config_hash, "node-action-limit"); /* Also checks migration-limit */
throttle_update_job_max(value);
value = crmd_pref(config_hash, "load-threshold");
if(value) {
throttle_set_load_target(strtof(value, NULL) / 100.0);
}
value = crmd_pref(config_hash, "no-quorum-policy");
if (safe_str_eq(value, "suicide") && pcmk_locate_sbd()) {
no_quorum_suicide_escalation = TRUE;
}
value = crmd_pref(config_hash,"stonith-max-attempts");
update_stonith_max_attempts(value);
value = crmd_pref(config_hash, XML_CONFIG_ATTR_FORCE_QUIT);
shutdown_escalation_timer->period_ms = crm_get_msec(value);
/* How long to declare an election over - even if not everyone voted */
crm_debug("Shutdown escalation occurs after: %dms", shutdown_escalation_timer->period_ms);
value = crmd_pref(config_hash, XML_CONFIG_ATTR_ELECTION_FAIL);
controld_set_election_period(value);
value = crmd_pref(config_hash, XML_CONFIG_ATTR_RECHECK);
recheck_timer->period_ms = crm_get_msec(value);
crm_debug("Checking for expired actions every %dms", recheck_timer->period_ms);
value = crmd_pref(config_hash, "transition-delay");
transition_timer->period_ms = crm_get_msec(value);
value = crmd_pref(config_hash, "join-integration-timeout");
integration_timer->period_ms = crm_get_msec(value);
value = crmd_pref(config_hash, "join-finalization-timeout");
finalization_timer->period_ms = crm_get_msec(value);
free(fsa_cluster_name);
fsa_cluster_name = NULL;
value = g_hash_table_lookup(config_hash, "cluster-name");
if (value) {
fsa_cluster_name = strdup(value);
}
alerts = first_named_child(output, XML_CIB_TAG_ALERTS);
crmd_unpack_alerts(alerts);
set_bit(fsa_input_register, R_READ_CONFIG);
crm_trace("Triggering FSA: %s", __FUNCTION__);
mainloop_set_trigger(fsa_source);
g_hash_table_destroy(config_hash);
bail:
crm_time_free(now);
}
gboolean
crm_read_options(gpointer user_data)
{
int call_id =
fsa_cib_conn->cmds->query(fsa_cib_conn,
"//" XML_CIB_TAG_CRMCONFIG " | //" XML_CIB_TAG_ALERTS,
NULL, cib_xpath | cib_scope_local);
fsa_register_cib_callback(call_id, FALSE, NULL, config_query_callback);
crm_trace("Querying the CIB... call %d", call_id);
return TRUE;
}
/* A_READCONFIG */
void
do_read_config(long long action,
enum crmd_fsa_cause cause,
enum crmd_fsa_state cur_state,
enum crmd_fsa_input current_input, fsa_data_t * msg_data)
{
throttle_init();
mainloop_set_trigger(config_read);
}
void
crm_shutdown(int nsig)
{
if (crmd_mainloop != NULL && g_main_loop_is_running(crmd_mainloop)) {
if (is_set(fsa_input_register, R_SHUTDOWN)) {
crm_err("Escalating the shutdown");
register_fsa_input_before(C_SHUTDOWN, I_ERROR, NULL);
} else {
set_bit(fsa_input_register, R_SHUTDOWN);
register_fsa_input(C_SHUTDOWN, I_SHUTDOWN, NULL);
if (shutdown_escalation_timer->period_ms < 1) {
const char *value = crmd_pref(NULL, XML_CONFIG_ATTR_FORCE_QUIT);
int msec = crm_get_msec(value);
crm_debug("Using default shutdown escalation: %dms", msec);
shutdown_escalation_timer->period_ms = msec;
}
/* can't rely on this... */
crm_notice("Shutting down cluster resource manager " CRM_XS
" limit=%dms", shutdown_escalation_timer->period_ms);
crm_timer_start(shutdown_escalation_timer);
}
} else {
crm_info("exit from shutdown");
crmd_exit(CRM_EX_OK);
}
}
diff --git a/daemons/fenced/pacemaker-fenced.c b/daemons/fenced/pacemaker-fenced.c
index 80ad6aaa34..b7d6072375 100644
--- a/daemons/fenced/pacemaker-fenced.c
+++ b/daemons/fenced/pacemaker-fenced.c
@@ -1,1501 +1,1503 @@
/*
- * Copyright 2009-2018 Andrew Beekhof
+ * Copyright 2009-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include /* U32T ~ PRIu32, X32T ~ PRIx32 */
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
char *stonith_our_uname = NULL;
char *stonith_our_uuid = NULL;
long stonith_watchdog_timeout_ms = 0;
static GMainLoop *mainloop = NULL;
gboolean stand_alone = FALSE;
static gboolean no_cib_connect = FALSE;
static gboolean stonith_shutdown_flag = FALSE;
static qb_ipcs_service_t *ipcs = NULL;
static xmlNode *local_cib = NULL;
static pe_working_set_t *fenced_data_set = NULL;
static cib_t *cib_api = NULL;
static void *cib_library = NULL;
static void stonith_shutdown(int nsig);
static void stonith_cleanup(void);
static int32_t
st_ipc_accept(qb_ipcs_connection_t * c, uid_t uid, gid_t gid)
{
if (stonith_shutdown_flag) {
crm_info("Ignoring new client [%d] during shutdown", crm_ipcs_client_pid(c));
return -EPERM;
}
if (crm_client_new(c, uid, gid) == NULL) {
return -EIO;
}
return 0;
}
static void
st_ipc_created(qb_ipcs_connection_t * c)
{
crm_trace("Connection created for %p", c);
}
/* Exit code means? */
static int32_t
st_ipc_dispatch(qb_ipcs_connection_t * qbc, void *data, size_t size)
{
uint32_t id = 0;
uint32_t flags = 0;
int call_options = 0;
xmlNode *request = NULL;
crm_client_t *c = crm_client_get(qbc);
const char *op = NULL;
if (c == NULL) {
crm_info("Invalid client: %p", qbc);
return 0;
}
request = crm_ipcs_recv(c, data, size, &id, &flags);
if (request == NULL) {
crm_ipcs_send_ack(c, id, flags, "nack", __FUNCTION__, __LINE__);
return 0;
}
op = crm_element_value(request, F_CRM_TASK);
if(safe_str_eq(op, CRM_OP_RM_NODE_CACHE)) {
crm_xml_add(request, F_TYPE, T_STONITH_NG);
crm_xml_add(request, F_STONITH_OPERATION, op);
crm_xml_add(request, F_STONITH_CLIENTID, c->id);
crm_xml_add(request, F_STONITH_CLIENTNAME, crm_client_name(c));
crm_xml_add(request, F_STONITH_CLIENTNODE, stonith_our_uname);
send_cluster_message(NULL, crm_msg_stonith_ng, request, FALSE);
free_xml(request);
return 0;
}
if (c->name == NULL) {
const char *value = crm_element_value(request, F_STONITH_CLIENTNAME);
if (value == NULL) {
value = "unknown";
}
c->name = crm_strdup_printf("%s.%u", value, c->pid);
}
crm_element_value_int(request, F_STONITH_CALLOPTS, &call_options);
crm_trace("Flags %" X32T "/%u for command %" U32T " from %s",
flags, call_options, id, crm_client_name(c));
if (is_set(call_options, st_opt_sync_call)) {
CRM_ASSERT(flags & crm_ipc_client_response);
CRM_LOG_ASSERT(c->request_id == 0); /* This means the client has two synchronous events in-flight */
c->request_id = id; /* Reply only to the last one */
}
crm_xml_add(request, F_STONITH_CLIENTID, c->id);
crm_xml_add(request, F_STONITH_CLIENTNAME, crm_client_name(c));
crm_xml_add(request, F_STONITH_CLIENTNODE, stonith_our_uname);
crm_log_xml_trace(request, "Client[inbound]");
stonith_command(c, id, flags, request, NULL);
free_xml(request);
return 0;
}
/* Error code means? */
static int32_t
st_ipc_closed(qb_ipcs_connection_t * c)
{
crm_client_t *client = crm_client_get(c);
if (client == NULL) {
return 0;
}
crm_trace("Connection %p closed", c);
crm_client_destroy(client);
/* 0 means: yes, go ahead and destroy the connection */
return 0;
}
static void
st_ipc_destroy(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p destroyed", c);
st_ipc_closed(c);
}
static void
stonith_peer_callback(xmlNode * msg, void *private_data)
{
const char *remote_peer = crm_element_value(msg, F_ORIG);
const char *op = crm_element_value(msg, F_STONITH_OPERATION);
if (crm_str_eq(op, "poke", TRUE)) {
return;
}
crm_log_xml_trace(msg, "Peer[inbound]");
stonith_command(NULL, 0, 0, msg, remote_peer);
}
#if SUPPORT_COROSYNC
static void
stonith_peer_ais_callback(cpg_handle_t handle,
const struct cpg_name *groupName,
uint32_t nodeid, uint32_t pid, void *msg, size_t msg_len)
{
uint32_t kind = 0;
xmlNode *xml = NULL;
const char *from = NULL;
char *data = pcmk_message_common_cs(handle, nodeid, pid, msg, &kind, &from);
if(data == NULL) {
return;
}
if (kind == crm_class_cluster) {
xml = string2xml(data);
if (xml == NULL) {
crm_err("Invalid XML: '%.120s'", data);
free(data);
return;
}
crm_xml_add(xml, F_ORIG, from);
/* crm_xml_add_int(xml, F_SEQ, wrapper->id); */
stonith_peer_callback(xml, NULL);
}
free_xml(xml);
free(data);
return;
}
static void
stonith_peer_cs_destroy(gpointer user_data)
{
crm_crit("Lost connection to cluster layer, shutting down");
stonith_shutdown(0);
}
#endif
void
do_local_reply(xmlNode * notify_src, const char *client_id, gboolean sync_reply, gboolean from_peer)
{
/* send callback to originating child */
crm_client_t *client_obj = NULL;
int local_rc = pcmk_ok;
crm_trace("Sending response");
client_obj = crm_client_get_by_id(client_id);
crm_trace("Sending callback to request originator");
if (client_obj == NULL) {
local_rc = -1;
crm_trace("No client to sent the response to. F_STONITH_CLIENTID not set.");
} else {
int rid = 0;
if (sync_reply) {
CRM_LOG_ASSERT(client_obj->request_id);
rid = client_obj->request_id;
client_obj->request_id = 0;
crm_trace("Sending response %d to %s %s",
rid, client_obj->name, from_peer ? "(originator of delegated request)" : "");
} else {
crm_trace("Sending an event to %s %s",
client_obj->name, from_peer ? "(originator of delegated request)" : "");
}
local_rc = crm_ipcs_send(client_obj, rid, notify_src, sync_reply?crm_ipc_flags_none:crm_ipc_server_event);
}
if (local_rc < pcmk_ok && client_obj != NULL) {
crm_warn("%sSync reply to %s failed: %s",
sync_reply ? "" : "A-",
client_obj ? client_obj->name : "", pcmk_strerror(local_rc));
}
}
long long
get_stonith_flag(const char *name)
{
if (safe_str_eq(name, T_STONITH_NOTIFY_FENCE)) {
return st_callback_notify_fence;
} else if (safe_str_eq(name, STONITH_OP_DEVICE_ADD)) {
return st_callback_device_add;
} else if (safe_str_eq(name, STONITH_OP_DEVICE_DEL)) {
return st_callback_device_del;
} else if (safe_str_eq(name, T_STONITH_NOTIFY_HISTORY)) {
return st_callback_notify_history;
}
return st_callback_unknown;
}
static void
stonith_notify_client(gpointer key, gpointer value, gpointer user_data)
{
xmlNode *update_msg = user_data;
crm_client_t *client = value;
const char *type = NULL;
CRM_CHECK(client != NULL, return);
CRM_CHECK(update_msg != NULL, return);
type = crm_element_value(update_msg, F_SUBTYPE);
CRM_CHECK(type != NULL, crm_log_xml_err(update_msg, "notify"); return);
if (client->ipcs == NULL) {
crm_trace("Skipping client with NULL channel");
return;
}
if (client->options & get_stonith_flag(type)) {
int rc = crm_ipcs_send(client, 0, update_msg, crm_ipc_server_event | crm_ipc_server_error);
if (rc <= 0) {
crm_warn("%s notification of client %s.%.6s failed: %s (%d)",
type, crm_client_name(client), client->id, pcmk_strerror(rc), rc);
} else {
crm_trace("Sent %s notification to client %s.%.6s", type, crm_client_name(client),
client->id);
}
}
}
void
do_stonith_async_timeout_update(const char *client_id, const char *call_id, int timeout)
{
crm_client_t *client = NULL;
xmlNode *notify_data = NULL;
if (!timeout || !call_id || !client_id) {
return;
}
client = crm_client_get_by_id(client_id);
if (!client) {
return;
}
notify_data = create_xml_node(NULL, T_STONITH_TIMEOUT_VALUE);
crm_xml_add(notify_data, F_TYPE, T_STONITH_TIMEOUT_VALUE);
crm_xml_add(notify_data, F_STONITH_CALLID, call_id);
crm_xml_add_int(notify_data, F_STONITH_TIMEOUT, timeout);
crm_trace("timeout update is %d for client %s and call id %s", timeout, client_id, call_id);
if (client) {
crm_ipcs_send(client, 0, notify_data, crm_ipc_server_event);
}
free_xml(notify_data);
}
void
do_stonith_notify(int options, const char *type, int result, xmlNode * data)
{
/* TODO: Standardize the contents of data */
xmlNode *update_msg = create_xml_node(NULL, "notify");
CRM_CHECK(type != NULL,;);
crm_xml_add(update_msg, F_TYPE, T_STONITH_NOTIFY);
crm_xml_add(update_msg, F_SUBTYPE, type);
crm_xml_add(update_msg, F_STONITH_OPERATION, type);
crm_xml_add_int(update_msg, F_STONITH_RC, result);
if (data != NULL) {
add_message_xml(update_msg, F_STONITH_CALLDATA, data);
}
crm_trace("Notifying clients");
g_hash_table_foreach(client_connections, stonith_notify_client, update_msg);
free_xml(update_msg);
crm_trace("Notify complete");
}
static void
do_stonith_notify_config(int options, const char *op, int rc,
const char *desc, int active)
{
xmlNode *notify_data = create_xml_node(NULL, op);
CRM_CHECK(notify_data != NULL, return);
crm_xml_add(notify_data, F_STONITH_DEVICE, desc);
crm_xml_add_int(notify_data, F_STONITH_ACTIVE, active);
do_stonith_notify(options, op, rc, notify_data);
free_xml(notify_data);
}
void
do_stonith_notify_device(int options, const char *op, int rc, const char *desc)
{
do_stonith_notify_config(options, op, rc, desc, g_hash_table_size(device_list));
}
void
do_stonith_notify_level(int options, const char *op, int rc, const char *desc)
{
do_stonith_notify_config(options, op, rc, desc, g_hash_table_size(topology));
}
static void
topology_remove_helper(const char *node, int level)
{
int rc;
char *desc = NULL;
xmlNode *data = create_xml_node(NULL, XML_TAG_FENCING_LEVEL);
crm_xml_add(data, F_STONITH_ORIGIN, __FUNCTION__);
crm_xml_add_int(data, XML_ATTR_STONITH_INDEX, level);
crm_xml_add(data, XML_ATTR_STONITH_TARGET, node);
rc = stonith_level_remove(data, &desc);
do_stonith_notify_level(0, STONITH_OP_LEVEL_DEL, rc, desc);
free_xml(data);
free(desc);
}
static void
remove_cib_device(xmlXPathObjectPtr xpathObj)
{
int max = numXpathResults(xpathObj), lpc = 0;
for (lpc = 0; lpc < max; lpc++) {
const char *rsc_id = NULL;
const char *standard = NULL;
xmlNode *match = getXpathResult(xpathObj, lpc);
CRM_LOG_ASSERT(match != NULL);
if(match != NULL) {
standard = crm_element_value(match, XML_AGENT_ATTR_CLASS);
}
if (safe_str_neq(standard, PCMK_RESOURCE_CLASS_STONITH)) {
continue;
}
rsc_id = crm_element_value(match, XML_ATTR_ID);
stonith_device_remove(rsc_id, TRUE);
}
}
static void
handle_topology_change(xmlNode *match, bool remove)
{
int rc;
char *desc = NULL;
CRM_CHECK(match != NULL, return);
crm_trace("Updating %s", ID(match));
if(remove) {
int index = 0;
char *key = stonith_level_key(match, -1);
crm_element_value_int(match, XML_ATTR_STONITH_INDEX, &index);
topology_remove_helper(key, index);
free(key);
}
rc = stonith_level_register(match, &desc);
do_stonith_notify_level(0, STONITH_OP_LEVEL_ADD, rc, desc);
free(desc);
}
static void
remove_fencing_topology(xmlXPathObjectPtr xpathObj)
{
int max = numXpathResults(xpathObj), lpc = 0;
for (lpc = 0; lpc < max; lpc++) {
xmlNode *match = getXpathResult(xpathObj, lpc);
CRM_LOG_ASSERT(match != NULL);
if (match && crm_element_value(match, XML_DIFF_MARKER)) {
/* Deletion */
int index = 0;
char *target = stonith_level_key(match, -1);
crm_element_value_int(match, XML_ATTR_STONITH_INDEX, &index);
if (target == NULL) {
crm_err("Invalid fencing target in element %s", ID(match));
} else if (index <= 0) {
crm_err("Invalid level for %s in element %s", target, ID(match));
} else {
topology_remove_helper(target, index);
}
/* } else { Deal with modifications during the 'addition' stage */
}
}
}
static void
register_fencing_topology(xmlXPathObjectPtr xpathObj)
{
int max = numXpathResults(xpathObj), lpc = 0;
for (lpc = 0; lpc < max; lpc++) {
xmlNode *match = getXpathResult(xpathObj, lpc);
handle_topology_change(match, TRUE);
}
}
/* Fencing
*/
static void
fencing_topology_init()
{
xmlXPathObjectPtr xpathObj = NULL;
const char *xpath = "//" XML_TAG_FENCING_LEVEL;
crm_trace("Full topology refresh");
free_topology_list();
init_topology_list();
/* Grab everything */
xpathObj = xpath_search(local_cib, xpath);
register_fencing_topology(xpathObj);
freeXpathObject(xpathObj);
}
#define rsc_name(x) x->clone_name?x->clone_name:x->id
/*!
* \internal
* \brief Check whether our uname is in a resource's allowed node list
*
* \param[in] rsc Resource to check
*
* \return Pointer to node object if found, NULL otherwise
*/
static node_t *
our_node_allowed_for(resource_t *rsc)
{
GHashTableIter iter;
node_t *node = NULL;
if (rsc && stonith_our_uname) {
g_hash_table_iter_init(&iter, rsc->allowed_nodes);
while (g_hash_table_iter_next(&iter, NULL, (void **)&node)) {
if (node && strcmp(node->details->uname, stonith_our_uname) == 0) {
break;
}
node = NULL;
}
}
return node;
}
/*!
* \internal
* \brief If a resource or any of its children are STONITH devices, update their
* definitions given a cluster working set.
*
* \param[in] rsc Resource to check
* \param[in] data_set Cluster working set with device information
*/
static void cib_device_update(resource_t *rsc, pe_working_set_t *data_set)
{
node_t *node = NULL;
const char *value = NULL;
const char *rclass = NULL;
node_t *parent = NULL;
gboolean remove = TRUE;
/* If this is a complex resource, check children rather than this resource itself.
* TODO: Mark each installed device and remove if untouched when this process finishes.
*/
if(rsc->children) {
GListPtr gIter = NULL;
for (gIter = rsc->children; gIter != NULL; gIter = gIter->next) {
cib_device_update(gIter->data, data_set);
if(pe_rsc_is_clone(rsc)) {
crm_trace("Only processing one copy of the clone %s", rsc->id);
break;
}
}
return;
}
/* We only care about STONITH resources. */
rclass = crm_element_value(rsc->xml, XML_AGENT_ATTR_CLASS);
if (safe_str_neq(rclass, PCMK_RESOURCE_CLASS_STONITH)) {
return;
}
/* If this STONITH resource is disabled, just remove it. */
value = g_hash_table_lookup(rsc->meta, XML_RSC_ATTR_TARGET_ROLE);
if (safe_str_eq(value, RSC_STOPPED)) {
crm_info("Device %s has been disabled", rsc->id);
goto update_done;
}
/* Check whether our node is allowed for this resource (and its parent if in a group) */
node = our_node_allowed_for(rsc);
if (rsc->parent && (rsc->parent->variant == pe_group)) {
parent = our_node_allowed_for(rsc->parent);
}
if(node == NULL) {
/* Our node is disallowed, so remove the device */
GHashTableIter iter;
crm_info("Device %s has been disabled on %s: unknown", rsc->id, stonith_our_uname);
g_hash_table_iter_init(&iter, rsc->allowed_nodes);
while (g_hash_table_iter_next(&iter, NULL, (void **)&node)) {
crm_trace("Available: %s = %d", node->details->uname, node->weight);
}
goto update_done;
} else if(node->weight < 0 || (parent && parent->weight < 0)) {
/* Our node (or its group) is disallowed by score, so remove the device */
char *score = score2char((node->weight < 0) ? node->weight : parent->weight);
crm_info("Device %s has been disabled on %s: score=%s", rsc->id, stonith_our_uname, score);
free(score);
goto update_done;
} else {
/* Our node is allowed, so update the device information */
int rc;
xmlNode *data;
GHashTableIter gIter;
stonith_key_value_t *params = NULL;
const char *name = NULL;
const char *agent = crm_element_value(rsc->xml, XML_EXPR_ATTR_TYPE);
const char *rsc_provides = NULL;
crm_debug("Device %s is allowed on %s: score=%d", rsc->id, stonith_our_uname, node->weight);
get_rsc_attributes(rsc->parameters, rsc, node, data_set);
get_meta_attributes(rsc->meta, rsc, node, data_set);
rsc_provides = g_hash_table_lookup(rsc->meta, XML_RSC_ATTR_PROVIDES);
g_hash_table_iter_init(&gIter, rsc->parameters);
while (g_hash_table_iter_next(&gIter, (gpointer *) & name, (gpointer *) & value)) {
if (!name || !value) {
continue;
}
params = stonith_key_value_add(params, name, value);
crm_trace(" %s=%s", name, value);
}
remove = FALSE;
data = create_device_registration_xml(rsc_name(rsc), st_namespace_any,
agent, params, rsc_provides);
stonith_key_value_freeall(params, 1, 1);
rc = stonith_device_register(data, NULL, TRUE);
CRM_ASSERT(rc == pcmk_ok);
free_xml(data);
}
update_done:
if(remove && g_hash_table_lookup(device_list, rsc_name(rsc))) {
stonith_device_remove(rsc_name(rsc), TRUE);
}
}
extern xmlNode *do_calculations(pe_working_set_t * data_set, xmlNode * xml_input, crm_time_t * now);
/*!
* \internal
* \brief Update all STONITH device definitions based on current CIB
*/
static void
cib_devices_update(void)
{
GListPtr gIter = NULL;
crm_info("Updating devices to version %s.%s.%s",
crm_element_value(local_cib, XML_ATTR_GENERATION_ADMIN),
crm_element_value(local_cib, XML_ATTR_GENERATION),
crm_element_value(local_cib, XML_ATTR_NUMUPDATES));
CRM_ASSERT(fenced_data_set != NULL);
fenced_data_set->input = local_cib;
fenced_data_set->now = crm_time_new(NULL);
fenced_data_set->flags |= pe_flag_quick_location;
fenced_data_set->localhost = stonith_our_uname;
cluster_status(fenced_data_set);
do_calculations(fenced_data_set, NULL, NULL);
for (gIter = fenced_data_set->resources; gIter != NULL; gIter = gIter->next) {
cib_device_update(gIter->data, fenced_data_set);
}
fenced_data_set->input = NULL; // Wasn't a copy, so don't let API free it
pe_reset_working_set(fenced_data_set);
}
static void
update_cib_stonith_devices_v2(const char *event, xmlNode * msg)
{
xmlNode *change = NULL;
char *reason = NULL;
bool needs_update = FALSE;
xmlNode *patchset = get_message_xml(msg, F_CIB_UPDATE_RESULT);
for (change = __xml_first_child(patchset); change != NULL; change = __xml_next(change)) {
const char *op = crm_element_value(change, XML_DIFF_OP);
const char *xpath = crm_element_value(change, XML_DIFF_PATH);
const char *shortpath = NULL;
if ((op == NULL) ||
(strcmp(op, "move") == 0) ||
strstr(xpath, "/"XML_CIB_TAG_STATUS)) {
continue;
} else if (safe_str_eq(op, "delete") && strstr(xpath, "/"XML_CIB_TAG_RESOURCE)) {
const char *rsc_id = NULL;
char *search = NULL;
char *mutable = NULL;
if (strstr(xpath, XML_TAG_ATTR_SETS) ||
strstr(xpath, XML_TAG_META_SETS)) {
needs_update = TRUE;
reason = strdup("(meta) attribute deleted from resource");
break;
}
mutable = strdup(xpath);
rsc_id = strstr(mutable, "primitive[@id=\'");
if (rsc_id != NULL) {
rsc_id += strlen("primitive[@id=\'");
search = strchr(rsc_id, '\'');
}
if (search != NULL) {
*search = 0;
stonith_device_remove(rsc_id, TRUE);
} else {
crm_warn("Ignoring malformed CIB update (resource deletion)");
}
free(mutable);
} else if (strstr(xpath, "/"XML_CIB_TAG_RESOURCES) ||
strstr(xpath, "/"XML_CIB_TAG_CONSTRAINTS) ||
strstr(xpath, "/"XML_CIB_TAG_RSCCONFIG)) {
shortpath = strrchr(xpath, '/'); CRM_ASSERT(shortpath);
reason = crm_strdup_printf("%s %s", op, shortpath+1);
needs_update = TRUE;
break;
}
}
if(needs_update) {
crm_info("Updating device list from the cib: %s", reason);
cib_devices_update();
} else {
crm_trace("No updates for device list found in cib");
}
free(reason);
}
static void
update_cib_stonith_devices_v1(const char *event, xmlNode * msg)
{
const char *reason = "none";
gboolean needs_update = FALSE;
xmlXPathObjectPtr xpath_obj = NULL;
/* process new constraints */
xpath_obj = xpath_search(msg, "//" F_CIB_UPDATE_RESULT "//" XML_CONS_TAG_RSC_LOCATION);
if (numXpathResults(xpath_obj) > 0) {
int max = numXpathResults(xpath_obj), lpc = 0;
/* Safest and simplest to always recompute */
needs_update = TRUE;
reason = "new location constraint";
for (lpc = 0; lpc < max; lpc++) {
xmlNode *match = getXpathResult(xpath_obj, lpc);
crm_log_xml_trace(match, "new constraint");
}
}
freeXpathObject(xpath_obj);
/* process deletions */
xpath_obj = xpath_search(msg, "//" F_CIB_UPDATE_RESULT "//" XML_TAG_DIFF_REMOVED "//" XML_CIB_TAG_RESOURCE);
if (numXpathResults(xpath_obj) > 0) {
remove_cib_device(xpath_obj);
}
freeXpathObject(xpath_obj);
/* process additions */
xpath_obj = xpath_search(msg, "//" F_CIB_UPDATE_RESULT "//" XML_TAG_DIFF_ADDED "//" XML_CIB_TAG_RESOURCE);
if (numXpathResults(xpath_obj) > 0) {
int max = numXpathResults(xpath_obj), lpc = 0;
for (lpc = 0; lpc < max; lpc++) {
const char *rsc_id = NULL;
const char *standard = NULL;
xmlNode *match = getXpathResult(xpath_obj, lpc);
rsc_id = crm_element_value(match, XML_ATTR_ID);
standard = crm_element_value(match, XML_AGENT_ATTR_CLASS);
if (safe_str_neq(standard, PCMK_RESOURCE_CLASS_STONITH)) {
continue;
}
crm_trace("Fencing resource %s was added or modified", rsc_id);
reason = "new resource";
needs_update = TRUE;
}
}
freeXpathObject(xpath_obj);
if(needs_update) {
crm_info("Updating device list from the cib: %s", reason);
cib_devices_update();
}
}
static void
update_cib_stonith_devices(const char *event, xmlNode * msg)
{
int format = 1;
xmlNode *patchset = get_message_xml(msg, F_CIB_UPDATE_RESULT);
CRM_ASSERT(patchset);
crm_element_value_int(patchset, "format", &format);
switch(format) {
case 1:
update_cib_stonith_devices_v1(event, msg);
break;
case 2:
update_cib_stonith_devices_v2(event, msg);
break;
default:
crm_warn("Unknown patch format: %d", format);
}
}
/* Needs to hold node name + attribute name + attribute value + 75 */
#define XPATH_MAX 512
/*!
* \internal
* \brief Check whether a node has a specific attribute name/value
*
* \param[in] node Name of node to check
* \param[in] name Name of an attribute to look for
* \param[in] value The value the named attribute needs to be set to in order to be considered a match
*
* \return TRUE if the locally cached CIB has the specified node attribute
*/
gboolean
node_has_attr(const char *node, const char *name, const char *value)
{
char xpath[XPATH_MAX];
xmlNode *match;
int n;
CRM_CHECK(local_cib != NULL, return FALSE);
/* Search for the node's attributes in the CIB. While the schema allows
* multiple sets of instance attributes, and allows instance attributes to
* use id-ref to reference values elsewhere, that is intended for resources,
* so we ignore that here.
*/
n = snprintf(xpath, XPATH_MAX, "//" XML_CIB_TAG_NODES
"/" XML_CIB_TAG_NODE "[@uname='%s']/" XML_TAG_ATTR_SETS
"/" XML_CIB_TAG_NVPAIR "[@name='%s' and @value='%s']",
node, name, value);
match = get_xpath_object(xpath, local_cib, LOG_TRACE);
CRM_CHECK(n < XPATH_MAX, return FALSE);
return (match != NULL);
}
static void
update_fencing_topology(const char *event, xmlNode * msg)
{
int format = 1;
const char *xpath;
xmlXPathObjectPtr xpathObj = NULL;
xmlNode *patchset = get_message_xml(msg, F_CIB_UPDATE_RESULT);
CRM_ASSERT(patchset);
crm_element_value_int(patchset, "format", &format);
if(format == 1) {
/* Process deletions (only) */
xpath = "//" F_CIB_UPDATE_RESULT "//" XML_TAG_DIFF_REMOVED "//" XML_TAG_FENCING_LEVEL;
xpathObj = xpath_search(msg, xpath);
remove_fencing_topology(xpathObj);
freeXpathObject(xpathObj);
/* Process additions and changes */
xpath = "//" F_CIB_UPDATE_RESULT "//" XML_TAG_DIFF_ADDED "//" XML_TAG_FENCING_LEVEL;
xpathObj = xpath_search(msg, xpath);
register_fencing_topology(xpathObj);
freeXpathObject(xpathObj);
} else if(format == 2) {
xmlNode *change = NULL;
int add[] = { 0, 0, 0 };
int del[] = { 0, 0, 0 };
xml_patch_versions(patchset, add, del);
for (change = __xml_first_child(patchset); change != NULL; change = __xml_next(change)) {
const char *op = crm_element_value(change, XML_DIFF_OP);
const char *xpath = crm_element_value(change, XML_DIFF_PATH);
if(op == NULL) {
continue;
} else if(strstr(xpath, "/" XML_TAG_FENCING_LEVEL) != NULL) {
/* Change to a specific entry */
crm_trace("Handling %s operation %d.%d.%d for %s", op, add[0], add[1], add[2], xpath);
if(strcmp(op, "move") == 0) {
continue;
} else if(strcmp(op, "create") == 0) {
handle_topology_change(change->children, FALSE);
} else if(strcmp(op, "modify") == 0) {
xmlNode *match = first_named_child(change, XML_DIFF_RESULT);
if(match) {
handle_topology_change(match->children, TRUE);
}
} else if(strcmp(op, "delete") == 0) {
/* Nuclear option, all we have is the path and an id... not enough to remove a specific entry */
crm_info("Re-initializing fencing topology after %s operation %d.%d.%d for %s",
op, add[0], add[1], add[2], xpath);
fencing_topology_init();
return;
}
} else if (strstr(xpath, "/" XML_TAG_FENCING_TOPOLOGY) != NULL) {
/* Change to the topology in general */
crm_info("Re-initializing fencing topology after top-level %s operation %d.%d.%d for %s",
op, add[0], add[1], add[2], xpath);
fencing_topology_init();
return;
} else if (strstr(xpath, "/" XML_CIB_TAG_CONFIGURATION)) {
/* Changes to the whole config section, possibly including the topology as a whild */
if(first_named_child(change, XML_TAG_FENCING_TOPOLOGY) == NULL) {
crm_trace("Nothing for us in %s operation %d.%d.%d for %s.",
op, add[0], add[1], add[2], xpath);
} else if(strcmp(op, "delete") == 0 || strcmp(op, "create") == 0) {
crm_info("Re-initializing fencing topology after top-level %s operation %d.%d.%d for %s.",
op, add[0], add[1], add[2], xpath);
fencing_topology_init();
return;
}
} else {
crm_trace("Nothing for us in %s operation %d.%d.%d for %s",
op, add[0], add[1], add[2], xpath);
}
}
} else {
crm_warn("Unknown patch format: %d", format);
}
}
static bool have_cib_devices = FALSE;
static void
update_cib_cache_cb(const char *event, xmlNode * msg)
{
int rc = pcmk_ok;
xmlNode *stonith_enabled_xml = NULL;
xmlNode *stonith_watchdog_xml = NULL;
const char *stonith_enabled_s = NULL;
static gboolean stonith_enabled_saved = TRUE;
if(!have_cib_devices) {
crm_trace("Skipping updates until we get a full dump");
return;
} else if(msg == NULL) {
crm_trace("Missing %s update", event);
return;
}
/* Maintain a local copy of the CIB so that we have full access
* to device definitions, location constraints, and node attributes
*/
if (local_cib != NULL) {
int rc = pcmk_ok;
xmlNode *patchset = NULL;
crm_element_value_int(msg, F_CIB_RC, &rc);
if (rc != pcmk_ok) {
return;
}
patchset = get_message_xml(msg, F_CIB_UPDATE_RESULT);
xml_log_patchset(LOG_TRACE, "Config update", patchset);
rc = xml_apply_patchset(local_cib, patchset, TRUE);
switch (rc) {
case pcmk_ok:
case -pcmk_err_old_data:
break;
case -pcmk_err_diff_resync:
case -pcmk_err_diff_failed:
crm_notice("[%s] Patch aborted: %s (%d)", event, pcmk_strerror(rc), rc);
free_xml(local_cib);
local_cib = NULL;
break;
default:
crm_warn("[%s] ABORTED: %s (%d)", event, pcmk_strerror(rc), rc);
free_xml(local_cib);
local_cib = NULL;
}
}
if (local_cib == NULL) {
crm_trace("Re-requesting the full cib");
rc = cib_api->cmds->query(cib_api, NULL, &local_cib, cib_scope_local | cib_sync_call);
if(rc != pcmk_ok) {
crm_err("Couldn't retrieve the CIB: %s (%d)", pcmk_strerror(rc), rc);
return;
}
CRM_ASSERT(local_cib != NULL);
stonith_enabled_saved = FALSE; /* Trigger a full refresh below */
}
crm_peer_caches_refresh(local_cib);
stonith_enabled_xml = get_xpath_object("//nvpair[@name='stonith-enabled']", local_cib, LOG_TRACE);
if (stonith_enabled_xml) {
stonith_enabled_s = crm_element_value(stonith_enabled_xml, XML_NVPAIR_ATTR_VALUE);
}
if (stonith_enabled_s == NULL || crm_is_true(stonith_enabled_s)) {
long timeout_ms = 0;
const char *value = NULL;
stonith_watchdog_xml = get_xpath_object("//nvpair[@name='stonith-watchdog-timeout']", local_cib, LOG_TRACE);
if (stonith_watchdog_xml) {
value = crm_element_value(stonith_watchdog_xml, XML_NVPAIR_ATTR_VALUE);
}
if(value) {
timeout_ms = crm_get_msec(value);
}
if (timeout_ms < 0) {
timeout_ms = crm_auto_watchdog_timeout();
}
if(timeout_ms != stonith_watchdog_timeout_ms) {
crm_notice("New watchdog timeout %lds (was %lds)", timeout_ms/1000, stonith_watchdog_timeout_ms/1000);
stonith_watchdog_timeout_ms = timeout_ms;
}
} else {
stonith_watchdog_timeout_ms = 0;
}
if (stonith_enabled_s && crm_is_true(stonith_enabled_s) == FALSE) {
crm_trace("Ignoring cib updates while stonith is disabled");
stonith_enabled_saved = FALSE;
return;
} else if (stonith_enabled_saved == FALSE) {
crm_info("Updating stonith device and topology lists now that stonith is enabled");
stonith_enabled_saved = TRUE;
fencing_topology_init();
cib_devices_update();
} else {
update_fencing_topology(event, msg);
update_cib_stonith_devices(event, msg);
}
}
static void
init_cib_cache_cb(xmlNode * msg, int call_id, int rc, xmlNode * output, void *user_data)
{
crm_info("Updating device list from the cib: init");
have_cib_devices = TRUE;
local_cib = copy_xml(output);
crm_peer_caches_refresh(local_cib);
fencing_topology_init();
cib_devices_update();
}
static void
stonith_shutdown(int nsig)
{
stonith_shutdown_flag = TRUE;
crm_info("Terminating with %d clients",
crm_hash_table_size(client_connections));
if (mainloop != NULL && g_main_loop_is_running(mainloop)) {
g_main_loop_quit(mainloop);
} else {
stonith_cleanup();
crm_exit(CRM_EX_OK);
}
}
static void
cib_connection_destroy(gpointer user_data)
{
if (stonith_shutdown_flag) {
crm_info("Connection to the CIB manager closed");
return;
} else {
crm_crit("Lost connection to the CIB manager, shutting down");
}
if (cib_api) {
cib_api->cmds->signoff(cib_api);
}
stonith_shutdown(0);
}
static void
stonith_cleanup(void)
{
if (cib_api) {
cib_api->cmds->signoff(cib_api);
}
if (ipcs) {
qb_ipcs_destroy(ipcs);
}
crm_peer_destroy();
crm_client_cleanup();
free_stonith_remote_op_list();
free_topology_list();
free_device_list();
free_metadata_cache();
free(stonith_our_uname);
stonith_our_uname = NULL;
free_xml(local_cib);
local_cib = NULL;
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
{"stand-alone", 0, 0, 's'},
{"stand-alone-w-cpg", 0, 0, 'c'},
{"logfile", 1, 0, 'l'},
{"verbose", 0, 0, 'V'},
{"version", 0, 0, '$'},
{"help", 0, 0, '?'},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
static void
setup_cib(void)
{
int rc, retries = 0;
static cib_t *(*cib_new_fn) (void) = NULL;
if (cib_new_fn == NULL) {
cib_new_fn = find_library_function(&cib_library, CIB_LIBRARY, "cib_new", TRUE);
}
if (cib_new_fn != NULL) {
cib_api = (*cib_new_fn) ();
}
if (cib_api == NULL) {
crm_err("No connection to the CIB manager");
return;
}
do {
sleep(retries);
rc = cib_api->cmds->signon(cib_api, CRM_SYSTEM_STONITHD, cib_command);
} while (rc == -ENOTCONN && ++retries < 5);
if (rc != pcmk_ok) {
crm_err("Could not connect to the CIB manager: %s (%d)", pcmk_strerror(rc), rc);
} else if (pcmk_ok !=
cib_api->cmds->add_notify_callback(cib_api, T_CIB_DIFF_NOTIFY, update_cib_cache_cb)) {
crm_err("Could not set CIB notification callback");
} else {
rc = cib_api->cmds->query(cib_api, NULL, NULL, cib_scope_local);
cib_api->cmds->register_callback(cib_api, rc, 120, FALSE, NULL, "init_cib_cache_cb",
init_cib_cache_cb);
cib_api->cmds->set_connection_dnotify(cib_api, cib_connection_destroy);
crm_info("Watching for stonith topology changes");
}
}
struct qb_ipcs_service_handlers ipc_callbacks = {
.connection_accept = st_ipc_accept,
.connection_created = st_ipc_created,
.msg_process = st_ipc_dispatch,
.connection_closed = st_ipc_closed,
.connection_destroyed = st_ipc_destroy
};
/*!
* \internal
* \brief Callback for peer status changes
*
* \param[in] type What changed
* \param[in] node What peer had the change
* \param[in] data Previous value of what changed
*/
static void
st_peer_update_callback(enum crm_status_type type, crm_node_t * node, const void *data)
{
if ((type != crm_status_processes) && !is_set(node->flags, crm_remote_node)) {
/*
* This is a hack until we can send to a nodeid and/or we fix node name lookups
* These messages are ignored in stonith_peer_callback()
*/
xmlNode *query = create_xml_node(NULL, "stonith_command");
crm_xml_add(query, F_XML_TAGNAME, "stonith_command");
crm_xml_add(query, F_TYPE, T_STONITH_NG);
crm_xml_add(query, F_STONITH_OPERATION, "poke");
crm_debug("Broadcasting our uname because of node %u", node->id);
send_cluster_message(NULL, crm_msg_stonith_ng, query, FALSE);
free_xml(query);
}
}
int
main(int argc, char **argv)
{
int flag;
int lpc = 0;
int argerr = 0;
int option_index = 0;
crm_cluster_t cluster;
const char *actions[] = { "reboot", "off", "on", "list", "monitor", "status" };
crm_log_preinit(NULL, argc, argv);
crm_set_options(NULL, "mode [options]", long_options,
"Provides a summary of cluster's current state."
"\n\nOutputs varying levels of detail in a number of different formats.\n");
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1) {
break;
}
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case 'l':
crm_add_logfile(optarg);
break;
case 's':
stand_alone = TRUE;
break;
case 'c':
stand_alone = FALSE;
no_cib_connect = TRUE;
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
default:
++argerr;
break;
}
}
if (argc - optind == 1 && safe_str_eq("metadata", argv[optind])) {
printf("\n");
printf("\n");
printf(" 1.0\n");
printf(" Instance attributes available for all \"stonith\"-class resources"
" and used by Pacemaker's fence daemon, formerly known as stonithd\n");
printf(" Instance attributes available for all \"stonith\"-class resources\n");
printf(" \n");
#if 0
// priority is not implemented yet
printf(" \n");
printf(" Devices that are not in a topology "
"are tried in order of highest to lowest integer priority\n");
printf(" \n");
printf(" \n");
#endif
printf(" \n", STONITH_ATTR_HOSTARG);
printf
(" Advanced use only: An alternate parameter to supply instead of 'port'\n");
printf
(" Some devices do not support the standard 'port' parameter or may provide additional ones.\n"
"Use this to specify an alternate, device-specific, parameter that should indicate the machine to be fenced.\n"
"A value of 'none' can be used to tell the cluster not to supply any additional parameters.\n"
" \n");
printf(" \n");
printf(" \n");
printf(" \n", STONITH_ATTR_HOSTMAP);
printf
(" A mapping of host names to ports numbers for devices that do not support host names.\n");
printf
(" Eg. node1:1;node2:2,3 would tell the cluster to use port 1 for node1 and ports 2 and 3 for node2\n");
printf(" \n");
printf(" \n");
printf(" \n", STONITH_ATTR_HOSTLIST);
printf
(" A list of machines controlled by this device (Optional unless %s=static-list).\n",
STONITH_ATTR_HOSTCHECK);
printf(" \n");
printf(" \n");
printf(" \n", STONITH_ATTR_HOSTCHECK);
printf
(" How to determine which machines are controlled by the device.\n");
printf(" Allowed values: dynamic-list "
"(query the device via the 'list' command), static-list "
"(check the " STONITH_ATTR_HOSTLIST " attribute), status "
"(query the device via the 'status' command), none (assume "
"every device can fence every machine)\n");
printf(" \n");
printf(" \n");
printf(" \n", STONITH_ATTR_DELAY_MAX);
printf
(" Enable a random delay for stonith actions and specify the maximum of random delay.\n");
printf
(" This prevents double fencing when using slow devices such as sbd.\n"
"Use this to enable a random delay for stonith actions.\n"
"The overall delay is derived from this random delay value adding a static delay so that the sum is kept below the maximum delay.\n");
printf(" \n");
printf(" \n");
printf(" \n", STONITH_ATTR_DELAY_BASE);
printf
(" Enable a base delay for stonith actions and specify base delay value.\n");
printf
(" This prevents double fencing when different delays are configured on the nodes.\n"
"Use this to enable a static delay for stonith actions.\n"
"The overall delay is derived from a random delay value adding this static delay so that the sum is kept below the maximum delay.\n");
printf(" \n");
printf(" \n");
printf(" \n", STONITH_ATTR_ACTION_LIMIT);
printf
(" The maximum number of actions can be performed in parallel on this device\n");
printf
(" Cluster property concurrent-fencing=true needs to be configured first.\n"
"Then use this to specify the maximum number of actions can be performed in parallel on this device. -1 is unlimited.\n");
printf(" \n");
printf(" \n");
for (lpc = 0; lpc < DIMOF(actions); lpc++) {
printf(" \n", actions[lpc]);
printf
(" Advanced use only: An alternate command to run instead of '%s'\n",
actions[lpc]);
printf
(" Some devices do not support the standard commands or may provide additional ones.\n"
"Use this to specify an alternate, device-specific, command that implements the '%s' action.\n",
actions[lpc]);
printf(" \n", actions[lpc]);
printf(" \n");
printf(" \n", actions[lpc]);
printf
(" Advanced use only: Specify an alternate timeout to use for %s actions instead of stonith-timeout\n",
actions[lpc]);
printf
(" Some devices need much more/less time to complete than normal.\n"
"Use this to specify an alternate, device-specific, timeout for '%s' actions.\n",
actions[lpc]);
printf(" \n");
printf(" \n");
printf(" \n", actions[lpc]);
printf
(" Advanced use only: The maximum number of times to retry the '%s' command within the timeout period\n",
actions[lpc]);
printf(" Some devices do not support multiple connections."
" Operations may 'fail' if the device is busy with another task so Pacemaker will automatically retry the operation, if there is time remaining."
" Use this option to alter the number of times Pacemaker retries '%s' actions before giving up."
"\n", actions[lpc]);
printf(" \n");
printf(" \n");
}
printf(" \n");
printf("\n");
return CRM_EX_OK;
}
if (optind != argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
crm_log_init(NULL, LOG_INFO, TRUE, FALSE, argc, argv, FALSE);
mainloop_add_signal(SIGTERM, stonith_shutdown);
crm_peer_init();
fenced_data_set = pe_new_working_set();
CRM_ASSERT(fenced_data_set != NULL);
if (stand_alone == FALSE) {
if (is_corosync_cluster()) {
#if SUPPORT_COROSYNC
cluster.destroy = stonith_peer_cs_destroy;
cluster.cpg.cpg_deliver_fn = stonith_peer_ais_callback;
cluster.cpg.cpg_confchg_fn = pcmk_cpg_membership;
#endif
}
crm_set_status_callback(&st_peer_update_callback);
if (crm_cluster_connect(&cluster) == FALSE) {
crm_crit("Cannot sign in to the cluster... terminating");
crm_exit(CRM_EX_FATAL);
}
stonith_our_uname = cluster.uname;
stonith_our_uuid = cluster.uuid;
if (no_cib_connect == FALSE) {
setup_cib();
}
} else {
stonith_our_uname = strdup("localhost");
}
init_device_list();
init_topology_list();
if(stonith_watchdog_timeout_ms > 0) {
int rc;
xmlNode *xml;
stonith_key_value_t *params = NULL;
params = stonith_key_value_add(params, STONITH_ATTR_HOSTLIST, stonith_our_uname);
xml = create_device_registration_xml("watchdog", st_namespace_internal,
STONITH_WATCHDOG_AGENT, params,
NULL);
stonith_key_value_freeall(params, 1, 1);
rc = stonith_device_register(xml, NULL, FALSE);
free_xml(xml);
if (rc != pcmk_ok) {
crm_crit("Cannot register watchdog pseudo fence agent");
crm_exit(CRM_EX_FATAL);
}
}
stonith_ipc_server_init(&ipcs, &ipc_callbacks);
/* Create the mainloop and run it... */
mainloop = g_main_loop_new(NULL, FALSE);
crm_info("Starting %s mainloop", crm_system_name);
g_main_loop_run(mainloop);
stonith_cleanup();
pe_free_working_set(fenced_data_set);
- return crm_exit(CRM_EX_OK);
+ crm_exit(CRM_EX_OK);
}
diff --git a/daemons/pacemakerd/pacemakerd.c b/daemons/pacemakerd/pacemakerd.c
index 4f88c5d8e0..eca7f4d7cd 100644
--- a/daemons/pacemakerd/pacemakerd.c
+++ b/daemons/pacemakerd/pacemakerd.c
@@ -1,1136 +1,1138 @@
/*
- * Copyright 2010-2018 Andrew Beekhof
+ * Copyright 2010-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include "pacemakerd.h"
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#ifdef SUPPORT_COROSYNC
#include
#endif
#include
#include
static gboolean pcmk_quorate = FALSE;
static gboolean fatal_error = FALSE;
static GMainLoop *mainloop = NULL;
#define PCMK_PROCESS_CHECK_INTERVAL 5
static const char *local_name = NULL;
static uint32_t local_nodeid = 0;
static crm_trigger_t *shutdown_trigger = NULL;
static const char *pid_file = "/var/run/pacemaker.pid";
typedef struct pcmk_child_s {
int pid;
long flag;
int start_seq;
int respawn_count;
gboolean respawn;
const char *name;
const char *uid;
const char *command;
gboolean active_before_startup;
} pcmk_child_t;
/* Index into the array below */
#define PCMK_CHILD_CONTROLD 3
static pcmk_child_t pcmk_children[] = {
{
0, crm_proc_none, 0, 0, FALSE, "none",
NULL, NULL
},
{
0, crm_proc_execd, 3, 0, TRUE, "pacemaker-execd",
NULL, CRM_DAEMON_DIR "/pacemaker-execd"
},
{
0, crm_proc_based, 1, 0, TRUE, "pacemaker-based",
CRM_DAEMON_USER, CRM_DAEMON_DIR "/pacemaker-based"
},
{
0, crm_proc_controld, 6, 0, TRUE, "pacemaker-controld",
CRM_DAEMON_USER, CRM_DAEMON_DIR "/pacemaker-controld"
},
{
0, crm_proc_attrd, 4, 0, TRUE, "pacemaker-attrd",
CRM_DAEMON_USER, CRM_DAEMON_DIR "/pacemaker-attrd"
},
{
0, crm_proc_schedulerd, 5, 0, TRUE, "pacemaker-schedulerd",
CRM_DAEMON_USER, CRM_DAEMON_DIR "/pacemaker-schedulerd"
},
{
0, crm_proc_fenced, 2, 0, TRUE, "pacemaker-fenced",
NULL, CRM_DAEMON_DIR "/pacemaker-fenced"
},
};
static gboolean start_child(pcmk_child_t * child);
static gboolean update_node_processes(uint32_t id, const char *uname,
uint32_t procs);
void update_process_clients(crm_client_t *client);
static uint32_t
get_process_list(void)
{
int lpc = 0;
uint32_t procs = crm_get_cluster_proc();
for (lpc = 0; lpc < SIZEOF(pcmk_children); lpc++) {
if (pcmk_children[lpc].pid != 0) {
procs |= pcmk_children[lpc].flag;
}
}
return procs;
}
static void
pcmk_process_exit(pcmk_child_t * child)
{
child->pid = 0;
child->active_before_startup = FALSE;
/* Broadcast the fact that one of our processes died ASAP
*
* Try to get some logging of the cause out first though
* because we're probably about to get fenced
*
* Potentially do this only if respawn_count > N
* to allow for local recovery
*/
update_node_processes(local_nodeid, NULL, get_process_list());
child->respawn_count += 1;
if (child->respawn_count > MAX_RESPAWN) {
crm_err("Child respawn count exceeded by %s", child->name);
child->respawn = FALSE;
}
if (shutdown_trigger) {
mainloop_set_trigger(shutdown_trigger);
update_node_processes(local_nodeid, NULL, get_process_list());
} else if (child->respawn && crm_is_true(getenv("PCMK_fail_fast"))) {
crm_err("Rebooting system because of %s", child->name);
pcmk_panic(__FUNCTION__);
} else if (child->respawn) {
crm_notice("Respawning failed child process: %s", child->name);
start_child(child);
}
}
static void pcmk_exit_with_cluster(int exitcode)
{
#ifdef SUPPORT_COROSYNC
corosync_cfg_handle_t cfg_handle;
cs_error_t err;
if (exitcode == CRM_EX_FATAL) {
crm_info("Asking Corosync to shut down");
err = corosync_cfg_initialize(&cfg_handle, NULL);
if (err != CS_OK) {
crm_warn("Unable to open handle to corosync to close it down. err=%d", err);
}
err = corosync_cfg_try_shutdown(cfg_handle, COROSYNC_CFG_SHUTDOWN_FLAG_IMMEDIATE);
if (err != CS_OK) {
crm_warn("Corosync shutdown failed. err=%d", err);
}
corosync_cfg_finalize(cfg_handle);
}
#endif
crm_exit(exitcode);
}
static void
pcmk_child_exit(mainloop_child_t * p, pid_t pid, int core, int signo, int exitcode)
{
pcmk_child_t *child = mainloop_child_userdata(p);
const char *name = mainloop_child_name(p);
if (signo) {
do_crm_log(((signo == SIGKILL)? LOG_WARNING : LOG_ERR),
"%s[%d] terminated with signal %d (core=%d)",
name, pid, signo, core);
} else {
switch(exitcode) {
case CRM_EX_OK:
crm_info("%s[%d] exited with status %d (%s)",
name, pid, exitcode, crm_exit_str(exitcode));
break;
case CRM_EX_FATAL:
crm_warn("Shutting cluster down because %s[%d] had fatal failure",
name, pid);
child->respawn = FALSE;
fatal_error = TRUE;
pcmk_shutdown(SIGTERM);
break;
case CRM_EX_PANIC:
do_crm_log_always(LOG_EMERG,
"%s[%d] instructed the machine to reset",
name, pid);
child->respawn = FALSE;
fatal_error = TRUE;
pcmk_panic(__FUNCTION__);
pcmk_shutdown(SIGTERM);
break;
default:
crm_err("%s[%d] exited with status %d (%s)",
name, pid, exitcode, crm_exit_str(exitcode));
break;
}
}
pcmk_process_exit(child);
}
static gboolean
stop_child(pcmk_child_t * child, int signal)
{
if (signal == 0) {
signal = SIGTERM;
}
if (child->command == NULL) {
crm_debug("Nothing to do for child \"%s\"", child->name);
return TRUE;
}
if (child->pid <= 0) {
crm_trace("Client %s not running", child->name);
return TRUE;
}
errno = 0;
if (kill(child->pid, signal) == 0) {
crm_notice("Stopping %s "CRM_XS" sent signal %d to process %d",
child->name, signal, child->pid);
} else {
crm_perror(LOG_ERR, "Could not stop %s (process %d) with signal %d",
child->name, child->pid, signal);
}
return TRUE;
}
static char *opts_default[] = { NULL, NULL };
static char *opts_vgrind[] = { NULL, NULL, NULL, NULL, NULL };
static gboolean
start_child(pcmk_child_t * child)
{
int lpc = 0;
uid_t uid = 0;
gid_t gid = 0;
struct rlimit oflimits;
gboolean use_valgrind = FALSE;
gboolean use_callgrind = FALSE;
const char *devnull = "/dev/null";
const char *env_valgrind = getenv("PCMK_valgrind_enabled");
const char *env_callgrind = getenv("PCMK_callgrind_enabled");
child->active_before_startup = FALSE;
if (child->command == NULL) {
crm_info("Nothing to do for child \"%s\"", child->name);
return TRUE;
}
if (env_callgrind != NULL && crm_is_true(env_callgrind)) {
use_callgrind = TRUE;
use_valgrind = TRUE;
} else if (env_callgrind != NULL && strstr(env_callgrind, child->name)) {
use_callgrind = TRUE;
use_valgrind = TRUE;
} else if (env_valgrind != NULL && crm_is_true(env_valgrind)) {
use_valgrind = TRUE;
} else if (env_valgrind != NULL && strstr(env_valgrind, child->name)) {
use_valgrind = TRUE;
}
if (use_valgrind && strlen(VALGRIND_BIN) == 0) {
crm_warn("Cannot enable valgrind for %s:"
" The location of the valgrind binary is unknown", child->name);
use_valgrind = FALSE;
}
if (child->uid) {
if (crm_user_lookup(child->uid, &uid, &gid) < 0) {
crm_err("Invalid user (%s) for %s: not found", child->uid, child->name);
return FALSE;
}
crm_info("Using uid=%u and group=%u for process %s", uid, gid, child->name);
}
child->pid = fork();
CRM_ASSERT(child->pid != -1);
if (child->pid > 0) {
/* parent */
mainloop_child_add(child->pid, 0, child->name, child, pcmk_child_exit);
crm_info("Forked child %d for process %s%s", child->pid, child->name,
use_valgrind ? " (valgrind enabled: " VALGRIND_BIN ")" : "");
update_node_processes(local_nodeid, NULL, get_process_list());
return TRUE;
} else {
/* Start a new session */
(void)setsid();
/* Setup the two alternate arg arrays */
opts_vgrind[0] = strdup(VALGRIND_BIN);
if (use_callgrind) {
opts_vgrind[1] = strdup("--tool=callgrind");
opts_vgrind[2] = strdup("--callgrind-out-file=" CRM_STATE_DIR "/callgrind.out.%p");
opts_vgrind[3] = strdup(child->command);
opts_vgrind[4] = NULL;
} else {
opts_vgrind[1] = strdup(child->command);
opts_vgrind[2] = NULL;
opts_vgrind[3] = NULL;
opts_vgrind[4] = NULL;
}
opts_default[0] = strdup(child->command);
if(gid) {
// Whether we need root group access to talk to cluster layer
bool need_root_group = TRUE;
if (is_corosync_cluster()) {
/* Corosync clusters can drop root group access, because we set
* uidgid.gid.${gid}=1 via CMAP, which allows these processes to
* connect to corosync.
*/
need_root_group = FALSE;
}
// Drop root group access if not needed
if (!need_root_group && (setgid(gid) < 0)) {
crm_perror(LOG_ERR, "Could not set group to %d", gid);
}
/* Initialize supplementary groups to only those always granted to
* the user, plus haclient (so we can access IPC).
*/
if (initgroups(child->uid, gid) < 0) {
crm_err("Cannot initialize groups for %s: %s (%d)", child->uid, pcmk_strerror(errno), errno);
}
}
if (uid && setuid(uid) < 0) {
crm_perror(LOG_ERR, "Could not set user to %d (%s)", uid, child->uid);
}
/* Close all open file descriptors */
getrlimit(RLIMIT_NOFILE, &oflimits);
for (lpc = 0; lpc < oflimits.rlim_cur; lpc++) {
close(lpc);
}
(void)open(devnull, O_RDONLY); /* Stdin: fd 0 */
(void)open(devnull, O_WRONLY); /* Stdout: fd 1 */
(void)open(devnull, O_WRONLY); /* Stderr: fd 2 */
if (use_valgrind) {
(void)execvp(VALGRIND_BIN, opts_vgrind);
} else {
(void)execvp(child->command, opts_default);
}
crm_perror(LOG_ERR, "FATAL: Cannot exec %s", child->command);
crm_exit(CRM_EX_FATAL);
}
return TRUE; /* never reached */
}
static gboolean
escalate_shutdown(gpointer data)
{
pcmk_child_t *child = data;
if (child->pid) {
/* Use SIGSEGV instead of SIGKILL to create a core so we can see what it was up to */
crm_err("Child %s not terminating in a timely manner, forcing", child->name);
stop_child(child, SIGSEGV);
}
return FALSE;
}
static gboolean
pcmk_shutdown_worker(gpointer user_data)
{
static int phase = 0;
static time_t next_log = 0;
static int max = SIZEOF(pcmk_children);
int lpc = 0;
if (phase == 0) {
crm_notice("Shutting down Pacemaker");
phase = max;
}
for (; phase > 0; phase--) {
/* Don't stop anything with start_seq < 1 */
for (lpc = max - 1; lpc >= 0; lpc--) {
pcmk_child_t *child = &(pcmk_children[lpc]);
if (phase != child->start_seq) {
continue;
}
if (child->pid) {
time_t now = time(NULL);
if (child->respawn) {
next_log = now + 30;
child->respawn = FALSE;
stop_child(child, SIGTERM);
if (phase < pcmk_children[PCMK_CHILD_CONTROLD].start_seq) {
g_timeout_add(180000 /* 3m */ , escalate_shutdown, child);
}
} else if (now >= next_log) {
next_log = now + 30;
crm_notice("Still waiting for %s to terminate "
CRM_XS " pid=%d seq=%d",
child->name, child->pid, child->start_seq);
}
return TRUE;
}
/* cleanup */
crm_debug("%s confirmed stopped", child->name);
child->pid = 0;
}
}
/* send_cluster_id(); */
crm_notice("Shutdown complete");
{
const char *delay = daemon_option("shutdown_delay");
if(delay) {
sync();
sleep(crm_get_msec(delay) / 1000);
}
}
g_main_loop_quit(mainloop);
if (fatal_error) {
crm_notice("Shutting down and staying down after fatal error");
pcmk_exit_with_cluster(CRM_EX_FATAL);
}
return TRUE;
}
static void
pcmk_ignore(int nsig)
{
crm_info("Ignoring signal %s (%d)", strsignal(nsig), nsig);
}
static void
pcmk_sigquit(int nsig)
{
pcmk_panic(__FUNCTION__);
}
void
pcmk_shutdown(int nsig)
{
if (shutdown_trigger == NULL) {
shutdown_trigger = mainloop_add_trigger(G_PRIORITY_HIGH, pcmk_shutdown_worker, NULL);
}
mainloop_set_trigger(shutdown_trigger);
}
static int32_t
pcmk_ipc_accept(qb_ipcs_connection_t * c, uid_t uid, gid_t gid)
{
crm_trace("Connection %p", c);
if (crm_client_new(c, uid, gid) == NULL) {
return -EIO;
}
return 0;
}
static void
pcmk_ipc_created(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p", c);
}
/* Exit code means? */
static int32_t
pcmk_ipc_dispatch(qb_ipcs_connection_t * qbc, void *data, size_t size)
{
uint32_t id = 0;
uint32_t flags = 0;
const char *task = NULL;
crm_client_t *c = crm_client_get(qbc);
xmlNode *msg = crm_ipcs_recv(c, data, size, &id, &flags);
crm_ipcs_send_ack(c, id, flags, "ack", __FUNCTION__, __LINE__);
if (msg == NULL) {
return 0;
}
task = crm_element_value(msg, F_CRM_TASK);
if (crm_str_eq(task, CRM_OP_QUIT, TRUE)) {
/* Time to quit */
crm_notice("Shutting down in response to ticket %s (%s)",
crm_element_value(msg, F_CRM_REFERENCE), crm_element_value(msg, F_CRM_ORIGIN));
pcmk_shutdown(15);
} else if (crm_str_eq(task, CRM_OP_RM_NODE_CACHE, TRUE)) {
/* Send to everyone */
struct iovec *iov;
int id = 0;
const char *name = NULL;
crm_element_value_int(msg, XML_ATTR_ID, &id);
name = crm_element_value(msg, XML_ATTR_UNAME);
crm_notice("Instructing peers to remove references to node %s/%u", name, id);
iov = calloc(1, sizeof(struct iovec));
iov->iov_base = dump_xml_unformatted(msg);
iov->iov_len = 1 + strlen(iov->iov_base);
send_cpg_iov(iov);
} else {
update_process_clients(c);
}
free_xml(msg);
return 0;
}
/* Error code means? */
static int32_t
pcmk_ipc_closed(qb_ipcs_connection_t * c)
{
crm_client_t *client = crm_client_get(c);
if (client == NULL) {
return 0;
}
crm_trace("Connection %p", c);
crm_client_destroy(client);
return 0;
}
static void
pcmk_ipc_destroy(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p", c);
pcmk_ipc_closed(c);
}
struct qb_ipcs_service_handlers mcp_ipc_callbacks = {
.connection_accept = pcmk_ipc_accept,
.connection_created = pcmk_ipc_created,
.msg_process = pcmk_ipc_dispatch,
.connection_closed = pcmk_ipc_closed,
.connection_destroyed = pcmk_ipc_destroy
};
/*!
* \internal
* \brief Send an XML message with process list of all known peers to client(s)
*
* \param[in] client Send message to this client, or all clients if NULL
*/
void
update_process_clients(crm_client_t *client)
{
GHashTableIter iter;
crm_node_t *node = NULL;
xmlNode *update = create_xml_node(NULL, "nodes");
if (is_corosync_cluster()) {
crm_xml_add_int(update, "quorate", pcmk_quorate);
}
g_hash_table_iter_init(&iter, crm_peer_cache);
while (g_hash_table_iter_next(&iter, NULL, (gpointer *) & node)) {
xmlNode *xml = create_xml_node(update, "node");
crm_xml_add_int(xml, "id", node->id);
crm_xml_add(xml, "uname", node->uname);
crm_xml_add(xml, "state", node->state);
crm_xml_add_int(xml, "processes", node->processes);
}
if(client) {
crm_trace("Sending process list to client %s", client->id);
crm_ipcs_send(client, 0, update, crm_ipc_server_event);
} else {
crm_trace("Sending process list to %d clients", crm_hash_table_size(client_connections));
g_hash_table_iter_init(&iter, client_connections);
while (g_hash_table_iter_next(&iter, NULL, (gpointer *) & client)) {
crm_ipcs_send(client, 0, update, crm_ipc_server_event);
}
}
free_xml(update);
}
/*!
* \internal
* \brief Send a CPG message with local node's process list to all peers
*/
static void
update_process_peers(void)
{
/* Do nothing for corosync-2 based clusters */
struct iovec *iov = calloc(1, sizeof(struct iovec));
CRM_ASSERT(iov);
if (local_name) {
iov->iov_base = crm_strdup_printf("",
local_name, get_process_list());
} else {
iov->iov_base = crm_strdup_printf("",
get_process_list());
}
iov->iov_len = strlen(iov->iov_base) + 1;
crm_trace("Sending %s", (char*) iov->iov_base);
send_cpg_iov(iov);
}
/*!
* \internal
* \brief Update a node's process list, notifying clients and peers if needed
*
* \param[in] id Node ID of affected node
* \param[in] uname Uname of affected node
* \param[in] procs Affected node's process list mask
*
* \return TRUE if the process list changed, FALSE otherwise
*/
static gboolean
update_node_processes(uint32_t id, const char *uname, uint32_t procs)
{
gboolean changed = FALSE;
crm_node_t *node = crm_get_peer(id, uname);
if (procs != 0) {
if (procs != node->processes) {
crm_debug("Node %s now has process list: %.32x (was %.32x)",
node->uname, procs, node->processes);
node->processes = procs;
changed = TRUE;
/* If local node's processes have changed, notify clients/peers */
if (id == local_nodeid) {
update_process_clients(NULL);
update_process_peers();
}
} else {
crm_trace("Node %s still has process list: %.32x", node->uname, procs);
}
}
return changed;
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{"shutdown", 0, 0, 'S', "\tInstruct Pacemaker to shutdown on this machine"},
{"features", 0, 0, 'F', "\tDisplay the full version and list of features Pacemaker was built with"},
{"-spacer-", 1, 0, '-', "\nAdditional Options:"},
{"foreground", 0, 0, 'f', "\t(Ignored) Pacemaker always runs in the foreground"},
{"pid-file", 1, 0, 'p', "\t(Ignored) Daemon pid file location"},
{"standby", 0, 0, 's', "\tStart node in standby state"},
{NULL, 0, 0, 0}
};
/* *INDENT-ON* */
static void
mcp_chown(const char *path, uid_t uid, gid_t gid)
{
int rc = chown(path, uid, gid);
if (rc < 0) {
crm_warn("Cannot change the ownership of %s to user %s and gid %d: %s",
path, CRM_DAEMON_USER, gid, pcmk_strerror(errno));
}
}
#if SUPPORT_PROCFS
static gboolean
check_active_before_startup_processes(gpointer user_data)
{
int start_seq = 1, lpc = 0;
static int max = SIZEOF(pcmk_children);
gboolean keep_tracking = FALSE;
for (start_seq = 1; start_seq < max; start_seq++) {
for (lpc = 0; lpc < max; lpc++) {
if (pcmk_children[lpc].active_before_startup == FALSE) {
/* we are already tracking it as a child process. */
continue;
} else if (start_seq != pcmk_children[lpc].start_seq) {
continue;
} else {
const char *name = pcmk_children[lpc].name;
if (crm_pid_active(pcmk_children[lpc].pid, name) != 1) {
crm_notice("Process %s terminated (pid=%d)",
name, pcmk_children[lpc].pid);
pcmk_process_exit(&(pcmk_children[lpc]));
continue;
}
}
/* at least one of the processes found at startup
* is still going, so keep this recurring timer around */
keep_tracking = TRUE;
}
}
return keep_tracking;
}
#endif // SUPPORT_PROCFS
static void
find_and_track_existing_processes(void)
{
#if SUPPORT_PROCFS
DIR *dp;
struct dirent *entry;
bool start_tracker = FALSE;
char entry_name[16];
dp = opendir("/proc");
if (!dp) {
/* no proc directory to search through */
crm_notice("Can not read /proc directory to track existing components");
return;
}
while ((entry = readdir(dp)) != NULL) {
int pid;
int max = SIZEOF(pcmk_children);
int i;
if (crm_procfs_process_info(entry, entry_name, &pid) < 0) {
continue;
}
for (i = 0; i < max; i++) {
if ((pcmk_children[i].start_seq != 0)
&& !strncmp(entry_name, pcmk_children[i].name, 15)
&& (crm_pid_active(pid, NULL) == 1)) {
crm_notice("Tracking existing %s process (pid=%d)",
pcmk_children[i].name, pid);
pcmk_children[i].pid = pid;
pcmk_children[i].active_before_startup = TRUE;
start_tracker = TRUE;
break;
}
}
}
if (start_tracker) {
g_timeout_add_seconds(PCMK_PROCESS_CHECK_INTERVAL, check_active_before_startup_processes,
NULL);
}
closedir(dp);
#else
crm_notice("No procfs support, so skipping check for existing components");
#endif // SUPPORT_PROCFS
}
static void
init_children_processes(void)
{
int start_seq = 1, lpc = 0;
static int max = SIZEOF(pcmk_children);
/* start any children that have not been detected */
for (start_seq = 1; start_seq < max; start_seq++) {
/* don't start anything with start_seq < 1 */
for (lpc = 0; lpc < max; lpc++) {
if (pcmk_children[lpc].pid) {
/* we are already tracking it */
continue;
}
if (start_seq == pcmk_children[lpc].start_seq) {
start_child(&(pcmk_children[lpc]));
}
}
}
/* From this point on, any daemons being started will be due to
* respawning rather than node start.
*
* This may be useful for the daemons to know
*/
setenv("PCMK_respawned", "true", 1);
}
static void
mcp_cpg_destroy(gpointer user_data)
{
crm_crit("Lost connection to cluster layer, shutting down");
crm_exit(CRM_EX_DISCONNECT);
}
/*!
* \internal
* \brief Process a CPG message (process list or manual peer cache removal)
*
* \param[in] handle CPG connection (ignored)
* \param[in] groupName CPG group name (ignored)
* \param[in] nodeid ID of affected node
* \param[in] pid Process ID (ignored)
* \param[in] msg CPG XML message
* \param[in] msg_len Length of msg in bytes (ignored)
*/
static void
mcp_cpg_deliver(cpg_handle_t handle,
const struct cpg_name *groupName,
uint32_t nodeid, uint32_t pid, void *msg, size_t msg_len)
{
xmlNode *xml = string2xml(msg);
const char *task = crm_element_value(xml, F_CRM_TASK);
crm_trace("Received CPG message (%s): %.200s",
(task? task : "process list"), (char*)msg);
if (task == NULL) {
if (nodeid == local_nodeid) {
crm_debug("Ignoring message with local node's process list");
} else {
uint32_t procs = 0;
const char *uname = crm_element_value(xml, "uname");
crm_element_value_int(xml, "proclist", (int *)&procs);
if (update_node_processes(nodeid, uname, procs)) {
update_process_clients(NULL);
}
}
} else if (crm_str_eq(task, CRM_OP_RM_NODE_CACHE, TRUE)) {
int id = 0;
const char *name = NULL;
crm_element_value_int(xml, XML_ATTR_ID, &id);
name = crm_element_value(xml, XML_ATTR_UNAME);
reap_crm_member(id, name);
}
if (xml != NULL) {
free_xml(xml);
}
}
static void
mcp_cpg_membership(cpg_handle_t handle,
const struct cpg_name *groupName,
const struct cpg_address *member_list, size_t member_list_entries,
const struct cpg_address *left_list, size_t left_list_entries,
const struct cpg_address *joined_list, size_t joined_list_entries)
{
/* Update peer cache if needed */
pcmk_cpg_membership(handle, groupName, member_list, member_list_entries,
left_list, left_list_entries,
joined_list, joined_list_entries);
/* Always broadcast our own presence after any membership change */
update_process_peers();
}
static gboolean
mcp_quorum_callback(unsigned long long seq, gboolean quorate)
{
pcmk_quorate = quorate;
return TRUE;
}
static void
mcp_quorum_destroy(gpointer user_data)
{
crm_info("connection lost");
}
int
main(int argc, char **argv)
{
int rc;
int flag;
int argerr = 0;
int option_index = 0;
gboolean shutdown = FALSE;
uid_t pcmk_uid = 0;
gid_t pcmk_gid = 0;
struct rlimit cores;
crm_ipc_t *old_instance = NULL;
qb_ipcs_service_t *ipcs = NULL;
static crm_cluster_t cluster;
crm_log_preinit(NULL, argc, argv);
crm_set_options(NULL, "mode [options]", long_options, "Start/Stop Pacemaker\n");
mainloop_add_signal(SIGHUP, pcmk_ignore);
mainloop_add_signal(SIGQUIT, pcmk_sigquit);
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case 'f':
/* Legacy */
break;
case 'p':
pid_file = optarg;
break;
case 's':
set_daemon_option("node_start_state", "standby");
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
case 'S':
shutdown = TRUE;
break;
case 'F':
printf("Pacemaker %s (Build: %s)\n Supporting v%s: %s\n", PACEMAKER_VERSION, BUILD_VERSION,
CRM_FEATURE_SET, CRM_FEATURES);
crm_exit(CRM_EX_OK);
default:
printf("Argument code 0%o (%c) is not (?yet?) supported\n", flag, flag);
++argerr;
break;
}
}
if (optind < argc) {
printf("non-option ARGV-elements: ");
while (optind < argc)
printf("%s ", argv[optind++]);
printf("\n");
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
setenv("LC_ALL", "C", 1);
set_daemon_option("mcp", "true");
crm_log_init(NULL, LOG_INFO, TRUE, FALSE, argc, argv, FALSE);
crm_debug("Checking for old instances of %s", CRM_SYSTEM_MCP);
old_instance = crm_ipc_new(CRM_SYSTEM_MCP, 0);
crm_ipc_connect(old_instance);
if (shutdown) {
crm_debug("Terminating previous instance");
while (crm_ipc_connected(old_instance)) {
xmlNode *cmd =
create_request(CRM_OP_QUIT, NULL, NULL, CRM_SYSTEM_MCP, CRM_SYSTEM_MCP, NULL);
crm_debug(".");
crm_ipc_send(old_instance, cmd, 0, 0, NULL);
free_xml(cmd);
sleep(2);
}
crm_ipc_close(old_instance);
crm_ipc_destroy(old_instance);
crm_exit(CRM_EX_OK);
} else if (crm_ipc_connected(old_instance)) {
crm_ipc_close(old_instance);
crm_ipc_destroy(old_instance);
crm_err("Pacemaker is already active, aborting startup");
crm_exit(CRM_EX_FATAL);
}
crm_ipc_close(old_instance);
crm_ipc_destroy(old_instance);
if (mcp_read_config() == FALSE) {
crm_notice("Could not obtain corosync config data, exiting");
crm_exit(CRM_EX_UNAVAILABLE);
}
// OCF shell functions and cluster-glue need facility under different name
{
const char *facility = daemon_option("logfacility");
if (facility && safe_str_neq(facility, "none")) {
setenv("HA_LOGFACILITY", facility, 1);
}
}
crm_notice("Starting Pacemaker %s "CRM_XS" build=%s features:%s",
PACEMAKER_VERSION, BUILD_VERSION, CRM_FEATURES);
mainloop = g_main_loop_new(NULL, FALSE);
rc = getrlimit(RLIMIT_CORE, &cores);
if (rc < 0) {
crm_perror(LOG_ERR, "Cannot determine current maximum core size.");
} else {
if (cores.rlim_max == 0 && geteuid() == 0) {
cores.rlim_max = RLIM_INFINITY;
} else {
crm_info("Maximum core file size is: %lu", (unsigned long)cores.rlim_max);
}
cores.rlim_cur = cores.rlim_max;
rc = setrlimit(RLIMIT_CORE, &cores);
if (rc < 0) {
crm_perror(LOG_ERR,
"Core file generation will remain disabled."
" Core files are an important diagnostic tool, so"
" please consider enabling them by default.");
}
}
if (crm_user_lookup(CRM_DAEMON_USER, &pcmk_uid, &pcmk_gid) < 0) {
crm_err("Cluster user %s does not exist, aborting Pacemaker startup", CRM_DAEMON_USER);
crm_exit(CRM_EX_NOUSER);
}
mkdir(CRM_STATE_DIR, 0750);
mcp_chown(CRM_STATE_DIR, pcmk_uid, pcmk_gid);
/* Used to store core/blackbox/scheduler/cib files in */
crm_build_path(CRM_PACEMAKER_DIR, 0750);
mcp_chown(CRM_PACEMAKER_DIR, pcmk_uid, pcmk_gid);
/* Used to store core files in */
crm_build_path(CRM_CORE_DIR, 0750);
mcp_chown(CRM_CORE_DIR, pcmk_uid, pcmk_gid);
/* Used to store blackbox dumps in */
crm_build_path(CRM_BLACKBOX_DIR, 0750);
mcp_chown(CRM_BLACKBOX_DIR, pcmk_uid, pcmk_gid);
// Used to store scheduler inputs in
crm_build_path(PE_STATE_DIR, 0750);
mcp_chown(PE_STATE_DIR, pcmk_uid, pcmk_gid);
/* Used to store the cluster configuration */
crm_build_path(CRM_CONFIG_DIR, 0750);
mcp_chown(CRM_CONFIG_DIR, pcmk_uid, pcmk_gid);
// Don't build CRM_RSCTMP_DIR, pacemaker-execd will do it
ipcs = mainloop_add_ipc_server(CRM_SYSTEM_MCP, QB_IPC_NATIVE, &mcp_ipc_callbacks);
if (ipcs == NULL) {
crm_err("Couldn't start IPC server");
crm_exit(CRM_EX_OSERR);
}
/* Allows us to block shutdown */
if (cluster_connect_cfg(&local_nodeid) == FALSE) {
crm_err("Couldn't connect to Corosync's CFG service");
crm_exit(CRM_EX_PROTOCOL);
}
if(pcmk_locate_sbd() > 0) {
setenv("PCMK_watchdog", "true", 1);
} else {
setenv("PCMK_watchdog", "false", 1);
}
find_and_track_existing_processes();
cluster.destroy = mcp_cpg_destroy;
cluster.cpg.cpg_deliver_fn = mcp_cpg_deliver;
cluster.cpg.cpg_confchg_fn = mcp_cpg_membership;
crm_set_autoreap(FALSE);
rc = pcmk_ok;
if (cluster_connect_cpg(&cluster) == FALSE) {
crm_err("Couldn't connect to Corosync's CPG service");
rc = -ENOPROTOOPT;
} else if (cluster_connect_quorum(mcp_quorum_callback, mcp_quorum_destroy)
== FALSE) {
rc = -ENOTCONN;
} else {
local_name = get_local_node_name();
update_node_processes(local_nodeid, local_name, get_process_list());
mainloop_add_signal(SIGTERM, pcmk_shutdown);
mainloop_add_signal(SIGINT, pcmk_shutdown);
init_children_processes();
crm_info("Starting mainloop");
g_main_loop_run(mainloop);
}
if (ipcs) {
crm_trace("Closing IPC server");
mainloop_del_ipc_server(ipcs);
ipcs = NULL;
}
g_main_loop_unref(mainloop);
cluster_disconnect_cpg(&cluster);
cluster_disconnect_cfg();
- return crm_exit(crm_errno2exit(rc));
+ crm_exit(crm_errno2exit(rc));
}
diff --git a/daemons/schedulerd/pacemaker-schedulerd.c b/daemons/schedulerd/pacemaker-schedulerd.c
index 4107d6dbff..1139b515f3 100644
--- a/daemons/schedulerd/pacemaker-schedulerd.c
+++ b/daemons/schedulerd/pacemaker-schedulerd.c
@@ -1,186 +1,188 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#define OPTARGS "hVc"
static GMainLoop *mainloop = NULL;
static qb_ipcs_service_t *ipcs = NULL;
void pengine_shutdown(int nsig);
static int32_t
pe_ipc_accept(qb_ipcs_connection_t * c, uid_t uid, gid_t gid)
{
crm_trace("Connection %p", c);
if (crm_client_new(c, uid, gid) == NULL) {
return -EIO;
}
return 0;
}
static void
pe_ipc_created(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p", c);
}
gboolean process_pe_message(xmlNode * msg, xmlNode * xml_data, crm_client_t * sender);
static int32_t
pe_ipc_dispatch(qb_ipcs_connection_t * qbc, void *data, size_t size)
{
uint32_t id = 0;
uint32_t flags = 0;
crm_client_t *c = crm_client_get(qbc);
xmlNode *msg = crm_ipcs_recv(c, data, size, &id, &flags);
crm_ipcs_send_ack(c, id, flags, "ack", __FUNCTION__, __LINE__);
if (msg != NULL) {
xmlNode *data_xml = get_message_xml(msg, F_CRM_DATA);
process_pe_message(msg, data_xml, c);
free_xml(msg);
}
return 0;
}
/* Error code means? */
static int32_t
pe_ipc_closed(qb_ipcs_connection_t * c)
{
crm_client_t *client = crm_client_get(c);
if (client == NULL) {
return 0;
}
crm_trace("Connection %p", c);
crm_client_destroy(client);
return 0;
}
static void
pe_ipc_destroy(qb_ipcs_connection_t * c)
{
crm_trace("Connection %p", c);
pe_ipc_closed(c);
}
struct qb_ipcs_service_handlers ipc_callbacks = {
.connection_accept = pe_ipc_accept,
.connection_created = pe_ipc_created,
.msg_process = pe_ipc_dispatch,
.connection_closed = pe_ipc_closed,
.connection_destroyed = pe_ipc_destroy
};
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
int flag;
int index = 0;
int argerr = 0;
crm_log_preinit(NULL, argc, argv);
crm_set_options(NULL, "[options]",
long_options, "Daemon for calculating the cluster's response to events");
mainloop_add_signal(SIGTERM, pengine_shutdown);
while (1) {
flag = crm_get_option(argc, argv, &index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case 'h': /* Help message */
crm_help('?', CRM_EX_OK);
break;
default:
++argerr;
break;
}
}
if (argc - optind == 1 && safe_str_eq("metadata", argv[optind])) {
pe_metadata();
return CRM_EX_OK;
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
crm_log_init(NULL, LOG_INFO, TRUE, FALSE, argc, argv, FALSE);
if (pcmk__daemon_can_write(PE_STATE_DIR, NULL) == FALSE) {
crm_err("Terminating due to bad permissions on " PE_STATE_DIR);
fprintf(stderr,
"ERROR: Bad permissions on " PE_STATE_DIR " (see logs for details)\n");
fflush(stderr);
return CRM_EX_FATAL;
}
crm_debug("Init server comms");
ipcs = mainloop_add_ipc_server(CRM_SYSTEM_PENGINE, QB_IPC_SHM, &ipc_callbacks);
if (ipcs == NULL) {
crm_err("Failed to create IPC server: shutting down and inhibiting respawn");
crm_exit(CRM_EX_FATAL);
}
/* Create the mainloop and run it... */
crm_info("Starting %s", crm_system_name);
mainloop = g_main_loop_new(NULL, FALSE);
g_main_loop_run(mainloop);
libpengine_fini();
crm_info("Exiting %s", crm_system_name);
- return crm_exit(CRM_EX_OK);
+ crm_exit(CRM_EX_OK);
}
void
pengine_shutdown(int nsig)
{
mainloop_del_ipc_server(ipcs);
libpengine_fini();
crm_exit(CRM_EX_OK);
}
diff --git a/include/crm/common/results.h b/include/crm/common/results.h
index 0fb2ee2043..4b16c45b6b 100644
--- a/include/crm/common/results.h
+++ b/include/crm/common/results.h
@@ -1,144 +1,144 @@
/*
* Copyright 2012-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU Lesser General Public License
* version 2.1 or later (LGPLv2.1+) WITHOUT ANY WARRANTY.
*/
#ifndef CRM_RESULTS__H
# define CRM_RESULTS__H
#ifdef __cplusplus
extern "C" {
#endif
/*!
* \file
* \brief Function and executable result codes
* \ingroup core
*/
# define CRM_ASSERT(expr) do { \
if(__unlikely((expr) == FALSE)) { \
crm_abort(__FILE__, __FUNCTION__, __LINE__, #expr, TRUE, FALSE); \
abort(); /* Redundant but it makes static analyzers happy */ \
} \
} while(0)
/*
* Function return codes
*
* For system error codes, see:
* - /usr/include/asm-generic/errno.h
* - /usr/include/asm-generic/errno-base.h
*/
# define pcmk_ok 0
# define PCMK_ERROR_OFFSET 190 /* Replacements on non-linux systems, see include/portability.h */
# define PCMK_CUSTOM_OFFSET 200 /* Purely custom codes */
# define pcmk_err_generic 201
# define pcmk_err_no_quorum 202
# define pcmk_err_schema_validation 203
# define pcmk_err_transform_failed 204
# define pcmk_err_old_data 205
# define pcmk_err_diff_failed 206
# define pcmk_err_diff_resync 207
# define pcmk_err_cib_modified 208
# define pcmk_err_cib_backup 209
# define pcmk_err_cib_save 210
# define pcmk_err_schema_unchanged 211
# define pcmk_err_cib_corrupt 212
# define pcmk_err_multiple 213
# define pcmk_err_node_unknown 214
# define pcmk_err_already 215
# define pcmk_err_bad_nvpair 216
/*
* Exit status codes
*
* We want well-specified (i.e. OS-invariant) exit status codes for our daemons
* and applications so they can be relied on by callers. (Function return codes
* and errno's do not make good exit statuses.)
*
* The only hard rule is that exit statuses must be between 0 and 255; all else
* is convention. Universally, 0 is success, and 1 is generic error (excluding
* OSes we don't support -- for example, OpenVMS considers 1 success!).
*
* For init scripts, the LSB gives meaning to 0-7, and sets aside 150-199 for
* application use. OCF adds 8-9 and 189-199.
*
* sysexits.h was an attempt to give additional meanings, but never really
* caught on. It uses 0 and 64-78.
*
* Bash reserves 2 ("incorrect builtin usage") and 126-255 (126 is "command
* found but not executable", 127 is "command not found", 128 + n is
* "interrupted by signal n").
*
* tldp.org recommends 64-113 for application use.
*
* We try to overlap with the above conventions when practical.
*/
typedef enum crm_exit_e {
// Common convention
CRM_EX_OK = 0,
CRM_EX_ERROR = 1,
// LSB + OCF
CRM_EX_INVALID_PARAM = 2,
CRM_EX_UNIMPLEMENT_FEATURE = 3,
CRM_EX_INSUFFICIENT_PRIV = 4,
CRM_EX_NOT_INSTALLED = 5,
CRM_EX_NOT_CONFIGURED = 6,
CRM_EX_NOT_RUNNING = 7,
// sysexits.h
CRM_EX_USAGE = 64, // command line usage error
CRM_EX_DATAERR = 65, // user-supplied data incorrect
CRM_EX_NOINPUT = 66, // input file not available
CRM_EX_NOUSER = 67, // user does not exist
CRM_EX_NOHOST = 68, // host unknown
CRM_EX_UNAVAILABLE = 69, // needed service unavailable
CRM_EX_SOFTWARE = 70, // internal software bug
CRM_EX_OSERR = 71, // external (OS/environmental) problem
CRM_EX_OSFILE = 72, // system file not usable
CRM_EX_CANTCREAT = 73, // file couldn't be created
CRM_EX_IOERR = 74, // file I/O error
CRM_EX_TEMPFAIL = 75, // try again
CRM_EX_PROTOCOL = 76, // protocol violated
CRM_EX_NOPERM = 77, // non-file permission issue
CRM_EX_CONFIG = 78, // misconfiguration
// Custom
CRM_EX_FATAL = 100, // do not respawn
CRM_EX_PANIC = 101, // panic the local host
CRM_EX_DISCONNECT = 102, // lost connection to something
CRM_EX_OLD = 103, // update older than existing config
CRM_EX_DIGEST = 104, // digest comparison failed
CRM_EX_NOSUCH = 105, // requested item does not exist
CRM_EX_QUORUM = 106, // local partition does not have quorum
CRM_EX_UNSAFE = 107, // requires --force or new conditions
CRM_EX_EXISTS = 108, // requested item already exists
CRM_EX_MULTIPLE = 109, // requested item has multiple matches
CRM_EX_EXPIRED = 110, // requested item has expired
CRM_EX_NOT_YET_IN_EFFECT = 111, // requested item is not in effect
CRM_EX_INDETERMINATE = 112, // could not determine status
// Other
CRM_EX_TIMEOUT = 124, // convention from timeout(1)
CRM_EX_MAX = 255, // ensure crm_exit_t can hold this
} crm_exit_t;
const char *pcmk_strerror(int rc);
const char *pcmk_errorname(int rc);
const char *bz2_strerror(int rc);
crm_exit_t crm_errno2exit(int rc);
const char *crm_exit_name(crm_exit_t exit_code);
const char *crm_exit_str(crm_exit_t exit_code);
-crm_exit_t crm_exit(crm_exit_t rc);
+_Noreturn crm_exit_t crm_exit(crm_exit_t rc);
#ifdef __cplusplus
}
#endif
#endif
diff --git a/lib/common/results.c b/lib/common/results.c
index 720c7f9168..553a4b153b 100644
--- a/lib/common/results.c
+++ b/lib/common/results.c
@@ -1,499 +1,495 @@
/*
* Copyright 2004-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU Lesser General Public License
* version 2.1 or later (LGPLv2.1+) WITHOUT ANY WARRANTY.
*/
#include
#ifndef _GNU_SOURCE
# define _GNU_SOURCE
#endif
#include
#include
#include
#include
#include
#include
#include
const char *
pcmk_errorname(int rc)
{
int error = abs(rc);
switch (error) {
case E2BIG: return "E2BIG";
case EACCES: return "EACCES";
case EADDRINUSE: return "EADDRINUSE";
case EADDRNOTAVAIL: return "EADDRNOTAVAIL";
case EAFNOSUPPORT: return "EAFNOSUPPORT";
case EAGAIN: return "EAGAIN";
case EALREADY: return "EALREADY";
case EBADF: return "EBADF";
case EBADMSG: return "EBADMSG";
case EBUSY: return "EBUSY";
case ECANCELED: return "ECANCELED";
case ECHILD: return "ECHILD";
case ECOMM: return "ECOMM";
case ECONNABORTED: return "ECONNABORTED";
case ECONNREFUSED: return "ECONNREFUSED";
case ECONNRESET: return "ECONNRESET";
/* case EDEADLK: return "EDEADLK"; */
case EDESTADDRREQ: return "EDESTADDRREQ";
case EDOM: return "EDOM";
case EDQUOT: return "EDQUOT";
case EEXIST: return "EEXIST";
case EFAULT: return "EFAULT";
case EFBIG: return "EFBIG";
case EHOSTDOWN: return "EHOSTDOWN";
case EHOSTUNREACH: return "EHOSTUNREACH";
case EIDRM: return "EIDRM";
case EILSEQ: return "EILSEQ";
case EINPROGRESS: return "EINPROGRESS";
case EINTR: return "EINTR";
case EINVAL: return "EINVAL";
case EIO: return "EIO";
case EISCONN: return "EISCONN";
case EISDIR: return "EISDIR";
case ELIBACC: return "ELIBACC";
case ELOOP: return "ELOOP";
case EMFILE: return "EMFILE";
case EMLINK: return "EMLINK";
case EMSGSIZE: return "EMSGSIZE";
#ifdef EMULTIHOP // Not available on OpenBSD
case EMULTIHOP: return "EMULTIHOP";
#endif
case ENAMETOOLONG: return "ENAMETOOLONG";
case ENETDOWN: return "ENETDOWN";
case ENETRESET: return "ENETRESET";
case ENETUNREACH: return "ENETUNREACH";
case ENFILE: return "ENFILE";
case ENOBUFS: return "ENOBUFS";
case ENODATA: return "ENODATA";
case ENODEV: return "ENODEV";
case ENOENT: return "ENOENT";
case ENOEXEC: return "ENOEXEC";
case ENOKEY: return "ENOKEY";
case ENOLCK: return "ENOLCK";
#ifdef ENOLINK // Not available on OpenBSD
case ENOLINK: return "ENOLINK";
#endif
case ENOMEM: return "ENOMEM";
case ENOMSG: return "ENOMSG";
case ENOPROTOOPT: return "ENOPROTOOPT";
case ENOSPC: return "ENOSPC";
case ENOSR: return "ENOSR";
case ENOSTR: return "ENOSTR";
case ENOSYS: return "ENOSYS";
case ENOTBLK: return "ENOTBLK";
case ENOTCONN: return "ENOTCONN";
case ENOTDIR: return "ENOTDIR";
case ENOTEMPTY: return "ENOTEMPTY";
case ENOTSOCK: return "ENOTSOCK";
/* case ENOTSUP: return "ENOTSUP"; */
case ENOTTY: return "ENOTTY";
case ENOTUNIQ: return "ENOTUNIQ";
case ENXIO: return "ENXIO";
case EOPNOTSUPP: return "EOPNOTSUPP";
case EOVERFLOW: return "EOVERFLOW";
case EPERM: return "EPERM";
case EPFNOSUPPORT: return "EPFNOSUPPORT";
case EPIPE: return "EPIPE";
case EPROTO: return "EPROTO";
case EPROTONOSUPPORT: return "EPROTONOSUPPORT";
case EPROTOTYPE: return "EPROTOTYPE";
case ERANGE: return "ERANGE";
case EREMOTE: return "EREMOTE";
case EREMOTEIO: return "EREMOTEIO";
case EROFS: return "EROFS";
case ESHUTDOWN: return "ESHUTDOWN";
case ESPIPE: return "ESPIPE";
case ESOCKTNOSUPPORT: return "ESOCKTNOSUPPORT";
case ESRCH: return "ESRCH";
case ESTALE: return "ESTALE";
case ETIME: return "ETIME";
case ETIMEDOUT: return "ETIMEDOUT";
case ETXTBSY: return "ETXTBSY";
case EUNATCH: return "EUNATCH";
case EUSERS: return "EUSERS";
/* case EWOULDBLOCK: return "EWOULDBLOCK"; */
case EXDEV: return "EXDEV";
#ifdef EBADE
/* Not available on OSX */
case EBADE: return "EBADE";
case EBADFD: return "EBADFD";
case EBADSLT: return "EBADSLT";
case EDEADLOCK: return "EDEADLOCK";
case EBADR: return "EBADR";
case EBADRQC: return "EBADRQC";
case ECHRNG: return "ECHRNG";
#ifdef EISNAM /* Not available on Illumos/Solaris */
case EISNAM: return "EISNAM";
case EKEYEXPIRED: return "EKEYEXPIRED";
case EKEYREJECTED: return "EKEYREJECTED";
case EKEYREVOKED: return "EKEYREVOKED";
#endif
case EL2HLT: return "EL2HLT";
case EL2NSYNC: return "EL2NSYNC";
case EL3HLT: return "EL3HLT";
case EL3RST: return "EL3RST";
case ELIBBAD: return "ELIBBAD";
case ELIBMAX: return "ELIBMAX";
case ELIBSCN: return "ELIBSCN";
case ELIBEXEC: return "ELIBEXEC";
#ifdef ENOMEDIUM /* Not available on Illumos/Solaris */
case ENOMEDIUM: return "ENOMEDIUM";
case EMEDIUMTYPE: return "EMEDIUMTYPE";
#endif
case ENONET: return "ENONET";
case ENOPKG: return "ENOPKG";
case EREMCHG: return "EREMCHG";
case ERESTART: return "ERESTART";
case ESTRPIPE: return "ESTRPIPE";
#ifdef EUCLEAN /* Not available on Illumos/Solaris */
case EUCLEAN: return "EUCLEAN";
#endif
case EXFULL: return "EXFULL";
#endif
case pcmk_err_generic: return "pcmk_err_generic";
case pcmk_err_no_quorum: return "pcmk_err_no_quorum";
case pcmk_err_schema_validation: return "pcmk_err_schema_validation";
case pcmk_err_transform_failed: return "pcmk_err_transform_failed";
case pcmk_err_old_data: return "pcmk_err_old_data";
case pcmk_err_diff_failed: return "pcmk_err_diff_failed";
case pcmk_err_diff_resync: return "pcmk_err_diff_resync";
case pcmk_err_cib_modified: return "pcmk_err_cib_modified";
case pcmk_err_cib_backup: return "pcmk_err_cib_backup";
case pcmk_err_cib_save: return "pcmk_err_cib_save";
case pcmk_err_cib_corrupt: return "pcmk_err_cib_corrupt";
case pcmk_err_multiple: return "pcmk_err_multiple";
case pcmk_err_node_unknown: return "pcmk_err_node_unknown";
case pcmk_err_already: return "pcmk_err_already";
case pcmk_err_bad_nvpair: return "pcmk_err_bad_nvpair";
}
return "Unknown";
}
const char *
pcmk_strerror(int rc)
{
int error = abs(rc);
if (error == 0) {
return "OK";
} else if (error < PCMK_ERROR_OFFSET) {
return strerror(error);
}
switch (error) {
case pcmk_err_generic:
return "Generic Pacemaker error";
case pcmk_err_no_quorum:
return "Operation requires quorum";
case pcmk_err_schema_validation:
return "Update does not conform to the configured schema";
case pcmk_err_transform_failed:
return "Schema transform failed";
case pcmk_err_old_data:
return "Update was older than existing configuration";
case pcmk_err_diff_failed:
return "Application of an update diff failed";
case pcmk_err_diff_resync:
return "Application of an update diff failed, requesting a full refresh";
case pcmk_err_cib_modified:
return "The on-disk configuration was manually modified";
case pcmk_err_cib_backup:
return "Could not archive the previous configuration";
case pcmk_err_cib_save:
return "Could not save the new configuration to disk";
case pcmk_err_cib_corrupt:
return "Could not parse on-disk configuration";
case pcmk_err_multiple:
return "Resource active on multiple nodes";
case pcmk_err_node_unknown:
return "Node not found";
case pcmk_err_already:
return "Situation already as requested";
case pcmk_err_bad_nvpair:
return "Bad name/value pair given";
case pcmk_err_schema_unchanged:
return "Schema is already the latest available";
/* The following cases will only be hit on systems for which they are non-standard */
/* coverity[dead_error_condition] False positive on non-Linux */
case ENOTUNIQ:
return "Name not unique on network";
/* coverity[dead_error_condition] False positive on non-Linux */
case ECOMM:
return "Communication error on send";
/* coverity[dead_error_condition] False positive on non-Linux */
case ELIBACC:
return "Can not access a needed shared library";
/* coverity[dead_error_condition] False positive on non-Linux */
case EREMOTEIO:
return "Remote I/O error";
/* coverity[dead_error_condition] False positive on non-Linux */
case EUNATCH:
return "Protocol driver not attached";
/* coverity[dead_error_condition] False positive on non-Linux */
case ENOKEY:
return "Required key not available";
}
crm_err("Unknown error code: %d", rc);
return "Unknown error";
}
const char *
crm_exit_name(crm_exit_t exit_code)
{
switch (exit_code) {
case CRM_EX_OK: return "CRM_EX_OK";
case CRM_EX_ERROR: return "CRM_EX_ERROR";
case CRM_EX_INVALID_PARAM: return "CRM_EX_INVALID_PARAM";
case CRM_EX_UNIMPLEMENT_FEATURE: return "CRM_EX_UNIMPLEMENT_FEATURE";
case CRM_EX_INSUFFICIENT_PRIV: return "CRM_EX_INSUFFICIENT_PRIV";
case CRM_EX_NOT_INSTALLED: return "CRM_EX_NOT_INSTALLED";
case CRM_EX_NOT_CONFIGURED: return "CRM_EX_NOT_CONFIGURED";
case CRM_EX_NOT_RUNNING: return "CRM_EX_NOT_RUNNING";
case CRM_EX_USAGE: return "CRM_EX_USAGE";
case CRM_EX_DATAERR: return "CRM_EX_DATAERR";
case CRM_EX_NOINPUT: return "CRM_EX_NOINPUT";
case CRM_EX_NOUSER: return "CRM_EX_NOUSER";
case CRM_EX_NOHOST: return "CRM_EX_NOHOST";
case CRM_EX_UNAVAILABLE: return "CRM_EX_UNAVAILABLE";
case CRM_EX_SOFTWARE: return "CRM_EX_SOFTWARE";
case CRM_EX_OSERR: return "CRM_EX_OSERR";
case CRM_EX_OSFILE: return "CRM_EX_OSFILE";
case CRM_EX_CANTCREAT: return "CRM_EX_CANTCREAT";
case CRM_EX_IOERR: return "CRM_EX_IOERR";
case CRM_EX_TEMPFAIL: return "CRM_EX_TEMPFAIL";
case CRM_EX_PROTOCOL: return "CRM_EX_PROTOCOL";
case CRM_EX_NOPERM: return "CRM_EX_NOPERM";
case CRM_EX_CONFIG: return "CRM_EX_CONFIG";
case CRM_EX_FATAL: return "CRM_EX_FATAL";
case CRM_EX_PANIC: return "CRM_EX_PANIC";
case CRM_EX_DISCONNECT: return "CRM_EX_DISCONNECT";
case CRM_EX_DIGEST: return "CRM_EX_DIGEST";
case CRM_EX_NOSUCH: return "CRM_EX_NOSUCH";
case CRM_EX_QUORUM: return "CRM_EX_QUORUM";
case CRM_EX_UNSAFE: return "CRM_EX_UNSAFE";
case CRM_EX_EXISTS: return "CRM_EX_EXISTS";
case CRM_EX_MULTIPLE: return "CRM_EX_MULTIPLE";
case CRM_EX_EXPIRED: return "CRM_EX_EXPIRED";
case CRM_EX_NOT_YET_IN_EFFECT: return "CRM_EX_NOT_YET_IN_EFFECT";
case CRM_EX_INDETERMINATE: return "CRM_EX_INDETERMINATE";
case CRM_EX_OLD: return "CRM_EX_OLD";
case CRM_EX_TIMEOUT: return "CRM_EX_TIMEOUT";
case CRM_EX_MAX: return "CRM_EX_UNKNOWN";
}
return "CRM_EX_UNKNOWN";
}
const char *
crm_exit_str(crm_exit_t exit_code)
{
switch (exit_code) {
case CRM_EX_OK: return "OK";
case CRM_EX_ERROR: return "Error occurred";
case CRM_EX_INVALID_PARAM: return "Invalid parameter";
case CRM_EX_UNIMPLEMENT_FEATURE: return "Unimplemented";
case CRM_EX_INSUFFICIENT_PRIV: return "Insufficient privileges";
case CRM_EX_NOT_INSTALLED: return "Not installed";
case CRM_EX_NOT_CONFIGURED: return "Not configured";
case CRM_EX_NOT_RUNNING: return "Not running";
case CRM_EX_USAGE: return "Incorrect usage";
case CRM_EX_DATAERR: return "Invalid data given";
case CRM_EX_NOINPUT: return "Input file not available";
case CRM_EX_NOUSER: return "User does not exist";
case CRM_EX_NOHOST: return "Host does not exist";
case CRM_EX_UNAVAILABLE: return "Necessary service unavailable";
case CRM_EX_SOFTWARE: return "Internal software bug";
case CRM_EX_OSERR: return "Operating system error occurred";
case CRM_EX_OSFILE: return "System file not available";
case CRM_EX_CANTCREAT: return "Cannot create output file";
case CRM_EX_IOERR: return "I/O error occurred";
case CRM_EX_TEMPFAIL: return "Temporary failure, try again";
case CRM_EX_PROTOCOL: return "Protocol violated";
case CRM_EX_NOPERM: return "Insufficient privileges";
case CRM_EX_CONFIG: return "Invalid configuration";
case CRM_EX_FATAL: return "Fatal error occurred, will not respawn";
case CRM_EX_PANIC: return "System panic required";
case CRM_EX_DISCONNECT: return "Not connected";
case CRM_EX_DIGEST: return "Digest mismatch";
case CRM_EX_NOSUCH: return "No such object";
case CRM_EX_QUORUM: return "Quorum required";
case CRM_EX_UNSAFE: return "Operation not safe";
case CRM_EX_EXISTS: return "Requested item already exists";
case CRM_EX_MULTIPLE: return "Multiple items match request";
case CRM_EX_EXPIRED: return "Requested item has expired";
case CRM_EX_NOT_YET_IN_EFFECT: return "Requested item is not yet in effect";
case CRM_EX_INDETERMINATE: return "Could not determine status";
case CRM_EX_OLD: return "Update was older than existing configuration";
case CRM_EX_TIMEOUT: return "Timeout occurred";
case CRM_EX_MAX: return "Error occurred";
}
if (exit_code > 128) {
return "Interrupted by signal";
}
return "Unknown exit status";
}
/*!
* \brief Map an errno to a similar exit status
*
* \param[in] errno Error number to map
*
* \return Exit status corresponding to errno
*/
crm_exit_t
crm_errno2exit(int rc)
{
rc = abs(rc); // Convenience for functions that return -errno
if (rc == EOPNOTSUPP) {
rc = ENOTSUP; // Values are same on Linux, can't use both in case
}
switch (rc) {
case pcmk_ok:
return CRM_EX_OK;
case pcmk_err_no_quorum:
return CRM_EX_QUORUM;
case pcmk_err_old_data:
return CRM_EX_OLD;
case pcmk_err_schema_validation:
case pcmk_err_transform_failed:
return CRM_EX_CONFIG;
case pcmk_err_bad_nvpair:
return CRM_EX_INVALID_PARAM;
case EACCES:
return CRM_EX_INSUFFICIENT_PRIV;
case EBADF:
case EINVAL:
case EFAULT:
case ENOSYS:
case EOVERFLOW:
return CRM_EX_SOFTWARE;
case EBADMSG:
case EMSGSIZE:
case ENOMSG:
case ENOPROTOOPT:
case EPROTO:
case EPROTONOSUPPORT:
case EPROTOTYPE:
return CRM_EX_PROTOCOL;
case ECOMM:
case ENOMEM:
return CRM_EX_OSERR;
case ECONNABORTED:
case ECONNREFUSED:
case ECONNRESET:
case ENOTCONN:
return CRM_EX_DISCONNECT;
case EEXIST:
case pcmk_err_already:
return CRM_EX_EXISTS;
case EIO:
return CRM_EX_IOERR;
case ENOTSUP:
return CRM_EX_UNIMPLEMENT_FEATURE;
case ENOTUNIQ:
case pcmk_err_multiple:
return CRM_EX_MULTIPLE;
case ENXIO:
case pcmk_err_node_unknown:
return CRM_EX_NOSUCH;
case ETIME:
case ETIMEDOUT:
return CRM_EX_TIMEOUT;
default:
return CRM_EX_ERROR;
}
}
const char *
bz2_strerror(int rc)
{
// See ftp://sources.redhat.com/pub/bzip2/docs/manual_3.html#SEC17
switch (rc) {
case BZ_OK:
case BZ_RUN_OK:
case BZ_FLUSH_OK:
case BZ_FINISH_OK:
case BZ_STREAM_END:
return "Ok";
case BZ_CONFIG_ERROR:
return "libbz2 has been improperly compiled on your platform";
case BZ_SEQUENCE_ERROR:
return "library functions called in the wrong order";
case BZ_PARAM_ERROR:
return "parameter is out of range or otherwise incorrect";
case BZ_MEM_ERROR:
return "memory allocation failed";
case BZ_DATA_ERROR:
return "data integrity error is detected during decompression";
case BZ_DATA_ERROR_MAGIC:
return "the compressed stream does not start with the correct magic bytes";
case BZ_IO_ERROR:
return "error reading or writing in the compressed file";
case BZ_UNEXPECTED_EOF:
return "compressed file finishes before the logical end of stream is detected";
case BZ_OUTBUFF_FULL:
return "output data will not fit into the buffer provided";
}
return "Unknown error";
}
crm_exit_t
crm_exit(crm_exit_t rc)
{
/* A compiler could theoretically use any type for crm_exit_t, but an int
* should always hold it, so cast to int to keep static analysis happy.
*/
if ((((int) rc) < 0) || (((int) rc) > CRM_EX_MAX)) {
rc = CRM_EX_ERROR;
}
mainloop_cleanup();
crm_xml_cleanup();
qb_log_fini();
crm_args_fini();
if (crm_system_name) {
crm_info("Exiting %s " CRM_XS " with status %d", crm_system_name, rc);
free(crm_system_name);
} else {
crm_trace("Exiting with status %d", rc);
}
exit(rc);
- return rc; /* Can never happen, but allows return crm_exit(rc)
- * where "return rc" was used previously - which
- * keeps compilers happy.
- */
}
diff --git a/tools/attrd_updater.c b/tools/attrd_updater.c
index f3eeb9b0e0..e6a4a5cc05 100644
--- a/tools/attrd_updater.c
+++ b/tools/attrd_updater.c
@@ -1,372 +1,372 @@
/*
* Copyright 2004-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tIncrease debug output\n"},
{"name", 1, 0, 'n', "The attribute's name"},
{"-spacer-",1, 0, '-', "\nCommands:"},
{"update", 1, 0, 'U', "Update the attribute's value in pacemaker-attrd. If this causes the value to change, it will also be updated in the cluster configuration"},
{"update-both", 1, 0, 'B', "Update the attribute's value and time to wait (dampening) in pacemaker-attrd. If this causes the value or dampening to change, the attribute will also be written to the cluster configuration, so be aware that repeatedly changing the dampening reduces its effectiveness."},
{"update-delay", 0, 0, 'Y', "Update the attribute's dampening in pacemaker-attrd (requires -d/--delay). If this causes the dampening to change, the attribute will also be written to the cluster configuration, so be aware that repeatedly changing the dampening reduces its effectiveness."},
{"query", 0, 0, 'Q', "\tQuery the attribute's value from pacemaker-attrd"},
{"delete", 0, 0, 'D', "\tDelete the attribute in pacemaker-attrd. If a value was previously set, it will also be removed from the cluster configuration"},
{"refresh", 0, 0, 'R', "\t(Advanced) Force the pacemaker-attrd daemon to resend all current values to the CIB\n"},
{"-spacer-",1, 0, '-', "\nAdditional options:"},
{"delay", 1, 0, 'd', "The time to wait (dampening) in seconds for further changes before writing"},
{"set", 1, 0, 's', "(Advanced) The attribute set in which to place the value"},
{"node", 1, 0, 'N', "Set the attribute for the named node (instead of the local one)"},
{"all", 0, 0, 'A', "Show values of the attribute for all nodes (query only)"},
/* lifetime could be implemented if there is sufficient user demand */
{"lifetime",1, 0, 'l', "(Deprecated) Lifetime of the node attribute (silently ignored by cluster)"},
{"private", 0, 0, 'p', "\tIf this creates a new attribute, never write the attribute to the CIB"},
/* Legacy options */
{"quiet", 0, 0, 'q', NULL, pcmk_option_hidden},
{"update", 1, 0, 'v', NULL, pcmk_option_hidden},
{"section", 1, 0, 'S', NULL, pcmk_option_hidden},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
static int do_query(const char *attr_name, const char *attr_node, gboolean query_all);
static int do_update(char command, const char *attr_node, const char *attr_name,
const char *attr_value, const char *attr_section,
const char *attr_set, const char *attr_dampen, int attr_options);
// Free memory at exit to make analyzers happy
#define cleanup_memory() \
free(attr_dampen); \
free(attr_name); \
free(attr_node); \
free(attr_section); \
free(attr_set);
int
main(int argc, char **argv)
{
int index = 0;
int argerr = 0;
int attr_options = attrd_opt_none;
int flag;
crm_exit_t exit_code = CRM_EX_OK;
char *attr_node = NULL;
char *attr_name = NULL;
char *attr_set = NULL;
char *attr_section = NULL;
char *attr_dampen = NULL;
const char *attr_value = NULL;
char command = 'Q';
gboolean query_all = FALSE;
crm_log_cli_init("attrd_updater");
crm_set_options(NULL, "command -n attribute [options]", long_options,
"Tool for updating cluster node attributes");
if (argc < 2) {
crm_help('?', CRM_EX_USAGE);
}
while (1) {
flag = crm_get_option(argc, argv, &index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case '?':
case '$':
cleanup_memory();
crm_help(flag, CRM_EX_OK);
break;
case 'n':
attr_name = strdup(optarg);
break;
case 's':
attr_set = strdup(optarg);
break;
case 'd':
attr_dampen = strdup(optarg);
break;
case 'l':
case 'S':
attr_section = strdup(optarg);
break;
case 'N':
attr_node = strdup(optarg);
break;
case 'A':
query_all = TRUE;
break;
case 'p':
set_bit(attr_options, attrd_opt_private);
break;
case 'q':
break;
case 'Y':
command = flag;
crm_log_args(argc, argv); /* Too much? */
break;
case 'Q':
case 'B':
case 'R':
case 'D':
case 'U':
case 'v':
command = flag;
attr_value = optarg;
crm_log_args(argc, argv); /* Too much? */
break;
default:
++argerr;
break;
}
}
if (optind > argc) {
++argerr;
}
if (command != 'R' && attr_name == NULL) {
++argerr;
}
if (argerr) {
cleanup_memory();
crm_help('?', CRM_EX_USAGE);
}
if (command == 'Q') {
exit_code = crm_errno2exit(do_query(attr_name, attr_node, query_all));
} else {
/* @TODO We don't know whether the specified node is a Pacemaker Remote
* node or not, so we can't set attrd_opt_remote when appropriate.
* However, it's not a big problem, because pacemaker-attrd will learn
* and remember a node's "remoteness".
*/
exit_code = crm_errno2exit(do_update(command,
attrd_get_target(attr_node), attr_name,
attr_value, attr_section, attr_set,
attr_dampen, attr_options));
}
cleanup_memory();
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
/*!
* \internal
* \brief Submit a query request to pacemaker-attrd and wait for reply
*
* \param[in] name Name of attribute to query
* \param[in] host Query applies to this host only (or all hosts if NULL)
* \param[out] reply On success, will be set to new XML tree with reply
*
* \return pcmk_ok on success, -errno on error
* \note On success, caller is responsible for freeing result via free_xml(*reply)
*/
static int
send_attrd_query(const char *name, const char *host, xmlNode **reply)
{
int rc;
crm_ipc_t *ipc;
xmlNode *query;
/* Build the query XML */
query = create_xml_node(NULL, __FUNCTION__);
if (query == NULL) {
return -ENOMEM;
}
crm_xml_add(query, F_TYPE, T_ATTRD);
crm_xml_add(query, F_ORIG, crm_system_name);
crm_xml_add(query, F_ATTRD_HOST, host);
crm_xml_add(query, F_ATTRD_TASK, ATTRD_OP_QUERY);
crm_xml_add(query, F_ATTRD_ATTRIBUTE, name);
/* Connect to pacemaker-attrd, send query XML and get reply */
crm_debug("Sending query for value of %s on %s", name, (host? host : "all nodes"));
ipc = crm_ipc_new(T_ATTRD, 0);
if (crm_ipc_connect(ipc) == FALSE) {
crm_perror(LOG_ERR, "Connection to cluster attribute manager failed");
rc = -ENOTCONN;
} else {
rc = crm_ipc_send(ipc, query, crm_ipc_flags_none|crm_ipc_client_response, 0, reply);
if (rc > 0) {
rc = pcmk_ok;
}
crm_ipc_close(ipc);
}
free_xml(query);
return(rc);
}
/*!
* \brief Validate pacemaker-attrd's XML reply to an query
*
* param[in] reply Root of reply XML tree to validate
* param[in] attr_name Name of attribute that was queried
*
* \return pcmk_ok on success,
* -errno on error (-ENXIO = requested attribute does not exist)
*/
static int
validate_attrd_reply(xmlNode *reply, const char *attr_name)
{
const char *reply_attr;
if (reply == NULL) {
fprintf(stderr, "Could not query value of %s: reply did not contain valid XML\n",
attr_name);
return -pcmk_err_schema_validation;
}
crm_log_xml_trace(reply, "Reply");
reply_attr = crm_element_value(reply, F_ATTRD_ATTRIBUTE);
if (reply_attr == NULL) {
fprintf(stderr, "Could not query value of %s: attribute does not exist\n",
attr_name);
return -ENXIO;
}
if (safe_str_neq(crm_element_value(reply, F_TYPE), T_ATTRD)
|| (crm_element_value(reply, F_ATTRD_VERSION) == NULL)
|| strcmp(reply_attr, attr_name)) {
fprintf(stderr,
"Could not query value of %s: reply did not contain expected identification\n",
attr_name);
return -pcmk_err_schema_validation;
}
return pcmk_ok;
}
/*!
* \brief Print the attribute values in a pacemaker-attrd XML query reply
*
* \param[in] reply Root of XML tree with query reply
* \param[in] attr_name Name of attribute that was queried
*
* \return TRUE if any values were printed
*/
static gboolean
print_attrd_values(xmlNode *reply, const char *attr_name)
{
xmlNode *child;
const char *reply_host, *reply_value;
gboolean have_values = FALSE;
/* Iterate through reply's XML tags (a node tag for each host-value pair) */
for (child = __xml_first_child(reply); child != NULL; child = __xml_next(child)) {
if (safe_str_neq((const char*)child->name, XML_CIB_TAG_NODE)) {
crm_warn("Ignoring unexpected %s tag in query reply", child->name);
} else {
reply_host = crm_element_value(child, F_ATTRD_HOST);
reply_value = crm_element_value(child, F_ATTRD_VALUE);
if (reply_host == NULL) {
crm_warn("Ignoring %s tag without %s attribute in query reply",
XML_CIB_TAG_NODE, F_ATTRD_HOST);
} else {
printf("name=\"%s\" host=\"%s\" value=\"%s\"\n",
attr_name, reply_host, (reply_value? reply_value : ""));
have_values = TRUE;
}
}
}
return have_values;
}
/*!
* \brief Submit a query to pacemaker-attrd and print reply
*
* \param[in] attr_name Name of attribute to be affected by request
* \param[in] attr_node Name of host to query for (or NULL for localhost)
* \param[in] query_all If TRUE, ignore attr_node and query all nodes instead
*
* \return pcmk_ok on success, -errno on error
*/
static int
do_query(const char *attr_name, const char *attr_node, gboolean query_all)
{
xmlNode *reply = NULL;
int rc;
/* Decide which node(s) to query */
if (query_all == TRUE) {
attr_node = NULL;
} else {
attr_node = attrd_get_target(attr_node);
}
/* Build and send pacemaker-attrd request, and get XML reply */
rc = send_attrd_query(attr_name, attr_node, &reply);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not query value of %s: %s (%d)\n", attr_name, pcmk_strerror(rc), rc);
return rc;
}
/* Validate the XML reply */
rc = validate_attrd_reply(reply, attr_name);
if (rc != pcmk_ok) {
if (reply != NULL) {
free_xml(reply);
}
return rc;
}
/* Print the values from the reply */
if (print_attrd_values(reply, attr_name) == FALSE) {
fprintf(stderr,
"Could not query value of %s: reply had attribute name but no host values\n",
attr_name);
free_xml(reply);
return -pcmk_err_schema_validation;
}
return pcmk_ok;
}
static int
do_update(char command, const char *attr_node, const char *attr_name,
const char *attr_value, const char *attr_section,
const char *attr_set, const char *attr_dampen, int attr_options)
{
int rc = attrd_update_delegate(NULL, command, attr_node, attr_name,
attr_value, attr_section, attr_set,
attr_dampen, NULL, attr_options);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not update %s=%s: %s (%d)\n", attr_name, attr_value, pcmk_strerror(rc), rc);
}
return rc;
}
diff --git a/tools/cibadmin.c b/tools/cibadmin.c
index 96caf3483a..1f33e9fe8b 100644
--- a/tools/cibadmin.c
+++ b/tools/cibadmin.c
@@ -1,551 +1,553 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
static int message_timeout_ms = 30;
static int command_options = 0;
static int request_id = 0;
static int bump_log_num = 0;
static const char *host = NULL;
static const char *cib_user = NULL;
static const char *cib_action = NULL;
static const char *obj_type = NULL;
static cib_t *the_cib = NULL;
static GMainLoop *mainloop = NULL;
static gboolean force_flag = FALSE;
static crm_exit_t exit_code = CRM_EX_OK;
int do_init(void);
int do_work(xmlNode *input, int command_options, xmlNode **output);
void cibadmin_op_callback(xmlNode *msg, int call_id, int rc, xmlNode *output,
void *user_data);
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tIncrease debug output\n"},
{"-spacer-", 0, 0, '-', "Commands:"},
{"upgrade", 0, 0, 'u', "\tUpgrade the configuration to the latest syntax"},
{"query", 0, 0, 'Q', "\tQuery the contents of the CIB"},
{"erase", 0, 0, 'E', "\tErase the contents of the whole CIB"},
{"bump", 0, 0, 'B', "\tIncrease the CIB's epoch value by 1"},
{"create", 0, 0, 'C', "\tCreate an object in the CIB. Will fail if the object already exists."},
{"modify", 0, 0, 'M', "\tFind the object somewhere in the CIB's XML tree and update it. Fails if the object does not exist unless -c is specified"},
{"patch", 0, 0, 'P', "\tSupply an update in the form of an xml diff (See also: crm_diff)"},
{"replace", 0, 0, 'R', "\tRecursively replace an object in the CIB"},
{"delete", 0, 0, 'D', "\tDelete the first object matching the supplied criteria, Eg. "},
{"-spacer-", 0, 0, '-', "\n\tThe tagname and all attributes must match in order for the element to be deleted\n"},
{"delete-all", 0, 0, 'd', "When used with --xpath, remove all matching objects in the configuration instead of just the first one"},
{"empty", 0, 0, 'a', "\tOutput an empty CIB"},
{"md5-sum", 0, 0, '5', "\tCalculate the on-disk CIB digest"},
{"md5-sum-versioned", 0, 0, '6', "Calculate an on-the-wire versioned CIB digest"},
{"blank", 0, 0, '-', NULL, 1},
{"-spacer-",1, 0, '-', "\nAdditional options:"},
{"force", 0, 0, 'f'},
{"timeout", 1, 0, 't', "Time (in seconds) to wait before declaring the operation failed"},
{"user", 1, 0, 'U', "Run the command with permissions of the named user (valid only for the root and "CRM_DAEMON_USER" accounts)"},
{"sync-call", 0, 0, 's', "Wait for call to complete before returning"},
{"local", 0, 0, 'l', "\tCommand takes effect locally. Should only be used for queries"},
{"allow-create",0, 0, 'c', "(Advanced) Allow the target of a --modify,-M operation to be created if they do not exist"},
{"no-children", 0, 0, 'n', "(Advanced) When querying an object, do not return include its children in the result\n"},
{"no-bcast", 0, 0, 'b', NULL, 1},
{"-spacer-", 0, 0, '-', "Data:"},
{"xml-text", 1, 0, 'X', "Retrieve XML from the supplied string"},
{"xml-file", 1, 0, 'x', "Retrieve XML from the named file"},
{"xml-pipe", 0, 0, 'p', "Retrieve XML from stdin\n"},
{"scope", 1, 0, 'o', "Limit the scope of the operation to a specific section of the CIB."},
{"-spacer-", 0, 0, '-', "\tValid values are: nodes, resources, constraints, crm_config, rsc_defaults, op_defaults, status"},
{"xpath", 1, 0, 'A', "A valid XPath to use instead of --scope,-o"},
{"node-path", 0, 0, 'e', "When performing XPath queries, return the address of any matches found."},
{"-spacer-", 0, 0, '-', " Eg: /cib/configuration/resources/clone[@id='ms_RH1_SCS']/primitive[@id='prm_RH1_SCS']", pcmk_option_paragraph},
{"node", 1, 0, 'N', "(Advanced) Send command to the specified host\n"},
{"-space-", 0, 0, '!', NULL, 1},
{"-spacer-", 0, 0, '-', "\nExamples:\n"},
{"-spacer-", 0, 0, '-', "Query the configuration from the local node:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --query --local", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Query just the cluster options configuration:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --query --scope crm_config", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Query all 'target-role' settings:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --query --xpath \"//nvpair[@name='target-role']\"", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Remove all 'is-managed' settings:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --delete-all --xpath \"//nvpair[@name='is-managed']\"", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Remove the resource named 'old':", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --delete --xml-text ''", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Remove all resources from the configuration:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --replace --scope resources --xml-text ''", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Replace the complete configuration with the contents of $HOME/pacemaker.xml:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --replace --xml-file $HOME/pacemaker.xml", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Replace the constraints section of the configuration with the contents of $HOME/constraints.xml:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --replace --scope constraints --xml-file $HOME/constraints.xml", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Increase the configuration version to prevent old configurations from being loaded accidentally:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --modify --xml-text ''", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Edit the configuration with your favorite $EDITOR:", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " cibadmin --query > $HOME/local.xml", pcmk_option_example},
{"-spacer-", 0, 0, '-', " $EDITOR $HOME/local.xml", pcmk_option_example},
{"-spacer-", 0, 0, '-', " cibadmin --replace --xml-file $HOME/local.xml", pcmk_option_example},
{"-spacer-", 0, 0, '-', "SEE ALSO:"},
{"-spacer-", 0, 0, '-', " crm(8), pcs(8), crm_shadow(8), crm_diff(8)"},
/* Legacy options */
{"host", 1, 0, 'h', NULL, 1},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
static void
print_xml_output(xmlNode * xml)
{
char *buffer;
if (!xml) {
return;
} else if (xml->type != XML_ELEMENT_NODE) {
return;
}
if (command_options & cib_xpath_address) {
const char *id = crm_element_value(xml, XML_ATTR_ID);
if (safe_str_eq((const char *)xml->name, "xpath-query")) {
xmlNode *child = NULL;
for (child = xml->children; child; child = child->next) {
print_xml_output(child);
}
} else if (id) {
printf("%s\n", id);
}
} else {
buffer = dump_xml_formatted(xml);
fprintf(stdout, "%s", crm_str(buffer));
free(buffer);
}
}
// Upgrade requested but already at latest schema
static void
report_schema_unchanged()
{
const char *err = pcmk_strerror(pcmk_err_schema_unchanged);
crm_info("Upgrade unnecessary: %s\n", err);
printf("Upgrade unnecessary: %s\n", err);
exit_code = CRM_EX_OK;
}
int
main(int argc, char **argv)
{
int argerr = 0;
int rc = pcmk_ok;
int flag;
const char *source = NULL;
const char *admin_input_xml = NULL;
const char *admin_input_file = NULL;
gboolean dangerous_cmd = FALSE;
gboolean admin_input_stdin = FALSE;
xmlNode *output = NULL;
xmlNode *input = NULL;
int option_index = 0;
crm_xml_init(); /* Sets buffer allocation strategy */
crm_log_cli_init("cibadmin");
set_crm_log_level(LOG_CRIT);
crm_set_options(NULL, "command [options] [data]", long_options,
"Provides direct access to the cluster configuration."
"\n\nAllows the configuration, or sections of it, to be queried, modified, replaced and deleted."
"\n\nWhere necessary, XML data will be obtained using the -X, -x, or -p options.\n");
if (argc < 2) {
crm_help('?', CRM_EX_USAGE);
}
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1)
break;
switch (flag) {
case 't':
message_timeout_ms = atoi(optarg);
if (message_timeout_ms < 1) {
message_timeout_ms = 30;
}
break;
case 'A':
obj_type = optarg;
command_options |= cib_xpath;
break;
case 'e':
command_options |= cib_xpath_address;
break;
case 'u':
cib_action = CIB_OP_UPGRADE;
dangerous_cmd = TRUE;
break;
case 'E':
cib_action = CIB_OP_ERASE;
dangerous_cmd = TRUE;
break;
case 'Q':
cib_action = CIB_OP_QUERY;
break;
case 'P':
cib_action = CIB_OP_APPLY_DIFF;
break;
case 'U':
cib_user = optarg;
break;
case 'M':
cib_action = CIB_OP_MODIFY;
break;
case 'R':
cib_action = CIB_OP_REPLACE;
break;
case 'C':
cib_action = CIB_OP_CREATE;
break;
case 'D':
cib_action = CIB_OP_DELETE;
break;
case '5':
cib_action = "md5-sum";
break;
case '6':
cib_action = "md5-sum-versioned";
break;
case 'c':
command_options |= cib_can_create;
break;
case 'n':
command_options |= cib_no_children;
break;
case 'B':
cib_action = CIB_OP_BUMP;
crm_log_args(argc, argv);
break;
case 'V':
command_options = command_options | cib_verbose;
bump_log_num++;
break;
case '?':
case '$':
case '!':
crm_help(flag, CRM_EX_OK);
break;
case 'o':
crm_trace("Option %c => %s", flag, optarg);
obj_type = optarg;
break;
case 'X':
crm_trace("Option %c => %s", flag, optarg);
admin_input_xml = optarg;
crm_log_args(argc, argv);
break;
case 'x':
crm_trace("Option %c => %s", flag, optarg);
admin_input_file = optarg;
crm_log_args(argc, argv);
break;
case 'p':
admin_input_stdin = TRUE;
crm_log_args(argc, argv);
break;
case 'N':
case 'h':
host = strdup(optarg);
break;
case 'l':
command_options |= cib_scope_local;
break;
case 'd':
cib_action = CIB_OP_DELETE;
command_options |= cib_multiple;
dangerous_cmd = TRUE;
break;
case 'b':
dangerous_cmd = TRUE;
command_options |= cib_inhibit_bcast;
command_options |= cib_scope_local;
break;
case 's':
command_options |= cib_sync_call;
break;
case 'f':
force_flag = TRUE;
command_options |= cib_quorum_override;
crm_log_args(argc, argv);
break;
case 'a':
output = createEmptyCib(1);
if (optind < argc) {
crm_xml_add(output, XML_ATTR_VALIDATION, argv[optind]);
}
admin_input_xml = dump_xml_formatted(output);
fprintf(stdout, "%s\n", crm_str(admin_input_xml));
crm_exit(CRM_EX_OK);
break;
default:
printf("Argument code 0%o (%c)" " is not (?yet?) supported\n", flag, flag);
++argerr;
break;
}
}
while (bump_log_num > 0) {
crm_bump_log_level(argc, argv);
bump_log_num--;
}
if (optind < argc) {
printf("non-option ARGV-elements: ");
while (optind < argc)
printf("%s ", argv[optind++]);
printf("\n");
crm_help('?', CRM_EX_USAGE);
}
if (optind > argc || cib_action == NULL) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
if (dangerous_cmd && force_flag == FALSE) {
fprintf(stderr, "The supplied command is considered dangerous."
" To prevent accidental destruction of the cluster,"
" the --force flag is required in order to proceed.\n");
fflush(stderr);
crm_exit(CRM_EX_UNSAFE);
}
if (admin_input_file != NULL) {
input = filename2xml(admin_input_file);
source = admin_input_file;
} else if (admin_input_xml != NULL) {
source = "input string";
input = string2xml(admin_input_xml);
} else if (admin_input_stdin) {
source = "STDIN";
input = stdin2xml();
}
if (input != NULL) {
crm_log_xml_debug(input, "[admin input]");
} else if (source) {
fprintf(stderr, "Couldn't parse input from %s.\n", source);
crm_exit(CRM_EX_CONFIG);
}
if (safe_str_eq(cib_action, "md5-sum")) {
char *digest = NULL;
if (input == NULL) {
fprintf(stderr, "Please supply XML to process with -X, -x or -p\n");
crm_exit(CRM_EX_USAGE);
}
digest = calculate_on_disk_digest(input);
fprintf(stderr, "Digest: ");
fprintf(stdout, "%s\n", crm_str(digest));
free(digest);
free_xml(input);
crm_exit(CRM_EX_OK);
} else if (safe_str_eq(cib_action, "md5-sum-versioned")) {
char *digest = NULL;
const char *version = NULL;
if (input == NULL) {
fprintf(stderr, "Please supply XML to process with -X, -x or -p\n");
crm_exit(CRM_EX_USAGE);
}
version = crm_element_value(input, XML_ATTR_CRM_VERSION);
digest = calculate_xml_versioned_digest(input, FALSE, TRUE, version);
fprintf(stderr, "Versioned (%s) digest: ", version);
fprintf(stdout, "%s\n", crm_str(digest));
free(digest);
free_xml(input);
crm_exit(CRM_EX_OK);
}
rc = do_init();
if (rc != pcmk_ok) {
crm_err("Init failed, could not perform requested operations");
fprintf(stderr, "Init failed, could not perform requested operations\n");
free_xml(input);
crm_exit(crm_errno2exit(rc));
}
rc = do_work(input, command_options, &output);
if (rc > 0) {
/* wait for the reply by creating a mainloop and running it until
* the callbacks are invoked...
*/
request_id = rc;
the_cib->cmds->register_callback(the_cib, request_id, message_timeout_ms, FALSE, NULL,
"cibadmin_op_callback", cibadmin_op_callback);
mainloop = g_main_loop_new(NULL, FALSE);
crm_trace("%s waiting for reply from the local CIB", crm_system_name);
crm_info("Starting mainloop");
g_main_loop_run(mainloop);
} else if ((rc == -pcmk_err_schema_unchanged)
&& crm_str_eq(cib_action, CIB_OP_UPGRADE, TRUE)) {
report_schema_unchanged();
} else if (rc < 0) {
crm_err("Call failed: %s", pcmk_strerror(rc));
fprintf(stderr, "Call failed: %s\n", pcmk_strerror(rc));
if (rc == -pcmk_err_schema_validation) {
if (crm_str_eq(cib_action, CIB_OP_UPGRADE, TRUE)) {
xmlNode *obj = NULL;
int version = 0, rc = 0;
rc = the_cib->cmds->query(the_cib, NULL, &obj, command_options);
if (rc == pcmk_ok) {
update_validation(&obj, &version, 0, TRUE, FALSE);
}
} else if (output) {
validate_xml_verbose(output);
}
}
exit_code = crm_errno2exit(rc);
}
if (output != NULL) {
print_xml_output(output);
free_xml(output);
}
crm_trace("%s exiting normally", crm_system_name);
free_xml(input);
rc = the_cib->cmds->signoff(the_cib);
if (exit_code == CRM_EX_OK) {
exit_code = crm_errno2exit(rc);
}
cib_delete(the_cib);
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
int
do_work(xmlNode * input, int call_options, xmlNode ** output)
{
/* construct the request */
the_cib->call_timeout = message_timeout_ms;
if (strcasecmp(CIB_OP_REPLACE, cib_action) == 0
&& safe_str_eq(crm_element_name(input), XML_TAG_CIB)) {
xmlNode *status = get_object_root(XML_CIB_TAG_STATUS, input);
if (status == NULL) {
create_xml_node(input, XML_CIB_TAG_STATUS);
}
}
if (cib_action != NULL) {
crm_trace("Passing \"%s\" to variant_op...", cib_action);
return cib_internal_op(the_cib, cib_action, host, obj_type, input, output, call_options, cib_user);
} else {
crm_err("You must specify an operation");
}
return -EINVAL;
}
int
do_init(void)
{
int rc = pcmk_ok;
the_cib = cib_new();
rc = the_cib->cmds->signon(the_cib, crm_system_name, cib_command);
if (rc != pcmk_ok) {
crm_err("Connection to the CIB manager failed: %s", pcmk_strerror(rc));
fprintf(stderr, "Connection to the CIB manager failed: %s\n",
pcmk_strerror(rc));
}
return rc;
}
void
cibadmin_op_callback(xmlNode * msg, int call_id, int rc, xmlNode * output, void *user_data)
{
exit_code = crm_errno2exit(rc);
if (rc == -pcmk_err_schema_unchanged) {
report_schema_unchanged();
} else if (rc != pcmk_ok) {
crm_warn("Call %s failed (%d): %s", cib_action, rc, pcmk_strerror(rc));
fprintf(stderr, "Call %s failed (%d): %s\n", cib_action, rc, pcmk_strerror(rc));
print_xml_output(output);
} else if (safe_str_eq(cib_action, CIB_OP_QUERY) && output == NULL) {
crm_err("Query returned no output");
crm_log_xml_err(msg, "no output");
} else if (output == NULL) {
crm_info("Call passed");
} else {
crm_info("Call passed");
print_xml_output(output);
}
if (call_id == request_id) {
g_main_loop_quit(mainloop);
} else {
crm_info("Message was not the response we were looking for (%d vs. %d)",
call_id, request_id);
}
}
diff --git a/tools/crm_attribute.c b/tools/crm_attribute.c
index 107dad0160..3326acdeca 100644
--- a/tools/crm_attribute.c
+++ b/tools/crm_attribute.c
@@ -1,339 +1,341 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
gboolean BE_QUIET = FALSE;
char command = 'G';
const char *dest_uname = NULL;
char *dest_node = NULL;
char *set_name = NULL;
char *attr_id = NULL;
char *attr_name = NULL;
char *attr_pattern = NULL;
const char *type = NULL;
const char *rsc_id = NULL;
const char *attr_value = NULL;
const char *attr_default = NULL;
const char *set_type = NULL;
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{"quiet", 0, 0, 'q', "\tPrint only the value on stdout\n"},
{"name", 1, 0, 'n', "Name of the attribute/option to operate on"},
{"pattern", 1, 0, 'P', "Pattern matching names of attributes (only with -v/-D and -l reboot)"},
{"-spacer-", 0, 0, '-', "\nCommands:"},
{"query", 0, 0, 'G', "\tQuery the current value of the attribute/option"},
{"update", 1, 0, 'v', "Update the value of the attribute/option"},
{"delete", 0, 0, 'D', "\tDelete the attribute/option"},
{"-spacer-", 0, 0, '-', "\nAdditional Options:"},
{"node", 1, 0, 'N', "Set an attribute for the named node (instead of a cluster option). See also: -l"},
{"type", 1, 0, 't', "Which part of the configuration to update/delete/query the option in"},
{"-spacer-", 0, 0, '-', "\t\t\tValid values: crm_config, rsc_defaults, op_defaults, tickets"},
{"lifetime", 1, 0, 'l', "Lifetime of the node attribute"},
{"-spacer-", 0, 0, '-', "\t\t\tValid values: reboot, forever"},
{"utilization", 0, 0, 'z', "Set an utilization attribute for the node."},
{"set-name", 1, 0, 's', "(Advanced) The attribute set in which to place the value"},
{"id", 1, 0, 'i', "\t(Advanced) The ID used to identify the attribute"},
{"default", 1, 0, 'd', "(Advanced) The default value to display if none is found in the configuration"},
{"inhibit-policy-engine", 0, 0, '!', NULL, 1},
/* legacy */
{"quiet", 0, 0, 'Q', NULL, 1},
{"node-uname", 1, 0, 'U', NULL, 1},
{"get-value", 0, 0, 'G', NULL, 1},
{"delete-attr", 0, 0, 'D', NULL, 1},
{"attr-value", 1, 0, 'v', NULL, 1},
{"attr-name", 1, 0, 'n', NULL, 1},
{"attr-id", 1, 0, 'i', NULL, 1},
{"-spacer-", 1, 0, '-', "\nExamples:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "Add a new node attribute called 'location' with the value of 'office' for host 'myhost':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_attribute --node myhost --name location --update office", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Query the value of the 'location' node attribute for host 'myhost':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_attribute --node myhost --name location --query", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Change the value of the 'location' node attribute for host 'myhost':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_attribute --node myhost --name location --update backoffice", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Delete the 'location' node attribute for host 'myhost':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_attribute --node myhost --name location --delete", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Query the value of the cluster-delay cluster option:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_attribute --type crm_config --name cluster-delay --query", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Query the value of the cluster-delay cluster option. Only print the value:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_attribute --type crm_config --name cluster-delay --query --quiet", pcmk_option_example},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
cib_t *the_cib = NULL;
int rc = pcmk_ok;
int cib_opts = cib_sync_call;
int argerr = 0;
int flag;
int option_index = 0;
int is_remote_node = 0;
crm_log_cli_init("crm_attribute");
crm_set_options(NULL, " -n [options]", long_options,
"Manage node's attributes and cluster options."
"\n\nAllows node attributes and cluster options to be queried, modified and deleted.\n");
if (argc < 2) {
crm_help('?', CRM_EX_USAGE);
}
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
case 'G':
command = flag;
attr_value = optarg;
break;
case 'D':
case 'v':
command = flag;
attr_value = optarg;
crm_log_args(argc, argv);
break;
case 'q':
case 'Q':
BE_QUIET = TRUE;
break;
case 'U':
case 'N':
dest_uname = strdup(optarg);
break;
case 's':
set_name = strdup(optarg);
break;
case 'l':
case 't':
type = optarg;
break;
case 'z':
type = XML_CIB_TAG_NODES;
set_type = XML_TAG_UTILIZATION;
break;
case 'n':
attr_name = strdup(optarg);
break;
case 'P':
attr_pattern = strdup(optarg);
break;
case 'i':
attr_id = strdup(optarg);
break;
case 'r':
rsc_id = optarg;
break;
case 'd':
attr_default = optarg;
break;
case '!':
crm_warn("Inhibiting notifications for this update");
cib_opts |= cib_inhibit_notify;
break;
default:
printf("Argument code 0%o (%c) is not (?yet?) supported\n", flag, flag);
++argerr;
break;
}
}
if (optind < argc) {
printf("non-option ARGV-elements: ");
while (optind < argc)
printf("%s ", argv[optind++]);
printf("\n");
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
the_cib = cib_new();
rc = the_cib->cmds->signon(the_cib, crm_system_name, cib_command);
if (rc != pcmk_ok) {
fprintf(stderr, "Error connecting to the CIB manager: %s\n",
pcmk_strerror(rc));
- return crm_exit(crm_errno2exit(rc));
+ crm_exit(crm_errno2exit(rc));
}
if (type == NULL && dest_uname != NULL) {
type = "forever";
}
if (safe_str_eq(type, "reboot")) {
type = XML_CIB_TAG_STATUS;
} else if (safe_str_eq(type, "forever")) {
type = XML_CIB_TAG_NODES;
}
if (type == NULL && dest_uname == NULL) {
/* we're updating cluster options - don't populate dest_node */
type = XML_CIB_TAG_CRMCONFIG;
} else if (safe_str_eq(type, XML_CIB_TAG_CRMCONFIG)) {
} else if (safe_str_neq(type, XML_CIB_TAG_TICKETS)) {
/* If we are being called from a resource agent via the cluster,
* the correct local node name will be passed as an environment
* variable. Otherwise, we have to ask the cluster.
*/
dest_uname = attrd_get_target(dest_uname);
if (dest_uname == NULL) {
dest_uname = get_local_node_name();
}
rc = query_node_uuid(the_cib, dest_uname, &dest_node, &is_remote_node);
if (pcmk_ok != rc) {
fprintf(stderr, "Could not map name=%s to a UUID\n", dest_uname);
the_cib->cmds->signoff(the_cib);
cib_delete(the_cib);
- return crm_exit(crm_errno2exit(rc));
+ crm_exit(crm_errno2exit(rc));
}
}
if ((command == 'D') && (attr_name == NULL) && (attr_pattern == NULL)) {
fprintf(stderr, "Error: must specify attribute name or pattern to delete\n");
- return crm_exit(CRM_EX_USAGE);
+ crm_exit(CRM_EX_USAGE);
}
if (attr_pattern) {
if (((command != 'v') && (command != 'D'))
|| safe_str_neq(type, XML_CIB_TAG_STATUS)) {
fprintf(stderr, "Error: pattern can only be used with till-reboot update or delete\n");
- return crm_exit(CRM_EX_USAGE);
+ crm_exit(CRM_EX_USAGE);
}
command = 'u';
free(attr_name);
attr_name = attr_pattern;
}
if (((command == 'v') || (command == 'D') || (command == 'u'))
&& safe_str_eq(type, XML_CIB_TAG_STATUS)
&& pcmk_ok == attrd_update_delegate(NULL, command, dest_uname, attr_name,
attr_value, type, set_name, NULL, NULL,
is_remote_node?attrd_opt_remote:attrd_opt_none)) {
crm_info("Update %s=%s sent via pacemaker-attrd",
attr_name, ((command == 'D')? "" : attr_value));
} else if (command == 'D') {
rc = delete_attr_delegate(the_cib, cib_opts, type, dest_node, set_type, set_name,
attr_id, attr_name, attr_value, TRUE, NULL);
if (rc == -ENXIO) {
/* Nothing to delete...
* which means it's not there...
* which is what the admin wanted
*/
rc = pcmk_ok;
}
} else if (command == 'v') {
CRM_LOG_ASSERT(type != NULL);
CRM_LOG_ASSERT(attr_name != NULL);
CRM_LOG_ASSERT(attr_value != NULL);
rc = update_attr_delegate(the_cib, cib_opts, type, dest_node, set_type, set_name,
attr_id, attr_name, attr_value, TRUE, NULL, is_remote_node ? "remote" : NULL);
} else { /* query */
char *read_value = NULL;
rc = read_attr_delegate(the_cib, type, dest_node, set_type, set_name,
attr_id, attr_name, &read_value, TRUE, NULL);
if (rc == -ENXIO && attr_default) {
read_value = strdup(attr_default);
rc = pcmk_ok;
}
crm_info("Read %s=%s %s%s",
attr_name, crm_str(read_value), set_name ? "in " : "", set_name ? set_name : "");
if (rc == -ENOTUNIQ) {
// Multiple matches (already displayed) are not error for queries
rc = pcmk_ok;
} else if (BE_QUIET == FALSE) {
fprintf(stdout, "%s%s %s%s %s%s value=%s\n",
type ? "scope=" : "", type ? type : "",
attr_id ? "id=" : "", attr_id ? attr_id : "",
attr_name ? "name=" : "", attr_name ? attr_name : "",
read_value ? read_value : "(null)");
} else if (read_value != NULL) {
fprintf(stdout, "%s\n", read_value);
}
free(read_value);
}
if (rc == -ENOTUNIQ) {
printf("Please choose from one of the matches above and supply the 'id' with --attr-id\n");
} else if (rc != pcmk_ok) {
fprintf(stderr, "Error performing operation: %s\n", pcmk_strerror(rc));
}
the_cib->cmds->signoff(the_cib);
cib_delete(the_cib);
- return crm_exit(crm_errno2exit(rc));
+ crm_exit(crm_errno2exit(rc));
}
diff --git a/tools/crm_mon.c b/tools/crm_mon.c
index bb07d5b0e1..f8f806b0d2 100644
--- a/tools/crm_mon.c
+++ b/tools/crm_mon.c
@@ -1,4453 +1,4453 @@
/*
* Copyright 2004-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include /* crm_ends_with_ext */
#include
#include
#include
#include
#include
#include
#include
#include <../lib/pengine/unpack.h>
#include
#include
static void clean_up_connections(void);
static crm_exit_t clean_up(crm_exit_t exit_code);
static void crm_diff_update(const char *event, xmlNode * msg);
static gboolean mon_refresh_display(gpointer user_data);
static int cib_connect(gboolean full);
static void mon_st_callback_event(stonith_t * st, stonith_event_t * e);
static void mon_st_callback_display(stonith_t * st, stonith_event_t * e);
static void kick_refresh(gboolean data_updated);
static char *get_node_display_name(node_t *node);
/*
* Definitions indicating which items to print
*/
#define mon_show_times (0x0001U)
#define mon_show_stack (0x0002U)
#define mon_show_dc (0x0004U)
#define mon_show_count (0x0008U)
#define mon_show_nodes (0x0010U)
#define mon_show_resources (0x0020U)
#define mon_show_attributes (0x0040U)
#define mon_show_failcounts (0x0080U)
#define mon_show_operations (0x0100U)
#define mon_show_tickets (0x0200U)
#define mon_show_bans (0x0400U)
#define mon_show_fence_history (0x0800U)
#define mon_show_headers (mon_show_times | mon_show_stack | mon_show_dc \
| mon_show_count)
#define mon_show_default (mon_show_headers | mon_show_nodes \
| mon_show_resources)
#define mon_show_all (mon_show_default | mon_show_attributes \
| mon_show_failcounts | mon_show_operations \
| mon_show_tickets | mon_show_bans \
| mon_show_fence_history)
static unsigned int show = mon_show_default;
/*
* Definitions indicating how to output
*/
enum mon_output_format_e {
mon_output_none,
mon_output_monitor,
mon_output_plain,
mon_output_console,
mon_output_xml,
mon_output_html,
mon_output_cgi
} output_format = mon_output_console;
static char *output_filename = NULL; /* if sending output to a file, its name */
/* other globals */
static char *pid_file = NULL;
static gboolean group_by_node = FALSE;
static gboolean inactive_resources = FALSE;
static int reconnect_msec = 5000;
static gboolean daemonize = FALSE;
static GMainLoop *mainloop = NULL;
static guint timer_id = 0;
static mainloop_timer_t *refresh_timer = NULL;
static pe_working_set_t *mon_data_set = NULL;
static GList *attr_list = NULL;
static const char *external_agent = NULL;
static const char *external_recipient = NULL;
static cib_t *cib = NULL;
static stonith_t *st = NULL;
static xmlNode *current_cib = NULL;
static gboolean one_shot = FALSE;
static gboolean has_warnings = FALSE;
static gboolean print_timing = FALSE;
static gboolean watch_fencing = FALSE;
static gboolean fence_history = FALSE;
static gboolean fence_full_history = FALSE;
static gboolean fence_connect = FALSE;
static int fence_history_level = 1;
static gboolean print_brief = FALSE;
static gboolean print_pending = TRUE;
static gboolean print_clone_detail = FALSE;
#if CURSES_ENABLED
static gboolean curses_console_initialized = FALSE;
#endif
/* FIXME allow, detect, and correctly interpret glob pattern or regex? */
const char *print_neg_location_prefix = "";
/* Never display node attributes whose name starts with one of these prefixes */
#define FILTER_STR { CRM_FAIL_COUNT_PREFIX, CRM_LAST_FAILURE_PREFIX, \
"shutdown", "terminate", "standby", "probe_complete", \
"#", NULL }
long last_refresh = 0;
crm_trigger_t *refresh_trigger = NULL;
/* Define exit codes for monitoring-compatible output
* For nagios plugins, the possibilities are
* OK=0, WARN=1, CRIT=2, and UNKNOWN=3
*/
#define MON_STATUS_WARN CRM_EX_ERROR
#define MON_STATUS_CRIT CRM_EX_INVALID_PARAM
#define MON_STATUS_UNKNOWN CRM_EX_UNIMPLEMENT_FEATURE
/* Convenience macro for prettifying output (e.g. "node" vs "nodes") */
#define s_if_plural(i) (((i) == 1)? "" : "s")
#if CURSES_ENABLED
# define print_dot() if (output_format == mon_output_console) { \
printw("."); \
clrtoeol(); \
refresh(); \
} else { \
fprintf(stdout, "."); \
}
#else
# define print_dot() fprintf(stdout, ".");
#endif
#if CURSES_ENABLED
# define print_as(fmt, args...) if (output_format == mon_output_console) { \
printw(fmt, ##args); \
clrtoeol(); \
refresh(); \
} else { \
fprintf(stdout, fmt, ##args); \
}
#else
# define print_as(fmt, args...) fprintf(stdout, fmt, ##args);
#endif
static void
blank_screen(void)
{
#if CURSES_ENABLED
int lpc = 0;
for (lpc = 0; lpc < LINES; lpc++) {
move(lpc, 0);
clrtoeol();
}
move(0, 0);
refresh();
#endif
}
static gboolean
mon_timer_popped(gpointer data)
{
int rc = pcmk_ok;
#if CURSES_ENABLED
if (output_format == mon_output_console) {
clear();
refresh();
}
#endif
if (timer_id > 0) {
g_source_remove(timer_id);
timer_id = 0;
}
print_as("Reconnecting...\n");
rc = cib_connect(TRUE);
if (rc != pcmk_ok) {
timer_id = g_timeout_add(reconnect_msec, mon_timer_popped, NULL);
}
return FALSE;
}
static void
mon_cib_connection_destroy(gpointer user_data)
{
print_as("Connection to the cluster-daemons terminated\n");
if (refresh_timer != NULL) {
/* we'll trigger a refresh after reconnect */
mainloop_timer_stop(refresh_timer);
}
if (timer_id) {
/* we'll trigger a new reconnect-timeout at the end */
g_source_remove(timer_id);
timer_id = 0;
}
if (st) {
/* the client API won't properly reconnect notifications
* if they are still in the table - so remove them
*/
st->cmds->remove_notification(st, T_STONITH_NOTIFY_DISCONNECT);
st->cmds->remove_notification(st, T_STONITH_NOTIFY_FENCE);
st->cmds->remove_notification(st, T_STONITH_NOTIFY_HISTORY);
if (st->state != stonith_disconnected) {
st->cmds->disconnect(st);
}
}
if (cib) {
cib->cmds->signoff(cib);
timer_id = g_timeout_add(reconnect_msec, mon_timer_popped, NULL);
}
return;
}
/*
* Mainloop signal handler.
*/
static void
mon_shutdown(int nsig)
{
clean_up(CRM_EX_OK);
}
#if ON_DARWIN
# define sighandler_t sig_t
#endif
#if CURSES_ENABLED
# ifndef HAVE_SIGHANDLER_T
typedef void (*sighandler_t) (int);
# endif
static sighandler_t ncurses_winch_handler;
static void
mon_winresize(int nsig)
{
static int not_done;
int lines = 0, cols = 0;
if (!not_done++) {
if (ncurses_winch_handler)
/* the original ncurses WINCH signal handler does the
* magic of retrieving the new window size;
* otherwise, we'd have to use ioctl or tgetent */
(*ncurses_winch_handler) (SIGWINCH);
getmaxyx(stdscr, lines, cols);
resizeterm(lines, cols);
mainloop_set_trigger(refresh_trigger);
}
not_done--;
}
#endif
static int
cib_connect(gboolean full)
{
int rc = pcmk_ok;
static gboolean need_pass = TRUE;
CRM_CHECK(cib != NULL, return -EINVAL);
if (getenv("CIB_passwd") != NULL) {
need_pass = FALSE;
}
if ((fence_connect) && (st == NULL)) {
st = stonith_api_new();
}
if ((fence_connect) && (st->state == stonith_disconnected)) {
crm_trace("Connecting to stonith");
rc = st->cmds->connect(st, crm_system_name, NULL);
if (rc == pcmk_ok) {
crm_trace("Setting up stonith callbacks");
if (watch_fencing) {
st->cmds->register_notification(st, T_STONITH_NOTIFY_DISCONNECT,
mon_st_callback_event);
st->cmds->register_notification(st, T_STONITH_NOTIFY_FENCE, mon_st_callback_event);
} else {
st->cmds->register_notification(st, T_STONITH_NOTIFY_DISCONNECT,
mon_st_callback_display);
st->cmds->register_notification(st, T_STONITH_NOTIFY_HISTORY, mon_st_callback_display);
}
}
}
if (cib->state != cib_connected_query && cib->state != cib_connected_command) {
crm_trace("Connecting to the CIB");
if ((output_format == mon_output_console) && need_pass && (cib->variant == cib_remote)) {
need_pass = FALSE;
print_as("Password:");
}
rc = cib->cmds->signon(cib, crm_system_name, cib_query);
if (rc != pcmk_ok) {
return rc;
}
rc = cib->cmds->query(cib, NULL, ¤t_cib, cib_scope_local | cib_sync_call);
if (rc == pcmk_ok) {
mon_refresh_display(NULL);
}
if (rc == pcmk_ok && full) {
if (rc == pcmk_ok) {
rc = cib->cmds->set_connection_dnotify(cib, mon_cib_connection_destroy);
if (rc == -EPROTONOSUPPORT) {
print_as
("Notification setup not supported, won't be able to reconnect after failure");
if (output_format == mon_output_console) {
sleep(2);
}
rc = pcmk_ok;
}
}
if (rc == pcmk_ok) {
cib->cmds->del_notify_callback(cib, T_CIB_DIFF_NOTIFY, crm_diff_update);
rc = cib->cmds->add_notify_callback(cib, T_CIB_DIFF_NOTIFY, crm_diff_update);
}
if (rc != pcmk_ok) {
print_as("Notification setup failed, could not monitor CIB actions");
if (output_format == mon_output_console) {
sleep(2);
}
clean_up_connections();
}
}
}
return rc;
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{"quiet", 0, 0, 'Q', "\tDisplay only essential output" },
{"-spacer-", 1, 0, '-', "\nModes (mutually exclusive):"},
{"as-html", 1, 0, 'h', "\tWrite cluster status to the named html file"},
{"as-xml", 0, 0, 'X', "\t\tWrite cluster status as xml to stdout. This will enable one-shot mode."},
{"web-cgi", 0, 0, 'w', "\t\tWeb mode with output suitable for CGI (preselected when run as *.cgi)"},
{"simple-status", 0, 0, 's', "\tDisplay the cluster status once as a simple one line output (suitable for nagios)"},
{"-spacer-", 1, 0, '-', "\nDisplay Options:"},
{"group-by-node", 0, 0, 'n', "\tGroup resources by node" },
{"inactive", 0, 0, 'r', "\t\tDisplay inactive resources" },
{"failcounts", 0, 0, 'f', "\tDisplay resource fail counts"},
{"operations", 0, 0, 'o', "\tDisplay resource operation history" },
{"timing-details", 0, 0, 't', "\tDisplay resource operation history with timing details" },
{"tickets", 0, 0, 'c', "\t\tDisplay cluster tickets"},
{"watch-fencing", 0, 0, 'W', "\tListen for fencing events. For use with --external-agent"},
{"fence-history", 2, 0, 'm', "Show fence history\n"
"\t\t\t\t\t0=off, 1=failures and pending (default without option),\n"
"\t\t\t\t\t2=add successes (default without value for option),\n"
"\t\t\t\t\t3=show full history without reduction to most recent of each flavor"},
{"neg-locations", 2, 0, 'L', "Display negative location constraints [optionally filtered by id prefix]"},
{"show-node-attributes", 0, 0, 'A', "Display node attributes" },
{"hide-headers", 0, 0, 'D', "\tHide all headers" },
{"show-detail", 0, 0, 'R', "\tShow more details (node IDs, individual clone instances)" },
{"brief", 0, 0, 'b', "\t\tBrief output" },
{"pending", 0, 0, 'j', "\t\tDisplay pending state if 'record-pending' is enabled", pcmk_option_hidden},
{"-spacer-", 1, 0, '-', "\nAdditional Options:"},
{"interval", 1, 0, 'i', "\tUpdate frequency in seconds" },
{"one-shot", 0, 0, '1', "\t\tDisplay the cluster status once on the console and exit"},
{"disable-ncurses",0, 0, 'N', "\tDisable the use of ncurses", !CURSES_ENABLED},
{"daemonize", 0, 0, 'd', "\tRun in the background as a daemon"},
{"pid-file", 1, 0, 'p', "\t(Advanced) Daemon pid file location"},
{"external-agent", 1, 0, 'E', "A program to run when resource operations take place."},
{"external-recipient",1, 0, 'e', "A recipient for your program (assuming you want the program to send something to someone)."},
{"xml-file", 1, 0, 'x', NULL, pcmk_option_hidden},
{"-spacer-", 1, 0, '-', "\nExamples:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "Display the cluster status on the console with updates as they occur:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_mon", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Display the cluster status on the console just once then exit:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_mon -1", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Display your cluster status, group resources by node, and include inactive resources in the list:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_mon --group-by-node --inactive", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Start crm_mon as a background daemon and have it write the cluster status to an HTML file:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_mon --daemonize --as-html /path/to/docroot/filename.html", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Start crm_mon and export the current cluster status as xml to stdout, then exit.:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_mon --as-xml", pcmk_option_example},
{NULL, 0, 0, 0}
};
/* *INDENT-ON* */
#if CURSES_ENABLED
static const char *
get_option_desc(char c)
{
int lpc;
for (lpc = 0; long_options[lpc].name != NULL; lpc++) {
if (long_options[lpc].name[0] == '-')
continue;
if (long_options[lpc].val == c) {
static char *buf = NULL;
const char *rv;
char *nl;
/* chop off tabs and cut at newline */
free(buf); /* free string from last usage */
buf = strdup(long_options[lpc].desc);
rv = buf; /* make a copy to keep buf pointer unaltered
for freeing when we come by next time.
Like this the result stays valid until
the next call.
*/
while(isspace(rv[0])) {
rv++;
}
nl = strchr(rv, '\n');
if (nl) {
*nl = '\0';
}
return rv;
}
}
return NULL;
}
#define print_option_help(option, condition) \
print_as("%c %c: \t%s\n", ((condition)? '*': ' '), option, get_option_desc(option));
static gboolean
detect_user_input(GIOChannel *channel, GIOCondition condition, gpointer unused)
{
int c;
gboolean config_mode = FALSE;
while (1) {
/* Get user input */
c = getchar();
switch (c) {
case 'm':
if (!fence_history_level) {
fence_history = TRUE;
fence_connect = TRUE;
if (st == NULL) {
mon_cib_connection_destroy(NULL);
}
}
show ^= mon_show_fence_history;
break;
case 'c':
show ^= mon_show_tickets;
break;
case 'f':
show ^= mon_show_failcounts;
break;
case 'n':
group_by_node = ! group_by_node;
break;
case 'o':
show ^= mon_show_operations;
if ((show & mon_show_operations) == 0) {
print_timing = 0;
}
break;
case 'r':
inactive_resources = ! inactive_resources;
break;
case 'R':
print_clone_detail = ! print_clone_detail;
break;
case 't':
print_timing = ! print_timing;
if (print_timing) {
show |= mon_show_operations;
}
break;
case 'A':
show ^= mon_show_attributes;
break;
case 'L':
show ^= mon_show_bans;
break;
case 'D':
/* If any header is shown, clear them all, otherwise set them all */
if (show & mon_show_headers) {
show &= ~mon_show_headers;
} else {
show |= mon_show_headers;
}
break;
case 'b':
print_brief = ! print_brief;
break;
case 'j':
print_pending = ! print_pending;
break;
case '?':
config_mode = TRUE;
break;
default:
goto refresh;
}
if (!config_mode)
goto refresh;
blank_screen();
print_as("Display option change mode\n");
print_as("\n");
print_option_help('c', show & mon_show_tickets);
print_option_help('f', show & mon_show_failcounts);
print_option_help('n', group_by_node);
print_option_help('o', show & mon_show_operations);
print_option_help('r', inactive_resources);
print_option_help('t', print_timing);
print_option_help('A', show & mon_show_attributes);
print_option_help('L', show & mon_show_bans);
print_option_help('D', (show & mon_show_headers) == 0);
print_option_help('R', print_clone_detail);
print_option_help('b', print_brief);
print_option_help('j', print_pending);
print_option_help('m', (show & mon_show_fence_history));
print_as("\n");
print_as("Toggle fields via field letter, type any other key to return");
}
refresh:
mon_refresh_display(NULL);
return TRUE;
}
#endif
int
main(int argc, char **argv)
{
int flag;
int argerr = 0;
int option_index = 0;
int rc = pcmk_ok;
pid_file = strdup("/tmp/ClusterMon.pid");
crm_log_cli_init("crm_mon");
crm_set_options(NULL, "mode [options]", long_options,
"Provides a summary of cluster's current state."
"\n\nOutputs varying levels of detail in a number of different formats.\n");
#if !defined (ON_DARWIN) && !defined (ON_BSD)
/* prevent zombies */
signal(SIGCLD, SIG_IGN);
#endif
if (crm_ends_with_ext(argv[0], ".cgi") == TRUE) {
output_format = mon_output_cgi;
one_shot = TRUE;
}
/* to enable stonith-connection when called via some application like pcs
* set environment-variable FENCE_HISTORY to desired level
* so you don't have to modify this application
*/
/* fence_history_level = crm_atoi(getenv("FENCE_HISTORY"), "0"); */
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case 'Q':
show &= ~mon_show_times;
break;
case 'i':
reconnect_msec = crm_get_msec(optarg);
break;
case 'n':
group_by_node = TRUE;
break;
case 'r':
inactive_resources = TRUE;
break;
case 'W':
watch_fencing = TRUE;
fence_connect = TRUE;
break;
case 'm':
fence_history_level = crm_atoi(optarg, "2");
break;
case 'd':
daemonize = TRUE;
break;
case 't':
print_timing = TRUE;
show |= mon_show_operations;
break;
case 'o':
show |= mon_show_operations;
break;
case 'f':
show |= mon_show_failcounts;
break;
case 'A':
show |= mon_show_attributes;
break;
case 'L':
show |= mon_show_bans;
print_neg_location_prefix = optarg? optarg : "";
break;
case 'D':
show &= ~mon_show_headers;
break;
case 'b':
print_brief = TRUE;
break;
case 'j':
print_pending = TRUE;
break;
case 'R':
print_clone_detail = TRUE;
break;
case 'c':
show |= mon_show_tickets;
break;
case 'p':
free(pid_file);
if(optarg == NULL) {
crm_help(flag, CRM_EX_USAGE);
}
pid_file = strdup(optarg);
break;
case 'x':
if(optarg == NULL) {
crm_help(flag, CRM_EX_USAGE);
}
setenv("CIB_file", optarg, 1);
one_shot = TRUE;
break;
case 'h':
if(optarg == NULL) {
crm_help(flag, CRM_EX_USAGE);
}
argerr += (output_format != mon_output_console);
output_format = mon_output_html;
output_filename = strdup(optarg);
umask(S_IWGRP | S_IWOTH);
break;
case 'X':
argerr += (output_format != mon_output_console);
output_format = mon_output_xml;
one_shot = TRUE;
break;
case 'w':
/* do not allow argv[0] and argv[1...] redundancy */
argerr += (output_format != mon_output_console);
output_format = mon_output_cgi;
one_shot = TRUE;
break;
case 's':
argerr += (output_format != mon_output_console);
output_format = mon_output_monitor;
one_shot = TRUE;
break;
case 'E':
external_agent = optarg;
break;
case 'e':
external_recipient = optarg;
break;
case '1':
one_shot = TRUE;
break;
case 'N':
if (output_format == mon_output_console) {
output_format = mon_output_plain;
}
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
default:
printf("Argument code 0%o (%c) is not (?yet?) supported\n", flag, flag);
++argerr;
break;
}
}
if (watch_fencing) {
/* don't moan as fence_history_level == 1 is default */
fence_history_level = 0;
}
/* create the cib-object early to be able to do further
* decisions based on the cib-source
*/
cib = cib_new();
if (cib == NULL) {
rc = -EINVAL;
} else {
switch (cib->variant) {
case cib_native:
/* cib & fencing - everything available */
break;
case cib_file:
/* Don't try to connect to fencing as we
* either don't have a running cluster or
* the fencing-information would possibly
* not match the cib data from a file.
* As we don't expect cib-updates coming
* in enforce one-shot. */
fence_history_level = 0;
one_shot = TRUE;
break;
case cib_remote:
/* updates coming in but no fencing */
fence_history_level = 0;
break;
case cib_undefined:
case cib_database:
default:
/* something is odd */
rc = -EINVAL;
crm_err("Invalid cib-source");
break;
}
}
switch (fence_history_level) {
case 3:
fence_full_history = TRUE;
/* fall through to next lower level */
case 2:
show |= mon_show_fence_history;
/* fall through to next lower level */
case 1:
fence_history = TRUE;
fence_connect = TRUE;
break;
default:
break;
}
/* Extra sanity checks when in CGI mode */
if (output_format == mon_output_cgi) {
argerr += (optind < argc);
argerr += (output_filename != NULL);
argerr += ((cib) && (cib->variant == cib_file));
argerr += (external_agent != NULL);
argerr += (daemonize == TRUE); /* paranoia */
} else if (optind < argc) {
printf("non-option ARGV-elements: ");
while (optind < argc)
printf("%s ", argv[optind++]);
printf("\n");
}
if (argerr) {
return clean_up(CRM_EX_USAGE);
}
/* XML output always prints everything */
if (output_format == mon_output_xml) {
show = mon_show_all;
print_timing = TRUE;
}
if (one_shot) {
if (output_format == mon_output_console) {
output_format = mon_output_plain;
}
} else if (daemonize) {
if ((output_format == mon_output_console) || (output_format == mon_output_plain)) {
output_format = mon_output_none;
}
crm_enable_stderr(FALSE);
if ((output_format != mon_output_html)
&& !external_agent) {
printf ("Looks like you forgot to specify one or more of: "
"--as-html, --external-agent\n");
return clean_up(CRM_EX_USAGE);
}
if (cib) {
/* to be on the safe side don't have cib-object around
* when we are forking
*/
cib_delete(cib);
cib = NULL;
crm_make_daemon(crm_system_name, TRUE, pid_file);
cib = cib_new();
if (cib == NULL) {
rc = -EINVAL;
}
/* otherwise assume we've got the same cib-object we've just destroyed
* in our parent
*/
}
} else if (output_format == mon_output_console) {
#if CURSES_ENABLED
initscr();
cbreak();
noecho();
crm_enable_stderr(FALSE);
curses_console_initialized = TRUE;
#else
one_shot = TRUE;
output_format = mon_output_plain;
printf("Defaulting to one-shot mode\n");
printf("You need to have curses available at compile time to enable console mode\n");
#endif
}
crm_info("Starting %s", crm_system_name);
if (cib) {
do {
if (!one_shot) {
print_as("Waiting until cluster is available on this node ...\n");
}
rc = cib_connect(!one_shot);
if (one_shot) {
break;
} else if (rc != pcmk_ok) {
sleep(reconnect_msec / 1000);
#if CURSES_ENABLED
if (output_format == mon_output_console) {
clear();
refresh();
}
#endif
} else {
if (output_format == mon_output_html) {
print_as("Writing html to %s ...\n", output_filename);
}
}
} while (rc == -ENOTCONN);
}
if (rc != pcmk_ok) {
if (output_format == mon_output_monitor) {
printf("CLUSTER CRIT: Connection to cluster failed: %s\n",
pcmk_strerror(rc));
return clean_up(MON_STATUS_CRIT);
} else {
if (rc == -ENOTCONN) {
print_as("\nError: cluster is not available on this node\n");
} else {
print_as("\nConnection to cluster failed: %s\n",
pcmk_strerror(rc));
}
}
if (output_format == mon_output_console) {
sleep(2);
}
return clean_up(crm_errno2exit(rc));
}
if (one_shot) {
return clean_up(CRM_EX_OK);
}
mainloop = g_main_loop_new(NULL, FALSE);
mainloop_add_signal(SIGTERM, mon_shutdown);
mainloop_add_signal(SIGINT, mon_shutdown);
#if CURSES_ENABLED
if (output_format == mon_output_console) {
ncurses_winch_handler = signal(SIGWINCH, mon_winresize);
if (ncurses_winch_handler == SIG_DFL ||
ncurses_winch_handler == SIG_IGN || ncurses_winch_handler == SIG_ERR)
ncurses_winch_handler = NULL;
g_io_add_watch(g_io_channel_unix_new(STDIN_FILENO), G_IO_IN, detect_user_input, NULL);
}
#endif
refresh_trigger = mainloop_add_trigger(G_PRIORITY_LOW, mon_refresh_display, NULL);
g_main_loop_run(mainloop);
g_main_loop_unref(mainloop);
crm_info("Exiting %s", crm_system_name);
return clean_up(CRM_EX_OK);
}
#define mon_warn(fmt...) do { \
if (!has_warnings) { \
print_as("CLUSTER WARN:"); \
} else { \
print_as(","); \
} \
print_as(fmt); \
has_warnings = TRUE; \
} while(0)
static int
count_resources(pe_working_set_t * data_set, resource_t * rsc)
{
int count = 0;
GListPtr gIter = NULL;
if (rsc == NULL) {
gIter = data_set->resources;
} else if (rsc->children) {
gIter = rsc->children;
} else {
return is_not_set(rsc->flags, pe_rsc_orphan);
}
for (; gIter != NULL; gIter = gIter->next) {
count += count_resources(data_set, gIter->data);
}
return count;
}
/*!
* \internal
* \brief Print one-line status suitable for use with monitoring software
*
* \param[in] data_set Working set of CIB state
* \param[in] history List of stonith actions
*
* \note This function's output (and the return code when the program exits)
* should conform to https://www.monitoring-plugins.org/doc/guidelines.html
*/
static void
print_simple_status(pe_working_set_t * data_set,
stonith_history_t *history)
{
GListPtr gIter = NULL;
int nodes_online = 0;
int nodes_standby = 0;
int nodes_maintenance = 0;
if (data_set->dc_node == NULL) {
mon_warn(" No DC");
}
for (gIter = data_set->nodes; gIter != NULL; gIter = gIter->next) {
node_t *node = (node_t *) gIter->data;
if (node->details->standby && node->details->online) {
nodes_standby++;
} else if (node->details->maintenance && node->details->online) {
nodes_maintenance++;
} else if (node->details->online) {
nodes_online++;
} else {
mon_warn(" offline node: %s", node->details->uname);
}
}
if (!has_warnings) {
int nresources = count_resources(data_set, NULL);
print_as("CLUSTER OK: %d node%s online", nodes_online, s_if_plural(nodes_online));
if (nodes_standby > 0) {
print_as(", %d standby node%s", nodes_standby, s_if_plural(nodes_standby));
}
if (nodes_maintenance > 0) {
print_as(", %d maintenance node%s", nodes_maintenance, s_if_plural(nodes_maintenance));
}
print_as(", %d resource%s configured", nresources, s_if_plural(nresources));
}
print_as("\n");
}
/*!
* \internal
* \brief Print a [name]=[value][units] pair, optionally using time string
*
* \param[in] stream File stream to display output to
* \param[in] name Name to display
* \param[in] value Value to display (or NULL to convert time instead)
* \param[in] units Units to display (or NULL for no units)
* \param[in] epoch_time Epoch time to convert if value is NULL
*/
static void
print_nvpair(FILE *stream, const char *name, const char *value,
const char *units, time_t epoch_time)
{
/* print name= */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" %s=", name);
break;
case mon_output_html:
case mon_output_cgi:
case mon_output_xml:
fprintf(stream, " %s=", name);
break;
default:
break;
}
/* If we have a value (and optionally units), print it */
if (value) {
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("%s%s", value, (units? units : ""));
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "%s%s", value, (units? units : ""));
break;
case mon_output_xml:
fprintf(stream, "\"%s%s\"", value, (units? units : ""));
break;
default:
break;
}
/* Otherwise print user-friendly time string */
} else {
static char empty_str[] = "";
char *c, *date_str = asctime(localtime(&epoch_time));
for (c = (date_str != NULL) ? date_str : empty_str; *c != '\0'; ++c) {
if (*c == '\n') {
*c = '\0';
break;
}
}
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("'%s'", date_str);
break;
case mon_output_html:
case mon_output_cgi:
case mon_output_xml:
fprintf(stream, "\"%s\"", date_str);
break;
default:
break;
}
}
}
/*!
* \internal
* \brief Print whatever is needed to start a node section
*
* \param[in] stream File stream to display output to
* \param[in] node Node to print
*/
static void
print_node_start(FILE *stream, node_t *node)
{
char *node_name;
switch (output_format) {
case mon_output_plain:
case mon_output_console:
node_name = get_node_display_name(node);
print_as("* Node %s:\n", node_name);
free(node_name);
break;
case mon_output_html:
case mon_output_cgi:
node_name = get_node_display_name(node);
fprintf(stream, " Node: %s
\n \n", node_name);
free(node_name);
break;
case mon_output_xml:
fprintf(stream, " \n", node->details->uname);
break;
default:
break;
}
}
/*!
* \internal
* \brief Print whatever is needed to end a node section
*
* \param[in] stream File stream to display output to
*/
static void
print_node_end(FILE *stream)
{
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print resources section heading appropriate to options
*
* \param[in] stream File stream to display output to
*/
static void
print_resources_heading(FILE *stream)
{
const char *heading;
if (group_by_node) {
/* Active resources have already been printed by node */
heading = (inactive_resources? "Inactive resources" : NULL);
} else if (inactive_resources) {
heading = "Full list of resources";
} else {
heading = "Active resources";
}
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\n%s:\n\n", heading);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n %s
\n", heading);
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print whatever resource section closing is appropriate
*
* \param[in] stream File stream to display output to
*/
static void
print_resources_closing(FILE *stream, gboolean printed_heading)
{
const char *heading;
/* What type of resources we did or did not display */
if (group_by_node) {
heading = "inactive ";
} else if (inactive_resources) {
heading = "";
} else {
heading = "active ";
}
switch (output_format) {
case mon_output_plain:
case mon_output_console:
if (!printed_heading) {
print_as("\nNo %sresources\n\n", heading);
}
break;
case mon_output_html:
case mon_output_cgi:
if (!printed_heading) {
fprintf(stream, "
\n No %sresources
\n", heading);
}
break;
case mon_output_xml:
fprintf(stream, " %s\n",
(printed_heading? "" : ""));
break;
default:
break;
}
}
/*!
* \internal
* \brief Print whatever resource section(s) are appropriate
*
* \param[in] stream File stream to display output to
* \param[in] data_set Cluster state to display
* \param[in] print_opts Bitmask of pe_print_options
*/
static void
print_resources(FILE *stream, pe_working_set_t *data_set, int print_opts)
{
GListPtr rsc_iter;
const char *prefix = NULL;
gboolean printed_heading = FALSE;
gboolean brief_output = print_brief;
/* If we already showed active resources by node, and
* we're not showing inactive resources, we have nothing to do
*/
if (group_by_node && !inactive_resources) {
return;
}
/* XML uses an indent, and ignores brief option for resources */
if (output_format == mon_output_xml) {
prefix = " ";
brief_output = FALSE;
}
/* If we haven't already printed resources grouped by node,
* and brief output was requested, print resource summary */
if (brief_output && !group_by_node) {
print_resources_heading(stream);
printed_heading = TRUE;
print_rscs_brief(data_set->resources, NULL, print_opts, stream,
inactive_resources);
}
/* For each resource, display it if appropriate */
for (rsc_iter = data_set->resources; rsc_iter != NULL; rsc_iter = rsc_iter->next) {
resource_t *rsc = (resource_t *) rsc_iter->data;
/* Complex resources may have some sub-resources active and some inactive */
gboolean is_active = rsc->fns->active(rsc, TRUE);
gboolean partially_active = rsc->fns->active(rsc, FALSE);
/* Skip inactive orphans (deleted but still in CIB) */
if (is_set(rsc->flags, pe_rsc_orphan) && !is_active) {
continue;
/* Skip active resources if we already displayed them by node */
} else if (group_by_node) {
if (is_active) {
continue;
}
/* Skip primitives already counted in a brief summary */
} else if (brief_output && (rsc->variant == pe_native)) {
continue;
/* Skip resources that aren't at least partially active,
* unless we're displaying inactive resources
*/
} else if (!partially_active && !inactive_resources) {
continue;
}
/* Print this resource */
if (printed_heading == FALSE) {
print_resources_heading(stream);
printed_heading = TRUE;
}
rsc->fns->print(rsc, prefix, print_opts, stream);
}
print_resources_closing(stream, printed_heading);
}
/*!
* \internal
* \brief Print heading for resource history
*
* \param[in] stream File stream to display output to
* \param[in] data_set Current state of CIB
* \param[in] node Node that ran this resource
* \param[in] rsc Resource to print
* \param[in] rsc_id ID of resource to print
* \param[in] all Whether to print every resource or just failed ones
*/
static void
print_rsc_history_start(FILE *stream, pe_working_set_t *data_set, node_t *node,
resource_t *rsc, const char *rsc_id, gboolean all)
{
time_t last_failure = 0;
int failcount = rsc?
pe_get_failcount(node, rsc, &last_failure, pe_fc_default,
NULL, data_set)
: 0;
if (!all && !failcount && (last_failure <= 0)) {
return;
}
/* Print resource ID */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" %s:", rsc_id);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " %s:", rsc_id);
break;
case mon_output_xml:
fprintf(stream, " 0)) {
/* Print migration threshold */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" migration-threshold=%d", rsc->migration_threshold);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " migration-threshold=%d", rsc->migration_threshold);
break;
case mon_output_xml:
fprintf(stream, " orphan=\"false\" migration-threshold=\"%d\"",
rsc->migration_threshold);
break;
default:
break;
}
/* Print fail count if any */
if (failcount > 0) {
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" " CRM_FAIL_COUNT_PREFIX "=%d", failcount);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " " CRM_FAIL_COUNT_PREFIX "=%d", failcount);
break;
case mon_output_xml:
fprintf(stream, " " CRM_FAIL_COUNT_PREFIX "=\"%d\"",
failcount);
break;
default:
break;
}
}
/* Print last failure time if any */
if (last_failure > 0) {
print_nvpair(stream, CRM_LAST_FAILURE_PREFIX, NULL, NULL,
last_failure);
}
}
/* End the heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "\n \n");
break;
case mon_output_xml:
fprintf(stream, ">\n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print closing for resource history
*
* \param[in] stream File stream to display output to
*/
static void
print_rsc_history_end(FILE *stream)
{
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n \n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print operation history
*
* \param[in] stream File stream to display output to
* \param[in] data_set Current state of CIB
* \param[in] node Node this operation is for
* \param[in] xml_op Root of XML tree describing this operation
* \param[in] task Task parsed from this operation's XML
* \param[in] interval_ms_s Interval parsed from this operation's XML
* \param[in] rc Return code parsed from this operation's XML
*/
static void
print_op_history(FILE *stream, pe_working_set_t *data_set, node_t *node,
xmlNode *xml_op, const char *task, const char *interval_ms_s,
int rc)
{
const char *value = NULL;
const char *call = crm_element_value(xml_op, XML_LRM_ATTR_CALLID);
/* Begin the operation description */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" + (%s) %s:", call, task);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " (%s) %s:", call, task);
break;
case mon_output_xml:
fprintf(stream, " 0) {
print_nvpair(stream, attr, NULL, NULL, int_value);
}
}
attr = XML_RSC_OP_LAST_RUN;
value = crm_element_value(xml_op, attr);
if (value) {
int_value = crm_parse_int(value, NULL);
if (int_value > 0) {
print_nvpair(stream, attr, NULL, NULL, int_value);
}
}
attr = XML_RSC_OP_T_EXEC;
value = crm_element_value(xml_op, attr);
if (value) {
print_nvpair(stream, attr, value, "ms", 0);
}
attr = XML_RSC_OP_T_QUEUE;
value = crm_element_value(xml_op, attr);
if (value) {
print_nvpair(stream, attr, value, "ms", 0);
}
}
/* End the operation description */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" rc=%d (%s)\n", rc, services_ocf_exitcode_str(rc));
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " rc=%d (%s)\n", rc, services_ocf_exitcode_str(rc));
break;
case mon_output_xml:
fprintf(stream, " rc=\"%d\" rc_text=\"%s\" />\n", rc, services_ocf_exitcode_str(rc));
break;
default:
break;
}
}
/*!
* \internal
* \brief Print resource operation/failure history
*
* \param[in] stream File stream to display output to
* \param[in] data_set Current state of CIB
* \param[in] node Node that ran this resource
* \param[in] rsc_entry Root of XML tree describing resource status
* \param[in] operations Whether to print operations or just failcounts
*/
static void
print_rsc_history(FILE *stream, pe_working_set_t *data_set, node_t *node,
xmlNode *rsc_entry, gboolean operations)
{
GListPtr gIter = NULL;
GListPtr op_list = NULL;
gboolean printed = FALSE;
const char *rsc_id = crm_element_value(rsc_entry, XML_ATTR_ID);
resource_t *rsc = pe_find_resource(data_set->resources, rsc_id);
xmlNode *rsc_op = NULL;
/* If we're not showing operations, just print the resource failure summary */
if (operations == FALSE) {
print_rsc_history_start(stream, data_set, node, rsc, rsc_id, FALSE);
print_rsc_history_end(stream);
return;
}
/* Create a list of this resource's operations */
for (rsc_op = __xml_first_child(rsc_entry); rsc_op != NULL; rsc_op = __xml_next(rsc_op)) {
if (crm_str_eq((const char *)rsc_op->name, XML_LRM_TAG_RSC_OP, TRUE)) {
op_list = g_list_append(op_list, rsc_op);
}
}
op_list = g_list_sort(op_list, sort_op_by_callid);
/* Print each operation */
for (gIter = op_list; gIter != NULL; gIter = gIter->next) {
xmlNode *xml_op = (xmlNode *) gIter->data;
const char *task = crm_element_value(xml_op, XML_LRM_ATTR_TASK);
const char *interval_ms_s = crm_element_value(xml_op,
XML_LRM_ATTR_INTERVAL_MS);
const char *op_rc = crm_element_value(xml_op, XML_LRM_ATTR_RC);
int rc = crm_parse_int(op_rc, "0");
/* Display 0-interval monitors as "probe" */
if (safe_str_eq(task, CRMD_ACTION_STATUS)
&& ((interval_ms_s == NULL) || safe_str_eq(interval_ms_s, "0"))) {
task = "probe";
}
/* Ignore notifies and some probes */
if (safe_str_eq(task, CRMD_ACTION_NOTIFY) || (safe_str_eq(task, "probe") && (rc == 7))) {
continue;
}
/* If this is the first printed operation, print heading for resource */
if (printed == FALSE) {
printed = TRUE;
print_rsc_history_start(stream, data_set, node, rsc, rsc_id, TRUE);
}
/* Print the operation */
print_op_history(stream, data_set, node, xml_op, task, interval_ms_s,
rc);
}
/* Free the list we created (no need to free the individual items) */
g_list_free(op_list);
/* If we printed anything, close the resource */
if (printed) {
print_rsc_history_end(stream);
}
}
/*!
* \internal
* \brief Print node operation/failure history
*
* \param[in] stream File stream to display output to
* \param[in] data_set Current state of CIB
* \param[in] node_state Root of XML tree describing node status
* \param[in] operations Whether to print operations or just failcounts
*/
static void
print_node_history(FILE *stream, pe_working_set_t *data_set,
xmlNode *node_state, gboolean operations)
{
node_t *node = pe_find_node_id(data_set->nodes, ID(node_state));
xmlNode *lrm_rsc = NULL;
xmlNode *rsc_entry = NULL;
if (node && node->details && node->details->online) {
print_node_start(stream, node);
lrm_rsc = find_xml_node(node_state, XML_CIB_TAG_LRM, FALSE);
lrm_rsc = find_xml_node(lrm_rsc, XML_LRM_TAG_RESOURCES, FALSE);
/* Print history of each of the node's resources */
for (rsc_entry = __xml_first_child(lrm_rsc); rsc_entry != NULL;
rsc_entry = __xml_next(rsc_entry)) {
if (crm_str_eq((const char *)rsc_entry->name, XML_LRM_TAG_RESOURCE, TRUE)) {
print_rsc_history(stream, data_set, node, rsc_entry, operations);
}
}
print_node_end(stream);
}
}
/*!
* \internal
* \brief Print extended information about an attribute if appropriate
*
* \param[in] data_set Working set of CIB state
*
* \return TRUE if extended information was printed, FALSE otherwise
* \note Currently, extended information is only supported for ping/pingd
* resources, for which a message will be printed if connectivity is lost
* or degraded.
*/
static gboolean
print_attr_msg(FILE *stream, node_t * node, GListPtr rsc_list, const char *attrname, const char *attrvalue)
{
GListPtr gIter = NULL;
for (gIter = rsc_list; gIter != NULL; gIter = gIter->next) {
resource_t *rsc = (resource_t *) gIter->data;
const char *type = g_hash_table_lookup(rsc->meta, "type");
if (rsc->children != NULL) {
if (print_attr_msg(stream, node, rsc->children, attrname, attrvalue)) {
return TRUE;
}
}
if (safe_str_eq(type, "ping") || safe_str_eq(type, "pingd")) {
const char *name = g_hash_table_lookup(rsc->parameters, "name");
if (name == NULL) {
name = "pingd";
}
/* To identify the resource with the attribute name. */
if (safe_str_eq(name, attrname)) {
int host_list_num = 0;
int expected_score = 0;
int value = crm_parse_int(attrvalue, "0");
const char *hosts = g_hash_table_lookup(rsc->parameters, "host_list");
const char *multiplier = g_hash_table_lookup(rsc->parameters, "multiplier");
if(hosts) {
char **host_list = g_strsplit(hosts, " ", 0);
host_list_num = g_strv_length(host_list);
g_strfreev(host_list);
}
/* pingd multiplier is the same as the default value. */
expected_score = host_list_num * crm_parse_int(multiplier, "1");
switch (output_format) {
case mon_output_plain:
case mon_output_console:
if (value <= 0) {
print_as("\t: Connectivity is lost");
} else if (value < expected_score) {
print_as("\t: Connectivity is degraded (Expected=%d)", expected_score);
}
break;
case mon_output_html:
case mon_output_cgi:
if (value <= 0) {
fprintf(stream, " (connectivity is lost)");
} else if (value < expected_score) {
fprintf(stream, " (connectivity is degraded -- expected %d)",
expected_score);
}
break;
case mon_output_xml:
fprintf(stream, " expected=\"%d\"", expected_score);
break;
default:
break;
}
return TRUE;
}
}
}
return FALSE;
}
static int
compare_attribute(gconstpointer a, gconstpointer b)
{
int rc;
rc = strcmp((const char *)a, (const char *)b);
return rc;
}
static void
create_attr_list(gpointer name, gpointer value, gpointer data)
{
int i;
const char *filt_str[] = FILTER_STR;
CRM_CHECK(name != NULL, return);
/* filtering automatic attributes */
for (i = 0; filt_str[i] != NULL; i++) {
if (g_str_has_prefix(name, filt_str[i])) {
return;
}
}
attr_list = g_list_insert_sorted(attr_list, name, compare_attribute);
}
/* structure for passing multiple user data to g_list_foreach() */
struct mon_attr_data {
FILE *stream;
node_t *node;
};
static void
print_node_attribute(gpointer name, gpointer user_data)
{
const char *value = NULL;
struct mon_attr_data *data = (struct mon_attr_data *) user_data;
value = pe_node_attribute_raw(data->node, name);
/* Print attribute name and value */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as(" + %-32s\t: %-10s", (char *)name, value);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(data->stream, " %s: %s",
(char *)name, value);
break;
case mon_output_xml:
fprintf(data->stream,
" stream, data->node, data->node->details->running_rsc,
name, value);
/* Close out the attribute */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(data->stream, "\n");
break;
case mon_output_xml:
fprintf(data->stream, " />\n");
break;
default:
break;
}
}
static void
print_node_summary(FILE *stream, pe_working_set_t * data_set, gboolean operations)
{
xmlNode *node_state = NULL;
xmlNode *cib_status = get_object_root(XML_CIB_TAG_STATUS, data_set->input);
/* Print heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
if (operations) {
print_as("\nOperations:\n");
} else {
print_as("\nMigration Summary:\n");
}
break;
case mon_output_html:
case mon_output_cgi:
if (operations) {
fprintf(stream, "
\n Operations
\n");
} else {
fprintf(stream, "
\n Migration Summary
\n");
}
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
/* Print each node in the CIB status */
for (node_state = __xml_first_child(cib_status); node_state != NULL;
node_state = __xml_next(node_state)) {
if (crm_str_eq((const char *)node_state->name, XML_CIB_TAG_STATE, TRUE)) {
print_node_history(stream, data_set, node_state, operations);
}
}
/* Close section */
switch (output_format) {
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
static void
print_ticket(gpointer name, gpointer value, gpointer data)
{
ticket_t *ticket = (ticket_t *) value;
FILE *stream = (FILE *) data;
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("* %s:\t%s%s", ticket->id,
(ticket->granted? "granted" : "revoked"),
(ticket->standby? " [standby]" : ""));
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " %s: %s%s", ticket->id,
(ticket->granted? "granted" : "revoked"),
(ticket->standby? " [standby]" : ""));
break;
case mon_output_xml:
fprintf(stream, " id, (ticket->granted? "granted" : "revoked"),
(ticket->standby? "true" : "false"));
break;
default:
break;
}
if (ticket->last_granted > -1) {
print_nvpair(stdout, "last-granted", NULL, NULL, ticket->last_granted);
}
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "\n");
break;
case mon_output_xml:
fprintf(stream, " />\n");
break;
default:
break;
}
}
static void
print_cluster_tickets(FILE *stream, pe_working_set_t * data_set)
{
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\nTickets:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n Tickets
\n \n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
/* Print each ticket */
g_hash_table_foreach(data_set->tickets, print_ticket, stream);
/* Close section */
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Return human-friendly string representing node name
*
* The returned string will be in the format
* uname[@hostUname] [(nodeID)]
* "@hostUname" will be printed if the node is a guest node.
* "(nodeID)" will be printed if the node ID is different from the node uname,
* and detailed output has been requested.
*
* \param[in] node Node to represent
* \return Newly allocated string with representation of node name
* \note It is the caller's responsibility to free the result with free().
*/
static char *
get_node_display_name(node_t *node)
{
char *node_name;
const char *node_host = NULL;
const char *node_id = NULL;
int name_len;
CRM_ASSERT((node != NULL) && (node->details != NULL) && (node->details->uname != NULL));
/* Host is displayed only if this is a guest node */
if (is_container_remote_node(node)) {
node_t *host_node = pe__current_node(node->details->remote_rsc);
if (host_node && host_node->details) {
node_host = host_node->details->uname;
}
if (node_host == NULL) {
node_host = ""; /* so we at least get "uname@" to indicate guest */
}
}
/* Node ID is displayed if different from uname and detail is requested */
if (print_clone_detail && safe_str_neq(node->details->uname, node->details->id)) {
node_id = node->details->id;
}
/* Determine name length */
name_len = strlen(node->details->uname) + 1;
if (node_host) {
name_len += strlen(node_host) + 1; /* "@node_host" */
}
if (node_id) {
name_len += strlen(node_id) + 3; /* + " (node_id)" */
}
/* Allocate and populate display name */
node_name = malloc(name_len);
CRM_ASSERT(node_name != NULL);
strcpy(node_name, node->details->uname);
if (node_host) {
strcat(node_name, "@");
strcat(node_name, node_host);
}
if (node_id) {
strcat(node_name, " (");
strcat(node_name, node_id);
strcat(node_name, ")");
}
return node_name;
}
/*!
* \internal
* \brief Print a negative location constraint
*
* \param[in] stream File stream to display output to
* \param[in] node Node affected by constraint
* \param[in] location Constraint to print
*/
static void
print_ban(FILE *stream, pe_node_t *node, pe__location_t *location)
{
char *node_name = NULL;
switch (output_format) {
case mon_output_plain:
case mon_output_console:
node_name = get_node_display_name(node);
print_as(" %s\tprevents %s from running %son %s\n",
location->id, location->rsc_lh->id,
((location->role_filter == RSC_ROLE_MASTER)? "as Master " : ""),
node_name);
break;
case mon_output_html:
case mon_output_cgi:
node_name = get_node_display_name(node);
fprintf(stream, " %s prevents %s from running %son %s\n",
location->id, location->rsc_lh->id,
((location->role_filter == RSC_ROLE_MASTER)? "as Master " : ""),
node_name);
break;
case mon_output_xml:
fprintf(stream,
" \n",
location->id, location->rsc_lh->id, node->details->uname, node->weight,
((location->role_filter == RSC_ROLE_MASTER)? "true" : "false"));
break;
default:
break;
}
free(node_name);
}
/*!
* \internal
* \brief Print section for negative location constraints
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set corresponding to CIB status to display
*/
static void
print_neg_locations(FILE *stream, pe_working_set_t *data_set)
{
GListPtr gIter, gIter2;
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\nNegative Location Constraints:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n Negative Location Constraints
\n \n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
/* Print each ban */
for (gIter = data_set->placement_constraints; gIter != NULL; gIter = gIter->next) {
pe__location_t *location = gIter->data;
if (!g_str_has_prefix(location->id, print_neg_location_prefix))
continue;
for (gIter2 = location->node_list_rh; gIter2 != NULL; gIter2 = gIter2->next) {
node_t *node = (node_t *) gIter2->data;
if (node->weight < 0) {
print_ban(stream, node, location);
}
}
}
/* Close section */
switch (output_format) {
case mon_output_cgi:
case mon_output_html:
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
static void
crm_mon_get_parameters(resource_t *rsc, pe_working_set_t * data_set)
{
get_rsc_attributes(rsc->parameters, rsc, NULL, data_set);
crm_trace("Beekhof: unpacked params for %s (%d)", rsc->id, g_hash_table_size(rsc->parameters));
if(rsc->children) {
GListPtr gIter = NULL;
for (gIter = rsc->children; gIter != NULL; gIter = gIter->next) {
crm_mon_get_parameters(gIter->data, data_set);
}
}
}
/*!
* \internal
* \brief Print node attributes section
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
*/
static void
print_node_attributes(FILE *stream, pe_working_set_t *data_set)
{
GListPtr gIter = NULL;
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\nNode Attributes:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n Node Attributes
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
/* Unpack all resource parameters (it would be more efficient to do this
* only when needed for the first time in print_attr_msg())
*/
for (gIter = data_set->resources; gIter != NULL; gIter = gIter->next) {
crm_mon_get_parameters(gIter->data, data_set);
}
/* Display each node's attributes */
for (gIter = data_set->nodes; gIter != NULL; gIter = gIter->next) {
struct mon_attr_data data;
data.stream = stream;
data.node = (node_t *) gIter->data;
if (data.node && data.node->details && data.node->details->online) {
print_node_start(stream, data.node);
g_hash_table_foreach(data.node->details->attrs, create_attr_list, NULL);
g_list_foreach(attr_list, print_node_attribute, &data);
g_list_free(attr_list);
attr_list = NULL;
print_node_end(stream);
}
}
/* Print section footer */
switch (output_format) {
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Return resource display options corresponding to command-line choices
*
* \return Bitmask of pe_print_options suitable for resource print functions
*/
static int
get_resource_display_options(void)
{
int print_opts;
/* Determine basic output format */
switch (output_format) {
case mon_output_console:
print_opts = pe_print_ncurses;
break;
case mon_output_html:
case mon_output_cgi:
print_opts = pe_print_html;
break;
case mon_output_xml:
print_opts = pe_print_xml;
break;
default:
print_opts = pe_print_printf;
break;
}
/* Add optional display elements */
if (print_pending) {
print_opts |= pe_print_pending;
}
if (print_clone_detail) {
print_opts |= pe_print_clone_details|pe_print_implicit;
}
if (!inactive_resources) {
print_opts |= pe_print_clone_active;
}
if (print_brief) {
print_opts |= pe_print_brief;
}
return print_opts;
}
/*!
* \internal
* \brief Return human-friendly string representing current time
*
* \return Current time as string (as by ctime() but without newline) on success
* or "Could not determine current time" on error
* \note The return value points to a statically allocated string which might be
* overwritten by subsequent calls to any of the C library date and time functions.
*/
static const char *
crm_now_string(void)
{
time_t a_time = time(NULL);
char *since_epoch = ctime(&a_time);
if ((a_time == (time_t) -1) || (since_epoch == NULL)) {
return "Could not determine current time";
}
since_epoch[strlen(since_epoch) - 1] = EOS; /* trim newline */
return (since_epoch);
}
/*!
* \internal
* \brief Print header for cluster summary if needed
*
* \param[in] stream File stream to display output to
*/
static void
print_cluster_summary_header(FILE *stream)
{
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " Cluster Summary
\n \n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print footer for cluster summary if needed
*
* \param[in] stream File stream to display output to
*/
static void
print_cluster_summary_footer(FILE *stream)
{
switch (output_format) {
case mon_output_cgi:
case mon_output_html:
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print times the display was last updated and CIB last changed
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
*/
static void
print_cluster_times(FILE *stream, pe_working_set_t *data_set)
{
const char *last_written = crm_element_value(data_set->input, XML_CIB_ATTR_WRITTEN);
const char *user = crm_element_value(data_set->input, XML_ATTR_UPDATE_USER);
const char *client = crm_element_value(data_set->input, XML_ATTR_UPDATE_CLIENT);
const char *origin = crm_element_value(data_set->input, XML_ATTR_UPDATE_ORIG);
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("Last updated: %s", crm_now_string());
print_as((user || client || origin)? "\n" : "\t\t");
print_as("Last change: %s", last_written ? last_written : "");
if (user) {
print_as(" by %s", user);
}
if (client) {
print_as(" via %s", client);
}
if (origin) {
print_as(" on %s", origin);
}
print_as("\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " Last updated: %s
\n", crm_now_string());
fprintf(stream, " Last change: %s", last_written ? last_written : "");
if (user) {
fprintf(stream, " by %s", user);
}
if (client) {
fprintf(stream, " via %s", client);
}
if (origin) {
fprintf(stream, " on %s", origin);
}
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n", crm_now_string());
fprintf(stream, " \n",
last_written ? last_written : "", user ? user : "",
client ? client : "", origin ? origin : "");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print cluster stack
*
* \param[in] stream File stream to display output to
* \param[in] stack_s Stack name
*/
static void
print_cluster_stack(FILE *stream, const char *stack_s)
{
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("Stack: %s\n", stack_s);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " Stack: %s
\n", stack_s);
break;
case mon_output_xml:
fprintf(stream, " \n", stack_s);
break;
default:
break;
}
}
/*!
* \internal
* \brief Print current DC and its version
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
*/
static void
print_cluster_dc(FILE *stream, pe_working_set_t *data_set)
{
node_t *dc = data_set->dc_node;
xmlNode *dc_version = get_xpath_object("//nvpair[@name='dc-version']",
data_set->input, LOG_DEBUG);
const char *dc_version_s = dc_version?
crm_element_value(dc_version, XML_NVPAIR_ATTR_VALUE)
: NULL;
const char *quorum = crm_element_value(data_set->input, XML_ATTR_HAVE_QUORUM);
char *dc_name = dc? get_node_display_name(dc) : NULL;
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("Current DC: ");
if (dc) {
print_as("%s (version %s) - partition %s quorum\n",
dc_name, (dc_version_s? dc_version_s : "unknown"),
(crm_is_true(quorum) ? "with" : "WITHOUT"));
} else {
print_as("NONE\n");
}
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " Current DC: ");
if (dc) {
fprintf(stream, "%s (version %s) - partition %s quorum",
dc_name, (dc_version_s? dc_version_s : "unknown"),
(crm_is_true(quorum)? "with" : "WITHOUT"));
} else {
fprintf(stream, "NONE");
}
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " details->uname, dc->details->id,
(crm_is_true(quorum) ? "true" : "false"));
} else {
fprintf(stream, "present=\"false\"");
}
fprintf(stream, " />\n");
break;
default:
break;
}
free(dc_name);
}
/*!
* \internal
* \brief Print counts of configured nodes and resources
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
* \param[in] stack_s Stack name
*/
static void
print_cluster_counts(FILE *stream, pe_working_set_t *data_set, const char *stack_s)
{
int nnodes = g_list_length(data_set->nodes);
int nresources = count_resources(data_set, NULL);
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\n%d node%s configured\n", nnodes, s_if_plural(nnodes));
print_as("%d resource%s configured",
nresources, s_if_plural(nresources));
if(data_set->disabled_resources || data_set->blocked_resources) {
print_as(" (");
if (data_set->disabled_resources) {
print_as("%d DISABLED", data_set->disabled_resources);
}
if (data_set->disabled_resources && data_set->blocked_resources) {
print_as(", ");
}
if (data_set->blocked_resources) {
print_as("%d BLOCKED from starting due to failure",
data_set->blocked_resources);
}
print_as(")");
}
print_as("\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " %d node%s configured
\n",
nnodes, s_if_plural(nnodes));
fprintf(stream, " %d resource%s configured",
nresources, s_if_plural(nresources));
if (data_set->disabled_resources || data_set->blocked_resources) {
fprintf(stream, " (");
if (data_set->disabled_resources) {
fprintf(stream, "%d DISABLED",
data_set->disabled_resources);
}
if (data_set->disabled_resources && data_set->blocked_resources) {
fprintf(stream, ", ");
}
if (data_set->blocked_resources) {
fprintf(stream,
"%d BLOCKED from starting due to failure",
data_set->blocked_resources);
}
fprintf(stream, ")");
}
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream,
" \n",
g_list_length(data_set->nodes));
fprintf(stream,
" \n",
count_resources(data_set, NULL),
data_set->disabled_resources, data_set->blocked_resources);
break;
default:
break;
}
}
/*!
* \internal
* \brief Print cluster-wide options
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
*
* \note Currently this is only implemented for HTML and XML output, and
* prints only a few options. If there is demand, more could be added.
*/
static void
print_cluster_options(FILE *stream, pe_working_set_t *data_set)
{
switch (output_format) {
case mon_output_plain:
case mon_output_console:
if (is_set(data_set->flags, pe_flag_maintenance_mode)) {
print_as("\n *** Resource management is DISABLED ***");
print_as("\n The cluster will not attempt to start, stop or recover services");
print_as("\n");
}
break;
case mon_output_html:
fprintf(stream, "
\n Config Options
\n");
fprintf(stream, " \n");
fprintf(stream, " STONITH of failed nodes | %s |
\n",
is_set(data_set->flags, pe_flag_stonith_enabled)? "enabled" : "disabled");
fprintf(stream, " Cluster is | %ssymmetric |
\n",
is_set(data_set->flags, pe_flag_symmetric_cluster)? "" : "a");
fprintf(stream, " No Quorum Policy | ");
switch (data_set->no_quorum_policy) {
case no_quorum_freeze:
fprintf(stream, "Freeze resources");
break;
case no_quorum_stop:
fprintf(stream, "Stop ALL resources");
break;
case no_quorum_ignore:
fprintf(stream, "Ignore");
break;
case no_quorum_suicide:
fprintf(stream, "Suicide");
break;
}
fprintf(stream, " |
\n");
fprintf(stream, " Resource management | ");
if (is_set(data_set->flags, pe_flag_maintenance_mode)) {
fprintf(stream, "DISABLED (the cluster will "
"not attempt to start, stop or recover services)");
} else {
fprintf(stream, "enabled");
}
fprintf(stream, " |
\n");
fprintf(stream, "
\n \n");
break;
case mon_output_xml:
fprintf(stream, " flags, pe_flag_stonith_enabled)?
"true" : "false");
fprintf(stream, " symmetric-cluster=\"%s\"",
is_set(data_set->flags, pe_flag_symmetric_cluster)?
"true" : "false");
fprintf(stream, " no-quorum-policy=\"");
switch (data_set->no_quorum_policy) {
case no_quorum_freeze:
fprintf(stream, "freeze");
break;
case no_quorum_stop:
fprintf(stream, "stop");
break;
case no_quorum_ignore:
fprintf(stream, "ignore");
break;
case no_quorum_suicide:
fprintf(stream, "suicide");
break;
}
fprintf(stream, "\"");
fprintf(stream, " maintenance-mode=\"%s\"",
is_set(data_set->flags, pe_flag_maintenance_mode)?
"true" : "false");
fprintf(stream, " />\n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Get the name of the stack in use (or "unknown" if not available)
*
* \param[in] data_set Working set of CIB state
*
* \return String representing stack name
*/
static const char *
get_cluster_stack(pe_working_set_t *data_set)
{
xmlNode *stack = get_xpath_object("//nvpair[@name='cluster-infrastructure']",
data_set->input, LOG_DEBUG);
return stack? crm_element_value(stack, XML_NVPAIR_ATTR_VALUE) : "unknown";
}
/*!
* \internal
* \brief Print a summary of cluster-wide information
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
*/
static void
print_cluster_summary(FILE *stream, pe_working_set_t *data_set)
{
const char *stack_s = get_cluster_stack(data_set);
gboolean header_printed = FALSE;
if (show & mon_show_stack) {
if (header_printed == FALSE) {
print_cluster_summary_header(stream);
header_printed = TRUE;
}
print_cluster_stack(stream, stack_s);
}
/* Always print DC if none, even if not requested */
if ((data_set->dc_node == NULL) || (show & mon_show_dc)) {
if (header_printed == FALSE) {
print_cluster_summary_header(stream);
header_printed = TRUE;
}
print_cluster_dc(stream, data_set);
}
if (show & mon_show_times) {
if (header_printed == FALSE) {
print_cluster_summary_header(stream);
header_printed = TRUE;
}
print_cluster_times(stream, data_set);
}
if (is_set(data_set->flags, pe_flag_maintenance_mode)
|| data_set->disabled_resources
|| data_set->blocked_resources
|| is_set(show, mon_show_count)) {
if (header_printed == FALSE) {
print_cluster_summary_header(stream);
header_printed = TRUE;
}
print_cluster_counts(stream, data_set, stack_s);
}
/* There is not a separate option for showing cluster options, so show with
* stack for now; a separate option could be added if there is demand
*/
if (show & mon_show_stack) {
print_cluster_options(stream, data_set);
}
if (header_printed) {
print_cluster_summary_footer(stream);
}
}
/*!
* \internal
* \brief Print a failed action
*
* \param[in] stream File stream to display output to
* \param[in] xml_op Root of XML tree describing failed action
*/
static void
print_failed_action(FILE *stream, xmlNode *xml_op)
{
const char *op_key = crm_element_value(xml_op, XML_LRM_ATTR_TASK_KEY);
const char *op_key_attr = "op_key";
const char *last = crm_element_value(xml_op, XML_RSC_OP_LAST_CHANGE);
const char *node = crm_element_value(xml_op, XML_ATTR_UNAME);
const char *call = crm_element_value(xml_op, XML_LRM_ATTR_CALLID);
const char *exit_reason = crm_element_value(xml_op, XML_LRM_ATTR_EXIT_REASON);
int rc = crm_parse_int(crm_element_value(xml_op, XML_LRM_ATTR_RC), "0");
int status = crm_parse_int(crm_element_value(xml_op, XML_LRM_ATTR_OPSTATUS), "0");
char *exit_reason_cleaned;
/* If no op_key was given, use id instead */
if (op_key == NULL) {
op_key = ID(xml_op);
op_key_attr = "id";
}
/* If no exit reason was given, use "none" */
if (exit_reason == NULL) {
exit_reason = "none";
}
/* Print common action information */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("* %s on %s '%s' (%d): call=%s, status=%s, exitreason='%s'",
op_key, node, services_ocf_exitcode_str(rc), rc,
call, services_lrm_status_str(status), exit_reason);
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, " %s on %s '%s' (%d): call=%s, status=%s, exitreason='%s'",
op_key, node, services_ocf_exitcode_str(rc), rc,
call, services_lrm_status_str(status), exit_reason);
break;
case mon_output_xml:
exit_reason_cleaned = crm_xml_escape(exit_reason);
fprintf(stream, " \n");
break;
case mon_output_xml:
fprintf(stream, " />\n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print a section for failed actions
*
* \param[in] stream File stream to display output to
* \param[in] data_set Working set of CIB state
*/
static void
print_failed_actions(FILE *stream, pe_working_set_t *data_set)
{
xmlNode *xml_op = NULL;
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\nFailed Resource Actions:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream,
"
\n Failed Resource Actions
\n \n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
/* Print each failed action */
for (xml_op = __xml_first_child(data_set->failed); xml_op != NULL;
xml_op = __xml_next(xml_op)) {
print_failed_action(stream, xml_op);
}
/* End section */
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Reduce the stonith-history
* for successful actions we keep the last of every action-type & target
* for failed actions we record as well who had failed
* for actions in progress we keep full track
*
* \param[in] history List of stonith actions
*
*/
static stonith_history_t *
reduce_stonith_history(stonith_history_t *history)
{
stonith_history_t *new = NULL, *hp, *np, *tmp;
for (hp = history; hp; ) {
for (np = new; np; np = np->next) {
if ((hp->state == st_done) || (hp->state == st_failed)) {
/* action not in progress */
if (safe_str_eq(hp->target, np->target) &&
safe_str_eq(hp->action, np->action) &&
(hp->state == np->state)) {
if ((hp->state == st_done) ||
safe_str_eq(hp->delegate, np->delegate)) {
/* replace or purge */
if (hp->completed < np->completed) {
/* purge older hp */
tmp = hp->next;
hp->next = NULL;
stonith_history_free(hp);
hp = tmp;
break;
}
/* damn single linked list */
free(hp->target);
free(hp->action);
free(np->origin);
np->origin = hp->origin;
free(np->delegate);
np->delegate = hp->delegate;
free(np->client);
np->client = hp->client;
np->completed = hp->completed;
tmp = hp;
hp = hp->next;
free(tmp);
break;
}
}
if (np->next) {
continue;
}
}
np = 0; /* let outer loop progress hp */
break;
}
/* simply move hp from history to new */
if (np == NULL) {
tmp = hp->next;
hp->next = new;
new = hp;
hp = tmp;
}
}
return new;
}
/*!
* \internal
* \brief Sort the stonith-history
* sort by competed most current on the top
* pending actions lacking a completed-stamp are gathered at the top
*
* \param[in] history List of stonith actions
*
*/
static stonith_history_t *
sort_stonith_history(stonith_history_t *history)
{
stonith_history_t *new = NULL, *pending = NULL, *hp, *np, *tmp;
for (hp = history; hp; ) {
tmp = hp->next;
if ((hp->state == st_done) || (hp->state == st_failed)) {
/* sort into new */
if ((!new) || (hp->completed > new->completed)) {
hp->next = new;
new = hp;
} else {
np = new;
do {
if ((!np->next) || (hp->completed > np->next->completed)) {
hp->next = np->next;
np->next = hp;
break;
}
np = np->next;
} while (1);
}
} else {
/* put into pending */
hp->next = pending;
pending = hp;
}
hp = tmp;
}
/* pending actions don't have a completed-stamp so make them go front */
if (pending) {
stonith_history_t *last_pending = pending;
while (last_pending->next) {
last_pending = last_pending->next;
}
last_pending->next = new;
new = pending;
}
return new;
}
/*!
* \internal
* \brief Turn stonith action into a better readable string
*
* \param[in] action Stonith action
*/
static char *
fence_action_str(const char *action)
{
char *str = NULL;
if (action == NULL) {
str = strdup("fencing");
} else if (!strcmp(action, "on")) {
str = strdup("unfencing");
} else if (!strcmp(action, "off")) {
str = strdup("turning off");
} else {
str = strdup(action);
}
return str;
}
/*!
* \internal
* \brief Print a stonith action
*
* \param[in] stream File stream to display output to
* \param[in] event stonith event
*/
static void
print_stonith_action(FILE *stream, stonith_history_t *event)
{
char *action_s = fence_action_str(event->action);
char *run_at_s = ctime(&event->completed);
if ((run_at_s) && (run_at_s[0] != 0)) {
run_at_s[strlen(run_at_s)-1] = 0; /* Overwrite the newline */
}
switch(output_format) {
case mon_output_xml:
fprintf(stream, " target, event->action);
switch(event->state) {
case st_done:
fprintf(stream, " state=\"success\"");
break;
case st_failed:
fprintf(stream, " state=\"failed\"");
break;
default:
fprintf(stream, " state=\"pending\"");
}
fprintf(stream, " origin=\"%s\" client=\"%s\"",
event->origin, event->client);
if (event->delegate) {
fprintf(stream, " delegate=\"%s\"", event->delegate);
}
switch(event->state) {
case st_done:
case st_failed:
fprintf(stream, " completed=\"%s\"", run_at_s?run_at_s:"");
break;
default:
break;
}
fprintf(stream, " />\n");
break;
case mon_output_plain:
case mon_output_console:
switch(event->state) {
case st_done:
print_as("* %s of %s successful: delegate=%s, client=%s, origin=%s,\n"
" %s='%s'\n",
action_s, event->target,
event->delegate ? event->delegate : "",
event->client, event->origin,
fence_full_history?"completed":"last-successful",
run_at_s?run_at_s:"");
break;
case st_failed:
print_as("* %s of %s failed: delegate=%s, client=%s, origin=%s,\n"
" %s='%s'\n",
action_s, event->target,
event->delegate ? event->delegate : "",
event->client, event->origin,
fence_full_history?"completed":"last-failed",
run_at_s?run_at_s:"");
break;
default:
print_as("* %s of %s pending: client=%s, origin=%s\n",
action_s, event->target,
event->client, event->origin);
}
break;
case mon_output_html:
case mon_output_cgi:
switch(event->state) {
case st_done:
fprintf(stream, " %s of %s successful: delegate=%s, "
"client=%s, origin=%s, %s='%s'\n",
action_s, event->target,
event->delegate ? event->delegate : "",
event->client, event->origin,
fence_full_history?"completed":"last-successful",
run_at_s?run_at_s:"");
break;
case st_failed:
fprintf(stream, " %s of %s failed: delegate=%s, "
"client=%s, origin=%s, %s='%s'\n",
action_s, event->target,
event->delegate ? event->delegate : "",
event->client, event->origin,
fence_full_history?"completed":"last-failed",
run_at_s?run_at_s:"");
break;
default:
fprintf(stream, " %s of %s pending: client=%s, "
"origin=%s\n",
action_s, event->target,
event->client, event->origin);
}
break;
default:
/* no support for fence history for other formats so far */
break;
}
free(action_s);
}
/*!
* \internal
* \brief Print a section for failed stonith actions
*
* \param[in] stream File stream to display output to
* \param[in] history List of stonith actions
*
*/
static void
print_failed_stonith_actions(FILE *stream, stonith_history_t *history)
{
stonith_history_t *hp;
for (hp = history; hp; hp = hp->next) {
if (hp->state == st_failed) {
break;
}
}
if (!hp) {
return;
}
/* Print section heading */
switch (output_format) {
/* no need to take care of xml in here as xml gets full
* history anyway
*/
case mon_output_plain:
case mon_output_console:
print_as("\nFailed Fencing Actions:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n Failed Fencing Actions
\n \n");
break;
default:
break;
}
/* Print each failed stonith action */
for (hp = history; hp; hp = hp->next) {
if (hp->state == st_failed) {
print_stonith_action(stream, hp);
}
}
/* End section */
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print pending stonith actions
*
* \param[in] stream File stream to display output to
* \param[in] history List of stonith actions
*
*/
static void
print_stonith_pending(FILE *stream, stonith_history_t *history)
{
/* xml-output always shows the full history
* so we'll never have to show pending-actions
* separately
*/
if (history && (history->state != st_failed) &&
(history->state != st_done)) {
stonith_history_t *hp;
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\nPending Fencing Actions:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n Pending Fencing Actions
\n \n");
break;
default:
break;
}
for (hp = history; hp; hp = hp->next) {
if ((hp->state == st_failed) || (hp->state == st_done)) {
break;
}
print_stonith_action(stream, hp);
}
/* End section */
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n");
break;
default:
break;
}
}
}
/*!
* \internal
* \brief Print a section for stonith-history
*
* \param[in] stream File stream to display output to
* \param[in] history List of stonith actions
*
*/
static void
print_stonith_history(FILE *stream, stonith_history_t *history)
{
stonith_history_t *hp;
/* Print section heading */
switch (output_format) {
case mon_output_plain:
case mon_output_console:
print_as("\nFencing History:\n");
break;
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n Fencing History
\n \n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
for (hp = history; hp; hp = hp->next) {
if ((hp->state != st_failed) || (output_format == mon_output_xml)) {
print_stonith_action(stream, hp);
}
}
/* End section */
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
fprintf(stream, "
\n");
break;
case mon_output_xml:
fprintf(stream, " \n");
break;
default:
break;
}
}
/*!
* \internal
* \brief Print cluster status to screen
*
* This uses the global display preferences set by command-line options
* to display cluster status in a human-friendly way.
*
* \param[in] data_set Working set of CIB state
* \param[in] stonith_history List of stonith actions
*/
static void
print_status(pe_working_set_t * data_set,
stonith_history_t *stonith_history)
{
GListPtr gIter = NULL;
int print_opts = get_resource_display_options();
/* space-separated lists of node names */
char *online_nodes = NULL;
char *online_remote_nodes = NULL;
char *online_guest_nodes = NULL;
char *offline_nodes = NULL;
char *offline_remote_nodes = NULL;
if (output_format == mon_output_console) {
blank_screen();
}
print_cluster_summary(stdout, data_set);
print_as("\n");
/* Gather node information (and print if in bad state or grouping by node) */
for (gIter = data_set->nodes; gIter != NULL; gIter = gIter->next) {
node_t *node = (node_t *) gIter->data;
const char *node_mode = NULL;
char *node_name = get_node_display_name(node);
/* Get node mode */
if (node->details->unclean) {
if (node->details->online) {
node_mode = "UNCLEAN (online)";
} else if (node->details->pending) {
node_mode = "UNCLEAN (pending)";
} else {
node_mode = "UNCLEAN (offline)";
}
} else if (node->details->pending) {
node_mode = "pending";
} else if (node->details->standby_onfail && node->details->online) {
node_mode = "standby (on-fail)";
} else if (node->details->standby) {
if (node->details->online) {
if (node->details->running_rsc) {
node_mode = "standby (with active resources)";
} else {
node_mode = "standby";
}
} else {
node_mode = "OFFLINE (standby)";
}
} else if (node->details->maintenance) {
if (node->details->online) {
node_mode = "maintenance";
} else {
node_mode = "OFFLINE (maintenance)";
}
} else if (node->details->online) {
node_mode = "online";
if (group_by_node == FALSE) {
if (is_container_remote_node(node)) {
online_guest_nodes = add_list_element(online_guest_nodes, node_name);
} else if (is_baremetal_remote_node(node)) {
online_remote_nodes = add_list_element(online_remote_nodes, node_name);
} else {
online_nodes = add_list_element(online_nodes, node_name);
}
free(node_name);
continue;
}
} else {
node_mode = "OFFLINE";
if (group_by_node == FALSE) {
if (is_baremetal_remote_node(node)) {
offline_remote_nodes = add_list_element(offline_remote_nodes, node_name);
} else if (is_container_remote_node(node)) {
/* ignore offline guest nodes */
} else {
offline_nodes = add_list_element(offline_nodes, node_name);
}
free(node_name);
continue;
}
}
/* If we get here, node is in bad state, or we're grouping by node */
/* Print the node name and status */
if (is_container_remote_node(node)) {
print_as("Guest");
} else if (is_baremetal_remote_node(node)) {
print_as("Remote");
}
print_as("Node %s: %s\n", node_name, node_mode);
/* If we're grouping by node, print its resources */
if (group_by_node) {
if (print_brief) {
print_rscs_brief(node->details->running_rsc, "\t", print_opts | pe_print_rsconly,
stdout, FALSE);
} else {
GListPtr gIter2 = NULL;
for (gIter2 = node->details->running_rsc; gIter2 != NULL; gIter2 = gIter2->next) {
resource_t *rsc = (resource_t *) gIter2->data;
rsc->fns->print(rsc, "\t", print_opts | pe_print_rsconly, stdout);
}
}
}
free(node_name);
}
/* If we're not grouping by node, summarize nodes by status */
if (online_nodes) {
print_as("Online: [%s ]\n", online_nodes);
free(online_nodes);
}
if (offline_nodes) {
print_as("OFFLINE: [%s ]\n", offline_nodes);
free(offline_nodes);
}
if (online_remote_nodes) {
print_as("RemoteOnline: [%s ]\n", online_remote_nodes);
free(online_remote_nodes);
}
if (offline_remote_nodes) {
print_as("RemoteOFFLINE: [%s ]\n", offline_remote_nodes);
free(offline_remote_nodes);
}
if (online_guest_nodes) {
print_as("GuestOnline: [%s ]\n", online_guest_nodes);
free(online_guest_nodes);
}
/* Print resources section, if needed */
print_resources(stdout, data_set, print_opts);
/* print Node Attributes section if requested */
if (show & mon_show_attributes) {
print_node_attributes(stdout, data_set);
}
/* If requested, print resource operations (which includes failcounts)
* or just failcounts
*/
if (show & (mon_show_operations | mon_show_failcounts)) {
print_node_summary(stdout, data_set,
((show & mon_show_operations)? TRUE : FALSE));
}
/* If there were any failed actions, print them */
if (xml_has_children(data_set->failed)) {
print_failed_actions(stdout, data_set);
}
/* Print failed stonith actions */
if (fence_history) {
print_failed_stonith_actions(stdout, stonith_history);
}
/* Print tickets if requested */
if (show & mon_show_tickets) {
print_cluster_tickets(stdout, data_set);
}
/* Print negative location constraints if requested */
if (show & mon_show_bans) {
print_neg_locations(stdout, data_set);
}
/* Print stonith history */
if (fence_history) {
if (show & mon_show_fence_history) {
print_stonith_history(stdout, stonith_history);
} else {
print_stonith_pending(stdout, stonith_history);
}
}
#if CURSES_ENABLED
if (output_format == mon_output_console) {
refresh();
}
#endif
}
/*!
* \internal
* \brief Print cluster status in XML format
*
* \param[in] data_set Working set of CIB state
*/
static void
print_xml_status(pe_working_set_t * data_set,
stonith_history_t *stonith_history)
{
FILE *stream = stdout;
GListPtr gIter = NULL;
int print_opts = get_resource_display_options();
fprintf(stream, "\n");
fprintf(stream, "\n", VERSION);
print_cluster_summary(stream, data_set);
/*** NODES ***/
fprintf(stream, " \n");
for (gIter = data_set->nodes; gIter != NULL; gIter = gIter->next) {
node_t *node = (node_t *) gIter->data;
const char *node_type = "unknown";
switch (node->details->type) {
case node_member:
node_type = "member";
break;
case node_remote:
node_type = "remote";
break;
case node_ping:
node_type = "ping";
break;
}
fprintf(stream, " details->uname);
fprintf(stream, "id=\"%s\" ", node->details->id);
fprintf(stream, "online=\"%s\" ", node->details->online ? "true" : "false");
fprintf(stream, "standby=\"%s\" ", node->details->standby ? "true" : "false");
fprintf(stream, "standby_onfail=\"%s\" ", node->details->standby_onfail ? "true" : "false");
fprintf(stream, "maintenance=\"%s\" ", node->details->maintenance ? "true" : "false");
fprintf(stream, "pending=\"%s\" ", node->details->pending ? "true" : "false");
fprintf(stream, "unclean=\"%s\" ", node->details->unclean ? "true" : "false");
fprintf(stream, "shutdown=\"%s\" ", node->details->shutdown ? "true" : "false");
fprintf(stream, "expected_up=\"%s\" ", node->details->expected_up ? "true" : "false");
fprintf(stream, "is_dc=\"%s\" ", node->details->is_dc ? "true" : "false");
fprintf(stream, "resources_running=\"%d\" ", g_list_length(node->details->running_rsc));
fprintf(stream, "type=\"%s\" ", node_type);
if (is_container_remote_node(node)) {
fprintf(stream, "id_as_resource=\"%s\" ", node->details->remote_rsc->container->id);
}
if (group_by_node) {
GListPtr lpc2 = NULL;
fprintf(stream, ">\n");
for (lpc2 = node->details->running_rsc; lpc2 != NULL; lpc2 = lpc2->next) {
resource_t *rsc = (resource_t *) lpc2->data;
rsc->fns->print(rsc, " ", print_opts | pe_print_rsconly, stream);
}
fprintf(stream, " \n");
} else {
fprintf(stream, "/>\n");
}
}
fprintf(stream, " \n");
/* Print resources section, if needed */
print_resources(stream, data_set, print_opts);
/* print Node Attributes section if requested */
if (show & mon_show_attributes) {
print_node_attributes(stream, data_set);
}
/* If requested, print resource operations (which includes failcounts)
* or just failcounts
*/
if (show & (mon_show_operations | mon_show_failcounts)) {
print_node_summary(stream, data_set,
((show & mon_show_operations)? TRUE : FALSE));
}
/* If there were any failed actions, print them */
if (xml_has_children(data_set->failed)) {
print_failed_actions(stream, data_set);
}
/* Print stonith history */
if (fence_history) {
print_stonith_history(stdout, stonith_history);
}
/* Print tickets if requested */
if (show & mon_show_tickets) {
print_cluster_tickets(stream, data_set);
}
/* Print negative location constraints if requested */
if (show & mon_show_bans) {
print_neg_locations(stream, data_set);
}
fprintf(stream, "\n");
fflush(stream);
fclose(stream);
}
/*!
* \internal
* \brief Print cluster status in HTML format (with HTTP headers if CGI)
*
* \param[in] data_set Working set of CIB state
* \param[in] filename Name of file to write HTML to (ignored if CGI)
*
* \return 0 on success, -1 on error
*/
static int
print_html_status(pe_working_set_t * data_set,
const char *filename,
stonith_history_t *stonith_history)
{
FILE *stream;
GListPtr gIter = NULL;
char *filename_tmp = NULL;
int print_opts = get_resource_display_options();
if (output_format == mon_output_cgi) {
stream = stdout;
fprintf(stream, "Content-Type: text/html\n\n");
} else {
filename_tmp = crm_concat(filename, "tmp", '.');
stream = fopen(filename_tmp, "w");
if (stream == NULL) {
crm_perror(LOG_ERR, "Cannot open %s for writing", filename_tmp);
free(filename_tmp);
return -1;
}
}
fprintf(stream, "\n");
fprintf(stream, " \n");
fprintf(stream, " Cluster status\n");
fprintf(stream, " \n", reconnect_msec / 1000);
fprintf(stream, " \n");
fprintf(stream, "\n");
print_cluster_summary(stream, data_set);
/*** NODE LIST ***/
fprintf(stream, "
\n Node List
\n");
fprintf(stream, "\n");
for (gIter = data_set->nodes; gIter != NULL; gIter = gIter->next) {
node_t *node = (node_t *) gIter->data;
char *node_name = get_node_display_name(node);
fprintf(stream, "- Node: %s: ", node_name);
if (node->details->standby_onfail && node->details->online) {
fprintf(stream, "standby (on-fail)\n");
} else if (node->details->standby && node->details->online) {
fprintf(stream, "standby%s\n",
node->details->running_rsc?" (with active resources)":"");
} else if (node->details->standby) {
fprintf(stream, "OFFLINE (standby)\n");
} else if (node->details->maintenance && node->details->online) {
fprintf(stream, "maintenance\n");
} else if (node->details->maintenance) {
fprintf(stream, "OFFLINE (maintenance)\n");
} else if (node->details->online) {
fprintf(stream, "online\n");
} else {
fprintf(stream, "OFFLINE\n");
}
if (print_brief && group_by_node) {
fprintf(stream, "
\n");
print_rscs_brief(node->details->running_rsc, NULL, print_opts | pe_print_rsconly,
stream, FALSE);
fprintf(stream, "
\n");
} else if (group_by_node) {
GListPtr lpc2 = NULL;
fprintf(stream, "\n");
for (lpc2 = node->details->running_rsc; lpc2 != NULL; lpc2 = lpc2->next) {
resource_t *rsc = (resource_t *) lpc2->data;
fprintf(stream, "- ");
rsc->fns->print(rsc, NULL, print_opts | pe_print_rsconly, stream);
fprintf(stream, "
\n");
}
fprintf(stream, "
\n");
}
fprintf(stream, " \n");
free(node_name);
}
fprintf(stream, "
\n");
/* Print resources section, if needed */
print_resources(stream, data_set, print_opts);
/* print Node Attributes section if requested */
if (show & mon_show_attributes) {
print_node_attributes(stream, data_set);
}
/* If requested, print resource operations (which includes failcounts)
* or just failcounts
*/
if (show & (mon_show_operations | mon_show_failcounts)) {
print_node_summary(stream, data_set,
((show & mon_show_operations)? TRUE : FALSE));
}
/* If there were any failed actions, print them */
if (xml_has_children(data_set->failed)) {
print_failed_actions(stream, data_set);
}
/* Print failed stonith actions */
if (fence_history) {
print_failed_stonith_actions(stream, stonith_history);
}
/* Print stonith history */
if (fence_history) {
if (show & mon_show_fence_history) {
print_stonith_history(stream, stonith_history);
} else {
print_stonith_pending(stdout, stonith_history);
}
}
/* Print tickets if requested */
if (show & mon_show_tickets) {
print_cluster_tickets(stream, data_set);
}
/* Print negative location constraints if requested */
if (show & mon_show_bans) {
print_neg_locations(stream, data_set);
}
fprintf(stream, "\n");
fprintf(stream, "\n");
fflush(stream);
fclose(stream);
if (output_format != mon_output_cgi) {
if (rename(filename_tmp, filename) != 0) {
crm_perror(LOG_ERR, "Unable to rename %s->%s", filename_tmp, filename);
}
free(filename_tmp);
}
return 0;
}
static int
send_custom_trap(const char *node, const char *rsc, const char *task, int target_rc, int rc,
int status, const char *desc)
{
pid_t pid;
/*setenv needs chars, these are ints */
char *rc_s = crm_itoa(rc);
char *status_s = crm_itoa(status);
char *target_rc_s = crm_itoa(target_rc);
crm_debug("Sending external notification to '%s' via '%s'", external_recipient, external_agent);
if(rsc) {
setenv("CRM_notify_rsc", rsc, 1);
}
if (external_recipient) {
setenv("CRM_notify_recipient", external_recipient, 1);
}
setenv("CRM_notify_node", node, 1);
setenv("CRM_notify_task", task, 1);
setenv("CRM_notify_desc", desc, 1);
setenv("CRM_notify_rc", rc_s, 1);
setenv("CRM_notify_target_rc", target_rc_s, 1);
setenv("CRM_notify_status", status_s, 1);
pid = fork();
if (pid == -1) {
crm_perror(LOG_ERR, "notification fork() failed.");
}
if (pid == 0) {
/* crm_debug("notification: I am the child. Executing the nofitication program."); */
execl(external_agent, external_agent, NULL);
exit(CRM_EX_ERROR);
}
crm_trace("Finished running custom notification program '%s'.", external_agent);
free(target_rc_s);
free(status_s);
free(rc_s);
return 0;
}
static void
handle_rsc_op(xmlNode * xml, const char *node_id)
{
int rc = -1;
int status = -1;
int action = -1;
int target_rc = -1;
int transition_num = -1;
gboolean notify = TRUE;
char *rsc = NULL;
char *task = NULL;
const char *desc = NULL;
const char *magic = NULL;
const char *id = NULL;
char *update_te_uuid = NULL;
const char *node = NULL;
xmlNode *n = xml;
xmlNode * rsc_op = xml;
if(strcmp((const char*)xml->name, XML_LRM_TAG_RSC_OP) != 0) {
xmlNode *cIter;
for(cIter = xml->children; cIter; cIter = cIter->next) {
handle_rsc_op(cIter, node_id);
}
return;
}
id = crm_element_value(rsc_op, XML_LRM_ATTR_TASK_KEY);
if (id == NULL) {
/* Compatibility with <= 1.1.5 */
id = ID(rsc_op);
}
magic = crm_element_value(rsc_op, XML_ATTR_TRANSITION_MAGIC);
if (magic == NULL) {
/* non-change */
return;
}
if (FALSE == decode_transition_magic(magic, &update_te_uuid, &transition_num, &action,
&status, &rc, &target_rc)) {
crm_err("Invalid event %s detected for %s", magic, id);
return;
}
if (parse_op_key(id, &rsc, &task, NULL) == FALSE) {
crm_err("Invalid event detected for %s", id);
goto bail;
}
node = crm_element_value(rsc_op, XML_LRM_ATTR_TARGET);
while (n != NULL && safe_str_neq(XML_CIB_TAG_STATE, TYPE(n))) {
n = n->parent;
}
if(node == NULL && n) {
node = crm_element_value(n, XML_ATTR_UNAME);
}
if (node == NULL && n) {
node = ID(n);
}
if (node == NULL) {
node = node_id;
}
if (node == NULL) {
crm_err("No node detected for event %s (%s)", magic, id);
goto bail;
}
/* look up where we expected it to be? */
desc = pcmk_strerror(pcmk_ok);
if (status == PCMK_LRM_OP_DONE && target_rc == rc) {
crm_notice("%s of %s on %s completed: %s", task, rsc, node, desc);
if (rc == PCMK_OCF_NOT_RUNNING) {
notify = FALSE;
}
} else if (status == PCMK_LRM_OP_DONE) {
desc = services_ocf_exitcode_str(rc);
crm_warn("%s of %s on %s failed: %s", task, rsc, node, desc);
} else {
desc = services_lrm_status_str(status);
crm_warn("%s of %s on %s failed: %s", task, rsc, node, desc);
}
if (notify && external_agent) {
send_custom_trap(node, rsc, task, target_rc, rc, status, desc);
}
bail:
free(update_te_uuid);
free(rsc);
free(task);
}
static gboolean
mon_trigger_refresh(gpointer user_data)
{
mainloop_set_trigger(refresh_trigger);
return FALSE;
}
#define NODE_PATT "/lrm[@id="
static char *
get_node_from_xpath(const char *xpath)
{
char *nodeid = NULL;
char *tmp = strstr(xpath, NODE_PATT);
if(tmp) {
tmp += strlen(NODE_PATT);
tmp += 1;
nodeid = strdup(tmp);
tmp = strstr(nodeid, "\'");
CRM_ASSERT(tmp);
tmp[0] = 0;
}
return nodeid;
}
static void
crm_diff_update_v2(const char *event, xmlNode * msg)
{
xmlNode *change = NULL;
xmlNode *diff = get_message_xml(msg, F_CIB_UPDATE_RESULT);
for (change = __xml_first_child(diff); change != NULL; change = __xml_next(change)) {
const char *name = NULL;
const char *op = crm_element_value(change, XML_DIFF_OP);
const char *xpath = crm_element_value(change, XML_DIFF_PATH);
xmlNode *match = NULL;
const char *node = NULL;
if(op == NULL) {
continue;
} else if(strcmp(op, "create") == 0) {
match = change->children;
} else if(strcmp(op, "move") == 0) {
continue;
} else if(strcmp(op, "delete") == 0) {
continue;
} else if(strcmp(op, "modify") == 0) {
match = first_named_child(change, XML_DIFF_RESULT);
if(match) {
match = match->children;
}
}
if(match) {
name = (const char *)match->name;
}
crm_trace("Handling %s operation for %s %p, %s", op, xpath, match, name);
if(xpath == NULL) {
/* Version field, ignore */
} else if(name == NULL) {
crm_debug("No result for %s operation to %s", op, xpath);
CRM_ASSERT(strcmp(op, "delete") == 0 || strcmp(op, "move") == 0);
} else if(strcmp(name, XML_TAG_CIB) == 0) {
xmlNode *state = NULL;
xmlNode *status = first_named_child(match, XML_CIB_TAG_STATUS);
for (state = __xml_first_child(status); state != NULL; state = __xml_next(state)) {
node = crm_element_value(state, XML_ATTR_UNAME);
if (node == NULL) {
node = ID(state);
}
handle_rsc_op(state, node);
}
} else if(strcmp(name, XML_CIB_TAG_STATUS) == 0) {
xmlNode *state = NULL;
for (state = __xml_first_child(match); state != NULL; state = __xml_next(state)) {
node = crm_element_value(state, XML_ATTR_UNAME);
if (node == NULL) {
node = ID(state);
}
handle_rsc_op(state, node);
}
} else if(strcmp(name, XML_CIB_TAG_STATE) == 0) {
node = crm_element_value(match, XML_ATTR_UNAME);
if (node == NULL) {
node = ID(match);
}
handle_rsc_op(match, node);
} else if(strcmp(name, XML_CIB_TAG_LRM) == 0) {
node = ID(match);
handle_rsc_op(match, node);
} else if(strcmp(name, XML_LRM_TAG_RESOURCES) == 0) {
char *local_node = get_node_from_xpath(xpath);
handle_rsc_op(match, local_node);
free(local_node);
} else if(strcmp(name, XML_LRM_TAG_RESOURCE) == 0) {
char *local_node = get_node_from_xpath(xpath);
handle_rsc_op(match, local_node);
free(local_node);
} else if(strcmp(name, XML_LRM_TAG_RSC_OP) == 0) {
char *local_node = get_node_from_xpath(xpath);
handle_rsc_op(match, local_node);
free(local_node);
} else {
crm_trace("Ignoring %s operation for %s %p, %s", op, xpath, match, name);
}
}
}
static void
crm_diff_update_v1(const char *event, xmlNode * msg)
{
/* Process operation updates */
xmlXPathObject *xpathObj = xpath_search(msg,
"//" F_CIB_UPDATE_RESULT "//" XML_TAG_DIFF_ADDED
"//" XML_LRM_TAG_RSC_OP);
int lpc = 0, max = numXpathResults(xpathObj);
for (lpc = 0; lpc < max; lpc++) {
xmlNode *rsc_op = getXpathResult(xpathObj, lpc);
handle_rsc_op(rsc_op, NULL);
}
freeXpathObject(xpathObj);
}
static void
crm_diff_update(const char *event, xmlNode * msg)
{
int rc = -1;
static bool stale = FALSE;
gboolean cib_updated = FALSE;
xmlNode *diff = get_message_xml(msg, F_CIB_UPDATE_RESULT);
print_dot();
if (current_cib != NULL) {
rc = xml_apply_patchset(current_cib, diff, TRUE);
switch (rc) {
case -pcmk_err_diff_resync:
case -pcmk_err_diff_failed:
crm_notice("[%s] Patch aborted: %s (%d)", event, pcmk_strerror(rc), rc);
free_xml(current_cib); current_cib = NULL;
break;
case pcmk_ok:
cib_updated = TRUE;
break;
default:
crm_notice("[%s] ABORTED: %s (%d)", event, pcmk_strerror(rc), rc);
free_xml(current_cib); current_cib = NULL;
}
}
if (current_cib == NULL) {
crm_trace("Re-requesting the full cib");
cib->cmds->query(cib, NULL, ¤t_cib, cib_scope_local | cib_sync_call);
}
if (external_agent) {
int format = 0;
crm_element_value_int(diff, "format", &format);
switch(format) {
case 1:
crm_diff_update_v1(event, msg);
break;
case 2:
crm_diff_update_v2(event, msg);
break;
default:
crm_err("Unknown patch format: %d", format);
}
}
if (current_cib == NULL) {
if(!stale) {
print_as("--- Stale data ---");
}
stale = TRUE;
return;
}
stale = FALSE;
kick_refresh(cib_updated);
}
static gboolean
mon_refresh_display(gpointer user_data)
{
xmlNode *cib_copy = copy_xml(current_cib);
stonith_history_t *stonith_history = NULL;
last_refresh = time(NULL);
if (cli_config_update(&cib_copy, NULL, FALSE) == FALSE) {
if (cib) {
cib->cmds->signoff(cib);
}
print_as("Upgrade failed: %s", pcmk_strerror(-pcmk_err_schema_validation));
if (output_format == mon_output_console) {
sleep(2);
}
clean_up(CRM_EX_CONFIG);
return FALSE;
}
/* get the stonith-history if there is evidence we need it
*/
while (fence_history) {
if (st != NULL) {
if (st->cmds->history(st, st_opt_sync_call, NULL, &stonith_history, 120)) {
fprintf(stderr, "Critical: Unable to get stonith-history\n");
mon_cib_connection_destroy(NULL);
} else {
if ((!fence_full_history) && (output_format != mon_output_xml)) {
stonith_history = reduce_stonith_history(stonith_history);
}
stonith_history = sort_stonith_history(stonith_history);
break; /* all other cases are errors */
}
} else {
fprintf(stderr, "Critical: No stonith-API\n");
}
free_xml(cib_copy);
print_as("Reading stonith-history failed");
if (output_format == mon_output_console) {
sleep(2);
}
return FALSE;
}
if (mon_data_set == NULL) {
mon_data_set = pe_new_working_set();
CRM_ASSERT(mon_data_set != NULL);
}
mon_data_set->input = cib_copy;
cluster_status(mon_data_set);
/* Unpack constraints if any section will need them
* (tickets may be referenced in constraints but not granted yet,
* and bans need negative location constraints) */
if (show & (mon_show_bans | mon_show_tickets)) {
xmlNode *cib_constraints = get_object_root(XML_CIB_TAG_CONSTRAINTS,
mon_data_set->input);
unpack_constraints(cib_constraints, mon_data_set);
}
switch (output_format) {
case mon_output_html:
case mon_output_cgi:
if (print_html_status(mon_data_set, output_filename, stonith_history) != 0) {
fprintf(stderr, "Critical: Unable to output html file\n");
clean_up(CRM_EX_CANTCREAT);
return FALSE;
}
break;
case mon_output_xml:
print_xml_status(mon_data_set, stonith_history);
break;
case mon_output_monitor:
print_simple_status(mon_data_set, stonith_history);
if (has_warnings) {
clean_up(MON_STATUS_WARN);
return FALSE;
}
break;
case mon_output_plain:
case mon_output_console:
print_status(mon_data_set, stonith_history);
break;
case mon_output_none:
break;
}
stonith_history_free(stonith_history);
stonith_history = NULL;
pe_reset_working_set(mon_data_set);
return TRUE;
}
static void
mon_st_callback_event(stonith_t * st, stonith_event_t * e)
{
if (st->state == stonith_disconnected) {
/* disconnect cib as well and have everything reconnect */
mon_cib_connection_destroy(NULL);
} else if (external_agent) {
char *desc = crm_strdup_printf("Operation %s requested by %s for peer %s: %s (ref=%s)",
e->operation, e->origin, e->target, pcmk_strerror(e->result),
e->id);
send_custom_trap(e->target, NULL, e->operation, pcmk_ok, e->result, 0, desc);
free(desc);
}
}
static void
kick_refresh(gboolean data_updated)
{
static int updates = 0;
long now = time(NULL);
if (data_updated) {
updates++;
}
if(refresh_timer == NULL) {
refresh_timer = mainloop_timer_add("refresh", 2000, FALSE, mon_trigger_refresh, NULL);
}
/* Refresh
* - immediately if the last update was more than 5s ago
* - every 10 cib-updates
* - at most 2s after the last update
*/
if ((now - last_refresh) > (reconnect_msec / 1000)) {
mainloop_set_trigger(refresh_trigger);
mainloop_timer_stop(refresh_timer);
updates = 0;
} else if(updates >= 10) {
mainloop_set_trigger(refresh_trigger);
mainloop_timer_stop(refresh_timer);
updates = 0;
} else {
mainloop_timer_start(refresh_timer);
}
}
static void
mon_st_callback_display(stonith_t * st, stonith_event_t * e)
{
if (st->state == stonith_disconnected) {
/* disconnect cib as well and have everything reconnect */
mon_cib_connection_destroy(NULL);
} else {
print_dot();
kick_refresh(TRUE);
}
}
static void
clean_up_connections(void)
{
if (cib != NULL) {
cib->cmds->signoff(cib);
cib_delete(cib);
cib = NULL;
}
if (st != NULL) {
if (st->state != stonith_disconnected) {
st->cmds->remove_notification(st, T_STONITH_NOTIFY_DISCONNECT);
st->cmds->remove_notification(st, T_STONITH_NOTIFY_FENCE);
st->cmds->remove_notification(st, T_STONITH_NOTIFY_HISTORY);
st->cmds->disconnect(st);
}
stonith_api_delete(st);
st = NULL;
}
}
/*
* De-init ncurses, disconnect from the CIB manager, disconnect fencing,
* deallocate memory and show usage-message if requested.
*
* We don't actually return, but nominally returning crm_exit_t allows a usage
* like "return clean_up(exit_code);" which helps static analysis understand the
* code flow.
*/
static crm_exit_t
clean_up(crm_exit_t exit_code)
{
#if CURSES_ENABLED
if (curses_console_initialized) {
output_format = mon_output_plain;
echo();
nocbreak();
endwin();
curses_console_initialized = FALSE;
}
#endif
clean_up_connections();
free(output_filename);
free(pid_file);
pe_free_working_set(mon_data_set);
mon_data_set = NULL;
if (exit_code == CRM_EX_USAGE) {
if (output_format == mon_output_cgi) {
fprintf(stdout, "Content-Type: text/plain\n"
"Status: 500\n\n");
} else {
crm_help('?', CRM_EX_USAGE);
}
}
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
diff --git a/tools/crm_resource.c b/tools/crm_resource.c
index 6916b1fe00..4713a8b4fd 100644
--- a/tools/crm_resource.c
+++ b/tools/crm_resource.c
@@ -1,1412 +1,1414 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
bool BE_QUIET = FALSE;
bool scope_master = FALSE;
int cib_options = cib_sync_call;
static GMainLoop *mainloop = NULL;
#define MESSAGE_TIMEOUT_S 60
static gboolean
resource_ipc_timeout(gpointer data)
{
fprintf(stderr, "Aborting because no messages received in %d seconds\n",
MESSAGE_TIMEOUT_S);
crm_err("No messages received in %d seconds", MESSAGE_TIMEOUT_S);
- return crm_exit(CRM_EX_TIMEOUT);
+ crm_exit(CRM_EX_TIMEOUT);
}
static void
resource_ipc_connection_destroy(gpointer user_data)
{
crm_info("Connection to controller was terminated");
crm_exit(CRM_EX_DISCONNECT);
}
static void
start_mainloop(void)
{
if (crmd_replies_needed == 0) {
return;
}
mainloop = g_main_loop_new(NULL, FALSE);
fprintf(stderr, "Waiting for %d repl%s from the controller",
crmd_replies_needed, (crmd_replies_needed == 1)? "y" : "ies");
crm_debug("Waiting for %d repl%s from the controller",
crmd_replies_needed, (crmd_replies_needed == 1)? "y" : "ies");
g_timeout_add(MESSAGE_TIMEOUT_S * 1000, resource_ipc_timeout, NULL);
g_main_loop_run(mainloop);
}
static int
resource_ipc_callback(const char *buffer, ssize_t length, gpointer userdata)
{
xmlNode *msg = string2xml(buffer);
fprintf(stderr, ".");
crm_log_xml_trace(msg, "[inbound]");
crmd_replies_needed--;
if ((crmd_replies_needed == 0) && mainloop
&& g_main_loop_is_running(mainloop)) {
fprintf(stderr, " OK\n");
crm_debug("Got all the replies we expected");
- return crm_exit(CRM_EX_OK);
+ crm_exit(CRM_EX_OK);
}
free_xml(msg);
return 0;
}
static int
compare_id(gconstpointer a, gconstpointer b)
{
return strcmp((const char *)a, (const char *)b);
}
static GListPtr
build_constraint_list(xmlNode *root)
{
GListPtr retval = NULL;
xmlNode *cib_constraints = NULL;
xmlXPathObjectPtr xpathObj = NULL;
int ndx = 0;
cib_constraints = get_object_root(XML_CIB_TAG_CONSTRAINTS, root);
xpathObj = xpath_search(cib_constraints, "//" XML_CONS_TAG_RSC_LOCATION);
for (ndx = 0; ndx < numXpathResults(xpathObj); ndx++) {
xmlNode *match = getXpathResult(xpathObj, ndx);
retval = g_list_insert_sorted(retval, (gpointer) ID(match), compare_id);
}
freeXpathObject(xpathObj);
return retval;
}
struct ipc_client_callbacks crm_callbacks = {
.dispatch = resource_ipc_callback,
.destroy = resource_ipc_connection_destroy,
};
/* short option letters still available: eEJkKXyYZ */
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{
"help", no_argument, NULL, '?',
"\t\tDisplay this text and exit"
},
{
"version", no_argument, NULL, '$',
"\t\tDisplay version information and exit"
},
{
"verbose", no_argument, NULL, 'V',
"\t\tIncrease debug output (may be specified multiple times)"
},
{
"quiet", no_argument, NULL, 'Q',
"\t\tBe less descriptive in results"
},
{
"resource", required_argument, NULL, 'r',
"\tResource ID"
},
{ "-spacer-", no_argument, NULL, '-', "\nQueries:" },
{
"list", no_argument, NULL, 'L',
"\t\tList all cluster resources with status"},
{
"list-raw", no_argument, NULL, 'l',
"\t\tList IDs of all instantiated resources (individual members rather than groups etc.)"
},
{
"list-cts", no_argument, NULL, 'c',
NULL, pcmk_option_hidden
},
{
"list-operations", no_argument, NULL, 'O',
"\tList active resource operations, optionally filtered by --resource and/or --node"
},
{
"list-all-operations", no_argument, NULL, 'o',
"List all resource operations, optionally filtered by --resource and/or --node"
},
{
"list-standards", no_argument, NULL, 0,
"\tList supported standards"
},
{
"list-ocf-providers", no_argument, NULL, 0,
"List all available OCF providers"
},
{
"list-agents", required_argument, NULL, 0,
"List all agents available for the named standard and/or provider."
},
{
"list-ocf-alternatives", required_argument, NULL, 0,
"List all available providers for the named OCF agent"
},
{
"show-metadata", required_argument, NULL, 0,
"Show the metadata for the named class:provider:agent"
},
{
"query-xml", no_argument, NULL, 'q',
"\tShow XML configuration of resource (after any template expansion)"
},
{
"query-xml-raw", no_argument, NULL, 'w',
"\tShow XML configuration of resource (before any template expansion)"
},
{
"get-parameter", required_argument, NULL, 'g',
"Display named parameter for resource.\n"
"\t\t\t\tUse instance attribute unless --meta or --utilization is specified"
},
{
"get-property", required_argument, NULL, 'G',
"Display named property of resource ('class', 'type', or 'provider') (requires --resource)",
pcmk_option_hidden
},
{
"locate", no_argument, NULL, 'W',
"\t\tShow node(s) currently running resource"
},
{
"stack", no_argument, NULL, 'A',
"\t\tDisplay the prerequisites and dependents of a resource"
},
{
"constraints", no_argument, NULL, 'a',
"\tDisplay the (co)location constraints that apply to a resource"
},
{
"why", no_argument, NULL, 'Y',
"\t\tShow why resources are not running, optionally filtered by --resource and/or --node"
},
{ "-spacer-", no_argument, NULL, '-', "\nCommands:" },
{
"validate", no_argument, NULL, 0,
"\t\tCall the validate-all action. There are two different things that can be validated. One\n"
"\t\t\t\tmethod is to validate the resource given by the -r option. The other method is to validate\n"
"\t\t\t\ta not-yet-existing resource. This method requires the --class, --agent, and --provider\n"
"\t\t\t\targuments, plus at least one --option argument."
},
{
"cleanup", no_argument, NULL, 'C',
"\t\tIf resource has any past failures, clear its history and fail count.\n"
"\t\t\t\tOptionally filtered by --resource, --node, --operation, and --interval (otherwise all).\n"
"\t\t\t\t--operation and --interval apply to fail counts, but entire history is always cleared,\n"
"\t\t\t\tto allow current state to be rechecked.\n"
},
{
"refresh", no_argument, NULL, 'R',
"\t\tDelete resource's history (including failures) so its current state is rechecked.\n"
"\t\t\t\tOptionally filtered by --resource and --node (otherwise all).\n"
"\t\t\t\tUnless --force is specified, resource's group or clone (if any) will also be refreshed."
},
{
"set-parameter", required_argument, NULL, 'p',
"Set named parameter for resource (requires -v).\n"
"\t\t\t\tUse instance attribute unless --meta or --utilization is specified."
},
{
"delete-parameter", required_argument, NULL, 'd',
"Delete named parameter for resource.\n"
"\t\t\t\tUse instance attribute unless --meta or --utilization is specified."
},
{
"set-property", required_argument, NULL, 'S',
"Set named property of resource ('class', 'type', or 'provider') (requires -r, -t, -v)",
pcmk_option_hidden
},
{ "-spacer-", no_argument, NULL, '-', "\nResource location:" },
{
"move", no_argument, NULL, 'M',
"\t\tCreate a constraint to move resource. If --node is specified, the constraint\n"
"\t\t\t\twill be to move to that node, otherwise it will be to ban the current node.\n"
"\t\t\t\tUnless --force is specified, this will return an error if the resource is\n"
"\t\t\t\talready running on the specified node. If --force is specified, this will\n"
"\t\t\t\talways ban the current node. Optional: --lifetime, --master.\n"
"\t\t\t\tNOTE: This may prevent the resource from running on its previous location\n"
"\t\t\t\tuntil the implicit constraint expires or is removed with --clear."
},
{
"ban", no_argument, NULL, 'B',
"\t\tCreate a constraint to keep resource off a node. Optional: --node, --lifetime, --master.\n"
"\t\t\t\tNOTE: This will prevent the resource from running on the affected node\n"
"\t\t\t\tuntil the implicit constraint expires or is removed with --clear.\n"
"\t\t\t\tIf --node is not specified, it defaults to the node currently running the resource\n"
"\t\t\t\tfor primitives and groups, or the master for promotable clones with promoted-max=1\n"
"\t\t\t\t(all other situations result in an error as there is no sane default).\n"
},
{
"clear", no_argument, NULL, 'U',
"\t\tRemove all constraints created by the --ban and/or --move commands.\n"
"\t\t\t\tRequires: --resource. Optional: --node, --master, --expired.\n"
"\t\t\t\tIf --node is not specified, all constraints created by --ban and --move\n"
"\t\t\t\twill be removed for the named resource. If --node and --force are specified,\n"
"\t\t\t\tany constraint created by --move will be cleared, even if it is not for the specified node.\n"
"\t\t\t\tIf --expired is specified, only those constraints whose lifetimes have expired will\n"
"\t\t\t\tbe removed.\n"
},
{
"expired", no_argument, NULL, 'e',
"\t\tModifies the --clear argument to remove constraints with expired lifetimes.\n"
},
{
"lifetime", required_argument, NULL, 'u',
"\tLifespan (as ISO 8601 duration) of created constraints (with -B, -M)\n"
"\t\t\t\t(see https://en.wikipedia.org/wiki/ISO_8601#Durations)"
},
{
"master", no_argument, NULL, 0,
"\t\tLimit scope of command to the Master role (with -B, -M, -U).\n"
"\t\t\t\tFor -B and -M, the previous master may remain active in the Slave role."
},
{ "-spacer-", no_argument, NULL, '-', "\nAdvanced Commands:" },
{
"delete", no_argument, NULL, 'D',
"\t\t(Advanced) Delete a resource from the CIB. Required: -t"
},
{
"fail", no_argument, NULL, 'F',
"\t\t(Advanced) Tell the cluster this resource has failed"
},
{
"restart", no_argument, NULL, 0,
"\t\t(Advanced) Tell the cluster to restart this resource and anything that depends on it"
},
{
"wait", no_argument, NULL, 0,
"\t\t(Advanced) Wait until the cluster settles into a stable state"
},
{
"force-demote", no_argument, NULL, 0,
"\t(Advanced) Bypass the cluster and demote a resource on the local node.\n"
"\t\t\t\tUnless --force is specified, this will refuse to do so if the cluster\n"
"\t\t\t\tbelieves the resource is a clone instance already running on the local node."
},
{
"force-stop", no_argument, NULL, 0,
"\t(Advanced) Bypass the cluster and stop a resource on the local node."
},
{
"force-start", no_argument, NULL, 0,
"\t(Advanced) Bypass the cluster and start a resource on the local node.\n"
"\t\t\t\tUnless --force is specified, this will refuse to do so if the cluster\n"
"\t\t\t\tbelieves the resource is a clone instance already running on the local node."
},
{
"force-promote", no_argument, NULL, 0,
"\t(Advanced) Bypass the cluster and promote a resource on the local node.\n"
"\t\t\t\tUnless --force is specified, this will refuse to do so if the cluster\n"
"\t\t\t\tbelieves the resource is a clone instance already running on the local node."
},
{
"force-check", no_argument, NULL, 0,
"\t(Advanced) Bypass the cluster and check the state of a resource on the local node."
},
{ "-spacer-", no_argument, NULL, '-', "\nValidate Options:" },
{
"class", required_argument, NULL, 0,
"\tThe standard the resource agent confirms to (for example, ocf).\n"
"\t\t\t\tUse with --agent, --provider, --option, and --validate."
},
{
"agent", required_argument, NULL, 0,
"\tThe agent to use (for example, IPaddr).\n"
"\t\t\t\tUse with --class, --provider, --option, and --validate."
},
{
"provider", required_argument, NULL, 0,
"\tThe vendor that supplies the resource agent (for example, heartbeat).\n"
"\t\t\t\tuse with --class, --agent, --option, and --validate."
},
{
"option", required_argument, NULL, 0,
"\tSpecify a device configuration parameter as NAME=VALUE\n"
"\t\t\t\t(may be specified multiple times). Use with --validate\n"
"\t\t\t\tand without the -r option."
},
{ "-spacer-", no_argument, NULL, '-', "\nAdditional Options:" },
{
"node", required_argument, NULL, 'N',
"\tNode name"
},
{
"recursive", no_argument, NULL, 0,
"\tFollow colocation chains when using --set-parameter"
},
{
"resource-type", required_argument, NULL, 't',
"Resource XML element (primitive, group, etc.) (with -D)"
},
{
"parameter-value", required_argument, NULL, 'v',
"Value to use with -p"
},
{
"meta", no_argument, NULL, 'm',
"\t\tUse resource meta-attribute instead of instance attribute (with -p, -g, -d)"
},
{
"utilization", no_argument, NULL, 'z',
"\tUse resource utilization attribute instead of instance attribute (with -p, -g, -d)"
},
{
"operation", required_argument, NULL, 'n',
"\tOperation to clear instead of all (with -C -r)"
},
{
"interval", required_argument, NULL, 'I',
"\tInterval of operation to clear (default 0) (with -C -r -n)"
},
{
"set-name", required_argument, NULL, 's',
"\t(Advanced) XML ID of attributes element to use (with -p, -d)"
},
{
"nvpair", required_argument, NULL, 'i',
"\t(Advanced) XML ID of nvpair element to use (with -p, -d)"
},
{
"timeout", required_argument, NULL, 'T',
"\t(Advanced) Abort if command does not finish in this time (with --restart, --wait, --force-*)"
},
{
"force", no_argument, NULL, 'f',
"\t\tIf making CIB changes, do so regardless of quorum.\n"
"\t\t\t\tSee help for individual commands for additional behavior.\n"
},
{
"xml-file", required_argument, NULL, 'x',
NULL, pcmk_option_hidden
},
/* legacy options */
{"host-uname", required_argument, NULL, 'H', NULL, pcmk_option_hidden},
{"-spacer-", 1, NULL, '-', "\nExamples:", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', "List the available OCF agents:", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --list-agents ocf", pcmk_option_example},
{"-spacer-", 1, NULL, '-', "List the available OCF agents from the linux-ha project:", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --list-agents ocf:heartbeat", pcmk_option_example},
{"-spacer-", 1, NULL, '-', "Move 'myResource' to a specific node:", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --resource myResource --move --node altNode", pcmk_option_example},
{"-spacer-", 1, NULL, '-', "Allow (but not force) 'myResource' to move back to its original location:", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --resource myResource --clear", pcmk_option_example},
{"-spacer-", 1, NULL, '-', "Stop 'myResource' (and anything that depends on it):", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --resource myResource --set-parameter target-role --meta --parameter-value Stopped", pcmk_option_example},
{"-spacer-", 1, NULL, '-', "Tell the cluster not to manage 'myResource':", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', "The cluster will not attempt to start or stop the resource under any circumstances."},
{"-spacer-", 1, NULL, '-', "Useful when performing maintenance tasks on a resource.", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --resource myResource --set-parameter is-managed --meta --parameter-value false", pcmk_option_example},
{"-spacer-", 1, NULL, '-', "Erase the operation history of 'myResource' on 'aNode':", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', "The cluster will 'forget' the existing resource state (including any errors) and attempt to recover the resource."},
{"-spacer-", 1, NULL, '-', "Useful when a resource had failed permanently and has been repaired by an administrator.", pcmk_option_paragraph},
{"-spacer-", 1, NULL, '-', " crm_resource --resource myResource --cleanup --node aNode", pcmk_option_example},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
char rsc_cmd = 'L';
const char *v_class = NULL;
const char *v_agent = NULL;
const char *v_provider = NULL;
char *name = NULL;
char *value = NULL;
GHashTable *validate_options = NULL;
const char *rsc_id = NULL;
const char *host_uname = NULL;
const char *prop_name = NULL;
const char *prop_value = NULL;
const char *rsc_type = NULL;
const char *prop_id = NULL;
const char *prop_set = NULL;
const char *rsc_long_cmd = NULL;
const char *longname = NULL;
const char *operation = NULL;
const char *interval_spec = NULL;
const char *cib_file = getenv("CIB_file");
GHashTable *override_params = NULL;
char *xml_file = NULL;
crm_ipc_t *crmd_channel = NULL;
pe_working_set_t *data_set = NULL;
xmlNode *cib_xml_copy = NULL;
cib_t *cib_conn = NULL;
resource_t *rsc = NULL;
bool recursive = FALSE;
char *our_pid = NULL;
bool validate_cmdline = FALSE; /* whether we are just validating based on command line options */
bool require_resource = TRUE; /* whether command requires that resource be specified */
bool require_dataset = TRUE; /* whether command requires populated dataset instance */
bool require_crmd = FALSE; // whether command requires controller connection
bool clear_expired = FALSE;
int rc = pcmk_ok;
int is_ocf_rc = 0;
int option_index = 0;
int timeout_ms = 0;
int argerr = 0;
int flag;
int find_flags = 0; // Flags to use when searching for resource
crm_exit_t exit_code = CRM_EX_OK;
crm_log_cli_init("crm_resource");
crm_set_options(NULL, "(query|command) [options]", long_options,
"Perform tasks related to cluster resources.\nAllows resources to be queried (definition and location), modified, and moved around the cluster.\n");
validate_options = crm_str_table_new();
while (1) {
flag = crm_get_option_long(argc, argv, &option_index, &longname);
if (flag == -1)
break;
switch (flag) {
case 0: /* long options with no short equivalent */
if (safe_str_eq("master", longname)) {
scope_master = TRUE;
} else if(safe_str_eq(longname, "recursive")) {
recursive = TRUE;
} else if (safe_str_eq("wait", longname)) {
rsc_cmd = flag;
rsc_long_cmd = longname;
require_resource = FALSE;
require_dataset = FALSE;
} else if (
safe_str_eq("validate", longname)
|| safe_str_eq("restart", longname)
|| safe_str_eq("force-demote", longname)
|| safe_str_eq("force-stop", longname)
|| safe_str_eq("force-start", longname)
|| safe_str_eq("force-promote", longname)
|| safe_str_eq("force-check", longname)) {
rsc_cmd = flag;
rsc_long_cmd = longname;
find_flags = pe_find_renamed|pe_find_anon;
crm_log_args(argc, argv);
} else if (safe_str_eq("list-ocf-providers", longname)
|| safe_str_eq("list-ocf-alternatives", longname)
|| safe_str_eq("list-standards", longname)) {
const char *text = NULL;
lrmd_list_t *list = NULL;
lrmd_list_t *iter = NULL;
lrmd_t *lrmd_conn = lrmd_api_new();
if (safe_str_eq("list-ocf-providers", longname)
|| safe_str_eq("list-ocf-alternatives", longname)) {
rc = lrmd_conn->cmds->list_ocf_providers(lrmd_conn, optarg, &list);
text = "OCF providers";
} else if (safe_str_eq("list-standards", longname)) {
rc = lrmd_conn->cmds->list_standards(lrmd_conn, &list);
text = "standards";
}
if (rc > 0) {
for (iter = list; iter != NULL; iter = iter->next) {
printf("%s\n", iter->val);
}
lrmd_list_freeall(list);
} else if (optarg) {
fprintf(stderr, "No %s found for %s\n", text, optarg);
exit_code = CRM_EX_NOSUCH;
} else {
fprintf(stderr, "No %s found\n", text);
exit_code = CRM_EX_NOSUCH;
}
lrmd_api_delete(lrmd_conn);
crm_exit(exit_code);
} else if (safe_str_eq("show-metadata", longname)) {
char *standard = NULL;
char *provider = NULL;
char *type = NULL;
char *metadata = NULL;
lrmd_t *lrmd_conn = lrmd_api_new();
rc = crm_parse_agent_spec(optarg, &standard, &provider, &type);
if (rc == pcmk_ok) {
rc = lrmd_conn->cmds->get_metadata(lrmd_conn, standard,
provider, type,
&metadata, 0);
} else {
fprintf(stderr,
"'%s' is not a valid agent specification\n",
optarg);
rc = -ENXIO;
}
if (metadata) {
printf("%s\n", metadata);
} else {
fprintf(stderr, "Metadata query for %s failed: %s\n",
optarg, pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
}
lrmd_api_delete(lrmd_conn);
crm_exit(exit_code);
} else if (safe_str_eq("list-agents", longname)) {
lrmd_list_t *list = NULL;
lrmd_list_t *iter = NULL;
char *provider = strchr (optarg, ':');
lrmd_t *lrmd_conn = lrmd_api_new();
if (provider) {
*provider++ = 0;
}
rc = lrmd_conn->cmds->list_agents(lrmd_conn, &list, optarg, provider);
if (rc > 0) {
for (iter = list; iter != NULL; iter = iter->next) {
printf("%s\n", iter->val);
}
lrmd_list_freeall(list);
} else {
fprintf(stderr, "No agents found for standard=%s, provider=%s\n",
optarg, (provider? provider : "*"));
exit_code = CRM_EX_NOSUCH;
}
lrmd_api_delete(lrmd_conn);
crm_exit(exit_code);
} else if (safe_str_eq("class", longname)) {
if (!(pcmk_get_ra_caps(optarg) & pcmk_ra_cap_params)) {
if (BE_QUIET == FALSE) {
fprintf(stdout, "Standard %s does not support parameters\n",
optarg);
}
crm_exit(exit_code);
} else {
v_class = optarg;
}
validate_cmdline = TRUE;
require_resource = FALSE;
} else if (safe_str_eq("agent", longname)) {
validate_cmdline = TRUE;
require_resource = FALSE;
v_agent = optarg;
} else if (safe_str_eq("provider", longname)) {
validate_cmdline = TRUE;
require_resource = FALSE;
v_provider = optarg;
} else if (safe_str_eq("option", longname)) {
crm_info("Scanning: --option %s", optarg);
rc = pcmk_scan_nvpair(optarg, &name, &value);
if (rc != 2) {
fprintf(stderr, "Invalid option: --option %s: %s", optarg, pcmk_strerror(rc));
argerr++;
} else {
crm_info("Got: '%s'='%s'", name, value);
}
g_hash_table_replace(validate_options, name, value);
} else {
crm_err("Unhandled long option: %s", longname);
}
break;
case 'V':
resource_verbose++;
crm_bump_log_level(argc, argv);
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
case 'x':
xml_file = strdup(optarg);
break;
case 'Q':
BE_QUIET = TRUE;
break;
case 'm':
attr_set_type = XML_TAG_META_SETS;
break;
case 'z':
attr_set_type = XML_TAG_UTILIZATION;
break;
case 'u':
move_lifetime = strdup(optarg);
break;
case 'f':
do_force = TRUE;
crm_log_args(argc, argv);
break;
case 'i':
prop_id = optarg;
break;
case 's':
prop_set = optarg;
break;
case 'r':
rsc_id = optarg;
break;
case 'v':
prop_value = optarg;
break;
case 't':
rsc_type = optarg;
break;
case 'T':
timeout_ms = crm_get_msec(optarg);
break;
case 'e':
clear_expired = TRUE;
require_resource = FALSE;
break;
case 'C':
case 'R':
crm_log_args(argc, argv);
require_resource = FALSE;
if (cib_file == NULL) {
require_crmd = TRUE;
}
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_anon;
break;
case 'n':
operation = optarg;
break;
case 'I':
interval_spec = optarg;
break;
case 'D':
require_dataset = FALSE;
crm_log_args(argc, argv);
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_any;
break;
case 'F':
require_crmd = TRUE;
crm_log_args(argc, argv);
rsc_cmd = flag;
break;
case 'U':
case 'B':
case 'M':
crm_log_args(argc, argv);
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_anon;
break;
case 'c':
case 'L':
case 'l':
case 'O':
case 'o':
require_resource = FALSE;
rsc_cmd = flag;
break;
case 'Y':
require_resource = FALSE;
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_anon;
break;
case 'q':
case 'w':
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_any;
break;
case 'W':
case 'A':
case 'a':
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_anon;
break;
case 'S':
require_dataset = FALSE;
crm_log_args(argc, argv);
prop_name = optarg;
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_any;
break;
case 'p':
case 'd':
crm_log_args(argc, argv);
prop_name = optarg;
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_any;
break;
case 'G':
case 'g':
prop_name = optarg;
rsc_cmd = flag;
find_flags = pe_find_renamed|pe_find_any;
break;
case 'H':
case 'N':
crm_trace("Option %c => %s", flag, optarg);
host_uname = optarg;
break;
default:
CMD_ERR("Argument code 0%o (%c) is not (?yet?) supported", flag, flag);
++argerr;
break;
}
}
// Catch the case where the user didn't specify a command
if (rsc_cmd == 'L') {
require_resource = FALSE;
}
// --expired without --clear/-U doesn't make sense
if (clear_expired == TRUE && rsc_cmd != 'U') {
CMD_ERR("--expired requires --clear or -U");
argerr++;
}
if (optind < argc
&& argv[optind] != NULL
&& rsc_cmd == 0
&& rsc_long_cmd) {
override_params = crm_str_table_new();
while (optind < argc && argv[optind] != NULL) {
char *name = calloc(1, strlen(argv[optind]));
char *value = calloc(1, strlen(argv[optind]));
int rc = sscanf(argv[optind], "%[^=]=%s", name, value);
if(rc == 2) {
g_hash_table_replace(override_params, name, value);
} else {
CMD_ERR("Error parsing '%s' as a name=value pair for --%s", argv[optind], rsc_long_cmd);
free(value);
free(name);
argerr++;
}
optind++;
}
} else if (optind < argc && argv[optind] != NULL && rsc_cmd == 0) {
CMD_ERR("non-option ARGV-elements: ");
while (optind < argc && argv[optind] != NULL) {
CMD_ERR("[%d of %d] %s ", optind, argc, argv[optind]);
optind++;
argerr++;
}
}
if (optind > argc) {
++argerr;
}
// Sanity check validating from command line parameters. If everything checks out,
// go ahead and run the validation. This way we don't need a CIB connection.
if (validate_cmdline == TRUE) {
// -r cannot be used with any of --class, --agent, or --provider
if (rsc_id != NULL) {
CMD_ERR("--resource cannot be used with --class, --agent, and --provider");
argerr++;
// If --class, --agent, or --provider are given, --validate must also be given.
} else if (!safe_str_eq(rsc_long_cmd, "validate")) {
CMD_ERR("--class, --agent, and --provider require --validate");
argerr++;
// Not all of --class, --agent, and --provider need to be given. Not all
// classes support the concept of a provider. Check that what we were given
// is valid.
} else if (crm_str_eq(v_class, "stonith", TRUE)) {
if (v_provider != NULL) {
CMD_ERR("stonith does not support providers");
argerr++;
} else if (stonith_agent_exists(v_agent, 0) == FALSE) {
CMD_ERR("%s is not a known stonith agent", v_agent ? v_agent : "");
argerr++;
}
} else if (resources_agent_exists(v_class, v_provider, v_agent) == FALSE) {
CMD_ERR("%s:%s:%s is not a known resource",
v_class ? v_class : "",
v_provider ? v_provider : "",
v_agent ? v_agent : "");
argerr++;
}
if (argerr == 0) {
rc = cli_resource_execute_from_params("test", v_class, v_provider, v_agent,
"validate-all", validate_options,
override_params, timeout_ms);
exit_code = crm_errno2exit(rc);
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
}
if (argerr) {
CMD_ERR("Invalid option(s) supplied, use --help for valid usage");
crm_exit(CRM_EX_USAGE);
}
our_pid = crm_getpid_s();
if (do_force) {
crm_debug("Forcing...");
cib_options |= cib_quorum_override;
}
if (require_resource && !rsc_id) {
CMD_ERR("Must supply a resource id with -r");
rc = -ENXIO;
goto bail;
}
if (find_flags && rsc_id) {
require_dataset = TRUE;
}
/* Establish a connection to the CIB manager */
cib_conn = cib_new();
rc = cib_conn->cmds->signon(cib_conn, crm_system_name, cib_command);
if (rc != pcmk_ok) {
CMD_ERR("Error connecting to the CIB manager: %s", pcmk_strerror(rc));
goto bail;
}
/* Populate working set from XML file if specified or CIB query otherwise */
if (require_dataset) {
if (xml_file != NULL) {
cib_xml_copy = filename2xml(xml_file);
} else {
rc = cib_conn->cmds->query(cib_conn, NULL, &cib_xml_copy, cib_scope_local | cib_sync_call);
}
if(rc != pcmk_ok) {
goto bail;
}
/* Populate the working set instance */
data_set = pe_new_working_set();
if (data_set == NULL) {
rc = -ENOMEM;
goto bail;
}
rc = update_working_set_xml(data_set, &cib_xml_copy);
if (rc != pcmk_ok) {
goto bail;
}
cluster_status(data_set);
}
// If command requires that resource exist if specified, find it
if (find_flags && rsc_id) {
rsc = pe_find_resource_with_flags(data_set->resources, rsc_id,
find_flags);
if (rsc == NULL) {
CMD_ERR("Resource '%s' not found", rsc_id);
rc = -ENXIO;
goto bail;
}
}
// Establish a connection to the controller if needed
if (require_crmd) {
xmlNode *xml = NULL;
mainloop_io_t *source =
mainloop_add_ipc_client(CRM_SYSTEM_CRMD, G_PRIORITY_DEFAULT, 0, NULL, &crm_callbacks);
crmd_channel = mainloop_get_ipc_client(source);
if (crmd_channel == NULL) {
CMD_ERR("Error connecting to the controller");
rc = -ENOTCONN;
goto bail;
}
xml = create_hello_message(our_pid, crm_system_name, "0", "1");
crm_ipc_send(crmd_channel, xml, 0, 0, NULL);
free_xml(xml);
}
/* Handle rsc_cmd appropriately */
if (rsc_cmd == 'L') {
rc = pcmk_ok;
cli_resource_print_list(data_set, FALSE);
} else if (rsc_cmd == 'l') {
int found = 0;
GListPtr lpc = NULL;
rc = pcmk_ok;
for (lpc = data_set->resources; lpc != NULL; lpc = lpc->next) {
rsc = (resource_t *) lpc->data;
found++;
cli_resource_print_raw(rsc);
}
if (found == 0) {
printf("NO resources configured\n");
rc = -ENXIO;
}
} else if (rsc_cmd == 0 && rsc_long_cmd && safe_str_eq(rsc_long_cmd, "restart")) {
/* We don't pass data_set because rsc needs to stay valid for the entire
* lifetime of cli_resource_restart(), but it will reset and update the
* working set multiple times, so it needs to use its own copy.
*/
rc = cli_resource_restart(rsc, host_uname, timeout_ms, cib_conn);
} else if (rsc_cmd == 0 && rsc_long_cmd && safe_str_eq(rsc_long_cmd, "wait")) {
rc = wait_till_stable(timeout_ms, cib_conn);
} else if (rsc_cmd == 0 && rsc_long_cmd) {
// validate, force-(stop|start|demote|promote|check)
rc = cli_resource_execute(rsc, rsc_id, rsc_long_cmd, override_params,
timeout_ms, cib_conn, data_set);
if (rc >= 0) {
is_ocf_rc = 1;
}
} else if (rsc_cmd == 'A' || rsc_cmd == 'a') {
GListPtr lpc = NULL;
xmlNode *cib_constraints = get_object_root(XML_CIB_TAG_CONSTRAINTS,
data_set->input);
unpack_constraints(cib_constraints, data_set);
// Constraints apply to group/clone, not member/instance
rsc = uber_parent(rsc);
for (lpc = data_set->resources; lpc != NULL; lpc = lpc->next) {
resource_t *r = (resource_t *) lpc->data;
clear_bit(r->flags, pe_rsc_allocating);
}
cli_resource_print_colocation(rsc, TRUE, rsc_cmd == 'A', 1);
fprintf(stdout, "* %s\n", rsc->id);
cli_resource_print_location(rsc, NULL);
for (lpc = data_set->resources; lpc != NULL; lpc = lpc->next) {
resource_t *r = (resource_t *) lpc->data;
clear_bit(r->flags, pe_rsc_allocating);
}
cli_resource_print_colocation(rsc, FALSE, rsc_cmd == 'A', 1);
} else if (rsc_cmd == 'c') {
GListPtr lpc = NULL;
rc = pcmk_ok;
for (lpc = data_set->resources; lpc != NULL; lpc = lpc->next) {
rsc = (resource_t *) lpc->data;
cli_resource_print_cts(rsc);
}
cli_resource_print_cts_constraints(data_set);
} else if (rsc_cmd == 'F') {
rc = cli_resource_fail(crmd_channel, host_uname, rsc_id, data_set);
if (rc == pcmk_ok) {
start_mainloop();
}
} else if (rsc_cmd == 'O') {
rc = cli_resource_print_operations(rsc_id, host_uname, TRUE, data_set);
} else if (rsc_cmd == 'o') {
rc = cli_resource_print_operations(rsc_id, host_uname, FALSE, data_set);
} else if (rsc_cmd == 'W') {
rc = cli_resource_search(rsc, rsc_id, data_set);
if (rc >= 0) {
rc = pcmk_ok;
}
} else if (rsc_cmd == 'q') {
rc = cli_resource_print(rsc, data_set, TRUE);
} else if (rsc_cmd == 'w') {
rc = cli_resource_print(rsc, data_set, FALSE);
} else if (rsc_cmd == 'Y') {
node_t *dest = NULL;
if (host_uname) {
dest = pe_find_node(data_set->nodes, host_uname);
if (dest == NULL) {
rc = -pcmk_err_node_unknown;
goto bail;
}
}
cli_resource_why(cib_conn, data_set->resources, rsc, dest);
rc = pcmk_ok;
} else if (rsc_cmd == 'U') {
GListPtr before = NULL;
GListPtr after = NULL;
GListPtr remaining = NULL;
GListPtr ele = NULL;
node_t *dest = NULL;
if (BE_QUIET == FALSE) {
before = build_constraint_list(data_set->input);
}
if (clear_expired == TRUE) {
rc = cli_resource_clear_all_expired(data_set->input, cib_conn, rsc_id, host_uname, scope_master);
} else if (host_uname) {
dest = pe_find_node(data_set->nodes, host_uname);
if (dest == NULL) {
rc = -pcmk_err_node_unknown;
if (BE_QUIET == FALSE) {
g_list_free(before);
}
goto bail;
}
rc = cli_resource_clear(rsc_id, dest->details->uname, NULL, cib_conn, TRUE);
} else {
rc = cli_resource_clear(rsc_id, NULL, data_set->nodes, cib_conn, TRUE);
}
if (BE_QUIET == FALSE) {
rc = cib_conn->cmds->query(cib_conn, NULL, &cib_xml_copy, cib_scope_local | cib_sync_call);
if (rc != pcmk_ok) {
CMD_ERR("Could not get modified CIB: %s\n", pcmk_strerror(rc));
g_list_free(before);
goto bail;
}
data_set->input = cib_xml_copy;
cluster_status(data_set);
after = build_constraint_list(data_set->input);
remaining = subtract_lists(before, after, (GCompareFunc) strcmp);
for (ele = remaining; ele != NULL; ele = ele->next) {
printf("Removing constraint: %s\n", (char *) ele->data);
}
g_list_free(before);
g_list_free(after);
g_list_free(remaining);
}
} else if (rsc_cmd == 'M' && host_uname) {
rc = cli_resource_move(rsc, rsc_id, host_uname, cib_conn, data_set);
} else if (rsc_cmd == 'B' && host_uname) {
node_t *dest = pe_find_node(data_set->nodes, host_uname);
if (dest == NULL) {
rc = -pcmk_err_node_unknown;
goto bail;
}
rc = cli_resource_ban(rsc_id, dest->details->uname, NULL, cib_conn);
} else if (rsc_cmd == 'B' || rsc_cmd == 'M') {
pe_node_t *current = NULL;
unsigned int nactive = 0;
current = pe__find_active_requires(rsc, &nactive);
if (nactive == 1) {
rc = cli_resource_ban(rsc_id, current->details->uname, NULL, cib_conn);
} else if (is_set(rsc->flags, pe_rsc_promotable)) {
int count = 0;
GListPtr iter = NULL;
current = NULL;
for(iter = rsc->children; iter; iter = iter->next) {
resource_t *child = (resource_t *)iter->data;
enum rsc_role_e child_role = child->fns->state(child, TRUE);
if(child_role == RSC_ROLE_MASTER) {
count++;
current = pe__current_node(child);
}
}
if(count == 1 && current) {
rc = cli_resource_ban(rsc_id, current->details->uname, NULL, cib_conn);
} else {
rc = -EINVAL;
exit_code = CRM_EX_USAGE;
CMD_ERR("Resource '%s' not moved: active in %d locations (promoted in %d).",
rsc_id, nactive, count);
CMD_ERR("To prevent '%s' from running on a specific location, "
"specify a node.", rsc_id);
CMD_ERR("To prevent '%s' from being promoted at a specific "
"location, specify a node and the master option.",
rsc_id);
}
} else {
rc = -EINVAL;
exit_code = CRM_EX_USAGE;
CMD_ERR("Resource '%s' not moved: active in %d locations.", rsc_id, nactive);
CMD_ERR("To prevent '%s' from running on a specific location, "
"specify a node.", rsc_id);
}
} else if (rsc_cmd == 'G') {
rc = cli_resource_print_property(rsc, prop_name, data_set);
} else if (rsc_cmd == 'S') {
xmlNode *msg_data = NULL;
if ((rsc_type == NULL) || !strlen(rsc_type)) {
CMD_ERR("Must specify -t with resource type");
rc = -ENXIO;
goto bail;
} else if ((prop_value == NULL) || !strlen(prop_value)) {
CMD_ERR("Must supply -v with new value");
rc = -EINVAL;
goto bail;
}
CRM_LOG_ASSERT(prop_name != NULL);
msg_data = create_xml_node(NULL, rsc_type);
crm_xml_add(msg_data, XML_ATTR_ID, rsc_id);
crm_xml_add(msg_data, prop_name, prop_value);
rc = cib_conn->cmds->modify(cib_conn, XML_CIB_TAG_RESOURCES, msg_data, cib_options);
free_xml(msg_data);
} else if (rsc_cmd == 'g') {
rc = cli_resource_print_attribute(rsc, prop_name, data_set);
} else if (rsc_cmd == 'p') {
if (prop_value == NULL || strlen(prop_value) == 0) {
CMD_ERR("You need to supply a value with the -v option");
rc = -EINVAL;
goto bail;
}
/* coverity[var_deref_model] False positive */
rc = cli_resource_update_attribute(rsc, rsc_id, prop_set, prop_id,
prop_name, prop_value, recursive,
cib_conn, data_set);
} else if (rsc_cmd == 'd') {
/* coverity[var_deref_model] False positive */
rc = cli_resource_delete_attribute(rsc, rsc_id, prop_set, prop_id,
prop_name, cib_conn, data_set);
} else if ((rsc_cmd == 'C') && rsc) {
if (do_force == FALSE) {
rsc = uber_parent(rsc);
}
crmd_replies_needed = 0;
crm_debug("Erasing failures of %s (%s requested) on %s",
rsc->id, rsc_id, (host_uname? host_uname: "all nodes"));
rc = cli_resource_delete(crmd_channel, host_uname, rsc,
operation, interval_spec, TRUE, data_set);
if ((rc == pcmk_ok) && !BE_QUIET) {
// Show any reasons why resource might stay stopped
cli_resource_check(cib_conn, rsc);
}
if (rc == pcmk_ok) {
start_mainloop();
}
} else if (rsc_cmd == 'C') {
rc = cli_cleanup_all(crmd_channel, host_uname, operation, interval_spec,
data_set);
if (rc == pcmk_ok) {
start_mainloop();
}
} else if ((rsc_cmd == 'R') && rsc) {
if (do_force == FALSE) {
rsc = uber_parent(rsc);
}
crmd_replies_needed = 0;
crm_debug("Re-checking the state of %s (%s requested) on %s",
rsc->id, rsc_id, (host_uname? host_uname: "all nodes"));
rc = cli_resource_delete(crmd_channel, host_uname, rsc,
NULL, 0, FALSE, data_set);
if ((rc == pcmk_ok) && !BE_QUIET) {
// Show any reasons why resource might stay stopped
cli_resource_check(cib_conn, rsc);
}
if (rc == pcmk_ok) {
start_mainloop();
}
} else if (rsc_cmd == 'R') {
const char *router_node = host_uname;
xmlNode *msg_data = NULL;
xmlNode *cmd = NULL;
int attr_options = attrd_opt_none;
if (host_uname) {
node_t *node = pe_find_node(data_set->nodes, host_uname);
if (node && is_remote_node(node)) {
node = pe__current_node(node->details->remote_rsc);
if (node == NULL) {
CMD_ERR("No cluster connection to Pacemaker Remote node %s detected",
host_uname);
rc = -ENXIO;
goto bail;
}
router_node = node->details->uname;
attr_options |= attrd_opt_remote;
}
}
if (crmd_channel == NULL) {
printf("Dry run: skipping clean-up of %s due to CIB_file\n",
host_uname? host_uname : "all nodes");
rc = pcmk_ok;
goto bail;
}
msg_data = create_xml_node(NULL, "crm-resource-reprobe-op");
crm_xml_add(msg_data, XML_LRM_ATTR_TARGET, host_uname);
if (safe_str_neq(router_node, host_uname)) {
crm_xml_add(msg_data, XML_LRM_ATTR_ROUTER_NODE, router_node);
}
cmd = create_request(CRM_OP_REPROBE, msg_data, router_node,
CRM_SYSTEM_CRMD, crm_system_name, our_pid);
free_xml(msg_data);
crm_debug("Re-checking the state of all resources on %s", host_uname?host_uname:"all nodes");
rc = attrd_clear_delegate(NULL, host_uname, NULL, NULL, NULL, NULL,
attr_options);
if (crm_ipc_send(crmd_channel, cmd, 0, 0, NULL) > 0) {
start_mainloop();
}
free_xml(cmd);
} else if (rsc_cmd == 'D') {
xmlNode *msg_data = NULL;
if (rsc_type == NULL) {
CMD_ERR("You need to specify a resource type with -t");
rc = -ENXIO;
goto bail;
}
msg_data = create_xml_node(NULL, rsc_type);
crm_xml_add(msg_data, XML_ATTR_ID, rsc_id);
rc = cib_conn->cmds->remove(cib_conn, XML_CIB_TAG_RESOURCES, msg_data, cib_options);
free_xml(msg_data);
} else {
CMD_ERR("Unknown command: %c", rsc_cmd);
}
bail:
free(our_pid);
pe_free_working_set(data_set);
if (cib_conn != NULL) {
cib_conn->cmds->signoff(cib_conn);
cib_delete(cib_conn);
}
if (is_ocf_rc) {
exit_code = rc;
} else if (rc != pcmk_ok) {
CMD_ERR("Error performing operation: %s", pcmk_strerror(rc));
if (rc == -pcmk_err_no_quorum) {
CMD_ERR("To ignore quorum, use the force option");
}
if (exit_code == CRM_EX_OK) {
exit_code = crm_errno2exit(rc);
}
}
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
diff --git a/tools/crm_resource_runtime.c b/tools/crm_resource_runtime.c
index 7c4fbc8d04..c26ef0d02b 100644
--- a/tools/crm_resource_runtime.c
+++ b/tools/crm_resource_runtime.c
@@ -1,2047 +1,2049 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
int resource_verbose = 0;
bool do_force = FALSE;
int crmd_replies_needed = 1; /* The welcome message */
const char *attr_set_type = XML_TAG_ATTR_SETS;
static int
do_find_resource(const char *rsc, resource_t * the_rsc, pe_working_set_t * data_set)
{
int found = 0;
GListPtr lpc = NULL;
for (lpc = the_rsc->running_on; lpc != NULL; lpc = lpc->next) {
node_t *node = (node_t *) lpc->data;
if (BE_QUIET) {
fprintf(stdout, "%s\n", node->details->uname);
} else {
const char *state = "";
if (!pe_rsc_is_clone(the_rsc) && the_rsc->fns->state(the_rsc, TRUE) == RSC_ROLE_MASTER) {
state = "Master";
}
fprintf(stdout, "resource %s is running on: %s %s\n", rsc, node->details->uname, state);
}
found++;
}
if (BE_QUIET == FALSE && found == 0) {
fprintf(stderr, "resource %s is NOT running\n", rsc);
}
return found;
}
int
cli_resource_search(resource_t *rsc, const char *requested_name,
pe_working_set_t *data_set)
{
int found = 0;
resource_t *parent = uber_parent(rsc);
if (pe_rsc_is_clone(rsc)) {
for (GListPtr iter = rsc->children; iter != NULL; iter = iter->next) {
found += do_find_resource(requested_name, iter->data, data_set);
}
/* The anonymous clone children's common ID is supplied */
} else if (pe_rsc_is_clone(parent)
&& is_not_set(rsc->flags, pe_rsc_unique)
&& rsc->clone_name
&& safe_str_eq(requested_name, rsc->clone_name)
&& safe_str_neq(requested_name, rsc->id)) {
for (GListPtr iter = parent->children; iter; iter = iter->next) {
found += do_find_resource(requested_name, iter->data, data_set);
}
} else {
found += do_find_resource(requested_name, rsc, data_set);
}
return found;
}
#define XPATH_MAX 1024
static int
find_resource_attr(cib_t * the_cib, const char *attr, const char *rsc, const char *set_type,
const char *set_name, const char *attr_id, const char *attr_name, char **value)
{
int offset = 0;
int rc = pcmk_ok;
xmlNode *xml_search = NULL;
char *xpath_string = NULL;
if(value) {
*value = NULL;
}
if(the_cib == NULL) {
return -ENOTCONN;
}
xpath_string = calloc(1, XPATH_MAX);
offset +=
snprintf(xpath_string + offset, XPATH_MAX - offset, "%s", get_object_path("resources"));
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "//*[@id=\"%s\"]", rsc);
if (set_type) {
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "/%s", set_type);
if (set_name) {
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "[@id=\"%s\"]", set_name);
}
}
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "//nvpair[");
if (attr_id) {
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "@id=\"%s\"", attr_id);
}
if (attr_name) {
if (attr_id) {
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, " and ");
}
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "@name=\"%s\"", attr_name);
}
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "]");
CRM_LOG_ASSERT(offset > 0);
rc = the_cib->cmds->query(the_cib, xpath_string, &xml_search,
cib_sync_call | cib_scope_local | cib_xpath);
if (rc != pcmk_ok) {
goto bail;
}
crm_log_xml_debug(xml_search, "Match");
if (xml_has_children(xml_search)) {
xmlNode *child = NULL;
rc = -EINVAL;
printf("Multiple attributes match name=%s\n", attr_name);
for (child = __xml_first_child(xml_search); child != NULL; child = __xml_next(child)) {
printf(" Value: %s \t(id=%s)\n",
crm_element_value(child, XML_NVPAIR_ATTR_VALUE), ID(child));
}
} else if(value) {
const char *tmp = crm_element_value(xml_search, attr);
if (tmp) {
*value = strdup(tmp);
}
}
bail:
free(xpath_string);
free_xml(xml_search);
return rc;
}
static resource_t *
find_matching_attr_resource(resource_t * rsc, const char * rsc_id, const char * attr_set, const char * attr_id,
const char * attr_name, cib_t * cib, const char * cmd)
{
int rc = pcmk_ok;
char *lookup_id = NULL;
char *local_attr_id = NULL;
if(do_force == TRUE) {
return rsc;
} else if(rsc->parent) {
switch(rsc->parent->variant) {
case pe_group:
if (BE_QUIET == FALSE) {
printf("Performing %s of '%s' for '%s' will not apply to its peers in '%s'\n", cmd, attr_name, rsc_id, rsc->parent->id);
}
break;
case pe_clone:
rc = find_resource_attr(cib, XML_ATTR_ID, rsc_id, attr_set_type, attr_set, attr_id, attr_name, &local_attr_id);
free(local_attr_id);
if(rc != pcmk_ok) {
rsc = rsc->parent;
if (BE_QUIET == FALSE) {
printf("Performing %s of '%s' on '%s', the parent of '%s'\n", cmd, attr_name, rsc->id, rsc_id);
}
}
break;
default:
break;
}
} else if (rsc->parent && BE_QUIET == FALSE) {
printf("Forcing %s of '%s' for '%s' instead of '%s'\n", cmd, attr_name, rsc_id, rsc->parent->id);
} else if(rsc->parent == NULL && rsc->children) {
resource_t *child = rsc->children->data;
if(child->variant == pe_native) {
lookup_id = clone_strip(child->id); /* Could be a cloned group! */
rc = find_resource_attr(cib, XML_ATTR_ID, lookup_id, attr_set_type, attr_set, attr_id, attr_name, &local_attr_id);
if(rc == pcmk_ok) {
rsc = child;
if (BE_QUIET == FALSE) {
printf("A value for '%s' already exists in child '%s', performing %s on that instead of '%s'\n", attr_name, lookup_id, cmd, rsc_id);
}
}
free(local_attr_id);
free(lookup_id);
}
}
return rsc;
}
int
cli_resource_update_attribute(resource_t *rsc, const char *requested_name,
const char *attr_set, const char *attr_id,
const char *attr_name, const char *attr_value,
bool recursive, cib_t *cib,
pe_working_set_t *data_set)
{
int rc = pcmk_ok;
static bool need_init = TRUE;
char *lookup_id = NULL;
char *local_attr_id = NULL;
char *local_attr_set = NULL;
xmlNode *xml_top = NULL;
xmlNode *xml_obj = NULL;
if(attr_id == NULL
&& do_force == FALSE
&& find_resource_attr(
cib, XML_ATTR_ID, uber_parent(rsc)->id, NULL, NULL, NULL, attr_name, NULL) == -EINVAL) {
printf("\n");
}
if (safe_str_eq(attr_set_type, XML_TAG_ATTR_SETS)) {
if (do_force == FALSE) {
rc = find_resource_attr(cib, XML_ATTR_ID, uber_parent(rsc)->id,
XML_TAG_META_SETS, attr_set, attr_id,
attr_name, &local_attr_id);
if (rc == pcmk_ok && BE_QUIET == FALSE) {
printf("WARNING: There is already a meta attribute for '%s' called '%s' (id=%s)\n",
uber_parent(rsc)->id, attr_name, local_attr_id);
printf(" Delete '%s' first or use the force option to override\n",
local_attr_id);
}
free(local_attr_id);
if (rc == pcmk_ok) {
return -ENOTUNIQ;
}
}
} else {
rsc = find_matching_attr_resource(rsc, requested_name, attr_set,
attr_id, attr_name, cib, "update");
}
lookup_id = clone_strip(rsc->id); /* Could be a cloned group! */
rc = find_resource_attr(cib, XML_ATTR_ID, lookup_id, attr_set_type, attr_set, attr_id, attr_name,
&local_attr_id);
if (rc == pcmk_ok) {
crm_debug("Found a match for name=%s: id=%s", attr_name, local_attr_id);
attr_id = local_attr_id;
} else if (rc != -ENXIO) {
free(lookup_id);
free(local_attr_id);
return rc;
} else {
const char *tag = crm_element_name(rsc->xml);
if (attr_set == NULL) {
local_attr_set = crm_concat(lookup_id, attr_set_type, '-');
attr_set = local_attr_set;
}
if (attr_id == NULL) {
local_attr_id = crm_concat(attr_set, attr_name, '-');
attr_id = local_attr_id;
}
xml_top = create_xml_node(NULL, tag);
crm_xml_add(xml_top, XML_ATTR_ID, lookup_id);
xml_obj = create_xml_node(xml_top, attr_set_type);
crm_xml_add(xml_obj, XML_ATTR_ID, attr_set);
}
xml_obj = crm_create_nvpair_xml(xml_obj, attr_id, attr_name, attr_value);
if (xml_top == NULL) {
xml_top = xml_obj;
}
crm_log_xml_debug(xml_top, "Update");
rc = cib->cmds->modify(cib, XML_CIB_TAG_RESOURCES, xml_top, cib_options);
if (rc == pcmk_ok && BE_QUIET == FALSE) {
printf("Set '%s' option: id=%s%s%s%s%s value=%s\n", lookup_id, local_attr_id,
attr_set ? " set=" : "", attr_set ? attr_set : "",
attr_name ? " name=" : "", attr_name ? attr_name : "", attr_value);
}
free_xml(xml_top);
free(lookup_id);
free(local_attr_id);
free(local_attr_set);
if(recursive && safe_str_eq(attr_set_type, XML_TAG_META_SETS)) {
GListPtr lpc = NULL;
if(need_init) {
xmlNode *cib_constraints = get_object_root(XML_CIB_TAG_CONSTRAINTS, data_set->input);
need_init = FALSE;
unpack_constraints(cib_constraints, data_set);
for (lpc = data_set->resources; lpc != NULL; lpc = lpc->next) {
resource_t *r = (resource_t *) lpc->data;
clear_bit(r->flags, pe_rsc_allocating);
}
}
crm_debug("Looking for dependencies %p", rsc->rsc_cons_lhs);
set_bit(rsc->flags, pe_rsc_allocating);
for (lpc = rsc->rsc_cons_lhs; lpc != NULL; lpc = lpc->next) {
rsc_colocation_t *cons = (rsc_colocation_t *) lpc->data;
resource_t *peer = cons->rsc_lh;
crm_debug("Checking %s %d", cons->id, cons->score);
if (cons->score > 0 && is_not_set(peer->flags, pe_rsc_allocating)) {
/* Don't get into colocation loops */
crm_debug("Setting %s=%s for dependent resource %s", attr_name, attr_value, peer->id);
cli_resource_update_attribute(peer, peer->id, NULL, NULL,
attr_name, attr_value, recursive,
cib, data_set);
}
}
}
return rc;
}
int
cli_resource_delete_attribute(resource_t *rsc, const char *requested_name,
const char *attr_set, const char *attr_id,
const char *attr_name, cib_t *cib,
pe_working_set_t *data_set)
{
xmlNode *xml_obj = NULL;
int rc = pcmk_ok;
char *lookup_id = NULL;
char *local_attr_id = NULL;
if(attr_id == NULL
&& do_force == FALSE
&& find_resource_attr(
cib, XML_ATTR_ID, uber_parent(rsc)->id, NULL, NULL, NULL, attr_name, NULL) == -EINVAL) {
printf("\n");
}
if(safe_str_eq(attr_set_type, XML_TAG_META_SETS)) {
rsc = find_matching_attr_resource(rsc, requested_name, attr_set,
attr_id, attr_name, cib, "delete");
}
lookup_id = clone_strip(rsc->id);
rc = find_resource_attr(cib, XML_ATTR_ID, lookup_id, attr_set_type, attr_set, attr_id, attr_name,
&local_attr_id);
if (rc == -ENXIO) {
free(lookup_id);
return pcmk_ok;
} else if (rc != pcmk_ok) {
free(lookup_id);
return rc;
}
if (attr_id == NULL) {
attr_id = local_attr_id;
}
xml_obj = crm_create_nvpair_xml(NULL, attr_id, attr_name, NULL);
crm_log_xml_debug(xml_obj, "Delete");
CRM_ASSERT(cib);
rc = cib->cmds->remove(cib, XML_CIB_TAG_RESOURCES, xml_obj, cib_options);
if (rc == pcmk_ok && BE_QUIET == FALSE) {
printf("Deleted '%s' option: id=%s%s%s%s%s\n", lookup_id, local_attr_id,
attr_set ? " set=" : "", attr_set ? attr_set : "",
attr_name ? " name=" : "", attr_name ? attr_name : "");
}
free(lookup_id);
free_xml(xml_obj);
free(local_attr_id);
return rc;
}
static int
send_lrm_rsc_op(crm_ipc_t * crmd_channel, const char *op,
const char *host_uname, const char *rsc_id,
bool only_failed, pe_working_set_t * data_set)
{
char *our_pid = NULL;
char *key = NULL;
int rc = -ECOMM;
xmlNode *cmd = NULL;
xmlNode *xml_rsc = NULL;
const char *value = NULL;
const char *router_node = host_uname;
xmlNode *params = NULL;
xmlNode *msg_data = NULL;
resource_t *rsc = pe_find_resource(data_set->resources, rsc_id);
if (rsc == NULL) {
CMD_ERR("Resource %s not found", rsc_id);
return -ENXIO;
} else if (rsc->variant != pe_native) {
CMD_ERR("We can only process primitive resources, not %s", rsc_id);
return -EINVAL;
} else if (host_uname == NULL) {
CMD_ERR("Please specify a node name");
return -EINVAL;
} else {
node_t *node = pe_find_node(data_set->nodes, host_uname);
if (node && is_remote_node(node)) {
node = pe__current_node(node->details->remote_rsc);
if (node == NULL) {
CMD_ERR("No cluster connection to Pacemaker Remote node %s detected",
host_uname);
return -ENXIO;
}
router_node = node->details->uname;
}
}
key = generate_transition_key(0, getpid(), 0, "xxxxxxxx-xrsc-opxx-xcrm-resourcexxxx");
msg_data = create_xml_node(NULL, XML_GRAPH_TAG_RSC_OP);
crm_xml_add(msg_data, XML_ATTR_TRANSITION_KEY, key);
free(key);
crm_xml_add(msg_data, XML_LRM_ATTR_TARGET, host_uname);
if (safe_str_neq(router_node, host_uname)) {
crm_xml_add(msg_data, XML_LRM_ATTR_ROUTER_NODE, router_node);
}
xml_rsc = create_xml_node(msg_data, XML_CIB_TAG_RESOURCE);
if (rsc->clone_name) {
crm_xml_add(xml_rsc, XML_ATTR_ID, rsc->clone_name);
crm_xml_add(xml_rsc, XML_ATTR_ID_LONG, rsc->id);
} else {
crm_xml_add(xml_rsc, XML_ATTR_ID, rsc->id);
}
value = crm_copy_xml_element(rsc->xml, xml_rsc, XML_ATTR_TYPE);
if (value == NULL) {
CMD_ERR("%s has no type! Aborting...", rsc_id);
return -ENXIO;
}
value = crm_copy_xml_element(rsc->xml, xml_rsc, XML_AGENT_ATTR_CLASS);
if (value == NULL) {
CMD_ERR("%s has no class! Aborting...", rsc_id);
return -ENXIO;
}
crm_copy_xml_element(rsc->xml, xml_rsc, XML_AGENT_ATTR_PROVIDER);
params = create_xml_node(msg_data, XML_TAG_ATTRS);
crm_xml_add(params, XML_ATTR_CRM_VERSION, CRM_FEATURE_SET);
key = crm_meta_name(XML_LRM_ATTR_INTERVAL_MS);
crm_xml_add(params, key, "60000"); /* 1 minute */
free(key);
our_pid = crm_getpid_s();
cmd = create_request(op, msg_data, router_node, CRM_SYSTEM_CRMD, crm_system_name, our_pid);
/* crm_log_xml_warn(cmd, "send_lrm_rsc_op"); */
free_xml(msg_data);
if (crm_ipc_send(crmd_channel, cmd, 0, 0, NULL) > 0) {
rc = 0;
} else {
crm_debug("Could not send %s op to the controller", op);
rc = -ENOTCONN;
}
free_xml(cmd);
return rc;
}
/*!
* \internal
* \brief Get resource name as used in failure-related node attributes
*
* \param[in] rsc Resource to check
*
* \return Newly allocated string containing resource's fail name
* \note The caller is responsible for freeing the result.
*/
static inline char *
rsc_fail_name(resource_t *rsc)
{
const char *name = (rsc->clone_name? rsc->clone_name : rsc->id);
return is_set(rsc->flags, pe_rsc_unique)? strdup(name) : clone_strip(name);
}
static int
clear_rsc_history(crm_ipc_t *crmd_channel, const char *host_uname,
const char *rsc_id, pe_working_set_t *data_set)
{
int rc = pcmk_ok;
/* Erase the resource's entire LRM history in the CIB, even if we're only
* clearing a single operation's fail count. If we erased only entries for a
* single operation, we might wind up with a wrong idea of the current
* resource state, and we might not re-probe the resource.
*/
rc = send_lrm_rsc_op(crmd_channel, CRM_OP_LRM_DELETE, host_uname, rsc_id,
TRUE, data_set);
if (rc != pcmk_ok) {
return rc;
}
crmd_replies_needed++;
crm_trace("Processing %d mainloop inputs", crmd_replies_needed);
while (g_main_context_iteration(NULL, FALSE)) {
crm_trace("Processed mainloop input, %d still remaining",
crmd_replies_needed);
}
if (crmd_replies_needed < 0) {
crmd_replies_needed = 0;
}
return rc;
}
static int
clear_rsc_failures(crm_ipc_t *crmd_channel, const char *node_name,
const char *rsc_id, const char *operation,
const char *interval_spec, pe_working_set_t *data_set)
{
int rc = pcmk_ok;
const char *failed_value = NULL;
const char *failed_id = NULL;
const char *interval_ms_s = NULL;
GHashTable *rscs = NULL;
GHashTableIter iter;
/* Create a hash table to use as a set of resources to clean. This lets us
* clean each resource only once (per node) regardless of how many failed
* operations it has.
*/
rscs = g_hash_table_new_full(crm_str_hash, g_str_equal, NULL, NULL);
// Normalize interval to milliseconds for comparison to history entry
if (operation) {
interval_ms_s = crm_strdup_printf("%u",
crm_parse_interval_spec(interval_spec));
}
for (xmlNode *xml_op = __xml_first_child(data_set->failed); xml_op != NULL;
xml_op = __xml_next(xml_op)) {
failed_id = crm_element_value(xml_op, XML_LRM_ATTR_RSCID);
if (failed_id == NULL) {
// Malformed history entry, should never happen
continue;
}
// No resource specified means all resources match
if (rsc_id) {
resource_t *fail_rsc = pe_find_resource_with_flags(data_set->resources,
failed_id,
pe_find_renamed|pe_find_anon);
if (!fail_rsc || safe_str_neq(rsc_id, fail_rsc->id)) {
continue;
}
}
// Host name should always have been provided by this point
failed_value = crm_element_value(xml_op, XML_ATTR_UNAME);
if (safe_str_neq(node_name, failed_value)) {
continue;
}
// No operation specified means all operations match
if (operation) {
failed_value = crm_element_value(xml_op, XML_LRM_ATTR_TASK);
if (safe_str_neq(operation, failed_value)) {
continue;
}
// Interval (if operation was specified) defaults to 0 (not all)
failed_value = crm_element_value(xml_op, XML_LRM_ATTR_INTERVAL_MS);
if (safe_str_neq(interval_ms_s, failed_value)) {
continue;
}
}
/* not available until glib 2.32
g_hash_table_add(rscs, (gpointer) failed_id);
*/
g_hash_table_insert(rscs, (gpointer) failed_id, (gpointer) failed_id);
}
g_hash_table_iter_init(&iter, rscs);
while (g_hash_table_iter_next(&iter, (gpointer *) &failed_id, NULL)) {
crm_debug("Erasing failures of %s on %s", failed_id, node_name);
rc = clear_rsc_history(crmd_channel, node_name, failed_id, data_set);
if (rc != pcmk_ok) {
return rc;
}
}
g_hash_table_destroy(rscs);
return rc;
}
static int
clear_rsc_fail_attrs(resource_t *rsc, const char *operation,
const char *interval_spec, node_t *node)
{
int rc = pcmk_ok;
int attr_options = attrd_opt_none;
char *rsc_name = rsc_fail_name(rsc);
if (is_remote_node(node)) {
attr_options |= attrd_opt_remote;
}
rc = attrd_clear_delegate(NULL, node->details->uname, rsc_name, operation,
interval_spec, NULL, attr_options);
free(rsc_name);
return rc;
}
int
cli_resource_delete(crm_ipc_t *crmd_channel, const char *host_uname,
resource_t *rsc, const char *operation,
const char *interval_spec, bool just_failures,
pe_working_set_t *data_set)
{
int rc = pcmk_ok;
node_t *node = NULL;
if (rsc == NULL) {
return -ENXIO;
} else if (rsc->children) {
GListPtr lpc = NULL;
for (lpc = rsc->children; lpc != NULL; lpc = lpc->next) {
resource_t *child = (resource_t *) lpc->data;
rc = cli_resource_delete(crmd_channel, host_uname, child, operation,
interval_spec, just_failures, data_set);
if (rc != pcmk_ok) {
return rc;
}
}
return pcmk_ok;
} else if (host_uname == NULL) {
GListPtr lpc = NULL;
GListPtr nodes = g_hash_table_get_values(rsc->known_on);
if(nodes == NULL && do_force) {
nodes = node_list_dup(data_set->nodes, FALSE, FALSE);
} else if(nodes == NULL && rsc->exclusive_discover) {
GHashTableIter iter;
pe_node_t *node = NULL;
g_hash_table_iter_init(&iter, rsc->allowed_nodes);
while (g_hash_table_iter_next(&iter, NULL, (void**)&node)) {
if(node->weight >= 0) {
nodes = g_list_prepend(nodes, node);
}
}
} else if(nodes == NULL) {
nodes = g_hash_table_get_values(rsc->allowed_nodes);
}
for (lpc = nodes; lpc != NULL; lpc = lpc->next) {
node = (node_t *) lpc->data;
if (node->details->online) {
rc = cli_resource_delete(crmd_channel, node->details->uname,
rsc, operation, interval_spec,
just_failures, data_set);
}
if (rc != pcmk_ok) {
g_list_free(nodes);
return rc;
}
}
g_list_free(nodes);
return pcmk_ok;
}
node = pe_find_node(data_set->nodes, host_uname);
if (node == NULL) {
printf("Unable to clean up %s because node %s not found\n",
rsc->id, host_uname);
return -ENODEV;
}
if (!node->details->rsc_discovery_enabled) {
printf("Unable to clean up %s because resource discovery disabled on %s\n",
rsc->id, host_uname);
return -EOPNOTSUPP;
}
if (crmd_channel == NULL) {
printf("Dry run: skipping clean-up of %s on %s due to CIB_file\n",
rsc->id, host_uname);
return pcmk_ok;
}
rc = clear_rsc_fail_attrs(rsc, operation, interval_spec, node);
if (rc != pcmk_ok) {
printf("Unable to clean up %s failures on %s: %s\n",
rsc->id, host_uname, pcmk_strerror(rc));
return rc;
}
if (just_failures) {
rc = clear_rsc_failures(crmd_channel, host_uname, rsc->id, operation,
interval_spec, data_set);
} else {
rc = clear_rsc_history(crmd_channel, host_uname, rsc->id, data_set);
}
if (rc != pcmk_ok) {
printf("Cleaned %s failures on %s, but unable to clean history: %s\n",
rsc->id, host_uname, pcmk_strerror(rc));
} else {
printf("Cleaned up %s on %s\n", rsc->id, host_uname);
}
return rc;
}
int
cli_cleanup_all(crm_ipc_t *crmd_channel, const char *node_name,
const char *operation, const char *interval_spec,
pe_working_set_t *data_set)
{
int rc = pcmk_ok;
int attr_options = attrd_opt_none;
const char *display_name = node_name? node_name : "all nodes";
if (crmd_channel == NULL) {
printf("Dry run: skipping clean-up of %s due to CIB_file\n",
display_name);
return pcmk_ok;
}
crmd_replies_needed = 0;
if (node_name) {
node_t *node = pe_find_node(data_set->nodes, node_name);
if (node == NULL) {
CMD_ERR("Unknown node: %s", node_name);
return -ENXIO;
}
if (is_remote_node(node)) {
attr_options |= attrd_opt_remote;
}
}
rc = attrd_clear_delegate(NULL, node_name, NULL, operation, interval_spec,
NULL, attr_options);
if (rc != pcmk_ok) {
printf("Unable to clean up all failures on %s: %s\n",
display_name, pcmk_strerror(rc));
return rc;
}
if (node_name) {
rc = clear_rsc_failures(crmd_channel, node_name, NULL,
operation, interval_spec, data_set);
if (rc != pcmk_ok) {
printf("Cleaned all resource failures on %s, but unable to clean history: %s\n",
node_name, pcmk_strerror(rc));
return rc;
}
} else {
for (GList *iter = data_set->nodes; iter; iter = iter->next) {
pe_node_t *node = (pe_node_t *) iter->data;
rc = clear_rsc_failures(crmd_channel, node->details->uname, NULL,
operation, interval_spec, data_set);
if (rc != pcmk_ok) {
printf("Cleaned all resource failures on all nodes, but unable to clean history: %s\n",
pcmk_strerror(rc));
return rc;
}
}
}
printf("Cleaned up all resources on %s\n", display_name);
return pcmk_ok;
}
void
cli_resource_check(cib_t * cib_conn, resource_t *rsc)
{
int need_nl = 0;
char *role_s = NULL;
char *managed = NULL;
resource_t *parent = uber_parent(rsc);
find_resource_attr(cib_conn, XML_NVPAIR_ATTR_VALUE, parent->id,
NULL, NULL, NULL, XML_RSC_ATTR_MANAGED, &managed);
find_resource_attr(cib_conn, XML_NVPAIR_ATTR_VALUE, parent->id,
NULL, NULL, NULL, XML_RSC_ATTR_TARGET_ROLE, &role_s);
if(role_s) {
enum rsc_role_e role = text2role(role_s);
free(role_s);
if(role == RSC_ROLE_UNKNOWN) {
// Treated as if unset
} else if(role == RSC_ROLE_STOPPED) {
printf("\n * The configuration specifies that '%s' should remain stopped\n", parent->id);
need_nl++;
} else if (is_set(parent->flags, pe_rsc_promotable)
&& (role == RSC_ROLE_SLAVE)) {
printf("\n * The configuration specifies that '%s' should not be promoted\n", parent->id);
need_nl++;
}
}
if(managed && crm_is_true(managed) == FALSE) {
printf("%s * The configuration prevents the cluster from stopping or starting '%s' (unmanaged)\n", need_nl == 0?"\n":"", parent->id);
need_nl++;
}
free(managed);
if(need_nl) {
printf("\n");
}
}
int
cli_resource_fail(crm_ipc_t * crmd_channel, const char *host_uname,
const char *rsc_id, pe_working_set_t * data_set)
{
crm_warn("Failing: %s", rsc_id);
return send_lrm_rsc_op(crmd_channel, CRM_OP_LRM_FAIL, host_uname, rsc_id, FALSE, data_set);
}
static GHashTable *
generate_resource_params(resource_t * rsc, pe_working_set_t * data_set)
{
GHashTable *params = NULL;
GHashTable *meta = NULL;
GHashTable *combined = NULL;
GHashTableIter iter;
if (!rsc) {
crm_err("Resource does not exist in config");
return NULL;
}
params = crm_str_table_new();
meta = crm_str_table_new();
combined = crm_str_table_new();
get_rsc_attributes(params, rsc, NULL /* TODO: Pass in local node */ , data_set);
get_meta_attributes(meta, rsc, NULL /* TODO: Pass in local node */ , data_set);
if (params) {
char *key = NULL;
char *value = NULL;
g_hash_table_iter_init(&iter, params);
while (g_hash_table_iter_next(&iter, (gpointer *) & key, (gpointer *) & value)) {
g_hash_table_insert(combined, strdup(key), strdup(value));
}
g_hash_table_destroy(params);
}
if (meta) {
char *key = NULL;
char *value = NULL;
g_hash_table_iter_init(&iter, meta);
while (g_hash_table_iter_next(&iter, (gpointer *) & key, (gpointer *) & value)) {
char *crm_name = crm_meta_name(key);
g_hash_table_insert(combined, crm_name, strdup(value));
}
g_hash_table_destroy(meta);
}
return combined;
}
static bool resource_is_running_on(resource_t *rsc, const char *host)
{
bool found = TRUE;
GListPtr hIter = NULL;
GListPtr hosts = NULL;
if(rsc == NULL) {
return FALSE;
}
rsc->fns->location(rsc, &hosts, TRUE);
for (hIter = hosts; host != NULL && hIter != NULL; hIter = hIter->next) {
pe_node_t *node = (pe_node_t *) hIter->data;
if(strcmp(host, node->details->uname) == 0) {
crm_trace("Resource %s is running on %s\n", rsc->id, host);
goto done;
} else if(strcmp(host, node->details->id) == 0) {
crm_trace("Resource %s is running on %s\n", rsc->id, host);
goto done;
}
}
if(host != NULL) {
crm_trace("Resource %s is not running on: %s\n", rsc->id, host);
found = FALSE;
} else if(host == NULL && hosts == NULL) {
crm_trace("Resource %s is not running\n", rsc->id);
found = FALSE;
}
done:
g_list_free(hosts);
return found;
}
/*!
* \internal
* \brief Create a list of all resources active on host from a given list
*
* \param[in] host Name of host to check whether resources are active
* \param[in] rsc_list List of resources to check
*
* \return New list of resources from list that are active on host
*/
static GList *
get_active_resources(const char *host, GList *rsc_list)
{
GList *rIter = NULL;
GList *active = NULL;
for (rIter = rsc_list; rIter != NULL; rIter = rIter->next) {
resource_t *rsc = (resource_t *) rIter->data;
/* Expand groups to their members, because if we're restarting a member
* other than the first, we can't otherwise tell which resources are
* stopping and starting.
*/
if (rsc->variant == pe_group) {
active = g_list_concat(active,
get_active_resources(host, rsc->children));
} else if (resource_is_running_on(rsc, host)) {
active = g_list_append(active, strdup(rsc->id));
}
}
return active;
}
GList*
subtract_lists(GList *from, GList *items, GCompareFunc cmp)
{
GList *item = NULL;
GList *result = g_list_copy(from);
for (item = items; item != NULL; item = item->next) {
GList *candidate = NULL;
for (candidate = from; candidate != NULL; candidate = candidate->next) {
crm_info("Comparing %s with %s", (const char *) candidate->data,
(const char *) item->data);
if(cmp(candidate->data, item->data) == 0) {
result = g_list_remove(result, candidate->data);
break;
}
}
}
return result;
}
static void dump_list(GList *items, const char *tag)
{
int lpc = 0;
GList *item = NULL;
for (item = items; item != NULL; item = item->next) {
crm_trace("%s[%d]: %s", tag, lpc, (char*)item->data);
lpc++;
}
}
static void display_list(GList *items, const char *tag)
{
GList *item = NULL;
for (item = items; item != NULL; item = item->next) {
fprintf(stdout, "%s%s\n", tag, (const char *)item->data);
}
}
/*!
* \internal
* \brief Upgrade XML to latest schema version and use it as working set input
*
* This also updates the working set timestamp to the current time.
*
* \param[in] data_set Working set instance to update
* \param[in] xml XML to use as input
*
* \return pcmk_ok on success, -ENOKEY if unable to upgrade XML
* \note On success, caller is responsible for freeing memory allocated for
* data_set->now.
* \todo This follows the example of other callers of cli_config_update()
* and returns -ENOKEY ("Required key not available") if that fails,
* but perhaps -pcmk_err_schema_validation would be better in that case.
*/
int
update_working_set_xml(pe_working_set_t *data_set, xmlNode **xml)
{
if (cli_config_update(xml, NULL, FALSE) == FALSE) {
return -ENOKEY;
}
data_set->input = *xml;
data_set->now = crm_time_new(NULL);
return pcmk_ok;
}
/*!
* \internal
* \brief Update a working set's XML input based on a CIB query
*
* \param[in] data_set Data set instance to initialize
* \param[in] cib Connection to the CIB manager
*
* \return pcmk_ok on success, -errno on failure
* \note On success, caller is responsible for freeing memory allocated for
* data_set->input and data_set->now.
*/
static int
update_working_set_from_cib(pe_working_set_t * data_set, cib_t *cib)
{
xmlNode *cib_xml_copy = NULL;
int rc;
rc = cib->cmds->query(cib, NULL, &cib_xml_copy, cib_scope_local | cib_sync_call);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not obtain the current CIB: %s (%d)\n", pcmk_strerror(rc), rc);
return rc;
}
rc = update_working_set_xml(data_set, &cib_xml_copy);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not upgrade the current CIB XML\n");
free_xml(cib_xml_copy);
return rc;
}
return pcmk_ok;
}
static int
update_dataset(cib_t *cib, pe_working_set_t * data_set, bool simulate)
{
char *pid = NULL;
char *shadow_file = NULL;
cib_t *shadow_cib = NULL;
int rc;
pe_reset_working_set(data_set);
rc = update_working_set_from_cib(data_set, cib);
if (rc != pcmk_ok) {
return rc;
}
if(simulate) {
pid = crm_getpid_s();
shadow_cib = cib_shadow_new(pid);
shadow_file = get_shadow_file(pid);
if (shadow_cib == NULL) {
fprintf(stderr, "Could not create shadow cib: '%s'\n", pid);
rc = -ENXIO;
goto cleanup;
}
rc = write_xml_file(data_set->input, shadow_file, FALSE);
if (rc < 0) {
fprintf(stderr, "Could not populate shadow cib: %s (%d)\n", pcmk_strerror(rc), rc);
goto cleanup;
}
rc = shadow_cib->cmds->signon(shadow_cib, crm_system_name, cib_command);
if(rc != pcmk_ok) {
fprintf(stderr, "Could not connect to shadow cib: %s (%d)\n", pcmk_strerror(rc), rc);
goto cleanup;
}
do_calculations(data_set, data_set->input, NULL);
run_simulation(data_set, shadow_cib, NULL, TRUE);
rc = update_dataset(shadow_cib, data_set, FALSE);
} else {
cluster_status(data_set);
}
cleanup:
/* Do not free data_set->input here, we need rsc->xml to be valid later on */
cib_delete(shadow_cib);
free(pid);
if(shadow_file) {
unlink(shadow_file);
free(shadow_file);
}
return rc;
}
static int
max_delay_for_resource(pe_working_set_t * data_set, resource_t *rsc)
{
int delay = 0;
int max_delay = 0;
if(rsc && rsc->children) {
GList *iter = NULL;
for(iter = rsc->children; iter; iter = iter->next) {
resource_t *child = (resource_t *)iter->data;
delay = max_delay_for_resource(data_set, child);
if(delay > max_delay) {
double seconds = delay / 1000.0;
crm_trace("Calculated new delay of %.1fs due to %s", seconds, child->id);
max_delay = delay;
}
}
} else if(rsc) {
char *key = crm_strdup_printf("%s_%s_0", rsc->id, RSC_STOP);
action_t *stop = custom_action(rsc, key, RSC_STOP, NULL, TRUE, FALSE, data_set);
const char *value = g_hash_table_lookup(stop->meta, XML_ATTR_TIMEOUT);
max_delay = crm_int_helper(value, NULL);
pe_free_action(stop);
}
return max_delay;
}
static int
max_delay_in(pe_working_set_t * data_set, GList *resources)
{
int max_delay = 0;
GList *item = NULL;
for (item = resources; item != NULL; item = item->next) {
int delay = 0;
resource_t *rsc = pe_find_resource(data_set->resources, (const char *)item->data);
delay = max_delay_for_resource(data_set, rsc);
if(delay > max_delay) {
double seconds = delay / 1000.0;
crm_trace("Calculated new delay of %.1fs due to %s", seconds, rsc->id);
max_delay = delay;
}
}
return 5 + (max_delay / 1000);
}
#define waiting_for_starts(d, r, h) ((g_list_length(d) > 0) || \
(resource_is_running_on((r), (h)) == FALSE))
/*!
* \internal
* \brief Restart a resource (on a particular host if requested).
*
* \param[in] rsc The resource to restart
* \param[in] host The host to restart the resource on (or NULL for all)
* \param[in] timeout_ms Consider failed if actions do not complete in this time
* (specified in milliseconds, but a two-second
* granularity is actually used; if 0, a timeout will be
* calculated based on the resource timeout)
* \param[in] cib Connection to the CIB manager
*
* \return pcmk_ok on success, -errno on failure (exits on certain failures)
*/
int
cli_resource_restart(pe_resource_t *rsc, const char *host, int timeout_ms,
cib_t *cib)
{
int rc = 0;
int lpc = 0;
int before = 0;
int step_timeout_s = 0;
int sleep_interval = 2;
int timeout = timeout_ms / 1000;
bool stop_via_ban = FALSE;
char *rsc_id = NULL;
char *orig_target_role = NULL;
GList *list_delta = NULL;
GList *target_active = NULL;
GList *current_active = NULL;
GList *restart_target_active = NULL;
pe_working_set_t *data_set = NULL;
if(resource_is_running_on(rsc, host) == FALSE) {
const char *id = rsc->clone_name?rsc->clone_name:rsc->id;
if(host) {
printf("%s is not running on %s and so cannot be restarted\n", id, host);
} else {
printf("%s is not running anywhere and so cannot be restarted\n", id);
}
return -ENXIO;
}
/* We might set the target-role meta-attribute */
attr_set_type = XML_TAG_META_SETS;
rsc_id = strdup(rsc->id);
if ((pe_rsc_is_clone(rsc) || pe_bundle_replicas(rsc)) && host) {
stop_via_ban = TRUE;
}
/*
grab full cib
determine originally active resources
disable or ban
poll cib and watch for affected resources to get stopped
without --timeout, calculate the stop timeout for each step and wait for that
if we hit --timeout or the service timeout, re-enable or un-ban, report failure and indicate which resources we couldn't take down
if everything stopped, re-enable or un-ban
poll cib and watch for affected resources to get started
without --timeout, calculate the start timeout for each step and wait for that
if we hit --timeout or the service timeout, report (different) failure and indicate which resources we couldn't bring back up
report success
Optimizations:
- use constraints to determine ordered list of affected resources
- Allow a --no-deps option (aka. --force-restart)
*/
data_set = pe_new_working_set();
if (data_set == NULL) {
crm_perror(LOG_ERR, "Could not allocate working set");
rc = -ENOMEM;
goto done;
}
rc = update_dataset(cib, data_set, FALSE);
if(rc != pcmk_ok) {
fprintf(stdout, "Could not get new resource list: %s (%d)\n", pcmk_strerror(rc), rc);
goto done;
}
restart_target_active = get_active_resources(host, data_set->resources);
current_active = get_active_resources(host, data_set->resources);
dump_list(current_active, "Origin");
if (stop_via_ban) {
/* Stop the clone or bundle instance by banning it from the host */
BE_QUIET = TRUE;
rc = cli_resource_ban(rsc_id, host, NULL, cib);
} else {
/* Stop the resource by setting target-role to Stopped.
* Remember any existing target-role so we can restore it later
* (though it only makes any difference if it's Slave).
*/
char *lookup_id = clone_strip(rsc->id);
find_resource_attr(cib, XML_NVPAIR_ATTR_VALUE, lookup_id, NULL, NULL,
NULL, XML_RSC_ATTR_TARGET_ROLE, &orig_target_role);
free(lookup_id);
rc = cli_resource_update_attribute(rsc, rsc_id, NULL, NULL,
XML_RSC_ATTR_TARGET_ROLE,
RSC_STOPPED, FALSE, cib, data_set);
}
if(rc != pcmk_ok) {
fprintf(stderr, "Could not set target-role for %s: %s (%d)\n", rsc_id, pcmk_strerror(rc), rc);
if (current_active) {
g_list_free_full(current_active, free);
}
if (restart_target_active) {
g_list_free_full(restart_target_active, free);
}
goto done;
}
rc = update_dataset(cib, data_set, TRUE);
if(rc != pcmk_ok) {
fprintf(stderr, "Could not determine which resources would be stopped\n");
goto failure;
}
target_active = get_active_resources(host, data_set->resources);
dump_list(target_active, "Target");
list_delta = subtract_lists(current_active, target_active, (GCompareFunc) strcmp);
fprintf(stdout, "Waiting for %d resources to stop:\n", g_list_length(list_delta));
display_list(list_delta, " * ");
step_timeout_s = timeout / sleep_interval;
while(g_list_length(list_delta) > 0) {
before = g_list_length(list_delta);
if(timeout_ms == 0) {
step_timeout_s = max_delay_in(data_set, list_delta) / sleep_interval;
}
/* We probably don't need the entire step timeout */
for(lpc = 0; lpc < step_timeout_s && g_list_length(list_delta) > 0; lpc++) {
sleep(sleep_interval);
if(timeout) {
timeout -= sleep_interval;
crm_trace("%ds remaining", timeout);
}
rc = update_dataset(cib, data_set, FALSE);
if(rc != pcmk_ok) {
fprintf(stderr, "Could not determine which resources were stopped\n");
goto failure;
}
if (current_active) {
g_list_free_full(current_active, free);
}
current_active = get_active_resources(host, data_set->resources);
g_list_free(list_delta);
list_delta = subtract_lists(current_active, target_active, (GCompareFunc) strcmp);
dump_list(current_active, "Current");
dump_list(list_delta, "Delta");
}
crm_trace("%d (was %d) resources remaining", g_list_length(list_delta), before);
if(before == g_list_length(list_delta)) {
/* aborted during stop phase, print the contents of list_delta */
fprintf(stderr, "Could not complete shutdown of %s, %d resources remaining\n", rsc_id, g_list_length(list_delta));
display_list(list_delta, " * ");
rc = -ETIME;
goto failure;
}
}
if (stop_via_ban) {
rc = cli_resource_clear(rsc_id, host, NULL, cib, TRUE);
} else if (orig_target_role) {
rc = cli_resource_update_attribute(rsc, rsc_id, NULL, NULL,
XML_RSC_ATTR_TARGET_ROLE,
orig_target_role, FALSE, cib,
data_set);
free(orig_target_role);
orig_target_role = NULL;
} else {
rc = cli_resource_delete_attribute(rsc, rsc_id, NULL, NULL,
XML_RSC_ATTR_TARGET_ROLE, cib,
data_set);
}
if(rc != pcmk_ok) {
fprintf(stderr, "Could not unset target-role for %s: %s (%d)\n", rsc_id, pcmk_strerror(rc), rc);
goto done;
}
if (target_active) {
g_list_free_full(target_active, free);
}
target_active = restart_target_active;
if (list_delta) {
g_list_free(list_delta);
}
list_delta = subtract_lists(target_active, current_active, (GCompareFunc) strcmp);
fprintf(stdout, "Waiting for %d resources to start again:\n", g_list_length(list_delta));
display_list(list_delta, " * ");
step_timeout_s = timeout / sleep_interval;
while (waiting_for_starts(list_delta, rsc, host)) {
before = g_list_length(list_delta);
if(timeout_ms == 0) {
step_timeout_s = max_delay_in(data_set, list_delta) / sleep_interval;
}
/* We probably don't need the entire step timeout */
for (lpc = 0; (lpc < step_timeout_s) && waiting_for_starts(list_delta, rsc, host); lpc++) {
sleep(sleep_interval);
if(timeout) {
timeout -= sleep_interval;
crm_trace("%ds remaining", timeout);
}
rc = update_dataset(cib, data_set, FALSE);
if(rc != pcmk_ok) {
fprintf(stderr, "Could not determine which resources were started\n");
goto failure;
}
if (current_active) {
g_list_free_full(current_active, free);
}
/* It's OK if dependent resources moved to a different node,
* so we check active resources on all nodes.
*/
current_active = get_active_resources(NULL, data_set->resources);
g_list_free(list_delta);
list_delta = subtract_lists(target_active, current_active, (GCompareFunc) strcmp);
dump_list(current_active, "Current");
dump_list(list_delta, "Delta");
}
if(before == g_list_length(list_delta)) {
/* aborted during start phase, print the contents of list_delta */
fprintf(stdout, "Could not complete restart of %s, %d resources remaining\n", rsc_id, g_list_length(list_delta));
display_list(list_delta, " * ");
rc = -ETIME;
goto failure;
}
}
rc = pcmk_ok;
goto done;
failure:
if (stop_via_ban) {
cli_resource_clear(rsc_id, host, NULL, cib, TRUE);
} else if (orig_target_role) {
cli_resource_update_attribute(rsc, rsc_id, NULL, NULL,
XML_RSC_ATTR_TARGET_ROLE,
orig_target_role, FALSE, cib, data_set);
free(orig_target_role);
} else {
cli_resource_delete_attribute(rsc, rsc_id, NULL, NULL,
XML_RSC_ATTR_TARGET_ROLE, cib, data_set);
}
done:
if (list_delta) {
g_list_free(list_delta);
}
if (current_active) {
g_list_free_full(current_active, free);
}
if (target_active && (target_active != restart_target_active)) {
g_list_free_full(target_active, free);
}
if (restart_target_active) {
g_list_free_full(restart_target_active, free);
}
free(rsc_id);
pe_free_working_set(data_set);
return rc;
}
static inline int action_is_pending(action_t *action)
{
if(is_set(action->flags, pe_action_optional)) {
return FALSE;
} else if(is_set(action->flags, pe_action_runnable) == FALSE) {
return FALSE;
} else if(is_set(action->flags, pe_action_pseudo)) {
return FALSE;
} else if(safe_str_eq("notify", action->task)) {
return FALSE;
}
return TRUE;
}
/*!
* \internal
* \brief Return TRUE if any actions in a list are pending
*
* \param[in] actions List of actions to check
*
* \return TRUE if any actions in the list are pending, FALSE otherwise
*/
static bool
actions_are_pending(GListPtr actions)
{
GListPtr action;
for (action = actions; action != NULL; action = action->next) {
action_t *a = (action_t *)action->data;
if (action_is_pending(a)) {
crm_notice("Waiting for %s (flags=0x%.8x)", a->uuid, a->flags);
return TRUE;
}
}
return FALSE;
}
/*!
* \internal
* \brief Print pending actions to stderr
*
* \param[in] actions List of actions to check
*
* \return void
*/
static void
print_pending_actions(GListPtr actions)
{
GListPtr action;
fprintf(stderr, "Pending actions:\n");
for (action = actions; action != NULL; action = action->next) {
action_t *a = (action_t *) action->data;
if (action_is_pending(a)) {
fprintf(stderr, "\tAction %d: %s", a->id, a->uuid);
if (a->node) {
fprintf(stderr, "\ton %s", a->node->details->uname);
}
fprintf(stderr, "\n");
}
}
}
/* For --wait, timeout (in seconds) to use if caller doesn't specify one */
#define WAIT_DEFAULT_TIMEOUT_S (60 * 60)
/* For --wait, how long to sleep between cluster state checks */
#define WAIT_SLEEP_S (2)
/*!
* \internal
* \brief Wait until all pending cluster actions are complete
*
* This waits until either the CIB's transition graph is idle or a timeout is
* reached.
*
* \param[in] timeout_ms Consider failed if actions do not complete in this time
* (specified in milliseconds, but one-second granularity
* is actually used; if 0, a default will be used)
* \param[in] cib Connection to the CIB manager
*
* \return pcmk_ok on success, -errno on failure
*/
int
wait_till_stable(int timeout_ms, cib_t * cib)
{
pe_working_set_t *data_set = NULL;
int rc = -1;
int timeout_s = timeout_ms? ((timeout_ms + 999) / 1000) : WAIT_DEFAULT_TIMEOUT_S;
time_t expire_time = time(NULL) + timeout_s;
time_t time_diff;
bool printed_version_warning = BE_QUIET; // i.e. don't print if quiet
data_set = pe_new_working_set();
if (data_set == NULL) {
return -ENOMEM;
}
do {
/* Abort if timeout is reached */
time_diff = expire_time - time(NULL);
if (time_diff > 0) {
crm_info("Waiting up to %ld seconds for cluster actions to complete", time_diff);
} else {
print_pending_actions(data_set->actions);
pe_free_working_set(data_set);
return -ETIME;
}
if (rc == pcmk_ok) { /* this avoids sleep on first loop iteration */
sleep(WAIT_SLEEP_S);
}
/* Get latest transition graph */
pe_reset_working_set(data_set);
rc = update_working_set_from_cib(data_set, cib);
if (rc != pcmk_ok) {
pe_free_working_set(data_set);
return rc;
}
do_calculations(data_set, data_set->input, NULL);
if (!printed_version_warning) {
/* If the DC has a different version than the local node, the two
* could come to different conclusions about what actions need to be
* done. Warn the user in this case.
*
* @TODO A possible long-term solution would be to reimplement the
* wait as a new controller operation that would be forwarded to the
* DC. However, that would have potential problems of its own.
*/
const char *dc_version = g_hash_table_lookup(data_set->config_hash,
"dc-version");
if (safe_str_neq(dc_version, PACEMAKER_VERSION "-" BUILD_VERSION)) {
printf("warning: wait option may not work properly in "
"mixed-version cluster\n");
printed_version_warning = TRUE;
}
}
} while (actions_are_pending(data_set->actions));
pe_free_working_set(data_set);
return pcmk_ok;
}
int
cli_resource_execute_from_params(const char *rsc_name, const char *rsc_class,
const char *rsc_prov, const char *rsc_type,
const char *action, GHashTable *params,
GHashTable *override_hash, int timeout_ms)
{
GHashTable *params_copy = NULL;
int rc = pcmk_ok;
svc_action_t *op = NULL;
if (safe_str_eq(rsc_class, PCMK_RESOURCE_CLASS_STONITH)) {
CMD_ERR("Sorry, the %s option doesn't support %s resources yet",
action, rsc_class);
crm_exit(CRM_EX_UNIMPLEMENT_FEATURE);
}
/* If no timeout was provided, grab the default. */
if (timeout_ms == 0) {
timeout_ms = crm_get_msec(CRM_DEFAULT_OP_TIMEOUT_S);
}
/* add meta_timeout env needed by some resource agents */
g_hash_table_insert(params, strdup("CRM_meta_timeout"),
crm_strdup_printf("%d", timeout_ms));
/* add crm_feature_set env needed by some resource agents */
g_hash_table_insert(params, strdup(XML_ATTR_CRM_VERSION), strdup(CRM_FEATURE_SET));
/* resources_action_create frees the params hash table it's passed, but we
* may need to reuse it in a second call to resources_action_create. Thus
* we'll make a copy here so that gets freed and the original remains for
* reuse.
*/
params_copy = crm_str_table_dup(params);
op = resources_action_create(rsc_name, rsc_class, rsc_prov, rsc_type, action, 0,
timeout_ms, params_copy, 0);
if (op == NULL) {
/* Re-run with stderr enabled so we can display a sane error message */
crm_enable_stderr(TRUE);
params_copy = crm_str_table_dup(params);
op = resources_action_create(rsc_name, rsc_class, rsc_prov, rsc_type, action, 0,
timeout_ms, params_copy, 0);
/* Callers of cli_resource_execute expect that the params hash table will
* be freed. That function uses this one, so for that reason and for
* making the two act the same, we should free the hash table here too.
*/
g_hash_table_destroy(params);
/* We know op will be NULL, but this makes static analysis happy */
services_action_free(op);
- return crm_exit(CRM_EX_DATAERR);
+ crm_exit(CRM_EX_DATAERR);
}
setenv("HA_debug", resource_verbose > 0 ? "1" : "0", 1);
if(resource_verbose > 1) {
setenv("OCF_TRACE_RA", "1", 1);
}
/* A resource agent using the standard ocf-shellfuncs library will not print
* messages to stderr if it doesn't have a controlling terminal (e.g. if
* crm_resource is called via script or ssh). This forces it to do so.
*/
setenv("OCF_TRACE_FILE", "/dev/stderr", 0);
if (override_hash) {
GHashTableIter iter;
char *name = NULL;
char *value = NULL;
g_hash_table_iter_init(&iter, override_hash);
while (g_hash_table_iter_next(&iter, (gpointer *) & name, (gpointer *) & value)) {
printf("Overriding the cluster configuration for '%s' with '%s' = '%s'\n",
rsc_name, name, value);
g_hash_table_replace(op->params, strdup(name), strdup(value));
}
}
if (services_action_sync(op)) {
int more, lpc, last;
char *local_copy = NULL;
rc = op->rc;
if (op->status == PCMK_LRM_OP_DONE) {
printf("Operation %s for %s (%s:%s:%s) returned: '%s' (%d)\n",
action, rsc_name, rsc_class, rsc_prov ? rsc_prov : "", rsc_type,
services_ocf_exitcode_str(op->rc), op->rc);
} else {
printf("Operation %s for %s (%s:%s:%s) failed: '%s' (%d)\n",
action, rsc_name, rsc_class, rsc_prov ? rsc_prov : "", rsc_type,
services_lrm_status_str(op->status), op->status);
}
/* hide output for validate-all if not in verbose */
if (resource_verbose == 0 && safe_str_eq(action, "validate-all"))
goto done;
if (op->stdout_data) {
local_copy = strdup(op->stdout_data);
more = strlen(local_copy);
last = 0;
for (lpc = 0; lpc < more; lpc++) {
if (local_copy[lpc] == '\n' || local_copy[lpc] == 0) {
local_copy[lpc] = 0;
printf(" > stdout: %s\n", local_copy + last);
last = lpc + 1;
}
}
free(local_copy);
}
if (op->stderr_data) {
local_copy = strdup(op->stderr_data);
more = strlen(local_copy);
last = 0;
for (lpc = 0; lpc < more; lpc++) {
if (local_copy[lpc] == '\n' || local_copy[lpc] == 0) {
local_copy[lpc] = 0;
printf(" > stderr: %s\n", local_copy + last);
last = lpc + 1;
}
}
free(local_copy);
}
} else {
rc = op->rc == 0 ? pcmk_err_generic : op->rc;
}
done:
services_action_free(op);
/* See comment above about why we free params here. */
g_hash_table_destroy(params);
return rc;
}
int
cli_resource_execute(resource_t *rsc, const char *requested_name,
const char *rsc_action, GHashTable *override_hash,
int timeout_ms, cib_t * cib, pe_working_set_t *data_set)
{
int rc = pcmk_ok;
const char *rid = NULL;
const char *rtype = NULL;
const char *rprov = NULL;
const char *rclass = NULL;
const char *action = NULL;
GHashTable *params = NULL;
if (safe_str_eq(rsc_action, "validate")) {
action = "validate-all";
} else if (safe_str_eq(rsc_action, "force-check")) {
action = "monitor";
} else if (safe_str_eq(rsc_action, "force-stop")) {
action = rsc_action+6;
} else if (safe_str_eq(rsc_action, "force-start")
|| safe_str_eq(rsc_action, "force-demote")
|| safe_str_eq(rsc_action, "force-promote")) {
action = rsc_action+6;
if(pe_rsc_is_clone(rsc)) {
rc = cli_resource_search(rsc, requested_name, data_set);
if(rc > 0 && do_force == FALSE) {
CMD_ERR("It is not safe to %s %s here: the cluster claims it is already active",
action, rsc->id);
CMD_ERR("Try setting target-role=Stopped first or specifying "
"the force option");
crm_exit(CRM_EX_UNSAFE);
}
}
} else {
action = rsc_action;
}
if(pe_rsc_is_clone(rsc)) {
/* Grab the first child resource in the hope it's not a group */
rsc = rsc->children->data;
}
if(rsc->variant == pe_group) {
CMD_ERR("Sorry, the %s option doesn't support group resources",
rsc_action);
crm_exit(CRM_EX_UNIMPLEMENT_FEATURE);
}
rclass = crm_element_value(rsc->xml, XML_AGENT_ATTR_CLASS);
rprov = crm_element_value(rsc->xml, XML_AGENT_ATTR_PROVIDER);
rtype = crm_element_value(rsc->xml, XML_ATTR_TYPE);
params = generate_resource_params(rsc, data_set);
if (timeout_ms == 0) {
timeout_ms = pe_get_configured_timeout(rsc, action, data_set);
}
rid = pe_rsc_is_anon_clone(rsc->parent)? requested_name : rsc->id;
rc = cli_resource_execute_from_params(rid, rclass, rprov, rtype, action,
params, override_hash, timeout_ms);
return rc;
}
int
cli_resource_move(resource_t *rsc, const char *rsc_id, const char *host_name,
cib_t *cib, pe_working_set_t *data_set)
{
int rc = pcmk_ok;
unsigned int count = 0;
node_t *current = NULL;
node_t *dest = pe_find_node(data_set->nodes, host_name);
bool cur_is_dest = FALSE;
if (dest == NULL) {
return -pcmk_err_node_unknown;
}
if (scope_master && is_not_set(rsc->flags, pe_rsc_promotable)) {
resource_t *p = uber_parent(rsc);
if (is_set(p->flags, pe_rsc_promotable)) {
CMD_ERR("Using parent '%s' for move instead of '%s'.", rsc->id, rsc_id);
rsc_id = p->id;
rsc = p;
} else {
CMD_ERR("Ignoring master option: %s is not promotable", rsc_id);
scope_master = FALSE;
}
}
current = pe__find_active_requires(rsc, &count);
if (is_set(rsc->flags, pe_rsc_promotable)) {
GListPtr iter = NULL;
unsigned int master_count = 0;
pe_node_t *master_node = NULL;
for(iter = rsc->children; iter; iter = iter->next) {
resource_t *child = (resource_t *)iter->data;
enum rsc_role_e child_role = child->fns->state(child, TRUE);
if(child_role == RSC_ROLE_MASTER) {
rsc = child;
master_node = pe__current_node(child);
master_count++;
}
}
if (scope_master || master_count) {
count = master_count;
current = master_node;
}
}
if (count > 1) {
if (pe_rsc_is_clone(rsc)) {
current = NULL;
} else {
return -pcmk_err_multiple;
}
}
if (current && (current->details == dest->details)) {
cur_is_dest = TRUE;
if (do_force) {
crm_info("%s is already %s on %s, reinforcing placement with location constraint.",
rsc_id, scope_master?"promoted":"active", dest->details->uname);
} else {
return -pcmk_err_already;
}
}
/* Clear any previous prefer constraints across all nodes. */
cli_resource_clear(rsc_id, NULL, data_set->nodes, cib, FALSE);
/* Clear any previous ban constraints on 'dest'. */
cli_resource_clear(rsc_id, dest->details->uname, data_set->nodes, cib, TRUE);
/* Record an explicit preference for 'dest' */
rc = cli_resource_prefer(rsc_id, dest->details->uname, cib);
crm_trace("%s%s now prefers node %s%s",
rsc->id, scope_master?" (master)":"", dest->details->uname, do_force?"(forced)":"");
/* only ban the previous location if current location != destination location.
* it is possible to use -M to enforce a location without regard of where the
* resource is currently located */
if(do_force && (cur_is_dest == FALSE)) {
/* Ban the original location if possible */
if(current) {
(void)cli_resource_ban(rsc_id, current->details->uname, NULL, cib);
} else if(count > 1) {
CMD_ERR("Resource '%s' is currently %s in %d locations. "
"One may now move to %s",
rsc_id, (scope_master? "promoted" : "active"),
count, dest->details->uname);
CMD_ERR("To prevent '%s' from being %s at a specific location, "
"specify a node.",
rsc_id, (scope_master? "promoted" : "active"));
} else {
crm_trace("Not banning %s from its current location: not active", rsc_id);
}
}
return rc;
}
static void
cli_resource_why_without_rsc_and_host(cib_t *cib_conn,GListPtr resources)
{
GListPtr lpc = NULL;
GListPtr hosts = NULL;
for (lpc = resources; lpc != NULL; lpc = lpc->next) {
resource_t *rsc = (resource_t *) lpc->data;
rsc->fns->location(rsc, &hosts, TRUE);
if (hosts == NULL) {
printf("Resource %s is not running\n", rsc->id);
} else {
printf("Resource %s is running\n", rsc->id);
}
cli_resource_check(cib_conn, rsc);
g_list_free(hosts);
hosts = NULL;
}
}
static void
cli_resource_why_with_rsc_and_host(cib_t *cib_conn, GListPtr resources,
resource_t *rsc, const char *host_uname)
{
if (resource_is_running_on(rsc, host_uname)) {
printf("Resource %s is running on host %s\n",rsc->id,host_uname);
} else {
printf("Resource %s is not running on host %s\n", rsc->id, host_uname);
}
cli_resource_check(cib_conn, rsc);
}
static void
cli_resource_why_without_rsc_with_host(cib_t *cib_conn,GListPtr resources,node_t *node)
{
const char* host_uname = node->details->uname;
GListPtr allResources = node->details->allocated_rsc;
GListPtr activeResources = node->details->running_rsc;
GListPtr unactiveResources = subtract_lists(allResources,activeResources,(GCompareFunc) strcmp);
GListPtr lpc = NULL;
for (lpc = activeResources; lpc != NULL; lpc = lpc->next) {
resource_t *rsc = (resource_t *) lpc->data;
printf("Resource %s is running on host %s\n",rsc->id,host_uname);
cli_resource_check(cib_conn,rsc);
}
for(lpc = unactiveResources; lpc != NULL; lpc = lpc->next) {
resource_t *rsc = (resource_t *) lpc->data;
printf("Resource %s is assigned to host %s but not running\n",
rsc->id, host_uname);
cli_resource_check(cib_conn,rsc);
}
g_list_free(allResources);
g_list_free(activeResources);
g_list_free(unactiveResources);
}
static void
cli_resource_why_with_rsc_without_host(cib_t *cib_conn, GListPtr resources,
resource_t *rsc)
{
GListPtr hosts = NULL;
rsc->fns->location(rsc, &hosts, TRUE);
printf("Resource %s is %srunning\n", rsc->id, (hosts? "" : "not "));
cli_resource_check(cib_conn, rsc);
g_list_free(hosts);
}
void cli_resource_why(cib_t *cib_conn, GListPtr resources, resource_t *rsc,
node_t *node)
{
const char *host_uname = (node == NULL)? NULL : node->details->uname;
if ((rsc == NULL) && (host_uname == NULL)) {
cli_resource_why_without_rsc_and_host(cib_conn, resources);
} else if ((rsc != NULL) && (host_uname != NULL)) {
cli_resource_why_with_rsc_and_host(cib_conn, resources, rsc,
host_uname);
} else if ((rsc == NULL) && (host_uname != NULL)) {
cli_resource_why_without_rsc_with_host(cib_conn, resources, node);
} else if ((rsc != NULL) && (host_uname == NULL)) {
cli_resource_why_with_rsc_without_host(cib_conn, resources, rsc);
}
}
diff --git a/tools/crm_rule.c b/tools/crm_rule.c
index 77268ae430..340a691e04 100644
--- a/tools/crm_rule.c
+++ b/tools/crm_rule.c
@@ -1,278 +1,280 @@
/*
- * Copyright 2019 Chris Lumens
+ * Copyright 2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
enum crm_rule_mode {
crm_rule_mode_none,
crm_rule_mode_check
} rule_mode = crm_rule_mode_none;
static int crm_rule_check(pe_working_set_t *data_set, const char *rule_id, crm_time_t *effective_date);
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", no_argument, NULL, '?', "\tThis text"},
{"version", no_argument, NULL, '$', "\tVersion information" },
{"verbose", no_argument, NULL, 'V', "\tIncrease debug output"},
{"-spacer-", required_argument, NULL, '-', "\nModes (mutually exclusive):" },
{"check", no_argument, NULL, 'c', "\tCheck whether a rule is in effect" },
{"-spacer-", required_argument, NULL, '-', "\nAdditional options:" },
{"date", required_argument, NULL, 'd', "Whether the rule is in effect on a given date" },
{"rule", required_argument, NULL, 'r', "The ID of the rule to check" },
{"-spacer-", no_argument, NULL, '-', "\nData:"},
{"xml-text", required_argument, NULL, 'X', "Use argument for XML (or stdin if '-')"},
{"-spacer-", required_argument, NULL, '-', "\n\nThis tool is currently experimental.",
pcmk_option_paragraph},
{"-spacer-", required_argument, NULL, '-', "The interface, behavior, and output may "
"change with any version of pacemaker.", pcmk_option_paragraph},
{0, 0, 0, 0}
};
static int
crm_rule_check(pe_working_set_t *data_set, const char *rule_id, crm_time_t *effective_date)
{
xmlNode *cib_constraints = NULL;
xmlNode *match = NULL;
xmlXPathObjectPtr xpathObj = NULL;
pe_eval_date_result_t result;
char *xpath = NULL;
int rc = pcmk_ok;
int max = 0;
/* Rules are under the constraints node in the XML, so first find that. */
cib_constraints = get_object_root(XML_CIB_TAG_CONSTRAINTS, data_set->input);
/* Get all rules matching the given ID, which also have only a single date_expression
* child whose operation is not 'date_spec'. This is fairly limited, but it's hard
* to check expressions more complicated than that.
*/
xpath = crm_strdup_printf("//rule[@id='%s']/date_expression[@operation!='date_spec']", rule_id);
xpathObj = xpath_search(cib_constraints, xpath);
max = numXpathResults(xpathObj);
if (max == 0) {
CMD_ERR("No rule found with ID=%s containing a date_expression", rule_id);
rc = -ENXIO;
goto bail;
} else if (max > 1) {
CMD_ERR("More than one date_expression in %s is not supported", rule_id);
rc = -EOPNOTSUPP;
goto bail;
}
match = getXpathResult(xpathObj, 0);
/* We should have ensured both of these pass with the xpath query above, but
* double checking can't hurt.
*/
CRM_ASSERT(match != NULL);
CRM_ASSERT(find_expression_type(match) == time_expr);
result = pe_eval_date_expression(match, effective_date);
if (result == pe_date_within_range) {
printf("Rule %s is still in effect\n", rule_id);
rc = 0;
} else if (result == pe_date_after_range) {
printf("Rule %s is expired\n", rule_id);
rc = 1;
} else if (result == pe_date_before_range) {
printf("Rule %s has not yet taken effect\n", rule_id);
rc = 2;
} else {
printf("Could not determine whether rule %s is expired\n", rule_id);
rc = 3;
}
bail:
free(xpath);
freeXpathObject(xpathObj);
return rc;
}
int
main(int argc, char **argv)
{
cib_t *cib_conn = NULL;
pe_working_set_t *data_set = NULL;
int flag = 0;
int option_index = 0;
char *rule_id = NULL;
crm_time_t *rule_date = NULL;
xmlNode *input = NULL;
char *input_xml = NULL;
int rc = pcmk_ok;
crm_exit_t exit_code = CRM_EX_OK;
crm_log_cli_init("crm_rule");
crm_set_options(NULL, "[options]", long_options,
"Tool for querying the state of rules");
while (flag >= 0) {
flag = crm_get_option(argc, argv, &option_index);
switch (flag) {
case -1:
break;
case 'V':
crm_bump_log_level(argc, argv);
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
case 'c':
rule_mode = crm_rule_mode_check;
break;
case 'd':
rule_date = crm_time_new(optarg);
if (rule_date == NULL) {
exit_code = CRM_EX_DATAERR;
goto bail;
}
break;
case 'X':
input_xml = optarg;
break;
case 'r':
rule_id = strdup(optarg);
break;
default:
crm_help(flag, CRM_EX_OK);
break;
}
}
/* Check command line arguments before opening a connection to
* the CIB manager or doing anything else important.
*/
if (rule_mode == crm_rule_mode_check) {
if (rule_id == NULL) {
CMD_ERR("--check requires use of --rule=\n");
crm_help(flag, CRM_EX_USAGE);
}
}
/* Set up some defaults. */
if (rule_date == NULL) {
rule_date = crm_time_new(NULL);
}
/* Where does the XML come from? If one of various command line options were
* given, use those. Otherwise, connect to the CIB and use that.
*/
if (safe_str_eq(input_xml, "-")) {
input = stdin2xml();
if (input == NULL) {
fprintf(stderr, "Couldn't parse input from STDIN\n");
exit_code = CRM_EX_DATAERR;
goto bail;
}
} else if (input_xml != NULL) {
input = string2xml(input_xml);
if (input == NULL) {
fprintf(stderr, "Couldn't parse input string: %s\n", input_xml);
exit_code = CRM_EX_DATAERR;
goto bail;
}
} else {
/* Establish a connection to the CIB manager */
cib_conn = cib_new();
rc = cib_conn->cmds->signon(cib_conn, crm_system_name, cib_command);
if (rc != pcmk_ok) {
CMD_ERR("Error connecting to the CIB manager: %s", pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto bail;
}
}
/* Populate working set from CIB query */
if (input == NULL) {
rc = cib_conn->cmds->query(cib_conn, NULL, &input, cib_scope_local | cib_sync_call);
if (rc != pcmk_ok) {
exit_code = crm_errno2exit(rc);
goto bail;
}
}
/* Populate the working set instance */
data_set = pe_new_working_set();
if (data_set == NULL) {
exit_code = crm_errno2exit(ENOMEM);
goto bail;
}
data_set->input = input;
data_set->now = rule_date;
/* Unpack everything. */
cluster_status(data_set);
/* Now do whichever operation mode was asked for. There's only one at the
* moment so this looks a little silly, but I expect there will be more
* modes in the future.
*/
switch(rule_mode) {
case crm_rule_mode_check:
rc = crm_rule_check(data_set, rule_id, rule_date);
if (rc < 0) {
CMD_ERR("Error checking rule: %s", pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
} else if (rc == 1) {
exit_code = CRM_EX_EXPIRED;
} else if (rc == 2) {
exit_code = CRM_EX_NOT_YET_IN_EFFECT;
} else if (rc == 3) {
exit_code = CRM_EX_INDETERMINATE;
} else {
exit_code = rc;
}
break;
default:
break;
}
bail:
if (cib_conn != NULL) {
cib_conn->cmds->signoff(cib_conn);
cib_delete(cib_conn);
}
pe_free_working_set(data_set);
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
diff --git a/tools/crm_shadow.c b/tools/crm_shadow.c
index 9602fac7f3..9821c47e06 100644
--- a/tools/crm_shadow.c
+++ b/tools/crm_shadow.c
@@ -1,449 +1,449 @@
/*
* Copyright 2004-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
static int command_options = cib_sync_call;
static cib_t *real_cib = NULL;
static int force_flag = 0;
static int batch_flag = 0;
static char *
get_shadow_prompt(const char *name)
{
return crm_strdup_printf("shadow[%.40s] # ", name);
}
static void
shadow_setup(char *name, gboolean do_switch)
{
const char *prompt = getenv("PS1");
const char *shell = getenv("SHELL");
char *new_prompt = get_shadow_prompt(name);
printf("Setting up shadow instance\n");
if (safe_str_eq(new_prompt, prompt)) {
/* nothing to do */
goto done;
} else if (batch_flag == FALSE && shell != NULL) {
setenv("PS1", new_prompt, 1);
setenv("CIB_shadow", name, 1);
printf("Type Ctrl-D to exit the crm_shadow shell\n");
if (strstr(shell, "bash")) {
execl(shell, shell, "--norc", "--noprofile", NULL);
} else {
execl(shell, shell, NULL);
}
} else if (do_switch) {
printf("To switch to the named shadow instance, paste the following into your shell:\n");
} else {
printf
("A new shadow instance was created. To begin using it paste the following into your shell:\n");
}
printf(" CIB_shadow=%s ; export CIB_shadow\n", name);
done:
free(new_prompt);
}
static void
shadow_teardown(char *name)
{
const char *prompt = getenv("PS1");
char *our_prompt = get_shadow_prompt(name);
if (prompt != NULL && strstr(prompt, our_prompt)) {
printf("Now type Ctrl-D to exit the crm_shadow shell\n");
} else {
printf
("Please remember to unset the CIB_shadow variable by pasting the following into your shell:\n");
printf(" unset CIB_shadow\n");
}
free(our_prompt);
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\t\tThis text"},
{"version", 0, 0, '$', "\t\tVersion information" },
{"verbose", 0, 0, 'V', "\t\tIncrease debug output"},
{"-spacer-", 1, 0, '-', "\nQueries:"},
{"which", no_argument, NULL, 'w', "\t\tIndicate the active shadow copy"},
{"display", no_argument, NULL, 'p', "\t\tDisplay the contents of the active shadow copy"},
{"edit", no_argument, NULL, 'E', "\t\tEdit the contents of the active shadow copy with your favorite $EDITOR"},
{"diff", no_argument, NULL, 'd', "\t\tDisplay the changes in the active shadow copy\n"},
{"file", no_argument, NULL, 'F', "\t\tDisplay the location of the active shadow copy file\n"},
{"-spacer-", 1, 0, '-', "\nCommands:"},
{"create", required_argument, NULL, 'c', "\tCreate the named shadow copy of the active cluster configuration"},
{"create-empty", required_argument, NULL, 'e', "Create the named shadow copy with an empty cluster configuration. Optional: --validate-with"},
{"commit", required_argument, NULL, 'C', "\tUpload the contents of the named shadow copy to the cluster"},
{"delete", required_argument, NULL, 'D', "\tDelete the contents of the named shadow copy"},
{"reset", required_argument, NULL, 'r', "\tRecreate the named shadow copy from the active cluster configuration"},
{"switch", required_argument, NULL, 's', "\t(Advanced) Switch to the named shadow copy"},
{"-spacer-", 1, 0, '-', "\nAdditional Options:"},
{"force", no_argument, NULL, 'f', "\t\t(Advanced) Force the action to be performed"},
{"batch", no_argument, NULL, 'b', "\t\t(Advanced) Don't spawn a new shell" },
{"all", no_argument, NULL, 'a', "\t\t(Advanced) Upload the entire CIB, including status, with --commit" },
{"validate-with", required_argument, NULL, 'v', "(Advanced) Create an older configuration version" },
{"-spacer-", 1, 0, '-', "\nExamples:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "Create a blank shadow configuration:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_shadow --create-empty myShadow", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Create a shadow configuration from the running cluster:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_shadow --create myShadow", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Display the current shadow configuration:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_shadow --display", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Discard the current shadow configuration (named myShadow):", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_shadow --delete myShadow --force", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Upload the current shadow configuration (named myShadow) to the running cluster:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_shadow --commit myShadow", pcmk_option_example},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
int rc = pcmk_ok;
int flag;
int argerr = 0;
crm_exit_t exit_code = CRM_EX_OK;
static int command = '?';
const char *validation = NULL;
char *shadow = NULL;
char *shadow_file = NULL;
gboolean full_upload = FALSE;
gboolean dangerous_cmd = FALSE;
struct stat buf;
int option_index = 0;
crm_log_cli_init("crm_shadow");
crm_set_options(NULL, "(query|command) [modifiers]", long_options,
"Perform configuration changes in a sandbox before updating the live cluster."
"\n\nSets up an environment in which configuration tools (cibadmin, crm_resource, etc) work"
" offline instead of against a live cluster, allowing changes to be previewed and tested"
" for side-effects.\n");
if (argc < 2) {
crm_help('?', CRM_EX_USAGE);
}
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1 || flag == 0)
break;
switch (flag) {
case 'a':
full_upload = TRUE;
break;
case 'd':
case 'E':
case 'p':
case 'w':
case 'F':
command = flag;
free(shadow);
shadow = NULL;
{
const char *env = getenv("CIB_shadow");
if(env) {
shadow = strdup(env);
} else {
fprintf(stderr, "No active shadow configuration defined\n");
crm_exit(CRM_EX_NOSUCH);
}
}
break;
case 'v':
validation = optarg;
break;
case 'e':
case 'c':
case 's':
case 'r':
command = flag;
free(shadow);
shadow = strdup(optarg);
break;
case 'C':
case 'D':
command = flag;
dangerous_cmd = TRUE;
free(shadow);
shadow = strdup(optarg);
break;
case 'V':
command_options = command_options | cib_verbose;
crm_bump_log_level(argc, argv);
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
case 'f':
command_options |= cib_quorum_override;
force_flag = 1;
break;
case 'b':
batch_flag = 1;
break;
default:
printf("Argument code 0%o (%c)" " is not (?yet?) supported\n", flag, flag);
++argerr;
break;
}
}
if (optind < argc) {
printf("non-option ARGV-elements: ");
while (optind < argc)
printf("%s ", argv[optind++]);
printf("\n");
crm_help('?', CRM_EX_USAGE);
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
if (command == 'w') {
/* which shadow instance is active? */
const char *local = getenv("CIB_shadow");
if (local == NULL) {
fprintf(stderr, "No shadow instance provided\n");
exit_code = CRM_EX_NOSUCH;
} else {
fprintf(stdout, "%s\n", local);
}
goto done;
}
if (shadow == NULL) {
fprintf(stderr, "No shadow instance provided\n");
fflush(stderr);
exit_code = CRM_EX_NOSUCH;
goto done;
} else if (command != 's' && command != 'c') {
const char *local = getenv("CIB_shadow");
if (local != NULL && safe_str_neq(local, shadow) && force_flag == FALSE) {
fprintf(stderr,
"The supplied shadow instance (%s) is not the same as the active one (%s).\n"
" To prevent accidental destruction of the cluster,"
" the --force flag is required in order to proceed.\n", shadow, local);
fflush(stderr);
exit_code = CRM_EX_USAGE;
goto done;
}
}
if (dangerous_cmd && force_flag == FALSE) {
fprintf(stderr, "The supplied command is considered dangerous."
" To prevent accidental destruction of the cluster,"
" the --force flag is required in order to proceed.\n");
fflush(stderr);
exit_code = CRM_EX_USAGE;
goto done;
}
shadow_file = get_shadow_file(shadow);
if (command == 'D') {
/* delete the file */
if ((unlink(shadow_file) < 0) && (errno != ENOENT)) {
exit_code = crm_errno2exit(errno);
fprintf(stderr, "Could not remove shadow instance '%s': %s\n",
shadow, strerror(errno));
}
shadow_teardown(shadow);
goto done;
} else if (command == 'F') {
printf("%s\n", shadow_file);
goto done;
}
if (command == 'd' || command == 'r' || command == 'c' || command == 'C') {
real_cib = cib_new_no_shadow();
rc = real_cib->cmds->signon(real_cib, crm_system_name, cib_command);
if (rc != pcmk_ok) {
fprintf(stderr, "Signon to CIB failed: %s\n", pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto done;
}
}
// File existence check
rc = stat(shadow_file, &buf);
if (command == 'e' || command == 'c') {
if (rc == 0 && force_flag == FALSE) {
fprintf(stderr, "A shadow instance '%s' already exists.\n"
" To prevent accidental destruction of the cluster,"
" the --force flag is required in order to proceed.\n", shadow);
exit_code = CRM_EX_CANTCREAT;
goto done;
}
} else if (rc < 0) {
fprintf(stderr, "Could not access shadow instance '%s': %s\n", shadow, strerror(errno));
exit_code = CRM_EX_NOSUCH;
goto done;
}
if (command == 'c' || command == 'e' || command == 'r') {
xmlNode *output = NULL;
/* create a shadow instance based on the current cluster config */
if (command == 'c' || command == 'r') {
rc = real_cib->cmds->query(real_cib, NULL, &output, command_options);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not connect to the CIB manager: %s\n",
pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto done;
}
} else {
output = createEmptyCib(0);
if(validation) {
crm_xml_add(output, XML_ATTR_VALIDATION, validation);
}
printf("Created new %s configuration\n",
crm_element_value(output, XML_ATTR_VALIDATION));
}
rc = write_xml_file(output, shadow_file, FALSE);
free_xml(output);
if (rc < 0) {
fprintf(stderr, "Could not %s the shadow instance '%s': %s\n",
command == 'r' ? "reset" : "create",
shadow, pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto done;
}
shadow_setup(shadow, FALSE);
} else if (command == 'E') {
char *editor = getenv("EDITOR");
if (editor == NULL) {
fprintf(stderr, "No value for EDITOR defined\n");
exit_code = CRM_EX_NOT_CONFIGURED;
goto done;
}
execlp(editor, "--", shadow_file, NULL);
fprintf(stderr, "Could not invoke EDITOR (%s %s): %s\n",
editor, shadow_file, strerror(errno));
exit_code = CRM_EX_OSFILE;
goto done;
} else if (command == 's') {
shadow_setup(shadow, TRUE);
goto done;
} else if (command == 'p') {
/* display the current contents */
char *output_s = NULL;
xmlNode *output = filename2xml(shadow_file);
output_s = dump_xml_formatted(output);
printf("%s", output_s);
free(output_s);
free_xml(output);
} else if (command == 'd') {
/* diff against cluster */
xmlNode *diff = NULL;
xmlNode *old_config = NULL;
xmlNode *new_config = filename2xml(shadow_file);
rc = real_cib->cmds->query(real_cib, NULL, &old_config, command_options);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not query the CIB: %s\n", pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto done;
}
xml_track_changes(new_config, NULL, new_config, FALSE);
xml_calculate_changes(old_config, new_config);
diff = xml_create_patchset(0, old_config, new_config, NULL, FALSE);
xml_log_changes(LOG_INFO, __FUNCTION__, new_config);
xml_accept_changes(new_config);
if (diff != NULL) {
xml_log_patchset(0, " ", diff);
exit_code = CRM_EX_ERROR;
}
goto done;
} else if (command == 'C') {
/* commit to the cluster */
xmlNode *input = filename2xml(shadow_file);
xmlNode *section_xml = input;
const char *section = NULL;
if (!full_upload) {
section = XML_CIB_TAG_CONFIGURATION;
section_xml = first_named_child(input, section);
}
rc = real_cib->cmds->replace(real_cib, section, section_xml,
command_options);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not commit shadow instance '%s' to the CIB: %s\n",
shadow, pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
}
shadow_teardown(shadow);
free_xml(input);
}
done:
free(shadow_file);
free(shadow);
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
diff --git a/tools/crm_simulate.c b/tools/crm_simulate.c
index 28027cc30f..50801fd9b1 100644
--- a/tools/crm_simulate.c
+++ b/tools/crm_simulate.c
@@ -1,931 +1,931 @@
/*
* Copyright 2009-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
cib_t *global_cib = NULL;
GListPtr op_fail = NULL;
bool action_numbers = FALSE;
gboolean quiet = FALSE;
gboolean print_pending = TRUE;
char *temp_shadow = NULL;
extern gboolean bringing_nodes_online;
#define quiet_log(fmt, args...) do { \
if(quiet == FALSE) { \
printf(fmt , ##args); \
} \
} while(0)
extern xmlNode *do_calculations(pe_working_set_t * data_set, xmlNode * xml_input, crm_time_t * now);
char *use_date = NULL;
static void
get_date(pe_working_set_t * data_set)
{
int value = 0;
time_t original_date = 0;
crm_element_value_int(data_set->input, "execution-date", &value);
original_date = value;
if (use_date) {
data_set->now = crm_time_new(use_date);
quiet_log(" + Setting effective cluster time: %s", use_date);
crm_time_log(LOG_NOTICE, "Pretending 'now' is", data_set->now,
crm_time_log_date | crm_time_log_timeofday);
} else if(original_date) {
char *when = NULL;
data_set->now = crm_time_new(NULL);
crm_time_set_timet(data_set->now, &original_date);
when = crm_time_as_string(data_set->now, crm_time_log_date|crm_time_log_timeofday);
printf("Using the original execution date of: %s\n", when);
free(when);
}
}
static void
print_cluster_status(pe_working_set_t * data_set, long options)
{
char *online_nodes = NULL;
char *online_remote_nodes = NULL;
char *online_remote_containers = NULL;
char *offline_nodes = NULL;
char *offline_remote_nodes = NULL;
GListPtr gIter = NULL;
for (gIter = data_set->nodes; gIter != NULL; gIter = gIter->next) {
node_t *node = (node_t *) gIter->data;
const char *node_mode = NULL;
char *node_name = NULL;
if (is_container_remote_node(node)) {
node_name = crm_strdup_printf("%s:%s", node->details->uname, node->details->remote_rsc->container->id);
} else {
node_name = crm_strdup_printf("%s", node->details->uname);
}
if (node->details->unclean) {
if (node->details->online && node->details->unclean) {
node_mode = "UNCLEAN (online)";
} else if (node->details->pending) {
node_mode = "UNCLEAN (pending)";
} else {
node_mode = "UNCLEAN (offline)";
}
} else if (node->details->pending) {
node_mode = "pending";
} else if (node->details->standby_onfail && node->details->online) {
node_mode = "standby (on-fail)";
} else if (node->details->standby) {
if (node->details->online) {
node_mode = "standby";
} else {
node_mode = "OFFLINE (standby)";
}
} else if (node->details->maintenance) {
if (node->details->online) {
node_mode = "maintenance";
} else {
node_mode = "OFFLINE (maintenance)";
}
} else if (node->details->online) {
if (is_container_remote_node(node)) {
online_remote_containers = add_list_element(online_remote_containers, node_name);
} else if (is_baremetal_remote_node(node)) {
online_remote_nodes = add_list_element(online_remote_nodes, node_name);
} else {
online_nodes = add_list_element(online_nodes, node_name);
}
free(node_name);
continue;
} else {
if (is_baremetal_remote_node(node)) {
offline_remote_nodes = add_list_element(offline_remote_nodes, node_name);
} else if (is_container_remote_node(node)) {
/* ignore offline container nodes */
} else {
offline_nodes = add_list_element(offline_nodes, node_name);
}
free(node_name);
continue;
}
if (is_container_remote_node(node)) {
printf("ContainerNode %s: %s\n", node_name, node_mode);
} else if (is_baremetal_remote_node(node)) {
printf("RemoteNode %s: %s\n", node_name, node_mode);
} else if (safe_str_eq(node->details->uname, node->details->id)) {
printf("Node %s: %s\n", node_name, node_mode);
} else {
printf("Node %s (%s): %s\n", node_name, node->details->id, node_mode);
}
free(node_name);
}
if (online_nodes) {
printf("Online: [%s ]\n", online_nodes);
free(online_nodes);
}
if (offline_nodes) {
printf("OFFLINE: [%s ]\n", offline_nodes);
free(offline_nodes);
}
if (online_remote_nodes) {
printf("RemoteOnline: [%s ]\n", online_remote_nodes);
free(online_remote_nodes);
}
if (offline_remote_nodes) {
printf("RemoteOFFLINE: [%s ]\n", offline_remote_nodes);
free(offline_remote_nodes);
}
if (online_remote_containers) {
printf("Containers: [%s ]\n", online_remote_containers);
free(online_remote_containers);
}
fprintf(stdout, "\n");
for (gIter = data_set->resources; gIter != NULL; gIter = gIter->next) {
resource_t *rsc = (resource_t *) gIter->data;
if (is_set(rsc->flags, pe_rsc_orphan)
&& rsc->role == RSC_ROLE_STOPPED) {
continue;
}
rsc->fns->print(rsc, NULL, pe_print_printf | options, stdout);
}
fprintf(stdout, "\n");
}
static char *
create_action_name(action_t * action)
{
char *action_name = NULL;
const char *prefix = NULL;
const char *action_host = NULL;
const char *task = action->task;
if (action->node) {
action_host = action->node->details->uname;
} else if (is_not_set(action->flags, pe_action_pseudo)) {
action_host = "";
}
if (safe_str_eq(action->task, RSC_CANCEL)) {
prefix = "Cancel ";
task = "monitor"; /* TO-DO: Hack! */
}
if (action->rsc && action->rsc->clone_name) {
char *key = NULL;
const char *name = action->rsc->clone_name;
const char *interval_ms_s = NULL;
guint interval_ms = 0;
interval_ms_s = g_hash_table_lookup(action->meta,
XML_LRM_ATTR_INTERVAL_MS);
interval_ms = crm_parse_ms(interval_ms_s);
if (safe_str_eq(action->task, RSC_NOTIFY)
|| safe_str_eq(action->task, RSC_NOTIFIED)) {
const char *n_type = g_hash_table_lookup(action->meta, "notify_key_type");
const char *n_task = g_hash_table_lookup(action->meta, "notify_key_operation");
CRM_ASSERT(n_type != NULL);
CRM_ASSERT(n_task != NULL);
key = generate_notify_key(name, n_type, n_task);
} else {
key = generate_op_key(name, task, interval_ms);
}
if (action_host) {
action_name = crm_strdup_printf("%s%s %s", prefix ? prefix : "", key, action_host);
} else {
action_name = crm_strdup_printf("%s%s", prefix ? prefix : "", key);
}
free(key);
} else if (safe_str_eq(action->task, CRM_OP_FENCE)) {
const char *op = g_hash_table_lookup(action->meta, "stonith_action");
action_name = crm_strdup_printf("%s%s '%s' %s", prefix ? prefix : "", action->task, op, action_host);
} else if (action->rsc && action_host) {
action_name = crm_strdup_printf("%s%s %s", prefix ? prefix : "", action->uuid, action_host);
} else if (action_host) {
action_name = crm_strdup_printf("%s%s %s", prefix ? prefix : "", action->task, action_host);
} else {
action_name = crm_strdup_printf("%s", action->uuid);
}
if(action_numbers) {
char *with_id = crm_strdup_printf("%s (%d)", action_name, action->id);
free(action_name);
action_name = with_id;
}
return action_name;
}
static void
create_dotfile(pe_working_set_t * data_set, const char *dot_file, gboolean all_actions)
{
GListPtr gIter = NULL;
FILE *dot_strm = fopen(dot_file, "w");
if (dot_strm == NULL) {
crm_perror(LOG_ERR, "Could not open %s for writing", dot_file);
return;
}
fprintf(dot_strm, " digraph \"g\" {\n");
for (gIter = data_set->actions; gIter != NULL; gIter = gIter->next) {
action_t *action = (action_t *) gIter->data;
const char *style = "dashed";
const char *font = "black";
const char *color = "black";
char *action_name = create_action_name(action);
crm_trace("Action %d: %s %s %p", action->id, action_name, action->uuid, action);
if (is_set(action->flags, pe_action_pseudo)) {
font = "orange";
}
if (is_set(action->flags, pe_action_dumped)) {
style = "bold";
color = "green";
} else if (action->rsc != NULL && is_not_set(action->rsc->flags, pe_rsc_managed)) {
color = "red";
font = "purple";
if (all_actions == FALSE) {
goto dont_write;
}
} else if (is_set(action->flags, pe_action_optional)) {
color = "blue";
if (all_actions == FALSE) {
goto dont_write;
}
} else {
color = "red";
CRM_CHECK(is_set(action->flags, pe_action_runnable) == FALSE,;
);
}
set_bit(action->flags, pe_action_dumped);
crm_trace("\"%s\" [ style=%s color=\"%s\" fontcolor=\"%s\"]",
action_name, style, color, font);
fprintf(dot_strm, "\"%s\" [ style=%s color=\"%s\" fontcolor=\"%s\"]\n",
action_name, style, color, font);
dont_write:
free(action_name);
}
for (gIter = data_set->actions; gIter != NULL; gIter = gIter->next) {
action_t *action = (action_t *) gIter->data;
GListPtr gIter2 = NULL;
for (gIter2 = action->actions_before; gIter2 != NULL; gIter2 = gIter2->next) {
action_wrapper_t *before = (action_wrapper_t *) gIter2->data;
char *before_name = NULL;
char *after_name = NULL;
const char *style = "dashed";
gboolean optional = TRUE;
if (before->state == pe_link_dumped) {
optional = FALSE;
style = "bold";
} else if (is_set(action->flags, pe_action_pseudo)
&& (before->type & pe_order_stonith_stop)) {
continue;
} else if (before->state == pe_link_dup) {
continue;
} else if (before->type == pe_order_none) {
continue;
} else if (is_set(before->action->flags, pe_action_dumped)
&& is_set(action->flags, pe_action_dumped)
&& before->type != pe_order_load) {
optional = FALSE;
}
if (all_actions || optional == FALSE) {
before_name = create_action_name(before->action);
after_name = create_action_name(action);
crm_trace("\"%s\" -> \"%s\" [ style = %s]",
before_name, after_name, style);
fprintf(dot_strm, "\"%s\" -> \"%s\" [ style = %s]\n",
before_name, after_name, style);
free(before_name);
free(after_name);
}
}
}
fprintf(dot_strm, "}\n");
fflush(dot_strm);
fclose(dot_strm);
}
static void
setup_input(const char *input, const char *output)
{
int rc = pcmk_ok;
cib_t *cib_conn = NULL;
xmlNode *cib_object = NULL;
char *local_output = NULL;
if (input == NULL) {
/* Use live CIB */
cib_conn = cib_new();
rc = cib_conn->cmds->signon(cib_conn, crm_system_name, cib_command);
if (rc == pcmk_ok) {
rc = cib_conn->cmds->query(cib_conn, NULL, &cib_object, cib_scope_local | cib_sync_call);
}
cib_conn->cmds->signoff(cib_conn);
cib_delete(cib_conn);
cib_conn = NULL;
if (rc != pcmk_ok) {
fprintf(stderr, "Live CIB query failed: %s (%d)\n", pcmk_strerror(rc), rc);
crm_exit(crm_errno2exit(rc));
} else if (cib_object == NULL) {
fprintf(stderr, "Live CIB query failed: empty result\n");
crm_exit(CRM_EX_NOINPUT);
}
} else if (safe_str_eq(input, "-")) {
cib_object = filename2xml(NULL);
} else {
cib_object = filename2xml(input);
}
if (get_object_root(XML_CIB_TAG_STATUS, cib_object) == NULL) {
create_xml_node(cib_object, XML_CIB_TAG_STATUS);
}
if (cli_config_update(&cib_object, NULL, FALSE) == FALSE) {
free_xml(cib_object);
crm_exit(CRM_EX_CONFIG);
}
if (validate_xml(cib_object, NULL, FALSE) != TRUE) {
free_xml(cib_object);
crm_exit(CRM_EX_CONFIG);
}
if (output == NULL) {
char *pid = crm_getpid_s();
local_output = get_shadow_file(pid);
temp_shadow = strdup(local_output);
output = local_output;
free(pid);
}
rc = write_xml_file(cib_object, output, FALSE);
free_xml(cib_object);
cib_object = NULL;
if (rc < 0) {
fprintf(stderr, "Could not create '%s': %s\n",
output, pcmk_strerror(rc));
crm_exit(CRM_EX_CANTCREAT);
}
setenv("CIB_file", output, 1);
free(local_output);
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"quiet", 0, 0, 'Q', "\tDisplay only essentialoutput"},
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{"-spacer-", 0, 0, '-', "\nOperations:"},
{"run", 0, 0, 'R', "\tDetermine the cluster's response to the given configuration and status"},
{"simulate", 0, 0, 'S', "Simulate the transition's execution and display the resulting cluster status"},
{"in-place", 0, 0, 'X', "Simulate the transition's execution and store the result back to the input file"},
{"show-scores", 0, 0, 's', "Show allocation scores"},
{"show-utilization", 0, 0, 'U', "Show utilization information"},
{"profile", 1, 0, 'P', "Run all tests in the named directory to create profiling data"},
{"pending", 0, 0, 'j', "\tDisplay pending state if 'record-pending' is enabled", pcmk_option_hidden},
{"-spacer-", 0, 0, '-', "\nSynthetic Cluster Events:"},
{"node-up", 1, 0, 'u', "\tBring a node online"},
{"node-down", 1, 0, 'd', "\tTake a node offline"},
{"node-fail", 1, 0, 'f', "\tMark a node as failed"},
{"op-inject", 1, 0, 'i', "\tGenerate a failure for the cluster to react to in the simulation"},
{"-spacer-", 0, 0, '-', "\t\tValue is of the form ${resource}_${task}_${interval_in_ms}@${node}=${rc}."},
{"-spacer-", 0, 0, '-', "\t\tEg. memcached_monitor_20000@bart.example.com=7"},
{"-spacer-", 0, 0, '-', "\t\tFor more information on OCF return codes, refer to: https://clusterlabs.org/pacemaker/doc/en-US/Pacemaker/2.0/html/Pacemaker_Administration/s-ocf-return-codes.html"},
{"op-fail", 1, 0, 'F', "\tIf the specified task occurs during the simulation, have it fail with return code ${rc}"},
{"-spacer-", 0, 0, '-', "\t\tValue is of the form ${resource}_${task}_${interval_in_ms}@${node}=${rc}."},
{"-spacer-", 0, 0, '-', "\t\tEg. memcached_stop_0@bart.example.com=1\n"},
{"-spacer-", 0, 0, '-', "\t\tThe transition will normally stop at the failed action. Save the result with --save-output and re-run with --xml-file"},
{ "set-datetime", required_argument, NULL, 't',
"Set date/time (ISO 8601 format, see https://en.wikipedia.org/wiki/ISO_8601)"
},
{"quorum", 1, 0, 'q', "\tSpecify a value for quorum"},
{"watchdog", 1, 0, 'w', "\tAssume a watchdog device is active"},
{"ticket-grant", 1, 0, 'g', "Grant a ticket"},
{"ticket-revoke", 1, 0, 'r', "Revoke a ticket"},
{"ticket-standby", 1, 0, 'b', "Make a ticket standby"},
{"ticket-activate", 1, 0, 'e', "Activate a ticket"},
{"-spacer-", 0, 0, '-', "\nOutput Options:"},
{"save-input", 1, 0, 'I', "\tSave the input configuration to the named file"},
{"save-output", 1, 0, 'O', "Save the output configuration to the named file"},
{"save-graph", 1, 0, 'G', "\tSave the transition graph (XML format) to the named file"},
{"save-dotfile", 1, 0, 'D', "Save the transition graph (DOT format) to the named file"},
{"all-actions", 0, 0, 'a', "\tDisplay all possible actions in the DOT graph - even ones not part of the transition"},
{"-spacer-", 0, 0, '-', "\nData Source:"},
{"live-check", 0, 0, 'L', "\tConnect to the CIB mamager and use the current CIB contents as input"},
{"xml-file", 1, 0, 'x', "\tRetrieve XML from the named file"},
{"xml-pipe", 0, 0, 'p', "\tRetrieve XML from stdin"},
{"-spacer-", 0, 0, '-', "\nExamples:\n"},
{"-spacer-", 0, 0, '-', "Pretend a recurring monitor action found memcached stopped on node fred.example.com and, during recovery, that the memcached stop action failed", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " crm_simulate -LS --op-inject memcached:0_monitor_20000@bart.example.com=7 --op-fail memcached:0_stop_0@fred.example.com=1 --save-output /tmp/memcached-test.xml", pcmk_option_example},
{"-spacer-", 0, 0, '-', "Now see what the reaction to the stop failure would be", pcmk_option_paragraph},
{"-spacer-", 0, 0, '-', " crm_simulate -S --xml-file /tmp/memcached-test.xml", pcmk_option_example},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
static void
profile_one(const char *xml_file, pe_working_set_t *data_set)
{
xmlNode *cib_object = NULL;
printf("* Testing %s\n", xml_file);
cib_object = filename2xml(xml_file);
if (get_object_root(XML_CIB_TAG_STATUS, cib_object) == NULL) {
create_xml_node(cib_object, XML_CIB_TAG_STATUS);
}
if (cli_config_update(&cib_object, NULL, FALSE) == FALSE) {
free_xml(cib_object);
return;
}
if (validate_xml(cib_object, NULL, FALSE) != TRUE) {
free_xml(cib_object);
return;
}
data_set->input = cib_object;
get_date(data_set);
do_calculations(data_set, cib_object, NULL);
pe_reset_working_set(data_set);
}
#ifndef FILENAME_MAX
# define FILENAME_MAX 512
#endif
static void
profile_all(const char *dir, pe_working_set_t *data_set)
{
struct dirent **namelist;
int file_num = scandir(dir, &namelist, 0, alphasort);
if (file_num > 0) {
struct stat prop;
char buffer[FILENAME_MAX];
while (file_num--) {
if ('.' == namelist[file_num]->d_name[0]) {
free(namelist[file_num]);
continue;
} else if (!crm_ends_with_ext(namelist[file_num]->d_name, ".xml")) {
free(namelist[file_num]);
continue;
}
snprintf(buffer, sizeof(buffer), "%s/%s", dir, namelist[file_num]->d_name);
if (stat(buffer, &prop) == 0 && S_ISREG(prop.st_mode)) {
profile_one(buffer, data_set);
}
free(namelist[file_num]);
}
free(namelist);
}
}
static int
count_resources(pe_working_set_t * data_set, resource_t * rsc)
{
int count = 0;
GListPtr gIter = NULL;
if (rsc == NULL) {
gIter = data_set->resources;
} else if (rsc->children) {
gIter = rsc->children;
} else {
return is_not_set(rsc->flags, pe_rsc_orphan);
}
for (; gIter != NULL; gIter = gIter->next) {
count += count_resources(data_set, gIter->data);
}
return count;
}
int
main(int argc, char **argv)
{
int rc = pcmk_ok;
guint modified = 0;
gboolean store = FALSE;
gboolean process = FALSE;
gboolean simulate = FALSE;
gboolean all_actions = FALSE;
gboolean have_stdout = FALSE;
pe_working_set_t *data_set = NULL;
const char *xml_file = "-";
const char *quorum = NULL;
const char *watchdog = NULL;
const char *test_dir = NULL;
const char *dot_file = NULL;
const char *graph_file = NULL;
const char *input_file = NULL;
const char *output_file = NULL;
int flag = 0;
int index = 0;
int argerr = 0;
GListPtr node_up = NULL;
GListPtr node_down = NULL;
GListPtr node_fail = NULL;
GListPtr op_inject = NULL;
GListPtr ticket_grant = NULL;
GListPtr ticket_revoke = NULL;
GListPtr ticket_standby = NULL;
GListPtr ticket_activate = NULL;
xmlNode *input = NULL;
crm_log_cli_init("crm_simulate");
crm_set_options(NULL, "datasource operation [additional options]",
long_options, "Tool for simulating the cluster's response to events");
if (argc < 2) {
crm_help('?', CRM_EX_USAGE);
}
while (1) {
flag = crm_get_option(argc, argv, &index);
if (flag == -1)
break;
switch (flag) {
case 'V':
if (have_stdout == FALSE) {
/* Redirect stderr to stdout so we can grep the output */
have_stdout = TRUE;
close(STDERR_FILENO);
dup2(STDOUT_FILENO, STDERR_FILENO);
}
crm_bump_log_level(argc, argv);
action_numbers = TRUE;
break;
case '?':
case '$':
crm_help(flag, CRM_EX_OK);
break;
case 'p':
xml_file = "-";
break;
case 'Q':
quiet = TRUE;
break;
case 'L':
xml_file = NULL;
break;
case 'x':
xml_file = optarg;
break;
case 'u':
modified++;
bringing_nodes_online = TRUE;
node_up = g_list_append(node_up, optarg);
break;
case 'd':
modified++;
node_down = g_list_append(node_down, optarg);
break;
case 'f':
modified++;
node_fail = g_list_append(node_fail, optarg);
break;
case 't':
use_date = strdup(optarg);
break;
case 'i':
modified++;
op_inject = g_list_append(op_inject, optarg);
break;
case 'F':
process = TRUE;
simulate = TRUE;
op_fail = g_list_append(op_fail, optarg);
break;
case 'w':
modified++;
watchdog = optarg;
break;
case 'q':
modified++;
quorum = optarg;
break;
case 'g':
modified++;
ticket_grant = g_list_append(ticket_grant, optarg);
break;
case 'r':
modified++;
ticket_revoke = g_list_append(ticket_revoke, optarg);
break;
case 'b':
modified++;
ticket_standby = g_list_append(ticket_standby, optarg);
break;
case 'e':
modified++;
ticket_activate = g_list_append(ticket_activate, optarg);
break;
case 'a':
all_actions = TRUE;
break;
case 's':
process = TRUE;
show_scores = TRUE;
break;
case 'U':
process = TRUE;
show_utilization = TRUE;
break;
case 'j':
print_pending = TRUE;
break;
case 'S':
process = TRUE;
simulate = TRUE;
break;
case 'X':
store = TRUE;
process = TRUE;
simulate = TRUE;
break;
case 'R':
process = TRUE;
break;
case 'D':
process = TRUE;
dot_file = optarg;
break;
case 'G':
process = TRUE;
graph_file = optarg;
break;
case 'I':
input_file = optarg;
break;
case 'O':
output_file = optarg;
break;
case 'P':
test_dir = optarg;
break;
default:
++argerr;
break;
}
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
data_set = pe_new_working_set();
if (data_set == NULL) {
crm_perror(LOG_ERR, "Could not allocate working set");
rc = -ENOMEM;
goto done;
}
if (test_dir != NULL) {
profile_all(test_dir, data_set);
return CRM_EX_OK;
}
setup_input(xml_file, store ? xml_file : output_file);
global_cib = cib_new();
rc = global_cib->cmds->signon(global_cib, crm_system_name, cib_command);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not connect to the CIB manager: %s\n",
pcmk_strerror(rc));
goto done;
}
rc = global_cib->cmds->query(global_cib, NULL, &input, cib_sync_call | cib_scope_local);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not get local CIB: %s\n", pcmk_strerror(rc));
goto done;
}
data_set->input = input;
get_date(data_set);
if(xml_file) {
set_bit(data_set->flags, pe_flag_sanitized);
}
set_bit(data_set->flags, pe_flag_stdout);
cluster_status(data_set);
if (quiet == FALSE) {
int options = print_pending ? pe_print_pending : 0;
if (is_set(data_set->flags, pe_flag_maintenance_mode)) {
quiet_log("\n *** Resource management is DISABLED ***");
quiet_log("\n The cluster will not attempt to start, stop or recover services");
quiet_log("\n");
}
if (data_set->disabled_resources || data_set->blocked_resources) {
quiet_log("%d of %d resources DISABLED and %d BLOCKED from being started due to failures\n",
data_set->disabled_resources,
count_resources(data_set, NULL),
data_set->blocked_resources);
}
quiet_log("\nCurrent cluster status:\n");
print_cluster_status(data_set, options);
}
if (modified) {
quiet_log("Performing requested modifications\n");
modify_configuration(data_set, global_cib, quorum, watchdog, node_up, node_down, node_fail, op_inject,
ticket_grant, ticket_revoke, ticket_standby, ticket_activate);
rc = global_cib->cmds->query(global_cib, NULL, &input, cib_sync_call);
if (rc != pcmk_ok) {
fprintf(stderr, "Could not get modified CIB: %s\n", pcmk_strerror(rc));
goto done;
}
cleanup_calculations(data_set);
data_set->input = input;
get_date(data_set);
if(xml_file) {
set_bit(data_set->flags, pe_flag_sanitized);
}
set_bit(data_set->flags, pe_flag_stdout);
cluster_status(data_set);
}
if (input_file != NULL) {
rc = write_xml_file(input, input_file, FALSE);
if (rc < 0) {
fprintf(stderr, "Could not create '%s': %s\n",
input_file, pcmk_strerror(rc));
goto done;
}
}
if (process || simulate) {
crm_time_t *local_date = NULL;
if (show_scores && show_utilization) {
printf("Allocation scores and utilization information:\n");
} else if (show_scores) {
fprintf(stdout, "Allocation scores:\n");
} else if (show_utilization) {
printf("Utilization information:\n");
}
do_calculations(data_set, input, local_date);
input = NULL; /* Don't try and free it twice */
if (graph_file != NULL) {
write_xml_file(data_set->graph, graph_file, FALSE);
}
if (dot_file != NULL) {
create_dotfile(data_set, dot_file, all_actions);
}
if (quiet == FALSE) {
GListPtr gIter = NULL;
quiet_log("%sTransition Summary:\n", show_scores || show_utilization
|| modified ? "\n" : "");
fflush(stdout);
LogNodeActions(data_set, TRUE);
for (gIter = data_set->resources; gIter != NULL; gIter = gIter->next) {
resource_t *rsc = (resource_t *) gIter->data;
LogActions(rsc, data_set, TRUE);
}
}
}
rc = pcmk_ok;
if (simulate) {
if (run_simulation(data_set, global_cib, op_fail, quiet) != pcmk_ok) {
rc = pcmk_err_generic;
}
if(quiet == FALSE) {
get_date(data_set);
quiet_log("\nRevised cluster status:\n");
set_bit(data_set->flags, pe_flag_stdout);
cluster_status(data_set);
print_cluster_status(data_set, 0);
}
}
done:
pe_free_working_set(data_set);
global_cib->cmds->signoff(global_cib);
cib_delete(global_cib);
free(use_date);
fflush(stderr);
if (temp_shadow) {
unlink(temp_shadow);
free(temp_shadow);
}
- return crm_exit(crm_errno2exit(rc));
+ crm_exit(crm_errno2exit(rc));
}
diff --git a/tools/crm_ticket.c b/tools/crm_ticket.c
index 9a7234f3c9..f94437d00d 100644
--- a/tools/crm_ticket.c
+++ b/tools/crm_ticket.c
@@ -1,902 +1,904 @@
/*
- * Copyright 2012-2018 Gao,Yan
+ * Copyright 2012-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
gboolean do_force = FALSE;
gboolean BE_QUIET = FALSE;
const char *ticket_id = NULL;
const char *get_attr_name = NULL;
const char *attr_name = NULL;
const char *attr_value = NULL;
const char *attr_id = NULL;
const char *set_name = NULL;
const char *attr_default = NULL;
char ticket_cmd = 'S';
char *xml_file = NULL;
int cib_options = cib_sync_call;
static ticket_t *
find_ticket(const char *ticket_id, pe_working_set_t * data_set)
{
ticket_t *ticket = NULL;
ticket = g_hash_table_lookup(data_set->tickets, ticket_id);
return ticket;
}
static void
print_date(time_t time)
{
int lpc = 0;
char date_str[26];
asctime_r(localtime(&time), date_str);
for (; lpc < 26; lpc++) {
if (date_str[lpc] == '\n') {
date_str[lpc] = 0;
}
}
fprintf(stdout, "'%s'", date_str);
}
static int
print_ticket(ticket_t * ticket, gboolean raw, gboolean details)
{
if (raw) {
fprintf(stdout, "%s\n", ticket->id);
return pcmk_ok;
}
fprintf(stdout, "%s\t%s %s",
ticket->id, ticket->granted ? "granted" : "revoked",
ticket->standby ? "[standby]" : " ");
if (details && g_hash_table_size(ticket->state) > 0) {
GHashTableIter iter;
const char *name = NULL;
const char *value = NULL;
int lpc = 0;
fprintf(stdout, " (");
g_hash_table_iter_init(&iter, ticket->state);
while (g_hash_table_iter_next(&iter, (void **)&name, (void **)&value)) {
if (lpc > 0) {
fprintf(stdout, ", ");
}
fprintf(stdout, "%s=", name);
if (crm_str_eq(name, "last-granted", TRUE)
|| crm_str_eq(name, "expires", TRUE)) {
print_date(crm_parse_int(value, 0));
} else {
fprintf(stdout, "%s", value);
}
lpc++;
}
fprintf(stdout, ")\n");
} else {
if (ticket->last_granted > -1) {
fprintf(stdout, " last-granted=");
print_date(ticket->last_granted);
}
fprintf(stdout, "\n");
}
return pcmk_ok;
}
static int
print_ticket_list(pe_working_set_t * data_set, gboolean raw, gboolean details)
{
GHashTableIter iter;
ticket_t *ticket = NULL;
g_hash_table_iter_init(&iter, data_set->tickets);
while (g_hash_table_iter_next(&iter, NULL, (void **)&ticket)) {
print_ticket(ticket, raw, details);
}
return pcmk_ok;
}
#define XPATH_MAX 1024
static int
find_ticket_state(cib_t * the_cib, const char *ticket_id, xmlNode ** ticket_state_xml)
{
int offset = 0;
int rc = pcmk_ok;
xmlNode *xml_search = NULL;
char *xpath_string = NULL;
CRM_ASSERT(ticket_state_xml != NULL);
*ticket_state_xml = NULL;
xpath_string = calloc(1, XPATH_MAX);
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "%s", "/cib/status/tickets");
if (ticket_id) {
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "/%s[@id=\"%s\"]",
XML_CIB_TAG_TICKET_STATE, ticket_id);
}
CRM_LOG_ASSERT(offset > 0);
rc = the_cib->cmds->query(the_cib, xpath_string, &xml_search,
cib_sync_call | cib_scope_local | cib_xpath);
if (rc != pcmk_ok) {
goto bail;
}
crm_log_xml_debug(xml_search, "Match");
if (xml_has_children(xml_search)) {
if (ticket_id) {
fprintf(stdout, "Multiple ticket_states match ticket_id=%s\n", ticket_id);
}
*ticket_state_xml = xml_search;
} else {
*ticket_state_xml = xml_search;
}
bail:
free(xpath_string);
return rc;
}
static int
find_ticket_constraints(cib_t * the_cib, const char *ticket_id, xmlNode ** ticket_cons_xml)
{
int offset = 0;
int rc = pcmk_ok;
xmlNode *xml_search = NULL;
char *xpath_string = NULL;
CRM_ASSERT(ticket_cons_xml != NULL);
*ticket_cons_xml = NULL;
xpath_string = calloc(1, XPATH_MAX);
offset +=
snprintf(xpath_string + offset, XPATH_MAX - offset, "%s/%s",
get_object_path(XML_CIB_TAG_CONSTRAINTS), XML_CONS_TAG_RSC_TICKET);
if (ticket_id) {
offset += snprintf(xpath_string + offset, XPATH_MAX - offset, "[@ticket=\"%s\"]",
ticket_id);
}
CRM_LOG_ASSERT(offset > 0);
rc = the_cib->cmds->query(the_cib, xpath_string, &xml_search,
cib_sync_call | cib_scope_local | cib_xpath);
if (rc != pcmk_ok) {
goto bail;
}
crm_log_xml_debug(xml_search, "Match");
*ticket_cons_xml = xml_search;
bail:
free(xpath_string);
return rc;
}
static int
dump_ticket_xml(cib_t * the_cib, const char *ticket_id)
{
int rc = pcmk_ok;
xmlNode *state_xml = NULL;
rc = find_ticket_state(the_cib, ticket_id, &state_xml);
if (state_xml == NULL) {
return rc;
}
fprintf(stdout, "State XML:\n");
if (state_xml) {
char *state_xml_str = NULL;
state_xml_str = dump_xml_formatted(state_xml);
fprintf(stdout, "\n%s\n", crm_str(state_xml_str));
free_xml(state_xml);
free(state_xml_str);
}
return pcmk_ok;
}
static int
dump_constraints(cib_t * the_cib, const char *ticket_id)
{
int rc = pcmk_ok;
xmlNode *cons_xml = NULL;
char *cons_xml_str = NULL;
rc = find_ticket_constraints(the_cib, ticket_id, &cons_xml);
if (cons_xml == NULL) {
return rc;
}
cons_xml_str = dump_xml_formatted(cons_xml);
fprintf(stdout, "Constraints XML:\n\n%s\n", crm_str(cons_xml_str));
free_xml(cons_xml);
free(cons_xml_str);
return pcmk_ok;
}
static int
get_ticket_state_attr(const char *ticket_id, const char *attr_name, const char **attr_value,
pe_working_set_t * data_set)
{
ticket_t *ticket = NULL;
CRM_ASSERT(attr_value != NULL);
*attr_value = NULL;
ticket = g_hash_table_lookup(data_set->tickets, ticket_id);
if (ticket == NULL) {
return -ENXIO;
}
*attr_value = g_hash_table_lookup(ticket->state, attr_name);
if (*attr_value == NULL) {
return -ENXIO;
}
return pcmk_ok;
}
static gboolean
ticket_warning(const char *ticket_id, const char *action)
{
gboolean rc = FALSE;
int offset = 0;
static int text_max = 1024;
char *warning = NULL;
const char *word = NULL;
warning = calloc(1, text_max);
if (safe_str_eq(action, "grant")) {
offset += snprintf(warning + offset, text_max - offset,
"This command cannot help you verify whether '%s' has been already granted elsewhere.\n",
ticket_id);
word = "to";
} else {
offset += snprintf(warning + offset, text_max - offset,
"Revoking '%s' can trigger the specified 'loss-policy'(s) relating to '%s'.\n\n",
ticket_id, ticket_id);
offset += snprintf(warning + offset, text_max - offset,
"You can check that with:\ncrm_ticket --ticket %s --constraints\n\n",
ticket_id);
offset += snprintf(warning + offset, text_max - offset,
"Otherwise before revoking '%s', you may want to make '%s' standby with:\ncrm_ticket --ticket %s --standby\n\n",
ticket_id, ticket_id, ticket_id);
word = "from";
}
offset += snprintf(warning + offset, text_max - offset,
"If you really want to %s '%s' %s this site now, and you know what you are doing,\n",
action, ticket_id, word);
offset += snprintf(warning + offset, text_max - offset,
"please specify --force.");
CRM_LOG_ASSERT(offset > 0);
fprintf(stdout, "%s\n", warning);
free(warning);
return rc;
}
static gboolean
allow_modification(const char *ticket_id, GListPtr attr_delete,
GHashTable *attr_set)
{
const char *value = NULL;
GListPtr list_iter = NULL;
if (do_force) {
return TRUE;
}
if (g_hash_table_lookup_extended(attr_set, "granted", NULL, (gpointer *) & value)) {
if (crm_is_true(value)) {
ticket_warning(ticket_id, "grant");
return FALSE;
} else {
ticket_warning(ticket_id, "revoke");
return FALSE;
}
}
for(list_iter = attr_delete; list_iter; list_iter = list_iter->next) {
const char *key = (const char *)list_iter->data;
if (safe_str_eq(key, "granted")) {
ticket_warning(ticket_id, "revoke");
return FALSE;
}
}
return TRUE;
}
static int
modify_ticket_state(const char * ticket_id, GListPtr attr_delete, GHashTable * attr_set,
cib_t * cib, pe_working_set_t * data_set)
{
int rc = pcmk_ok;
xmlNode *xml_top = NULL;
xmlNode *ticket_state_xml = NULL;
gboolean found = FALSE;
GListPtr list_iter = NULL;
GHashTableIter hash_iter;
char *key = NULL;
char *value = NULL;
ticket_t *ticket = NULL;
rc = find_ticket_state(cib, ticket_id, &ticket_state_xml);
if (rc == pcmk_ok) {
crm_debug("Found a match state for ticket: id=%s", ticket_id);
xml_top = ticket_state_xml;
found = TRUE;
} else if (rc != -ENXIO) {
return rc;
} else if (g_hash_table_size(attr_set) == 0){
return pcmk_ok;
} else {
xmlNode *xml_obj = NULL;
xml_top = create_xml_node(NULL, XML_CIB_TAG_STATUS);
xml_obj = create_xml_node(xml_top, XML_CIB_TAG_TICKETS);
ticket_state_xml = create_xml_node(xml_obj, XML_CIB_TAG_TICKET_STATE);
crm_xml_add(ticket_state_xml, XML_ATTR_ID, ticket_id);
}
for(list_iter = attr_delete; list_iter; list_iter = list_iter->next) {
const char *key = (const char *)list_iter->data;
xml_remove_prop(ticket_state_xml, key);
}
ticket = find_ticket(ticket_id, data_set);
g_hash_table_iter_init(&hash_iter, attr_set);
while (g_hash_table_iter_next(&hash_iter, (gpointer *) & key, (gpointer *) & value)) {
crm_xml_add(ticket_state_xml, key, value);
if (safe_str_eq(key, "granted")
&& (ticket == NULL || ticket->granted == FALSE)
&& crm_is_true(value)) {
char *now = crm_itoa(time(NULL));
crm_xml_add(ticket_state_xml, "last-granted", now);
free(now);
}
}
if (found && g_list_length(attr_delete)) {
crm_log_xml_debug(xml_top, "Replace");
rc = cib->cmds->replace(cib, XML_CIB_TAG_STATUS, ticket_state_xml, cib_options);
} else {
crm_log_xml_debug(xml_top, "Update");
rc = cib->cmds->modify(cib, XML_CIB_TAG_STATUS, xml_top, cib_options);
}
free_xml(xml_top);
return rc;
}
static int
delete_ticket_state(const char *ticket_id, cib_t * cib)
{
xmlNode *ticket_state_xml = NULL;
int rc = pcmk_ok;
rc = find_ticket_state(cib, ticket_id, &ticket_state_xml);
if (rc == -ENXIO) {
return pcmk_ok;
} else if (rc != pcmk_ok) {
return rc;
}
crm_log_xml_debug(ticket_state_xml, "Delete");
rc = cib->cmds->remove(cib, XML_CIB_TAG_STATUS, ticket_state_xml, cib_options);
if (rc == pcmk_ok) {
fprintf(stdout, "Cleaned up %s\n", ticket_id);
}
free_xml(ticket_state_xml);
return rc;
}
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\t\tThis text"},
{"version", 0, 0, '$', "\t\tVersion information" },
{"verbose", 0, 0, 'V', "\t\tIncrease debug output"},
{"quiet", 0, 0, 'Q', "\t\tPrint only the value on stdout\n"},
{"ticket", 1, 0, 't', "\tTicket ID" },
{"-spacer-", 1, 0, '-', "\nQueries:"},
{"info", 0, 0, 'l', "\t\tDisplay the information of ticket(s)"},
{"details", 0, 0, 'L', "\t\tDisplay the details of ticket(s)"},
{"raw", 0, 0, 'w', "\t\tDisplay the IDs of ticket(s)"},
{"query-xml", 0, 0, 'q', "\tQuery the XML of ticket(s)"},
{"constraints",0, 0, 'c', "\tDisplay the rsc_ticket constraints that apply to ticket(s)"},
{"-spacer-", 1, 0, '-', "\nCommands:"},
{"grant", 0, 0, 'g', "\t\tGrant a ticket to this cluster site"},
{"revoke", 0, 0, 'r', "\t\tRevoke a ticket from this cluster site"},
{"standby", 0, 0, 's', "\t\tTell this cluster site this ticket is standby"},
{"activate", 0, 0, 'a', "\tTell this cluster site this ticket is active"},
{"-spacer-", 1, 0, '-', "\nAdvanced Commands:"},
{"get-attr", 1, 0, 'G', "\tDisplay the named attribute for a ticket"},
{"set-attr", 1, 0, 'S', "\tSet the named attribtue for a ticket"},
{"delete-attr",1, 0, 'D', "\tDelete the named attribute for a ticket"},
{"cleanup", 0, 0, 'C', "\t\tDelete all state of a ticket at this cluster site"},
{"-spacer-", 1, 0, '-', "\nAdditional Options:"},
{"attr-value", 1, 0, 'v', "\tAttribute value to use with -S"},
{"default", 1, 0, 'd', "\t(Advanced) The default attribute value to display if none is found. For use with -G"},
{"force", 0, 0, 'f', "\t\t(Advanced) Force the action to be performed"},
{"xml-file", 1, 0, 'x', NULL, 1},
/* legacy options */
{"set-name", 1, 0, 'n', "\t(Advanced) ID of the instance_attributes object to change"},
{"nvpair", 1, 0, 'i', "\t(Advanced) ID of the nvpair object to change/delete"},
{"-spacer-", 1, 0, '-', "\nExamples:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "Display the info of tickets:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --info", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Display the detailed info of tickets:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --details", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Display the XML of 'ticketA':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --query-xml", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Display the rsc_ticket constraints that apply to 'ticketA':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --constraints", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Grant 'ticketA' to this cluster site:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --grant", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Revoke 'ticketA' from this cluster site:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --revoke", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Make 'ticketA' standby:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "The cluster site will treat a granted 'ticketA' as 'standby'."},
{"-spacer-", 1, 0, '-', "The dependent resources will be stopped or demoted gracefully without triggering loss-policies", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --standby", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Activate 'ticketA' from being standby:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --activate", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Get the value of the 'granted' attribute for 'ticketA':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --get-attr granted", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Set the value of the 'standby' attribute for 'ticketA':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --set-attr standby --attr-value true", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Delete the 'granted' attribute for 'ticketA':", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --delete-attr granted", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Erase the operation history of 'ticketA' at this cluster site:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "The cluster site will 'forget' the existing ticket state.", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_ticket --ticket ticketA --cleanup", pcmk_option_example},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
pe_working_set_t *data_set = NULL;
xmlNode *cib_xml_copy = NULL;
xmlNode *cib_constraints = NULL;
cib_t *cib_conn = NULL;
crm_exit_t exit_code = CRM_EX_OK;
int rc = pcmk_ok;
int option_index = 0;
int argerr = 0;
int flag;
guint modified = 0;
GListPtr attr_delete = NULL;
GHashTable *attr_set = crm_str_table_new();
crm_log_init(NULL, LOG_CRIT, FALSE, FALSE, argc, argv, FALSE);
crm_set_options(NULL, "(query|command) [options]", long_options,
"Perform tasks related to cluster tickets.\nAllows ticket attributes to be queried, modified and deleted.\n");
if (argc < 2) {
crm_help('?', CRM_EX_USAGE);
}
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
case 'Q':
BE_QUIET = TRUE;
break;
case 't':
ticket_id = optarg;
break;
case 'l':
case 'L':
case 'w':
case 'q':
case 'c':
ticket_cmd = flag;
break;
case 'g':
g_hash_table_insert(attr_set, strdup("granted"), strdup("true"));
modified++;
break;
case 'r':
g_hash_table_insert(attr_set, strdup("granted"), strdup("false"));
modified++;
break;
case 's':
g_hash_table_insert(attr_set, strdup("standby"), strdup("true"));
modified++;
break;
case 'a':
g_hash_table_insert(attr_set, strdup("standby"), strdup("false"));
modified++;
break;
case 'G':
get_attr_name = optarg;
ticket_cmd = flag;
break;
case 'S':
attr_name = optarg;
if (attr_name && attr_value) {
g_hash_table_insert(attr_set, strdup(attr_name), strdup(attr_value));
attr_name = NULL;
attr_value = NULL;
modified++;
}
break;
case 'D':
attr_delete = g_list_append(attr_delete, optarg);
modified++;
break;
case 'C':
ticket_cmd = flag;
break;
case 'v':
attr_value = optarg;
if (attr_name && attr_value) {
g_hash_table_insert(attr_set, strdup(attr_name), strdup(attr_value));
attr_name = NULL;
attr_value = NULL;
modified++;
}
break;
case 'd':
attr_default = optarg;
break;
case 'f':
do_force = TRUE;
break;
case 'x':
xml_file = strdup(optarg);
break;
case 'n':
set_name = optarg;
break;
case 'i':
attr_id = optarg;
break;
default:
CMD_ERR("Argument code 0%o (%c) is not (?yet?) supported", flag, flag);
++argerr;
break;
}
}
if (optind < argc && argv[optind] != NULL) {
CMD_ERR("non-option ARGV-elements:");
while (optind < argc && argv[optind] != NULL) {
CMD_ERR("%s", argv[optind++]);
++argerr;
}
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_help('?', CRM_EX_USAGE);
}
data_set = pe_new_working_set();
if (data_set == NULL) {
crm_perror(LOG_CRIT, "Could not allocate working set");
exit_code = CRM_EX_OSERR;
goto bail;
}
cib_conn = cib_new();
if (cib_conn == NULL) {
CMD_ERR("Could not connect to the CIB manager");
exit_code = CRM_EX_DISCONNECT;
goto bail;
}
rc = cib_conn->cmds->signon(cib_conn, crm_system_name, cib_command);
if (rc != pcmk_ok) {
CMD_ERR("Could not connect to the CIB manager: %s", pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto bail;
}
if (xml_file != NULL) {
cib_xml_copy = filename2xml(xml_file);
} else {
rc = cib_conn->cmds->query(cib_conn, NULL, &cib_xml_copy, cib_scope_local | cib_sync_call);
if (rc != pcmk_ok) {
CMD_ERR("Could not get local CIB: %s", pcmk_strerror(rc));
exit_code = crm_errno2exit(rc);
goto bail;
}
}
if (cli_config_update(&cib_xml_copy, NULL, FALSE) == FALSE) {
CMD_ERR("Could not update local CIB to latest schema version");
exit_code = CRM_EX_CONFIG;
goto bail;
}
data_set->input = cib_xml_copy;
data_set->now = crm_time_new(NULL);
cluster_status(data_set);
/* For recording the tickets that are referenced in rsc_ticket constraints
* but have never been granted yet. */
cib_constraints = get_object_root(XML_CIB_TAG_CONSTRAINTS, data_set->input);
unpack_constraints(cib_constraints, data_set);
if (ticket_cmd == 'l' || ticket_cmd == 'L' || ticket_cmd == 'w') {
gboolean raw = FALSE;
gboolean details = FALSE;
if (ticket_cmd == 'L') {
details = TRUE;
} else if (ticket_cmd == 'w') {
raw = TRUE;
}
if (ticket_id) {
ticket_t *ticket = find_ticket(ticket_id, data_set);
if (ticket == NULL) {
CMD_ERR("No such ticket '%s'", ticket_id);
exit_code = CRM_EX_NOSUCH;
goto bail;
}
rc = print_ticket(ticket, raw, details);
} else {
rc = print_ticket_list(data_set, raw, details);
}
if (rc != pcmk_ok) {
CMD_ERR("Could not print ticket: %s", pcmk_strerror(rc));
}
exit_code = crm_errno2exit(rc);
} else if (ticket_cmd == 'q') {
rc = dump_ticket_xml(cib_conn, ticket_id);
if (rc != pcmk_ok) {
CMD_ERR("Could not query ticket XML: %s", pcmk_strerror(rc));
}
exit_code = crm_errno2exit(rc);
} else if (ticket_cmd == 'c') {
rc = dump_constraints(cib_conn, ticket_id);
if (rc != pcmk_ok) {
CMD_ERR("Could not show ticket constraints: %s", pcmk_strerror(rc));
}
exit_code = crm_errno2exit(rc);
} else if (ticket_cmd == 'G') {
const char *value = NULL;
if (ticket_id == NULL) {
CMD_ERR("Must supply ticket ID with -t");
exit_code = CRM_EX_NOSUCH;
goto bail;
}
rc = get_ticket_state_attr(ticket_id, get_attr_name, &value, data_set);
if (rc == pcmk_ok) {
fprintf(stdout, "%s\n", value);
} else if (rc == -ENXIO && attr_default) {
fprintf(stdout, "%s\n", attr_default);
rc = pcmk_ok;
}
exit_code = crm_errno2exit(rc);
} else if (ticket_cmd == 'C') {
if (ticket_id == NULL) {
CMD_ERR("Must supply ticket ID with -t");
exit_code = CRM_EX_USAGE;
goto bail;
}
if (do_force == FALSE) {
ticket_t *ticket = NULL;
ticket = find_ticket(ticket_id, data_set);
if (ticket == NULL) {
CMD_ERR("No such ticket '%s'", ticket_id);
exit_code = CRM_EX_NOSUCH;
goto bail;
}
if (ticket->granted) {
ticket_warning(ticket_id, "revoke");
exit_code = CRM_EX_INSUFFICIENT_PRIV;
goto bail;
}
}
rc = delete_ticket_state(ticket_id, cib_conn);
if (rc != pcmk_ok) {
CMD_ERR("Could not clean up ticket: %s", pcmk_strerror(rc));
}
exit_code = crm_errno2exit(rc);
} else if (modified) {
if (ticket_id == NULL) {
CMD_ERR("Must supply ticket ID with -t");
exit_code = CRM_EX_USAGE;
goto bail;
}
if (attr_value
&& (attr_name == NULL || strlen(attr_name) == 0)) {
CMD_ERR("Must supply attribute name with -S for -v %s", attr_value);
exit_code = CRM_EX_USAGE;
goto bail;
}
if (attr_name
&& (attr_value == NULL || strlen(attr_value) == 0)) {
CMD_ERR("Must supply attribute value with -v for -S %s", attr_name);
exit_code = CRM_EX_USAGE;
goto bail;
}
if (allow_modification(ticket_id, attr_delete, attr_set) == FALSE) {
CMD_ERR("Ticket modification not allowed");
exit_code = CRM_EX_INSUFFICIENT_PRIV;
goto bail;
}
rc = modify_ticket_state(ticket_id, attr_delete, attr_set, cib_conn, data_set);
if (rc != pcmk_ok) {
CMD_ERR("Could not modify ticket: %s", pcmk_strerror(rc));
}
exit_code = crm_errno2exit(rc);
} else if (ticket_cmd == 'S') {
/* Correct usage was handled in the "if (modified)" block above, so
* this is just for reporting usage errors
*/
if (attr_name == NULL || strlen(attr_name) == 0) {
// We only get here if ticket_cmd was left as default
CMD_ERR("Must supply a command");
exit_code = CRM_EX_USAGE;
goto bail;
}
if (ticket_id == NULL) {
CMD_ERR("Must supply ticket ID with -t");
exit_code = CRM_EX_USAGE;
goto bail;
}
if (attr_value == NULL || strlen(attr_value) == 0) {
CMD_ERR("Must supply value with -v for -S %s", attr_name);
exit_code = CRM_EX_USAGE;
goto bail;
}
} else {
CMD_ERR("Unknown command: %c", ticket_cmd);
exit_code = CRM_EX_USAGE;
}
bail:
if (attr_set) {
g_hash_table_destroy(attr_set);
}
attr_set = NULL;
if (attr_delete) {
g_list_free(attr_delete);
}
attr_delete = NULL;
pe_free_working_set(data_set);
data_set = NULL;
if (cib_conn != NULL) {
cib_conn->cmds->signoff(cib_conn);
cib_delete(cib_conn);
}
if (rc == -pcmk_err_no_quorum) {
CMD_ERR("Use --force to ignore quorum");
}
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}
diff --git a/tools/crm_verify.c b/tools/crm_verify.c
index 562cbd8bdc..4ae926fd5f 100644
--- a/tools/crm_verify.c
+++ b/tools/crm_verify.c
@@ -1,268 +1,270 @@
/*
- * Copyright 2004-2018 Andrew Beekhof
+ * Copyright 2004-2019 the Pacemaker project contributors
+ *
+ * The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
gboolean USE_LIVE_CIB = FALSE;
char *cib_save = NULL;
extern gboolean stage0(pe_working_set_t * data_set);
extern xmlNode *do_calculations(pe_working_set_t * data_set, xmlNode * xml_input, crm_time_t * now);
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tSpecify multiple times to increase debug output\n"},
{"-spacer-", 1, 0, '-', "\nData sources:"},
{"live-check", 0, 0, 'L', "Check the configuration used by the running cluster\n"},
{"xml-file", 1, 0, 'x', "Check the configuration in the named file"},
{"xml-text", 1, 0, 'X', "Check the configuration in the supplied string"},
{"xml-pipe", 0, 0, 'p', "Check the configuration piped in via stdin"},
{"-spacer-", 1, 0, '-', "\nAdditional Options:"},
{"save-xml", 1, 0, 'S', "Save the verified XML to the named file. Most useful with -L"},
{"-spacer-", 1, 0, '-', "\nExamples:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', "Check the consistency of the configuration in the running cluster:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_verify --live-check", pcmk_option_example},
{"-spacer-", 1, 0, '-', "Check the consistency of the configuration in a given file and produce verbose output:", pcmk_option_paragraph},
{"-spacer-", 1, 0, '-', " crm_verify --xml-file file.xml --verbose", pcmk_option_example},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
int
main(int argc, char **argv)
{
xmlNode *cib_object = NULL;
xmlNode *status = NULL;
int argerr = 0;
int flag;
int option_index = 0;
pe_working_set_t *data_set = NULL;
cib_t *cib_conn = NULL;
int rc = pcmk_ok;
bool verbose = FALSE;
gboolean xml_stdin = FALSE;
const char *xml_tag = NULL;
const char *xml_file = NULL;
const char *xml_string = NULL;
crm_log_cli_init("crm_verify");
crm_set_options(NULL, "[modifiers] data_source", long_options,
"check a Pacemaker configuration for errors"
"\n\nCheck the well-formedness of a complete Pacemaker XML configuration,"
"\n\nits conformance to the configured schema, and the presence of common"
"\n\nmisconfigurations. Problems reported as errors must be fixed before the"
"\n\ncluster will work properly. It is left to the administrator to decide"
"\n\nwhether to fix problems reported as warnings.");
while (1) {
flag = crm_get_option(argc, argv, &option_index);
if (flag == -1)
break;
switch (flag) {
case 'X':
crm_trace("Option %c => %s", flag, optarg);
xml_string = optarg;
break;
case 'x':
crm_trace("Option %c => %s", flag, optarg);
xml_file = optarg;
break;
case 'p':
xml_stdin = TRUE;
break;
case 'S':
cib_save = optarg;
break;
case 'V':
verbose = TRUE;
crm_bump_log_level(argc, argv);
break;
case 'L':
USE_LIVE_CIB = TRUE;
break;
case '$':
case '?':
crm_help(flag, CRM_EX_OK);
break;
default:
fprintf(stderr, "Option -%c is not yet supported\n", flag);
++argerr;
break;
}
}
if (optind < argc) {
printf("non-option ARGV-elements: ");
while (optind < argc) {
printf("%s ", argv[optind++]);
}
printf("\n");
}
if (optind > argc) {
++argerr;
}
if (argerr) {
crm_err("%d errors in option parsing", argerr);
crm_help(flag, CRM_EX_USAGE);
}
crm_info("=#=#=#=#= Getting XML =#=#=#=#=");
if (USE_LIVE_CIB) {
cib_conn = cib_new();
rc = cib_conn->cmds->signon(cib_conn, crm_system_name, cib_command);
}
if (USE_LIVE_CIB) {
if (rc == pcmk_ok) {
int options = cib_scope_local | cib_sync_call;
crm_info("Reading XML from: live cluster");
rc = cib_conn->cmds->query(cib_conn, NULL, &cib_object, options);
}
if (rc != pcmk_ok) {
fprintf(stderr, "Live CIB query failed: %s\n", pcmk_strerror(rc));
goto done;
}
if (cib_object == NULL) {
fprintf(stderr, "Live CIB query failed: empty result\n");
rc = -ENOMSG;
goto done;
}
} else if (xml_file != NULL) {
cib_object = filename2xml(xml_file);
if (cib_object == NULL) {
fprintf(stderr, "Couldn't parse input file: %s\n", xml_file);
rc = -ENODATA;
goto done;
}
} else if (xml_string != NULL) {
cib_object = string2xml(xml_string);
if (cib_object == NULL) {
fprintf(stderr, "Couldn't parse input string: %s\n", xml_string);
rc = -ENODATA;
goto done;
}
} else if (xml_stdin) {
cib_object = stdin2xml();
if (cib_object == NULL) {
fprintf(stderr, "Couldn't parse input from STDIN.\n");
rc = -ENODATA;
goto done;
}
} else {
fprintf(stderr, "No configuration source specified."
" Use --help for usage information.\n");
rc = -ENODATA;
goto done;
}
xml_tag = crm_element_name(cib_object);
if (safe_str_neq(xml_tag, XML_TAG_CIB)) {
fprintf(stderr,
"This tool can only check complete configurations (i.e. those starting with ).\n");
rc = -EBADMSG;
goto done;
}
if (cib_save != NULL) {
write_xml_file(cib_object, cib_save, FALSE);
}
status = get_object_root(XML_CIB_TAG_STATUS, cib_object);
if (status == NULL) {
create_xml_node(cib_object, XML_CIB_TAG_STATUS);
}
if (validate_xml(cib_object, NULL, FALSE) == FALSE) {
crm_config_err("CIB did not pass schema validation");
free_xml(cib_object);
cib_object = NULL;
} else if (cli_config_update(&cib_object, NULL, FALSE) == FALSE) {
crm_config_error = TRUE;
free_xml(cib_object);
cib_object = NULL;
fprintf(stderr, "The cluster will NOT be able to use this configuration.\n");
fprintf(stderr, "Please manually update the configuration to conform to the %s syntax.\n",
xml_latest_schema());
}
data_set = pe_new_working_set();
if (data_set == NULL) {
rc = -errno;
crm_perror(LOG_CRIT, "Unable to allocate working set");
goto done;
}
if (cib_object == NULL) {
} else if (status != NULL || USE_LIVE_CIB) {
/* live queries will always have a status section and can do a full simulation */
do_calculations(data_set, cib_object, NULL);
} else {
data_set->now = crm_time_new(NULL);
data_set->input = cib_object;
stage0(data_set);
}
pe_free_working_set(data_set);
if (crm_config_error) {
fprintf(stderr, "Errors found during check: config not valid\n");
if (verbose == FALSE) {
fprintf(stderr, " -V may provide more details\n");
}
rc = -pcmk_err_schema_validation;
} else if (crm_config_warning) {
fprintf(stderr, "Warnings found during check: config may not be valid\n");
if (verbose == FALSE) {
fprintf(stderr, " Use -V -V for more details\n");
}
rc = -pcmk_err_schema_validation;
}
if (USE_LIVE_CIB && cib_conn) {
cib_conn->cmds->signoff(cib_conn);
cib_delete(cib_conn);
}
done:
- return crm_exit(crm_errno2exit(rc));
+ crm_exit(crm_errno2exit(rc));
}
diff --git a/tools/iso8601.c b/tools/iso8601.c
index e885cb65b9..d305d115e6 100644
--- a/tools/iso8601.c
+++ b/tools/iso8601.c
@@ -1,225 +1,225 @@
/*
* Copyright 2005-2019 the Pacemaker project contributors
*
* The version control history for this file may have further details.
*
* This source code is licensed under the GNU General Public License version 2
* or later (GPLv2+) WITHOUT ANY WARRANTY.
*/
#include
#include
#include
#include /* CRM_ASSERT */
#include
char command = 0;
/* *INDENT-OFF* */
static struct crm_option long_options[] = {
/* Top-level Options */
{"help", 0, 0, '?', "\tThis text"},
{"version", 0, 0, '$', "\tVersion information" },
{"verbose", 0, 0, 'V', "\tIncrease debug output"},
{"-spacer-", 0, 0, '-', "\nCommands:"},
{"now", 0, 0, 'n', "\tDisplay the current date/time"},
{"date", 1, 0, 'd', "Parse an ISO8601 date/time. Eg. '2005-01-20 00:30:00 +01:00' or '2005-040'"},
{ "period", 1, 0, 'p',
"Parse an ISO8601 period (interval) with start time (for example, '2005-040/2005-043')"
},
{ "duration", 1, 0, 'D',
"Parse an ISO8601 duration with start time (for example, '2005-040/P1M')"
},
{ "expected", 1, 0, 'E',
"Parse an ISO8601 duration with start time (for example, '2005-040/P1M')"
},
{"-spacer-",0, 0, '-', "\nOutput Modifiers:"},
{"seconds", 0, 0, 's', "\tShow result as a seconds since 0000-001 00:00:00Z"},
{"epoch", 0, 0, 'S', "\tShow result as a seconds since EPOCH (1970-001 00:00:00Z)"},
{"local", 0, 0, 'L', "\tShow result as a 'local' date/time"},
{"ordinal", 0, 0, 'O', "\tShow result as an 'ordinal' date/time"},
{"week", 0, 0, 'W', "\tShow result as an 'calendar week' date/time"},
{"-spacer-",0, 0, '-', "\nFor more information on the ISO8601 standard, see https://en.wikipedia.org/wiki/ISO_8601"},
{0, 0, 0, 0}
};
/* *INDENT-ON* */
static void
log_time_period(int log_level, crm_time_period_t * dtp, int flags)
{
char *start = crm_time_as_string(dtp->start, flags);
char *end = crm_time_as_string(dtp->end, flags);
CRM_ASSERT(start != NULL && end != NULL);
if (log_level < LOG_CRIT) {
printf("Period: %s to %s\n", start, end);
} else {
do_crm_log(log_level, "Period: %s to %s", start, end);
}
free(start);
free(end);
}
int
main(int argc, char **argv)
{
crm_exit_t exit_code = CRM_EX_OK;
int argerr = 0;
int flag;
int index = 0;
int print_options = 0;
crm_time_t *duration = NULL;
crm_time_t *date_time = NULL;
crm_time_period_t *period = NULL;
const char *period_s = NULL;
const char *duration_s = NULL;
const char *date_time_s = NULL;
const char *expected_s = NULL;
crm_log_cli_init("iso8601");
crm_set_options(NULL, "command [output modifier] ", long_options,
"Display and parse ISO8601 dates and times");
if (argc < 2) {
argerr++;
}
while (1) {
flag = crm_get_option(argc, argv, &index);
if (flag == -1)
break;
switch (flag) {
case 'V':
crm_bump_log_level(argc, argv);
break;
case '?':
case '$':
crm_help(flag, CRM_EX_OK);
break;
case 'n':
date_time_s = "now";
break;
case 'd':
date_time_s = optarg;
break;
case 'p':
period_s = optarg;
break;
case 'D':
duration_s = optarg;
break;
case 'E':
expected_s = optarg;
break;
case 'S':
print_options |= crm_time_epoch;
break;
case 's':
print_options |= crm_time_seconds;
break;
case 'W':
print_options |= crm_time_weeks;
break;
case 'O':
print_options |= crm_time_ordinal;
break;
case 'L':
print_options |= crm_time_log_with_timezone;
break;
break;
}
}
if (safe_str_eq("now", date_time_s)) {
date_time = crm_time_new(NULL);
if (date_time == NULL) {
fprintf(stderr, "Internal error: couldn't determine 'now'!\n");
crm_exit(CRM_EX_SOFTWARE);
}
crm_time_log(LOG_TRACE, "Current date/time", date_time,
crm_time_ordinal | crm_time_log_date | crm_time_log_timeofday);
crm_time_log(-1, "Current date/time", date_time,
print_options | crm_time_log_date | crm_time_log_timeofday);
} else if (date_time_s) {
date_time = crm_time_new(date_time_s);
if (date_time == NULL) {
fprintf(stderr, "Invalid date/time specified: %s\n", optarg);
crm_help('?', CRM_EX_USAGE);
}
crm_time_log(LOG_TRACE, "Date", date_time,
crm_time_ordinal | crm_time_log_date | crm_time_log_timeofday);
crm_time_log(-1, "Date", date_time,
print_options | crm_time_log_date | crm_time_log_timeofday);
}
if (duration_s) {
duration = crm_time_parse_duration(duration_s);
if (duration == NULL) {
fprintf(stderr, "Invalid duration specified: %s\n", duration_s);
crm_help('?', CRM_EX_USAGE);
}
crm_time_log(LOG_TRACE, "Duration", duration, crm_time_log_duration);
crm_time_log(-1, "Duration", duration, print_options | crm_time_log_duration);
}
if (period_s) {
period = crm_time_parse_period(period_s);
if (period == NULL) {
fprintf(stderr, "Invalid interval specified: %s\n", optarg);
crm_help('?', CRM_EX_USAGE);
}
log_time_period(LOG_TRACE, period,
print_options | crm_time_log_date | crm_time_log_timeofday);
log_time_period(-1, period,
print_options | crm_time_log_date | crm_time_log_timeofday);
}
if (date_time && duration) {
crm_time_t *later = crm_time_add(date_time, duration);
crm_time_log(LOG_TRACE, "Duration ends at", later,
crm_time_ordinal | crm_time_log_date | crm_time_log_timeofday);
crm_time_log(-1, "Duration ends at", later,
print_options | crm_time_log_date | crm_time_log_timeofday |
crm_time_log_with_timezone);
if (expected_s) {
char *dt_s = crm_time_as_string(later,
print_options | crm_time_log_date |
crm_time_log_timeofday);
if (safe_str_neq(expected_s, dt_s)) {
exit_code = CRM_EX_ERROR;
}
free(dt_s);
}
crm_time_free(later);
} else if (date_time && expected_s) {
char *dt_s = crm_time_as_string(date_time,
print_options | crm_time_log_date | crm_time_log_timeofday);
if (safe_str_neq(expected_s, dt_s)) {
exit_code = CRM_EX_ERROR;
}
free(dt_s);
}
crm_time_free(date_time);
crm_time_free(duration);
if (period) {
crm_time_free(period->start);
crm_time_free(period->end);
crm_time_free(period->diff);
free(period);
}
- return crm_exit(exit_code);
+ crm_exit(exit_code);
}