diff --git a/lib/ais/ipc_bridge.c b/lib/ais/ipc_bridge.c index 5739c09292..69c24bf327 100644 --- a/lib/ais/ipc_bridge.c +++ b/lib/ais/ipc_bridge.c @@ -1,225 +1,225 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include int num_clients = 0; GHashTable *ipc_client_list = NULL; gboolean ais_shutdown_flag = FALSE; typedef struct ais_client_s { char *id; char *name; char *callback_id; const char *channel_name; IPC_Channel *channel; GCHSource *source; unsigned long num_calls; } ais_client_t; static void ais_ipc_connection_destroy(gpointer user_data) { ais_client_t *ais_client = user_data; if(ais_client == NULL) { return; } if(ais_client->source != NULL) { crm_debug_4("Deleting %s (%p) from mainloop", ais_client->name, ais_client->source); G_main_del_IPC_Channel(ais_client->source); ais_client->source = NULL; } crm_debug_3("Destroying %s (%p)", ais_client->name, user_data); num_clients--; crm_debug("Num unfree'd clients: %d", num_clients); crm_free(ais_client->name); crm_free(ais_client->callback_id); crm_free(ais_client->id); crm_free(ais_client); crm_debug_4("Freed the cib client"); return; } static gboolean ais_process_disconnect(IPC_Channel *channel, ais_client_t *ais_client) { if (channel == NULL) { CRM_LOG_ASSERT(ais_client == NULL); } else if (ais_client == NULL) { crm_err("No client"); } else { CRM_LOG_ASSERT(channel->ch_status != IPC_CONNECT); crm_debug_2("Cleaning up after client disconnect: %s/%s/%s", crm_str(ais_client->name), ais_client->channel_name, ais_client->id); if(ais_client->id != NULL) { if(!g_hash_table_remove(ipc_client_list, ais_client->id)) { crm_err("Client %s not found in the hashtable", ais_client->name); } } } if(ais_shutdown_flag && g_hash_table_size(ipc_client_list) == 0) { crm_info("All clients disconnected..."); exit(0); } return FALSE; } static gboolean ais_ipc_callback(IPC_Channel *channel, gpointer user_data) { int lpc = 0; xmlNode *op_request = NULL; gboolean keep_channel = TRUE; ais_client_t *ais_client = user_data; if(ais_client == NULL) { crm_err("Receieved call from unknown source. Discarding."); return FALSE; } if(ais_client->name == NULL) { ais_client->name = crm_itoa(channel->farside_pid); } if(ais_client->id == NULL) { ais_client->id = crm_strdup(ais_client->name); g_hash_table_insert(ipc_client_list, ais_client->id, ais_client); } crm_err("Callback for %s on %s channel", ais_client->id, ais_client->channel_name); while(IPC_ISRCONN(channel)) { if(channel->ops->is_message_pending(channel) == 0) { break; } op_request = msgfromIPC_noauth(channel); if (op_request == NULL) { perror("Receive failure:"); break; } lpc++; crm_assert_failed = FALSE; ha_msg_add(op_request, "client-id", ais_client->id); ha_msg_add(op_request, "client-name", ais_client->name); crm_log_xml(LOG_ERR, "Client[inbound]", op_request); /* cib_common_callback_worker( */ /* op_request, cib_client, force_synchronous, privileged); */ crm_msg_del(op_request); if(channel->ch_status == IPC_CONNECT) { break; } } crm_debug_2("Processed %d messages", lpc); if(channel->ch_status != IPC_CONNECT) { crm_debug_2("Client disconnected"); keep_channel = ais_process_disconnect(channel, ais_client); } return keep_channel; } gboolean ais_client_connect(IPC_Channel *channel, gpointer user_data) { const char *channel_name = user_data; ais_client_t *new_client = NULL; crm_debug_3("Connecting channel"); if (channel == NULL) { crm_err("Channel was NULL"); } else if (channel->ch_status != IPC_CONNECT) { crm_err("Channel was disconnected"); } else if(channel_name == NULL) { crm_err("user_data must contain channel name"); } else if(ais_shutdown_flag) { crm_info("Ignoring new client [%d] during shutdown", channel->farside_pid); } else { crm_malloc0(new_client, sizeof(ais_client_t)); num_clients++; new_client->channel = channel; new_client->channel_name = channel_name; crm_debug_3("Created channel %p for channel %s", new_client, new_client->channel_name); channel->ops->set_recv_qlen(channel, 500); channel->ops->set_send_qlen(channel, 500); new_client->source = G_main_add_IPC_Channel( G_PRIORITY_DEFAULT, channel, FALSE, ais_ipc_callback, new_client, ais_ipc_connection_destroy); crm_debug_3("Channel %s connected for client %s", new_client->channel_name, new_client->id); } if(new_client == NULL) { return FALSE; } return TRUE; } diff --git a/lib/ais/plugin.c b/lib/ais/plugin.c index 339900a3fb..6c50601dae 100644 --- a/lib/ais/plugin.c +++ b/lib/ais/plugin.c @@ -1,1676 +1,1676 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USAA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "plugin.h" #include "utils.h" #include #include #include #include #include #include #include #include #include struct corosync_api_v1 *pcmk_api = NULL; uint32_t plugin_has_votes = 0; uint32_t plugin_expected_votes = 2; int use_mgmtd = 0; int plugin_log_level = LOG_DEBUG; char *local_uname = NULL; int local_uname_len = 0; char *local_cname = NULL; int local_cname_len = 0; uint32_t local_nodeid = 0; char *ipc_channel_name = NULL; static uint64_t local_born_on = 0; uint64_t membership_seq = 0; pthread_t pcmk_wait_thread; gboolean use_mcp = FALSE; gboolean wait_active = TRUE; gboolean have_reliable_membership_id = FALSE; GHashTable *ipc_client_list = NULL; GHashTable *membership_list = NULL; GHashTable *membership_notify_list = NULL; #define MAX_RESPAWN 100 #define LOOPBACK_ID 16777343 #define crm_flag_none 0x00000000 #define crm_flag_members 0x00000001 struct crm_identify_msg_s { coroipc_request_header_t header __attribute__((aligned(8))); uint32_t id; uint32_t pid; int32_t votes; uint32_t processes; char uname[256]; char version[256]; uint64_t born_on; } __attribute__((packed)); static crm_child_t pcmk_children[] = { { 0, crm_proc_none, crm_flag_none, 0, 0, FALSE, "none", NULL, NULL, NULL, NULL }, { 0, crm_proc_ais, crm_flag_none, 0, 0, FALSE, "ais", NULL, NULL, NULL, NULL }, { 0, crm_proc_lrmd, crm_flag_none, 3, 0, TRUE, "lrmd", NULL, HB_DAEMON_DIR"/lrmd", NULL, NULL }, { 0, crm_proc_cib, crm_flag_members, 2, 0, TRUE, "cib", CRM_DAEMON_USER, CRM_DAEMON_DIR"/cib", NULL, NULL }, { 0, crm_proc_crmd, crm_flag_members, 6, 0, TRUE, "crmd", CRM_DAEMON_USER, CRM_DAEMON_DIR"/crmd", NULL, NULL }, { 0, crm_proc_attrd, crm_flag_none, 4, 0, TRUE, "attrd", CRM_DAEMON_USER, CRM_DAEMON_DIR"/attrd", NULL, NULL }, { 0, crm_proc_stonithd, crm_flag_none, 0, 0, TRUE, "stonithd", NULL, "/bin/false", NULL, NULL }, { 0, crm_proc_pe, crm_flag_none, 5, 0, TRUE, "pengine", CRM_DAEMON_USER, CRM_DAEMON_DIR"/pengine", NULL, NULL }, { 0, crm_proc_mgmtd, crm_flag_none, 7, 0, TRUE, "mgmtd", NULL, HB_DAEMON_DIR"/mgmtd", NULL, NULL }, { 0, crm_proc_stonith_ng, crm_flag_none, 1, 0, TRUE, "stonith-ng", NULL, CRM_DAEMON_DIR"/stonithd", NULL, NULL }, }; void send_cluster_id(void); int send_cluster_msg_raw(const AIS_Message *ais_msg); char *pcmk_generate_membership_data(void); gboolean check_message_sanity(const AIS_Message *msg, const char *data); typedef const void ais_void_ptr; int pcmk_shutdown(void); void pcmk_peer_update(enum totem_configuration_type configuration_type, const unsigned int *member_list, size_t member_list_entries, const unsigned int *left_list, size_t left_list_entries, const unsigned int *joined_list, size_t joined_list_entries, const struct memb_ring_id *ring_id); int pcmk_startup (struct corosync_api_v1 *corosync_api); int pcmk_config_init(struct corosync_api_v1 *corosync_api); int pcmk_ipc_exit (void *conn); int pcmk_ipc_connect (void *conn); void pcmk_ipc(void *conn, ais_void_ptr *msg); void pcmk_exec_dump(void); void pcmk_cluster_swab(void *msg); void pcmk_cluster_callback(ais_void_ptr *message, unsigned int nodeid); void pcmk_nodeid(void *conn, ais_void_ptr *msg); void pcmk_nodes(void *conn, ais_void_ptr *msg); void pcmk_notify(void *conn, ais_void_ptr *msg); void pcmk_remove_member(void *conn, ais_void_ptr *msg); void pcmk_quorum(void *conn, ais_void_ptr *msg); void pcmk_cluster_id_swab(void *msg); void pcmk_cluster_id_callback(ais_void_ptr *message, unsigned int nodeid); void ais_remove_peer(char *node_id); static uint32_t get_process_list(void) { int lpc = 0; uint32_t procs = crm_proc_ais; if(use_mcp) { return 0; } for (lpc = 0; lpc < SIZEOF(pcmk_children); lpc++) { if(pcmk_children[lpc].pid != 0) { procs |= pcmk_children[lpc].flag; } } return procs; } static struct corosync_lib_handler pcmk_lib_service[] = { { /* 0 */ .lib_handler_fn = pcmk_ipc, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, }, { /* 1 */ .lib_handler_fn = pcmk_nodes, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, }, { /* 2 */ .lib_handler_fn = pcmk_notify, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, }, { /* 3 */ .lib_handler_fn = pcmk_nodeid, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, }, { /* 4 */ .lib_handler_fn = pcmk_remove_member, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, }, { /* 5 */ .lib_handler_fn = pcmk_quorum, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, }, }; static struct corosync_exec_handler pcmk_exec_service[] = { { /* 0 */ .exec_handler_fn = pcmk_cluster_callback, .exec_endian_convert_fn = pcmk_cluster_swab }, { /* 1 */ .exec_handler_fn = pcmk_cluster_id_callback, .exec_endian_convert_fn = pcmk_cluster_id_swab } }; /* * Exports the interface for the service */ struct corosync_service_engine pcmk_service_handler = { .name = (unsigned char *)"Pacemaker Cluster Manager "PACKAGE_VERSION, .id = PCMK_SERVICE_ID, .private_data_size = 0, .flow_control = COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED, .allow_inquorate = CS_LIB_ALLOW_INQUORATE, .lib_init_fn = pcmk_ipc_connect, .lib_exit_fn = pcmk_ipc_exit, .exec_init_fn = pcmk_startup, .exec_exit_fn = pcmk_shutdown, .config_init_fn = pcmk_config_init, .priority = 50, .lib_engine = pcmk_lib_service, .lib_engine_count = sizeof (pcmk_lib_service) / sizeof (struct corosync_lib_handler), .exec_engine = pcmk_exec_service, .exec_engine_count = sizeof (pcmk_exec_service) / sizeof (struct corosync_exec_handler), .confchg_fn = pcmk_peer_update, .exec_dump_fn = pcmk_exec_dump, /* void (*sync_init) (void); */ /* int (*sync_process) (void); */ /* void (*sync_activate) (void); */ /* void (*sync_abort) (void); */ }; /* * Dynamic Loader definition */ struct corosync_service_engine *pcmk_get_handler_ver0 (void); struct corosync_service_engine_iface_ver0 pcmk_service_handler_iface = { .corosync_get_service_engine_ver0 = pcmk_get_handler_ver0 }; static struct lcr_iface openais_pcmk_ver0[2] = { { .name = "pacemaker", .version = 0, .versions_replace = 0, .versions_replace_count = 0, .dependencies = 0, .dependency_count = 0, .constructor = NULL, .destructor = NULL, .interfaces = NULL }, { .name = "pacemaker", .version = 1, .versions_replace = 0, .versions_replace_count = 0, .dependencies = 0, .dependency_count = 0, .constructor = NULL, .destructor = NULL, .interfaces = NULL } }; static struct lcr_comp pcmk_comp_ver0 = { .iface_count = 2, .ifaces = openais_pcmk_ver0 }; struct corosync_service_engine *pcmk_get_handler_ver0 (void) { return (&pcmk_service_handler); } __attribute__ ((constructor)) static void register_this_component (void) { lcr_interfaces_set (&openais_pcmk_ver0[0], &pcmk_service_handler_iface); lcr_interfaces_set (&openais_pcmk_ver0[1], &pcmk_service_handler_iface); lcr_component_register (&pcmk_comp_ver0); } static int plugin_has_quorum(void) { if((plugin_expected_votes >> 1) < plugin_has_votes) { return 1; } return 0; } static void update_expected_votes(int value) { if(value < plugin_has_votes) { /* Never drop below the number of connected nodes */ ais_info("Cannot update expected quorum votes %d -> %d:" " value cannot be less that the current number of votes", plugin_expected_votes, value); } else if(plugin_expected_votes != value) { ais_info("Expected quorum votes %d -> %d", plugin_expected_votes, value); plugin_expected_votes = value; } } /* Create our own local copy of the config so we can navigate it */ static void process_ais_conf(void) { char *value = NULL; gboolean any_log = FALSE; hdb_handle_t top_handle = 0; hdb_handle_t local_handle = 0; ais_info("Reading configure"); top_handle = config_find_init(pcmk_api, "logging"); local_handle = config_find_next(pcmk_api, "logging", top_handle); get_config_opt(pcmk_api, local_handle, "debug", &value, "on"); if(ais_get_boolean(value)) { plugin_log_level = LOG_DEBUG; pcmk_env.debug = "1"; } else { plugin_log_level = LOG_INFO; pcmk_env.debug = "0"; } get_config_opt(pcmk_api, local_handle, "to_logfile", &value, "off"); if(ais_get_boolean(value)) { get_config_opt(pcmk_api, local_handle, "logfile", &value, NULL); if(value == NULL) { ais_err("Logging to a file requested but no log file specified"); } else { uid_t pcmk_uid = geteuid(); uid_t pcmk_gid = getegid(); FILE *logfile = fopen(value, "a"); if(logfile) { int logfd = fileno(logfile); pcmk_env.logfile = value; /* Ensure the file has the correct permissions */ fchown(logfd, pcmk_uid, pcmk_gid); fchmod(logfd, S_IRUSR|S_IWUSR|S_IRGRP|S_IWGRP); fprintf(logfile, "Set r/w permissions for uid=%d, gid=%d on %s\n", pcmk_uid, pcmk_gid, value); fflush(logfile); fsync(logfd); fclose(logfile); any_log = TRUE; } else { ais_err("Couldn't create logfile: %s", value); } } } get_config_opt(pcmk_api, local_handle, "to_syslog", &value, "on"); if(any_log && ais_get_boolean(value) == FALSE) { ais_info("User configured file based logging and explicitly disabled syslog."); value = "none"; } else { if(ais_get_boolean(value) == FALSE) { ais_err("Please enable some sort of logging, either 'to_file: on' or 'to_syslog: on'."); ais_err("If you use file logging, be sure to also define a value for 'logfile'"); } get_config_opt(pcmk_api, local_handle, "syslog_facility", &value, "daemon"); } pcmk_env.syslog = value; config_find_done(pcmk_api, local_handle); top_handle = config_find_init(pcmk_api, "quorum"); local_handle = config_find_next(pcmk_api, "quorum", top_handle); get_config_opt(pcmk_api, local_handle, "provider", &value, NULL); if(value && ais_str_eq("quorum_cman", value)) { pcmk_env.quorum = "cman"; } top_handle = config_find_init(pcmk_api, "service"); local_handle = config_find_next(pcmk_api, "service", top_handle); while(local_handle) { value = NULL; pcmk_api->object_key_get(local_handle, "name", strlen("name"), (void**)&value, NULL); if(ais_str_eq("pacemaker", value)) { break; } local_handle = config_find_next(pcmk_api, "service", top_handle); } get_config_opt(pcmk_api, local_handle, "ver", &value, "0"); if(ais_str_eq(value, "1")) { ais_info("Enabling MCP mode: Use the Pacemaker init script to complete Pacemaker startup"); use_mcp = TRUE; } get_config_opt(pcmk_api, local_handle, "clustername", &local_cname, "pcmk"); local_cname_len = strlen(local_cname); get_config_opt(pcmk_api, local_handle, "use_logd", &value, "no"); pcmk_env.use_logd = value; get_config_opt(pcmk_api, local_handle, "use_mgmtd", &value, "no"); if(ais_get_boolean(value) == FALSE) { int lpc = 0; for (; lpc < SIZEOF(pcmk_children); lpc++) { if(crm_proc_mgmtd & pcmk_children[lpc].flag) { /* Disable mgmtd startup */ pcmk_children[lpc].start_seq = 0; break; } } } config_find_done(pcmk_api, local_handle); } int pcmk_config_init(struct corosync_api_v1 *unused) { return 0; } static void *pcmk_wait_dispatch (void *arg) { struct timespec waitsleep = { .tv_sec = 1, .tv_nsec = 0 }; while(wait_active) { int lpc = 0; for (; lpc < SIZEOF(pcmk_children); lpc++) { if(pcmk_children[lpc].pid > 0) { int status; pid_t pid = wait4( pcmk_children[lpc].pid, &status, WNOHANG, NULL); if(pid == 0) { continue; } else if(pid < 0) { ais_perror("Call to wait4(%s) failed", pcmk_children[lpc].name); continue; } /* cleanup */ pcmk_children[lpc].pid = 0; pcmk_children[lpc].conn = NULL; pcmk_children[lpc].async_conn = NULL; if(WIFSIGNALED(status)) { int sig = WTERMSIG(status); ais_err("Child process %s terminated with signal %d" " (pid=%d, core=%s)", pcmk_children[lpc].name, sig, pid, WCOREDUMP(status)?"true":"false"); } else if (WIFEXITED(status)) { int rc = WEXITSTATUS(status); do_ais_log(rc==0?LOG_NOTICE:LOG_ERR, "Child process %s exited (pid=%d, rc=%d)", pcmk_children[lpc].name, pid, rc); if(rc == 100) { ais_notice("Child process %s no longer wishes" " to be respawned", pcmk_children[lpc].name); pcmk_children[lpc].respawn = FALSE; } } pcmk_children[lpc].respawn_count += 1; if(pcmk_children[lpc].respawn_count > MAX_RESPAWN) { ais_err("Child respawn count exceeded by %s", pcmk_children[lpc].name); pcmk_children[lpc].respawn = FALSE; } if(pcmk_children[lpc].respawn) { ais_notice("Respawning failed child process: %s", pcmk_children[lpc].name); spawn_child(&(pcmk_children[lpc])); } send_cluster_id(); } } sched_yield (); nanosleep (&waitsleep, 0); } return 0; } static uint32_t pcmk_update_nodeid(void) { int last = local_nodeid; local_nodeid = pcmk_api->totem_nodeid_get(); if(last != local_nodeid) { if(last == 0) { ais_info("Local node id: %u", local_nodeid); } else { char *last_s = NULL; ais_malloc0(last_s, 32); ais_warn("Detected local node id change: %u -> %u", last, local_nodeid); snprintf(last_s, 31, "%u", last); ais_remove_peer(last_s); ais_free(last_s); } update_member(local_nodeid, 0, 0, 1, 0, local_uname, CRM_NODE_MEMBER, NULL); } return local_nodeid; } static void build_path(const char *path_c, mode_t mode) { int offset = 1, len = 0; char *path = ais_strdup(path_c); AIS_CHECK(path != NULL, return); for(len = strlen(path); offset < len; offset++) { if(path[offset] == '/') { path[offset] = 0; if(mkdir(path, mode) < 0 && errno != EEXIST) { ais_perror("Could not create directory '%s'", path); break; } path[offset] = '/'; } } if(mkdir(path, mode) < 0 && errno != EEXIST) { ais_perror("Could not create directory '%s'", path); } ais_free(path); } int pcmk_startup(struct corosync_api_v1 *init_with) { int rc = 0; int lpc = 0; int start_seq = 1; struct utsname us; struct rlimit cores; static int max = SIZEOF(pcmk_children); uid_t pcmk_uid = 0; gid_t pcmk_gid = 0; uid_t root_uid = -1; uid_t cs_uid = geteuid(); pcmk_user_lookup("root", &root_uid, NULL); pcmk_api = init_with; pcmk_env.debug = "0"; pcmk_env.logfile = NULL; pcmk_env.use_logd = "false"; pcmk_env.syslog = "daemon"; if(cs_uid != root_uid) { ais_err("Corosync must be configured to start as 'root'," " otherwise Pacemaker cannot manage services." " Expected %d got %d", root_uid, cs_uid); return -1; } process_ais_conf(); membership_list = g_hash_table_new_full( g_direct_hash, g_direct_equal, NULL, destroy_ais_node); membership_notify_list = g_hash_table_new(g_direct_hash, g_direct_equal); ipc_client_list = g_hash_table_new(g_direct_hash, g_direct_equal); ais_info("CRM: Initialized"); log_printf(LOG_INFO, "Logging: Initialized %s\n", __PRETTY_FUNCTION__); rc = getrlimit(RLIMIT_CORE, &cores); if(rc < 0) { ais_perror("Cannot determine current maximum core size."); } else { if (cores.rlim_max == 0 && geteuid() == 0) { cores.rlim_max = RLIM_INFINITY; } else { ais_info("Maximum core file size is: %lu", cores.rlim_max); } cores.rlim_cur = cores.rlim_max; rc = setrlimit(RLIMIT_CORE, &cores); if(rc < 0) { ais_perror("Core file generation will remain disabled." " Core files are an important diagnositic tool," " please consider enabling them by default."); } #if 0 /* system() is not thread-safe, can't call from here * Actually, its a pretty hacky way to try and achieve this anyway */ if(system("echo 1 > /proc/sys/kernel/core_uses_pid") != 0) { ais_perror("Could not enable /proc/sys/kernel/core_uses_pid"); } #endif } if(pcmk_user_lookup(CRM_DAEMON_USER, &pcmk_uid, &pcmk_gid) < 0) { ais_err("Cluster user %s does not exist, aborting Pacemaker startup", CRM_DAEMON_USER); return TRUE; } mkdir(CRM_STATE_DIR, 0750); chown(CRM_STATE_DIR, pcmk_uid, pcmk_gid); /* Used by stonithd */ build_path(HA_STATE_DIR"/heartbeat", 0755); /* Used by RAs - Leave owned by root */ build_path(CRM_RSCTMP_DIR, 0755); rc = uname(&us); AIS_ASSERT(rc == 0); local_uname = ais_strdup(us.nodename); local_uname_len = strlen(local_uname); ais_info("Service: %d", PCMK_SERVICE_ID); ais_info("Local hostname: %s", local_uname); pcmk_update_nodeid(); if(use_mcp == FALSE) { pthread_create (&pcmk_wait_thread, NULL, pcmk_wait_dispatch, NULL); for (start_seq = 1; start_seq < max; start_seq++) { /* dont start anything with start_seq < 1 */ for (lpc = 0; lpc < max; lpc++) { if(start_seq == pcmk_children[lpc].start_seq) { spawn_child(&(pcmk_children[lpc])); } } } } return 0; } /* static void ais_print_node(const char *prefix, struct totem_ip_address *host) { int len = 0; char *buffer = NULL; ais_malloc0(buffer, INET6_ADDRSTRLEN+1); inet_ntop(host->family, host->addr, buffer, INET6_ADDRSTRLEN); len = strlen(buffer); ais_info("%s: %.*s", prefix, len, buffer); ais_free(buffer); } */ #if 0 /* copied here for reference from exec/totempg.c */ char *totempg_ifaces_print (unsigned int nodeid) { static char iface_string[256 * INTERFACE_MAX]; char one_iface[64]; struct totem_ip_address interfaces[INTERFACE_MAX]; char **status; unsigned int iface_count; unsigned int i; int res; iface_string[0] = '\0'; res = totempg_ifaces_get (nodeid, interfaces, &status, &iface_count); if (res == -1) { return ("no interface found for nodeid"); } for (i = 0; i < iface_count; i++) { sprintf (one_iface, "r(%d) ip(%s), ", i, totemip_print (&interfaces[i])); strcat (iface_string, one_iface); } return (iface_string); } #endif static void ais_mark_unseen_peer_dead( gpointer key, gpointer value, gpointer user_data) { int *changed = user_data; crm_node_t *node = value; if(node->last_seen != membership_seq && ais_str_eq(CRM_NODE_LOST, node->state) == FALSE) { ais_info("Node %s was not seen in the previous transition", node->uname); *changed += update_member(node->id, 0, membership_seq, node->votes, node->processes, node->uname, CRM_NODE_LOST, NULL); } } void pcmk_peer_update ( enum totem_configuration_type configuration_type, const unsigned int *member_list, size_t member_list_entries, const unsigned int *left_list, size_t left_list_entries, const unsigned int *joined_list, size_t joined_list_entries, const struct memb_ring_id *ring_id ) { int lpc = 0; int changed = 0; int do_update = 0; AIS_ASSERT(ring_id != NULL); switch(configuration_type) { case TOTEM_CONFIGURATION_REGULAR: do_update = 1; break; case TOTEM_CONFIGURATION_TRANSITIONAL: break; } membership_seq = ring_id->seq; ais_notice("%s membership event on ring %lld: memb=%ld, new=%ld, lost=%ld", do_update?"Stable":"Transitional", ring_id->seq, (long)member_list_entries, (long)joined_list_entries, (long)left_list_entries); if(do_update == 0) { for(lpc = 0; lpc < joined_list_entries; lpc++) { const char *prefix = "new: "; uint32_t nodeid = joined_list[lpc]; ais_info("%s %s %u", prefix, member_uname(nodeid), nodeid); } for(lpc = 0; lpc < member_list_entries; lpc++) { const char *prefix = "memb:"; uint32_t nodeid = member_list[lpc]; ais_info("%s %s %u", prefix, member_uname(nodeid), nodeid); } for(lpc = 0; lpc < left_list_entries; lpc++) { const char *prefix = "lost:"; uint32_t nodeid = left_list[lpc]; ais_info("%s %s %u", prefix, member_uname(nodeid), nodeid); } return; } for(lpc = 0; lpc < joined_list_entries; lpc++) { const char *prefix = "NEW: "; uint32_t nodeid = joined_list[lpc]; crm_node_t *node = NULL; changed += update_member( nodeid, 0, membership_seq, -1, 0, NULL, CRM_NODE_MEMBER, NULL); ais_info("%s %s %u", prefix, member_uname(nodeid), nodeid); node = g_hash_table_lookup(membership_list, GUINT_TO_POINTER(nodeid)); if(node->addr == NULL) { const char *addr = totempg_ifaces_print(nodeid); node->addr = ais_strdup(addr); ais_debug("Node %u has address %s", nodeid, node->addr); } } for(lpc = 0; lpc < member_list_entries; lpc++) { const char *prefix = "MEMB:"; uint32_t nodeid = member_list[lpc]; changed += update_member( nodeid, 0, membership_seq, -1, 0, NULL, CRM_NODE_MEMBER, NULL); ais_info("%s %s %u", prefix, member_uname(nodeid), nodeid); } for(lpc = 0; lpc < left_list_entries; lpc++) { const char *prefix = "LOST:"; uint32_t nodeid = left_list[lpc]; changed += update_member( nodeid, 0, membership_seq, -1, 0, NULL, CRM_NODE_LOST, NULL); ais_info("%s %s %u", prefix, member_uname(nodeid), nodeid); } if(changed && joined_list_entries == 0 && left_list_entries == 0) { ais_err("Something strange happened: %d", changed); changed = 0; } ais_debug_2("Reaping unseen nodes..."); g_hash_table_foreach(membership_list, ais_mark_unseen_peer_dead, &changed); if(member_list_entries > 1) { /* Used to set born-on in send_cluster_id()) * We need to wait until we have at least one peer since first * membership id is based on the one before we stopped and isn't reliable */ have_reliable_membership_id = TRUE; } if(changed) { ais_debug("%d nodes changed", changed); pcmk_update_nodeid(); send_member_notification(); } send_cluster_id(); } int pcmk_ipc_exit (void *conn) { int lpc = 0; const char *client = NULL; void *async_conn = conn; for (; lpc < SIZEOF(pcmk_children); lpc++) { if(pcmk_children[lpc].conn == conn) { if(wait_active == FALSE) { /* Make sure the shutdown loop exits */ pcmk_children[lpc].pid = 0; } pcmk_children[lpc].conn = NULL; pcmk_children[lpc].async_conn = NULL; client = pcmk_children[lpc].name; break; } } g_hash_table_remove(membership_notify_list, async_conn); g_hash_table_remove(ipc_client_list, async_conn); do_ais_log(client?LOG_INFO:(LOG_DEBUG+1), "Client %s (conn=%p, async-conn=%p) left", client?client:"unknown-transient", conn, async_conn); return (0); } int pcmk_ipc_connect (void *conn) { /* OpenAIS hasn't finished setting up the connection at this point * Sending messages now messes up the protocol! */ return (0); } /* * Executive message handlers */ void pcmk_cluster_swab(void *msg) { AIS_Message *ais_msg = msg; ais_debug_3("Performing endian conversion..."); ais_msg->id = swab32 (ais_msg->id); ais_msg->size = swab32 (ais_msg->size); ais_msg->is_compressed = swab32 (ais_msg->is_compressed); ais_msg->compressed_size = swab32 (ais_msg->compressed_size); ais_msg->host.id = swab32 (ais_msg->host.id); ais_msg->host.pid = swab32 (ais_msg->host.pid); ais_msg->host.type = swab32 (ais_msg->host.type); ais_msg->host.size = swab32 (ais_msg->host.size); ais_msg->host.local = swab32 (ais_msg->host.local); ais_msg->sender.id = swab32 (ais_msg->sender.id); ais_msg->sender.pid = swab32 (ais_msg->sender.pid); ais_msg->sender.type = swab32 (ais_msg->sender.type); ais_msg->sender.size = swab32 (ais_msg->sender.size); ais_msg->sender.local = swab32 (ais_msg->sender.local); ais_msg->header.size = swab32 (ais_msg->header.size); ais_msg->header.id = swab32 (ais_msg->header.id); ais_msg->header.error = swab32 (ais_msg->header.error); } void pcmk_cluster_callback ( ais_void_ptr *message, unsigned int nodeid) { const AIS_Message *ais_msg = message; ais_debug_2("Message from node %u (%s)", nodeid, nodeid==local_nodeid?"local":"remote"); /* Shouldn't be required... update_member( ais_msg->sender.id, membership_seq, -1, 0, ais_msg->sender.uname, NULL); */ if(ais_msg->host.size == 0 || ais_str_eq(ais_msg->host.uname, local_uname)) { route_ais_message(ais_msg, FALSE); } else { ais_debug_3("Discarding Msg[%d] (dest=%s:%s, from=%s:%s)", ais_msg->id, ais_dest(&(ais_msg->host)), msg_type2text(ais_msg->host.type), ais_dest(&(ais_msg->sender)), msg_type2text(ais_msg->sender.type)); } } void pcmk_cluster_id_swab(void *msg) { struct crm_identify_msg_s *ais_msg = msg; ais_debug_3("Performing endian conversion..."); ais_msg->id = swab32 (ais_msg->id); ais_msg->pid = swab32 (ais_msg->pid); ais_msg->votes = swab32 (ais_msg->votes); ais_msg->processes = swab32 (ais_msg->processes); ais_msg->born_on = swab64 (ais_msg->born_on); ais_msg->header.size = swab32 (ais_msg->header.size); ais_msg->header.id = swab32 (ais_msg->header.id); } void pcmk_cluster_id_callback (ais_void_ptr *message, unsigned int nodeid) { int changed = 0; const struct crm_identify_msg_s *msg = message; if(nodeid != msg->id) { ais_err("Invalid message: Node %u claimed to be node %d", nodeid, msg->id); return; } ais_debug("Node update: %s (%s)", msg->uname, msg->version); changed = update_member( nodeid, msg->born_on, membership_seq, msg->votes, msg->processes, msg->uname, NULL, msg->version); if(changed) { send_member_notification(); } } struct res_overlay { coroipc_response_header_t header __attribute((aligned(8))); char buf[4096]; }; struct res_overlay *res_overlay = NULL; static void send_ipc_ack(void *conn) { if(res_overlay == NULL) { ais_malloc0(res_overlay, sizeof(struct res_overlay)); } res_overlay->header.id = CRM_MESSAGE_IPC_ACK; res_overlay->header.size = sizeof (coroipc_response_header_t); res_overlay->header.error = CS_OK; pcmk_api->ipc_response_send (conn, res_overlay, res_overlay->header.size); } /* local callbacks */ void pcmk_ipc(void *conn, ais_void_ptr *msg) { AIS_Message *mutable; int type = 0, size = 0; gboolean transient = TRUE; const AIS_Message *ais_msg = (const AIS_Message*)msg; void *async_conn = conn; ais_debug_2("Message from client %p", conn); if(check_message_sanity(msg, ((const AIS_Message*)msg)->data) == FALSE) { /* The message is corrupted - ignore */ send_ipc_ack(conn); msg = NULL; return; } /* Make a copy of the message here and ACK it * The message is only valid until a response is sent * but the response must also be sent _before_ we send anything else */ mutable = ais_msg_copy(ais_msg); AIS_ASSERT(check_message_sanity(mutable, mutable->data)); size = mutable->header.size; /* ais_malloc0(ais_msg, size); */ /* memcpy(ais_msg, msg, size); */ type = mutable->sender.type; ais_debug_3("type: %d local: %d conn: %p host type: %d ais: %d sender pid: %d child pid: %d size: %d", type, mutable->host.local, pcmk_children[type].conn, mutable->host.type, crm_msg_ais, mutable->sender.pid, pcmk_children[type].pid, ((int)SIZEOF(pcmk_children))); if(type > crm_msg_none && type < SIZEOF(pcmk_children)) { /* known child process */ transient = FALSE; } #if 0 /* If this check fails, the order of pcmk_children probably * doesn't match that of the crm_ais_msg_types enum */ AIS_CHECK(transient || mutable->sender.pid == pcmk_children[type].pid, ais_err("Sender: %d, child[%d]: %d", mutable->sender.pid, type, pcmk_children[type].pid); ais_free(mutable); return); #endif if(transient == FALSE && type > crm_msg_none && mutable->host.local && pcmk_children[type].conn == NULL && mutable->host.type == crm_msg_ais) { AIS_CHECK(mutable->sender.type != mutable->sender.pid, ais_err("Pid=%d, type=%d", mutable->sender.pid, mutable->sender.type)); ais_info("Recorded connection %p for %s/%d", conn, pcmk_children[type].name, pcmk_children[type].pid); pcmk_children[type].conn = conn; pcmk_children[type].async_conn = async_conn; /* Make sure they have the latest membership */ if(pcmk_children[type].flags & crm_flag_members) { char *update = pcmk_generate_membership_data(); g_hash_table_replace(membership_notify_list, async_conn, async_conn); ais_info("Sending membership update "U64T" to %s", membership_seq, pcmk_children[type].name); send_client_msg(async_conn, crm_class_members, crm_msg_none,update); } } else if(transient) { AIS_CHECK(mutable->sender.type == mutable->sender.pid, ais_err("Pid=%d, type=%d", mutable->sender.pid, mutable->sender.type)); g_hash_table_replace(ipc_client_list, async_conn, GUINT_TO_POINTER(mutable->sender.pid)); } mutable->sender.id = local_nodeid; mutable->sender.size = local_uname_len; memset(mutable->sender.uname, 0, MAX_NAME); memcpy(mutable->sender.uname, local_uname, mutable->sender.size); route_ais_message(mutable, TRUE); send_ipc_ack(conn); msg = NULL; ais_free(mutable); } int pcmk_shutdown (void) { int lpc = 0; static int phase = 0; static int max_wait = 0; static time_t next_log = 0; static int max = SIZEOF(pcmk_children); if(use_mcp) { if(pcmk_children[crm_msg_crmd].conn || pcmk_children[crm_msg_stonith_ng].conn) { time_t now = time(NULL); if(now > next_log) { next_log = now + 300; ais_notice("Preventing Corosync shutdown. Please ensure Pacemaker is stopped first."); } return -1; } ais_notice("Unloading Pacemaker plugin"); return 0; } if(phase == 0) { ais_notice("Shuting down Pacemaker"); phase = max; } wait_active = FALSE; /* stop the wait loop */ for (; phase > 0; phase--) { /* dont stop anything with start_seq < 1 */ for (lpc = max - 1; lpc >= 0; lpc--) { if(phase != pcmk_children[lpc].start_seq) { continue; } if(pcmk_children[lpc].pid) { pid_t pid = 0; int status = 0; time_t now = time(NULL); if(pcmk_children[lpc].respawn) { max_wait = 5; /* 5 * 30s = 2.5 minutes... plenty once the crmd is gone */ next_log = now + 30; pcmk_children[lpc].respawn = FALSE; stop_child(&(pcmk_children[lpc]), SIGTERM); } pid = wait4(pcmk_children[lpc].pid, &status, WNOHANG, NULL); if(pid < 0) { ais_perror("Call to wait4(%s/%d) failed - treating it as stopped", pcmk_children[lpc].name, pcmk_children[lpc].pid); } else if(pid == 0) { if(now >= next_log) { max_wait--; next_log = now + 30; ais_notice("Still waiting for %s (pid=%d, seq=%d) to terminate...", pcmk_children[lpc].name, pcmk_children[lpc].pid, pcmk_children[lpc].start_seq); if(max_wait <= 0 && phase < pcmk_children[crm_msg_crmd].start_seq) { ais_err("Child %s taking too long to terminate, sending SIGKILL", pcmk_children[lpc].name); stop_child(&(pcmk_children[lpc]), SIGKILL); } } /* Return control to corosync */ return -1; } } /* cleanup */ ais_notice("%s confirmed stopped", pcmk_children[lpc].name); pcmk_children[lpc].async_conn = NULL; pcmk_children[lpc].conn = NULL; pcmk_children[lpc].pid = 0; } } send_cluster_id(); ais_notice("Shutdown complete"); /* TODO: Add back the logsys flush call once its written */ return 0; } struct member_loop_data { char *string; }; void member_vote_count_fn(gpointer key, gpointer value, gpointer user_data) { crm_node_t *node = value; if (ais_str_eq(CRM_NODE_MEMBER, node->state)) { plugin_has_votes += node->votes; } } void member_loop_fn(gpointer key, gpointer value, gpointer user_data) { crm_node_t *node = value; struct member_loop_data *data = user_data; ais_debug_2("Dumping node %u", node->id); data->string = append_member(data->string, node); } char *pcmk_generate_membership_data(void) { int size = 0; struct member_loop_data data; size = 256; ais_malloc0(data.string, size); /* Ensure the list of active processes is up-to-date */ update_member(local_nodeid, 0, 0, -1, get_process_list(), local_uname, CRM_NODE_MEMBER, NULL); plugin_has_votes = 0; g_hash_table_foreach(membership_list, member_vote_count_fn, NULL); if(plugin_has_votes > plugin_expected_votes) { update_expected_votes(plugin_has_votes); } snprintf(data.string, size, "", membership_seq, plugin_has_quorum()?"true":"false", plugin_expected_votes, plugin_has_votes); g_hash_table_foreach(membership_list, member_loop_fn, &data); size = strlen(data.string); data.string = realloc(data.string, size + 9) ;/* 9 = + nul */ sprintf(data.string + size, ""); return data.string; } void pcmk_nodes(void *conn, ais_void_ptr *msg) { char *data = pcmk_generate_membership_data(); void *async_conn = conn; /* send the ACK before we send any other messages * - but after we no longer need to access the message */ send_ipc_ack(conn); msg = NULL; if(async_conn) { send_client_msg(async_conn, crm_class_members, crm_msg_none, data); } ais_free(data); } void pcmk_remove_member(void *conn, ais_void_ptr *msg) { const AIS_Message *ais_msg = msg; char *data = get_ais_data(ais_msg); send_ipc_ack(conn); msg = NULL; if(data != NULL) { char *bcast = ais_concat("remove-peer", data, ':'); send_cluster_msg(crm_msg_ais, NULL, bcast); ais_info("Sent: %s", bcast); ais_free(bcast); } ais_free(data); } static void send_quorum_details(void *conn) { int size = 256; char *data = NULL; ais_malloc0(data, size); snprintf(data, size, "", membership_seq, plugin_has_quorum()?"true":"false", plugin_expected_votes, plugin_has_votes); send_client_msg(conn, crm_class_quorum, crm_msg_none, data); ais_free(data); } void pcmk_quorum(void *conn, ais_void_ptr *msg) { char *dummy = NULL; const AIS_Message *ais_msg = msg; char *data = get_ais_data(ais_msg); send_ipc_ack(conn); msg = NULL; /* Make sure the current number of votes is accurate */ dummy = pcmk_generate_membership_data(); ais_free(dummy); /* Calls without data just want the current quorum details */ if(data != NULL && strlen(data) > 0) { int value = ais_get_int(data, NULL); update_expected_votes(value); } send_quorum_details(conn); ais_free(data); } void pcmk_notify(void *conn, ais_void_ptr *msg) { const AIS_Message *ais_msg = msg; char *data = get_ais_data(ais_msg); void *async_conn = conn; int enable = 0; int sender = ais_msg->sender.pid; send_ipc_ack(conn); msg = NULL; if(ais_str_eq("true", data)) { enable = 1; } ais_info("%s node notifications for child %d (%p)", enable?"Enabling":"Disabling", sender, async_conn); if(enable) { g_hash_table_replace(membership_notify_list, async_conn, async_conn); } else { g_hash_table_remove(membership_notify_list, async_conn); } ais_free(data); } void pcmk_nodeid(void *conn, ais_void_ptr *msg) { static int counter = 0; struct crm_ais_nodeid_resp_s resp; ais_debug_2("Sending local nodeid: %d to %p[%d]", local_nodeid, conn, counter); resp.header.id = crm_class_nodeid; resp.header.size = sizeof (struct crm_ais_nodeid_resp_s); resp.header.error = CS_OK; resp.id = local_nodeid; resp.counter = counter++; memset(resp.uname, 0, MAX_NAME); memcpy(resp.uname, local_uname, local_uname_len); memset(resp.cname, 0, MAX_NAME); memcpy(resp.cname, local_cname, local_cname_len); pcmk_api->ipc_response_send (conn, &resp, resp.header.size); } static gboolean ghash_send_update(gpointer key, gpointer value, gpointer data) { if(send_client_msg(value, crm_class_members, crm_msg_none, data) != 0) { /* remove it */ return TRUE; } return FALSE; } void send_member_notification(void) { char *update = pcmk_generate_membership_data(); ais_info("Sending membership update "U64T" to %d children", membership_seq, g_hash_table_size(membership_notify_list)); g_hash_table_foreach_remove(membership_notify_list, ghash_send_update, update); ais_free(update); } gboolean check_message_sanity(const AIS_Message *msg, const char *data) { gboolean sane = TRUE; gboolean repaired = FALSE; int dest = msg->host.type; int tmp_size = msg->header.size - sizeof(AIS_Message); if(sane && msg->header.size == 0) { ais_err("Message with no size"); sane = FALSE; } if(sane && msg->header.error != CS_OK) { ais_err("Message header contains an error: %d", msg->header.error); sane = FALSE; } AIS_CHECK(msg->header.size > sizeof(AIS_Message), ais_err("Message %d size too small: %d < %zu", msg->header.id, msg->header.size, sizeof(AIS_Message)); return FALSE); if(sane && ais_data_len(msg) != tmp_size) { ais_warn("Message payload size is incorrect: expected %d, got %d", ais_data_len(msg), tmp_size); sane = TRUE; } if(sane && ais_data_len(msg) == 0) { ais_err("Message with no payload"); sane = FALSE; } if(sane && data && msg->is_compressed == FALSE) { int str_size = strlen(data) + 1; if(ais_data_len(msg) != str_size) { int lpc = 0; ais_err("Message payload is corrupted: expected %d bytes, got %d", ais_data_len(msg), str_size); sane = FALSE; for(lpc = (str_size - 10); lpc < msg->size; lpc++) { if(lpc < 0) { lpc = 0; } ais_debug_2("bad_data[%d]: %d / '%c'", lpc, data[lpc], data[lpc]); } } } if(sane == FALSE) { AIS_CHECK(sane, ais_err("Invalid message %d: (dest=%s:%s, from=%s:%s.%d, compressed=%d, size=%d, total=%d)", msg->id, ais_dest(&(msg->host)), msg_type2text(dest), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->is_compressed, ais_data_len(msg), msg->header.size)); } else if(repaired) { ais_err("Repaired message %d: (dest=%s:%s, from=%s:%s.%d, compressed=%d, size=%d, total=%d)", msg->id, ais_dest(&(msg->host)), msg_type2text(dest), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->is_compressed, ais_data_len(msg), msg->header.size); } else { ais_debug_3("Verified message %d: (dest=%s:%s, from=%s:%s.%d, compressed=%d, size=%d, total=%d)", msg->id, ais_dest(&(msg->host)), msg_type2text(dest), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->is_compressed, ais_data_len(msg), msg->header.size); } return sane; } static int delivered_transient = 0; static void deliver_transient_msg(gpointer key, gpointer value, gpointer user_data) { int pid = GPOINTER_TO_INT(value); AIS_Message *mutable = user_data; if(pid == mutable->host.type) { int rc = send_client_ipc(key, mutable); delivered_transient++; ais_info("Sent message to %s.%d (rc=%d)", ais_dest(&(mutable->host)), pid, rc); if(rc != 0) { ais_warn("Sending message to %s.%d failed (rc=%d)", ais_dest(&(mutable->host)), pid, rc); log_ais_message(LOG_DEBUG, mutable); } } } gboolean route_ais_message(const AIS_Message *msg, gboolean local_origin) { int rc = 0; int dest = msg->host.type; const char *reason = "unknown"; AIS_Message *mutable = ais_msg_copy(msg); static int service_id = SERVICE_ID_MAKE(PCMK_SERVICE_ID, 0); ais_debug_3("Msg[%d] (dest=%s:%s, from=%s:%s.%d, remote=%s, size=%d)", mutable->id, ais_dest(&(mutable->host)), msg_type2text(dest), ais_dest(&(mutable->sender)), msg_type2text(mutable->sender.type), mutable->sender.pid, local_origin?"false":"true", ais_data_len((mutable))); if(local_origin == FALSE) { if(mutable->host.size == 0 || ais_str_eq(local_uname, mutable->host.uname)) { mutable->host.local = TRUE; } } if(check_message_sanity(mutable, mutable->data) == FALSE) { /* Dont send this message to anyone */ rc = 1; goto bail; } if(mutable->host.local) { void *conn = NULL; const char *lookup = NULL; if(dest == crm_msg_ais) { process_ais_message(mutable); goto bail; } else if(dest == crm_msg_lrmd) { /* lrmd messages are routed via the crm */ dest = crm_msg_crmd; } else if(dest == crm_msg_te) { /* te messages are routed via the crm */ dest = crm_msg_crmd; } else if(dest >= SIZEOF(pcmk_children)) { /* Transient client */ delivered_transient = 0; g_hash_table_foreach(ipc_client_list, deliver_transient_msg, mutable); if(delivered_transient) { ais_debug_2("Sent message to %d transient clients: %d", delivered_transient, dest); goto bail; } else { /* try the crmd */ ais_debug_2("Sending message to transient client %d via crmd", dest); dest = crm_msg_crmd; } } else if(dest == 0) { ais_err("Invalid destination: %d", dest); log_ais_message(LOG_ERR, mutable); log_printf(LOG_ERR, "%s", get_ais_data(mutable)); rc = 1; goto bail; } lookup = msg_type2text(dest); conn = pcmk_children[dest].async_conn; /* the cluster fails in weird and wonderfully obscure ways when this is not true */ AIS_ASSERT(ais_str_eq(lookup, pcmk_children[dest].name)); if(mutable->header.id == service_id) { mutable->header.id = 0; /* reset this back to zero for IPC messages */ } else if(mutable->header.id != 0) { ais_err("reset header id back to zero from %d", mutable->header.id); mutable->header.id = 0; /* reset this back to zero for IPC messages */ } reason = "ipc delivery failed"; rc = send_client_ipc(conn, mutable); } else if(local_origin) { /* forward to other hosts */ ais_debug_3("Forwarding to cluster"); reason = "cluster delivery failed"; rc = send_cluster_msg_raw(mutable); } if(rc != 0) { ais_warn("Sending message to %s.%s failed: %s (rc=%d)", ais_dest(&(mutable->host)), msg_type2text(dest), reason, rc); log_ais_message(LOG_DEBUG, mutable); } bail: ais_free(mutable); return rc==0?TRUE:FALSE; } int send_cluster_msg_raw(const AIS_Message *ais_msg) { int rc = 0; struct iovec iovec; static uint32_t msg_id = 0; AIS_Message *mutable = ais_msg_copy(ais_msg); AIS_ASSERT(local_nodeid != 0); AIS_ASSERT(ais_msg->header.size == (sizeof(AIS_Message) + ais_data_len(ais_msg))); if(mutable->id == 0) { msg_id++; AIS_CHECK(msg_id != 0 /* detect wrap-around */, msg_id++; ais_err("Message ID wrapped around")); mutable->id = msg_id; } mutable->header.error = CS_OK; mutable->header.id = SERVICE_ID_MAKE(PCMK_SERVICE_ID, 0); mutable->sender.id = local_nodeid; mutable->sender.size = local_uname_len; memset(mutable->sender.uname, 0, MAX_NAME); memcpy(mutable->sender.uname, local_uname, mutable->sender.size); iovec.iov_base = (char *)mutable; iovec.iov_len = mutable->header.size; ais_debug_3("Sending message (size=%u)", (unsigned int)iovec.iov_len); rc = pcmk_api->totem_mcast(&iovec, 1, TOTEMPG_SAFE); if(rc == 0 && mutable->is_compressed == FALSE) { ais_debug_2("Message sent: %.80s", mutable->data); } AIS_CHECK(rc == 0, ais_err("Message not sent (%d): %.120s", rc, mutable->data)); ais_free(mutable); return rc; } #define min(x,y) (x)<(y)?(x):(y) void send_cluster_id(void) { int rc = 0; int lpc = 0; int len = 0; time_t now = time(NULL); struct iovec iovec; struct crm_identify_msg_s *msg = NULL; static time_t started = 0; static uint64_t first_seq = 0; AIS_ASSERT(local_nodeid != 0); if(started == 0) { started = now; first_seq = membership_seq; } if(local_born_on == 0) { if(started + 15 < now) { ais_debug("Born-on set to: "U64T" (age)", first_seq); local_born_on = first_seq; } else if(have_reliable_membership_id) { ais_debug("Born-on set to: "U64T" (peer)", membership_seq); local_born_on = membership_seq; } else { ais_debug("Leaving born-on unset: "U64T, membership_seq); } } ais_malloc0(msg, sizeof(struct crm_identify_msg_s)); msg->header.size = sizeof(struct crm_identify_msg_s); msg->id = local_nodeid; /* msg->header.error = CS_OK; */ msg->header.id = SERVICE_ID_MAKE(PCMK_SERVICE_ID, 1); len = min(local_uname_len, MAX_NAME-1); memset(msg->uname, 0, MAX_NAME); memcpy(msg->uname, local_uname, len); len = min(strlen(VERSION), MAX_NAME-1); memset(msg->version, 0, MAX_NAME); memcpy(msg->version, VERSION, len); msg->votes = 1; msg->pid = getpid(); msg->processes = get_process_list(); msg->born_on = local_born_on; ais_debug("Local update: id=%u, born="U64T", seq="U64T"", local_nodeid, local_born_on, membership_seq); update_member( local_nodeid, local_born_on, membership_seq, msg->votes, msg->processes, NULL, NULL, VERSION); iovec.iov_base = (char *)msg; iovec.iov_len = msg->header.size; rc = pcmk_api->totem_mcast(&iovec, 1, TOTEMPG_SAFE); AIS_CHECK(rc == 0, ais_err("Message not sent (%d)", rc)); ais_free(msg); } static gboolean ghash_send_removal(gpointer key, gpointer value, gpointer data) { send_quorum_details(value); if(send_client_msg(value, crm_class_rmpeer, crm_msg_none, data) != 0) { /* remove it */ return TRUE; } return FALSE; } void ais_remove_peer(char *node_id) { uint32_t id = ais_get_int(node_id, NULL); crm_node_t *node = g_hash_table_lookup(membership_list, GUINT_TO_POINTER(id)); if(node == NULL) { ais_info("Peer %u is unknown", id); } else if(ais_str_eq(CRM_NODE_MEMBER, node->state)) { ais_warn("Peer %u/%s is still active", id, node->uname); } else if(g_hash_table_remove(membership_list, GUINT_TO_POINTER(id))) { plugin_expected_votes--; ais_notice("Removed dead peer %u from the membership list", id); ais_info("Sending removal of %u to %d children", id, g_hash_table_size(membership_notify_list)); g_hash_table_foreach_remove(membership_notify_list, ghash_send_removal, node_id); } else { ais_warn("Peer %u/%s was not removed", id, node->uname); } } gboolean process_ais_message(const AIS_Message *msg) { int len = ais_data_len(msg); char *data = get_ais_data(msg); do_ais_log(LOG_DEBUG, "Msg[%d] (dest=%s:%s, from=%s:%s.%d, remote=%s, size=%d): %.90s", msg->id, ais_dest(&(msg->host)), msg_type2text(msg->host.type), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->sender.uname==local_uname?"false":"true", ais_data_len(msg), data); if(data && len > 12 && strncmp("remove-peer:", data, 12) == 0) { char *node = data+12; ais_remove_peer(node); } ais_free(data); return TRUE; } static void member_dump_fn(gpointer key, gpointer value, gpointer user_data) { crm_node_t *node = value; ais_info(" node id:%u, uname=%s state=%s processes=%.16x born="U64T" seen="U64T" addr=%s version=%s", node->id, node->uname?node->uname:"-unknown-", node->state, node->processes, node->born, node->last_seen, node->addr?node->addr:"-unknown-", node->version?node->version:"-unknown-"); } void pcmk_exec_dump(void) { /* Called after SIG_USR2 */ process_ais_conf(); ais_info("Local id: %u, uname: %s, born: "U64T, local_nodeid, local_uname, local_born_on); ais_info("Membership id: "U64T", quorate: %s, expected: %u, actual: %u", membership_seq, plugin_has_quorum()?"true":"false", plugin_expected_votes, plugin_has_votes); g_hash_table_foreach(membership_list, member_dump_fn, NULL); } diff --git a/lib/ais/plugin.h b/lib/ais/plugin.h index 5100c75939..e985d07101 100755 --- a/lib/ais/plugin.h +++ b/lib/ais/plugin.h @@ -1,25 +1,25 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef AIS_CRM_PLUGIN__H #define AIS_CRM_PLUGIN__H extern GHashTable *membership_notify_list; extern int send_cluster_msg_raw(const AIS_Message *ais_msg); #endif diff --git a/lib/ais/utils.c b/lib/ais/utils.c index aa734bc90a..44c7316b8c 100644 --- a/lib/ais/utils.c +++ b/lib/ais/utils.c @@ -1,723 +1,723 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include "./utils.h" #include "./plugin.h" struct pcmk_env_s pcmk_env; void log_ais_message(int level, const AIS_Message *msg) { char *data = get_ais_data(msg); log_printf(level, "Msg[%d] (dest=%s:%s, from=%s:%s.%d, remote=%s, size=%d): %.90s", msg->id, ais_dest(&(msg->host)), msg_type2text(msg->host.type), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->sender.uname==local_uname?"false":"true", ais_data_len(msg), data); /* do_ais_log(level, */ /* "Msg[%d] (dest=%s:%s, from=%s:%s.%d, remote=%s, size=%d): %.90s", */ /* msg->id, ais_dest(&(msg->host)), msg_type2text(msg->host.type), */ /* ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), */ /* msg->sender.pid, */ /* msg->sender.uname==local_uname?"false":"true", */ /* ais_data_len(msg), data); */ ais_free(data); } /* static gboolean ghash_find_by_uname(gpointer key, gpointer value, gpointer user_data) { crm_node_t *node = value; int id = GPOINTER_TO_INT(user_data); if (node->id == id) { return TRUE; } return FALSE; } */ static int ais_string_to_boolean(const char * s) { int rc = 0; if(s == NULL) { return rc; } if(strcasecmp(s, "true") == 0 || strcasecmp(s, "on") == 0 || strcasecmp(s, "yes") == 0 || strcasecmp(s, "y") == 0 || strcasecmp(s, "1") == 0) { rc = 1; } return rc; } static char *opts_default[] = { NULL, NULL }; static char *opts_vgrind[] = { NULL, NULL, NULL, NULL, NULL }; gboolean spawn_child(crm_child_t *child) { int lpc = 0; uid_t uid = 0; struct rlimit oflimits; struct passwd *pwentry = NULL; 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"); if(child->command == NULL) { ais_info("Nothing to do for child \"%s\"", child->name); return TRUE; } if(ais_string_to_boolean(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(ais_string_to_boolean(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) { ais_warn("Cannot enable valgrind for %s:" " The location of the valgrind binary is unknown", child->name); use_valgrind = FALSE; } if(child->uid) { if(pcmk_user_lookup(child->uid, &uid, NULL) < 0) { ais_err("Invalid uid (%s) specified for %s", child->uid, child->name); return FALSE; } } child->pid = fork(); AIS_ASSERT(child->pid != -1); if(child->pid > 0) { /* parent */ ais_info("Forked child %d for process %s%s", child->pid, child->name, use_valgrind?" (valgrind enabled: "VALGRIND_BIN")":""); } else { /* Setup the two alternate arg arrarys */ opts_vgrind[0] = ais_strdup(VALGRIND_BIN); if(use_callgrind) { opts_vgrind[1] = ais_strdup("--tool=callgrind"); opts_vgrind[2] = ais_strdup("--callgrind-out-file="CRM_STATE_DIR"/callgrind.out.%p"); opts_vgrind[3] = ais_strdup(child->command); opts_vgrind[4] = NULL; } else { opts_vgrind[1] = ais_strdup(child->command); opts_vgrind[2] = NULL; opts_vgrind[3] = NULL; opts_vgrind[4] = NULL; } opts_default[0] = ais_strdup(child->command);; #if 0 /* Dont set the group for now - it prevents connection to the cluster */ if(gid && setgid(gid) < 0) { ais_perror("Could not set group to %d", gid); } #endif if(uid && setuid(uid) < 0) { ais_perror("Could not set user to %d (%s)", uid, child->uid); } /* Close all open file descriptors */ getrlimit(RLIMIT_NOFILE, &oflimits); for (; 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 */ setenv("HA_COMPRESSION", "bz2", 1); setenv("HA_cluster_type", "openais", 1); setenv("HA_debug", pcmk_env.debug, 1); setenv("HA_logfacility", pcmk_env.syslog, 1); setenv("HA_LOGFACILITY", pcmk_env.syslog, 1); setenv("HA_use_logd", pcmk_env.use_logd, 1); setenv("HA_quorum_type", pcmk_env.quorum, 1); if(pcmk_env.logfile) { setenv("HA_debugfile", pcmk_env.logfile, 1); } if(use_valgrind) { (void)execvp(VALGRIND_BIN, opts_vgrind); } else { (void)execvp(child->command, opts_default); } ais_perror("FATAL: Cannot exec %s", child->command); exit(100); } return TRUE; } gboolean stop_child(crm_child_t *child, int signal) { if(signal == 0) { signal = SIGTERM; } if(child->command == NULL) { ais_info("Nothing to do for child \"%s\"", child->name); return TRUE; } ais_debug("Stopping CRM child \"%s\"", child->name); if (child->pid <= 0) { ais_debug_2("Client %s not running", child->name); return TRUE; } errno = 0; if(kill(child->pid, signal) == 0) { ais_notice("Sent -%d to %s: [%d]", signal, child->name, child->pid); } else { ais_perror("Sent -%d to %s: [%d]", signal, child->name, child->pid); } return TRUE; } void destroy_ais_node(gpointer data) { crm_node_t *node = data; ais_info("Destroying entry for node %u", node->id); ais_free(node->addr); ais_free(node->uname); ais_free(node->state); ais_free(node); } int update_member(unsigned int id, uint64_t born, uint64_t seq, int32_t votes, uint32_t procs, const char *uname, const char *state, const char *version) { int changed = 0; crm_node_t *node = NULL; node = g_hash_table_lookup(membership_list, GUINT_TO_POINTER(id)); if(node == NULL) { ais_malloc0(node, sizeof(crm_node_t)); ais_info("Creating entry for node %u born on "U64T"", id, seq); node->id = id; node->addr = NULL; node->state = ais_strdup("unknown"); g_hash_table_insert(membership_list, GUINT_TO_POINTER(id), node); node = g_hash_table_lookup(membership_list, GUINT_TO_POINTER(id)); } AIS_ASSERT(node != NULL); if(seq != 0) { node->last_seen = seq; } if(born != 0 && node->born != born) { changed = TRUE; node->born = born; ais_info("%p Node %u (%s) born on: "U64T, node, id, uname, born); } if(version != NULL) { ais_free(node->version); node->version = ais_strdup(version); } if(uname != NULL) { if(node->uname == NULL || ais_str_eq(node->uname, uname) == FALSE) { ais_info("%p Node %u now known as %s (was: %s)", node, id, uname, node->uname); ais_free(node->uname); node->uname = ais_strdup(uname); changed = TRUE; } } if(procs != 0 && procs != node->processes) { ais_info("Node %s now has process list: %.32x (%u)", node->uname, procs, procs); node->processes = procs; changed = TRUE; } if(votes >= 0 && votes != node->votes) { ais_info("Node %s now has %d quorum votes (was %d)", node->uname, votes, node->votes); node->votes = votes; changed = TRUE; } if(state != NULL) { if(node->state == NULL || ais_str_eq(node->state, state) == FALSE) { ais_free(node->state); node->state = ais_strdup(state); ais_info("Node %u/%s is now: %s", id, node->uname?node->uname:"unknown", state); changed = TRUE; } } return changed; } void delete_member(uint32_t id, const char *uname) { if(uname == NULL) { g_hash_table_remove(membership_list, GUINT_TO_POINTER(id)); return; } ais_err("Deleting by uname is not yet supported"); } const char *member_uname(uint32_t id) { crm_node_t *node = g_hash_table_lookup( membership_list, GUINT_TO_POINTER(id)); if(node == NULL) { return ".unknown."; } if(node->uname == NULL) { return ".pending."; } return node->uname; } char *append_member(char *data, crm_node_t *node) { int size = 1; /* nul */ int offset = 0; static int fixed_len = 4 + 8 + 7 + 6 + 6 + 7 + 11; if(data) { size = strlen(data); } offset = size; size += fixed_len; size += 32; /* node->id */ size += 100; /* node->seq, node->born */ size += strlen(node->state); if(node->uname) { size += (7 + strlen(node->uname)); } if(node->addr) { size += (6 + strlen(node->addr)); } if(node->version) { size += (9 + strlen(node->version)); } data = realloc(data, size); offset += snprintf(data + offset, size - offset, "id); if(node->uname) { offset += snprintf(data + offset, size - offset, "uname=\"%s\" ", node->uname); } offset += snprintf(data + offset, size - offset, "state=\"%s\" ", node->state); offset += snprintf(data + offset, size - offset, "born=\""U64T"\" ", node->born); offset += snprintf(data + offset, size - offset, "seen=\""U64T"\" ", node->last_seen); offset += snprintf(data + offset, size - offset, "votes=\"%d\" ", node->votes); offset += snprintf(data + offset, size - offset, "processes=\"%u\" ", node->processes); if(node->addr) { offset += snprintf(data + offset, size - offset, "addr=\"%s\" ", node->addr); } if(node->version) { offset += snprintf(data + offset, size - offset, "version=\"%s\" ", node->version); } offset += snprintf(data + offset, size - offset, "/>"); return data; } void swap_sender(AIS_Message *msg) { int tmp = 0; char tmp_s[256]; tmp = msg->host.type; msg->host.type = msg->sender.type; msg->sender.type = tmp; tmp = msg->host.type; msg->host.size = msg->sender.type; msg->sender.type = tmp; memcpy(tmp_s, msg->host.uname, 256); memcpy(msg->host.uname, msg->sender.uname, 256); memcpy(msg->sender.uname, tmp_s, 256); } char *get_ais_data(const AIS_Message *msg) { int rc = BZ_OK; char *uncompressed = NULL; unsigned int new_size = msg->size + 1; if(msg->is_compressed == FALSE) { uncompressed = strdup(msg->data); } else { ais_malloc0(uncompressed, new_size); rc = BZ2_bzBuffToBuffDecompress( uncompressed, &new_size, (char*)msg->data, msg->compressed_size, 1, 0); if(rc != BZ_OK) { ais_info("rc=%d, new=%u expected=%u", rc, new_size, msg->size); } AIS_ASSERT(rc == BZ_OK); AIS_ASSERT(new_size == msg->size); } return uncompressed; } int send_cluster_msg( enum crm_ais_msg_types type, const char *host, const char *data) { int rc = 0; int data_len = 0; AIS_Message *ais_msg = NULL; int total_size = sizeof(AIS_Message); AIS_ASSERT(local_nodeid != 0); if(data != NULL) { data_len = 1 + strlen(data); total_size += data_len; } ais_malloc0(ais_msg, total_size); ais_msg->header.size = total_size; ais_msg->header.error = CS_OK; ais_msg->header.id = 0; ais_msg->size = data_len; ais_msg->sender.type = crm_msg_ais; if(data != NULL) { memcpy(ais_msg->data, data, data_len); } ais_msg->host.type = type; ais_msg->host.id = 0; if(host) { ais_msg->host.size = strlen(host); memset(ais_msg->host.uname, 0, MAX_NAME); memcpy(ais_msg->host.uname, host, ais_msg->host.size); /* ais_msg->host.id = nodeid_lookup(host); */ } else { ais_msg->host.type = type; ais_msg->host.size = 0; memset(ais_msg->host.uname, 0, MAX_NAME); } rc = send_cluster_msg_raw(ais_msg); ais_free(ais_msg); return rc; } extern struct corosync_api_v1 *pcmk_api; int send_client_ipc(void *conn, const AIS_Message *ais_msg) { int rc = -1; if (conn == NULL) { rc = -2; } else if (!libais_connection_active(conn)) { ais_warn("Connection no longer active"); rc = -3; /* } else if ((queue->size - 1) == queue->used) { */ /* ais_err("Connection is throttled: %d", queue->size); */ } else { #ifdef SUPPORT_COROSYNC rc = pcmk_api->ipc_dispatch_send (conn, ais_msg, ais_msg->header.size); #endif } return rc; } int send_client_msg( void *conn, enum crm_ais_msg_class class, enum crm_ais_msg_types type, const char *data) { int rc = 0; int data_len = 0; int total_size = sizeof(AIS_Message); AIS_Message *ais_msg = NULL; static int msg_id = 0; AIS_ASSERT(local_nodeid != 0); msg_id++; AIS_ASSERT(msg_id != 0 /* wrap-around */); if(data != NULL) { data_len = 1 + strlen(data); } total_size += data_len; ais_malloc0(ais_msg, total_size); ais_msg->id = msg_id; ais_msg->header.id = class; ais_msg->header.size = total_size; ais_msg->header.error = CS_OK; ais_msg->size = data_len; if(data != NULL) { memcpy(ais_msg->data, data, data_len); } ais_msg->host.size = 0; ais_msg->host.type = type; memset(ais_msg->host.uname, 0, MAX_NAME); ais_msg->host.id = 0; ais_msg->sender.type = crm_msg_ais; ais_msg->sender.size = local_uname_len; memset(ais_msg->sender.uname, 0, MAX_NAME); memcpy(ais_msg->sender.uname, local_uname, ais_msg->sender.size); ais_msg->sender.id = local_nodeid; rc = send_client_ipc(conn, ais_msg); if(rc != 0) { ais_warn("Sending message to %s failed: %d", msg_type2text(type), rc); log_ais_message(LOG_DEBUG, ais_msg); return FALSE; } ais_free(ais_msg); return rc; } char * ais_concat(const char *prefix, const char *suffix, char join) { int len = 0; char *new_str = NULL; AIS_ASSERT(prefix != NULL); AIS_ASSERT(suffix != NULL); len = strlen(prefix) + strlen(suffix) + 2; ais_malloc0(new_str, (len)); sprintf(new_str, "%s%c%s", prefix, join, suffix); new_str[len-1] = 0; return new_str; } hdb_handle_t config_find_init(struct corosync_api_v1 *config, char *name) { hdb_handle_t local_handle = 0; #ifdef SUPPORT_COROSYNC config->object_find_create(OBJECT_PARENT_HANDLE, name, strlen(name), &local_handle); ais_info("Local handle: %lld for %s", local_handle, name); #endif return local_handle; } hdb_handle_t config_find_next(struct corosync_api_v1 *config, char *name, hdb_handle_t top_handle) { int rc = 0; hdb_handle_t local_handle = 0; #ifdef SUPPORT_COROSYNC rc = config->object_find_next (top_handle, &local_handle); #endif if(rc < 0) { ais_info("No additional configuration supplied for: %s", name); local_handle = 0; } else { ais_info("Processing additional %s options...", name); } return local_handle; } void config_find_done(struct corosync_api_v1 *config, hdb_handle_t local_handle) { #ifdef SUPPORT_COROSYNC config->object_find_destroy (local_handle); #endif } int get_config_opt( struct corosync_api_v1 *config, hdb_handle_t object_service_handle, char *key, char **value, const char *fallback) { char *env_key = NULL; *value = NULL; if(object_service_handle > 0) { config->object_key_get( object_service_handle, key, strlen(key), (void**)value, NULL); } if (*value) { ais_info("Found '%s' for option: %s", *value, key); return 0; } env_key = ais_concat("HA", key, '_'); *value = getenv(env_key); ais_free(env_key); if (*value) { ais_info("Found '%s' in ENV for option: %s", *value, key); return 0; } if(fallback) { ais_info("Defaulting to '%s' for option: %s", fallback, key); *value = ais_strdup(fallback); } else { ais_info("No default for option: %s", key); } return -1; } int ais_get_boolean(const char * value) { if(value == NULL) { return 0; } else if (strcasecmp(value, "true") == 0 || strcasecmp(value, "on") == 0 || strcasecmp(value, "yes") == 0 || strcasecmp(value, "y") == 0 || strcasecmp(value, "1") == 0){ return 1; } return 0; } long long ais_get_int(const char *text, char **end_text) { long long result = -1; char *local_end_text = NULL; errno = 0; if(text != NULL) { #ifdef ANSI_ONLY if(end_text != NULL) { result = strtol(text, end_text, 10); } else { result = strtol(text, &local_end_text, 10); } #else if(end_text != NULL) { result = strtoll(text, end_text, 10); } else { result = strtoll(text, &local_end_text, 10); } #endif if(errno == EINVAL) { ais_err("Conversion of %s failed", text); result = -1; } else if(errno == ERANGE) { ais_err("Conversion of %s was clipped: %lld", text, result); } else if(errno != 0) { ais_perror("Conversion of %s failed:", text); } if(local_end_text != NULL && local_end_text[0] != '\0') { ais_err("Characters left over after parsing '%s': '%s'", text, local_end_text); } } return result; } #define PW_BUFFER_LEN 500 int pcmk_user_lookup(const char *name, uid_t *uid, gid_t *gid) { int rc = -1; char *buffer = NULL; struct passwd pwd; struct passwd *pwentry = NULL; ais_malloc0(buffer, PW_BUFFER_LEN); getpwnam_r(name, &pwd, buffer, PW_BUFFER_LEN, &pwentry); if(pwentry) { rc = 0; if(uid) { *uid = pwentry->pw_uid; } if(gid) { *gid = pwentry->pw_gid; } ais_debug("Cluster user %s has uid=%d gid=%d", name, pwentry->pw_uid, pwentry->pw_gid); } else { ais_err("Cluster user %s does not exist", name); } ais_free(buffer); return rc; } diff --git a/lib/ais/utils.h b/lib/ais/utils.h index 2331c95920..547a7c7b3e 100644 --- a/lib/ais/utils.h +++ b/lib/ais/utils.h @@ -1,235 +1,235 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef AIS_CRM_UTILS__H #define AIS_CRM_UTILS__H #include #ifdef AIS_WHITETANK # include # include # define OPENAIS_EXTERNAL_SERVICE insane_ais_header_hack_in__totem_h # include # include # include # include # include # include # include # define COROSYNC_LIB_FLOW_CONTROL_NOT_REQUIRED OPENAIS_FLOW_CONTROL_NOT_REQUIRED /* New names for old things */ typedef unsigned int hdb_handle_t; #define corosync_api_v1 objdb_iface_ver0 #define corosync_lib_handler openais_lib_handler #define corosync_exec_handler openais_exec_handler #define corosync_service_engine openais_service_handler extern int openais_response_send (void *conn, void *msg, int mlen); extern int openais_dispatch_send (void *conn, void *msg, int mlen); #endif #ifdef SUPPORT_COROSYNC # include # include # include # include # include # include # include # include LOGSYS_DECLARE_SUBSYS("pcmk"); #endif /* #include "plugin.h" */ #define SIZEOF(a) (sizeof(a) / sizeof(a[0])) typedef struct crm_child_s { int pid; long flag; long flags; int start_seq; int respawn_count; gboolean respawn; const char *name; const char *uid; const char *command; void *conn; void *async_conn; } crm_child_t; extern void destroy_ais_node(gpointer data); extern void delete_member(uint32_t id, const char *uname); extern int update_member( unsigned int id, uint64_t born, uint64_t seq, int32_t votes, uint32_t procs, const char *uname, const char *state, const char *version); extern const char *member_uname(uint32_t id); extern char *append_member(char *data, crm_node_t *node); extern void member_loop_fn(gpointer key, gpointer value, gpointer user_data); extern gboolean stop_child(crm_child_t *child, int signal); extern gboolean spawn_child(crm_child_t *child); extern void swap_sender(AIS_Message *msg); extern char *get_ais_data(const AIS_Message *msg); extern gboolean route_ais_message(const AIS_Message *msg, gboolean local); extern gboolean process_ais_message(const AIS_Message *msg); extern int send_cluster_msg( enum crm_ais_msg_types type, const char *host, const char *data); extern int send_client_msg(void *conn, enum crm_ais_msg_class class, enum crm_ais_msg_types type, const char *data); extern void send_member_notification(void); extern void log_ais_message(int level, const AIS_Message *msg); extern hdb_handle_t config_find_init(struct corosync_api_v1 *config, char *name); extern hdb_handle_t config_find_next(struct corosync_api_v1 *config, char *name, hdb_handle_t top_handle); extern void config_find_done(struct corosync_api_v1 *config, hdb_handle_t local_handle); extern int get_config_opt(struct corosync_api_v1 *config, hdb_handle_t object_service_handle, char *key, char **value, const char *fallback); extern int ais_get_boolean(const char *s); extern long long ais_get_int(const char *text, char **end_text); extern char *ais_concat(const char *prefix, const char *suffix, char join); extern int send_client_ipc(void *conn, const AIS_Message *ais_msg); extern GHashTable *membership_list; extern pthread_t crm_wait_thread; extern int plugin_log_level; extern char *local_uname; extern int local_uname_len; extern unsigned int local_nodeid; static inline const char *level2char(int level) { switch(level) { case LOG_CRIT: return "CRIT"; case LOG_ERR: return "ERROR"; case LOG_WARNING: return "WARN"; case LOG_NOTICE: return "notice"; case LOG_INFO: return "info"; } return "debug"; } #define do_ais_log(level, fmt, args...) do { \ if(plugin_log_level < (level)) { \ continue; \ } else if((level) > LOG_DEBUG) { \ log_printf(LOG_DEBUG, "debug%d: %s: " fmt, \ level-LOG_INFO, __PRETTY_FUNCTION__ , ##args); \ } else { \ log_printf(level, "%s: %s: " fmt, level2char(level), \ __PRETTY_FUNCTION__ , ##args); \ } \ } while(0) #define ais_perror(fmt, args...) log_printf( \ LOG_ERR, "%s: " fmt ": (%d) %s", \ __PRETTY_FUNCTION__ , ##args, errno, strerror(errno)) #define ais_crit(fmt, args...) do_ais_log(LOG_CRIT, fmt , ##args) #define ais_err(fmt, args...) do_ais_log(LOG_ERR, fmt , ##args) #define ais_warn(fmt, args...) do_ais_log(LOG_WARNING, fmt , ##args) #define ais_notice(fmt, args...) do_ais_log(LOG_NOTICE, fmt , ##args) #define ais_info(fmt, args...) do_ais_log(LOG_INFO, fmt , ##args) #define ais_debug(fmt, args...) do_ais_log(LOG_DEBUG, fmt , ##args) #define ais_debug_2(fmt, args...) do_ais_log(LOG_DEBUG+1, fmt , ##args) #define ais_debug_3(fmt, args...) do_ais_log(LOG_DEBUG+2, fmt , ##args) #define ais_debug_4(fmt, args...) do_ais_log(LOG_DEBUG+3, fmt , ##args) #define ais_debug_5(fmt, args...) do_ais_log(LOG_DEBUG+4, fmt , ##args) #define ais_debug_6(fmt, args...) do_ais_log(LOG_DEBUG+5, fmt , ##args) #define ais_malloc0(malloc_obj, length) do { \ malloc_obj = malloc(length); \ if(malloc_obj == NULL) { \ abort(); \ } \ memset(malloc_obj, 0, length); \ } while(0) #define ais_free(obj) do { \ if(obj) { \ free(obj); \ obj = NULL; \ } \ } while(0) #define AIS_ASSERT(expr) if((expr) == FALSE) { \ ais_crit("Assertion failure line %d: %s", __LINE__, #expr); \ abort(); \ } #define AIS_CHECK(expr, failure_action) if((expr) == FALSE) { \ int p = fork(); \ if(p == 0) { abort(); } \ ais_err("Child %d spawned to record non-fatal assertion failure line %d: %s", p, __LINE__, #expr); \ failure_action; \ } static inline char *ais_strdup(const char *src) { char *dup = NULL; if(src == NULL) { return NULL; } ais_malloc0(dup, strlen(src) + 1); return strcpy(dup, src); } static inline gboolean ais_str_eq(const char *a, const char *b) { if(a == NULL || b == NULL) { return FALSE; } else if(a == b) { return TRUE; } else if(strcasecmp(a, b) == 0) { return TRUE; } return FALSE; } static inline int libais_connection_active(void *conn) { if(conn != NULL) { return TRUE; } return FALSE; } struct pcmk_env_s { const char *debug; const char *syslog; const char *logfile; const char *use_logd; const char *quorum; }; extern struct pcmk_env_s pcmk_env; extern int pcmk_user_lookup(const char *name, uid_t *uid, gid_t *gid); #endif diff --git a/lib/cib/cib_attrs.c b/lib/cib/cib_attrs.c index 1ee4e57992..ca29f8a337 100644 --- a/lib/cib/cib_attrs.c +++ b/lib/cib/cib_attrs.c @@ -1,496 +1,496 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #define attr_msg(level, fmt, args...) do { \ if(to_console) { \ printf(fmt"\n", ##args); \ } else { \ do_crm_log(level, fmt , ##args); \ } \ } while(0) extern enum cib_errors find_nvpair_attr( cib_t *the_cib, const char *attr, const char *section, const char *node_uuid, const char *attr_set_type, const char *set_name, const char *attr_id, const char *attr_name, gboolean to_console, char **value) { int offset = 0; static int xpath_max = 1024; enum cib_errors rc = cib_ok; char *xpath_string = NULL; xmlNode *xml_search = NULL; const char *set_type = NULL; if (attr_set_type) { set_type = attr_set_type; } else { set_type = XML_TAG_ATTR_SETS; } CRM_ASSERT(value != NULL); *value = NULL; if(safe_str_eq(section, XML_CIB_TAG_CRMCONFIG)) { node_uuid = NULL; set_type = XML_CIB_TAG_PROPSET; } else if(safe_str_eq(section, XML_CIB_TAG_OPCONFIG) || safe_str_eq(section, XML_CIB_TAG_RSCCONFIG)) { node_uuid = NULL; set_type = XML_TAG_META_SETS; } else if(node_uuid == NULL) { return cib_missing_data; } crm_malloc0(xpath_string, xpath_max); offset += snprintf(xpath_string + offset, xpath_max - offset, "%s", get_object_path(section)); if(node_uuid) { const char *node_type = XML_CIB_TAG_NODE; if(safe_str_eq(section, XML_CIB_TAG_STATUS)) { node_type = XML_CIB_TAG_STATE; set_type = XML_TAG_TRANSIENT_NODEATTRS; } offset += snprintf(xpath_string + offset, xpath_max - offset, "//%s[@id='%s']", node_type, node_uuid); } if(set_name) { offset += snprintf(xpath_string + offset, xpath_max - offset, "//%s[@id='%s']", set_type, set_name); } else { offset += snprintf(xpath_string + offset, xpath_max - offset, "//%s", set_type); } 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, "]"); rc = the_cib->cmds->query( the_cib, xpath_string, &xml_search, cib_sync_call|cib_scope_local|cib_xpath); if(rc != cib_ok) { do_crm_log(LOG_DEBUG_2, "Query failed for attribute %s (section=%s, node=%s, set=%s, xpath=%s): %s", attr_name, section, crm_str(node_uuid), crm_str(set_name), xpath_string, cib_error2string(rc)); goto done; } crm_log_xml_debug(xml_search, "Match"); if(xml_has_children(xml_search)) { xmlNode *child = NULL; rc = cib_missing_data; attr_msg(LOG_WARNING, "Multiple attributes match name=%s", attr_name); for(child = __xml_first_child(xml_search); child != NULL; child = __xml_next(child)) { attr_msg(LOG_INFO, " Value: %s \t(id=%s)", crm_element_value(child, XML_NVPAIR_ATTR_VALUE), ID(child)); } } else { const char *tmp = crm_element_value(xml_search, attr); if(tmp) { *value = crm_strdup(tmp); } } done: crm_free(xpath_string); free_xml(xml_search); return rc; } enum cib_errors update_attr(cib_t *the_cib, int call_options, const char *section, const char *node_uuid, const char *set_type, const char *set_name, const char *attr_id, const char *attr_name, const char *attr_value, gboolean to_console) { const char *tag = NULL; enum cib_errors rc = cib_ok; xmlNode *xml_top = NULL; xmlNode *xml_obj = NULL; char *local_attr_id = NULL; char *local_set_name = NULL; gboolean use_attributes_tag = FALSE; CRM_CHECK(section != NULL, return cib_missing); CRM_CHECK(attr_value != NULL, return cib_missing); CRM_CHECK(attr_name != NULL || attr_id != NULL, return cib_missing); rc = find_nvpair_attr(the_cib, XML_ATTR_ID, section, node_uuid, set_type, set_name, attr_id, attr_name, FALSE, &local_attr_id); if(rc == cib_ok) { attr_id = local_attr_id; goto do_modify; } else if(rc != cib_NOTEXISTS) { return rc; /* } else if(attr_id == NULL) { */ /* return cib_missing; */ } else { const char *value = NULL; xmlNode *cib_top = NULL; rc = the_cib->cmds->query( the_cib, "/cib", &cib_top, cib_sync_call|cib_scope_local|cib_xpath|cib_no_children); value = crm_element_value(cib_top, "ignore_dtd"); if(value != NULL) { use_attributes_tag = TRUE; } else { value = crm_element_value(cib_top, XML_ATTR_VALIDATION); if(value && strstr(value, "-0.6")) { use_attributes_tag = TRUE; } } free_xml(cib_top); if(safe_str_eq(section, XML_CIB_TAG_NODES)) { tag = XML_CIB_TAG_NODE; if(node_uuid == NULL) { return cib_missing; } } else if(safe_str_eq(section, XML_CIB_TAG_STATUS)) { tag = XML_TAG_TRANSIENT_NODEATTRS; if(node_uuid == NULL) { return cib_missing; } xml_obj = create_xml_node(xml_obj, XML_CIB_TAG_STATE); crm_xml_add(xml_obj, XML_ATTR_ID, node_uuid); if(xml_top == NULL) { xml_top = xml_obj; } } else { tag = section; node_uuid = NULL; } if(set_name == NULL) { if(safe_str_eq(section, XML_CIB_TAG_CRMCONFIG)) { local_set_name = crm_strdup(CIB_OPTIONS_FIRST); } else if(node_uuid) { local_set_name = crm_concat(section, node_uuid, '-'); if(set_type) { char *tmp_set_name = local_set_name; local_set_name = crm_concat(tmp_set_name, set_type, '-'); crm_free(tmp_set_name); } } else { local_set_name = crm_concat(section, "options", '-'); } set_name = local_set_name; } if(attr_id == NULL) { local_attr_id = crm_concat(set_name, attr_name, '-'); attr_id = local_attr_id; } else if(attr_name == NULL) { attr_name = attr_id; } crm_debug_2("Creating %s/%s", section, tag); if(tag != NULL) { xml_obj = create_xml_node(xml_obj, tag); crm_xml_add(xml_obj, XML_ATTR_ID, node_uuid); if(xml_top == NULL) { xml_top = xml_obj; } } if(node_uuid == NULL) { if(safe_str_eq(section, XML_CIB_TAG_CRMCONFIG)) { xml_obj = create_xml_node(xml_obj, XML_CIB_TAG_PROPSET); } else { xml_obj = create_xml_node(xml_obj, XML_TAG_META_SETS); } } else if(set_type) { xml_obj = create_xml_node(xml_obj, set_type); } else { xml_obj = create_xml_node(xml_obj, XML_TAG_ATTR_SETS); } crm_xml_add(xml_obj, XML_ATTR_ID, set_name); if(xml_top == NULL) { xml_top = xml_obj; } if(use_attributes_tag) { xml_obj = create_xml_node(xml_obj, XML_TAG_ATTRS); } } do_modify: xml_obj = create_xml_node(xml_obj, XML_CIB_TAG_NVPAIR); if(xml_top == NULL) { xml_top = xml_obj; } crm_xml_add(xml_obj, XML_ATTR_ID, attr_id); crm_xml_add(xml_obj, XML_NVPAIR_ATTR_NAME, attr_name); crm_xml_add(xml_obj, XML_NVPAIR_ATTR_VALUE, attr_value); crm_log_xml_debug_2(xml_top, "update_attr"); rc = the_cib->cmds->modify( the_cib, section, xml_top, call_options|cib_quorum_override); if(rc < cib_ok) { attr_msg(LOG_ERR, "Error setting %s=%s (section=%s, set=%s): %s", attr_name, attr_value, section, crm_str(set_name), cib_error2string(rc)); crm_log_xml_info(xml_top, "Update"); } crm_free(local_set_name); crm_free(local_attr_id); free_xml(xml_top); return rc; } enum cib_errors read_attr(cib_t *the_cib, const char *section, const char *node_uuid, const char *set_type, const char *set_name, const char *attr_id, const char *attr_name, char **attr_value, gboolean to_console) { enum cib_errors rc = cib_ok; CRM_ASSERT(attr_value != NULL); CRM_CHECK(section != NULL, return cib_missing); CRM_CHECK(attr_name != NULL || attr_id != NULL, return cib_missing); *attr_value = NULL; rc = find_nvpair_attr(the_cib, XML_NVPAIR_ATTR_VALUE, section, node_uuid, set_type, set_name, attr_id, attr_name, to_console, attr_value); if(rc != cib_ok) { do_crm_log(LOG_DEBUG_2, "Query failed for attribute %s (section=%s, node=%s, set=%s): %s", attr_name, section, crm_str(set_name), crm_str(node_uuid), cib_error2string(rc)); } return rc; } enum cib_errors delete_attr(cib_t *the_cib, int options, const char *section, const char *node_uuid, const char *set_type, const char *set_name, const char *attr_id, const char *attr_name, const char *attr_value, gboolean to_console) { enum cib_errors rc = cib_ok; xmlNode *xml_obj = NULL; char *local_attr_id = NULL; CRM_CHECK(section != NULL, return cib_missing); CRM_CHECK(attr_name != NULL || attr_id != NULL, return cib_missing); if(attr_id == NULL) { rc = find_nvpair_attr(the_cib, XML_ATTR_ID, section, node_uuid, set_type, set_name, attr_id, attr_name, to_console, &local_attr_id); if(rc != cib_ok) { return rc; } attr_id = local_attr_id; } xml_obj = create_xml_node(NULL, XML_CIB_TAG_NVPAIR); crm_xml_add(xml_obj, XML_ATTR_ID, attr_id); crm_xml_add(xml_obj, XML_NVPAIR_ATTR_NAME, attr_name); crm_xml_add(xml_obj, XML_NVPAIR_ATTR_VALUE, attr_value); rc = the_cib->cmds->delete( the_cib, section, xml_obj, options|cib_quorum_override); if(rc == cib_ok) { attr_msg(LOG_DEBUG, "Deleted %s %s: id=%s%s%s%s%s\n", section, node_uuid?"attribute":"option", local_attr_id, set_name?" set=":"", set_name?set_name:"", attr_name?" name=":"", attr_name?attr_name:""); } crm_free(local_attr_id); free_xml(xml_obj); return rc; } enum cib_errors query_node_uuid(cib_t *the_cib, const char *uname, char **uuid) { enum cib_errors rc = cib_ok; xmlNode *a_child = NULL; xmlNode *xml_obj = NULL; xmlNode *fragment = NULL; const char *child_name = NULL; CRM_ASSERT(uname != NULL); CRM_ASSERT(uuid != NULL); rc = the_cib->cmds->query(the_cib, XML_CIB_TAG_NODES, &fragment, cib_sync_call|cib_scope_local); if(rc != cib_ok) { return rc; } xml_obj = fragment; CRM_CHECK(safe_str_eq(crm_element_name(xml_obj), XML_CIB_TAG_NODES), return cib_output_data); CRM_ASSERT(xml_obj != NULL); crm_log_xml_debug(xml_obj, "Result section"); rc = cib_NOTEXISTS; *uuid = NULL; for(a_child = __xml_first_child(xml_obj); a_child != NULL; a_child = __xml_next(a_child)) { if(crm_str_eq((const char *)a_child->name, XML_CIB_TAG_NODE, TRUE)) { child_name = crm_element_value(a_child, XML_ATTR_UNAME); if(safe_str_eq(uname, child_name)) { child_name = ID(a_child); if(child_name != NULL) { *uuid = crm_strdup(child_name); rc = cib_ok; } break; } } } free_xml(fragment); return rc; } enum cib_errors query_node_uname(cib_t *the_cib, const char *uuid, char **uname) { enum cib_errors rc = cib_ok; xmlNode *a_child = NULL; xmlNode *xml_obj = NULL; xmlNode *fragment = NULL; const char *child_name = NULL; CRM_ASSERT(uname != NULL); CRM_ASSERT(uuid != NULL); rc = the_cib->cmds->query(the_cib, XML_CIB_TAG_NODES, &fragment, cib_sync_call|cib_scope_local); if(rc != cib_ok) { return rc; } xml_obj = fragment; CRM_CHECK(safe_str_eq(crm_element_name(xml_obj), XML_CIB_TAG_NODES), return cib_output_data); CRM_ASSERT(xml_obj != NULL); crm_log_xml_debug_2(xml_obj, "Result section"); rc = cib_NOTEXISTS; *uname = NULL; for(a_child = __xml_first_child(xml_obj); a_child != NULL; a_child = __xml_next(a_child)) { if(crm_str_eq((const char *)a_child->name, XML_CIB_TAG_NODE, TRUE)) { child_name = ID(a_child); if(safe_str_eq(uuid, child_name)) { child_name = crm_element_value(a_child, XML_ATTR_UNAME); if(child_name != NULL) { *uname = crm_strdup(child_name); rc = cib_ok; } break; } } } free_xml(fragment); return rc; } enum cib_errors set_standby(cib_t *the_cib, const char *uuid, const char *scope, const char *standby_value) { enum cib_errors rc = cib_ok; int str_length = 3; char *attr_id = NULL; char *set_name = NULL; const char *attr_name = "standby"; CRM_CHECK(standby_value != NULL, return cib_missing_data); if(scope == NULL) { scope = XML_CIB_TAG_NODES; } CRM_CHECK(uuid != NULL, return cib_missing_data); str_length += strlen(attr_name); str_length += strlen(uuid); if(safe_str_eq(scope, "reboot") || safe_str_eq(scope, XML_CIB_TAG_STATUS)) { const char *extra = "transient"; scope = XML_CIB_TAG_STATUS; str_length += strlen(extra); crm_malloc0(attr_id, str_length); sprintf(attr_id, "%s-%s-%s", extra, attr_name, uuid); } else { scope = XML_CIB_TAG_NODES; crm_malloc0(attr_id, str_length); sprintf(attr_id, "%s-%s", attr_name, uuid); } rc = update_attr(the_cib, cib_sync_call, scope, uuid, NULL, set_name, attr_id, attr_name, standby_value, TRUE); crm_free(attr_id); crm_free(set_name); return rc; } diff --git a/lib/cib/cib_client.c b/lib/cib/cib_client.c index 245ea53719..34cc3bed13 100644 --- a/lib/cib/cib_client.c +++ b/lib/cib/cib_client.c @@ -1,614 +1,614 @@ /* * Copyright (c) 2004 Andrew Beekhof * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include GHashTable *cib_op_callback_table = NULL; int cib_client_set_op_callback( cib_t *cib, void (*callback)(const xmlNode *msg, int call_id, int rc, xmlNode *output)); int cib_client_add_notify_callback( cib_t *cib, const char *event, void (*callback)( const char *event, xmlNode *msg)); int cib_client_del_notify_callback( cib_t *cib, const char *event, void (*callback)( const char *event, xmlNode *msg)); gint ciblib_GCompareFunc(gconstpointer a, gconstpointer b); #define op_common(cib) \ if(cib == NULL) { \ return cib_missing; \ } else if(cib->cmds->variant_op == NULL) { \ return cib_variant; \ } static int cib_client_noop(cib_t *cib, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CRM_OP_NOOP, NULL, NULL, NULL, NULL, call_options); } static int cib_client_ping(cib_t *cib, xmlNode **output_data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CRM_OP_PING, NULL,NULL,NULL, output_data, call_options); } static int cib_client_query(cib_t *cib, const char *section, xmlNode **output_data, int call_options) { return cib->cmds->query_from( cib, NULL, section, output_data, call_options); } static int cib_client_query_from(cib_t *cib, const char *host, const char *section, xmlNode **output_data, int call_options) { op_common(cib) return cib->cmds->variant_op(cib, CIB_OP_QUERY, host, section, NULL, output_data, call_options); } static int cib_client_is_master(cib_t *cib) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_ISMASTER, NULL, NULL,NULL,NULL, cib_scope_local|cib_sync_call); } static int cib_client_set_slave(cib_t *cib, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_SLAVE, NULL,NULL,NULL,NULL, call_options); } static int cib_client_set_slave_all(cib_t *cib, int call_options) { return cib_NOTSUPPORTED; } static int cib_client_set_master(cib_t *cib, int call_options) { op_common(cib) crm_debug_3("Adding cib_scope_local to options"); return cib->cmds->variant_op( cib, CIB_OP_MASTER, NULL,NULL,NULL,NULL, call_options|cib_scope_local); } static int cib_client_bump_epoch(cib_t *cib, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_BUMP, NULL, NULL, NULL, NULL, call_options); } static int cib_client_upgrade(cib_t *cib, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_UPGRADE, NULL, NULL, NULL, NULL, call_options); } static int cib_client_sync(cib_t *cib, const char *section, int call_options) { return cib->cmds->sync_from(cib, NULL, section, call_options); } static int cib_client_sync_from( cib_t *cib, const char *host, const char *section, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_SYNC, host, section, NULL, NULL, call_options); } static int cib_client_create( cib_t *cib, const char *section, xmlNode *data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_CREATE, NULL, section, data, NULL, call_options); } static int cib_client_modify( cib_t *cib, const char *section, xmlNode *data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_MODIFY, NULL, section, data, NULL, call_options); } static int cib_client_update( cib_t *cib, const char *section, xmlNode *data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_MODIFY, NULL, section, data, NULL, call_options); } static int cib_client_replace( cib_t *cib, const char *section, xmlNode *data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_REPLACE, NULL, section, data, NULL, call_options); } static int cib_client_delete( cib_t *cib, const char *section, xmlNode *data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_DELETE, NULL, section, data, NULL, call_options); } static int cib_client_delete_absolute( cib_t *cib, const char *section, xmlNode *data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_DELETE_ALT, NULL, section, data, NULL, call_options); } static int cib_client_erase( cib_t *cib, xmlNode **output_data, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CIB_OP_ERASE, NULL, NULL, NULL, output_data, call_options); } static int cib_client_quit(cib_t *cib, int call_options) { op_common(cib) return cib->cmds->variant_op( cib, CRM_OP_QUIT, NULL, NULL, NULL, NULL, call_options); } static void cib_destroy_op_callback(gpointer data) { cib_callback_client_t *blob = data; if(blob->timer && blob->timer->ref > 0) { g_source_remove(blob->timer->ref); } crm_free(blob->timer); crm_free(blob); } char *get_shadow_file(const char *suffix) { char *cib_home = NULL; char *fullname = NULL; char *name = crm_concat("shadow", suffix, '.'); const char *dir = getenv("CIB_shadow_dir"); if(dir == NULL) { const char *user = getenv("USER"); if(safe_str_eq(user, "root") || safe_str_eq(user, CRM_DAEMON_USER)) { dir = CRM_CONFIG_DIR; } else { const char *home = getenv("HOME"); dir = "/tmp"; if(home && home[0] == '/') { int rc = 0; cib_home = crm_concat(home, ".cib", '/'); rc = mkdir(cib_home, 0700); if(rc < 0 && errno != EEXIST) { crm_perror(LOG_ERR, "Couldn't create user-specific shadow directory: %s", cib_home); errno = 0; } else { dir = cib_home; } } } } fullname = crm_concat(dir, name, '/'); crm_free(cib_home); crm_free(name); return fullname; } cib_t* cib_shadow_new(const char *shadow) { cib_t *new_cib = NULL; char *shadow_file = NULL; CRM_CHECK(shadow != NULL, return NULL); shadow_file = get_shadow_file(shadow); new_cib = cib_file_new(shadow_file); crm_free(shadow_file); return new_cib; } cib_t *cib_new_no_shadow(void) { unsetenv("CIB_shadow"); return cib_new(); } cib_t* cib_new(void) { const char *value = getenv("CIB_shadow"); if(value) { return cib_shadow_new(value); } value = getenv("CIB_file"); if(value) { return cib_file_new(value); } value = getenv("CIB_port"); if(value) { gboolean encrypted = TRUE; int port = crm_parse_int(value, NULL); const char *server = getenv("CIB_server"); const char *user = getenv("CIB_user"); const char *pass = getenv("CIB_passwd"); value = getenv("CIB_encrypted"); if(value && crm_is_true(value) == FALSE) { crm_info("Disabling TLS"); encrypted = FALSE; } if(user == NULL) { user = CRM_DAEMON_USER; crm_info("Defaulting to user: %s", user); } if(server == NULL) { server = "localhost"; crm_info("Defaulting to localhost"); } return cib_remote_new(server, user, pass, port, encrypted); } return cib_native_new(); } /* this is backwards... cib_*_new should call this not the other way around */ cib_t* cib_new_variant(void) { cib_t* new_cib = NULL; crm_malloc0(new_cib, sizeof(cib_t)); if(cib_op_callback_table != NULL) { g_hash_table_destroy(cib_op_callback_table); cib_op_callback_table = NULL; } if(cib_op_callback_table == NULL) { cib_op_callback_table = g_hash_table_new_full( g_direct_hash, g_direct_equal, NULL, cib_destroy_op_callback); } new_cib->call_id = 1; new_cib->variant = cib_undefined; new_cib->type = cib_none; new_cib->state = cib_disconnected; new_cib->op_callback = NULL; new_cib->variant_opaque = NULL; new_cib->notify_list = NULL; /* the rest will get filled in by the variant constructor */ crm_malloc0(new_cib->cmds, sizeof(cib_api_operations_t)); new_cib->cmds->set_op_callback = cib_client_set_op_callback; new_cib->cmds->add_notify_callback = cib_client_add_notify_callback; new_cib->cmds->del_notify_callback = cib_client_del_notify_callback; new_cib->cmds->register_callback = cib_client_register_callback; new_cib->cmds->noop = cib_client_noop; new_cib->cmds->ping = cib_client_ping; new_cib->cmds->query = cib_client_query; new_cib->cmds->sync = cib_client_sync; new_cib->cmds->query_from = cib_client_query_from; new_cib->cmds->sync_from = cib_client_sync_from; new_cib->cmds->is_master = cib_client_is_master; new_cib->cmds->set_master = cib_client_set_master; new_cib->cmds->set_slave = cib_client_set_slave; new_cib->cmds->set_slave_all = cib_client_set_slave_all; new_cib->cmds->upgrade = cib_client_upgrade; new_cib->cmds->bump_epoch = cib_client_bump_epoch; new_cib->cmds->create = cib_client_create; new_cib->cmds->modify = cib_client_modify; new_cib->cmds->update = cib_client_update; new_cib->cmds->replace = cib_client_replace; new_cib->cmds->delete = cib_client_delete; new_cib->cmds->erase = cib_client_erase; new_cib->cmds->quit = cib_client_quit; new_cib->cmds->delete_absolute = cib_client_delete_absolute; return new_cib; } void cib_delete(cib_t *cib) { GList *list = cib->notify_list; while(list != NULL) { cib_notify_client_t *client = g_list_nth_data(list, 0); list = g_list_remove(list, client); crm_free(client); } g_hash_table_destroy(cib_op_callback_table); cib->cmds->free(cib); cib = NULL; } int cib_client_set_op_callback( cib_t *cib, void (*callback)(const xmlNode *msg, int call_id, int rc, xmlNode *output)) { if(callback == NULL) { crm_info("Un-Setting operation callback"); } else { crm_debug_3("Setting operation callback"); } cib->op_callback = callback; return cib_ok; } int cib_client_add_notify_callback( cib_t *cib, const char *event, void (*callback)( const char *event, xmlNode *msg)) { GList *list_item = NULL; cib_notify_client_t *new_client = NULL; if(cib->variant != cib_native && cib->variant != cib_remote) { return cib_NOTSUPPORTED; } crm_debug_2("Adding callback for %s events (%d)", event, g_list_length(cib->notify_list)); crm_malloc0(new_client, sizeof(cib_notify_client_t)); new_client->event = event; new_client->callback = callback; list_item = g_list_find_custom( cib->notify_list, new_client, ciblib_GCompareFunc); if(list_item != NULL) { crm_warn("Callback already present"); crm_free(new_client); return cib_EXISTS; } else { cib->notify_list = g_list_append( cib->notify_list, new_client); cib->cmds->register_notification(cib, event, 1); crm_debug_3("Callback added (%d)", g_list_length(cib->notify_list)); } return cib_ok; } int cib_client_del_notify_callback( cib_t *cib, const char *event, void (*callback)( const char *event, xmlNode *msg)) { GList *list_item = NULL; cib_notify_client_t *new_client = NULL; if(cib->variant != cib_native && cib->variant != cib_remote) { return cib_NOTSUPPORTED; } crm_debug("Removing callback for %s events", event); crm_malloc0(new_client, sizeof(cib_notify_client_t)); new_client->event = event; new_client->callback = callback; list_item = g_list_find_custom( cib->notify_list, new_client, ciblib_GCompareFunc); cib->cmds->register_notification(cib, event, 0); if(list_item != NULL) { cib_notify_client_t *list_client = list_item->data; cib->notify_list = g_list_remove(cib->notify_list, list_client); crm_free(list_client); crm_debug_3("Removed callback"); } else { crm_debug_3("Callback not present"); } crm_free(new_client); return cib_ok; } gint ciblib_GCompareFunc(gconstpointer a, gconstpointer b) { int rc = 0; const cib_notify_client_t *a_client = a; const cib_notify_client_t *b_client = b; CRM_CHECK(a_client->event != NULL && b_client->event != NULL, return 0); rc = strcmp(a_client->event, b_client->event); if(rc == 0) { if(a_client->callback == b_client->callback) { return 0; } else if(((long)a_client->callback) < ((long)b_client->callback)) { crm_err("callbacks for %s are not equal: %p vs. %p", a_client->event, a_client->callback, b_client->callback); return -1; } crm_err("callbacks for %s are not equal: %p vs. %p", a_client->event, a_client->callback, b_client->callback); return 1; } return rc; } static gboolean cib_async_timeout_handler(gpointer data) { struct timer_rec_s *timer = data; crm_debug("Async call %d timed out after %ds", timer->call_id, timer->timeout); cib_native_callback(timer->cib, NULL, timer->call_id, cib_remote_timeout); /* Always return TRUE, never remove the handler * We do that in remove_cib_op_callback() */ return TRUE; } gboolean cib_client_register_callback( cib_t *cib, int call_id, int timeout, gboolean only_success, void *user_data, const char *callback_name, void (*callback)(xmlNode*, int, int, xmlNode*,void*)) { cib_callback_client_t *blob = NULL; if(call_id < 0) { if(only_success == FALSE) { callback(NULL, call_id, call_id, NULL, user_data); } else { crm_warn("CIB call failed: %s", cib_error2string(call_id)); } return FALSE; } crm_malloc0(blob, sizeof(cib_callback_client_t)); blob->id = callback_name; blob->only_success = only_success; blob->user_data = user_data; blob->callback = callback; if(timeout > 0) { struct timer_rec_s *async_timer = NULL; crm_malloc0(async_timer, sizeof(struct timer_rec_s)); blob->timer = async_timer; async_timer->cib = cib; async_timer->call_id = call_id; async_timer->timeout = timeout*1000; async_timer->ref = g_timeout_add( async_timer->timeout, cib_async_timeout_handler, async_timer); } g_hash_table_insert(cib_op_callback_table, GINT_TO_POINTER(call_id), blob); return TRUE; } void remove_cib_op_callback(int call_id, gboolean all_callbacks) { if(all_callbacks) { if(cib_op_callback_table != NULL) { g_hash_table_destroy(cib_op_callback_table); } cib_op_callback_table = g_hash_table_new_full( g_direct_hash, g_direct_equal, NULL, cib_destroy_op_callback); } else { g_hash_table_remove(cib_op_callback_table, GINT_TO_POINTER(call_id)); } } int num_cib_op_callbacks(void) { if(cib_op_callback_table == NULL) { return 0; } return g_hash_table_size(cib_op_callback_table); } static void cib_dump_pending_op(gpointer key, gpointer value, gpointer user_data) { int call = GPOINTER_TO_INT(key); cib_callback_client_t *blob = value; crm_debug("Call %d (%s): pending", call, crm_str(blob->id)); } void cib_dump_pending_callbacks(void) { if(cib_op_callback_table == NULL) { return; } return g_hash_table_foreach(cib_op_callback_table, cib_dump_pending_op, NULL); } diff --git a/lib/cib/cib_file.c b/lib/cib/cib_file.c index a86e5f0571..6ea3432cbb 100644 --- a/lib/cib/cib_file.c +++ b/lib/cib/cib_file.c @@ -1,313 +1,313 @@ /* * Copyright (c) 2004 International Business Machines * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include typedef struct cib_file_opaque_s { int flags; char *filename; } cib_file_opaque_t; int cib_file_perform_op( cib_t *cib, const char *op, const char *host, const char *section, xmlNode *data, xmlNode **output_data, int call_options); int cib_file_signon(cib_t* cib, const char *name, enum cib_conn_type type); int cib_file_signoff(cib_t* cib); int cib_file_free(cib_t* cib); static int cib_file_inputfd(cib_t* cib) { return cib_NOTSUPPORTED; } static int cib_file_set_connection_dnotify( cib_t *cib, void (*dnotify)(gpointer user_data)) { return cib_NOTSUPPORTED; } static int cib_file_register_notification(cib_t* cib, const char *callback, int enabled) { return cib_NOTSUPPORTED; } cib_t* cib_file_new (const char *cib_location) { cib_file_opaque_t *private = NULL; cib_t *cib = cib_new_variant(); crm_malloc0(private, sizeof(cib_file_opaque_t)); cib->variant = cib_file; cib->variant_opaque = private; if(cib_location == NULL) { cib_location = getenv("CIB_file"); } private->filename = crm_strdup(cib_location); /* assign variant specific ops*/ cib->cmds->variant_op = cib_file_perform_op; cib->cmds->signon = cib_file_signon; cib->cmds->signoff = cib_file_signoff; cib->cmds->free = cib_file_free; cib->cmds->inputfd = cib_file_inputfd; cib->cmds->register_notification = cib_file_register_notification; cib->cmds->set_connection_dnotify = cib_file_set_connection_dnotify; return cib; } static xmlNode *in_mem_cib = NULL; static int load_file_cib(const char *filename) { int rc = cib_ok; struct stat buf; xmlNode *root = NULL; gboolean dtd_ok = TRUE; const char *ignore_dtd = NULL; xmlNode *status = NULL; rc = stat(filename, &buf); if (rc == 0) { root = filename2xml(filename); if(root == NULL) { return cib_dtd_validation; } } else { return cib_NOTEXISTS; } rc = 0; status = find_xml_node(root, XML_CIB_TAG_STATUS, FALSE); if(status == NULL) { create_xml_node(root, XML_CIB_TAG_STATUS); } ignore_dtd = crm_element_value(root, XML_ATTR_VALIDATION); dtd_ok = validate_xml(root, NULL, TRUE); if(dtd_ok == FALSE) { crm_err("CIB does not validate against %s", ignore_dtd); rc = cib_dtd_validation; goto bail; } in_mem_cib = root; return rc; bail: free_xml(root); root = NULL; return rc; } int cib_file_signon(cib_t* cib, const char *name, enum cib_conn_type type) { int rc = cib_ok; cib_file_opaque_t *private = cib->variant_opaque; if(private->filename == FALSE) { rc = cib_missing; } else { rc = load_file_cib(private->filename); } if(rc == cib_ok) { crm_debug("%s: Opened connection to local file '%s'", name, private->filename); cib->state = cib_connected_command; cib->type = cib_command; } else { fprintf(stderr, "%s: Connection to local file '%s' failed: %s\n", name, private->filename, cib_error2string(rc)); } return rc; } int cib_file_signoff(cib_t* cib) { int rc = cib_ok; cib_file_opaque_t *private = cib->variant_opaque; crm_debug("Signing out of the CIB Service"); if(strstr(private->filename, ".bz2") != NULL) { rc = write_xml_file(in_mem_cib, private->filename, TRUE); } else { rc = write_xml_file(in_mem_cib, private->filename, FALSE); } if(rc > 0) { crm_info("Wrote CIB to %s", private->filename); rc = cib_ok; } else { crm_err("Could not write CIB to %s", private->filename); } free_xml(in_mem_cib); cib->state = cib_disconnected; cib->type = cib_none; return rc; } int cib_file_free (cib_t* cib) { int rc = cib_ok; if(cib->state != cib_disconnected) { rc = cib_file_signoff(cib); } if(rc == cib_ok) { cib_file_opaque_t *private = cib->variant_opaque; crm_free(private->filename); crm_free(cib->cmds); crm_free(private); crm_free(cib); } else { fprintf(stderr, "Couldn't sign off: %d\n", rc); } return rc; } struct cib_func_entry { const char *op; gboolean read_only; cib_op_t fn; }; static struct cib_func_entry cib_file_ops[] = { {CIB_OP_QUERY, TRUE, cib_process_query}, {CIB_OP_MODIFY, FALSE, cib_process_modify}, {CIB_OP_APPLY_DIFF, FALSE, cib_process_diff}, {CIB_OP_BUMP, FALSE, cib_process_bump}, {CIB_OP_REPLACE, FALSE, cib_process_replace}, {CIB_OP_CREATE, FALSE, cib_process_create}, {CIB_OP_DELETE, FALSE, cib_process_delete}, {CIB_OP_ERASE, FALSE, cib_process_erase}, {CIB_OP_UPGRADE, FALSE, cib_process_upgrade}, }; int cib_file_perform_op( cib_t *cib, const char *op, const char *host, const char *section, xmlNode *data, xmlNode **output_data, int call_options) { int rc = cib_ok; gboolean query = FALSE; gboolean changed = FALSE; xmlNode *output = NULL; xmlNode *cib_diff = NULL; xmlNode *result_cib = NULL; cib_op_t *fn = NULL; int lpc = 0; static int max_msg_types = DIMOF(cib_file_ops); crm_info("%s on %s", op, section); if(cib->state == cib_disconnected) { return cib_not_connected; } if(output_data != NULL) { *output_data = NULL; } if(op == NULL) { return cib_operation; } for (lpc = 0; lpc < max_msg_types; lpc++) { if (safe_str_eq(op, cib_file_ops[lpc].op)) { fn = &(cib_file_ops[lpc].fn); query = cib_file_ops[lpc].read_only; break; } } if(fn == NULL) { return cib_NOTSUPPORTED; } cib->call_id++; rc = cib_perform_op(op, call_options|cib_inhibit_bcast, fn, query, section, NULL, data, TRUE, &changed, in_mem_cib, &result_cib, &cib_diff, &output); if(rc == cib_dtd_validation) { validate_xml_verbose(result_cib); } if(rc != cib_ok) { free_xml(result_cib); } else if(query == FALSE) { log_xml_diff(LOG_DEBUG, cib_diff, "cib:diff"); free_xml(in_mem_cib); in_mem_cib = result_cib; } free_xml(cib_diff); if(cib->op_callback != NULL) { cib->op_callback(NULL, cib->call_id, rc, output); } if(output_data && output) { *output_data = copy_xml(output); } if(query == FALSE || (call_options & cib_no_children)) { free_xml(output); } else if(safe_str_eq(crm_element_name(output), "xpath-query")) { free_xml(output); } return rc; } diff --git a/lib/cib/cib_native.c b/lib/cib/cib_native.c old mode 100755 new mode 100644 index 56cb1f68bb..6502a2dff9 --- a/lib/cib/cib_native.c +++ b/lib/cib/cib_native.c @@ -1,673 +1,673 @@ /* * Copyright (c) 2004 International Business Machines * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include typedef struct cib_native_opaque_s { IPC_Channel *command_channel; IPC_Channel *callback_channel; GCHSource *callback_source; char *token; } cib_native_opaque_t; int cib_native_perform_op( cib_t *cib, const char *op, const char *host, const char *section, xmlNode *data, xmlNode **output_data, int call_options); int cib_native_free(cib_t* cib); int cib_native_signoff(cib_t* cib); int cib_native_signon(cib_t* cib, const char *name, enum cib_conn_type type); int cib_native_signon_raw(cib_t* cib, const char *name, enum cib_conn_type type, int *async_fd, int *sync_fd); IPC_Channel *cib_native_channel(cib_t* cib); gboolean cib_native_msgready(cib_t* cib); gboolean cib_native_dispatch(IPC_Channel *channel, gpointer user_data); int cib_native_inputfd(cib_t* cib); int cib_native_rcvmsg(cib_t* cib, int blocking); int cib_native_set_connection_dnotify(cib_t *cib, void (*dnotify)(gpointer user_data)); cib_t* cib_native_new (void) { cib_native_opaque_t *native = NULL; cib_t *cib = cib_new_variant(); crm_malloc0(native, sizeof(cib_native_opaque_t)); cib->variant = cib_native; cib->variant_opaque = native; native->command_channel = NULL; native->callback_channel = NULL; /* assign variant specific ops*/ cib->cmds->variant_op = cib_native_perform_op; cib->cmds->signon = cib_native_signon; cib->cmds->signon_raw = cib_native_signon_raw; cib->cmds->signoff = cib_native_signoff; cib->cmds->free = cib_native_free; cib->cmds->inputfd = cib_native_inputfd; cib->cmds->register_notification = cib_native_register_notification; cib->cmds->set_connection_dnotify = cib_native_set_connection_dnotify; return cib; } int cib_native_signon(cib_t* cib, const char *name, enum cib_conn_type type) { return cib_native_signon_raw(cib, name, type, NULL, NULL); } int cib_native_signon_raw(cib_t* cib, const char *name, enum cib_conn_type type, int *async_fd, int *sync_fd) { int rc = cib_ok; xmlNode *hello = NULL; char *uuid_ticket = NULL; cib_native_opaque_t *native = cib->variant_opaque; crm_debug_4("Connecting command channel"); if(type == cib_command) { cib->state = cib_connected_command; native->command_channel = init_client_ipc_comms_nodispatch( cib_channel_rw); } else if(type == cib_query) { cib->state = cib_connected_query; native->command_channel = init_client_ipc_comms_nodispatch( cib_channel_ro); } else { return cib_not_connected; } if(native->command_channel == NULL) { crm_debug("Connection to command channel failed"); rc = cib_connection; } else if(native->command_channel->ch_status != IPC_CONNECT) { crm_err("Connection may have succeeded," " but authentication to command channel failed"); rc = cib_authentication; } if(rc == cib_ok) { rc = get_channel_token(native->command_channel, &uuid_ticket); if(rc == cib_ok) { native->token = uuid_ticket; uuid_ticket = NULL; } } native->callback_channel = init_client_ipc_comms_nodispatch(cib_channel_callback); if(native->callback_channel == NULL) { crm_debug("Connection to callback channel failed"); rc = cib_connection; } else if(native->callback_channel->ch_status != IPC_CONNECT) { crm_err("Connection may have succeeded," " but authentication to command channel failed"); rc = cib_authentication; } if(rc == cib_ok) { native->callback_channel->send_queue->max_qlen = 500; rc = get_channel_token(native->callback_channel, &uuid_ticket); if(rc == cib_ok) { crm_free(native->token); native->token = uuid_ticket; } } if(rc == cib_ok) { CRM_CHECK(native->token != NULL, ;); hello = cib_create_op(0, native->token, CRM_OP_REGISTER, NULL, NULL, NULL, 0); crm_xml_add(hello, F_CIB_CLIENTNAME, name); if(send_ipc_message(native->command_channel, hello) == FALSE) { rc = cib_callback_register; } free_xml(hello); } if(rc == cib_ok) { gboolean do_mainloop = TRUE; if(async_fd != NULL) { do_mainloop = FALSE; *async_fd = native->callback_channel->ops->get_recv_select_fd(native->callback_channel); } if(sync_fd != NULL) { do_mainloop = FALSE; *sync_fd = native->callback_channel->ops->get_send_select_fd(native->callback_channel); } if(do_mainloop) { crm_debug_4("Connecting callback channel"); native->callback_source = G_main_add_IPC_Channel( G_PRIORITY_HIGH, native->callback_channel, FALSE, cib_native_dispatch, cib, default_ipc_connection_destroy); if(native->callback_source == NULL) { crm_err("Callback source not recorded"); rc = cib_connection; } } } if(rc == cib_ok) { #if HAVE_MSGFROMIPC_TIMEOUT cib->call_timeout = MAX_IPC_DELAY; #endif crm_debug("Connection to CIB successful"); return cib_ok; } crm_debug("Connection to CIB failed: %s", cib_error2string(rc)); cib_native_signoff(cib); return rc; } int cib_native_signoff(cib_t* cib) { cib_native_opaque_t *native = cib->variant_opaque; crm_debug("Signing out of the CIB Service"); /* close channels */ if (native->command_channel != NULL) { native->command_channel->ops->destroy( native->command_channel); native->command_channel = NULL; } if (native->callback_source != NULL) { G_main_del_IPC_Channel(native->callback_source); native->callback_source = NULL; } if (native->callback_channel != NULL) { #ifdef BUG native->callback_channel->ops->destroy( native->callback_channel); #endif native->callback_channel = NULL; } cib->state = cib_disconnected; cib->type = cib_none; return cib_ok; } int cib_native_free (cib_t* cib) { int rc = cib_ok; if(cib->state != cib_disconnected) { rc = cib_native_signoff(cib); } if(cib->state == cib_disconnected) { cib_native_opaque_t *native = cib->variant_opaque; crm_free(native->token); crm_free(cib->variant_opaque); crm_free(cib->cmds); crm_free(cib); } return rc; } IPC_Channel * cib_native_channel(cib_t* cib) { cib_native_opaque_t *native = NULL; if(cib == NULL) { crm_err("Missing cib object"); return NULL; } native = cib->variant_opaque; if(native != NULL) { return native->callback_channel; } crm_err("couldnt find variant specific data in %p", cib); return NULL; } int cib_native_inputfd(cib_t* cib) { IPC_Channel *ch = cib_native_channel(cib); return ch->ops->get_recv_select_fd(ch); } static gboolean timer_expired = FALSE; #ifndef HAVE_MSGFROMIPC_TIMEOUT static struct timer_rec_s sync_timer; static gboolean cib_timeout_handler(gpointer data) { struct timer_rec_s *timer = data; timer_expired = TRUE; crm_err("Call %d timed out after %ds", timer->call_id, timer->timeout); /* Always return TRUE, never remove the handler * We do that after the while-loop in cib_native_perform_op() */ return TRUE; } #endif int cib_native_perform_op( cib_t *cib, const char *op, const char *host, const char *section, xmlNode *data, xmlNode **output_data, int call_options) { int rc = HA_OK; xmlNode *op_msg = NULL; xmlNode *op_reply = NULL; cib_native_opaque_t *native = cib->variant_opaque; if(cib->state == cib_disconnected) { return cib_not_connected; } if(output_data != NULL) { *output_data = NULL; } if(op == NULL) { crm_err("No operation specified"); return cib_operation; } cib->call_id++; /* prevent call_id from being negative (or zero) and conflicting * with the cib_errors enum * use 2 because we use it as (cib->call_id - 1) below */ if(cib->call_id < 1) { cib->call_id = 1; } CRM_CHECK(native->token != NULL, ;); op_msg = cib_create_op( cib->call_id, native->token, op, host, section, data, call_options); if(op_msg == NULL) { return cib_create_msg; } crm_debug_3("Sending %s message to CIB service", op); if(send_ipc_message(native->command_channel, op_msg) == FALSE) { crm_err("Sending message to CIB service FAILED"); free_xml(op_msg); return cib_send_failed; } else { crm_debug_3("Message sent"); } free_xml(op_msg); if((call_options & cib_discard_reply)) { crm_debug_3("Discarding reply"); return cib_ok; } else if(!(call_options & cib_sync_call)) { crm_debug_3("Async call, returning"); CRM_CHECK(cib->call_id != 0, return cib_reply_failed); return cib->call_id; } rc = IPC_OK; crm_debug_3("Waiting for a syncronous reply"); #ifndef HAVE_MSGFROMIPC_TIMEOUT sync_timer.ref = 0; if(cib->call_timeout > 0) { timer_expired = FALSE; sync_timer.call_id = cib->call_id; sync_timer.timeout = cib->call_timeout*1000; sync_timer.ref = g_timeout_add( sync_timer.timeout, cib_timeout_handler, &sync_timer); } #endif rc = cib_ok; while(timer_expired == FALSE && IPC_ISRCONN(native->command_channel)) { int reply_id = -1; int msg_id = cib->call_id; op_reply = xmlfromIPC(native->command_channel, cib->call_timeout); if(op_reply == NULL) { rc = cib_remote_timeout; break; } crm_element_value_int(op_reply, F_CIB_CALLID, &reply_id); if(reply_id <= 0) { rc = cib_reply_failed; break; } else if(reply_id == msg_id) { crm_debug_3("Syncronous reply received"); if(crm_element_value_int(op_reply, F_CIB_RC, &rc) != 0) { rc = cib_return_code; } if(output_data != NULL && is_not_set(call_options, cib_discard_reply)) { xmlNode *tmp = get_message_xml(op_reply, F_CIB_CALLDATA); if(tmp != NULL) { *output_data = copy_xml(tmp); } } break; } else if(reply_id < msg_id) { crm_debug("Received old reply: %d (wanted %d)", reply_id, msg_id); crm_log_xml(LOG_MSG, "Old reply", op_reply); } else if((reply_id - 10000) > msg_id) { /* wrap-around case */ crm_debug("Received old reply: %d (wanted %d)", reply_id, msg_id); crm_log_xml(LOG_MSG, "Old reply", op_reply); } else { crm_err("Received a __future__ reply:" " %d (wanted %d)", reply_id, msg_id); } free_xml(op_reply); op_reply = NULL; } if(IPC_ISRCONN(native->command_channel) == FALSE) { crm_err("CIB disconnected: %d", native->command_channel->ch_status); cib->state = cib_disconnected; } if(op_reply == NULL && cib->state == cib_disconnected) { rc = cib_not_connected; } else if(rc == cib_ok && op_reply == NULL) { rc = cib_remote_timeout; } switch(rc) { case cib_ok: case cib_not_master: break; /* This is an internal value that clients do not and should not care about */ case cib_diff_resync: rc = cib_ok; break; /* These indicate internal problems */ case cib_return_code: case cib_reply_failed: case cib_master_timeout: crm_err("Call failed: %s", cib_error2string(rc)); if(op_reply) { crm_log_xml(LOG_ERR, "Invalid reply", op_reply); } break; default: if(safe_str_neq(op, CIB_OP_QUERY)) { crm_warn("Call failed: %s", cib_error2string(rc)); } } #ifndef HAVE_MSGFROMIPC_TIMEOUT if(sync_timer.ref > 0) { g_source_remove(sync_timer.ref); sync_timer.ref = 0; } #endif free_xml(op_reply); return rc; } gboolean cib_native_msgready(cib_t* cib) { cib_native_opaque_t *native = NULL; if (cib == NULL) { crm_err("No CIB!"); return FALSE; } native = cib->variant_opaque; if(native->command_channel != NULL) { /* drain the channel */ IPC_Channel *cmd_ch = native->command_channel; xmlNode *cmd_msg = NULL; while(cmd_ch->ch_status != IPC_DISCONNECT && cmd_ch->ops->is_message_pending(cmd_ch)) { /* this will happen when the CIB exited from beneath us */ cmd_msg = xmlfromIPC(cmd_ch, MAX_IPC_DELAY); free_xml(cmd_msg); } } else { crm_err("No command channel"); } if(native->callback_channel == NULL) { crm_err("No callback channel"); return FALSE; } else if(native->callback_channel->ch_status == IPC_DISCONNECT) { crm_info("Lost connection to the CIB service [%d].", native->callback_channel->farside_pid); return FALSE; } else if(native->callback_channel->ops->is_message_pending( native->callback_channel)) { crm_debug_4("Message pending on command channel [%d]", native->callback_channel->farside_pid); return TRUE; } crm_debug_3("No message pending"); return FALSE; } int cib_native_rcvmsg(cib_t* cib, int blocking) { const char *type = NULL; xmlNode* msg = NULL; cib_native_opaque_t *native = NULL; if (cib == NULL) { crm_err("No CIB!"); return FALSE; } native = cib->variant_opaque; /* if it is not blocking mode and no message in the channel, return */ if (blocking == 0 && cib_native_msgready(cib) == FALSE) { crm_debug_3("No message ready and non-blocking..."); return 0; } else if (cib_native_msgready(cib) == FALSE) { crm_debug("Waiting for message from CIB service..."); if(native->callback_channel == NULL) { return -1; } else if(native->callback_channel->ch_status != IPC_CONNECT) { return -2; } else if(native->command_channel && native->command_channel->ch_status != IPC_CONNECT){ return -3; } native->callback_channel->ops->waitin(native->callback_channel); } /* IPC_INTR is not a factor here */ msg = xmlfromIPC(native->callback_channel, MAX_IPC_DELAY); if (msg == NULL) { crm_warn("Received a NULL msg from CIB service."); return 0; } /* do callbacks */ type = crm_element_value(msg, F_TYPE); crm_debug_4("Activating %s callbacks...", type); if(safe_str_eq(type, T_CIB)) { cib_native_callback(cib, msg, 0, 0); } else if(safe_str_eq(type, T_CIB_NOTIFY)) { g_list_foreach(cib->notify_list, cib_native_notify, msg); } else { crm_err("Unknown message type: %s", type); } free_xml(msg); return 1; } gboolean cib_native_dispatch(IPC_Channel *channel, gpointer user_data) { cib_t *cib = user_data; cib_native_opaque_t *native = NULL; gboolean stay_connected = TRUE; CRM_CHECK(cib != NULL, return FALSE); native = cib->variant_opaque; CRM_CHECK(native->callback_channel == channel, return FALSE); while(cib_native_msgready(cib)) { /* invoke the callbacks but dont block */ int rc = cib_native_rcvmsg(cib, 0); if( rc < 0) { crm_err("Message acquisition failed: %d", rc); break; } else if(rc == 0) { break; } } if(native->callback_channel && native->callback_channel->ch_status != IPC_CONNECT) { crm_crit("Lost connection to the CIB service [%d/callback].", channel->farside_pid); native->callback_source = NULL; stay_connected = FALSE; } if(native->command_channel && native->command_channel->ch_status != IPC_CONNECT) { crm_crit("Lost connection to the CIB service [%d/command].", channel->farside_pid); native->callback_source = NULL; stay_connected = FALSE; } return stay_connected; } static void default_cib_connection_destroy(gpointer user_data) { cib_t *cib = user_data; cib->state = cib_disconnected; } int cib_native_set_connection_dnotify( cib_t *cib, void (*dnotify)(gpointer user_data)) { cib_native_opaque_t *native = NULL; if (cib == NULL) { crm_err("No CIB!"); return FALSE; } native = cib->variant_opaque; if(dnotify == NULL) { crm_warn("Setting dnotify back to default value"); set_IPC_Channel_dnotify( native->callback_source, default_cib_connection_destroy); } else { crm_debug_3("Setting dnotify"); set_IPC_Channel_dnotify(native->callback_source, dnotify); } return cib_ok; } int cib_native_register_notification(cib_t* cib, const char *callback, int enabled) { xmlNode *notify_msg = create_xml_node(NULL, "cib-callback"); cib_native_opaque_t *native = cib->variant_opaque; if(cib->state != cib_disconnected) { crm_xml_add(notify_msg, F_CIB_OPERATION, T_CIB_NOTIFY); crm_xml_add(notify_msg, F_CIB_NOTIFY_TYPE, callback); crm_xml_add_int(notify_msg, F_CIB_NOTIFY_ACTIVATE, enabled); send_ipc_message(native->callback_channel, notify_msg); } free_xml(notify_msg); return cib_ok; } diff --git a/lib/cib/cib_ops.c b/lib/cib/cib_ops.c index 15ab6b30b5..a8d1101c76 100644 --- a/lib/cib/cib_ops.c +++ b/lib/cib/cib_ops.c @@ -1,1010 +1,1010 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include enum cib_errors cib_process_query( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { xmlNode *obj_root = NULL; enum cib_errors result = cib_ok; crm_debug_2("Processing \"%s\" event for section=%s", op, crm_str(section)); if(options & cib_xpath) { return cib_process_xpath(op, options, section, req, input, existing_cib, result_cib, answer); } CRM_CHECK(*answer == NULL, free_xml(*answer)); *answer = NULL; if (safe_str_eq(XML_CIB_TAG_SECTION_ALL, section)) { section = NULL; } obj_root = get_object_root(section, existing_cib); if(obj_root == NULL) { result = cib_NOTEXISTS; } else { *answer = obj_root; } if(result == cib_ok && *answer == NULL) { crm_err("Error creating query response"); result = cib_output_data; } return result; } enum cib_errors cib_process_erase( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { enum cib_errors result = cib_ok; crm_debug_2("Processing \"%s\" event", op); *answer = NULL; free_xml(*result_cib); *result_cib = createEmptyCib(); copy_in_properties(*result_cib, existing_cib); cib_update_counter(*result_cib, XML_ATTR_GENERATION, FALSE); return result; } enum cib_errors cib_process_upgrade( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { int rc = 0; int new_version = 0; int current_version = 0; const char *value = crm_element_value(existing_cib, XML_ATTR_VALIDATION);; *answer = NULL; crm_debug_2("Processing \"%s\" event", op); if(value != NULL) { current_version = get_schema_version(value); } rc = update_validation(result_cib, &new_version, TRUE, TRUE); if(new_version > current_version) { return cib_ok; } return rc; } enum cib_errors cib_process_bump( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { enum cib_errors result = cib_ok; crm_debug_2("Processing \"%s\" event for epoch=%s", op, crm_str(crm_element_value(existing_cib, XML_ATTR_GENERATION))); *answer = NULL; cib_update_counter(*result_cib, XML_ATTR_GENERATION, FALSE); return result; } enum cib_errors cib_update_counter(xmlNode *xml_obj, const char *field, gboolean reset) { char *new_value = NULL; char *old_value = NULL; int int_value = -1; if(reset == FALSE && crm_element_value(xml_obj, field) != NULL) { old_value = crm_element_value_copy(xml_obj, field); } if(old_value != NULL) { crm_malloc0(new_value, 128); int_value = atoi(old_value); sprintf(new_value, "%d", ++int_value); } else { new_value = crm_strdup("1"); } crm_debug_4("%s %d(%s)->%s", field, int_value, crm_str(old_value), crm_str(new_value)); crm_xml_add(xml_obj, field, new_value); crm_free(new_value); crm_free(old_value); return cib_ok; } enum cib_errors cib_process_replace( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { const char *tag = NULL; gboolean verbose = FALSE; enum cib_errors result = cib_ok; crm_debug_2("Processing \"%s\" event for section=%s", op, crm_str(section)); if(options & cib_xpath) { return cib_process_xpath(op, options, section, req, input, existing_cib, result_cib, answer); } *answer = NULL; if (input == NULL) { return cib_NOOBJECT; } tag = crm_element_name(input); if (options & cib_verbose) { verbose = TRUE; } if(safe_str_eq(XML_CIB_TAG_SECTION_ALL, section)) { section = NULL; } else if(safe_str_eq(tag, section)) { section = NULL; } if(safe_str_eq(tag, XML_TAG_CIB)) { int updates = 0; int epoch = 0; int admin_epoch = 0; int replace_updates = 0; int replace_epoch = 0; int replace_admin_epoch = 0; const char *reason = NULL; cib_version_details( existing_cib, &admin_epoch, &epoch, &updates); cib_version_details(input, &replace_admin_epoch, &replace_epoch, &replace_updates); if(replace_admin_epoch < admin_epoch) { reason = XML_ATTR_GENERATION_ADMIN; } else if(replace_admin_epoch > admin_epoch) { /* no more checks */ } else if(replace_epoch < epoch) { reason = XML_ATTR_GENERATION; } else if(replace_epoch > epoch) { /* no more checks */ } else if(replace_updates < updates) { reason = XML_ATTR_NUMUPDATES; } if(reason != NULL) { crm_warn("Replacement %d.%d.%d not applied to %d.%d.%d:" " current %s is greater than the replacement", replace_admin_epoch, replace_epoch, replace_updates, admin_epoch, epoch, updates, reason); result = cib_old_data; } free_xml(*result_cib); *result_cib = copy_xml(input); } else { xmlNode *obj_root = NULL; gboolean ok = TRUE; obj_root = get_object_root(section, *result_cib); ok = replace_xml_child(NULL, obj_root, input, FALSE); if(ok == FALSE) { crm_debug_2("No matching object to replace"); result = cib_NOTEXISTS; } } return result; } enum cib_errors cib_process_delete( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { xmlNode *obj_root = NULL; crm_debug_2("Processing \"%s\" event", op); if(options & cib_xpath) { return cib_process_xpath(op, options, section, req, input, existing_cib, result_cib, answer); } if(input == NULL) { crm_err("Cannot perform modification with no data"); return cib_NOOBJECT; } obj_root = get_object_root(section, *result_cib); crm_validate_data(input); crm_validate_data(*result_cib); if(replace_xml_child(NULL, obj_root, input, TRUE) == FALSE) { crm_debug_2("No matching object to delete"); } return cib_ok; } enum cib_errors cib_process_modify( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { xmlNode *obj_root = NULL; crm_debug_2("Processing \"%s\" event", op); if(options & cib_xpath) { return cib_process_xpath(op, options, section, req, input, existing_cib, result_cib, answer); } if(input == NULL) { crm_err("Cannot perform modification with no data"); return cib_NOOBJECT; } obj_root = get_object_root(section, *result_cib); crm_validate_data(input); crm_validate_data(*result_cib); if(obj_root == NULL) { xmlNode *tmp_section = NULL; const char *path = get_object_parent(section); if(path == NULL) { return cib_bad_section; } tmp_section = create_xml_node(NULL, section); cib_process_xpath( CIB_OP_CREATE, 0, path, NULL, tmp_section, NULL, result_cib, answer); free_xml(tmp_section); obj_root = get_object_root(section, *result_cib); } CRM_CHECK(obj_root != NULL, return cib_unknown); if(update_xml_child(obj_root, input) == FALSE) { if(options & cib_can_create) { add_node_copy(obj_root, input); } else { return cib_NOTEXISTS; } } return cib_ok; } static int update_cib_object(xmlNode *parent, xmlNode *update) { int result = cib_ok; xmlNode *target = NULL; xmlNode *a_child = NULL; const char *replace = NULL; const char *object_id = NULL; const char *object_name = NULL; CRM_CHECK(update != NULL, return cib_NOOBJECT); CRM_CHECK(parent != NULL, return cib_NOPARENT); object_name = crm_element_name(update); CRM_CHECK(object_name != NULL, return cib_NOOBJECT); object_id = ID(update); crm_debug_3("Processing: <%s id=%s>", crm_str(object_name), crm_str(object_id)); if(object_id == NULL) { /* placeholder object */ target = find_xml_node(parent, object_name, FALSE); } else { target = find_entity(parent, object_name, object_id); } if(target == NULL) { target = create_xml_node(parent, object_name); } crm_debug_2("Found node <%s id=%s> to update", crm_str(object_name), crm_str(object_id)); replace = crm_element_value(update, XML_CIB_ATTR_REPLACE); if(replace != NULL) { xmlNode *remove = NULL; int last = 0, lpc = 0, len = 0; len = strlen(replace); while(lpc <= len) { if(replace[lpc] == ',' || replace[lpc] == 0) { char *replace_item = NULL; if ( last == lpc ) { /* nothing to do */ last = lpc+1; goto incr; } crm_malloc0(replace_item, lpc - last + 1); strncpy(replace_item, replace+last, lpc-last); remove = find_xml_node(target, replace_item, FALSE); if(remove != NULL) { crm_debug_3("Replacing node <%s> in <%s>", replace_item, crm_element_name(target)); zap_xml_from_parent(target, remove); } crm_free(replace_item); last = lpc+1; } incr: lpc++; } xml_remove_prop(update, XML_CIB_ATTR_REPLACE); xml_remove_prop(target, XML_CIB_ATTR_REPLACE); } copy_in_properties(target, update); crm_debug_3("Processing children of <%s id=%s>", crm_str(object_name), crm_str(object_id)); for(a_child = __xml_first_child(update); a_child != NULL; a_child = __xml_next(a_child)) { int tmp_result = 0; crm_debug_3("Updating child <%s id=%s>", crm_element_name(a_child), ID(a_child)); tmp_result = update_cib_object(target, a_child); /* only the first error is likely to be interesting */ if(tmp_result != cib_ok) { crm_err("Error updating child <%s id=%s>", crm_element_name(a_child), ID(a_child)); if(result == cib_ok) { result = tmp_result; } } } crm_debug_3("Finished with <%s id=%s>", crm_str(object_name), crm_str(object_id)); return result; } static int add_cib_object(xmlNode *parent, xmlNode *new_obj) { enum cib_errors result = cib_ok; const char *object_name = NULL; const char *object_id = NULL; xmlNode *equiv_node = NULL; if(new_obj != NULL) { object_name = crm_element_name(new_obj); } object_id = crm_element_value(new_obj, XML_ATTR_ID); crm_debug_3("Processing: <%s id=%s>", crm_str(object_name), crm_str(object_id)); if(new_obj == NULL || object_name == NULL) { result = cib_NOOBJECT; } else if(parent == NULL) { result = cib_NOPARENT; } else if(object_id == NULL) { /* placeholder object */ equiv_node = find_xml_node(parent, object_name, FALSE); } else { equiv_node = find_entity(parent, object_name, object_id); } if(result != cib_ok) { ; /* do nothing */ } else if(equiv_node != NULL) { result = cib_EXISTS; } else { result = update_cib_object(parent, new_obj); } return result; } enum cib_errors cib_process_create( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { xmlNode *failed = NULL; enum cib_errors result = cib_ok; xmlNode *update_section = NULL; crm_debug_2("Processing \"%s\" event for section=%s", op, crm_str(section)); if(safe_str_eq(XML_CIB_TAG_SECTION_ALL, section)) { section = NULL; } else if(safe_str_eq(XML_TAG_CIB, section)) { section = NULL; } else if(safe_str_eq(crm_element_name(input), XML_TAG_CIB)) { section = NULL; } CRM_CHECK(strcasecmp(CIB_OP_CREATE, op) == 0, return cib_operation); if(input == NULL) { crm_err("Cannot perform modification with no data"); return cib_NOOBJECT; } if(section == NULL) { return cib_process_modify(op, options, section, req, input, existing_cib, result_cib, answer); } failed = create_xml_node(NULL, XML_TAG_FAILED); update_section = get_object_root(section, *result_cib); if(safe_str_eq(crm_element_name(input), section)) { xmlNode *a_child = NULL; for(a_child = __xml_first_child(input); a_child != NULL; a_child = __xml_next(a_child)) { result = add_cib_object(update_section, a_child); if(update_results(failed, a_child, op, result)) { break; } } } else { result = add_cib_object(update_section, input); update_results(failed, input, op, result); } if(xml_has_children(failed)) { CRM_CHECK(result != cib_ok, result = cib_unknown); } if (result != cib_ok) { crm_log_xml_err(failed, "CIB Update failures"); *answer = failed; } else { free_xml(failed); } return result; } enum cib_errors cib_process_diff( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { unsigned int log_level = LOG_DEBUG; const char *reason = NULL; gboolean apply_diff = TRUE; enum cib_errors result = cib_ok; int this_updates = 0; int this_epoch = 0; int this_admin_epoch = 0; int diff_add_updates = 0; int diff_add_epoch = 0; int diff_add_admin_epoch = 0; int diff_del_updates = 0; int diff_del_epoch = 0; int diff_del_admin_epoch = 0; crm_debug_2("Processing \"%s\" event", op); cib_diff_version_details( input, &diff_add_admin_epoch, &diff_add_epoch, &diff_add_updates, &diff_del_admin_epoch, &diff_del_epoch, &diff_del_updates); crm_element_value_int(existing_cib, XML_ATTR_GENERATION, &this_epoch); crm_element_value_int(existing_cib, XML_ATTR_NUMUPDATES, &this_updates); crm_element_value_int(existing_cib, XML_ATTR_GENERATION_ADMIN, &this_admin_epoch); if(this_epoch < 0) { this_epoch = 0; } if(this_updates < 0) { this_updates = 0; } if(this_admin_epoch < 0) { this_admin_epoch = 0; } if(diff_del_admin_epoch == diff_add_admin_epoch && diff_del_epoch == diff_add_epoch && diff_del_updates == diff_add_updates) { if(options & cib_force_diff) { apply_diff = FALSE; log_level = LOG_ERR; reason = "+ and - versions in the diff did not change in global update"; crm_log_xml_warn(input, "Bad global update"); } else if(diff_add_admin_epoch == -1 && diff_add_epoch == -1 && diff_add_updates == -1) { diff_add_epoch = this_epoch; diff_add_updates = this_updates + 1; diff_add_admin_epoch = this_admin_epoch; diff_del_epoch = this_epoch; diff_del_updates = this_updates; diff_del_admin_epoch = this_admin_epoch; } else { apply_diff = FALSE; log_level = LOG_ERR; reason = "+ and - versions in the diff did not change"; log_cib_diff(LOG_ERR, input, __FUNCTION__); } } if(apply_diff && diff_del_admin_epoch > this_admin_epoch) { result = cib_diff_resync; apply_diff = FALSE; log_level = LOG_INFO; reason = "current \""XML_ATTR_GENERATION_ADMIN"\" is less than required"; } else if(apply_diff && diff_del_admin_epoch < this_admin_epoch) { apply_diff = FALSE; log_level = LOG_WARNING; reason = "current \""XML_ATTR_GENERATION_ADMIN"\" is greater than required"; } else if(apply_diff && diff_del_epoch > this_epoch) { result = cib_diff_resync; apply_diff = FALSE; log_level = LOG_INFO; reason = "current \""XML_ATTR_GENERATION"\" is less than required"; } else if(apply_diff && diff_del_epoch < this_epoch) { apply_diff = FALSE; log_level = LOG_WARNING; reason = "current \""XML_ATTR_GENERATION"\" is greater than required"; } else if(apply_diff && diff_del_updates > this_updates) { result = cib_diff_resync; apply_diff = FALSE; log_level = LOG_INFO; reason = "current \""XML_ATTR_NUMUPDATES"\" is less than required"; } else if(apply_diff && diff_del_updates < this_updates) { apply_diff = FALSE; log_level = LOG_WARNING; reason = "current \""XML_ATTR_NUMUPDATES"\" is greater than required"; } if(apply_diff) { free_xml(*result_cib); *result_cib = NULL; if(apply_xml_diff(existing_cib, input, result_cib) == FALSE) { log_level = LOG_NOTICE; reason = "Failed application of an update diff"; if(options & cib_force_diff) { result = cib_diff_resync; } } } if(reason != NULL) { do_crm_log( log_level, "Diff %d.%d.%d -> %d.%d.%d not applied to %d.%d.%d: %s", diff_del_admin_epoch,diff_del_epoch,diff_del_updates, diff_add_admin_epoch,diff_add_epoch,diff_add_updates, this_admin_epoch,this_epoch,this_updates, reason); crm_log_xml_trace(input, "Discarded diff"); if(result == cib_ok) { result = cib_diff_failed; } } else if(apply_diff) { crm_debug_2("Diff %d.%d.%d -> %d.%d.%d was applied to %d.%d.%d", diff_del_admin_epoch,diff_del_epoch,diff_del_updates, diff_add_admin_epoch,diff_add_epoch,diff_add_updates, this_admin_epoch,this_epoch,this_updates); } return result; } gboolean apply_cib_diff(xmlNode *old, xmlNode *diff, xmlNode **new) { gboolean result = TRUE; const char *value = NULL; int this_updates = 0; int this_epoch = 0; int this_admin_epoch = 0; int diff_add_updates = 0; int diff_add_epoch = 0; int diff_add_admin_epoch = 0; int diff_del_updates = 0; int diff_del_epoch = 0; int diff_del_admin_epoch = 0; CRM_CHECK(diff != NULL, return FALSE); CRM_CHECK(old != NULL, return FALSE); value = crm_element_value(old, XML_ATTR_GENERATION_ADMIN); this_admin_epoch = crm_parse_int(value, "0"); crm_debug_3("%s=%d (%s)", XML_ATTR_GENERATION_ADMIN, this_admin_epoch, value); value = crm_element_value(old, XML_ATTR_GENERATION); this_epoch = crm_parse_int(value, "0"); crm_debug_3("%s=%d (%s)", XML_ATTR_GENERATION, this_epoch, value); value = crm_element_value(old, XML_ATTR_NUMUPDATES); this_updates = crm_parse_int(value, "0"); crm_debug_3("%s=%d (%s)", XML_ATTR_NUMUPDATES, this_updates, value); cib_diff_version_details( diff, &diff_add_admin_epoch, &diff_add_epoch, &diff_add_updates, &diff_del_admin_epoch, &diff_del_epoch, &diff_del_updates); value = NULL; if(result && diff_del_admin_epoch != this_admin_epoch) { value = XML_ATTR_GENERATION_ADMIN; result = FALSE; crm_debug_3("%s=%d", value, diff_del_admin_epoch); } else if(result && diff_del_epoch != this_epoch) { value = XML_ATTR_GENERATION; result = FALSE; crm_debug_3("%s=%d", value, diff_del_epoch); } else if(result && diff_del_updates != this_updates) { value = XML_ATTR_NUMUPDATES; result = FALSE; crm_debug_3("%s=%d", value, diff_del_updates); } if(result) { xmlNode *tmp = NULL; xmlNode *diff_copy = copy_xml(diff); tmp = find_xml_node(diff_copy, "diff-removed", TRUE); if(tmp != NULL) { xml_remove_prop(tmp, XML_ATTR_GENERATION_ADMIN); xml_remove_prop(tmp, XML_ATTR_GENERATION); xml_remove_prop(tmp, XML_ATTR_NUMUPDATES); } tmp = find_xml_node(diff_copy, "diff-added", TRUE); if(tmp != NULL) { xml_remove_prop(tmp, XML_ATTR_GENERATION_ADMIN); xml_remove_prop(tmp, XML_ATTR_GENERATION); xml_remove_prop(tmp, XML_ATTR_NUMUPDATES); } result = apply_xml_diff(old, diff_copy, new); free_xml(diff_copy); } else { crm_err("target and diff %s values didnt match", value); } return result; } gboolean cib_config_changed(xmlNode *last, xmlNode *next, xmlNode **diff) { gboolean config_changes = FALSE; xmlXPathObject *xpathObj = NULL; CRM_ASSERT(diff != NULL); if(last != NULL && next != NULL) { *diff = diff_xml_object(last, next, FALSE); } if(*diff == NULL) { goto done; } xpathObj = xpath_search(*diff, "//"XML_CIB_TAG_CONFIGURATION); if(xpathObj && xpathObj->nodesetval->nodeNr > 0) { config_changes = TRUE; goto done; } else if(xpathObj) { xmlXPathFreeObject(xpathObj); } xpathObj = xpath_search(*diff, "//"XML_TAG_DIFF_REMOVED"//"XML_TAG_CIB); if(xpathObj) { int lpc = 0, max = xpathObj->nodesetval->nodeNr; for(lpc = 0; lpc < max; lpc++) { xmlNode *top = getXpathResult(xpathObj, lpc); if(crm_element_value(top, XML_ATTR_GENERATION) != NULL) { config_changes = TRUE; goto done; } if(crm_element_value(top, XML_ATTR_GENERATION_ADMIN) != NULL) { config_changes = TRUE; goto done; } if(crm_element_value(top, XML_ATTR_VALIDATION) != NULL) { config_changes = TRUE; goto done; } if(crm_element_value(top, XML_ATTR_CRM_VERSION) != NULL) { config_changes = TRUE; goto done; } } } done: if(xpathObj) { xmlXPathFreeObject(xpathObj); } return config_changes; } xmlNode * diff_cib_object(xmlNode *old_cib, xmlNode *new_cib, gboolean suppress) { xmlNode *dest = NULL; xmlNode *src = NULL; const char *name = NULL; const char *value = NULL; xmlNode *diff = diff_xml_object(old_cib, new_cib, suppress); /* add complete version information */ src = old_cib; dest = find_xml_node(diff, "diff-removed", FALSE); if(src != NULL && dest != NULL) { name = XML_ATTR_GENERATION_ADMIN; value = crm_element_value(src, name); if(value == NULL) { value = "0"; } crm_xml_add(dest, name, value); name = XML_ATTR_GENERATION; value = crm_element_value(src, name); if(value == NULL) { value = "0"; } crm_xml_add(dest, name, value); name = XML_ATTR_NUMUPDATES; value = crm_element_value(src, name); if(value == NULL) { value = "0"; } crm_xml_add(dest, name, value); } src = new_cib; dest = find_xml_node(diff, "diff-added", FALSE); if(src != NULL && dest != NULL) { name = XML_ATTR_GENERATION_ADMIN; value = crm_element_value(src, name); if(value == NULL) { value = "0"; } crm_xml_add(dest, name, value); name = XML_ATTR_GENERATION; value = crm_element_value(src, name); if(value == NULL) { value = "0"; } crm_xml_add(dest, name, value); name = XML_ATTR_NUMUPDATES; value = crm_element_value(src, name); if(value == NULL) { value = "0"; } crm_xml_add(dest, name, value); } return diff; } enum cib_errors cib_process_xpath( const char *op, int options, const char *section, xmlNode *req, xmlNode *input, xmlNode *existing_cib, xmlNode **result_cib, xmlNode **answer) { int lpc = 0; int max = 0; int rc = cib_ok; gboolean is_query = safe_str_eq(op, CIB_OP_QUERY); xmlXPathObjectPtr xpathObj = NULL; crm_debug_2("Processing \"%s\" event", op); if(is_query) { xpathObj = xpath_search(existing_cib, section); } else { xpathObj = xpath_search(*result_cib, section); } if(xpathObj != NULL && xpathObj->nodesetval != NULL) { max = xpathObj->nodesetval->nodeNr; } if(max < 1 && safe_str_eq(op, CIB_OP_DELETE)) { crm_debug("%s was already removed", section); } else if(max < 1) { crm_debug("%s: %s does not exist", op, section); rc = cib_NOTEXISTS; } else if(is_query) { if(max > 1) { *answer = create_xml_node(NULL, "xpath-query"); } } for(lpc = 0; lpc < max; lpc++) { xmlChar *path = NULL; xmlNode *match = getXpathResult(xpathObj, lpc); if(match == NULL) { continue; } path = xmlGetNodePath(match); crm_debug("Processing %s op for %s (%s)", op, section, path); free(path); if(safe_str_eq(op, CIB_OP_DELETE)) { free_xml_from_parent(NULL, match); if((options & cib_multiple) == 0) { break; } } else if(safe_str_eq(op, CIB_OP_MODIFY)) { if(update_xml_child(match, input) == FALSE) { rc = cib_NOTEXISTS; } else if((options & cib_multiple) == 0) { break; } } else if(safe_str_eq(op, CIB_OP_CREATE)) { add_node_copy(match, input); break; } else if(safe_str_eq(op, CIB_OP_QUERY)) { if(options & cib_no_children) { const char *tag = TYPE(match); xmlNode *shallow = create_xml_node(*answer, tag); copy_in_properties(shallow, match); if(*answer == NULL) { *answer = shallow; } } else if(*answer) { add_node_copy(*answer, match); } else { *answer = match; } } else if(safe_str_eq(op, CIB_OP_REPLACE)) { xmlNode *parent = match->parent; free_xml_from_parent(NULL, match); if(input != NULL) { add_node_copy(parent, input); } if((options & cib_multiple) == 0) { break; } } } if(xpathObj) { xmlXPathFreeObject(xpathObj); } return rc; } /* remove this function */ gboolean update_results( xmlNode *failed, xmlNode *target, const char* operation, int return_code) { xmlNode *xml_node = NULL; gboolean was_error = FALSE; const char *error_msg = NULL; if (return_code != cib_ok) { error_msg = cib_error2string(return_code); was_error = TRUE; xml_node = create_xml_node(failed, XML_FAIL_TAG_CIB); add_node_copy(xml_node, target); crm_xml_add(xml_node, XML_FAILCIB_ATTR_ID, ID(target)); crm_xml_add(xml_node, XML_FAILCIB_ATTR_OBJTYPE, TYPE(target)); crm_xml_add(xml_node, XML_FAILCIB_ATTR_OP, operation); crm_xml_add(xml_node, XML_FAILCIB_ATTR_REASON, error_msg); crm_warn("Action %s failed: %s (cde=%d)", operation, error_msg, return_code); } return was_error; } diff --git a/lib/cib/cib_private.h b/lib/cib/cib_private.h index c96ef539c3..6b9f904722 100644 --- a/lib/cib/cib_private.h +++ b/lib/cib/cib_private.h @@ -1,75 +1,75 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef CIB_PRIVATE__H #define CIB_PRIVATE__H #include extern GHashTable *cib_op_callback_table; typedef struct cib_notify_client_s { const char *event; const char *obj_id; /* implement one day */ const char *obj_type; /* implement one day */ void (*callback)(const char *event, xmlNode *msg); } cib_notify_client_t; typedef struct cib_callback_client_s { void (*callback)(xmlNode*, int, int, xmlNode*, void*); const char *id; void *user_data; gboolean only_success; struct timer_rec_s *timer; } cib_callback_client_t; struct timer_rec_s { int call_id; int timeout; guint ref; cib_t *cib; }; typedef enum cib_errors (*cib_op_t)(const char *, int, const char *, xmlNode *, xmlNode*, xmlNode*, xmlNode**, xmlNode**); extern cib_t *cib_new_variant(void); enum cib_errors cib_perform_op(const char *op, int call_options, cib_op_t *fn, gboolean is_query, const char *section, xmlNode *req, xmlNode *input, gboolean manage_counters, gboolean *config_changed, xmlNode *current_cib, xmlNode **result_cib, xmlNode **diff, xmlNode **output); extern xmlNode *cib_create_op( int call_id, const char *token, const char *op, const char *host, const char *section, xmlNode *data, int call_options); extern int get_channel_token(IPC_Channel *ch, char **token); void cib_native_callback(cib_t *cib, xmlNode *msg, int call_id, int rc); void cib_native_notify(gpointer data, gpointer user_data); int cib_native_register_notification(cib_t* cib, const char *callback, int enabled); gboolean cib_client_register_callback( cib_t *cib, int call_id, int timeout, gboolean only_success, void *user_data, const char *callback_name, void (*callback)(xmlNode*, int, int, xmlNode*,void*)); #endif diff --git a/lib/cib/cib_remote.c b/lib/cib/cib_remote.c index 4cb8a6fc1b..93c7063b9e 100644 --- a/lib/cib/cib_remote.c +++ b/lib/cib/cib_remote.c @@ -1,637 +1,637 @@ /* * Copyright (c) 2008 Andrew Beekhof * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #ifdef HAVE_GNUTLS_GNUTLS_H # undef KEYFILE # include extern gnutls_anon_client_credentials anon_cred_c; extern gnutls_session *create_tls_session(int csock, int type); const int kx_prio[] = { GNUTLS_KX_ANON_DH, 0 }; #else typedef void gnutls_session; #endif #include #include #define DH_BITS 1024 struct remote_connection_s { int socket; gboolean encrypted; gnutls_session *session; GFDSource *source; char *token; }; typedef struct cib_remote_opaque_s { int flags; int socket; int port; char *server; char *user; char *passwd; struct remote_connection_s command; struct remote_connection_s callback; } cib_remote_opaque_t; void cib_remote_connection_destroy(gpointer user_data); gboolean cib_remote_dispatch(int fd, gpointer user_data); int cib_remote_signon(cib_t* cib, const char *name, enum cib_conn_type type); int cib_remote_signoff(cib_t* cib); int cib_remote_free(cib_t* cib); int cib_remote_perform_op( cib_t *cib, const char *op, const char *host, const char *section, xmlNode *data, xmlNode **output_data, int call_options); static int cib_remote_inputfd(cib_t* cib) { cib_remote_opaque_t *private = cib->variant_opaque; return private->callback.socket; } static int cib_remote_set_connection_dnotify( cib_t *cib, void (*dnotify)(gpointer user_data)) { return cib_NOTSUPPORTED; } static int cib_remote_register_notification(cib_t* cib, const char *callback, int enabled) { xmlNode *notify_msg = create_xml_node(NULL, "cib_command"); cib_remote_opaque_t *private = cib->variant_opaque; crm_xml_add(notify_msg, F_CIB_OPERATION, T_CIB_NOTIFY); crm_xml_add(notify_msg, F_CIB_NOTIFY_TYPE, callback); crm_xml_add_int(notify_msg, F_CIB_NOTIFY_ACTIVATE, enabled); cib_send_remote_msg(private->callback.session, notify_msg, private->callback.encrypted); free_xml(notify_msg); return cib_ok; } cib_t* cib_remote_new (const char *server, const char *user, const char *passwd, int port, gboolean encrypted) { cib_remote_opaque_t *private = NULL; cib_t *cib = cib_new_variant(); crm_malloc0(private, sizeof(cib_remote_opaque_t)); cib->variant = cib_remote; cib->variant_opaque = private; if(server) { private->server = crm_strdup(server); } if(user) { private->user = crm_strdup(user); } if(passwd) { private->passwd = crm_strdup(passwd); } private->port = port; private->command.encrypted = encrypted; private->callback.encrypted = encrypted; /* assign variant specific ops*/ cib->cmds->variant_op = cib_remote_perform_op; cib->cmds->signon = cib_remote_signon; cib->cmds->signoff = cib_remote_signoff; cib->cmds->free = cib_remote_free; cib->cmds->inputfd = cib_remote_inputfd; cib->cmds->register_notification = cib_remote_register_notification; cib->cmds->set_connection_dnotify = cib_remote_set_connection_dnotify; return cib; } static int cib_tls_close(cib_t *cib) { cib_remote_opaque_t *private = cib->variant_opaque; close(private->command.socket); close(private->callback.socket); #ifdef HAVE_GNUTLS_GNUTLS_H if(private->command.encrypted) { gnutls_anon_free_client_credentials (anon_cred_c); gnutls_global_deinit(); } #endif return 0; } static int cib_tls_signon(cib_t *cib, struct remote_connection_s *connection) { int sock; cib_remote_opaque_t *private = cib->variant_opaque; struct sockaddr_in addr; int rc = 0; char *server = private->server; int ret_ga; struct addrinfo *res; struct addrinfo hints; xmlNode *answer = NULL; xmlNode *login = NULL; connection->socket = 0; connection->session = NULL; /* create socket */ sock = socket(PF_INET, SOCK_STREAM, IPPROTO_TCP); if (sock == -1 ) { crm_perror(LOG_ERR,"Socket creation failed"); return -1; } /* getaddrinfo */ bzero(&hints, sizeof(struct addrinfo)); hints.ai_flags = AI_CANONNAME; hints.ai_family = AF_INET; hints.ai_socktype = SOCK_RAW; if(hints.ai_family == AF_INET6) { hints.ai_protocol = IPPROTO_ICMPV6; } else { hints.ai_protocol = IPPROTO_ICMP; } crm_debug("Looking up %s", server); ret_ga = getaddrinfo(server, NULL, &hints, &res); if (ret_ga) { crm_err("getaddrinfo: %s", gai_strerror(ret_ga)); return -1; } if (res->ai_canonname) { server = res->ai_canonname; } crm_debug("Got address %s for %s", server, private->server); if (!res->ai_addr) { fprintf(stderr, "getaddrinfo failed"); exit(1); } #if 1 memcpy(&addr, res->ai_addr, res->ai_addrlen); #else /* connect to server*/ memset(&addr, 0, sizeof(addr)); addr.sin_family = AF_INET; addr.sin_addr.s_addr = inet_addr(server); #endif addr.sin_port = htons(private->port); if (connect(sock, (struct sockaddr *) &addr, sizeof(addr)) == -1) { crm_perror(LOG_ERR,"Connection to %s:%d failed", server, private->port); close(sock); return -1; } if(connection->encrypted) { /* initialize GnuTls lib*/ #ifdef HAVE_GNUTLS_GNUTLS_H gnutls_global_init(); gnutls_anon_allocate_client_credentials(&anon_cred_c); /* bind the socket to GnuTls lib */ connection->session = create_tls_session(sock, GNUTLS_CLIENT); if (connection->session == NULL) { crm_perror(LOG_ERR,"Session creation for %s:%d failed", server, private->port); close(sock); cib_tls_close(cib); return -1; } #else return cib_NOTSUPPORTED; #endif } else { connection->session = GUINT_TO_POINTER(sock); } /* login to server */ login = create_xml_node(NULL, "cib_command"); crm_xml_add(login, "op", "authenticate"); crm_xml_add(login, "user", private->user); crm_xml_add(login, "password", private->passwd); crm_xml_add(login, "hidden", "password"); cib_send_remote_msg(connection->session, login, connection->encrypted); free_xml(login); answer = cib_recv_remote_msg(connection->session, connection->encrypted); crm_log_xml_debug_3(answer, "Reply"); if(answer == NULL) { rc = cib_authentication; } else { /* grab the token */ const char *msg_type = crm_element_value(answer, F_CIB_OPERATION); const char *tmp_ticket = crm_element_value(answer, F_CIB_CLIENTID); if(safe_str_neq(msg_type, CRM_OP_REGISTER) ) { crm_err("Invalid registration message: %s", msg_type); rc = cib_registration_msg; } else if(tmp_ticket == NULL) { rc = cib_callback_token; } else { connection->token = crm_strdup(tmp_ticket); } } if (rc != 0) { cib_tls_close(cib); } connection->socket = sock; connection->source = G_main_add_fd( G_PRIORITY_HIGH, connection->socket, FALSE, cib_remote_dispatch, cib, cib_remote_connection_destroy); return rc; } void cib_remote_connection_destroy(gpointer user_data) { crm_err("Connection destroyed"); #ifdef HAVE_GNUTLS_GNUTLS_H cib_tls_close(user_data); #endif return; } gboolean cib_remote_dispatch(int fd, gpointer user_data) { cib_t *cib = user_data; cib_remote_opaque_t *private = cib->variant_opaque; if(fd == private->callback.socket) { xmlNode *msg = NULL; const char *type = NULL; crm_info("Message on callback channel"); msg = cib_recv_remote_msg(private->callback.session, private->callback.encrypted); type = crm_element_value(msg, F_TYPE); crm_debug_4("Activating %s callbacks...", type); if(safe_str_eq(type, T_CIB)) { cib_native_callback(cib, msg, 0, 0); } else if(safe_str_eq(type, T_CIB_NOTIFY)) { g_list_foreach(cib->notify_list, cib_native_notify, msg); } else { crm_err("Unknown message type: %s", type); } if(msg != NULL) { free_xml(msg); return TRUE; } } else if(fd == private->command.socket) { crm_err("Message on command channel"); } else { crm_err("Unknown fd"); } return FALSE; } int cib_remote_signon(cib_t* cib, const char *name, enum cib_conn_type type) { int rc = cib_ok; cib_remote_opaque_t *private = cib->variant_opaque; if(private->passwd == NULL) { struct termios settings; int rc; rc = tcgetattr (0, &settings); settings.c_lflag &= ~ECHO; rc = tcsetattr (0, TCSANOW, &settings); fprintf(stderr, "Password: "); crm_malloc0(private->passwd, 1024); scanf("%s", private->passwd); fprintf(stdout, "\n"); /* fprintf(stderr, "entered: '%s'\n", buffer); */ settings.c_lflag |= ECHO; rc = tcsetattr (0, TCSANOW, &settings); } if(private->server == NULL || private->user == NULL) { rc = cib_missing; } if(rc == cib_ok) { rc = cib_tls_signon(cib, &(private->command)); } if(rc == cib_ok) { rc = cib_tls_signon(cib, &(private->callback)); } if(rc == cib_ok) { xmlNode *hello = cib_create_op(0, private->callback.token, CRM_OP_REGISTER, NULL, NULL, NULL, 0); crm_xml_add(hello, F_CIB_CLIENTNAME, name); cib_send_remote_msg(private->command.session, hello, private->command.encrypted); free_xml(hello); } if(rc == cib_ok) { fprintf(stderr, "%s: Opened connection to %s:%d\n", name, private->server, private->port); cib->state = cib_connected_command; cib->type = cib_command; } else { fprintf(stderr, "%s: Connection to %s:%d failed: %s\n", name, private->server, private->port, cib_error2string(rc)); } return rc; } int cib_remote_signoff(cib_t* cib) { int rc = cib_ok; /* cib_remote_opaque_t *private = cib->variant_opaque; */ crm_debug("Signing out of the CIB Service"); #ifdef HAVE_GNUTLS_GNUTLS_H cib_tls_close(cib); #endif cib->state = cib_disconnected; cib->type = cib_none; return rc; } int cib_remote_free (cib_t* cib) { int rc = cib_ok; crm_warn("Freeing CIB"); if(cib->state != cib_disconnected) { rc = cib_remote_signoff(cib); if(rc == cib_ok) { cib_remote_opaque_t *private = cib->variant_opaque; crm_free(private->server); crm_free(private->user); crm_free(private->passwd); crm_free(cib->cmds); crm_free(private); crm_free(cib); } } return rc; } static gboolean timer_expired = FALSE; static struct timer_rec_s *sync_timer = NULL; static gboolean cib_timeout_handler(gpointer data) { struct timer_rec_s *timer = data; timer_expired = TRUE; crm_err("Call %d timed out after %ds", timer->call_id, timer->timeout); /* Always return TRUE, never remove the handler * We do that after the while-loop in cib_native_perform_op() */ return TRUE; } int cib_remote_perform_op( cib_t *cib, const char *op, const char *host, const char *section, xmlNode *data, xmlNode **output_data, int call_options) { int rc = HA_OK; xmlNode *op_msg = NULL; xmlNode *op_reply = NULL; cib_remote_opaque_t *private = cib->variant_opaque; if(sync_timer == NULL) { crm_malloc0(sync_timer, sizeof(struct timer_rec_s)); } if(cib->state == cib_disconnected) { return cib_not_connected; } if(output_data != NULL) { *output_data = NULL; } if(op == NULL) { crm_err("No operation specified"); return cib_operation; } cib->call_id++; /* prevent call_id from being negative (or zero) and conflicting * with the cib_errors enum * use 2 because we use it as (cib->call_id - 1) below */ if(cib->call_id < 1) { cib->call_id = 1; } op_msg = cib_create_op( cib->call_id, private->callback.token, op, host, section, data, call_options); if(op_msg == NULL) { return cib_create_msg; } crm_debug_3("Sending %s message to CIB service", op); cib_send_remote_msg(private->command.session, op_msg, private->command.encrypted); free_xml(op_msg); if((call_options & cib_discard_reply)) { crm_debug_3("Discarding reply"); return cib_ok; } else if(!(call_options & cib_sync_call)) { return cib->call_id; } rc = IPC_OK; crm_debug_3("Waiting for a syncronous reply"); if(cib->call_timeout > 0) { /* We need this, even with msgfromIPC_timeout(), because we might * get other/older replies that don't match the active request */ timer_expired = FALSE; sync_timer->call_id = cib->call_id; sync_timer->timeout = cib->call_timeout*1000; sync_timer->ref = g_timeout_add( sync_timer->timeout, cib_timeout_handler, sync_timer); } while(timer_expired == FALSE) { int reply_id = -1; int msg_id = cib->call_id; op_reply = cib_recv_remote_msg(private->command.session, private->command.encrypted); if(op_reply == NULL) { break; } crm_element_value_int(op_reply, F_CIB_CALLID, &reply_id); CRM_CHECK(reply_id > 0, free_xml(op_reply); if(sync_timer->ref > 0) { g_source_remove(sync_timer->ref); sync_timer->ref = 0; } return cib_reply_failed); if(reply_id == msg_id) { break; } else if(reply_id < msg_id) { crm_debug("Received old reply: %d (wanted %d)", reply_id, msg_id); crm_log_xml( LOG_MSG, "Old reply", op_reply); } else if((reply_id - 10000) > msg_id) { /* wrap-around case */ crm_debug("Received old reply: %d (wanted %d)", reply_id, msg_id); crm_log_xml( LOG_MSG, "Old reply", op_reply); } else { crm_err("Received a __future__ reply:" " %d (wanted %d)", reply_id, msg_id); } free_xml(op_reply); op_reply = NULL; } if(sync_timer->ref > 0) { g_source_remove(sync_timer->ref); sync_timer->ref = 0; } if(timer_expired) { return cib_remote_timeout; } /* if(IPC_ISRCONN(native->command_channel) == FALSE) { */ /* crm_err("CIB disconnected: %d", */ /* native->command_channel->ch_status); */ /* cib->state = cib_disconnected; */ /* } */ if(op_reply == NULL) { crm_err("No reply message - empty - %d", rc); return cib_reply_failed; } crm_debug_3("Syncronous reply received"); rc = cib_ok; /* Start processing the reply... */ if(crm_element_value_int(op_reply, F_CIB_RC, &rc) != 0) { rc = cib_return_code; } if(rc == cib_diff_resync) { /* This is an internal value that clients do not and should not care about */ rc = cib_ok; } if(rc == cib_ok || rc == cib_not_master || rc == cib_master_timeout) { crm_log_xml(LOG_DEBUG, "passed", op_reply); } else { /* } else if(rc == cib_remote_timeout) { */ crm_err("Call failed: %s", cib_error2string(rc)); crm_log_xml(LOG_WARNING, "failed", op_reply); } if(output_data == NULL) { /* do nothing more */ } else if(!(call_options & cib_discard_reply)) { xmlNode *tmp = get_message_xml(op_reply, F_CIB_CALLDATA); if(tmp == NULL) { crm_debug_3("No output in reply to \"%s\" command %d", op, cib->call_id - 1); } else { *output_data = copy_xml(tmp); } } free_xml(op_reply); return rc; } diff --git a/lib/cib/cib_utils.c b/lib/cib/cib_utils.c index 328a2ff2cc..2aa33c9b1c 100644 --- a/lib/cib/cib_utils.c +++ b/lib/cib/cib_utils.c @@ -1,930 +1,930 @@ /* * Copyright (c) 2004 International Business Machines * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include #include struct config_root_s { const char *name; const char *parent; const char *path; }; /* * "//crm_config" will also work in place of "/cib/configuration/crm_config" * The / prefix means find starting from the root, whereas the // prefix means * find anywhere and risks multiple matches */ struct config_root_s known_paths[] = { { NULL, NULL, "//cib" }, { XML_TAG_CIB, NULL, "//cib" }, { XML_CIB_TAG_STATUS, "/cib", "//cib/status" }, { XML_CIB_TAG_CONFIGURATION,"/cib", "//cib/configuration" }, { XML_CIB_TAG_CRMCONFIG, "/cib/configuration", "//cib/configuration/crm_config" }, { XML_CIB_TAG_NODES, "/cib/configuration", "//cib/configuration/nodes" }, { XML_CIB_TAG_DOMAINS, "/cib/configuration", "//cib/configuration/domains" }, { XML_CIB_TAG_RESOURCES, "/cib/configuration", "//cib/configuration/resources" }, { XML_CIB_TAG_CONSTRAINTS, "/cib/configuration", "//cib/configuration/constraints" }, { XML_CIB_TAG_OPCONFIG, "/cib/configuration", "//cib/configuration/op_defaults" }, { XML_CIB_TAG_RSCCONFIG, "/cib/configuration", "//cib/configuration/rsc_defaults" }, { XML_CIB_TAG_SECTION_ALL, NULL, "//cib" }, }; const char * cib_error2string(enum cib_errors return_code) { const char *error_msg = NULL; switch(return_code) { case cib_bad_permissions: error_msg = "bad permissions for the on-disk configuration. shutdown heartbeat and repair."; break; case cib_bad_digest: error_msg = "the on-disk configuration was manually altered. shutdown heartbeat and repair."; break; case cib_bad_config: error_msg = "the on-disk configuration is not valid"; break; case cib_msg_field_add: error_msg = "failed adding field to cib message"; break; case cib_id_check: error_msg = "missing id or id-collision detected"; break; case cib_operation: error_msg = "invalid operation"; break; case cib_create_msg: error_msg = "couldnt create cib message"; break; case cib_client_gone: error_msg = "client left before we could send reply"; break; case cib_not_connected: error_msg = "not connected"; break; case cib_not_authorized: error_msg = "not authorized"; break; case cib_send_failed: error_msg = "send failed"; break; case cib_reply_failed: error_msg = "reply failed"; break; case cib_return_code: error_msg = "no return code"; break; case cib_output_ptr: error_msg = "nowhere to store output"; break; case cib_output_data: error_msg = "corrupt output data"; break; case cib_connection: error_msg = "connection failed"; break; case cib_callback_register: error_msg = "couldnt register callback channel"; break; case cib_authentication: error_msg = ""; break; case cib_registration_msg: error_msg = "invalid registration msg"; break; case cib_callback_token: error_msg = "callback token not found"; break; case cib_missing: error_msg = "cib object missing"; break; case cib_variant: error_msg = "unknown/corrupt cib variant"; break; case CIBRES_MISSING_ID: error_msg = "The id field is missing"; break; case CIBRES_MISSING_TYPE: error_msg = "The type field is missing"; break; case CIBRES_MISSING_FIELD: error_msg = "A required field is missing"; break; case CIBRES_OBJTYPE_MISMATCH: error_msg = "CIBRES_OBJTYPE_MISMATCH"; break; case cib_EXISTS: error_msg = "The object already exists"; break; case cib_NOTEXISTS: error_msg = "The object/attribute does not exist"; break; case CIBRES_CORRUPT: error_msg = "The CIB is corrupt"; break; case cib_NOOBJECT: error_msg = "The update was empty"; break; case cib_NOPARENT: error_msg = "The parent object does not exist"; break; case cib_NODECOPY: error_msg = "Failed while copying update"; break; case CIBRES_OTHER: error_msg = "CIBRES_OTHER"; break; case cib_ok: error_msg = "ok"; break; case cib_unknown: error_msg = "Unknown error"; break; case cib_STALE: error_msg = "Discarded old update"; break; case cib_ACTIVATION: error_msg = "Activation Failed"; break; case cib_NOSECTION: error_msg = "Required section was missing"; break; case cib_NOTSUPPORTED: error_msg = "The action/feature is not supported"; break; case cib_not_master: error_msg = "Local service is not the master instance"; break; case cib_client_corrupt: error_msg = "Service client not valid"; break; case cib_remote_timeout: error_msg = "Remote node did not respond"; break; case cib_master_timeout: error_msg = "No master service is currently active"; break; case cib_revision_unsupported: error_msg = "The required CIB revision number is not supported"; break; case cib_revision_unknown: error_msg = "The CIB revision number could not be determined"; break; case cib_missing_data: error_msg = "Required data for this CIB API call not found"; break; case cib_no_quorum: error_msg = "Write requires quorum"; break; case cib_diff_failed: error_msg = "Application of an update diff failed"; break; case cib_diff_resync: error_msg = "Application of an update diff failed, requesting a full refresh"; break; case cib_bad_section: error_msg = "Invalid CIB section specified"; break; case cib_old_data: error_msg = "Update was older than existing configuration"; break; case cib_dtd_validation: error_msg = "Update does not conform to the configured schema/DTD"; break; case cib_invalid_argument: error_msg = "Invalid argument"; break; case cib_transform_failed: error_msg = "Schema transform failed"; break; } if(error_msg == NULL) { crm_err("Unknown CIB Error Code: %d", return_code); error_msg = ""; } return error_msg; } int cib_section2enum(const char *a_section) { if(a_section == NULL || strcasecmp(a_section, "all") == 0) { return cib_section_all; } else if(strcasecmp(a_section, XML_CIB_TAG_NODES) == 0) { return cib_section_nodes; } else if(strcasecmp(a_section, XML_CIB_TAG_STATUS) == 0) { return cib_section_status; } else if(strcasecmp(a_section, XML_CIB_TAG_CONSTRAINTS) == 0) { return cib_section_constraints; } else if(strcasecmp(a_section, XML_CIB_TAG_RESOURCES) == 0) { return cib_section_resources; } else if(strcasecmp(a_section, XML_CIB_TAG_CRMCONFIG) == 0) { return cib_section_crmconfig; } crm_err("Unknown CIB section: %s", a_section); return cib_section_none; } int cib_compare_generation(xmlNode *left, xmlNode *right) { int lpc = 0; const char *attributes[] = { XML_ATTR_GENERATION_ADMIN, XML_ATTR_GENERATION, XML_ATTR_NUMUPDATES, }; crm_log_xml_debug_3(left, "left"); crm_log_xml_debug_3(right, "right"); for(lpc = 0; lpc < DIMOF(attributes); lpc++) { int int_elem_l = -1; int int_elem_r = -1; const char *elem_r = NULL; const char *elem_l = crm_element_value(left, attributes[lpc]); if(right != NULL) { elem_r = crm_element_value(right, attributes[lpc]); } if(elem_l != NULL) { int_elem_l = crm_parse_int(elem_l, NULL); } if(elem_r != NULL) { int_elem_r = crm_parse_int(elem_r, NULL); } if(int_elem_l < int_elem_r) { crm_debug_2("%s (%s < %s)", attributes[lpc], crm_str(elem_l), crm_str(elem_r)); return -1; } else if(int_elem_l > int_elem_r) { crm_debug_2("%s (%s > %s)", attributes[lpc], crm_str(elem_l), crm_str(elem_r)); return 1; } } return 0; } xmlNode* get_cib_copy(cib_t *cib) { xmlNode *xml_cib; int options = cib_scope_local|cib_sync_call; if(cib->cmds->query(cib, NULL, &xml_cib, options) != cib_ok) { crm_err("Couldnt retrieve the CIB"); return NULL; } else if(xml_cib == NULL) { crm_err("The CIB result was empty"); return NULL; } if(safe_str_eq(crm_element_name(xml_cib), XML_TAG_CIB)) { return xml_cib; } free_xml(xml_cib); return NULL; } xmlNode* cib_get_generation(cib_t *cib) { xmlNode *the_cib = get_cib_copy(cib); xmlNode *generation = create_xml_node( NULL, XML_CIB_TAG_GENERATION_TUPPLE); if(the_cib != NULL) { copy_in_properties(generation, the_cib); free_xml(the_cib); } return generation; } void log_cib_diff(int log_level, xmlNode *diff, const char *function) { int add_updates = 0; int add_epoch = 0; int add_admin_epoch = 0; int del_updates = 0; int del_epoch = 0; int del_admin_epoch = 0; if(diff == NULL) { return; } cib_diff_version_details( diff, &add_admin_epoch, &add_epoch, &add_updates, &del_admin_epoch, &del_epoch, &del_updates); if(add_updates != del_updates) { do_crm_log(log_level, "%s: Diff: --- %d.%d.%d", function, del_admin_epoch, del_epoch, del_updates); do_crm_log(log_level, "%s: Diff: +++ %d.%d.%d", function, add_admin_epoch, add_epoch, add_updates); } else if(diff != NULL) { do_crm_log(log_level, "%s: Local-only Change: %d.%d.%d", function, add_admin_epoch, add_epoch, add_updates); } log_xml_diff(log_level, diff, function); } gboolean cib_version_details( xmlNode *cib, int *admin_epoch, int *epoch, int *updates) { *epoch = -1; *updates = -1; *admin_epoch = -1; if(cib == NULL) { return FALSE; } else { crm_element_value_int(cib, XML_ATTR_GENERATION, epoch); crm_element_value_int(cib, XML_ATTR_NUMUPDATES, updates); crm_element_value_int(cib, XML_ATTR_GENERATION_ADMIN, admin_epoch); } return TRUE; } gboolean cib_diff_version_details( xmlNode *diff, int *admin_epoch, int *epoch, int *updates, int *_admin_epoch, int *_epoch, int *_updates) { xmlNode *tmp = NULL; tmp = find_xml_node(diff, "diff-added", FALSE); tmp = find_xml_node(tmp, XML_TAG_CIB, FALSE); cib_version_details(tmp, admin_epoch, epoch, updates); tmp = find_xml_node(diff, "diff-removed", FALSE); cib_version_details(tmp, _admin_epoch, _epoch, _updates); return TRUE; } /* * The caller should never free the return value */ const char *get_object_path(const char *object_type) { int lpc = 0; int max = DIMOF(known_paths); for(; lpc < max; lpc++) { if((object_type == NULL && known_paths[lpc].name == NULL) || safe_str_eq(object_type, known_paths[lpc].name)) { return known_paths[lpc].path; } } return NULL; } const char *get_object_parent(const char *object_type) { int lpc = 0; int max = DIMOF(known_paths); for(; lpc < max; lpc++) { if(safe_str_eq(object_type, known_paths[lpc].name)) { return known_paths[lpc].parent; } } return NULL; } xmlNode* get_object_root(const char *object_type, xmlNode *the_root) { const char *xpath = get_object_path(object_type); if(xpath == NULL) { return the_root; /* or return NULL? */ } return get_xpath_object(xpath, the_root, LOG_DEBUG_4); } xmlNode* create_cib_fragment_adv( xmlNode *update, const char *update_section, const char *source) { xmlNode *cib = NULL; gboolean whole_cib = FALSE; xmlNode *object_root = NULL; char *local_section = NULL; /* crm_debug("Creating a blank fragment: %s", update_section); */ if(update == NULL && update_section == NULL) { crm_debug_3("Creating a blank fragment"); update = createEmptyCib(); crm_xml_add(cib, XML_ATTR_ORIGIN, source); return update; } else if(update == NULL) { crm_err("No update to create a fragment for"); return NULL; } CRM_CHECK(update_section != NULL, return NULL); if(safe_str_eq(crm_element_name(update), XML_TAG_CIB)) { whole_cib = TRUE; } if(whole_cib == FALSE) { cib = createEmptyCib(); crm_xml_add(cib, XML_ATTR_ORIGIN, source); object_root = get_object_root(update_section, cib); add_node_copy(object_root, update); } else { cib = copy_xml(update); crm_xml_add(cib, XML_ATTR_ORIGIN, source); } crm_free(local_section); crm_debug_3("Verifying created fragment"); return cib; } /* * It is the callers responsibility to free both the new CIB (output) * and the new CIB (input) */ xmlNode* createEmptyCib(void) { xmlNode *cib_root = NULL, *config = NULL; cib_root = create_xml_node(NULL, XML_TAG_CIB); config = create_xml_node(cib_root, XML_CIB_TAG_CONFIGURATION); create_xml_node(cib_root, XML_CIB_TAG_STATUS); /* crm_xml_add(cib_root, "version", "1"); */ create_xml_node(config, XML_CIB_TAG_CRMCONFIG); create_xml_node(config, XML_CIB_TAG_NODES); create_xml_node(config, XML_CIB_TAG_RESOURCES); create_xml_node(config, XML_CIB_TAG_CONSTRAINTS); return cib_root; } static unsigned int dtd_throttle = 0; enum cib_errors cib_perform_op(const char *op, int call_options, cib_op_t *fn, gboolean is_query, const char *section, xmlNode *req, xmlNode *input, gboolean manage_counters, gboolean *config_changed, xmlNode *current_cib, xmlNode **result_cib, xmlNode **diff, xmlNode **output) { int rc = cib_ok; gboolean check_dtd = TRUE; xmlNode *scratch = NULL; xmlNode *local_diff = NULL; const char *current_dtd = "unknown"; CRM_CHECK(output != NULL, return cib_output_data); CRM_CHECK(result_cib != NULL, return cib_output_data); CRM_CHECK(config_changed != NULL, return cib_output_data); *output = NULL; *result_cib = NULL; *config_changed = FALSE; if(fn == NULL) { return cib_operation; } if(is_query) { rc = (*fn)(op, call_options, section, req, input, current_cib, result_cib, output); return rc; } scratch = copy_xml(current_cib); rc = (*fn)(op, call_options, section, req, input, current_cib, &scratch, output); CRM_CHECK(current_cib != scratch, return cib_unknown); if(rc == cib_ok && scratch == NULL) { rc = cib_unknown; } if(rc == cib_ok && scratch) { const char *new_version = crm_element_value(scratch, XML_ATTR_CRM_VERSION); if(new_version && compare_version(new_version, CRM_FEATURE_SET) > 0) { crm_err("Discarding update with feature set '%s' greater than our own '%s'", new_version, CRM_FEATURE_SET); rc = cib_NOTSUPPORTED; } } if(rc == cib_ok && current_cib) { int old = 0; int new = 0; crm_element_value_int(scratch, XML_ATTR_GENERATION_ADMIN, &new); crm_element_value_int(current_cib, XML_ATTR_GENERATION_ADMIN, &old); if(old > new) { crm_err("%s went backwards: %d -> %d (Opts: 0x%x)", XML_ATTR_GENERATION_ADMIN, old, new, call_options); crm_log_xml_warn(req, "Bad Op"); crm_log_xml_warn(input, "Bad Data"); rc = cib_old_data; } else if(old == new) { crm_element_value_int(scratch, XML_ATTR_GENERATION, &new); crm_element_value_int(current_cib, XML_ATTR_GENERATION, &old); if(old > new) { crm_err("%s went backwards: %d -> %d (Opts: 0x%x)", XML_ATTR_GENERATION, old, new, call_options); crm_log_xml_warn(req, "Bad Op"); crm_log_xml_warn(input, "Bad Data"); rc = cib_old_data; } } } if(rc == cib_ok) { fix_plus_plus_recursive(scratch); current_dtd = crm_element_value(scratch, XML_ATTR_VALIDATION); if(manage_counters) { if(is_set(call_options, cib_inhibit_bcast) && safe_str_eq(section, XML_CIB_TAG_STATUS)) { /* Fast-track changes connections which wont be broadcasting anywhere */ cib_update_counter(scratch, XML_ATTR_NUMUPDATES, FALSE); goto done; } /* The diff calculation in cib_config_changed() accounts for 25% of the * CIB's total CPU usage on the DC * * RNG validation on the otherhand, accounts for only 9%... */ *config_changed = cib_config_changed(current_cib, scratch, &local_diff); if(*config_changed) { cib_update_counter(scratch, XML_ATTR_NUMUPDATES, TRUE); cib_update_counter(scratch, XML_ATTR_GENERATION, FALSE); } else { /* Previously we only did this if the diff detected a change * * But we replies are still sent, even if nothing changes so we * don't save any network traffic and means we need to jump * through expensive hoops to detect ordering changes - see below */ cib_update_counter(scratch, XML_ATTR_NUMUPDATES, FALSE); if(local_diff == NULL) { /* Nothing to check */ check_dtd = FALSE; /* Create a fake diff so that notifications, which include a _digest_, * will be sent to our peers * * This is the cheapest way to detect changes to group/set ordering * * Previously we compared the old and new digest in cib_config_changed(), * but that accounted for 15% of the CIB's total CPU usage on the DC */ local_diff = create_xml_node(NULL, "diff"); crm_xml_add(local_diff, XML_ATTR_CRM_VERSION, CRM_FEATURE_SET); create_xml_node(local_diff, "diff-removed"); create_xml_node(local_diff, "diff-added"); /* Usually these are attrd re-updates */ crm_log_xml_trace(req, "Non-change"); } else if(dtd_throttle++ % 20) { /* Throttle the amount of costly validation we perform due to status updates * a) we don't really care whats in the status section * b) we don't validate any of it's contents at the moment anyway */ check_dtd = FALSE; } } } } if(diff != NULL && local_diff != NULL) { /* Only fix the diff if we'll return it... */ xmlNode *cib = NULL; xmlNode *diff_child = NULL; const char *tag = NULL; const char *value = NULL; tag = "diff-removed"; diff_child = find_xml_node(local_diff, tag, FALSE); if(diff_child == NULL) { diff_child = create_xml_node(local_diff, tag); } tag = XML_TAG_CIB; cib = find_xml_node(diff_child, tag, FALSE); if(cib == NULL) { cib = create_xml_node(diff_child, tag); } tag = XML_ATTR_GENERATION_ADMIN; value = crm_element_value(current_cib, tag); crm_xml_add(diff_child, tag, value); if(*config_changed) { crm_xml_add(cib, tag, value); } tag = XML_ATTR_GENERATION; value = crm_element_value(current_cib, tag); crm_xml_add(diff_child, tag, value); if(*config_changed) { crm_xml_add(cib, tag, value); } tag = XML_ATTR_NUMUPDATES; value = crm_element_value(current_cib, tag); crm_xml_add(cib, tag, value); crm_xml_add(diff_child, tag, value); tag = "diff-added"; diff_child = find_xml_node(local_diff, tag, FALSE); if(diff_child == NULL) { diff_child = create_xml_node(local_diff, tag); } tag = XML_TAG_CIB; cib = find_xml_node(diff_child, tag, FALSE); if(cib == NULL) { cib = create_xml_node(diff_child, tag); } xml_prop_iter(scratch, p_name, p_value, xmlSetProp(cib, (const xmlChar*)p_name, (const xmlChar*)p_value)); crm_log_xml_trace(local_diff, "Repaired-diff"); *diff = local_diff; local_diff = NULL; } done: if(rc == cib_ok && check_dtd && validate_xml(scratch, NULL, TRUE) == FALSE) { crm_warn("Updated CIB does not validate against %s schema/dtd", crm_str(current_dtd)); rc = cib_dtd_validation; } *result_cib = scratch; free_xml(local_diff); return rc; } int get_channel_token(IPC_Channel *ch, char **token) { int rc = cib_ok; xmlNode *reg_msg = NULL; const char *msg_type = NULL; const char *tmp_ticket = NULL; CRM_CHECK(ch != NULL, return cib_missing); CRM_CHECK(token != NULL, return cib_output_ptr); crm_debug_4("Waiting for msg on command channel"); reg_msg = xmlfromIPC(ch, MAX_IPC_DELAY); if(ch->ops->get_chan_status(ch) != IPC_CONNECT) { crm_err("No reply message - disconnected"); free_xml(reg_msg); return cib_not_connected; } else if(reg_msg == NULL) { crm_err("No reply message - empty"); return cib_reply_failed; } msg_type = crm_element_value(reg_msg, F_CIB_OPERATION); tmp_ticket = crm_element_value(reg_msg, F_CIB_CLIENTID); if(safe_str_neq(msg_type, CRM_OP_REGISTER) ) { crm_err("Invalid registration message: %s", msg_type); rc = cib_registration_msg; } else if(tmp_ticket == NULL) { rc = cib_callback_token; } else { *token = crm_strdup(tmp_ticket); } free_xml(reg_msg); return rc; } xmlNode * cib_create_op( int call_id, const char *token, const char *op, const char *host, const char *section, xmlNode *data, int call_options) { int rc = HA_OK; xmlNode *op_msg = create_xml_node(NULL, "cib_command"); CRM_CHECK(op_msg != NULL, return NULL); CRM_CHECK(token != NULL, return NULL); crm_xml_add(op_msg, F_XML_TAGNAME, "cib_command"); crm_xml_add(op_msg, F_TYPE, T_CIB); crm_xml_add(op_msg, F_CIB_CALLBACK_TOKEN, token); crm_xml_add(op_msg, F_CIB_OPERATION, op); crm_xml_add(op_msg, F_CIB_HOST, host); crm_xml_add(op_msg, F_CIB_SECTION, section); crm_xml_add_int(op_msg, F_CIB_CALLID, call_id); crm_debug_4("Sending call options: %.8lx, %d", (long)call_options, call_options); crm_xml_add_int(op_msg, F_CIB_CALLOPTS, call_options); if(data != NULL) { add_message_xml(op_msg, F_CIB_CALLDATA, data); } if (rc != HA_OK) { crm_err("Failed to create CIB operation message"); crm_log_xml(LOG_ERR, "op", op_msg); free_xml(op_msg); return NULL; } if(call_options & cib_inhibit_bcast) { CRM_CHECK((call_options & cib_scope_local), return NULL); } return op_msg; } void cib_native_callback(cib_t *cib, xmlNode *msg, int call_id, int rc) { xmlNode *output = NULL; cib_callback_client_t *blob = NULL; cib_callback_client_t local_blob; local_blob.id = NULL; local_blob.callback = NULL; local_blob.user_data = NULL; local_blob.only_success = FALSE; if(msg != NULL) { crm_element_value_int(msg, F_CIB_RC, &rc); crm_element_value_int(msg, F_CIB_CALLID, &call_id); output = get_message_xml(msg, F_CIB_CALLDATA); } blob = g_hash_table_lookup( cib_op_callback_table, GINT_TO_POINTER(call_id)); if(blob != NULL) { local_blob = *blob; blob = NULL; remove_cib_op_callback(call_id, FALSE); } else { crm_debug_2("No callback found for call %d", call_id); local_blob.callback = NULL; } if(cib == NULL) { crm_debug("No cib object supplied"); } if(rc == cib_diff_resync) { /* This is an internal value that clients do not and should not care about */ rc = cib_ok; } if(local_blob.callback != NULL && (rc == cib_ok || local_blob.only_success == FALSE)) { crm_debug_2("Invoking callback %s for call %d", crm_str(local_blob.id), call_id); local_blob.callback(msg, call_id, rc, output, local_blob.user_data); } else if(cib && cib->op_callback == NULL && rc != cib_ok) { crm_warn("CIB command failed: %s", cib_error2string(rc)); crm_log_xml(LOG_DEBUG, "Failed CIB Update", msg); } if(cib && cib->op_callback != NULL) { crm_debug_2("Invoking global callback for call %d", call_id); cib->op_callback(msg, call_id, rc, output); } crm_debug_4("OP callback activated."); } void cib_native_notify(gpointer data, gpointer user_data) { xmlNode *msg = user_data; cib_notify_client_t *entry = data; const char *event = NULL; if(msg == NULL) { crm_warn("Skipping callback - NULL message"); return; } event = crm_element_value(msg, F_SUBTYPE); if(entry == NULL) { crm_warn("Skipping callback - NULL callback client"); return; } else if(entry->callback == NULL) { crm_warn("Skipping callback - NULL callback"); return; } else if(safe_str_neq(entry->event, event)) { crm_debug_4("Skipping callback - event mismatch %p/%s vs. %s", entry, entry->event, event); return; } crm_debug_4("Invoking callback for %p/%s event...", entry, event); entry->callback(event, msg); crm_debug_4("Callback invoked..."); } gboolean determine_host(cib_t *cib_conn, char **node_uname, char **node_uuid) { CRM_CHECK(node_uname != NULL, return FALSE); if(*node_uname == NULL) { struct utsname name; if(uname(&name) < 0) { crm_perror(LOG_ERR,"uname(2) call failed"); return FALSE; } *node_uname = crm_strdup(name.nodename); crm_info("Detected uname: %s", *node_uname); } if(cib_conn && *node_uname != NULL && node_uuid != NULL && *node_uuid == NULL) { int rc = query_node_uuid(cib_conn, *node_uname, node_uuid); if(rc != cib_ok) { fprintf(stderr,"Could not map uname=%s to a UUID: %s\n", *node_uname, cib_error2string(rc)); return FALSE; } crm_info("Mapped %s to %s", *node_uname, crm_str(*node_uuid)); } return TRUE; } diff --git a/lib/cib/cib_version.c b/lib/cib/cib_version.c index 4e9548191e..541292aef0 100644 --- a/lib/cib/cib_version.c +++ b/lib/cib/cib_version.c @@ -1,164 +1,164 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include const char * feature_sets[] = { "1.1", "1.2", "1.3", "2.0", }; typedef struct tag_set_s { int length; const char **tags; } tag_set_t; const char *feature_tags_12[] = { "master_slave", }; const char *feature_tags_20[] = { "cluster_property_set", "meta_attributes", "transient_attributes", }; tag_set_t feature_tags[] = { { 0, NULL }, { 1, feature_tags_12 }, { 0, NULL }, { 3, feature_tags_20 }, }; const char *feature_attrs_12[] = { "master_node_max", }; const char *feature_attrs_20[] = { "start_delay", "disabled", "on_fail", "prereq", "collocated", "globally_unique", "from_role", "to_role", "node_attribute", "score_attribute", "hours", "transition_key", "op_digest", "op_restart_digest", "op_force_restart", }; tag_set_t feature_attrs[] = { { 0, NULL }, { 1, feature_attrs_12 }, { 0, NULL }, { 15, feature_attrs_20 }, }; static int internal_update_feature_set(xmlNode *xml_obj, int current) { int lpc = current; int lpc_nested = 0; const char *value = NULL; xmlNode *xml_child = NULL; int num_sets = DIMOF(feature_sets); CRM_CHECK(compare_version( CIB_FEATURE_SET, feature_sets[num_sets-1]) == 0, return num_sets-1); for(;lpc < num_sets; lpc++) { const char *tag = crm_element_name(xml_obj); crm_debug_3("Checking set %d with %d tags", lpc, feature_tags[lpc].length); lpc_nested = 0; for(; lpc_nested < feature_tags[lpc].length; lpc_nested++) { const char *name = feature_tags[lpc].tags[lpc_nested]; crm_debug_4("Checking %s vs. %s", tag, name); if(safe_str_eq(tag, name)) { crm_debug_2("Found feature %s from set %s", tag, feature_sets[lpc]); current = lpc; break; } } if(current == lpc) { continue; } for(lpc_nested = 0; lpc_nested < feature_attrs[lpc].length; lpc_nested++) { const char *name = feature_attrs[lpc].tags[lpc_nested]; crm_debug_4("Checking for %s", name); value = crm_element_value(xml_obj, name); if(value != NULL) { crm_info("Found feature '%s' from set %s", name, feature_sets[lpc]); current = lpc; break; } } } if(current == (num_sets -1)) { return current; } for(xml_child = __xml_first_child(xml_obj); xml_child != NULL; xml_child = __xml_next(xml_child)) { current = internal_update_feature_set(xml_child,current); if(current == (num_sets -1)) { return current; } } return current; } const char * feature_set(xmlNode *xml_obj) { int set = internal_update_feature_set(xml_obj, 0); CRM_ASSERT(set >= 0); CRM_ASSERT(set < DIMOF(feature_sets)); return feature_sets[set]; } diff --git a/lib/common/ais.c b/lib/common/ais.c index f3a2d719e4..15db59bc75 100644 --- a/lib/common/ais.c +++ b/lib/common/ais.c @@ -1,1225 +1,1225 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include "stack.h" #ifdef SUPPORT_COROSYNC # include #endif #ifdef SUPPORT_CMAN # include cman_handle_t pcmk_cman_handle = NULL; #endif #ifdef SUPPORT_CS_QUORUM # include # include # include # include # include quorum_handle_t pcmk_quorum_handle = 0; cpg_handle_t pcmk_cpg_handle = 0; struct cpg_name pcmk_cpg_group = { .length = 0, .value[0] = 0, }; #endif static char *pcmk_uname = NULL; static int pcmk_uname_len = 0; static uint32_t pcmk_nodeid = 0; #define cs_repeat(counter, max, code) do { \ code; \ if(rc == CS_ERR_TRY_AGAIN) { \ counter++; \ crm_debug("Retrying operation after %ds", counter); \ sleep(counter); \ } \ } while(rc == CS_ERR_TRY_AGAIN && counter < max) enum crm_ais_msg_types text2msg_type(const char *text) { int type = crm_msg_none; CRM_CHECK(text != NULL, return type); if(safe_str_eq(text, "ais")) { type = crm_msg_ais; } else if(safe_str_eq(text, "crm_plugin")) { type = crm_msg_ais; } else if(safe_str_eq(text, CRM_SYSTEM_CIB)) { type = crm_msg_cib; } else if(safe_str_eq(text, CRM_SYSTEM_CRMD)) { type = crm_msg_crmd; } else if(safe_str_eq(text, CRM_SYSTEM_DC)) { type = crm_msg_crmd; } else if(safe_str_eq(text, CRM_SYSTEM_TENGINE)) { type = crm_msg_te; } else if(safe_str_eq(text, CRM_SYSTEM_PENGINE)) { type = crm_msg_pe; } else if(safe_str_eq(text, CRM_SYSTEM_LRMD)) { type = crm_msg_lrmd; } else if(safe_str_eq(text, CRM_SYSTEM_STONITHD)) { type = crm_msg_stonithd; } else if(safe_str_eq(text, "stonith-ng")) { type = crm_msg_stonith_ng; } else if(safe_str_eq(text, "attrd")) { type = crm_msg_attrd; } else { /* This will normally be a transient client rather than * a cluster daemon. Set the type to the pid of the client */ int scan_rc = sscanf(text, "%d", &type); if(scan_rc != 1) { /* Ensure its sane */ type = crm_msg_none; } } return type; } char *get_ais_data(const AIS_Message *msg) { int rc = BZ_OK; char *uncompressed = NULL; unsigned int new_size = msg->size + 1; if(msg->is_compressed == FALSE) { crm_debug_2("Returning uncompressed message data"); uncompressed = strdup(msg->data); } else { crm_debug_2("Decompressing message data"); crm_malloc0(uncompressed, new_size); rc = BZ2_bzBuffToBuffDecompress( uncompressed, &new_size, (char*)msg->data, msg->compressed_size, 1, 0); CRM_ASSERT(rc == BZ_OK); CRM_ASSERT(new_size == msg->size); } return uncompressed; } #if SUPPORT_COROSYNC int ais_fd_sync = -1; int ais_fd_async = -1; /* never send messages via this channel */ void *ais_ipc_ctx = NULL; hdb_handle_t ais_ipc_handle = 0; GFDSource *ais_source = NULL; GFDSource *ais_source_sync = NULL; GFDSource *cman_source = NULL; GFDSource *cpg_source = NULL; GFDSource *quorumd_source = NULL; static char *ais_cluster_name = NULL; gboolean get_ais_nodeid(uint32_t *id, char **uname) { struct iovec iov; int retries = 0; int rc = CS_OK; coroipc_response_header_t header; struct crm_ais_nodeid_resp_s answer; header.error = CS_OK; header.id = crm_class_nodeid; header.size = sizeof(coroipc_response_header_t); CRM_CHECK(id != NULL, return FALSE); CRM_CHECK(uname != NULL, return FALSE); iov.iov_base = &header; iov.iov_len = header.size; retry: errno = 0; rc = coroipcc_msg_send_reply_receive( ais_ipc_handle, &iov, 1, &answer, sizeof (answer)); if(rc == CS_OK) { CRM_CHECK(answer.header.size == sizeof (struct crm_ais_nodeid_resp_s), crm_err("Odd message: id=%d, size=%d, error=%d", answer.header.id, answer.header.size, answer.header.error)); CRM_CHECK(answer.header.id == crm_class_nodeid, crm_err("Bad response id: %d", answer.header.id)); } if(rc == CS_ERR_TRY_AGAIN && retries < 20) { retries++; crm_info("Peer overloaded: Re-sending message (Attempt %d of 20)", retries); sleep(retries); /* Proportional back off */ goto retry; } if(rc != CS_OK) { crm_err("Sending nodeid request: FAILED (rc=%d): %s", rc, ais_error2text(rc)); return FALSE; } else if(answer.header.error != CS_OK) { crm_err("Bad response from peer: (rc=%d): %s", rc, ais_error2text(rc)); return FALSE; } crm_info("Server details: id=%u uname=%s cname=%s", answer.id, answer.uname, answer.cname); *id = answer.id; *uname = crm_strdup(answer.uname); ais_cluster_name = crm_strdup(answer.cname); return TRUE; } gboolean crm_get_cluster_name(char **cname) { CRM_CHECK(cname != NULL, return FALSE); if(ais_cluster_name) { *cname = crm_strdup(ais_cluster_name); return TRUE; } return FALSE; } gboolean send_ais_text(int class, const char *data, gboolean local, const char *node, enum crm_ais_msg_types dest) { static int msg_id = 0; static int local_pid = 0; enum cluster_type_e cluster_type = get_cluster_type(); int retries = 0; int rc = CS_OK; int buf_len = sizeof(coroipc_response_header_t); char *buf = NULL; struct iovec iov; const char *transport = "pcmk"; coroipc_response_header_t *header = NULL; AIS_Message *ais_msg = NULL; enum crm_ais_msg_types sender = text2msg_type(crm_system_name); /* There are only 6 handlers registered to crm_lib_service in plugin.c */ CRM_CHECK(class < 6, crm_err("Invalid message class: %d", class); return FALSE); if(data == NULL) { data = ""; } if(local_pid == 0) { local_pid = getpid(); } if(sender == crm_msg_none) { sender = local_pid; } crm_malloc0(ais_msg, sizeof(AIS_Message)); ais_msg->id = msg_id++; ais_msg->header.id = class; ais_msg->header.error = CS_OK; ais_msg->host.type = dest; ais_msg->host.local = local; if(node) { ais_msg->host.size = strlen(node); memset(ais_msg->host.uname, 0, MAX_NAME); memcpy(ais_msg->host.uname, node, ais_msg->host.size); ais_msg->host.id = 0; } else { ais_msg->host.size = 0; memset(ais_msg->host.uname, 0, MAX_NAME); ais_msg->host.id = 0; } ais_msg->sender.id = 0; ais_msg->sender.type = sender; ais_msg->sender.pid = local_pid; ais_msg->sender.size = pcmk_uname_len; memset(ais_msg->sender.uname, 0, MAX_NAME); memcpy(ais_msg->sender.uname, pcmk_uname, ais_msg->sender.size); ais_msg->size = 1 + strlen(data); if(ais_msg->size < CRM_BZ2_THRESHOLD) { failback: crm_realloc(ais_msg, sizeof(AIS_Message) + ais_msg->size); memcpy(ais_msg->data, data, ais_msg->size); } else { char *compressed = NULL; char *uncompressed = crm_strdup(data); unsigned int len = (ais_msg->size * 1.1) + 600; /* recomended size */ crm_debug_5("Compressing message payload"); crm_malloc(compressed, len); rc = BZ2_bzBuffToBuffCompress( compressed, &len, uncompressed, ais_msg->size, CRM_BZ2_BLOCKS, 0, CRM_BZ2_WORK); crm_free(uncompressed); if(rc != BZ_OK) { crm_err("Compression failed: %d", rc); crm_free(compressed); goto failback; } crm_realloc(ais_msg, sizeof(AIS_Message) + len + 1); memcpy(ais_msg->data, compressed, len); ais_msg->data[len] = 0; crm_free(compressed); ais_msg->is_compressed = TRUE; ais_msg->compressed_size = len; crm_debug_2("Compression details: %d -> %d", ais_msg->size, ais_data_len(ais_msg)); } ais_msg->header.size = sizeof(AIS_Message) + ais_data_len(ais_msg); crm_debug_3("Sending%s message %d to %s.%s (data=%d, total=%d)", ais_msg->is_compressed?" compressed":"", ais_msg->id, ais_dest(&(ais_msg->host)), msg_type2text(dest), ais_data_len(ais_msg), ais_msg->header.size); iov.iov_base = ais_msg; iov.iov_len = ais_msg->header.size; crm_realloc(buf, buf_len); do { if(rc == CS_ERR_TRY_AGAIN) { retries++; crm_info("Peer overloaded or membership in flux:" " Re-sending message (Attempt %d of 20)", retries); sleep(retries); /* Proportional back off */ } errno = 0; switch(cluster_type) { case pcmk_cluster_classic_ais: rc = coroipcc_msg_send_reply_receive(ais_ipc_handle, &iov, 1, buf, buf_len); header = (coroipc_response_header_t *)buf; if(rc == CS_OK) { CRM_CHECK(header->size == sizeof (coroipc_response_header_t), crm_err("Odd message: id=%d, size=%d, class=%d, error=%d", header->id, header->size, class, header->error)); CRM_ASSERT(buf_len >= header->size); CRM_CHECK(header->id == CRM_MESSAGE_IPC_ACK, crm_err("Bad response id (%d) for request (%d)", header->id, ais_msg->header.id)); CRM_CHECK(header->error == CS_OK, rc = header->error); } break; case pcmk_cluster_corosync: case pcmk_cluster_cman: transport = "cpg"; CRM_CHECK(dest != crm_msg_ais, rc = CS_ERR_MESSAGE_ERROR; goto bail); rc = cpg_mcast_joined(pcmk_cpg_handle, CPG_TYPE_AGREED, &iov, 1); if(rc == CS_ERR_TRY_AGAIN) { cpg_flow_control_state_t fc_state = CPG_FLOW_CONTROL_DISABLED; int rc2 = cpg_flow_control_state_get (pcmk_cpg_handle, &fc_state); if (rc2 == CS_OK && fc_state == CPG_FLOW_CONTROL_ENABLED) { crm_warn("Connection overloaded, cannot send messages"); goto bail; } else if (rc2 != CS_OK) { crm_warn("Could not determin the connection state: %s (%d)", ais_error2text(rc2), rc2); goto bail; } } break; case pcmk_cluster_unknown: case pcmk_cluster_invalid: case pcmk_cluster_heartbeat: CRM_ASSERT(is_openais_cluster()); break; } } while (rc == CS_ERR_TRY_AGAIN && retries < 20); bail: if(rc != CS_OK) { crm_perror(LOG_ERR,"Sending message %d via %s: FAILED (rc=%d): %s", ais_msg->id, transport, rc, ais_error2text(rc)); } else { crm_debug_4("Message %d: sent", ais_msg->id); } crm_free(buf); crm_free(ais_msg); return (rc == CS_OK); } gboolean send_ais_message(xmlNode *msg, gboolean local, const char *node, enum crm_ais_msg_types dest) { gboolean rc = TRUE; char *data = NULL; if(is_classic_ais_cluster()) { if(ais_fd_async < 0 || ais_source == NULL) { crm_err("Not connected to AIS: %d %p", ais_fd_async, ais_source); return FALSE; } } data = dump_xml_unformatted(msg); rc = send_ais_text(0, data, local, node, dest); crm_free(data); return rc; } void terminate_ais_connection(void) { crm_notice("Disconnecting from AIS"); /* G_main_del_fd(ais_source); */ /* G_main_del_fd(ais_source_sync); */ #ifdef SUPPORT_CMAN if(is_cman_cluster()) { cman_stop_notification(pcmk_cman_handle); cman_finish(pcmk_cman_handle); } #endif if(is_corosync_cluster()) { quorum_finalize(pcmk_quorum_handle); } if(is_classic_ais_cluster() == FALSE) { coroipcc_service_disconnect(ais_ipc_handle); } else { cpg_leave(pcmk_cpg_handle, &pcmk_cpg_group); } } int ais_membership_timer = 0; gboolean ais_membership_force = FALSE; static gboolean ais_dispatch_message( AIS_Message *msg, gboolean (*dispatch)(AIS_Message*,char*,int)) { char *data = NULL; char *uncompressed = NULL; xmlNode *xml = NULL; CRM_ASSERT(msg != NULL); crm_debug_3("Got new%s message (size=%d, %d, %d)", msg->is_compressed?" compressed":"", ais_data_len(msg), msg->size, msg->compressed_size); data = msg->data; if(msg->is_compressed && msg->size > 0) { int rc = BZ_OK; unsigned int new_size = msg->size + 1; if(check_message_sanity(msg, NULL) == FALSE) { goto badmsg; } crm_debug_5("Decompressing message data"); crm_malloc0(uncompressed, new_size); rc = BZ2_bzBuffToBuffDecompress( uncompressed, &new_size, data, msg->compressed_size, 1, 0); if(rc != BZ_OK) { crm_err("Decompression failed: %d", rc); goto badmsg; } CRM_ASSERT(rc == BZ_OK); CRM_ASSERT(new_size == msg->size); data = uncompressed; } else if(check_message_sanity(msg, data) == FALSE) { goto badmsg; } else if(safe_str_eq("identify", data)) { int pid = getpid(); char *pid_s = crm_itoa(pid); send_ais_text(0, pid_s, TRUE, NULL, crm_msg_ais); crm_free(pid_s); goto done; } if(msg->header.id != crm_class_members) { crm_update_peer(msg->sender.id, 0,0,0,0, msg->sender.uname, msg->sender.uname, NULL, NULL); } if(msg->header.id == crm_class_rmpeer) { uint32_t id = crm_int_helper(data, NULL); crm_info("Removing peer %s/%u", data, id); reap_crm_member(id); goto done; } else if(msg->header.id == crm_class_members || msg->header.id == crm_class_quorum) { xml = string2xml(data); if(xml == NULL) { crm_err("Invalid membership update: %s", data); goto badmsg; } if(is_classic_ais_cluster() == FALSE) { xmlNode *node = NULL; for(node = __xml_first_child(xml); node != NULL; node = __xml_next(node)) { crm_update_cman_node(node, crm_peer_seq); } } else { xmlNode *node = NULL; const char *value = NULL; gboolean quorate = FALSE; value = crm_element_value(xml, "quorate"); CRM_CHECK(value != NULL, crm_log_xml_err(xml, "No quorum value:"); goto badmsg); if(crm_is_true(value)) { quorate = TRUE; } value = crm_element_value(xml, "id"); CRM_CHECK(value != NULL, crm_log_xml_err(xml, "No membership id"); goto badmsg); crm_peer_seq = crm_int_helper(value, NULL); if(quorate != crm_have_quorum) { crm_notice("Membership %s: quorum %s", value, quorate?"acquired":"lost"); crm_have_quorum = quorate; } else { crm_info("Membership %s: quorum %s", value, quorate?"retained":"still lost"); } for(node = __xml_first_child(xml); node != NULL; node = __xml_next(node)) { crm_update_ais_node(node, crm_peer_seq); } } } if(dispatch != NULL) { dispatch(msg, data, 0); } done: crm_free(uncompressed); free_xml(xml); return TRUE; badmsg: crm_err("Invalid message (id=%d, dest=%s:%s, from=%s:%s.%d):" " min=%d, total=%d, size=%d, bz2_size=%d", msg->id, ais_dest(&(msg->host)), msg_type2text(msg->host.type), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, (int)sizeof(AIS_Message), msg->header.size, msg->size, msg->compressed_size); goto done; } gboolean ais_dispatch(int sender, gpointer user_data) { int rc = CS_OK; char *buffer = NULL; gboolean good = TRUE; gboolean (*dispatch)(AIS_Message*,char*,int) = user_data; rc = coroipcc_dispatch_get (ais_ipc_handle, (void**)&buffer, 0); if (rc == 0 || buffer == NULL) { /* Zero is a legal "no message afterall" value */ return TRUE; } else if (rc != CS_OK) { crm_perror(LOG_ERR,"Receiving message body failed: (%d) %s", rc, ais_error2text(rc)); goto bail; } good = ais_dispatch_message((AIS_Message*)buffer, dispatch); coroipcc_dispatch_put (ais_ipc_handle); return good; bail: crm_err("AIS connection failed"); return FALSE; } static void ais_destroy(gpointer user_data) { crm_err("AIS connection terminated"); ais_fd_sync = -1; exit(1); } static gboolean pcmk_proc_dispatch(IPC_Channel *ch, gpointer user_data) { xmlNode *msg = NULL; gboolean stay_connected = TRUE; while(IPC_ISRCONN(ch)) { if(ch->ops->is_message_pending(ch) == 0) { break; } msg = xmlfromIPC(ch, MAX_IPC_DELAY); if(msg) { xmlNode *node = NULL; for(node = __xml_first_child(msg); node != NULL; node = __xml_next(node)) { int id = 0; int children = 0; const char *uname = crm_element_value(node, "uname"); crm_element_value_int(node, "processes", &children); crm_update_peer(id, 0, 0, 0, children, NULL, uname, NULL, NULL); } free_xml(msg); } if(ch->ch_status != IPC_CONNECT) { break; } } if (ch->ch_status != IPC_CONNECT) { stay_connected = FALSE; } return stay_connected; } #ifdef SUPPORT_CMAN static gboolean pcmk_cman_dispatch(int sender, gpointer user_data) { int rc = cman_dispatch(pcmk_cman_handle, CMAN_DISPATCH_ONE); if(rc < 0) { crm_err("Connection to cman failed: %d", rc); return FALSE; } return TRUE; } #define MAX_NODES 256 static void cman_event_callback(cman_handle_t handle, void *privdata, int reason, int arg) { int rc = 0, lpc = 0, node_count = 0; cman_cluster_t cluster; static cman_node_t cman_nodes[MAX_NODES]; gboolean (*dispatch)(unsigned long long, gboolean) = privdata; switch (reason) { case CMAN_REASON_STATECHANGE: memset(&cluster, 0, sizeof(cluster)); rc = cman_get_cluster(pcmk_cman_handle, &cluster); if (rc < 0) { crm_err("Couldn't query cman cluster details: %d %d", rc, errno); return; } crm_peer_seq = cluster.ci_generation; if(arg != crm_have_quorum) { crm_notice("Membership %llu: quorum %s", crm_peer_seq, arg?"acquired":"lost"); crm_have_quorum = arg; } else { crm_info("Membership %llu: quorum %s", crm_peer_seq, arg?"retained":"still lost"); } rc = cman_get_nodes(pcmk_cman_handle, MAX_NODES, &node_count, cman_nodes); if (rc < 0) { crm_err("Couldn't query cman node list: %d %d", rc, errno); return; } for (lpc = 0; lpc < node_count; lpc++) { if (cman_nodes[lpc].cn_nodeid == 0) { /* Never allow node ID 0 to be considered a member #315711 */ cman_nodes[lpc].cn_member = 0; } crm_update_peer(cman_nodes[lpc].cn_nodeid, cman_nodes[lpc].cn_incarnation, cman_nodes[lpc].cn_member?crm_peer_seq:0, 0, 0, cman_nodes[lpc].cn_name, cman_nodes[lpc].cn_name, NULL, cman_nodes[lpc].cn_member?CRM_NODE_MEMBER:CRM_NODE_LOST); } if(dispatch) { dispatch(crm_peer_seq, crm_have_quorum); } break; case CMAN_REASON_TRY_SHUTDOWN: /* Always reply with a negative - pacemaker needs to be stopped first */ crm_info("CMAN wants to shut down: %s", arg?"forced":"optional"); cman_replyto_shutdown(pcmk_cman_handle, 0); break; case CMAN_REASON_CONFIG_UPDATE: /* Ignore */ break; } } #endif gboolean init_cman_connection( gboolean (*dispatch)(unsigned long long, gboolean), void (*destroy)(gpointer)) { #ifdef SUPPORT_CMAN int rc = -1, fd = -1; cman_cluster_t cluster; crm_info("Configuring Pacemaker to obtain quorum from cman"); memset(&cluster, 0, sizeof(cluster)); pcmk_cman_handle = cman_init(dispatch); if(pcmk_cman_handle == NULL || cman_is_active(pcmk_cman_handle) == FALSE) { crm_err("Couldn't connect to cman"); goto cman_bail; } rc = cman_get_cluster(pcmk_cman_handle, &cluster); if (rc < 0) { crm_err("Couldn't query cman cluster details: %d %d", rc, errno); goto cman_bail; } ais_cluster_name = crm_strdup(cluster.ci_name); rc = cman_start_notification(pcmk_cman_handle, cman_event_callback); if (rc < 0) { crm_err("Couldn't register for cman notifications: %d %d", rc, errno); goto cman_bail; } /* Get the current membership state */ cman_event_callback(pcmk_cman_handle, dispatch, CMAN_REASON_STATECHANGE, cman_is_quorate(pcmk_cman_handle)); fd = cman_get_fd(pcmk_cman_handle); crm_debug("Adding fd=%d to mainloop", fd); cman_source = G_main_add_fd( G_PRIORITY_HIGH, fd, FALSE, pcmk_cman_dispatch, dispatch, destroy); cman_bail: if (rc < 0) { cman_finish(pcmk_cman_handle); return FALSE; } #else crm_err("cman qorum is not supported in this build"); exit(100); #endif return TRUE; } #ifdef SUPPORT_CS_QUORUM gboolean (*pcmk_cpg_dispatch_fn)(AIS_Message*,char*,int) = NULL; static gboolean pcmk_cpg_dispatch(int sender, gpointer user_data) { int rc = 0; pcmk_cpg_dispatch_fn = user_data; rc = cpg_dispatch(pcmk_cpg_handle, CS_DISPATCH_ALL); if(rc != CS_OK) { crm_err("Connection to the CPG API failed: %d", rc); return FALSE; } return TRUE; } static void pcmk_cpg_deliver ( cpg_handle_t handle, const struct cpg_name *groupName, uint32_t nodeid, uint32_t pid, void *msg, size_t msg_len) { AIS_Message *ais_msg = (AIS_Message*)msg; if(ais_msg->sender.id > 0 && ais_msg->sender.id != nodeid) { crm_err("Nodeid mismatch from %d.%d: claimed nodeid=%u", nodeid, pid, ais_msg->sender.id); return; } else if(ais_msg->host.size != 0 && safe_str_neq(ais_msg->host.uname, pcmk_uname)) { /* Not for us */ return; } ais_msg->sender.id = nodeid; if(ais_msg->sender.size == 0) { crm_node_t *peer = crm_get_peer(nodeid, NULL); if(peer == NULL) { crm_err("Peer with nodeid=%u is unknown", nodeid); } else if(peer->uname == NULL) { crm_err("No uname for peer with nodeid=%u", nodeid); } else { crm_notice("Fixing uname for peer with nodeid=%u", nodeid); ais_msg->sender.size = strlen(peer->uname); memset(ais_msg->sender.uname, 0, MAX_NAME); memcpy(ais_msg->sender.uname, peer->uname, ais_msg->sender.size); } } ais_dispatch_message(ais_msg, pcmk_cpg_dispatch_fn); } static void pcmk_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) { /* Don't care about CPG membership */ } static gboolean pcmk_quorum_dispatch(int sender, gpointer user_data) { int rc = 0; rc = quorum_dispatch(pcmk_quorum_handle, CS_DISPATCH_ALL); if(rc < 0) { crm_err("Connection to the Quorum API failed: %d", rc); return FALSE; } return TRUE; } static void pcmk_quorum_notification( quorum_handle_t handle, uint32_t quorate, uint64_t ring_id, uint32_t view_list_entries, uint32_t *view_list) { int i; if(quorate != crm_have_quorum) { crm_notice("Membership "U64T": quorum %s (%lu)", ring_id, quorate?"acquired":"lost", (long unsigned int)view_list_entries); crm_have_quorum = quorate; } else { crm_info("Membership "U64T": quorum %s (%lu)", ring_id, quorate?"retained":"still lost", (long unsigned int)view_list_entries); } for (i=0; ihost.type; int tmp_size = msg->header.size - sizeof(AIS_Message); if(sane && msg->header.size == 0) { crm_warn("Message with no size"); sane = FALSE; } if(sane && msg->header.error != CS_OK) { crm_warn("Message header contains an error: %d", msg->header.error); sane = FALSE; } if(sane && ais_data_len(msg) != tmp_size) { crm_warn("Message payload size is incorrect: expected %d, got %d", ais_data_len(msg), tmp_size); sane = TRUE; } if(sane && ais_data_len(msg) == 0) { crm_warn("Message with no payload"); sane = FALSE; } if(sane && data && msg->is_compressed == FALSE) { int str_size = strlen(data) + 1; if(ais_data_len(msg) != str_size) { int lpc = 0; crm_warn("Message payload is corrupted: expected %d bytes, got %d", ais_data_len(msg), str_size); sane = FALSE; for(lpc = (str_size - 10); lpc < msg->size; lpc++) { if(lpc < 0) { lpc = 0; } crm_debug("bad_data[%d]: %d / '%c'", lpc, data[lpc], data[lpc]); } } } if(sane == FALSE) { crm_err("Invalid message %d: (dest=%s:%s, from=%s:%s.%d, compressed=%d, size=%d, total=%d)", msg->id, ais_dest(&(msg->host)), msg_type2text(dest), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->is_compressed, ais_data_len(msg), msg->header.size); } else if(repaired) { crm_err("Repaired message %d: (dest=%s:%s, from=%s:%s.%d, compressed=%d, size=%d, total=%d)", msg->id, ais_dest(&(msg->host)), msg_type2text(dest), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->is_compressed, ais_data_len(msg), msg->header.size); } else { crm_debug_3("Verfied message %d: (dest=%s:%s, from=%s:%s.%d, compressed=%d, size=%d, total=%d)", msg->id, ais_dest(&(msg->host)), msg_type2text(dest), ais_dest(&(msg->sender)), msg_type2text(msg->sender.type), msg->sender.pid, msg->is_compressed, ais_data_len(msg), msg->header.size); } return sane; } #endif diff --git a/lib/common/cluster.c b/lib/common/cluster.c index c418d858c5..f370bdae43 100644 --- a/lib/common/cluster.c +++ b/lib/common/cluster.c @@ -1,273 +1,273 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include "stack.h" CRM_TRACE_INIT_DATA(cluster); xmlNode *create_common_message( xmlNode *original_request, xmlNode *xml_response_data); gboolean crm_cluster_connect( char **our_uname, char **our_uuid, void *dispatch, void *destroy, #if SUPPORT_HEARTBEAT ll_cluster_t **hb_conn #else void **hb_conn #endif ) { enum cluster_type_e type = get_cluster_type(); crm_info("Connecting to cluster infrastructure: %s", name_for_cluster_type(type)); if(hb_conn != NULL) { *hb_conn = NULL; } #if SUPPORT_COROSYNC if(is_openais_cluster()) { crm_peer_init(); return init_ais_connection(dispatch, destroy, our_uuid, our_uname, NULL); } #endif #if SUPPORT_HEARTBEAT if(is_heartbeat_cluster()) { int rv; CRM_ASSERT(hb_conn != NULL); if(*hb_conn == NULL) { /* No object passed in, create a new one. */ *hb_conn = ll_cluster_new("heartbeat"); } else { /* Object passed in. Disconnect first, then reconnect below. */ ll_cluster_t *conn = *hb_conn; conn->llc_ops->signoff(conn, FALSE); } /* make sure we are disconnected first with the old object, if any. */ if (heartbeat_cluster && heartbeat_cluster != *hb_conn) { heartbeat_cluster->llc_ops->signoff(heartbeat_cluster, FALSE); } CRM_ASSERT(*hb_conn != NULL); heartbeat_cluster = *hb_conn; rv = register_heartbeat_conn( heartbeat_cluster, our_uuid, our_uname, dispatch, destroy); if (rv) { /* we'll benefit from a bigger queue length on heartbeat side. * Otherwise, if peers send messages faster than we can consume * them right now, heartbeat messaging layer will kick us out once * it's (small) default queue fills up :( * If we fail to adjust the sendq length, that's not yet fatal, though. */ if (HA_OK != (*hb_conn)->llc_ops->set_sendq_len(*hb_conn, 1024)) { crm_warn("Cannot set sendq length: %s", (*hb_conn)->llc_ops->errmsg(*hb_conn)); } } return rv; } #endif crm_info("Unsupported cluster stack: %s", getenv("HA_cluster_type")); return FALSE; } gboolean send_cluster_message( const char *node, enum crm_ais_msg_types service, xmlNode *data, gboolean ordered) { #if SUPPORT_COROSYNC if(is_openais_cluster()) { return send_ais_message(data, FALSE, node, service); } #endif #if SUPPORT_HEARTBEAT if(is_heartbeat_cluster()) { return send_ha_message(heartbeat_cluster, data, node, ordered); } #endif return FALSE; } static GHashTable *crm_uuid_cache = NULL; static GHashTable *crm_uname_cache = NULL; void empty_uuid_cache(void) { if(crm_uuid_cache != NULL) { g_hash_table_destroy(crm_uuid_cache); crm_uuid_cache = NULL; } } void unget_uuid(const char *uname) { if(crm_uuid_cache == NULL) { return; } g_hash_table_remove(crm_uuid_cache, uname); } const char * get_uuid(const char *uname) { char *uuid_calc = NULL; CRM_CHECK(uname != NULL, return NULL); if(crm_uuid_cache == NULL) { crm_uuid_cache = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); } CRM_CHECK(uname != NULL, return NULL); /* avoid blocking calls where possible */ uuid_calc = g_hash_table_lookup(crm_uuid_cache, uname); if(uuid_calc != NULL) { return uuid_calc; } #if SUPPORT_COROSYNC if(is_openais_cluster()) { uuid_calc = crm_strdup(uname); goto fallback; } #endif #if SUPPORT_HEARTBEAT if(is_heartbeat_cluster()) { cl_uuid_t uuid_raw; const char *unknown = "00000000-0000-0000-0000-000000000000"; if(heartbeat_cluster == NULL) { crm_warn("No connection to heartbeat, using uuid=uname"); uuid_calc = crm_strdup(uname); goto fallback; } if(heartbeat_cluster->llc_ops->get_uuid_by_name( heartbeat_cluster, uname, &uuid_raw) == HA_FAIL) { crm_err("get_uuid_by_name() call failed for host %s", uname); crm_free(uuid_calc); return NULL; } crm_malloc0(uuid_calc, 50); cl_uuid_unparse(&uuid_raw, uuid_calc); if(safe_str_eq(uuid_calc, unknown)) { crm_warn("Could not calculate UUID for %s", uname); crm_free(uuid_calc); return NULL; } } #endif fallback: g_hash_table_insert(crm_uuid_cache, crm_strdup(uname), uuid_calc); uuid_calc = g_hash_table_lookup(crm_uuid_cache, uname); return uuid_calc; } const char * get_uname(const char *uuid) { char *uname = NULL; if(crm_uname_cache == NULL) { crm_uname_cache = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); } CRM_CHECK(uuid != NULL, return NULL); /* avoid blocking calls where possible */ uname = g_hash_table_lookup(crm_uname_cache, uuid); if(uname != NULL) { return uname; } #if SUPPORT_COROSYNC if(is_openais_cluster()) { g_hash_table_insert(crm_uname_cache, crm_strdup(uuid), crm_strdup(uuid)); } #endif #if SUPPORT_HEARTBEAT if(is_heartbeat_cluster()) { if(heartbeat_cluster != NULL && uuid != NULL) { cl_uuid_t uuid_raw; char *uuid_copy = crm_strdup(uuid); cl_uuid_parse(uuid_copy, &uuid_raw); crm_malloc(uname, MAX_NAME); if(heartbeat_cluster->llc_ops->get_name_by_uuid( heartbeat_cluster, &uuid_raw, uname, MAX_NAME) == HA_FAIL) { crm_err("Could not calculate uname for %s", uuid); crm_free(uuid_copy); crm_free(uname); } else { g_hash_table_insert(crm_uname_cache, uuid_copy, uname); } } } #endif return g_hash_table_lookup(crm_uname_cache, uuid); } void set_uuid(xmlNode *node,const char *attr,const char *uname) { const char *uuid_calc = get_uuid(uname); crm_xml_add(node, attr, uuid_calc); return; } xmlNode* createPingAnswerFragment(const char *from, const char *status) { xmlNode *ping = NULL; ping = create_xml_node(NULL, XML_CRM_TAG_PING); crm_xml_add(ping, XML_PING_ATTR_STATUS, status); crm_xml_add(ping, XML_PING_ATTR_SYSFROM, from); return ping; } diff --git a/lib/common/heartbeat.c b/lib/common/heartbeat.c index e06215adc5..1bf06c21d2 100644 --- a/lib/common/heartbeat.c +++ b/lib/common/heartbeat.c @@ -1,212 +1,212 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include "stack.h" xmlNode *create_common_message( xmlNode *original_request, xmlNode *xml_response_data); #if SUPPORT_HEARTBEAT ll_cluster_t *heartbeat_cluster = NULL; gboolean send_ha_message(ll_cluster_t *hb_conn, xmlNode *xml, const char *node, gboolean force_ordered) { gboolean all_is_good = TRUE; HA_Message *msg = convert_xml_message(xml); if (msg == NULL) { crm_err("cant send NULL message"); all_is_good = FALSE; } else if(hb_conn == NULL) { crm_err("No heartbeat connection specified"); all_is_good = FALSE; } else if(hb_conn->llc_ops->chan_is_connected(hb_conn) == FALSE) { crm_err("Not connected to Heartbeat"); all_is_good = FALSE; } else if(node != NULL) { if(hb_conn->llc_ops->send_ordered_nodemsg( hb_conn, msg, node) != HA_OK) { all_is_good = FALSE; crm_err("Send failed"); } } else if(force_ordered) { if(hb_conn->llc_ops->send_ordered_clustermsg(hb_conn, msg) != HA_OK) { all_is_good = FALSE; crm_err("Broadcast Send failed"); } } else { if(hb_conn->llc_ops->sendclustermsg(hb_conn, msg) != HA_OK) { all_is_good = FALSE; crm_err("Broadcast Send failed"); } } if(all_is_good == FALSE && hb_conn != NULL) { IPC_Channel *ipc = NULL; IPC_Queue *send_q = NULL; if(hb_conn->llc_ops->chan_is_connected(hb_conn) != HA_OK) { ipc = hb_conn->llc_ops->ipcchan(hb_conn); } if(ipc != NULL) { /* ipc->ops->resume_io(ipc); */ send_q = ipc->send_queue; } if(send_q != NULL) { CRM_CHECK(send_q->current_qlen < send_q->max_qlen, ;); } } crm_log_xml(all_is_good?LOG_MSG:LOG_WARNING, "HA[outbound]", xml); crm_msg_del(msg); return all_is_good; } gboolean ha_msg_dispatch(ll_cluster_t *cluster_conn, gpointer user_data) { IPC_Channel *channel = NULL; crm_debug_3("Invoked"); if(cluster_conn != NULL) { channel = cluster_conn->llc_ops->ipcchan(cluster_conn); } CRM_CHECK(cluster_conn != NULL, return FALSE); CRM_CHECK(channel != NULL, return FALSE); if(channel != NULL && IPC_ISRCONN(channel)) { if(cluster_conn->llc_ops->msgready(cluster_conn) == 0) { crm_debug_2("no message ready yet"); } /* invoke the callbacks but dont block */ cluster_conn->llc_ops->rcvmsg(cluster_conn, 0); } if (channel == NULL || channel->ch_status != IPC_CONNECT) { crm_info("Lost connection to heartbeat service."); return FALSE; } return TRUE; } gboolean register_heartbeat_conn( ll_cluster_t *hb_cluster, char **uuid, char **uname, void (*hb_message)(HA_Message *msg, void* private_data), void (*hb_destroy)(gpointer user_data)) { const char *const_uuid = NULL; const char *const_uname = NULL; crm_debug("Signing in with Heartbeat"); if (hb_cluster->llc_ops->signon(hb_cluster, crm_system_name) != HA_OK) { crm_err("Cannot sign on with heartbeat: %s", hb_cluster->llc_ops->errmsg(hb_cluster)); return FALSE; } if (HA_OK != hb_cluster->llc_ops->set_msg_callback( hb_cluster, crm_system_name, hb_message, hb_cluster)){ crm_err("Cannot set msg callback: %s", hb_cluster->llc_ops->errmsg(hb_cluster)); return FALSE; } G_main_add_ll_cluster(G_PRIORITY_HIGH, hb_cluster, FALSE, ha_msg_dispatch, hb_cluster, hb_destroy); const_uname = hb_cluster->llc_ops->get_mynodeid(hb_cluster); CRM_CHECK(const_uname != NULL, return FALSE); const_uuid = get_uuid(const_uname); CRM_CHECK(const_uuid != NULL, return FALSE); crm_info("Hostname: %s", const_uname); crm_info("UUID: %s", const_uuid); if(uname) { *uname = crm_strdup(const_uname); } if(uuid) { *uuid = crm_strdup(const_uuid); } return TRUE; } gboolean ccm_have_quorum(oc_ed_t event) { if(event==OC_EV_MS_NEW_MEMBERSHIP || event==OC_EV_MS_PRIMARY_RESTORED) { return TRUE; } return FALSE; } const char * ccm_event_name(oc_ed_t event) { if(event==OC_EV_MS_NEW_MEMBERSHIP) { return "NEW MEMBERSHIP"; } else if(event==OC_EV_MS_NOT_PRIMARY) { return "NOT PRIMARY"; } else if(event==OC_EV_MS_PRIMARY_RESTORED) { return "PRIMARY RESTORED"; } else if(event==OC_EV_MS_EVICTED) { return "EVICTED"; } else if(event==OC_EV_MS_INVALID) { return "INVALID"; } return "NO QUORUM MEMBERSHIP"; } #endif diff --git a/lib/common/ipc.c b/lib/common/ipc.c index 0b3aaccebe..37dbecedba 100644 --- a/lib/common/ipc.c +++ b/lib/common/ipc.c @@ -1,670 +1,670 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include xmlNode *xmlfromIPC(IPC_Channel *ch, int timeout) { xmlNode *xml = NULL; HA_Message *msg = NULL; #if HAVE_MSGFROMIPC_TIMEOUT int ipc_rc = IPC_OK; msg = msgfromIPC_timeout(ch, MSG_ALLOWINTR, timeout, &ipc_rc); if(ipc_rc == IPC_TIMEOUT) { crm_warn("No message received in the required interval (%ds)", timeout); return NULL; } else if(ipc_rc == IPC_BROKEN) { crm_debug("Peer disconnected"); return NULL; } else if(ipc_rc != IPC_OK) { crm_err("msgfromIPC_timeout failed: rc=%d", ipc_rc); return NULL; } else if(msg == NULL) { crm_err("Empty reply from msgfromIPC_timeout"); return NULL; } #else static gboolean do_show_error = TRUE; if(timeout && do_show_error) { crm_err("Timeouts are not supported by the current heartbeat libraries"); do_show_error = FALSE; } msg = msgfromIPC_noauth(ch); if(msg == NULL) { crm_debug("Empty reply from msgfromIPC_noauth"); return NULL; } #endif xml = convert_ha_message(NULL, msg, __FUNCTION__); CRM_CHECK(xml != NULL, crm_err("Invalid ipc message")); crm_msg_del(msg); return xml; } static int xml2ipcchan(xmlNode *m, IPC_Channel *ch) { HA_Message *msg = NULL; IPC_Message *imsg = NULL; if (m == NULL || ch == NULL) { cl_log(LOG_ERR, "Invalid msg2ipcchan argument"); errno = EINVAL; return HA_FAIL; } msg = convert_xml_message(m); if ((imsg = hamsg2ipcmsg(msg, ch)) == NULL) { cl_log(LOG_ERR, "hamsg2ipcmsg() failure"); crm_msg_del(msg); return HA_FAIL; } crm_msg_del(msg); if (ch->ops->send(ch, imsg) != IPC_OK) { if (ch->ch_status == IPC_CONNECT) { snprintf(ch->failreason,MAXFAILREASON, "send failed,farside_pid=%d, sendq length=%ld(max is %ld)", ch->farside_pid, (long)ch->send_queue->current_qlen, (long)ch->send_queue->max_qlen); } imsg->msg_done(imsg); return HA_FAIL; } return HA_OK; } /* frees msg */ gboolean send_ipc_message(IPC_Channel *ipc_client, xmlNode *msg) { gboolean all_is_good = TRUE; int fail_level = LOG_WARNING; if(ipc_client != NULL && ipc_client->conntype == IPC_CLIENT) { fail_level = LOG_ERR; } if (msg == NULL) { crm_err("cant send NULL message"); all_is_good = FALSE; } else if (ipc_client == NULL) { crm_err("cant send message without an IPC Channel"); all_is_good = FALSE; } else if(ipc_client->ops->get_chan_status(ipc_client) != IPC_CONNECT) { do_crm_log(fail_level, "IPC Channel to %d is not connected", (int)ipc_client->farside_pid); all_is_good = FALSE; } if(all_is_good && xml2ipcchan(msg, ipc_client) != HA_OK) { do_crm_log(fail_level, "Could not send IPC message to %d", (int)ipc_client->farside_pid); all_is_good = FALSE; if(ipc_client->ops->get_chan_status(ipc_client) != IPC_CONNECT) { do_crm_log(fail_level, "IPC Channel to %d is no longer connected", (int)ipc_client->farside_pid); } else if(ipc_client->conntype == IPC_CLIENT) { if(ipc_client->send_queue->current_qlen >= ipc_client->send_queue->max_qlen) { crm_err("Send queue to %d (size=%d) full.", ipc_client->farside_pid, (int)ipc_client->send_queue->max_qlen); } } } /* crm_log_xml(all_is_good?LOG_MSG:LOG_WARNING,"IPC[outbound]",msg); */ return all_is_good; } void default_ipc_connection_destroy(gpointer user_data) { return; } int init_server_ipc_comms( char *channel_name, gboolean (*channel_client_connect)(IPC_Channel *newclient,gpointer user_data), void (*channel_connection_destroy)(gpointer user_data)) { /* the clients wait channel is the other source of events. * This source delivers the clients connection events. * listen to this source at a relatively lower priority. */ char commpath[SOCKET_LEN]; IPC_WaitConnection *wait_ch; sprintf(commpath, CRM_STATE_DIR "/%s", channel_name); wait_ch = wait_channel_init(commpath); if (wait_ch == NULL) { return 1; } G_main_add_IPC_WaitConnection( G_PRIORITY_LOW, wait_ch, NULL, FALSE, channel_client_connect, channel_name, channel_connection_destroy); crm_debug_3("Listening on: %s", commpath); return 0; } GCHSource* init_client_ipc_comms(const char *channel_name, gboolean (*dispatch)( IPC_Channel* source_data, gpointer user_data), void *client_data, IPC_Channel **ch) { IPC_Channel *a_ch = NULL; GCHSource *the_source = NULL; void *callback_data = client_data; a_ch = init_client_ipc_comms_nodispatch(channel_name); if(ch != NULL) { *ch = a_ch; if(callback_data == NULL) { callback_data = a_ch; } } if(a_ch == NULL) { crm_warn("Setup of client connection failed," " not adding channel to mainloop"); return NULL; } if(dispatch == NULL) { crm_warn("No dispatch method specified..." "maybe you meant init_client_ipc_comms_nodispatch()?"); } else { crm_debug_3("Adding dispatch method to channel"); the_source = G_main_add_IPC_Channel( G_PRIORITY_HIGH, a_ch, FALSE, dispatch, callback_data, default_ipc_connection_destroy); } return the_source; } IPC_Channel * init_client_ipc_comms_nodispatch(const char *channel_name) { IPC_Channel *ch; GHashTable *attrs; static char path[] = IPC_PATH_ATTR; char *commpath = NULL; int local_socket_len = 2; /* 2 = '/' + '\0' */ local_socket_len += strlen(channel_name); local_socket_len += strlen(CRM_STATE_DIR); crm_malloc0(commpath, local_socket_len); sprintf(commpath, CRM_STATE_DIR "/%s", channel_name); commpath[local_socket_len - 1] = '\0'; crm_debug("Attempting to talk on: %s", commpath); attrs = g_hash_table_new(g_str_hash,g_str_equal); g_hash_table_insert(attrs, path, commpath); ch = ipc_channel_constructor(IPC_ANYTYPE, attrs); g_hash_table_destroy(attrs); if (ch == NULL) { crm_err("Could not access channel on: %s", commpath); crm_free(commpath); return NULL; } else if (ch->ops->initiate_connection(ch) != IPC_OK) { crm_debug("Could not init comms on: %s", commpath); ch->ops->destroy(ch); crm_free(commpath); return NULL; } ch->ops->set_recv_qlen(ch, 512); ch->ops->set_send_qlen(ch, 512); ch->should_send_block = TRUE; crm_debug_3("Processing of %s complete", commpath); crm_free(commpath); return ch; } IPC_WaitConnection * wait_channel_init(char daemonsocket[]) { IPC_WaitConnection *wait_ch; mode_t mask; char path[] = IPC_PATH_ATTR; GHashTable * attrs; attrs = g_hash_table_new(g_str_hash,g_str_equal); g_hash_table_insert(attrs, path, daemonsocket); mask = umask(0); wait_ch = ipc_wait_conn_constructor(IPC_ANYTYPE, attrs); if (wait_ch == NULL) { crm_perror(LOG_ERR,"Can't create wait channel of type %s", IPC_ANYTYPE); exit(1); } mask = umask(mask); g_hash_table_destroy(attrs); return wait_ch; } gboolean subsystem_msg_dispatch(IPC_Channel *sender, void *user_data) { int lpc = 0; xmlNode *msg = NULL; xmlNode *data = NULL; gboolean all_is_well = TRUE; const char *sys_to; const char *task; gboolean (*process_function) (xmlNode *msg, xmlNode *data, IPC_Channel *sender) = NULL; while(IPC_ISRCONN(sender)) { gboolean process = FALSE; if(sender->ops->is_message_pending(sender) == 0) { break; } msg = xmlfromIPC(sender, MAX_IPC_DELAY); if (msg == NULL) { break; } lpc++; crm_log_xml(LOG_MSG, __FUNCTION__, msg); sys_to = crm_element_value(msg, F_CRM_SYS_TO); task = crm_element_value(msg, F_CRM_TASK); if(safe_str_eq(task, CRM_OP_HELLO)) { process = TRUE; } else if(sys_to == NULL) { crm_err("Value of %s was NULL!!", F_CRM_SYS_TO); } else if(task == NULL) { crm_err("Value of %s was NULL!!", F_CRM_TASK); } else { process = TRUE; } if(process == FALSE) { free_xml(msg); msg = NULL; continue; } data = get_message_xml(msg, F_CRM_DATA); process_function = user_data; if(FALSE == process_function(msg, data, sender)) { crm_warn("Received a message destined for %s" " by mistake", sys_to); } free_xml(msg); msg = NULL; if(sender->ch_status == IPC_CONNECT) { break; } } crm_debug_2("Processed %d messages", lpc); if (sender->ch_status != IPC_CONNECT) { crm_err("The server %d has left us: Shutting down...NOW", sender->farside_pid); exit(1); /* shutdown properly later */ return !all_is_well; } return all_is_well; } gboolean is_ipc_empty(IPC_Channel *ch) { if(ch == NULL) { return TRUE; } else if(ch->send_queue->current_qlen == 0 && ch->recv_queue->current_qlen == 0) { return TRUE; } return FALSE; } void send_hello_message(IPC_Channel *ipc_client, const char *uuid, const char *client_name, const char *major_version, const char *minor_version) { xmlNode *hello_node = NULL; xmlNode *hello = NULL; if (uuid == NULL || strlen(uuid) == 0 || client_name == NULL || strlen(client_name) == 0 || major_version == NULL || strlen(major_version) == 0 || minor_version == NULL || strlen(minor_version) == 0) { crm_err("Missing fields, Hello message will not be valid."); return; } hello_node = create_xml_node(NULL, XML_TAG_OPTIONS); crm_xml_add(hello_node, "major_version", major_version); crm_xml_add(hello_node, "minor_version", minor_version); crm_xml_add(hello_node, "client_name", client_name); crm_xml_add(hello_node, "client_uuid", uuid); crm_debug_4("creating hello message"); hello = create_request( CRM_OP_HELLO, hello_node, NULL, NULL, client_name, uuid); send_ipc_message(ipc_client, hello); crm_debug_4("hello message sent"); free_xml(hello_node); free_xml(hello); } gboolean process_hello_message(xmlNode *hello, char **uuid, char **client_name, char **major_version, char **minor_version) { const char *local_uuid; const char *local_client_name; const char *local_major_version; const char *local_minor_version; *uuid = NULL; *client_name = NULL; *major_version = NULL; *minor_version = NULL; if(hello == NULL) { return FALSE; } local_uuid = crm_element_value(hello, "client_uuid"); local_client_name = crm_element_value(hello, "client_name"); local_major_version = crm_element_value(hello, "major_version"); local_minor_version = crm_element_value(hello, "minor_version"); if (local_uuid == NULL || strlen(local_uuid) == 0) { crm_err("Hello message was not valid (field %s not found)", "uuid"); return FALSE; } else if (local_client_name==NULL || strlen(local_client_name)==0){ crm_err("Hello message was not valid (field %s not found)", "client name"); return FALSE; } else if(local_major_version == NULL || strlen(local_major_version) == 0){ crm_err("Hello message was not valid (field %s not found)", "major version"); return FALSE; } else if (local_minor_version == NULL || strlen(local_minor_version) == 0){ crm_err("Hello message was not valid (field %s not found)", "minor version"); return FALSE; } *uuid = crm_strdup(local_uuid); *client_name = crm_strdup(local_client_name); *major_version = crm_strdup(local_major_version); *minor_version = crm_strdup(local_minor_version); crm_debug_3("Hello message ok"); return TRUE; } xmlNode * create_request_adv(const char *task, xmlNode *msg_data, const char *host_to, const char *sys_to, const char *sys_from, const char *uuid_from, const char *origin) { char *true_from = NULL; xmlNode *request = NULL; char *reference = generateReference(task, sys_from); if (uuid_from != NULL) { true_from = generate_hash_key(sys_from, uuid_from); } else if(sys_from != NULL) { true_from = crm_strdup(sys_from); } else { crm_err("No sys from specified"); } /* host_from will get set for us if necessary by CRMd when routed */ request = create_xml_node(NULL, __FUNCTION__); crm_xml_add(request, F_CRM_ORIGIN, origin); crm_xml_add(request, F_TYPE, T_CRM); crm_xml_add(request, F_CRM_VERSION, CRM_FEATURE_SET); crm_xml_add(request, F_CRM_MSG_TYPE, XML_ATTR_REQUEST); crm_xml_add(request, XML_ATTR_REFERENCE, reference); crm_xml_add(request, F_CRM_TASK, task); crm_xml_add(request, F_CRM_SYS_TO, sys_to); crm_xml_add(request, F_CRM_SYS_FROM, true_from); /* HOSTTO will be ignored if it is to the DC anyway. */ if(host_to != NULL && strlen(host_to) > 0) { crm_xml_add(request, F_CRM_HOST_TO, host_to); } if (msg_data != NULL) { add_message_xml(request, F_CRM_DATA, msg_data); } crm_free(reference); crm_free(true_from); return request; } ha_msg_input_t * new_ha_msg_input(xmlNode *orig) { ha_msg_input_t *input_copy = NULL; crm_malloc0(input_copy, sizeof(ha_msg_input_t)); input_copy->msg = orig; input_copy->xml = get_message_xml(input_copy->msg, F_CRM_DATA); return input_copy; } void delete_ha_msg_input(ha_msg_input_t *orig) { if(orig == NULL) { return; } free_xml(orig->msg); crm_free(orig); } xmlNode * validate_crm_message( xmlNode *msg, const char *sys, const char *uuid, const char *msg_type) { const char *to = NULL; const char *type = NULL; const char *crm_msg_reference = NULL; xmlNode *action = NULL; const char *true_sys; char *local_sys = NULL; if (msg == NULL) { return NULL; } to = crm_element_value(msg, F_CRM_SYS_TO); type = crm_element_value(msg, F_CRM_MSG_TYPE); crm_msg_reference = crm_element_value(msg, XML_ATTR_REFERENCE); action = msg; true_sys = sys; if (uuid != NULL) { local_sys = generate_hash_key(sys, uuid); true_sys = local_sys; } if (to == NULL) { crm_info("No sub-system defined."); action = NULL; } else if (true_sys != NULL && strcasecmp(to, true_sys) != 0) { crm_debug_3("The message is not for this sub-system (%s != %s).", to, true_sys); action = NULL; } crm_free(local_sys); if (type == NULL) { crm_info("No message type defined."); return NULL; } else if (msg_type != NULL && strcasecmp(msg_type, type) != 0) { crm_info("Expecting a (%s) message but received a (%s).", msg_type, type); action = NULL; } if (crm_msg_reference == NULL) { crm_info("No message crm_msg_reference defined."); action = NULL; } /* if(action != NULL) crm_debug_3( "XML is valid and node with message type (%s) found.", type); crm_debug_3("Returning node (%s)", crm_element_name(action)); */ return action; } /* * This method adds a copy of xml_response_data */ xmlNode * create_reply_adv(xmlNode *original_request, xmlNode *xml_response_data, const char *origin) { xmlNode *reply = NULL; const char *host_from= crm_element_value(original_request, F_CRM_HOST_FROM); const char *sys_from = crm_element_value(original_request, F_CRM_SYS_FROM); const char *sys_to = crm_element_value(original_request, F_CRM_SYS_TO); const char *type = crm_element_value(original_request, F_CRM_MSG_TYPE); const char *operation= crm_element_value(original_request, F_CRM_TASK); const char *crm_msg_reference = crm_element_value( original_request, XML_ATTR_REFERENCE); if (type == NULL) { crm_err("Cannot create new_message," " no message type in original message"); CRM_ASSERT(type != NULL); return NULL; #if 0 } else if (strcasecmp(XML_ATTR_REQUEST, type) != 0) { crm_err("Cannot create new_message," " original message was not a request"); return NULL; #endif } reply = create_xml_node(NULL, __FUNCTION__); crm_xml_add(reply, F_CRM_ORIGIN, origin); crm_xml_add(reply, F_TYPE, T_CRM); crm_xml_add(reply, F_CRM_VERSION, CRM_FEATURE_SET); crm_xml_add(reply, F_CRM_MSG_TYPE, XML_ATTR_RESPONSE); crm_xml_add(reply, XML_ATTR_REFERENCE, crm_msg_reference); crm_xml_add(reply, F_CRM_TASK, operation); /* since this is a reply, we reverse the from and to */ crm_xml_add(reply, F_CRM_SYS_TO, sys_from); crm_xml_add(reply, F_CRM_SYS_FROM, sys_to); /* HOSTTO will be ignored if it is to the DC anyway. */ if(host_from != NULL && strlen(host_from) > 0) { crm_xml_add(reply, F_CRM_HOST_TO, host_from); } if (xml_response_data != NULL) { add_message_xml(reply, F_CRM_DATA, xml_response_data); } return reply; } diff --git a/lib/common/iso8601.c b/lib/common/iso8601.c index 3533adf6c7..f5fcbfcab0 100644 --- a/lib/common/iso8601.c +++ b/lib/common/iso8601.c @@ -1,1389 +1,1389 @@ /* * Copyright (C) 2005 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ /* * Primary reference: * http://en.wikipedia.org/wiki/ISO_8601 (as at 2005-08-01) * * Secondary references: * http://hydracen.com/dx/iso8601.htm * http://www.personal.ecu.edu/mccartyr/ISOwdALG.txt * http://www.personal.ecu.edu/mccartyr/isowdcal.html * http://www.phys.uu.nl/~vgent/calendar/isocalendar.htm * */ #include #include #include #include #include gboolean gregorian_to_ordinal(ha_time_t *a_date); gboolean ordinal_to_gregorian(ha_time_t *a_date); gboolean ordinal_to_weekdays(ha_time_t *a_date); void normalize_time(ha_time_t *a_time); /* * Andrew's code was originally written for OSes whose "struct tm" contains: * long tm_gmtoff; :: Seconds east of UTC * const char *tm_zone; :: Timezone abbreviation * Some OSes lack these, instead having: * time_t (or long) timezone; :: "difference between UTC and local standard time" * char *tzname[2] = { "...", "..." }; * I (David Lee) confess to not understanding the details. So my attempted * generalisations for where their use is necessary may be flawed. * * 1. Does "difference between ..." subtract the same or opposite way? * 2. Should it use "altzone" instead of "timezone"? * 3. Should it use tzname[0] or tzname[1]? Interaction with timezone/altzone? */ #if defined(HAVE_STRUCT_TM_TM_GMTOFF) #define GMTOFF(tm) ((tm)->tm_gmtoff) #else /* Note: extern variable; macro argument not actually used. */ #define GMTOFF(tm) (timezone) #endif char * date_to_string(ha_time_t *date_time, int flags) { char *date_s = NULL; char *time_s = NULL; char *offset_s = NULL; char *result_s = NULL; ha_time_t *dt = NULL; if(flags & ha_log_local) { crm_debug_6("Local version"); dt = date_time; } else { dt = date_time->normalized; } CRM_CHECK(dt != NULL, return NULL); if(flags & ha_log_date) { crm_malloc0(date_s, 32); if(date_s == NULL) { return NULL; } else if(flags & ha_date_weeks) { snprintf(date_s, 31, "%d-W%.2d-%d", dt->weekyears, dt->weeks, dt->weekdays); } else if(flags & ha_date_ordinal) { snprintf(date_s, 31, "%d-%.3d",dt->years, dt->yeardays); } else { snprintf(date_s, 31, "%.4d-%.2d-%.2d", dt->years, dt->months, dt->days); } } if(flags & ha_log_time) { int offset = 0; crm_malloc0(time_s, 32); if(time_s == NULL) { goto cleanup; } snprintf(time_s, 31, "%.2d:%.2d:%.2d", dt->hours, dt->minutes, dt->seconds); if(dt->offset != NULL) { offset =(dt->offset->hours * 100) + dt->offset->minutes; } crm_malloc0(offset_s, 32); if((flags & ha_log_local) == 0 || offset == 0) { snprintf(offset_s, 31, "Z"); } else { int hr = dt->offset->hours; int mins = dt->offset->minutes; if(hr < 0) { hr = 0 - hr; } if(mins < 0) { mins = 0 - mins; } snprintf(offset_s, 31, " %s%.2d:%.2d", offset>0?"+":"-", hr, mins); } } crm_malloc0(result_s, 100); snprintf(result_s, 100, "%s%s%s%s", date_s?date_s:"", (date_s!=NULL&&time_s!=NULL)?" ":"", time_s?time_s:"", offset_s?offset_s:""); cleanup: crm_free(date_s); crm_free(time_s); crm_free(offset_s); return result_s; } void log_date(int log_level, const char *prefix, ha_time_t *date_time, int flags) { char *date_s = date_to_string(date_time, flags); do_crm_log(log_level, "%s%s%s", prefix?prefix:"", prefix?": ":"", date_s?date_s:"__invalid_date__"); crm_free(date_s); } void log_time_period(int log_level, ha_time_period_t *dtp, int flags) { log_date(log_level, "Period start:", dtp->start, flags); log_date(log_level, "Period end:", dtp->end, flags); } ha_time_t* parse_time_offset(char **offset_str) { ha_time_t *new_time = NULL; crm_malloc0(new_time, sizeof(ha_time_t)); crm_malloc0(new_time->has, sizeof(ha_has_time_t)); if((*offset_str)[0] == 'Z') { } else if((*offset_str)[0] == '+' || (*offset_str)[0] == '-' || isdigit((int) (*offset_str)[0])) { gboolean negate = FALSE; if((*offset_str)[0] == '-') { negate = TRUE; (*offset_str)++; } parse_time(offset_str, new_time, FALSE); if(negate) { new_time->hours = 0 - new_time->hours; new_time->minutes = 0 - new_time->minutes; new_time->seconds = 0 - new_time->seconds; } } else { #if defined(HAVE_STRUCT_TM_TM_GMTOFF) time_t now = time(NULL); struct tm *now_tm = localtime(&now); #endif int h_offset = GMTOFF(now_tm) / (3600); int m_offset = (GMTOFF(now_tm) - (3600 * h_offset)) / (60); if(h_offset < 0 && m_offset < 0) { m_offset = 0 - m_offset; } new_time->hours = h_offset; new_time->minutes = m_offset; new_time->has->hours = TRUE; new_time->has->minutes = TRUE; } return new_time; } ha_time_t* parse_time(char **time_str, ha_time_t *a_time, gboolean with_offset) { ha_time_t *new_time = a_time; tzset(); if(a_time == NULL) { new_time = new_ha_date(FALSE); } CRM_CHECK(new_time != NULL, return NULL); CRM_CHECK(new_time->has != NULL, free_ha_date(new_time); return NULL); /* reset the time fields */ new_time->hours = 0; new_time->minutes = 0; new_time->seconds = 0; crm_debug_4("Get hours..."); new_time->has->hours = FALSE; if(parse_int(time_str, 2, 24, &new_time->hours)) { new_time->has->hours = TRUE; } crm_debug_4("Get minutes..."); new_time->has->minutes = FALSE; if(parse_int(time_str, 2, 60, &new_time->minutes)) { new_time->has->minutes = TRUE; } crm_debug_4("Get seconds..."); new_time->has->seconds = FALSE; if(parse_int(time_str, 2, 60, &new_time->seconds)){ new_time->has->seconds = TRUE; } if(with_offset) { crm_debug_4("Get offset..."); while(isspace((int) (*time_str)[0])) { (*time_str)++; } new_time->offset = parse_time_offset(time_str); normalize_time(new_time); } return new_time; } void normalize_time(ha_time_t *a_time) { CRM_CHECK(a_time != NULL, return); CRM_CHECK(a_time->has != NULL, return); if(a_time->normalized == NULL) { crm_malloc0(a_time->normalized, sizeof(ha_time_t)); } if(a_time->normalized->has == NULL) { crm_malloc0(a_time->normalized->has, sizeof(ha_has_time_t)); } ha_set_time(a_time->normalized, a_time, FALSE); if(a_time->offset != NULL) { if(a_time->offset->has->hours) { sub_hours(a_time->normalized, a_time->offset->hours); } if(a_time->offset->has->minutes) { sub_minutes(a_time->normalized,a_time->offset->minutes); } if(a_time->offset->has->seconds) { sub_seconds(a_time->normalized,a_time->offset->seconds); } } CRM_CHECK(is_date_sane(a_time), return); } ha_time_t * parse_date(char **date_str) { gboolean is_done = FALSE; gboolean converted = FALSE; ha_time_t *new_time = NULL; CRM_CHECK(date_str != NULL, return NULL); CRM_CHECK(strlen(*date_str) > 0, return NULL); if((*date_str)[0] == 'T' || (*date_str)[2] == ':') { /* Just a time supplied - Infer current date */ new_time = new_ha_date(TRUE); parse_time(date_str, new_time, TRUE); normalize_time(new_time); is_done = TRUE; } else { crm_malloc0(new_time, sizeof(ha_time_t)); crm_malloc0(new_time->has, sizeof(ha_has_time_t)); } while(is_done == FALSE) { char ch = (*date_str)[0]; crm_debug_5("Switching on ch=%c (len=%d)", ch, (int)strlen(*date_str)); if(ch == 0) { /* all done */ is_done = TRUE; break; } else if(ch == '/') { /* all done - interval marker */ is_done = TRUE; break; } else if(ch == 'W') { CRM_CHECK(new_time->has->weeks == FALSE, ;); (*date_str)++; if(parse_int(date_str, 2, 53, &new_time->weeks)){ new_time->has->weeks = TRUE; new_time->weekyears = new_time->years; new_time->has->weekyears = new_time->has->years; } if((*date_str)[0] == '-') { (*date_str)++; if(parse_int(date_str, 1, 7, &new_time->weekdays)) { new_time->has->weekdays = TRUE; } } if(new_time->weekdays == 0 || new_time->has->weekdays == FALSE) { new_time->weekdays = 1; new_time->has->weekdays = TRUE; } } else if(ch == '-') { (*date_str)++; if(check_for_ordinal(*date_str)) { if(parse_int(date_str, 3, 366, &new_time->yeardays)) { new_time->has->yeardays = TRUE; } } } else if(ch == 'O') { /* ordinal date */ (*date_str)++; if(parse_int(date_str, 3, 366, &new_time->yeardays)){ new_time->has->yeardays = TRUE; } } else if(ch == 'T' || ch == ' ') { if(new_time->has->yeardays) { converted = convert_from_ordinal(new_time); } else if(new_time->has->weekdays) { converted = convert_from_weekdays(new_time); } else { converted = convert_from_gregorian(new_time); } (*date_str)++; parse_time(date_str, new_time, TRUE); is_done = TRUE; } else if(isdigit((int) ch)) { if(new_time->has->years == FALSE && parse_int(date_str, 4, 9999, &new_time->years)) { new_time->has->years = TRUE; } else if(check_for_ordinal(*date_str) && parse_int( date_str, 3, is_leap_year(new_time->years)?366:365, &new_time->yeardays)) { new_time->has->yeardays = TRUE; } else if(new_time->has->months == FALSE && parse_int(date_str, 2, 12, &new_time->months)) { new_time->has->months = TRUE; } else if(new_time->has->days == FALSE) { if(parse_int(date_str, 2, days_per_month(new_time->months, new_time->years), &new_time->days)) { new_time->has->days = TRUE; } } } else { crm_err("Unexpected characters at: %s", *date_str); is_done = TRUE; break; } } if(converted) { } else if(new_time->has->yeardays) { convert_from_ordinal(new_time); } else if(new_time->has->weekdays) { convert_from_weekdays(new_time); } else { convert_from_gregorian(new_time); } normalize_time(new_time); log_date(LOG_DEBUG_3, "Unpacked", new_time, ha_log_date|ha_log_time); CRM_CHECK(is_date_sane(new_time), return NULL); return new_time; } ha_time_t* parse_time_duration(char **interval_str) { gboolean is_time = FALSE; ha_time_t *diff = NULL; CRM_CHECK(interval_str != NULL, goto bail); CRM_CHECK(strlen(*interval_str) > 0, goto bail); CRM_CHECK((*interval_str)[0] == 'P', goto bail); (*interval_str)++; crm_malloc0(diff, sizeof(ha_time_t)); crm_malloc0(diff->has, sizeof(ha_has_time_t)); while(isspace((int) (*interval_str)[0]) == FALSE) { int an_int = 0; char ch = 0; if((*interval_str)[0] == 'T') { is_time = TRUE; (*interval_str)++; } if(parse_int(interval_str, 10, 0, &an_int) == FALSE) { break; } ch = (*interval_str)[0]; (*interval_str)++; crm_debug_4("%c=%d", ch, an_int); switch(ch) { case 0: return diff; break; case 'Y': diff->years = an_int; diff->has->years = TRUE; break; case 'M': if(is_time) { diff->minutes = an_int; diff->has->minutes = TRUE; } else { diff->months = an_int; diff->has->months = TRUE; } break; case 'W': diff->weeks = an_int; diff->has->weeks = TRUE; break; case 'D': diff->days = an_int; diff->has->days = TRUE; diff->yeardays = an_int; diff->has->yeardays = TRUE; break; case 'H': diff->hours = an_int; diff->has->hours = TRUE; break; case 'S': diff->seconds = an_int; diff->has->seconds = TRUE; break; default: goto bail; break; } } return diff; bail: if(diff) { crm_free(diff->has); } crm_free(diff); return NULL; } ha_time_period_t* parse_time_period(char **period_str) { gboolean invalid = FALSE; const char *original = *period_str; ha_time_period_t *period = NULL; CRM_CHECK(period_str != NULL, return NULL); CRM_CHECK(strlen(*period_str) > 0, return NULL); tzset(); crm_malloc0(period, sizeof(ha_time_period_t)); if((*period_str)[0] == 'P') { period->diff = parse_time_duration(period_str); } else { period->start = parse_date(period_str); } if((*period_str)[0] != 0) { CRM_CHECK((*period_str)[0] == '/', invalid = TRUE; goto bail); (*period_str)++; if((*period_str)[0] == 'P') { period->diff = parse_time_duration(period_str); } else { period->end = parse_date(period_str); } } else if(period->diff != NULL) { /* just aduration starting from now */ time_t now = time(NULL); crm_malloc0(period->start, sizeof(ha_time_t)); crm_malloc0(period->start->has, sizeof(ha_has_time_t)); crm_malloc0(period->start->offset, sizeof(ha_time_t)); crm_malloc0(period->start->offset->has, sizeof(ha_has_time_t)); ha_set_timet_time(period->start, &now); normalize_time(period->start); } else { invalid = TRUE; CRM_CHECK((*period_str)[0] == '/', goto bail); goto bail; } /* sanity checks */ if(period->start == NULL && period->end == NULL) { crm_err("Invalid time period: %s", original); invalid = TRUE; } else if(period->start == NULL && period->diff == NULL) { crm_err("Invalid time period: %s", original); invalid = TRUE; } else if(period->end == NULL && period->diff == NULL) { crm_err("Invalid time period: %s", original); invalid = TRUE; } bail: if(invalid) { crm_free(period->start); crm_free(period->end); crm_free(period->diff); crm_free(period); return NULL; } if(period->end == NULL && period->diff == NULL) { } if(period->start == NULL) { period->start = subtract_duration(period->end, period->diff); normalize_time(period->start); } else if(period->end == NULL) { period->end = add_time(period->start, period->diff); normalize_time(period->end); } is_date_sane(period->start); is_date_sane(period->end); return period; } int month2days[13] = { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365 }; /* http://www.personal.ecu.edu/mccartyr/ISOwdALG.txt */ int january1(int year) { int YY = (year - 1) % 100; int C = (year - 1) - YY; int G = YY + YY/4; int jan1 = 1 + (((((C / 100) % 4) * 5) + G) % 7); crm_debug_6("YY=%d, C=%d, G=%d", YY, C, G); crm_debug_5("January 1 %.4d: %d", year, jan1); return jan1; } int weeks_in_year(int year) { int weeks = 52; int jan1 = january1(year); /* if jan1 == thursday */ if(jan1 == 4) { weeks++; } else { jan1 = january1(year+1); /* if dec31 == thursday aka. jan1 of next year is a friday */ if(jan1 == 5) { weeks++; } } return weeks; } gboolean convert_from_gregorian(ha_time_t *a_date) { CRM_CHECK(gregorian_to_ordinal(a_date), return FALSE); CRM_CHECK(ordinal_to_weekdays(a_date), return FALSE); return TRUE; } gboolean gregorian_to_ordinal(ha_time_t *a_date) { CRM_CHECK(a_date->has->years, return FALSE); CRM_CHECK(a_date->has->months, return FALSE); CRM_CHECK(a_date->has->days, return FALSE); CRM_CHECK(a_date->months > 0, return FALSE); CRM_CHECK(a_date->days > 0, return FALSE); a_date->yeardays = month2days[a_date->months-1]; a_date->yeardays += a_date->days; a_date->has->yeardays = TRUE; if(is_leap_year(a_date->years) && a_date->months > 2) { (a_date->yeardays)++; } crm_debug_4("Converted %.4d-%.2d-%.2d to %.4d-%.3d", a_date->years, a_date->months, a_date->days, a_date->years, a_date->yeardays); return TRUE; } gboolean convert_from_ordinal(ha_time_t *a_date) { CRM_CHECK(ordinal_to_gregorian(a_date), return FALSE); CRM_CHECK(ordinal_to_weekdays(a_date), return FALSE); return TRUE; } gboolean ordinal_to_gregorian(ha_time_t *a_date) { /* Day of the year this month ends on */ int m_end = 0; CRM_CHECK(a_date->has->years, return FALSE); CRM_CHECK(a_date->has->yeardays, return FALSE); CRM_CHECK(a_date->yeardays > 0, return FALSE); if(is_leap_year(a_date->years) && a_date->yeardays > 366) { crm_err("Year %.4d only has 366 days (supplied %.3d)", a_date->years, a_date->yeardays); a_date->yeardays = 366; } else if(!is_leap_year(a_date->years) && a_date->yeardays > 365) { crm_err("Year %.4d only has 365 days (supplied %.3d)", a_date->years, a_date->yeardays); a_date->yeardays = 365; } a_date->days = a_date->yeardays; a_date->months = 0; do { a_date->months++; m_end += days_per_month(a_date->months, a_date->years); a_date->days -= days_per_month(a_date->months-1, a_date->years); crm_debug_6("month %d: %d vs. %d - current day: %d", a_date->months, a_date->yeardays, m_end, a_date->days); } while (a_date->months < 12 && m_end < a_date->yeardays); CRM_CHECK(a_date->months > 0, return FALSE); CRM_CHECK(a_date->days <= days_per_month(a_date->months, a_date->years), return FALSE); a_date->has->days = TRUE; a_date->has->months = TRUE; a_date->has->years = TRUE; crm_debug_4("Converted %.4d-%.3d to %.4d-%.2d-%.2d", a_date->years, a_date->yeardays, a_date->years, a_date->months, a_date->days); return TRUE; } gboolean ordinal_to_weekdays(ha_time_t *a_date) { int year_num = 0; int jan1 = january1(a_date->years); int h = -1; CRM_CHECK(a_date->has->years, return FALSE); CRM_CHECK(a_date->has->yeardays, return FALSE); CRM_CHECK(a_date->yeardays > 0, return FALSE); h = a_date->yeardays + jan1 - 1; a_date->weekdays = 1 + ((h-1) % 7); a_date->has->weekdays = TRUE; if(a_date->yeardays <= (8-jan1) && jan1 > 4) { year_num = a_date->years - 1; a_date->weeks = weeks_in_year(year_num); a_date->has->weeks = TRUE; } else { year_num = a_date->years; } if(year_num == a_date->years) { int i = 365; if(is_leap_year(year_num)) { i = 366; } if( (i - a_date->yeardays) < (4 - a_date->weekdays) ) { year_num = a_date->years + 1; a_date->weeks = 1; a_date->has->weeks = TRUE; } } if(year_num == a_date->years) { int j = a_date->yeardays + (7-a_date->weekdays) + (jan1 - 1); a_date->weeks = j / 7; a_date->has->weeks = TRUE; if(jan1 > 4) { a_date->weeks -= 1; } } a_date->weekyears = year_num; a_date->has->weekyears = TRUE; crm_debug_4("Converted %.4d-%.3d to %.4dW%.2d-%d", a_date->years, a_date->yeardays, a_date->weekyears, a_date->weeks, a_date->weekdays); return TRUE; } gboolean convert_from_weekdays(ha_time_t *a_date) { gboolean conversion = FALSE; int jan1 = january1(a_date->weekyears); CRM_CHECK(a_date->has->weekyears, return FALSE); CRM_CHECK(a_date->has->weeks, return FALSE); CRM_CHECK(a_date->has->weekdays, return FALSE); CRM_CHECK(a_date->weeks > 0, return FALSE); CRM_CHECK(a_date->weekdays > 0, return FALSE); CRM_CHECK(a_date->weekdays < 8, return FALSE); a_date->has->years = TRUE; a_date->years = a_date->weekyears; a_date->has->yeardays = TRUE; a_date->yeardays = (7 * (a_date->weeks-1)); /* break up the addition to make sure overflows are correctly handled */ if(a_date->yeardays == 0) { a_date->yeardays = a_date->weekdays; } else { add_yeardays(a_date, a_date->weekdays); } crm_debug_5("Pre-conversion: %dW%d-%d to %.4d-%.3d", a_date->weekyears, a_date->weeks, a_date->weekdays, a_date->years, a_date->yeardays); conversion = ordinal_to_gregorian(a_date); if(conversion) { if(jan1 < 4) { sub_days(a_date, jan1-1); } else if(jan1 > 4) { add_days(a_date, jan1-4); } } return conversion; } void ha_set_time(ha_time_t *lhs, ha_time_t *rhs, gboolean offset) { crm_debug_6("lhs=%p, rhs=%p, offset=%d", lhs, rhs, offset); CRM_CHECK(lhs != NULL && rhs != NULL, return); CRM_CHECK(lhs->has != NULL && rhs->has != NULL, return); lhs->years = rhs->years; lhs->has->years = rhs->has->years; lhs->weekyears = rhs->weekyears; lhs->has->weekyears = rhs->has->weekyears; lhs->months = rhs->months; lhs->has->months = rhs->has->months; lhs->weeks = rhs->weeks; lhs->has->weeks = rhs->has->weeks; lhs->days = rhs->days; lhs->has->days = rhs->has->days; lhs->weekdays = rhs->weekdays; lhs->has->weekdays = rhs->has->weekdays; lhs->yeardays = rhs->yeardays; lhs->has->yeardays = rhs->has->yeardays; lhs->hours = rhs->hours; lhs->has->hours = rhs->has->hours; lhs->minutes = rhs->minutes; lhs->has->minutes = rhs->has->minutes; lhs->seconds = rhs->seconds; lhs->has->seconds = rhs->has->seconds; if(lhs->offset) { reset_time(lhs->offset); } if(offset && rhs->offset) { ha_set_time(lhs->offset, rhs->offset, FALSE); } } void ha_set_tm_time(ha_time_t *lhs, struct tm *rhs) { int wday = rhs->tm_wday; int h_offset = 0; int m_offset = 0; if(rhs->tm_year > 0) { /* years since 1900 */ lhs->years = 1900 + rhs->tm_year; lhs->has->years = TRUE; } if(rhs->tm_yday >= 0) { /* days since January 1 [0-365] */ lhs->yeardays = 1 + rhs->tm_yday; lhs->has->yeardays =TRUE; } if(rhs->tm_hour >= 0) { lhs->hours = rhs->tm_hour; lhs->has->hours =TRUE; } if(rhs->tm_min >= 0) { lhs->minutes = rhs->tm_min; lhs->has->minutes =TRUE; } if(rhs->tm_sec >= 0) { lhs->seconds = rhs->tm_sec; lhs->has->seconds =TRUE; } convert_from_ordinal(lhs); /* months since January [0-11] */ CRM_CHECK(rhs->tm_mon < 0 || lhs->months == (1 + rhs->tm_mon), return); /* day of the month [1-31] */ CRM_CHECK(rhs->tm_mday < 0 || lhs->days == rhs->tm_mday, return); /* days since Sunday [0-6] */ if(wday == 0) { wday= 7; } CRM_CHECK(rhs->tm_wday < 0 || lhs->weekdays == wday, return); CRM_CHECK(lhs->offset != NULL, return); CRM_CHECK(lhs->offset->has != NULL, return); /* tm_gmtoff == offset from UTC in seconds */ h_offset = GMTOFF(rhs) / (3600); m_offset = (GMTOFF(rhs) - (3600 * h_offset)) / (60); crm_debug_6("Offset (s): %ld, offset (hh:mm): %.2d:%.2d", GMTOFF(rhs), h_offset, m_offset); lhs->offset->hours = h_offset; lhs->offset->has->hours = TRUE; lhs->offset->minutes = m_offset; lhs->offset->has->minutes = TRUE; normalize_time(lhs); } void ha_set_timet_time(ha_time_t *lhs, time_t *rhs) { ha_set_tm_time(lhs, localtime(rhs)); } ha_time_t * add_time(ha_time_t *lhs, ha_time_t *rhs) { ha_time_t *answer = NULL; CRM_CHECK(lhs != NULL && rhs != NULL, return NULL); answer = new_ha_date(FALSE); ha_set_time(answer, lhs, TRUE); normalize_time(lhs); normalize_time(answer); if(rhs->has->years) { add_years(answer, rhs->years); } if(rhs->has->months) { add_months(answer, rhs->months); } if(rhs->has->weeks) { add_weeks(answer, rhs->weeks); } if(rhs->has->days) { add_days(answer, rhs->days); } add_hours(answer, rhs->hours); add_minutes(answer, rhs->minutes); add_seconds(answer, rhs->seconds); normalize_time(answer); return answer; } ha_time_t * subtract_time(ha_time_t *lhs, ha_time_t *rhs) { ha_time_t *answer = NULL; CRM_CHECK(lhs != NULL && rhs != NULL, return NULL); answer = new_ha_date(FALSE); ha_set_time(answer, lhs, TRUE); normalize_time(lhs); normalize_time(rhs); normalize_time(answer); sub_seconds(answer, rhs->seconds); sub_minutes(answer, rhs->minutes); sub_hours(answer, rhs->hours); answer->yeardays -= rhs->yeardays; while(answer->yeardays < 0) { answer->yeardays += is_leap_year(answer->years)?356:355; answer->years--; } answer->days -= rhs->days; while(answer->days < 0) { answer->days += days_per_month(answer->months, answer->years); answer->months--; } answer->months -= rhs->months; while(answer->months < 0) { answer->months += 12; /* answer->years--; : done in the yeardays section */ } answer->years -= rhs->years; return answer; } ha_time_t * subtract_duration(ha_time_t *lhs, ha_time_t *rhs) { ha_time_t *answer = NULL; CRM_CHECK(lhs != NULL && rhs != NULL, return NULL); answer = new_ha_date(FALSE); ha_set_time(answer, lhs, TRUE); normalize_time(lhs); normalize_time(rhs); normalize_time(answer); sub_seconds(answer, rhs->seconds); sub_minutes(answer, rhs->minutes); sub_hours(answer, rhs->hours); sub_days(answer, rhs->days); sub_weeks(answer, rhs->weeks); sub_months(answer, rhs->months); sub_years(answer, rhs->years); normalize_time(answer); return answer; } /* ha_time_interval_t* */ /* parse_time_interval(char **interval_str) */ /* { */ /* return NULL; */ /* } */ int month_days[14] = { 0, 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31, 29 }; int days_per_month(int month, int year) { if(month == 2 && is_leap_year(year)) { month = 13; } return month_days[month]; } gboolean is_leap_year(int year) { gboolean is_leap = FALSE; if(year % 4 == 0) { is_leap = TRUE; } if(year % 100 == 0 && year % 400 != 0 ) { is_leap = FALSE; } return is_leap; } gboolean parse_int(char **str, int field_width, int uppper_bound, int *result) { int lpc = 0; int intermediate = 0; gboolean fraction = FALSE; gboolean negate = FALSE; CRM_CHECK(str != NULL, return FALSE); CRM_CHECK(*str != NULL, return FALSE); CRM_CHECK(result != NULL, return FALSE); *result = 0; if(strlen(*str) <= 0) { return FALSE; } if((*str)[0] == 'T') { (*str)++; } if((*str)[0] == '.' || (*str)[0] == ',') { fraction = TRUE; field_width = -1; (*str)++; } else if((*str)[0] == '-') { negate = TRUE; (*str)++; } else if((*str)[0] == '+' || (*str)[0] == ':') { (*str)++; } for(; (fraction || lpc < field_width) && isdigit((int) (*str)[0]); lpc++) { if(fraction) { intermediate = ((*str)[0] - '0')/(10^lpc); } else { *result *= 10; intermediate = (*str)[0] - '0'; } *result += intermediate; (*str)++; } if(fraction) { *result = (int)(*result * uppper_bound); } else if(uppper_bound > 0 && *result > uppper_bound) { *result = uppper_bound; } if(negate) { *result = 0 - *result; } if(lpc > 0) { crm_debug_5("Found int: %d. Stopped at str[%d]='%c'", *result, lpc, (*str)[lpc]); return TRUE; } return FALSE; } gboolean check_for_ordinal(const char *str) { if(isdigit((int) str[2]) == FALSE) { crm_debug_6("char 3 == %c", str[2]); return FALSE; } if(isspace((int) str[3])) { return TRUE; } else if(str[3] == 0) { return TRUE; } else if(str[3] == 'T') { return TRUE; } else if(str[3] == '/') { return TRUE; } crm_debug_6("char 4 == %c", str[3]); return FALSE; } int str_lookup(const char *str, enum date_fields field) { return 0; } void reset_time(ha_time_t *a_time) { a_time->years = 0; a_time->has->years = FALSE; a_time->weekyears = 0; a_time->has->weekyears = FALSE; a_time->months = 0; a_time->has->months = FALSE; a_time->weeks = 0; a_time->has->weeks = FALSE; a_time->days = 0; a_time->has->days = FALSE; a_time->weekdays = 0; a_time->has->weekdays = FALSE; a_time->yeardays = 0; a_time->has->yeardays = FALSE; a_time->hours = 0; a_time->has->hours = FALSE; a_time->minutes = 0; a_time->has->minutes = FALSE; a_time->seconds = 0; a_time->has->seconds = FALSE; } void reset_tm(struct tm *some_tm) { some_tm->tm_sec = -1; /* seconds after the minute [0-60] */ some_tm->tm_min = -1; /* minutes after the hour [0-59] */ some_tm->tm_hour = -1; /* hours since midnight [0-23] */ some_tm->tm_mday = -1; /* day of the month [1-31] */ some_tm->tm_mon = -1; /* months since January [0-11] */ some_tm->tm_year = -1; /* years since 1900 */ some_tm->tm_wday = -1; /* days since Sunday [0-6] */ some_tm->tm_yday = -1; /* days since January 1 [0-365] */ some_tm->tm_isdst = -1; /* Daylight Savings Time flag */ #if defined(HAVE_STRUCT_TM_TM_GMTOFF) some_tm->tm_gmtoff = -1; /* offset from CUT in seconds */ #endif #if defined(HAVE_TM_ZONE) some_tm->tm_zone = NULL;/* timezone abbreviation */ #endif } gboolean is_date_sane(ha_time_t *a_date) { int ydays = 0; int mdays = 0; int weeks = 0; CRM_CHECK(a_date != NULL, return FALSE); ydays = is_leap_year(a_date->years)?366:365; mdays = days_per_month(a_date->months, a_date->years); weeks = weeks_in_year(a_date->weekyears); crm_debug_5("max ydays: %d, max mdays: %d, max weeks: %d", ydays, mdays, weeks); CRM_CHECK(a_date->has->years, return FALSE); CRM_CHECK(a_date->has->weekyears, return FALSE); CRM_CHECK(a_date->has->months, return FALSE); CRM_CHECK(a_date->months > 0, return FALSE); CRM_CHECK(a_date->months <= 12, return FALSE); CRM_CHECK(a_date->has->weeks, return FALSE); CRM_CHECK(a_date->weeks > 0, return FALSE); CRM_CHECK(a_date->weeks <= weeks, return FALSE); CRM_CHECK(a_date->has->days, return FALSE); CRM_CHECK(a_date->days > 0, return FALSE); CRM_CHECK(a_date->days <= mdays, return FALSE); CRM_CHECK(a_date->has->weekdays, return FALSE); CRM_CHECK(a_date->weekdays > 0, return FALSE); CRM_CHECK(a_date->weekdays <= 7, return FALSE); CRM_CHECK(a_date->has->yeardays, return FALSE); CRM_CHECK(a_date->yeardays > 0, return FALSE); CRM_CHECK(a_date->yeardays <= ydays, return FALSE); CRM_CHECK(a_date->hours >= 0, return FALSE); CRM_CHECK(a_date->hours < 24, return FALSE); CRM_CHECK(a_date->minutes >= 0, return FALSE); CRM_CHECK(a_date->minutes < 60, return FALSE); CRM_CHECK(a_date->seconds >= 0, return FALSE); CRM_CHECK(a_date->seconds <= 60, return FALSE); return TRUE; } #define do_cmp_field(lhs, rhs, field) \ { \ if(lhs->field > rhs->field) { \ crm_debug_2("%s: %d > %d", \ #field, lhs->field, rhs->field); \ return 1; \ } else if(lhs->field < rhs->field) { \ crm_debug_2("%s: %d < %d", \ #field, lhs->field, rhs->field); \ return -1; \ } \ } int compare_date(ha_time_t *lhs, ha_time_t *rhs) { if(lhs == NULL && rhs == NULL) { return 0; } else if(lhs == NULL) { return -1; } else if(rhs == NULL) { return 1; } normalize_time(lhs); normalize_time(rhs); do_cmp_field(lhs->normalized, rhs->normalized, years); do_cmp_field(lhs->normalized, rhs->normalized, yeardays); do_cmp_field(lhs->normalized, rhs->normalized, hours); do_cmp_field(lhs->normalized, rhs->normalized, minutes); do_cmp_field(lhs->normalized, rhs->normalized, seconds); return 0; } ha_time_t * new_ha_date(gboolean set_to_now) { time_t tm_now; ha_time_t *now = NULL; tzset(); crm_malloc0(now, sizeof(ha_time_t)); crm_malloc0(now->has, sizeof(ha_has_time_t)); crm_malloc0(now->offset, sizeof(ha_time_t)); crm_malloc0(now->offset->has, sizeof(ha_has_time_t)); if(set_to_now) { tm_now = time(NULL); now->tm_now = tm_now; ha_set_timet_time(now, &tm_now); } return now; } void free_ha_date(ha_time_t *a_date) { if(a_date == NULL) { return; } free_ha_date(a_date->normalized); free_ha_date(a_date->offset); crm_free(a_date->has); crm_free(a_date); } void log_tm_date(int log_level, struct tm *some_tm) { const char *tzn; #if defined(HAVE_TM_ZONE) tzn = some_tm->tm_zone; #elif defined(HAVE_TZNAME) tzn = tzname[0]; #else tzn = NULL; #endif do_crm_log(log_level, "%.2d/%.2d/%.4d %.2d:%.2d:%.2d %s" " (wday=%d, yday=%d, dst=%d, offset=%ld)", some_tm->tm_mday, some_tm->tm_mon, 1900+some_tm->tm_year, some_tm->tm_hour, some_tm->tm_min, some_tm->tm_sec, tzn, some_tm->tm_wday==0?7:some_tm->tm_wday, 1+some_tm->tm_yday, some_tm->tm_isdst, GMTOFF(some_tm)); } ha_time_t *the_epoch = NULL; #define update_seconds(date, field, multiplier) do { \ before = in_seconds; \ in_seconds += a_date->field; \ in_seconds *= multiplier; \ if(before > in_seconds) { \ crm_crit("Date wrap detected: %s", #field); \ return 0; \ } \ } while(0) unsigned long long date_in_seconds(ha_time_t *a_date) { unsigned long long before = 0; unsigned long long in_seconds = 0; /* normalize_time(a_date); */ update_seconds(a_date, years, 365); update_seconds(a_date, yeardays, 24); update_seconds(a_date, hours, 60); update_seconds(a_date, minutes, 60); update_seconds(a_date, seconds, 1); return in_seconds; } unsigned long long date_in_seconds_since_epoch(ha_time_t *a_date) { ha_time_t *since_epoch = NULL; unsigned long long in_seconds = 0; normalize_time(a_date); if(the_epoch == NULL) { char *EPOCH = crm_strdup("1970-01-01"); the_epoch = parse_date(&EPOCH); normalize_time(the_epoch); crm_free(EPOCH); } since_epoch = subtract_time(a_date, the_epoch); in_seconds = date_in_seconds(since_epoch); free_ha_date(since_epoch); return in_seconds; } diff --git a/lib/common/iso8601_fields.c b/lib/common/iso8601_fields.c index aaf7f8bc81..fe054fbe7f 100644 --- a/lib/common/iso8601_fields.c +++ b/lib/common/iso8601_fields.c @@ -1,404 +1,404 @@ /* * Copyright (C) 2005 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ /* * http://en.wikipedia.org/wiki/ISO_8601 as at 2005-08-01 * */ #include #include #include #include #include #define do_add_field(atime, field, extra, limit, overflow) \ { \ crm_debug_6("Adding %d to %d (limit=%d)", \ extra, atime->field, limit); \ atime->field += extra; \ if(limit > 0) { \ while(limit < atime->field) { \ crm_debug_6("Overflowing: %d", atime->field); \ atime->field -= limit; \ overflow(atime, 1); \ } \ } \ atime->field = atime->field; \ crm_debug_6("Result: %d", atime->field); \ } #define do_add_time_field(atime, field, extra, limit, overflow) \ { \ crm_debug_6("Adding %d to %d (limit=%d)", \ extra, atime->field, limit); \ atime->field += extra; \ if(limit > 0) { \ while(limit <= atime->field) { \ crm_debug_6("Overflowing: %d", atime->field); \ atime->field -= limit; \ overflow(atime, 1); \ } \ } \ atime->field = atime->field; \ crm_debug_6("Result: %d", atime->field); \ } #define do_sub_field(atime, field, extra, limit, overflow) \ { \ crm_debug_6("Subtracting %d from %d (limit=%d)", \ extra, atime->field, limit); \ atime->field -= extra; \ while(atime->field <= 1) { \ crm_debug_6("Underflowing: %d", atime->field); \ atime->field += limit; \ overflow(atime, 1); \ } \ crm_debug_6("Result: %d", atime->field); \ } #define do_sub_time_field(atime, field, extra, limit, overflow) \ { \ crm_debug_6("Subtracting %d from %d (limit=%d)", \ extra, atime->field, limit); \ atime->field -= extra; \ while(atime->field < 0) { \ crm_debug_6("Underflowing: %d", atime->field); \ atime->field += limit; \ overflow(atime, 1); \ } \ crm_debug_6("Result: %d", atime->field); \ } void add_seconds(ha_time_t *a_time, int extra) { if(extra < 0) { sub_seconds(a_time, -extra); } else { do_add_time_field(a_time, seconds, extra, 60, add_minutes); } } void add_minutes(ha_time_t *a_time, int extra) { if(extra < 0) { sub_minutes(a_time, -extra); } else { do_add_time_field(a_time, minutes, extra, 60, add_hours); } } void add_hours(ha_time_t *a_time, int extra) { if(extra < 0) { sub_hours(a_time, -extra); } else { do_add_time_field(a_time, hours, extra, 24, add_days); } } void add_days(ha_time_t *a_time, int extra) { if(a_time->has->days == FALSE) { crm_debug_4("has->days == FALSE"); return; } if(extra < 0) { sub_days(a_time, -extra); } else { do_add_field(a_time, days, extra, days_per_month(a_time->months, a_time->years), add_months); } convert_from_gregorian(a_time); } void add_weekdays(ha_time_t *a_time, int extra) { if(a_time->has->weekdays == FALSE) { crm_debug_4("has->weekdays == FALSE"); return; } if(extra < 0) { sub_weekdays(a_time, -extra); } else { do_add_field(a_time, weekdays, extra, 7, add_weeks); } convert_from_weekdays(a_time); } void add_yeardays(ha_time_t *a_time, int extra) { if(a_time->has->yeardays == FALSE) { crm_debug_4("has->yeardays == FALSE"); return; } if(extra < 0) { sub_yeardays(a_time, -extra); } else { do_add_field(a_time, yeardays, extra, (is_leap_year(a_time->years)?366:365), add_ordinalyears); } convert_from_ordinal(a_time); } void add_weeks(ha_time_t *a_time, int extra) { if(a_time->has->weeks== FALSE) { crm_debug_4("has->weeks == FALSE"); return; } if(extra < 0) { sub_weeks(a_time, -extra); } else { do_add_field(a_time, weeks, extra, weeks_in_year(a_time->years), add_weekyears); } convert_from_weekdays(a_time); } void add_months(ha_time_t *a_time, int extra) { int max = 0; if(a_time->has->months == FALSE) { crm_debug_4("has->months == FALSE"); return; } if(extra < 0) { sub_months(a_time, -extra); } else { do_add_field(a_time, months, extra, 12, add_years); } max = days_per_month(a_time->months, a_time->years); if(a_time->days > max) { a_time->days = max; } convert_from_gregorian(a_time); } void add_years(ha_time_t *a_time, int extra) { if(a_time->has->years == FALSE) { crm_debug_4("has->years == FALSE"); return; } a_time->years += extra; convert_from_gregorian(a_time); } void add_ordinalyears(ha_time_t *a_time, int extra) { if(a_time->has->years == FALSE) { crm_debug_4("has->years == FALSE"); return; } a_time->years += extra; convert_from_ordinal(a_time); } void add_weekyears(ha_time_t *a_time, int extra) { if(a_time->has->weekyears == FALSE) { crm_debug_4("has->weekyears == FALSE"); return; } a_time->weekyears += extra; convert_from_weekdays(a_time); } void sub_seconds(ha_time_t *a_time, int extra) { if(extra < 0) { add_seconds(a_time, -extra); } else { do_sub_time_field(a_time, seconds, extra, 60, sub_minutes); } } void sub_minutes(ha_time_t *a_time, int extra) { if(extra < 0) { add_minutes(a_time, -extra); } else { do_sub_time_field(a_time, minutes, extra, 60, sub_hours); } } void sub_hours(ha_time_t *a_time, int extra) { if(extra < 0) { add_hours(a_time, -extra); } else { do_sub_time_field(a_time, hours, extra, 24, sub_days); } } void sub_days(ha_time_t *a_time, int extra) { if(a_time->has->days == FALSE) { crm_debug_4("has->days == FALSE"); return; } crm_debug_5("Subtracting %d days from %.4d-%.2d-%.2d", extra, a_time->years, a_time->months, a_time->days); if(extra < 0) { add_days(a_time, -extra); } else { do_sub_field(a_time, days, extra, days_per_month(a_time->months, a_time->years), sub_months); } convert_from_gregorian(a_time); } void sub_weekdays(ha_time_t *a_time, int extra) { if(a_time->has->weekdays == FALSE) { crm_debug_4("has->weekdays == FALSE"); return; } crm_debug_5("Subtracting %d days from %.4d-%.2d-%.2d", extra, a_time->years, a_time->months, a_time->days); if(extra < 0) { add_weekdays(a_time, -extra); } else { do_sub_field(a_time, weekdays, extra, 7, sub_weeks); } convert_from_weekdays(a_time); } void sub_yeardays(ha_time_t *a_time, int extra) { if(a_time->has->yeardays == FALSE) { crm_debug_4("has->yeardays == FALSE"); return; } crm_debug_5("Subtracting %d days from %.4d-%.3d", extra, a_time->years, a_time->yeardays); if(extra < 0) { add_yeardays(a_time, -extra); } else { do_sub_field(a_time, yeardays, extra, is_leap_year(a_time->years)?366:365, sub_ordinalyears); } convert_from_ordinal(a_time); } void sub_weeks(ha_time_t *a_time, int extra) { if(a_time->has->weeks == FALSE) { crm_debug_4("has->weeks == FALSE"); return; } if(extra < 0) { add_weeks(a_time, -extra); } else { do_sub_field(a_time, weeks, extra, weeks_in_year(a_time->years), sub_weekyears); } convert_from_weekdays(a_time); } void sub_months(ha_time_t *a_time, int extra) { if(a_time->has->months == FALSE) { crm_debug_4("has->months == FALSE"); return; } if(extra < 0) { add_months(a_time, -extra); } else { do_sub_field(a_time, months, extra, 12, sub_years); } convert_from_gregorian(a_time); } void sub_years(ha_time_t *a_time, int extra) { if(a_time->has->years == FALSE) { crm_debug_4("has->years == FALSE"); return; } a_time->years -= extra; convert_from_gregorian(a_time); } void sub_weekyears(ha_time_t *a_time, int extra) { if(a_time->has->weekyears == FALSE) { crm_debug_4("has->weekyears == FALSE"); return; } a_time->weekyears -= extra; convert_from_weekdays(a_time); } void sub_ordinalyears(ha_time_t *a_time, int extra) { if(a_time->has->years == FALSE) { crm_debug_4("has->years == FALSE"); return; } a_time->years -= extra; convert_from_ordinal(a_time); } diff --git a/lib/common/mainloop.c b/lib/common/mainloop.c old mode 100755 new mode 100644 index 6afd407296..e356929d67 --- a/lib/common/mainloop.c +++ b/lib/common/mainloop.c @@ -1,240 +1,240 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #ifndef _GNU_SOURCE # define _GNU_SOURCE #endif #include #include #include #include #include static gboolean crm_trigger_prepare(GSource* source, gint *timeout) { crm_trigger_t *trig = (crm_trigger_t*)source; return trig->trigger; } static gboolean crm_trigger_check(GSource* source) { crm_trigger_t *trig = (crm_trigger_t*)source; return trig->trigger; } static gboolean crm_trigger_dispatch(GSource *source, GSourceFunc callback, gpointer userdata) { crm_trigger_t *trig = (crm_trigger_t*)source; trig->trigger = FALSE; if(callback) { return callback(trig->user_data); } return TRUE; } static GSourceFuncs crm_trigger_funcs = { crm_trigger_prepare, crm_trigger_check, crm_trigger_dispatch, NULL }; static crm_trigger_t * mainloop_setup_trigger( GSource *source, int priority, gboolean (*dispatch)(gpointer user_data), gpointer userdata) { crm_trigger_t *trigger = NULL; trigger = (crm_trigger_t*) source; trigger->id = 0; trigger->trigger = FALSE; trigger->user_data = userdata; if(dispatch) { g_source_set_callback(source, dispatch, trigger, NULL); } g_source_set_priority(source, priority); g_source_set_can_recurse(source, FALSE); trigger->id = g_source_attach(source, NULL); return trigger; } crm_trigger_t * mainloop_add_trigger( int priority, gboolean (*dispatch)(gpointer user_data), gpointer userdata) { GSource *source = NULL; CRM_ASSERT(sizeof(crm_trigger_t) > sizeof(GSource)); source = g_source_new(&crm_trigger_funcs, sizeof(crm_trigger_t)); CRM_ASSERT(source != NULL); return mainloop_setup_trigger(source, priority, dispatch, userdata); } void mainloop_set_trigger(crm_trigger_t* source) { source->trigger = TRUE; } gboolean mainloop_destroy_trigger(crm_trigger_t* source) { source->trigger = FALSE; if (source->id > 0) { g_source_remove(source->id); } return TRUE; } typedef struct signal_s { crm_trigger_t trigger; /* must be first */ void (*handler)(int sig); int signal; } crm_signal_t; static crm_signal_t *crm_signals[NSIG]; static gboolean crm_signal_dispatch(GSource *source, GSourceFunc callback, gpointer userdata) { crm_signal_t *sig = (crm_signal_t*)source; crm_info("Invoking handler for signal %d: %s", sig->signal, strsignal(sig->signal)); sig->trigger.trigger = FALSE; if(sig->handler) { sig->handler(sig->signal); } return TRUE; } static void mainloop_signal_handler(int sig) { if(sig > 0 && sig < NSIG && crm_signals[sig] != NULL) { mainloop_set_trigger((crm_trigger_t*)crm_signals[sig]); } } static GSourceFuncs crm_signal_funcs = { crm_trigger_prepare, crm_trigger_check, crm_signal_dispatch, NULL }; gboolean crm_signal(int sig, void (*dispatch)(int sig)) { sigset_t mask; struct sigaction sa; struct sigaction old; if(sigemptyset(&mask) < 0) { crm_perror(LOG_ERR, "Call to sigemptyset failed"); return FALSE; } sa.sa_handler = dispatch; sa.sa_flags = SA_RESTART; sa.sa_mask = mask; if(sigaction(sig, &sa, &old) < 0) { crm_perror(LOG_ERR, "Could not install signal handler for signal %d", sig); return FALSE; } return TRUE; } gboolean mainloop_add_signal(int sig, void (*dispatch)(int sig)) { GSource *source = NULL; int priority = G_PRIORITY_HIGH - 1; if(sig == SIGTERM) { /* TERM is higher priority than other signals, * signals are higher priority than other ipc. * Yes, minus: smaller is "higher" */ priority--; } if(sig >= NSIG || sig < 0) { crm_err("Signal %d is out of range", sig); return FALSE; } else if(crm_signals[sig] != NULL) { crm_err("Signal handler for %d is already installed", sig); return FALSE; } CRM_ASSERT(sizeof(crm_signal_t) > sizeof(GSource)); source = g_source_new(&crm_signal_funcs, sizeof(crm_signal_t)); crm_signals[sig] = (crm_signal_t*)mainloop_setup_trigger(source, priority, NULL, NULL); CRM_ASSERT(crm_signals[sig] != NULL); crm_signals[sig]->handler = dispatch; crm_signals[sig]->signal = sig; if(crm_signal(sig, mainloop_signal_handler) == FALSE) { crm_signal_t *tmp = crm_signals[sig]; crm_signals[sig] = NULL; mainloop_destroy_trigger((crm_trigger_t*)tmp); return FALSE; } return TRUE; } gboolean mainloop_destroy_signal(int sig) { crm_signal_t *tmp = NULL; if(sig >= NSIG || sig < 0) { crm_err("Signal %d is out of range", sig); return FALSE; } else if(crm_signal(sig, NULL) == FALSE) { crm_perror(LOG_ERR, "Could not uninstall signal handler for signal %d", sig); return FALSE; } else if(crm_signals[sig] == NULL) { return TRUE; } tmp = crm_signals[sig]; crm_signals[sig] = NULL; mainloop_destroy_trigger((crm_trigger_t*)tmp); return TRUE; } diff --git a/lib/common/membership.c b/lib/common/membership.c index b57ee0d27a..967a5a1dfa 100644 --- a/lib/common/membership.c +++ b/lib/common/membership.c @@ -1,510 +1,510 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #ifndef _GNU_SOURCE # define _GNU_SOURCE #endif #include #include #include #include #include #include #include #include #include #include GHashTable *crm_peer_id_cache = NULL; GHashTable *crm_peer_cache = NULL; unsigned long long crm_peer_seq = 0; gboolean crm_have_quorum = FALSE; gboolean crm_is_member_active(const crm_node_t *node) { if(node && safe_str_eq(node->state, CRM_NODE_MEMBER)) { return TRUE; } return FALSE; } gboolean crm_is_full_member(const crm_node_t *node) { if(crm_is_member_active(node) && (node->processes & crm_proc_crmd)) { return TRUE; } return FALSE; } static gboolean crm_reap_dead_member( gpointer key, gpointer value, gpointer user_data) { crm_node_t *node = value; crm_node_t *search = user_data; if(search != NULL && node->id != search->id) { return FALSE; } else if(crm_is_member_active(value) == FALSE) { crm_notice("Removing %s/%u from the membership list", node->uname, node->id); return TRUE; } return FALSE; } guint reap_crm_member(uint32_t id) { int matches = 0; crm_node_t *node = g_hash_table_lookup(crm_peer_id_cache, GUINT_TO_POINTER(id)); if(node == NULL) { crm_info("Peer %u is unknown", id); } else if(crm_is_member_active(node)) { crm_warn("Peer %u/%s is still active", id, node->uname); } else { if(g_hash_table_remove(crm_peer_id_cache, GUINT_TO_POINTER(id))) { crm_notice("Removed dead peer %u from the uuid cache", id); } else { crm_warn("Peer %u/%s was not removed", id, node->uname); } matches = g_hash_table_foreach_remove( crm_peer_cache, crm_reap_dead_member, node); crm_notice("Removed %d dead peers with id=%u from the membership list", matches, id); } return matches; } static void crm_count_member( gpointer key, gpointer value, gpointer user_data) { guint *count = user_data; if(crm_is_full_member(value)) { *count = *count + 1; } } guint crm_active_members(void) { guint count = 0; g_hash_table_foreach(crm_peer_cache, crm_count_member, &count); return count; } struct peer_count_s { uint32_t peer; guint count; }; static void crm_count_peer( gpointer key, gpointer value, gpointer user_data) { crm_node_t *node = value; struct peer_count_s *search = user_data; if(crm_is_member_active(node) && (node->processes & search->peer)) { search->count = search->count + 1; } } guint crm_active_peers(uint32_t peer) { struct peer_count_s search; search.count = 0; search.peer = peer; g_hash_table_foreach(crm_peer_cache, crm_count_peer, &search); return search.count; } void destroy_crm_node(gpointer data) { crm_node_t *node = data; crm_debug_2("Destroying entry for node %u", node->id); crm_free(node->addr); crm_free(node->uname); crm_free(node->state); crm_free(node->uuid); crm_free(node); } void crm_peer_init(void) { static gboolean initialized = FALSE; if(initialized) { return; } initialized = TRUE; crm_peer_destroy(); if(crm_peer_cache == NULL) { crm_peer_cache = g_hash_table_new_full( g_str_hash, g_str_equal, NULL, destroy_crm_node); } if(crm_peer_id_cache == NULL) { crm_peer_id_cache = g_hash_table_new_full( g_direct_hash, g_direct_equal, NULL, NULL); } } void crm_peer_destroy(void) { if(crm_peer_cache != NULL) { g_hash_table_destroy(crm_peer_cache); crm_peer_cache = NULL; } if(crm_peer_id_cache != NULL) { g_hash_table_destroy(crm_peer_id_cache); crm_peer_id_cache = NULL; } } void (*crm_status_callback)(enum crm_status_type, crm_node_t*, const void*) = NULL; void crm_set_status_callback( void (*dispatch)(enum crm_status_type,crm_node_t*, const void*)) { crm_status_callback = dispatch; } static crm_node_t *crm_new_peer(unsigned int id, const char *uname) { crm_node_t *node = NULL; CRM_CHECK(uname != NULL || id > 0, return NULL); crm_debug("Creating entry for node %s/%u", uname, id); crm_malloc0(node, sizeof(crm_node_t)); node->state = crm_strdup("unknown"); if(id > 0) { node->id = id; crm_info("Node %s now has id: %u", crm_str(uname), id); g_hash_table_replace(crm_peer_id_cache, GUINT_TO_POINTER(node->id), node); } if(uname) { node->uname = crm_strdup(uname); CRM_ASSERT(node->uname != NULL); crm_info("Node %u is now known as %s", id, node->uname); g_hash_table_replace(crm_peer_cache, node->uname, node); if(is_openais_cluster()) { node->uuid = crm_strdup(node->uname); } if(crm_status_callback) { crm_status_callback(crm_status_uname, node, NULL); } } return node; } crm_node_t *crm_get_peer(unsigned int id, const char *uname) { crm_node_t *node = NULL; if(uname != NULL) { node = g_hash_table_lookup(crm_peer_cache, uname); } if(node == NULL && id > 0) { node = g_hash_table_lookup(crm_peer_id_cache, GUINT_TO_POINTER(id)); if(node && node->uname && uname) { crm_crit("Node %s and %s share the same cluster node id '%u'!", node->uname, uname, id); /* NOTE: Calling crm_new_peer() means the entry in * crm_peer_id_cache will point to the new entity */ /* TODO: Replace the old uname instead? */ node = crm_new_peer(id, uname); CRM_ASSERT(node->uname != NULL); } } if(node && uname && node->uname == NULL) { node->uname = crm_strdup(uname); crm_info("Node %u is now known as %s", id, uname); g_hash_table_insert(crm_peer_cache, node->uname, node); if(crm_status_callback) { crm_status_callback(crm_status_uname, node, NULL); } } if(node && id > 0 && id != node->id) { g_hash_table_remove(crm_peer_id_cache, GUINT_TO_POINTER(node->id)); g_hash_table_insert(crm_peer_id_cache, GUINT_TO_POINTER(id), node); node->id = id; crm_info("Node %s now has id: %u", crm_str(uname), id); } return node; } crm_node_t *crm_update_peer( unsigned int id, uint64_t born, uint64_t seen, int32_t votes, uint32_t children, const char *uuid, const char *uname, const char *addr, const char *state) { gboolean state_changed = FALSE; gboolean addr_changed = FALSE; gboolean procs_changed = FALSE; gboolean votes_changed = FALSE; crm_node_t *node = NULL; CRM_CHECK(uname != NULL || id > 0, return NULL); CRM_ASSERT(crm_peer_cache != NULL); CRM_ASSERT(crm_peer_id_cache != NULL); node = crm_get_peer(id, uname); if(node == NULL) { node = crm_new_peer(id, uname); /* do it now so we don't get '(new)' everywhere */ node->votes = votes; node->processes = children; if(addr) { node->addr = crm_strdup(addr); } } if(votes > 0 && node->votes != votes) { votes_changed = TRUE; node->votes = votes; } if(node->uuid == NULL) { if(uuid != NULL) { node->uuid = crm_strdup(uuid); } else if(node->uname != NULL && is_openais_cluster()) { node->uuid = crm_strdup(node->uname); } } if(children > 0 && children != node->processes) { uint32_t last = node->processes; node->processes = children; procs_changed = TRUE; if(crm_status_callback) { crm_status_callback(crm_status_processes, node, &last); } } if(born != 0) { node->born = born; } if(state != NULL && safe_str_neq(node->state, state)) { char *last = node->state; node->state = crm_strdup(state); state_changed = TRUE; if(crm_status_callback) { crm_status_callback(crm_status_nstate, node, last); } crm_free(last); } if(seen != 0 && crm_is_member_active(node)) { node->last_seen = seen; } if(addr != NULL) { if(node->addr == NULL || crm_str_eq(node->addr, addr, FALSE) == FALSE) { addr_changed = TRUE; crm_free(node->addr); node->addr = crm_strdup(addr); } } if(state_changed || addr_changed || votes_changed || procs_changed) { crm_info("Node %s: id=%u state=%s%s addr=%s%s votes=%d%s born="U64T" seen="U64T" proc=%.32x%s", node->uname, node->id, node->state, state_changed?" (new)":"", node->addr, addr_changed?" (new)":"", node->votes, votes_changed?" (new)":"", node->born, node->last_seen, node->processes, procs_changed?" (new)":"" ); } return node; } crm_node_t *crm_update_ais_node(xmlNode *member, long long seq) { const char *id_s = crm_element_value(member, "id"); const char *addr = crm_element_value(member, "addr"); const char *uname = crm_element_value(member, "uname"); const char *state = crm_element_value(member, "state"); const char *born_s = crm_element_value(member, "born"); const char *seen_s = crm_element_value(member, "seen"); const char *votes_s = crm_element_value(member, "votes"); const char *procs_s = crm_element_value(member, "processes"); int votes = crm_int_helper(votes_s, NULL); unsigned int id = crm_int_helper(id_s, NULL); unsigned int procs = crm_int_helper(procs_s, NULL); /* TODO: These values will contain garbage if version < 0.7.1 */ uint64_t born = crm_int_helper(born_s, NULL); uint64_t seen = crm_int_helper(seen_s, NULL); return crm_update_peer(id, born, seen, votes, procs, uname, uname, addr, state); } crm_node_t *crm_update_cman_node(xmlNode *member, long long seq) { const char *id_s = crm_element_value(member, "id"); const char *uname = crm_element_value(member, "uname"); const char *procs_s = crm_element_value(member, "processes"); unsigned int id = crm_int_helper(id_s, NULL); unsigned int procs = crm_int_helper(procs_s, NULL); crm_info("Updating peer processes for %s", crm_str(uname)); return crm_update_peer(id, 0, 0, 0, procs, uname, uname, NULL, NULL); } #if SUPPORT_HEARTBEAT crm_node_t *crm_update_ccm_node( const oc_ev_membership_t *oc, int offset, const char *state, uint64_t seq) { crm_node_t *node = NULL; const char *uuid = NULL; CRM_CHECK(oc->m_array[offset].node_uname != NULL, return NULL); uuid = get_uuid(oc->m_array[offset].node_uname); node = crm_update_peer(oc->m_array[offset].node_id, oc->m_array[offset].node_born_on, seq, -1, 0, uuid, oc->m_array[offset].node_uname, NULL, state); if(safe_str_eq(CRM_NODE_ACTIVE, state)) { /* Heartbeat doesn't send status notifications for nodes that were already part of the cluster */ crm_update_peer_proc( oc->m_array[offset].node_uname, crm_proc_ais, ONLINESTATUS); /* Nor does it send status notifications for processes that were already active */ crm_update_peer_proc( oc->m_array[offset].node_uname, crm_proc_crmd, ONLINESTATUS); } return node; } #endif void crm_update_peer_proc(const char *uname, uint32_t flag, const char *status) { uint32_t last = 0; crm_node_t *node = NULL; gboolean changed = FALSE; CRM_ASSERT(crm_peer_cache != NULL); CRM_CHECK(uname != NULL, return); node = g_hash_table_lookup(crm_peer_cache, uname); CRM_CHECK(node != NULL, crm_err("Could not set %s.%s to %s", uname, peer2text(flag), status); return); last = node->processes; if(safe_str_eq(status, ONLINESTATUS)) { if((node->processes & flag) == 0) { set_bit_inplace(node->processes, flag); changed = TRUE; } } else if(node->processes & flag) { clear_bit_inplace(node->processes, flag); changed = TRUE; } if(changed) { crm_info("%s.%s is now %s", uname, peer2text(flag), status); if(crm_status_callback) { crm_status_callback(crm_status_processes, node, &last); } } } static int crm_terminate_member_common(int nodeid, const char *uname, IPC_Channel *cluster, int *connection) { crm_node_t *node = NULL; gboolean success = FALSE; const char *reason = "Cluster connection failed"; node = crm_get_peer(nodeid, uname); if(cluster == NULL) { reason = "No connection to the cluster"; } else if(node == NULL) { if(uname) { crm_err("Nothing known about node uname=%s", uname); } else if(nodeid > 0) { crm_err("Nothing known about node id=%d", nodeid); } else { crm_err("A node id or uname is required, got %d/%p", nodeid, uname); } return -1; } else { time_t now = time(NULL); char *now_s = crm_itoa(now); if(cluster) { success = attrd_update(cluster, 'U', node->uname, "terminate", now_s, XML_CIB_TAG_STATUS, NULL, NULL); } else { success = attrd_update_no_mainloop(connection, 'U', node->uname, "terminate", now_s, XML_CIB_TAG_STATUS, NULL, NULL); } crm_free(now_s); } if(success) { crm_info("Requested that node %d/%s be terminated", nodeid, node->uname); return 1; } crm_err("Could not terminate node %d/%s: %s", nodeid, node->uname, reason); return 0; } int crm_terminate_member(int nodeid, const char *uname, IPC_Channel *cluster) { if(cluster != NULL) { return crm_terminate_member_common(nodeid, uname, cluster, NULL); } crm_err("Could not terminate node %d/%s: No cluster connection", nodeid, uname); return 0; } int crm_terminate_member_no_mainloop(int nodeid, const char *uname, int *connection) { return crm_terminate_member_common(nodeid, uname, NULL, connection); } diff --git a/lib/common/remote.c b/lib/common/remote.c index 2ed1541fbc..bdbfadbe9a 100644 --- a/lib/common/remote.c +++ b/lib/common/remote.c @@ -1,326 +1,326 @@ /* * Copyright (c) 2008 Andrew Beekhof * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #ifdef HAVE_GNUTLS_GNUTLS_H # undef KEYFILE # include #endif #ifdef HAVE_GNUTLS_GNUTLS_H const int tls_kx_order[] = { GNUTLS_KX_ANON_DH, GNUTLS_KX_DHE_RSA, GNUTLS_KX_DHE_DSS, GNUTLS_KX_RSA, 0 }; gnutls_anon_client_credentials anon_cred_c; gnutls_anon_server_credentials anon_cred_s; static char *cib_send_tls(gnutls_session *session, xmlNode *msg); static char *cib_recv_tls(gnutls_session *session); #endif char *cib_recv_plaintext(int sock); char *cib_send_plaintext(int sock, xmlNode *msg); #ifdef HAVE_GNUTLS_GNUTLS_H gnutls_session *create_tls_session(int csock, int type); gnutls_session * create_tls_session(int csock, int type /* GNUTLS_SERVER, GNUTLS_CLIENT */) { int rc = 0; gnutls_session *session = gnutls_malloc(sizeof(gnutls_session)); gnutls_init(session, type); gnutls_set_default_priority(*session); gnutls_kx_set_priority (*session, tls_kx_order); gnutls_transport_set_ptr(*session, (gnutls_transport_ptr) GINT_TO_POINTER(csock)); switch(type) { case GNUTLS_SERVER: gnutls_credentials_set(*session, GNUTLS_CRD_ANON, anon_cred_s); break; case GNUTLS_CLIENT: gnutls_credentials_set(*session, GNUTLS_CRD_ANON, anon_cred_c); break; } do { rc = gnutls_handshake (*session); } while (rc == GNUTLS_E_INTERRUPTED || rc == GNUTLS_E_AGAIN); if (rc < 0) { crm_err("Handshake failed: %s", gnutls_strerror(rc)); gnutls_deinit(*session); gnutls_free(session); return NULL; } return session; } static char* cib_send_tls(gnutls_session *session, xmlNode *msg) { char *xml_text = NULL; #if 0 const char *name = crm_element_name(msg); if(safe_str_neq(name, "cib_command")) { xmlNodeSetName(msg, "cib_result"); } #endif xml_text = dump_xml_unformatted(msg); if(xml_text != NULL) { char *unsent = xml_text; int len = strlen(xml_text); int rc = 0; len++; /* null char */ crm_debug_3("Message size: %d", len); while(TRUE) { rc = gnutls_record_send (*session, unsent, len); crm_debug("Sent %d bytes", rc); if(rc == GNUTLS_E_INTERRUPTED || rc == GNUTLS_E_AGAIN) { crm_debug("Retry"); } else if(rc < 0) { crm_debug("Connection terminated"); break; } else if(rc < len) { crm_debug("Only sent %d of %d bytes", rc, len); len -= rc; unsent += rc; } else { break; } } } crm_free(xml_text); return NULL; } static char* cib_recv_tls(gnutls_session *session) { char* buf = NULL; int rc = 0; int len = 0; int chunk_size = 1024; if (session == NULL) { return NULL; } crm_malloc0(buf, chunk_size); while(TRUE) { errno = 0; rc = gnutls_record_recv(*session, buf+len, chunk_size); crm_debug_2("Got %d more bytes. errno=%d", rc, errno); if(rc == GNUTLS_E_INTERRUPTED || rc == GNUTLS_E_AGAIN) { crm_debug_2("Retry"); } else if(rc < 0) { crm_perror(LOG_ERR,"Error receiving message: %d", (int)rc); goto bail; } else if(rc == chunk_size) { len += rc; chunk_size *= 2; crm_realloc(buf, len + chunk_size); crm_debug_2("Retry with %d more bytes", (int)chunk_size); CRM_ASSERT(buf != NULL); } else if(buf[len+rc-1] != 0) { crm_debug_2("Last char is %d '%c'", buf[len+rc-1], buf[len+rc-1]); crm_debug_2("Retry with %d more bytes", (int)chunk_size); len += rc; crm_realloc(buf, len + chunk_size); CRM_ASSERT(buf != NULL); } else { crm_debug_2("Got %d more bytes", (int)rc); return buf; } } bail: crm_free(buf); return NULL; } #endif char* cib_send_plaintext(int sock, xmlNode *msg) { char *xml_text = dump_xml_unformatted(msg); if(xml_text != NULL) { int rc = 0; char *unsent = xml_text; int len = strlen(xml_text); len++; /* null char */ crm_debug_3("Message on socket %d: size=%d", sock, len); retry: rc = write (sock, unsent, len); if(rc < 0) { switch(errno) { case EINTR: case EAGAIN: crm_debug_2("Retry"); goto retry; default: crm_perror(LOG_ERR, "Could only write %d of the remaining %d bytes", rc, len); break; } } else if(rc < len) { crm_debug_2("Only sent %d of %d remaining bytes", rc, len); len -= rc; unsent += rc; goto retry; } else { crm_debug_2("Sent %d bytes: %.100s", rc, xml_text); } } crm_free(xml_text); return NULL; } char* cib_recv_plaintext(int sock) { char* buf = NULL; ssize_t rc = 0; ssize_t len = 0; ssize_t chunk_size = 512; crm_malloc0(buf, chunk_size); while(1) { errno = 0; rc = read(sock, buf+len, chunk_size); crm_debug_2("Got %d more bytes. errno=%d", (int)rc, errno); if(errno == EINTR || errno == EAGAIN) { crm_debug_2("Retry: %d", (int)rc); if(rc > 0) { len += rc; crm_realloc(buf, len + chunk_size); CRM_ASSERT(buf != NULL); } } else if(rc < 0) { crm_perror(LOG_ERR,"Error receiving message: %d", (int)rc); goto bail; } else if(rc == chunk_size) { len += rc; chunk_size *= 2; crm_realloc(buf, len + chunk_size); crm_debug_2("Retry with %d more bytes", (int)chunk_size); CRM_ASSERT(buf != NULL); } else if(buf[len+rc-1] != 0) { crm_debug_2("Last char is %d '%c'", buf[len+rc-1], buf[len+rc-1]); crm_debug_2("Retry with %d more bytes", (int)chunk_size); len += rc; crm_realloc(buf, len + chunk_size); CRM_ASSERT(buf != NULL); } else { return buf; } } bail: crm_free(buf); return NULL; } void cib_send_remote_msg(void *session, xmlNode *msg, gboolean encrypted) { if(encrypted) { #ifdef HAVE_GNUTLS_GNUTLS_H cib_send_tls(session, msg); #else CRM_ASSERT(encrypted == FALSE); #endif } else { cib_send_plaintext(GPOINTER_TO_INT(session), msg); } } xmlNode* cib_recv_remote_msg(void *session, gboolean encrypted) { char *reply = NULL; xmlNode *xml = NULL; if(encrypted) { #ifdef HAVE_GNUTLS_GNUTLS_H reply = cib_recv_tls(session); #else CRM_ASSERT(encrypted == FALSE); #endif } else { reply = cib_recv_plaintext(GPOINTER_TO_INT(session)); } if(reply == NULL || strlen(reply) == 0) { crm_err("Empty reply"); } else { xml = string2xml(reply); if(xml == NULL) { crm_err("Couldn't parse: '%.120s'", reply); } } crm_free(reply); return xml; } diff --git a/lib/common/stack.h b/lib/common/stack.h index 0e8b37c8b2..6c2f6bfcf5 100644 --- a/lib/common/stack.h +++ b/lib/common/stack.h @@ -1,60 +1,60 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef CRM_STACK__H #define CRM_STACK__H #if SUPPORT_HEARTBEAT extern ll_cluster_t *heartbeat_cluster; extern gboolean send_ha_message(ll_cluster_t *hb_conn, xmlNode *msg, const char *node, gboolean force_ordered); extern gboolean ha_msg_dispatch(ll_cluster_t *cluster_conn, gpointer user_data); extern gboolean register_heartbeat_conn( ll_cluster_t *hb_cluster, char **uuid, char **uname, void (*hb_message)(HA_Message *msg, void* private_data), void (*hb_destroy)(gpointer user_data)); #endif #if SUPPORT_COROSYNC extern gboolean send_ais_message( xmlNode *msg, gboolean local, const char *node, enum crm_ais_msg_types dest); extern void terminate_ais_connection(void); extern gboolean init_ais_connection( gboolean (*dispatch)(AIS_Message*,char*,int), void (*destroy)(gpointer), char **our_uuid, char **our_uname, int *nodeid); extern gboolean init_ais_connection_once( enum cluster_type_e type, gboolean (*dispatch)(AIS_Message*,char*,int), void (*destroy)(gpointer), char **our_uuid, char **our_uname, int *nodeid); #endif enum crm_quorum_source { crm_quorum_cman, crm_quorum_corosync, crm_quorum_pacemaker, }; extern enum crm_quorum_source get_quorum_source(void); #endif diff --git a/lib/common/utils.c b/lib/common/utils.c index 7a9dc6b9aa..63dae1344f 100644 --- a/lib/common/utils.c +++ b/lib/common/utils.c @@ -1,2587 +1,2587 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #ifndef _GNU_SOURCE # define _GNU_SOURCE #endif #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #if HAVE_HB_CONFIG_H #include /* for HB_COREDIR */ #endif #if HAVE_GLUE_CONFIG_H #include /* for HB_COREDIR */ #endif #ifndef MAXLINE # define MAXLINE 512 #endif #ifdef HAVE_GETOPT_H # include #endif CRM_TRACE_INIT_DATA(common); static uint ref_counter = 0; unsigned int crm_log_level = LOG_INFO; gboolean crm_config_error = FALSE; gboolean crm_config_warning = FALSE; const char *crm_system_name = "unknown"; int node_score_red = 0; int node_score_green = 0; int node_score_yellow = 0; int node_score_infinity = INFINITY; void crm_set_env_options(void); gboolean check_time(const char *value) { if(crm_get_msec(value) < 5000) { return FALSE; } return TRUE; } gboolean check_timer(const char *value) { if(crm_get_msec(value) < 0) { return FALSE; } return TRUE; } gboolean check_boolean(const char *value) { int tmp = FALSE; if(crm_str_to_boolean(value, &tmp) != 1) { return FALSE; } return TRUE; } gboolean check_number(const char *value) { errno = 0; if(value == NULL) { return FALSE; } else if(safe_str_eq(value, MINUS_INFINITY_S)) { } else if(safe_str_eq(value, INFINITY_S)) { } else { crm_int_helper(value, NULL); } if(errno != 0) { return FALSE; } return TRUE; } int char2score(const char *score) { int score_f = 0; if(score == NULL) { } else if(safe_str_eq(score, MINUS_INFINITY_S)) { score_f = -node_score_infinity; } else if(safe_str_eq(score, INFINITY_S)) { score_f = node_score_infinity; } else if(safe_str_eq(score, "+"INFINITY_S)) { score_f = node_score_infinity; } else if(safe_str_eq(score, "red")) { score_f = node_score_red; } else if(safe_str_eq(score, "yellow")) { score_f = node_score_yellow; } else if(safe_str_eq(score, "green")) { score_f = node_score_green; } else { score_f = crm_parse_int(score, NULL); if(score_f > 0 && score_f > node_score_infinity) { score_f = node_score_infinity; } else if(score_f < 0 && score_f < -node_score_infinity) { score_f = -node_score_infinity; } } return score_f; } char * score2char(int score) { if(score >= node_score_infinity) { return crm_strdup(INFINITY_S); } else if(score <= -node_score_infinity) { return crm_strdup("-"INFINITY_S); } return crm_itoa(score); } const char * cluster_option(GHashTable* options, gboolean(*validate)(const char*), const char *name, const char *old_name, const char *def_value) { const char *value = NULL; CRM_ASSERT(name != NULL); if(options != NULL) { value = g_hash_table_lookup(options, name); } if(value == NULL && old_name && options != NULL) { value = g_hash_table_lookup(options, old_name); if(value != NULL) { crm_config_warn("Using deprecated name '%s' for" " cluster option '%s'", old_name, name); g_hash_table_insert( options, crm_strdup(name), crm_strdup(value)); value = g_hash_table_lookup(options, old_name); } } if(value == NULL) { crm_debug_2("Using default value '%s' for cluster option '%s'", def_value, name); if(options == NULL) { return def_value; } g_hash_table_insert( options, crm_strdup(name), crm_strdup(def_value)); value = g_hash_table_lookup(options, name); } if(validate && validate(value) == FALSE) { crm_config_err("Value '%s' for cluster option '%s' is invalid." " Defaulting to %s", value, name, def_value); g_hash_table_replace(options, crm_strdup(name), crm_strdup(def_value)); value = g_hash_table_lookup(options, name); } return value; } const char * get_cluster_pref(GHashTable *options, pe_cluster_option *option_list, int len, const char *name) { int lpc = 0; const char *value = NULL; gboolean found = FALSE; for(lpc = 0; lpc < len; lpc++) { if(safe_str_eq(name, option_list[lpc].name)) { found = TRUE; value = cluster_option(options, option_list[lpc].is_valid, option_list[lpc].name, option_list[lpc].alt_name, option_list[lpc].default_value); } } CRM_CHECK(found, crm_err("No option named: %s", name)); CRM_ASSERT(value != NULL); return value; } void config_metadata(const char *name, const char *version, const char *desc_short, const char *desc_long, pe_cluster_option *option_list, int len) { int lpc = 0; fprintf(stdout, "" "\n" "\n" " %s\n" " %s\n" " %s\n" " \n", name, version, desc_long, desc_short); for(lpc = 0; lpc < len; lpc++) { if(option_list[lpc].description_long == NULL && option_list[lpc].description_short == NULL) { continue; } fprintf(stdout, " \n" " %s\n" " \n" " %s%s%s\n" " \n", option_list[lpc].name, option_list[lpc].description_short, option_list[lpc].type, option_list[lpc].default_value, option_list[lpc].description_long?option_list[lpc].description_long:option_list[lpc].description_short, option_list[lpc].values?" Allowed values: ":"", option_list[lpc].values?option_list[lpc].values:""); } fprintf(stdout, " \n\n"); } void verify_all_options(GHashTable *options, pe_cluster_option *option_list, int len) { int lpc = 0; for(lpc = 0; lpc < len; lpc++) { cluster_option(options, option_list[lpc].is_valid, option_list[lpc].name, option_list[lpc].alt_name, option_list[lpc].default_value); } } char * generateReference(const char *custom1, const char *custom2) { const char *local_cust1 = custom1; const char *local_cust2 = custom2; int reference_len = 4; char *since_epoch = NULL; reference_len += 20; /* too big */ reference_len += 40; /* too big */ if(local_cust1 == NULL) { local_cust1 = "_empty_"; } reference_len += strlen(local_cust1); if(local_cust2 == NULL) { local_cust2 = "_empty_"; } reference_len += strlen(local_cust2); crm_malloc0(since_epoch, reference_len); if(since_epoch != NULL) { sprintf(since_epoch, "%s-%s-%ld-%u", local_cust1, local_cust2, (unsigned long)time(NULL), ref_counter++); } return since_epoch; } gboolean decodeNVpair(const char *srcstring, char separator, char **name, char **value) { int lpc = 0; int len = 0; const char *temp = NULL; CRM_ASSERT(name != NULL && value != NULL); *name = NULL; *value = NULL; crm_debug_4("Attempting to decode: [%s]", srcstring); if (srcstring != NULL) { len = strlen(srcstring); while(lpc <= len) { if (srcstring[lpc] == separator) { crm_malloc0(*name, lpc+1); if(*name == NULL) { break; /* and return FALSE */ } strncpy(*name, srcstring, lpc); (*name)[lpc] = '\0'; /* this sucks but as the strtok manpage says.. * it *is* a bug */ len = len-lpc; len--; if(len <= 0) { *value = NULL; } else { crm_malloc0(*value, len+1); if(*value == NULL) { crm_free(*name); break; /* and return FALSE */ } temp = srcstring+lpc+1; strncpy(*value, temp, len); (*value)[len] = '\0'; } return TRUE; } lpc++; } } if(*name != NULL) { crm_free(*name); } *name = NULL; *value = NULL; return FALSE; } char * crm_concat(const char *prefix, const char *suffix, char join) { int len = 0; char *new_str = NULL; CRM_ASSERT(prefix != NULL); CRM_ASSERT(suffix != NULL); len = strlen(prefix) + strlen(suffix) + 2; crm_malloc0(new_str, (len)); sprintf(new_str, "%s%c%s", prefix, join, suffix); new_str[len-1] = 0; return new_str; } char * generate_hash_key(const char *crm_msg_reference, const char *sys) { char *hash_key = crm_concat(sys?sys:"none", crm_msg_reference, '_'); crm_debug_3("created hash key: (%s)", hash_key); return hash_key; } char * generate_hash_value(const char *src_node, const char *src_subsys) { char *hash_value = NULL; if (src_node == NULL || src_subsys == NULL) { return NULL; } if (strcasecmp(CRM_SYSTEM_DC, src_subsys) == 0) { hash_value = crm_strdup(src_subsys); CRM_ASSERT(hash_value); return hash_value; } hash_value = crm_concat(src_node, src_subsys, '_'); crm_info("created hash value: (%s)", hash_value); return hash_value; } char * crm_itoa(int an_int) { int len = 32; char *buffer = NULL; crm_malloc0(buffer, (len+1)); if(buffer != NULL) { snprintf(buffer, len, "%d", an_int); } return buffer; } extern int LogToLoggingDaemon(int priority, const char * buf, int bstrlen, gboolean use_pri_str); #ifdef HAVE_G_LOG_SET_DEFAULT_HANDLER GLogFunc glib_log_default; static void crm_glib_handler(const gchar *log_domain, GLogLevelFlags flags, const gchar *message, gpointer user_data) { int log_level = LOG_WARNING; GLogLevelFlags msg_level = (flags & G_LOG_LEVEL_MASK); switch(msg_level) { case G_LOG_LEVEL_CRITICAL: /* log and record how we got here */ crm_abort(__FILE__,__PRETTY_FUNCTION__,__LINE__, message, TRUE, TRUE); return; case G_LOG_LEVEL_ERROR: log_level = LOG_ERR; break; case G_LOG_LEVEL_MESSAGE: log_level = LOG_NOTICE; break; case G_LOG_LEVEL_INFO: log_level = LOG_INFO; break; case G_LOG_LEVEL_DEBUG: log_level = LOG_DEBUG; break; case G_LOG_LEVEL_WARNING: case G_LOG_FLAG_RECURSION: case G_LOG_FLAG_FATAL: case G_LOG_LEVEL_MASK: log_level = LOG_WARNING; break; } do_crm_log(log_level, "%s: %s", log_domain, message); } #endif void crm_log_deinit(void) { #ifdef HAVE_G_LOG_SET_DEFAULT_HANDLER g_log_set_default_handler(glib_log_default, NULL); #endif } gboolean crm_log_init( const char *entity, int level, gboolean coredir, gboolean to_stderr, int argc, char **argv) { return crm_log_init_worker(entity, level, coredir, to_stderr, argc, argv, FALSE); } gboolean crm_log_init_quiet( const char *entity, int level, gboolean coredir, gboolean to_stderr, int argc, char **argv) { return crm_log_init_worker(entity, level, coredir, to_stderr, argc, argv, TRUE); } #if SUPPORT_TRACING static int update_trace_data(struct _pcmk_ddebug_query *query, struct _pcmk_ddebug *start, struct _pcmk_ddebug *stop) { int lpc = 0; unsigned nfound = 0; struct _pcmk_ddebug *dp; const char *match = "unknown"; CRM_ASSERT(stop != NULL); CRM_ASSERT(start != NULL); for (dp = start; dp != stop; dp++) { gboolean bump = FALSE; lpc++; /* fprintf(stderr, "checking: %-12s %20s:%u fmt:%s\n", */ /* dp->function, dp->filename, dp->lineno, dp->format); */ if (query->functions && strstr(query->functions, dp->function) != NULL) { match = "function"; bump = TRUE; } if (query->files && strstr(query->files, dp->filename) != NULL) { match = "file"; bump = TRUE; } if (query->formats && strstr(query->formats, dp->format) != NULL) { match = "format"; bump = TRUE; } if(bump) { nfound++; dp->bump = LOG_NOTICE; do_crm_log_always(LOG_INFO, "Detected '%s' match: %-12s %20s:%u fmt:%s", match, dp->function, dp->filename, dp->lineno, dp->format); } } query->total += lpc; query->matches += nfound; return nfound; } #define _GNU_SOURCE #include #include #include static int ddebug_callback(struct dl_phdr_info *info, size_t size, void *data) { if(strlen(info->dlpi_name) > 0) { struct _pcmk_ddebug_query *query = data; void *handle; void *start; void *stop; char *error; handle = dlopen (info->dlpi_name, RTLD_LAZY); error = dlerror(); if (!handle || error) { crm_err("%s", error); if(handle) { dlclose(handle); } return 0; } start = dlsym(handle, "__start___verbose"); error = dlerror(); if (error) { goto done; } stop = dlsym(handle, "__stop___verbose"); error = dlerror(); if (error) { goto done; } else { unsigned long int len = (unsigned long int)stop - (unsigned long int)start; crm_info("Checking for query matches in %lu trace symbols from: %s (offset: %p)", len/sizeof(struct _pcmk_ddebug), info->dlpi_name, start); update_trace_data(query, start, stop); } done: dlclose(handle); } return 0; } #endif void update_all_trace_data(void) { #if SUPPORT_TRACING gboolean search = FALSE; const char *env_value = NULL; struct _pcmk_ddebug_query query; memset(&query, 0, sizeof(struct _pcmk_ddebug_query)); env_value = getenv("PCMK_trace_files"); if(env_value) { search = TRUE; query.files = env_value; } env_value = getenv("PCMK_trace_formats"); if(env_value) { search = TRUE; query.formats = env_value; } env_value = getenv("PCMK_trace_functions"); if(env_value) { search = TRUE; query.functions = env_value; } if(search) { update_trace_data(&query, __start___verbose, __stop___verbose); dl_iterate_phdr(ddebug_callback, &query); if(query.matches == 0) { do_crm_log_always(LOG_DEBUG, "no matches for query: {fn='%s', file='%s', fmt='%s'} in %llu entries", crm_str(query.functions), crm_str(query.files), crm_str(query.formats), query.total); } else { do_crm_log_always(LOG_INFO, "%llu matches for query: {fn='%s', file='%s', fmt='%s'} in %llu entries", query.matches, crm_str(query.functions), crm_str(query.files), crm_str(query.formats), query.total); } } /* return query.matches; */ #endif } gboolean crm_log_init_worker( const char *entity, int level, gboolean coredir, gboolean to_stderr, int argc, char **argv, gboolean quiet) { /* Redirect messages from glib functions to our handler */ /* cl_malloc_forced_for_glib(); */ #ifdef HAVE_G_LOG_SET_DEFAULT_HANDLER glib_log_default = g_log_set_default_handler(crm_glib_handler, NULL); #endif /* and for good measure... - this enum is a bit field (!) */ g_log_set_always_fatal((GLogLevelFlags)0); /*value out of range*/ if(entity) { crm_system_name = entity; } else if(argc > 0 && argv != NULL) { crm_system_name = basename(argv[0]); if(strstr(crm_system_name, "lt-") == crm_system_name) { crm_system_name += 3; } } else if(crm_system_name == NULL) { crm_system_name = "Unknown"; } setenv("PCMK_service", crm_system_name, 1); cl_log_set_entity(crm_system_name); set_crm_log_level(level); crm_set_env_options(); if(quiet) { /* Nuke any syslog activity */ unsetenv("HA_logfacility"); } else { cl_log_args(argc, argv); if(getenv("HA_logfacility") == NULL) { /* Set a default */ cl_log_set_facility(HA_LOG_FACILITY); } /* else: picked up by crm_set_env_options() */ } cl_log_enable_stderr(to_stderr); if(coredir) { const char *user = getenv("USER"); if(user != NULL && safe_str_neq(user, "root") && safe_str_neq(user, CRM_DAEMON_USER)) { crm_info("Not switching to corefile directory for %s", user); coredir = FALSE; } } if(coredir) { int user = getuid(); const char *base = HA_COREDIR; struct passwd *pwent = getpwuid(user); if (pwent == NULL) { crm_perror(LOG_ERR, "Cannot get name for uid: %d", user); } else if(safe_str_neq(pwent->pw_name, "root") && safe_str_neq(pwent->pw_name, "nobody") && safe_str_neq(pwent->pw_name, CRM_DAEMON_USER)) { crm_debug("Don't change active directory for regular user: %s", pwent->pw_name); } else if (chdir(base) < 0) { crm_perror(LOG_ERR, "Cannot change active directory to %s", base); } else if (chdir(pwent->pw_name) < 0) { crm_perror(LOG_ERR, "Cannot change active directory to %s/%s", base, pwent->pw_name); } else { crm_info("Changed active directory to %s/%s", base, pwent->pw_name); #if 0 { char path[512]; snprintf(path, 512, "%s-%d", crm_system_name, getpid()); mkdir(path, 0750); chdir(path); crm_info("Changed active directory to %s/%s/%s", base, pwent->pw_name, path); } #endif } } update_all_trace_data(); crm_signal(DEBUG_INC, alter_debug); crm_signal(DEBUG_DEC, alter_debug); return TRUE; } /* returns the old value */ unsigned int set_crm_log_level(unsigned int level) { unsigned int old = crm_log_level; crm_log_level = level; return old; } unsigned int get_crm_log_level(void) { return crm_log_level; } static int crm_version_helper(const char *text, char **end_text) { int atoi_result = -1; CRM_ASSERT(end_text != NULL); errno = 0; if(text != NULL && text[0] != 0) { atoi_result = (int)strtol(text, end_text, 10); if(errno == EINVAL) { crm_err("Conversion of '%s' %c failed", text, text[0]); atoi_result = -1; } } return atoi_result; } /* * version1 < version2 : -1 * version1 = version2 : 0 * version1 > version2 : 1 */ int compare_version(const char *version1, const char *version2) { int rc = 0; int lpc = 0; char *ver1_copy = NULL, *ver2_copy = NULL; char *rest1 = NULL, *rest2 = NULL; if(version1 == NULL && version2 == NULL) { return 0; } else if(version1 == NULL) { return -1; } else if(version2 == NULL) { return 1; } ver1_copy = crm_strdup(version1); ver2_copy = crm_strdup(version2); rest1 = ver1_copy; rest2 = ver2_copy; while(1) { int digit1 = 0; int digit2 = 0; lpc++; if(rest1 == rest2) { break; } if(rest1 != NULL) { digit1 = crm_version_helper(rest1, &rest1); } if(rest2 != NULL) { digit2 = crm_version_helper(rest2, &rest2); } if(digit1 < digit2){ rc = -1; crm_debug_5("%d < %d", digit1, digit2); break; } else if (digit1 > digit2){ rc = 1; crm_debug_5("%d > %d", digit1, digit2); break; } if(rest1 != NULL && rest1[0] == '.') { rest1++; } if(rest1 != NULL && rest1[0] == 0) { rest1 = NULL; } if(rest2 != NULL && rest2[0] == '.') { rest2++; } if(rest2 != NULL && rest2[0] == 0) { rest2 = NULL; } } crm_free(ver1_copy); crm_free(ver2_copy); if(rc == 0) { crm_debug_3("%s == %s (%d)", version1, version2, lpc); } else if(rc < 0) { crm_debug_3("%s < %s (%d)", version1, version2, lpc); } else if(rc > 0) { crm_debug_3("%s > %s (%d)", version1, version2, lpc); } return rc; } gboolean do_stderr = FALSE; void alter_debug(int nsig) { crm_signal(DEBUG_INC, alter_debug); crm_signal(DEBUG_DEC, alter_debug); switch(nsig) { case DEBUG_INC: if (crm_log_level < 100) { crm_log_level++; } break; case DEBUG_DEC: if (crm_log_level > 0) { crm_log_level--; } break; default: fprintf(stderr, "Unknown signal %d\n", nsig); cl_log(LOG_ERR, "Unknown signal %d", nsig); break; } } void g_hash_destroy_str(gpointer data) { crm_free(data); } #include /* #include */ /* #include */ long long crm_int_helper(const char *text, char **end_text) { long long result = -1; char *local_end_text = NULL; int saved_errno = 0; errno = 0; if(text != NULL) { #ifdef ANSI_ONLY if(end_text != NULL) { result = strtol(text, end_text, 10); } else { result = strtol(text, &local_end_text, 10); } #else if(end_text != NULL) { result = strtoll(text, end_text, 10); } else { result = strtoll(text, &local_end_text, 10); } #endif saved_errno = errno; /* CRM_CHECK(errno != EINVAL); */ if(errno == EINVAL) { crm_err("Conversion of %s failed", text); result = -1; } else if(errno == ERANGE) { crm_err("Conversion of %s was clipped: %lld", text, result); } else if(errno != 0) { crm_perror(LOG_ERR,"Conversion of %s failed:", text); } if(local_end_text != NULL && local_end_text[0] != '\0') { crm_err("Characters left over after parsing '%s': '%s'", text, local_end_text); } errno = saved_errno; } return result; } int crm_parse_int(const char *text, const char *default_text) { int atoi_result = -1; if(text != NULL) { atoi_result = crm_int_helper(text, NULL); if(errno == 0) { return atoi_result; } } if(default_text != NULL) { atoi_result = crm_int_helper(default_text, NULL); if(errno == 0) { return atoi_result; } } else { crm_err("No default conversion value supplied"); } return -1; } gboolean safe_str_neq(const char *a, const char *b) { if(a == b) { return FALSE; } else if(a==NULL || b==NULL) { return TRUE; } else if(strcasecmp(a, b) == 0) { return FALSE; } return TRUE; } char * crm_strdup_fn(const char *src, const char *file, const char *fn, int line) { char *dup = NULL; CRM_CHECK(src != NULL, crm_err("Could not perform copy at %s:%d (%s)", file, line, fn); return NULL); crm_malloc0(dup, strlen(src) + 1); return strcpy(dup, src); } #define ENV_PREFIX "HA_" void crm_set_env_options(void) { cl_inherit_logging_environment(500); cl_log_set_logd_channel_source(NULL, NULL); if(debug_level > 0 && (debug_level+LOG_INFO) > (int)crm_log_level) { set_crm_log_level(LOG_INFO + debug_level); } } gboolean crm_is_true(const char * s) { gboolean ret = FALSE; if(s != NULL) { crm_str_to_boolean(s, &ret); } return ret; } int crm_str_to_boolean(const char * s, int * ret) { if(s == NULL) { return -1; } else if (strcasecmp(s, "true") == 0 || strcasecmp(s, "on") == 0 || strcasecmp(s, "yes") == 0 || strcasecmp(s, "y") == 0 || strcasecmp(s, "1") == 0){ *ret = TRUE; return 1; } else if (strcasecmp(s, "false") == 0 || strcasecmp(s, "off") == 0 || strcasecmp(s, "no") == 0 || strcasecmp(s, "n") == 0 || strcasecmp(s, "0") == 0){ *ret = FALSE; return 1; } return -1; } #ifndef NUMCHARS # define NUMCHARS "0123456789." #endif #ifndef WHITESPACE # define WHITESPACE " \t\n\r\f" #endif unsigned long long crm_get_interval(const char * input) { ha_time_t *interval = NULL; char *input_copy = crm_strdup(input); char *input_copy_mutable = input_copy; unsigned long long msec = 0; if(input == NULL) { return 0; } else if(input[0] != 'P') { crm_free(input_copy); return crm_get_msec(input); } interval = parse_time_duration(&input_copy_mutable); msec = date_in_seconds(interval); free_ha_date(interval); crm_free(input_copy); return msec * 1000; } long long crm_get_msec(const char * input) { const char *cp = input; const char *units; long long multiplier = 1000; long long divisor = 1; long long msec = -1; char *end_text = NULL; /* double dret; */ if(input == NULL) { return msec; } cp += strspn(cp, WHITESPACE); units = cp + strspn(cp, NUMCHARS); units += strspn(units, WHITESPACE); if (strchr(NUMCHARS, *cp) == NULL) { return msec; } if (strncasecmp(units, "ms", 2) == 0 || strncasecmp(units, "msec", 4) == 0) { multiplier = 1; divisor = 1; } else if (strncasecmp(units, "us", 2) == 0 || strncasecmp(units, "usec", 4) == 0) { multiplier = 1; divisor = 1000; } else if (strncasecmp(units, "s", 1) == 0 || strncasecmp(units, "sec", 3) == 0) { multiplier = 1000; divisor = 1; } else if (strncasecmp(units, "m", 1) == 0 || strncasecmp(units, "min", 3) == 0) { multiplier = 60*1000; divisor = 1; } else if (strncasecmp(units, "h", 1) == 0 || strncasecmp(units, "hr", 2) == 0) { multiplier = 60*60*1000; divisor = 1; } else if (*units != EOS && *units != '\n' && *units != '\r') { return msec; } msec = crm_int_helper(cp, &end_text); msec *= multiplier; msec /= divisor; /* dret += 0.5; */ /* msec = (long long)dret; */ return msec; } const char * op_status2text(op_status_t status) { switch(status) { case LRM_OP_PENDING: return "pending"; break; case LRM_OP_DONE: return "complete"; break; case LRM_OP_ERROR: return "Error"; break; case LRM_OP_TIMEOUT: return "Timed Out"; break; case LRM_OP_NOTSUPPORTED: return "NOT SUPPORTED"; break; case LRM_OP_CANCELLED: return "Cancelled"; break; } crm_err("Unknown status: %d", status); return "UNKNOWN!"; } char * generate_op_key(const char *rsc_id, const char *op_type, int interval) { int len = 35; char *op_id = NULL; CRM_CHECK(rsc_id != NULL, return NULL); CRM_CHECK(op_type != NULL, return NULL); len += strlen(op_type); len += strlen(rsc_id); crm_malloc0(op_id, len); CRM_CHECK(op_id != NULL, return NULL); sprintf(op_id, "%s_%s_%d", rsc_id, op_type, interval); return op_id; } gboolean parse_op_key(const char *key, char **rsc_id, char **op_type, int *interval) { char *mutable_key = NULL; char *mutable_key_ptr = NULL; int len = 0, offset = 0, ch = 0; CRM_CHECK(key != NULL, return FALSE); *interval = 0; len = strlen(key); offset = len-1; crm_debug_3("Source: %s", key); while(offset > 0 && isdigit(key[offset])) { int digits = len-offset; ch = key[offset] - '0'; CRM_CHECK(ch < 10, return FALSE); CRM_CHECK(ch >= 0, return FALSE); while(digits > 1) { digits--; ch = ch * 10; } *interval += ch; offset--; } crm_debug_3(" Interval: %d", *interval); CRM_CHECK(key[offset] == '_', return FALSE); mutable_key = crm_strdup(key); mutable_key_ptr = mutable_key_ptr; mutable_key[offset] = 0; offset--; while(offset > 0 && key[offset] != '_') { offset--; } CRM_CHECK(key[offset] == '_', crm_free(mutable_key); return FALSE); mutable_key_ptr = mutable_key+offset+1; crm_debug_3(" Action: %s", mutable_key_ptr); *op_type = crm_strdup(mutable_key_ptr); mutable_key[offset] = 0; offset--; CRM_CHECK(mutable_key != mutable_key_ptr, crm_free(mutable_key); return FALSE); crm_debug_3(" Resource: %s", mutable_key); *rsc_id = crm_strdup(mutable_key); crm_free(mutable_key); return TRUE; } char * generate_notify_key(const char *rsc_id, const char *notify_type, const char *op_type) { int len = 12; char *op_id = NULL; CRM_CHECK(rsc_id != NULL, return NULL); CRM_CHECK(op_type != NULL, return NULL); CRM_CHECK(notify_type != NULL, return NULL); len += strlen(op_type); len += strlen(rsc_id); len += strlen(notify_type); crm_malloc0(op_id, len); if(op_id != NULL) { sprintf(op_id, "%s_%s_notify_%s_0", rsc_id, notify_type, op_type); } return op_id; } char * generate_transition_magic_v202(const char *transition_key, int op_status) { int len = 80; char *fail_state = NULL; CRM_CHECK(transition_key != NULL, return NULL); len += strlen(transition_key); crm_malloc0(fail_state, len); if(fail_state != NULL) { snprintf(fail_state, len, "%d:%s", op_status,transition_key); } return fail_state; } char * generate_transition_magic(const char *transition_key, int op_status, int op_rc) { int len = 80; char *fail_state = NULL; CRM_CHECK(transition_key != NULL, return NULL); len += strlen(transition_key); crm_malloc0(fail_state, len); if(fail_state != NULL) { snprintf(fail_state, len, "%d:%d;%s", op_status, op_rc, transition_key); } return fail_state; } gboolean decode_transition_magic( const char *magic, char **uuid, int *transition_id, int *action_id, int *op_status, int *op_rc, int *target_rc) { int res = 0; char *key = NULL; gboolean result = TRUE; CRM_CHECK(magic != NULL, return FALSE); CRM_CHECK(op_rc != NULL, return FALSE); CRM_CHECK(op_status != NULL, return FALSE); crm_malloc0(key, strlen(magic)+1); res = sscanf(magic, "%d:%d;%s", op_status, op_rc, key); if(res != 3) { crm_crit("Only found %d items in: %s", res, magic); result = FALSE; goto bail; } CRM_CHECK(decode_transition_key(key, uuid, transition_id, action_id, target_rc), result = FALSE; goto bail; ); bail: crm_free(key); return result; } char * generate_transition_key(int transition_id, int action_id, int target_rc, const char *node) { int len = 40; char *fail_state = NULL; CRM_CHECK(node != NULL, return NULL); len += strlen(node); crm_malloc0(fail_state, len); if(fail_state != NULL) { snprintf(fail_state, len, "%d:%d:%d:%s", action_id, transition_id, target_rc, node); } return fail_state; } gboolean decode_transition_key( const char *key, char **uuid, int *transition_id, int *action_id, int *target_rc) { int res = 0; gboolean done = FALSE; CRM_CHECK(uuid != NULL, return FALSE); CRM_CHECK(target_rc != NULL, return FALSE); CRM_CHECK(action_id != NULL, return FALSE); CRM_CHECK(transition_id != NULL, return FALSE); crm_malloc0(*uuid, strlen(key)+1); res = sscanf(key, "%d:%d:%d:%s", action_id, transition_id, target_rc, *uuid); switch(res) { case 4: /* Post Pacemaker 0.6 */ done = TRUE; break; case 3: case 2: /* this can be tricky - the UUID might start with an integer */ /* Until Pacemaker 0.6 */ done = TRUE; *target_rc = -1; res = sscanf(key, "%d:%d:%s", action_id, transition_id, *uuid); if(res == 2) { *action_id = -1; res = sscanf(key, "%d:%s", transition_id, *uuid); CRM_CHECK(res == 2, done = FALSE); } else if(res != 3) { CRM_CHECK(res == 3, done = FALSE); } break; case 1: /* Prior to Heartbeat 2.0.8 */ done = TRUE; *action_id = -1; *target_rc = -1; res = sscanf(key, "%d:%s", transition_id, *uuid); CRM_CHECK(res == 2, done = FALSE); break; default: crm_crit("Unhandled sscanf result (%d) for %s", res, key); } if(strlen(*uuid) != 36) { crm_warn("Bad UUID (%s) in sscanf result (%d) for %s", *uuid, res, key); } if(done == FALSE) { crm_err("Cannot decode '%s' rc=%d", key, res); crm_free(*uuid); *uuid = NULL; *target_rc = -1; *action_id = -1; *transition_id = -1; } return done; } void filter_action_parameters(xmlNode *param_set, const char *version) { char *key = NULL; char *timeout = NULL; char *interval = NULL; const char *attr_filter[] = { XML_ATTR_ID, XML_ATTR_CRM_VERSION, XML_LRM_ATTR_OP_DIGEST, }; gboolean do_delete = FALSE; int lpc = 0; static int meta_len = 0; if(meta_len == 0) { meta_len = strlen(CRM_META); } if(param_set == NULL) { return; } for(lpc = 0; lpc < DIMOF(attr_filter); lpc++) { xml_remove_prop(param_set, attr_filter[lpc]); } key = crm_meta_name(XML_LRM_ATTR_INTERVAL); interval = crm_element_value_copy(param_set, key); crm_free(key); key = crm_meta_name(XML_ATTR_TIMEOUT); timeout = crm_element_value_copy(param_set, key); xml_prop_name_iter(param_set, prop_name, do_delete = FALSE; if(strncasecmp(prop_name, CRM_META, meta_len) == 0) { do_delete = TRUE; } if(do_delete) { xml_remove_prop(param_set, prop_name); } ); if(crm_get_msec(interval) > 0 && compare_version(version, "1.0.8") > 0) { /* Re-instate the operation's timeout value */ if(timeout != NULL) { crm_xml_add(param_set, key, timeout); } } crm_free(interval); crm_free(timeout); crm_free(key); } void filter_reload_parameters(xmlNode *param_set, const char *restart_string) { int len = 0; char *name = NULL; char *match = NULL; if(param_set == NULL) { return; } xml_prop_name_iter(param_set, prop_name, name = NULL; len = strlen(prop_name) + 3; crm_malloc0(name, len); sprintf(name, " %s ", prop_name); name[len-1] = 0; match = strstr(restart_string, name); if(match == NULL) { crm_debug_3("%s not found in %s", prop_name, restart_string); xml_remove_prop(param_set, prop_name); } crm_free(name); ); } void crm_abort(const char *file, const char *function, int line, const char *assert_condition, gboolean do_core, gboolean do_fork) { int rc = 0; int pid = 0; int status = 0; if(do_core == FALSE) { do_crm_log(LOG_ERR, "%s: Triggered assert at %s:%d : %s", function, file, line, assert_condition); return; } else if(do_fork) { pid=fork(); } else { do_crm_log(LOG_ERR, "%s: Triggered fatal assert at %s:%d : %s", function, file, line, assert_condition); } switch(pid) { case -1: do_crm_log(LOG_CRIT, "%s: Cannot create core for non-fatal assert at %s:%d : %s", function, file, line, assert_condition); return; default: /* Parent */ do_crm_log(LOG_ERR, "%s: Forked child %d to record non-fatal assert at %s:%d : %s", function, pid, file, line, assert_condition); do { rc = waitpid(pid, &status, 0); if(rc < 0 && errno != EINTR) { crm_perror(LOG_ERR,"%s: Cannot wait on forked child %d", function, pid); } } while(rc < 0 && errno == EINTR); return; case 0: /* Child */ abort(); break; } } char * generate_series_filename( const char *directory, const char *series, int sequence, gboolean bzip) { int len = 40; char *filename = NULL; const char *ext = "raw"; CRM_CHECK(directory != NULL, return NULL); CRM_CHECK(series != NULL, return NULL); len += strlen(directory); len += strlen(series); crm_malloc0(filename, len); CRM_CHECK(filename != NULL, return NULL); if(bzip) { ext = "bz2"; } sprintf(filename, "%s/%s-%d.%s", directory, series, sequence, ext); return filename; } int get_last_sequence(const char *directory, const char *series) { FILE *file_strm = NULL; int start = 0, length = 0, read_len = 0; char *series_file = NULL; char *buffer = NULL; int seq = 0; int len = 36; CRM_CHECK(directory != NULL, return 0); CRM_CHECK(series != NULL, return 0); len += strlen(directory); len += strlen(series); crm_malloc0(series_file, len); CRM_CHECK(series_file != NULL, return 0); sprintf(series_file, "%s/%s.last", directory, series); file_strm = fopen(series_file, "r"); if(file_strm == NULL) { crm_debug("Series file %s does not exist", series_file); crm_free(series_file); return 0; } /* see how big the file is */ start = ftell(file_strm); fseek(file_strm, 0L, SEEK_END); length = ftell(file_strm); fseek(file_strm, 0L, start); CRM_ASSERT(length >= 0); CRM_ASSERT(start == ftell(file_strm)); crm_debug_3("Reading %d bytes from file", length); crm_malloc0(buffer, (length+1)); read_len = fread(buffer, 1, length, file_strm); if(read_len != length) { crm_err("Calculated and read bytes differ: %d vs. %d", length, read_len); crm_free(buffer); buffer = NULL; } else if(length <= 0) { crm_info("%s was not valid", series_file); crm_free(buffer); buffer = NULL; } crm_free(series_file); seq = crm_parse_int(buffer, "0"); crm_free(buffer); fclose(file_strm); return seq; } void write_last_sequence( const char *directory, const char *series, int sequence, int max) { int rc = 0; int len = 36; FILE *file_strm = NULL; char *series_file = NULL; CRM_CHECK(directory != NULL, return); CRM_CHECK(series != NULL, return); if(max == 0) { return; } while(max > 0 && sequence > max) { sequence -= max; } len += strlen(directory); len += strlen(series); crm_malloc0(series_file, len); sprintf(series_file, "%s/%s.last", directory, series); file_strm = fopen(series_file, "w"); if(file_strm == NULL) { crm_err("Cannout open series file %s for writing", series_file); goto bail; } rc = fprintf(file_strm, "%d", sequence); if(rc < 0) { crm_perror(LOG_ERR,"Cannot write to series file %s", series_file); } bail: if(file_strm != NULL) { fflush(file_strm); fclose(file_strm); } crm_free(series_file); } #define LOCKSTRLEN 11 int crm_pid_active(long pid) { int rc = 0; int running = 0; char proc_path[PATH_MAX], exe_path[PATH_MAX], myexe_path[PATH_MAX]; if(pid <= 0) { return -1; } else if (kill(pid, 0) < 0 && errno == ESRCH) { return 0; } #ifndef HAVE_PROC_PID return 1; #endif /* check to make sure pid hasn't been reused by another process */ snprintf(proc_path, sizeof(proc_path), "/proc/%lu/exe", pid); rc = readlink(proc_path, exe_path, PATH_MAX-1); if(rc < 0) { crm_perror(LOG_ERR, "Could not read from %s", proc_path); goto bail; } exe_path[rc] = 0; snprintf(proc_path, sizeof(proc_path), "/proc/%lu/exe", (long unsigned int)getpid()); rc = readlink(proc_path, myexe_path, PATH_MAX-1); if(rc < 0) { crm_perror(LOG_ERR, "Could not read from %s", proc_path); goto bail; } myexe_path[rc] = 0; if(strcmp(exe_path, myexe_path) == 0) { running = 1; } bail: return running; } int crm_read_pidfile(const char *filename) { int fd; long pid = -1; char buf[LOCKSTRLEN+1]; if ((fd = open(filename, O_RDONLY)) < 0) { goto bail; } if (read(fd, buf, sizeof(buf)) < 1) { goto bail; } if (sscanf(buf, "%lu", &pid) > 0) { if (pid <= 0){ pid = -LSB_STATUS_STOPPED; } } bail: if(fd >= 0) { close(fd); } return pid; } int crm_lock_pidfile(const char *filename) { struct stat sbuf; int fd = 0, rc = 0; long pid = 0, mypid = 0; char lf_name[256], tf_name[256], buf[LOCKSTRLEN+1]; mypid = (unsigned long) getpid(); snprintf(lf_name, sizeof(lf_name), "%s",filename); snprintf(tf_name, sizeof(tf_name), "%s.%lu", filename, mypid); if ((fd = open(lf_name, O_RDONLY)) >= 0) { if (fstat(fd, &sbuf) >= 0 && sbuf.st_size < LOCKSTRLEN) { sleep(1); /* if someone was about to create one, * give'm a sec to do so * Though if they follow our protocol, * this won't happen. They should really * put the pid in, then link, not the * other way around. */ } if (read(fd, buf, sizeof(buf)) > 0) { if (sscanf(buf, "%lu", &pid) > 0) { if (pid > 1 && pid != getpid() && crm_pid_active(pid)) { /* locked by existing process - give up */ close(fd); return -1; } } } unlink(lf_name); close(fd); } if ((fd = open(tf_name, O_CREAT | O_WRONLY | O_EXCL, 0644)) < 0) { /* Hmmh, why did we fail? Anyway, nothing we can do about it */ return -3; } /* Slight overkill with the %*d format ;-) */ snprintf(buf, sizeof(buf), "%*lu\n", LOCKSTRLEN-1, mypid); if (write(fd, buf, LOCKSTRLEN) != LOCKSTRLEN) { /* Again, nothing we can do about this */ rc = -3; close(fd); goto out; } close(fd); switch (link(tf_name, lf_name)) { case 0: if (stat(tf_name, &sbuf) < 0) { /* something weird happened */ rc = -3; } else if (sbuf.st_nlink < 2) { /* somehow, it didn't get through - NFS trouble? */ rc = -2; } else { rc = 0; } break; case EEXIST: rc = -1; break; default: rc = -3; } out: unlink(tf_name); return rc; } void crm_make_daemon(const char *name, gboolean daemonize, const char *pidfile) { long pid; const char *devnull = "/dev/null"; if(daemonize == FALSE) { return; } pid = fork(); if (pid < 0) { fprintf(stderr, "%s: could not start daemon\n", name); crm_perror(LOG_ERR,"fork"); exit(LSB_EXIT_GENERIC); } else if (pid > 0) { exit(LSB_EXIT_OK); } if (crm_lock_pidfile(pidfile) < 0 ) { pid = crm_read_pidfile(pidfile); if(crm_pid_active(pid) > 0) { crm_warn("%s: already running [pid %ld] (%s).\n", name, pid, pidfile); exit(LSB_EXIT_OK); } } umask(022); close(STDIN_FILENO); (void)open(devnull, O_RDONLY); /* Stdin: fd 0 */ close(STDOUT_FILENO); (void)open(devnull, O_WRONLY); /* Stdout: fd 1 */ close(STDERR_FILENO); (void)open(devnull, O_WRONLY); /* Stderr: fd 2 */ } gboolean crm_is_writable(const char *dir, const char *file, const char *user, const char *group, gboolean need_both) { int s_res = -1; struct stat buf; char *full_file = NULL; const char *target = NULL; gboolean pass = TRUE; gboolean readwritable = FALSE; CRM_ASSERT(dir != NULL); if(file != NULL) { full_file = crm_concat(dir, file, '/'); target = full_file; s_res = stat(full_file, &buf); if( s_res == 0 && S_ISREG(buf.st_mode) == FALSE ) { crm_err("%s must be a regular file", target); pass = FALSE; goto out; } } if (s_res != 0) { target = dir; s_res = stat(dir, &buf); if(s_res != 0) { crm_err("%s must exist and be a directory", dir); pass = FALSE; goto out; } else if( S_ISDIR(buf.st_mode) == FALSE ) { crm_err("%s must be a directory", dir); pass = FALSE; } } if(user) { struct passwd *sys_user = NULL; sys_user = getpwnam(user); readwritable = (sys_user != NULL && buf.st_uid == sys_user->pw_uid && (buf.st_mode & (S_IRUSR|S_IWUSR))); if(readwritable == FALSE) { crm_err("%s must be owned and r/w by user %s", target, user); if(need_both) { pass = FALSE; } } } if(group) { struct group *sys_grp = getgrnam(group); readwritable = ( sys_grp != NULL && buf.st_gid == sys_grp->gr_gid && (buf.st_mode & (S_IRGRP|S_IWGRP))); if(readwritable == FALSE) { if(need_both || user == NULL) { pass = FALSE; crm_err("%s must be owned and r/w by group %s", target, group); } else { crm_warn("%s should be owned and r/w by group %s", target, group); } } } out: crm_free(full_file); return pass; } static unsigned long long crm_bit_filter = 0; /* 0x00000002ULL; */ static unsigned int bit_log_level = LOG_DEBUG_5; long long crm_clear_bit(const char *function, long long word, long long bit) { unsigned int level = bit_log_level; if(bit & crm_bit_filter) { level = LOG_ERR; } do_crm_log_unlikely(level, "Bit 0x%.16llx cleared by %s", bit, function); word &= ~bit; return word; } long long crm_set_bit(const char *function, long long word, long long bit) { unsigned int level = bit_log_level; if(bit & crm_bit_filter) { level = LOG_ERR; } do_crm_log_unlikely(level, "Bit 0x%.16llx set by %s", bit, function); word |= bit; return word; } const char * name_for_cluster_type(enum cluster_type_e type) { switch(type) { case pcmk_cluster_classic_ais: return "classic openais (with plugin)"; case pcmk_cluster_cman: return "cman"; case pcmk_cluster_corosync: return "corosync"; case pcmk_cluster_heartbeat: return "heartbeat"; case pcmk_cluster_unknown: return "unknown"; case pcmk_cluster_invalid: return "invalid"; } crm_err("Invalid cluster type: %d", type); return "invalid"; } /* Do not expose these two */ int set_cluster_type(enum cluster_type_e type); static enum cluster_type_e cluster_type = pcmk_cluster_unknown; int set_cluster_type(enum cluster_type_e type) { if(cluster_type == pcmk_cluster_unknown) { crm_info("Cluster type set to: %s", name_for_cluster_type(cluster_type)); cluster_type = type; return 0; } else if(cluster_type == type) { return 0; } else if(pcmk_cluster_unknown == type) { cluster_type = type; return 0; } crm_err("Cluster type already set to %s", name_for_cluster_type(cluster_type)); return -1; } enum cluster_type_e get_cluster_type(void) { if(cluster_type == pcmk_cluster_unknown) { const char *cluster = getenv("HA_cluster_type"); cluster_type = pcmk_cluster_invalid; if(cluster) { crm_info("Cluster type is: '%s'.", cluster); } if(cluster == NULL || safe_str_eq(cluster, "heartbeat")) { #if SUPPORT_HEARTBEAT cluster_type = pcmk_cluster_heartbeat; #else crm_crit("This installation of Pacemaker does not support the '%s' cluster infrastructure. Terminating.", cluster); exit(100); #endif } else if(safe_str_eq(cluster, "openais")) { #if SUPPORT_COROSYNC cluster_type = pcmk_cluster_classic_ais; #else crm_crit("This installation of Pacemaker does not support the '%s' cluster infrastructure. Terminating.", cluster); exit(100); #endif } else if(safe_str_eq(cluster, "corosync")) { #if SUPPORT_COROSYNC cluster_type = pcmk_cluster_corosync; #else crm_crit("This installation of Pacemaker does not support the '%s' cluster infrastructure. Terminating.", cluster); exit(100); #endif } else if(safe_str_eq(cluster, "cman")) { #if SUPPORT_CMAN cluster_type = pcmk_cluster_cman; #else crm_crit("This installation of Pacemaker does not support the '%s' cluster infrastructure. Terminating.", cluster); exit(100); #endif } else { crm_crit("Unknown cluster type: '%s'. Terminating.", cluster); exit(100); } } return cluster_type; } gboolean is_cman_cluster(void) { return get_cluster_type() == pcmk_cluster_cman; } gboolean is_corosync_cluster(void) { return get_cluster_type() == pcmk_cluster_corosync; } gboolean is_classic_ais_cluster(void) { return get_cluster_type() == pcmk_cluster_classic_ais; } gboolean is_openais_cluster(void) { enum cluster_type_e type = get_cluster_type(); if(type == pcmk_cluster_classic_ais) { return TRUE; } else if(type == pcmk_cluster_corosync) { return TRUE; } else if(type == pcmk_cluster_cman) { return TRUE; } return FALSE; } gboolean is_heartbeat_cluster(void) { return get_cluster_type() == pcmk_cluster_heartbeat; } gboolean crm_str_eq(const char *a, const char *b, gboolean use_case) { if(a == b) { return TRUE; } else if(a == NULL || b == NULL) { /* shouldn't be comparing NULLs */ return FALSE; } else if(use_case && a[0] != b[0]) { return FALSE; } else if(strcasecmp(a, b) == 0) { return TRUE; } return FALSE; } char *crm_meta_name(const char *field) { int lpc = 0; int max = 0; char *crm_name = NULL; CRM_CHECK(field != NULL, return NULL); crm_name = crm_concat(CRM_META, field, '_'); /* Massage the names so they can be used as shell variables */ max = strlen(crm_name); for(; lpc < max; lpc++) { switch(crm_name[lpc]) { case '-': crm_name[lpc] = '_'; break; } } return crm_name; } const char *crm_meta_value(GHashTable *hash, const char *field) { char *key = NULL; const char *value = NULL; key = crm_meta_name(field); if(key) { value = g_hash_table_lookup(hash, key); crm_free(key); } return value; } static struct crm_option *crm_long_options = NULL; static const char *crm_app_description = NULL; static const char *crm_short_options = NULL; static const char *crm_app_usage = NULL; static struct option *crm_create_long_opts(struct crm_option *long_options) { struct option *long_opts = NULL; #ifdef HAVE_GETOPT_H int index = 0, lpc = 0; /* * A previous, possibly poor, choice of '?' as the short form of --help * means that getopt_long() returns '?' for both --help and for "unknown option" * * This dummy entry allows us to differentiate between the two in crm_get_option() * and exit with the correct error code */ crm_realloc(long_opts, (index+1) * sizeof(struct option)); long_opts[index].name = "__dummmy__"; long_opts[index].has_arg = 0; long_opts[index].flag = 0; long_opts[index].val = '_'; index++; for(lpc = 0; long_options[lpc].name != NULL; lpc++) { if(long_options[lpc].name[0] == '-') { continue; } crm_realloc(long_opts, (index+1) * sizeof(struct option)); /*fprintf(stderr, "Creating %d %s = %c\n", index, * long_options[lpc].name, long_options[lpc].val); */ long_opts[index].name = long_options[lpc].name; long_opts[index].has_arg = long_options[lpc].has_arg; long_opts[index].flag = long_options[lpc].flag; long_opts[index].val = long_options[lpc].val; index++; } /* Now create the list terminator */ crm_realloc(long_opts, (index+1) * sizeof(struct option)); long_opts[index].name = NULL; long_opts[index].has_arg = 0; long_opts[index].flag = 0; long_opts[index].val = 0; #endif return long_opts; } void crm_set_options(const char *short_options, const char *app_usage, struct crm_option *long_options, const char *app_desc) { if(short_options) { crm_short_options = short_options; } if(long_options) { crm_long_options = long_options; } if(app_desc) { crm_app_description = app_desc; } if(app_usage) { crm_app_usage = app_usage; } } int crm_get_option(int argc, char **argv, int *index) { #ifdef HAVE_GETOPT_H static struct option *long_opts = NULL; if(long_opts == NULL && crm_long_options) { long_opts = crm_create_long_opts(crm_long_options); } if(long_opts) { int flag = getopt_long(argc, argv, crm_short_options, long_opts, index); switch(flag) { case 0: return long_opts[*index].val; case -1: /* End of option processing */ break; case ':': crm_debug_2("Missing argument"); crm_help('?', 1); break; case '?': crm_help('?', *index?0:1); break; } return flag; } #endif if(crm_short_options) { return getopt(argc, argv, crm_short_options); } return -1; } void crm_help(char cmd, int exit_code) { int i = 0; FILE *stream = (exit_code ? stderr : stdout); if(cmd == 'v' || cmd == '$') { fprintf(stream, "Pacemaker %s\n", VERSION); fprintf(stream, "Written by Andrew Beekhof\n"); goto out; } if(cmd == '!') { fprintf(stream, "Pacemaker %s (Build: %s): %s\n", VERSION, BUILD_VERSION, CRM_FEATURES); goto out; } fprintf(stream, "%s - %s\n", crm_system_name, crm_app_description); if(crm_app_usage) { fprintf(stream, "Usage: %s %s\n", crm_system_name, crm_app_usage); } if(crm_long_options) { fprintf(stream, "Options:\n"); for(i = 0; crm_long_options[i].name != NULL; i++) { if(crm_long_options[i].flags & pcmk_option_hidden) { } else if(crm_long_options[i].flags & pcmk_option_paragraph) { fprintf(stream, "%s\n\n", crm_long_options[i].desc); } else if(crm_long_options[i].flags & pcmk_option_example) { fprintf(stream, "\t#%s\n\n", crm_long_options[i].desc); } else if(crm_long_options[i].val == '-' && crm_long_options[i].desc) { fprintf(stream, "%s\n", crm_long_options[i].desc); } else { fprintf(stream, " -%c, --%s%c%s\t%s\n", crm_long_options[i].val, crm_long_options[i].name, crm_long_options[i].has_arg?'=':' ',crm_long_options[i].has_arg?"value":"", crm_long_options[i].desc?crm_long_options[i].desc:""); } } } else if(crm_short_options) { fprintf(stream, "Usage: %s - %s\n", crm_system_name, crm_app_description); for(i = 0; crm_short_options[i] != 0; i++) { int has_arg = FALSE; if(crm_short_options[i+1] == ':') { has_arg = TRUE; } fprintf(stream, " -%c %s\n", crm_short_options[i], has_arg?"{value}":""); if(has_arg) { i++; } } } fprintf(stream, "\nReport bugs to %s\n", PACKAGE_BUGREPORT); out: if(exit_code >= 0) { exit(exit_code); } } #include <../../tools/attrd.h> gboolean attrd_update(IPC_Channel *cluster, char command, const char *host, const char *name, const char *value, const char *section, const char *set, const char *dampen) { gboolean success = FALSE; const char *reason = "Cluster connection failed"; /* remap common aliases */ if(safe_str_eq(section, "reboot")) { section = XML_CIB_TAG_STATUS; } else if(safe_str_eq(section, "forever")) { section = XML_CIB_TAG_NODES; } if(cluster == NULL) { reason = "No connection to the cluster"; } else { xmlNode *update = create_xml_node(NULL, __FUNCTION__); crm_xml_add(update, F_TYPE, T_ATTRD); crm_xml_add(update, F_ORIG, crm_system_name); if(name == NULL && command == 'U') { command = 'R'; } switch(command) { case 'D': case 'U': case 'v': crm_xml_add(update, F_ATTRD_TASK, "update"); crm_xml_add(update, F_ATTRD_ATTRIBUTE, name); break; case 'R': crm_xml_add(update, F_ATTRD_TASK, "refresh"); break; case 'q': crm_xml_add(update, F_ATTRD_TASK, "query"); break; } crm_xml_add(update, F_ATTRD_VALUE, value); crm_xml_add(update, F_ATTRD_DAMPEN, dampen); crm_xml_add(update, F_ATTRD_SECTION, section); crm_xml_add(update, F_ATTRD_HOST, host); crm_xml_add(update, F_ATTRD_SET, set); success = send_ipc_message(cluster, update); free_xml(update); } if(success) { crm_debug("Sent update: %s=%s for %s", name, value, host?host:"localhost"); return TRUE; } crm_info("Could not send update: %s=%s for %s", name, value, host?host:"localhost"); return FALSE; } gboolean attrd_lazy_update(char command, const char *host, const char *name, const char *value, const char *section, const char *set, const char *dampen) { int max = 5; gboolean updated = FALSE; static IPC_Channel *cluster = NULL; while(updated == 0 && max > 0) { if(cluster == NULL) { crm_info("Connecting to cluster... %d retries remaining", max); cluster = init_client_ipc_comms_nodispatch(T_ATTRD); } if(cluster != NULL) { updated = attrd_update(cluster, command, host, name, value, section, set, dampen); } if(updated == 0) { cluster = NULL; sleep(2); max--; } } return updated; } gboolean attrd_update_no_mainloop(int *connection, char command, const char *host, const char *name, const char *value, const char *section, const char *set, const char *dampen) { int max = 5; gboolean updated = FALSE; static IPC_Channel *cluster = NULL; if(connection && *connection == 0 && cluster) { crm_info("Forcing a new connection to the cluster"); cluster = NULL; } while(updated == 0 && max > 0) { if(cluster == NULL) { crm_info("Connecting to cluster... %d retries remaining", max); cluster = init_client_ipc_comms_nodispatch(T_ATTRD); } if(connection) { if(cluster != NULL) { *connection = cluster->ops->get_recv_select_fd(cluster); } else { *connection = 0; } } if(cluster != NULL) { updated = attrd_update(cluster, command, host, name, value, section, set, dampen); } if(updated == 0) { cluster = NULL; sleep(2); max--; } } return updated; } #define FAKE_TE_ID "xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx" static void append_digest(lrm_op_t *op, xmlNode *update, const char *version, const char *magic, int level) { /* this will enable us to later determine that the * resource's parameters have changed and we should force * a restart */ char *digest = NULL; xmlNode *args_xml = NULL; if(op->params == NULL) { return; } args_xml = create_xml_node(NULL, XML_TAG_PARAMS); g_hash_table_foreach(op->params, hash2field, args_xml); filter_action_parameters(args_xml, version); digest = calculate_operation_digest(args_xml, version); #if 0 if(level < crm_log_level && op->interval == 0 && crm_str_eq(op->op_type, CRMD_ACTION_START, TRUE)) { char *digest_source = dump_xml_unformatted(args_xml); do_crm_log(level, "Calculated digest %s for %s (%s). Source: %s\n", digest, ID(update), magic, digest_source); crm_free(digest_source); } #endif crm_xml_add(update, XML_LRM_ATTR_OP_DIGEST, digest); free_xml(args_xml); crm_free(digest); } xmlNode * create_operation_update( xmlNode *parent, lrm_op_t *op, const char *caller_version, int target_rc, const char *origin, int level) { char *magic = NULL; const char *task = NULL; xmlNode *xml_op = NULL; char *op_id = NULL; char *local_user_data = NULL; gboolean dc_munges_migrate_ops = (compare_version(caller_version, "3.0.3") < 0); CRM_CHECK(op != NULL, return NULL); do_crm_log(level, "%s: Updating resouce %s after %s %s op (interval=%d)", origin, op->rsc_id, op_status2text(op->op_status), op->op_type, op->interval); if(op->op_status == LRM_OP_CANCELLED) { crm_debug_3("Ignoring cancelled op"); return NULL; } crm_debug_3("DC version: %s", caller_version); task = op->op_type; /* remap the task name under various scenarios * this makes life easier for the PE when its trying determin the current state */ if(crm_str_eq(task, "reload", TRUE)) { if(op->op_status == LRM_OP_DONE) { task = CRMD_ACTION_START; } else { task = CRMD_ACTION_STATUS; } } else if(dc_munges_migrate_ops && crm_str_eq(task, CRMD_ACTION_MIGRATE, TRUE)) { /* if the migrate_from fails it will have enough info to do the right thing */ if(op->op_status == LRM_OP_DONE) { task = CRMD_ACTION_STOP; } else { task = CRMD_ACTION_STATUS; } } else if(dc_munges_migrate_ops && op->op_status == LRM_OP_DONE && crm_str_eq(task, CRMD_ACTION_MIGRATED, TRUE)) { task = CRMD_ACTION_START; } else if(crm_str_eq(task, CRMD_ACTION_NOTIFY, TRUE)) { const char *n_type = crm_meta_value(op->params, "notify_type"); const char *n_task = crm_meta_value(op->params, "notify_operation"); CRM_LOG_ASSERT(n_type != NULL); CRM_LOG_ASSERT(n_task != NULL); op_id = generate_notify_key(op->rsc_id, n_type, n_task); /* these are not yet allowed to fail */ op->op_status = LRM_OP_DONE; op->rc = 0; } if (op_id == NULL) { op_id = generate_op_key(op->rsc_id, task, op->interval); } xml_op = find_entity(parent, XML_LRM_TAG_RSC_OP, op_id); if(xml_op != NULL) { crm_log_xml(LOG_DEBUG, "Replacing existing entry", xml_op); } else { xml_op = create_xml_node(parent, XML_LRM_TAG_RSC_OP); } if(op->user_data == NULL) { crm_debug("Generating fake transition key for:" " %s_%s_%d %d from %s", op->rsc_id, op->op_type, op->interval, op->call_id, op->app_name); local_user_data = generate_transition_key(-1, op->call_id, target_rc, FAKE_TE_ID); op->user_data = local_user_data; } magic = generate_transition_magic(op->user_data, op->op_status, op->rc); crm_xml_add(xml_op, XML_ATTR_ID, op_id); crm_xml_add(xml_op, XML_LRM_ATTR_TASK, task); crm_xml_add(xml_op, XML_ATTR_ORIGIN, origin); crm_xml_add(xml_op, XML_ATTR_CRM_VERSION, caller_version); crm_xml_add(xml_op, XML_ATTR_TRANSITION_KEY, op->user_data); crm_xml_add(xml_op, XML_ATTR_TRANSITION_MAGIC, magic); crm_xml_add_int(xml_op, XML_LRM_ATTR_CALLID, op->call_id); crm_xml_add_int(xml_op, XML_LRM_ATTR_RC, op->rc); crm_xml_add_int(xml_op, XML_LRM_ATTR_OPSTATUS, op->op_status); crm_xml_add_int(xml_op, XML_LRM_ATTR_INTERVAL, op->interval); if(compare_version("2.1", caller_version) <= 0) { if(op->t_run || op->t_rcchange || op->exec_time || op->queue_time) { crm_debug_2("Timing data (%s_%s_%d): last=%lu change=%lu exec=%lu queue=%lu", op->rsc_id, op->op_type, op->interval, op->t_run, op->t_rcchange, op->exec_time, op->queue_time); crm_xml_add_int(xml_op, "last-run", op->t_run); crm_xml_add_int(xml_op, "last-rc-change", op->t_rcchange); crm_xml_add_int(xml_op, "exec-time", op->exec_time); crm_xml_add_int(xml_op, "queue-time", op->queue_time); } } if(crm_str_eq(op->op_type, CRMD_ACTION_MIGRATE, TRUE) || crm_str_eq(op->op_type, CRMD_ACTION_MIGRATED, TRUE)) { /* * Record migrate_source and migrate_target always for migrate ops. */ const char *name = XML_LRM_ATTR_MIGRATE_SOURCE; crm_xml_add(xml_op, name, crm_meta_value(op->params, name)); name = XML_LRM_ATTR_MIGRATE_TARGET; crm_xml_add(xml_op, name, crm_meta_value(op->params, name)); } append_digest(op, xml_op, caller_version, magic, LOG_DEBUG); if(local_user_data) { crm_free(local_user_data); op->user_data = NULL; } crm_free(magic); crm_free(op_id); return xml_op; } void free_lrm_op(lrm_op_t *op) { g_hash_table_destroy(op->params); crm_free(op->user_data); crm_free(op->output); crm_free(op->rsc_id); crm_free(op->op_type); crm_free(op->app_name); crm_free(op); } diff --git a/lib/common/xml.c b/lib/common/xml.c index 65b02fd22d..f4b7822b22 100644 --- a/lib/common/xml.c +++ b/lib/common/xml.c @@ -1,3052 +1,3052 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #if HAVE_BZLIB_H # include #endif #define XML_BUFFER_SIZE 4096 #define XML_PARSER_DEBUG 0 #define BEST_EFFORT_STATUS 0 xmlDoc *getDocPtr(xmlNode *node); typedef struct { xmlRelaxNGPtr rng; xmlRelaxNGValidCtxtPtr valid; xmlRelaxNGParserCtxtPtr parser; } relaxng_ctx_cache_t; struct schema_s { int type; const char *name; const char *location; const char *transform; int after_transform; void *cache; }; struct schema_s known_schemas[] = { /* 0 */ { 0, NULL, NULL, NULL, 1 }, /* 1 */ { 1, "pacemaker-0.6", CRM_DTD_DIRECTORY"/crm.dtd", CRM_DTD_DIRECTORY"/upgrade06.xsl", 4, NULL }, /* 2 */ { 1, "transitional-0.6", CRM_DTD_DIRECTORY"/crm-transitional.dtd", CRM_DTD_DIRECTORY"/upgrade06.xsl", 4, NULL }, /* 3 */ { 2, "pacemaker-0.7", CRM_DTD_DIRECTORY"/pacemaker-1.0.rng", NULL, 0, NULL }, /* 4 */ { 2, "pacemaker-1.0", CRM_DTD_DIRECTORY"/pacemaker-1.0.rng", NULL, 6, NULL }, /* 5 */ { 2, "pacemaker-1.1", CRM_DTD_DIRECTORY"/pacemaker-1.1.rng", NULL, 6, NULL }, /* 6 */ { 2, "pacemaker-1.2", CRM_DTD_DIRECTORY"/pacemaker-1.2.rng", NULL, 0, NULL }, /* 7 */ { 0, "none", NULL, NULL, 0, NULL }, }; static int all_schemas = DIMOF(known_schemas); static int max_schemas = DIMOF(known_schemas) - 2; /* skip back past 'none' */ typedef struct { int found; const char *string; } filter_t; static filter_t filter[] = { { 0, XML_ATTR_ORIGIN }, { 0, XML_CIB_ATTR_WRITTEN }, }; static void add_ha_nocopy(HA_Message *parent, HA_Message *child, const char *field) { int next = parent->nfields; if (parent->nfields >= parent->nalloc && ha_msg_expand(parent) != HA_OK ) { crm_err("Parent expansion failed"); return; } parent->names[next] = crm_strdup(field); parent->nlens[next] = strlen(field); parent->values[next] = child; parent->vlens[next] = sizeof(HA_Message); parent->types[next] = FT_UNCOMPRESS; parent->nfields++; } int print_spaces(char *buffer, int spaces, int max); int get_tag_name(const char *input, size_t offset, size_t max); int get_attr_name(const char *input, size_t offset, size_t max); int get_attr_value(const char *input, size_t offset, size_t max); gboolean can_prune_leaf(xmlNode *xml_node); void diff_filter_context(int context, int upper_bound, int lower_bound, xmlNode *xml_node, xmlNode *parent); int in_upper_context(int depth, int context, xmlNode *xml_node); int write_file(const char *string, const char *filename); xmlNode *subtract_xml_object(xmlNode *parent, xmlNode *left, xmlNode *right, gboolean full, const char *marker); int add_xml_object(xmlNode *parent, xmlNode *target, xmlNode *update, gboolean as_diff); xmlNode * find_xml_node(xmlNode *root, const char * search_path, gboolean must_find) { xmlNode *a_child = NULL; const char *name = "NULL"; if(must_find || root != NULL) { crm_validate_data(root); } if(root != NULL) { name = crm_element_name(root); } if(search_path == NULL) { crm_warn("Will never find "); return NULL; } for(a_child = __xml_first_child(root); a_child != NULL; a_child = __xml_next(a_child)) { if(crm_str_eq((const char *)a_child->name, search_path, TRUE)) { /* crm_debug_5("returning node (%s).", crm_element_name(a_child)); */ crm_validate_data(a_child); return a_child; } } if(must_find) { crm_warn("Could not find %s in %s.", search_path, name); } else if(root != NULL) { crm_debug_3("Could not find %s in %s.", search_path, name); } else { crm_debug_3("Could not find %s in .", search_path); } return NULL; } xmlNode* find_entity(xmlNode *parent, const char *node_name, const char *id) { xmlNode *a_child = NULL; crm_validate_data(parent); for(a_child = __xml_first_child(parent); a_child != NULL; a_child = __xml_next(a_child)) { /* Uncertain if node_name == NULL check is strictly necessary here */ if(node_name == NULL || crm_str_eq((const char *)a_child->name, node_name, TRUE)) { if(id == NULL || crm_str_eq(id, ID(a_child), TRUE)) { crm_debug_4("returning node (%s).", crm_element_name(a_child)); return a_child; } } } crm_debug_3("node <%s id=%s> not found in %s.", node_name, id, crm_element_name(parent)); return NULL; } void copy_in_properties(xmlNode* target, xmlNode *src) { crm_validate_data(src); crm_validate_data(target); if(src == NULL) { crm_warn("No node to copy properties from"); } else if (target == NULL) { crm_err("No node to copy properties into"); } else { xml_prop_iter( src, local_prop_name, local_prop_value, expand_plus_plus(target, local_prop_name, local_prop_value) ); crm_validate_data(target); } return; } void fix_plus_plus_recursive(xmlNode* target) { /* TODO: Remove recursion and use xpath searches for value++ */ xmlNode *child = NULL; xml_prop_iter(target, name, value, expand_plus_plus(target, name, value)); for(child = __xml_first_child(target); child != NULL; child = __xml_next(child)) { fix_plus_plus_recursive(child); } } void expand_plus_plus(xmlNode* target, const char *name, const char *value) { int offset = 1; int name_len = 0; int int_value = 0; int value_len = 0; const char *old_value = NULL; if(value == NULL || name == NULL) { return; } old_value = crm_element_value(target, name); if(old_value == NULL) { /* if no previous value, set unexpanded */ goto set_unexpanded; } else if(strstr(value, name) != value) { goto set_unexpanded; } name_len = strlen(name); value_len = strlen(value); if(value_len < (name_len + 2) || value[name_len] != '+' || (value[name_len+1] != '+' && value[name_len+1] != '=')) { goto set_unexpanded; } /* if we are expanding ourselves, * then no previous value was set and leave int_value as 0 */ if(old_value != value) { int_value = char2score(old_value); } if(value[name_len+1] != '+') { const char *offset_s = value+(name_len+2); offset = char2score(offset_s); } int_value += offset; if(int_value > INFINITY) { int_value = INFINITY; } crm_xml_add_int(target, name, int_value); return; set_unexpanded: if(old_value == value) { /* the old value is already set, nothing to do */ return; } crm_xml_add(target, name, value); return; } xmlDoc *getDocPtr(xmlNode *node) { xmlDoc *doc = NULL; CRM_CHECK(node != NULL, return NULL); doc = node->doc; if(doc == NULL) { doc = xmlNewDoc((const xmlChar*)"1.0"); xmlDocSetRootElement(doc, node); xmlSetTreeDoc(node, doc); } return doc; } xmlNode* add_node_copy(xmlNode *parent, xmlNode *src_node) { xmlNode *child = NULL; xmlDoc *doc = getDocPtr(parent); CRM_CHECK(src_node != NULL, return NULL); child = xmlDocCopyNode(src_node, doc, 1); xmlAddChild(parent, child); return child; } int add_node_nocopy(xmlNode *parent, const char *name, xmlNode *child) { add_node_copy(parent, child); free_xml(child); return HA_OK; } const char * crm_xml_add(xmlNode* node, const char *name, const char *value) { xmlAttr *attr = NULL; CRM_CHECK(node != NULL, return NULL); CRM_CHECK(name != NULL, return NULL); if(value == NULL) { return NULL; } #if XML_PARANOIA_CHECKS { const char *old_value = NULL; old_value = crm_element_value(node, name); /* Could be re-setting the same value */ CRM_CHECK(old_value != value, crm_err("Cannot reset %s with crm_xml_add(%s)", name, value); return value); } #endif attr = xmlSetProp(node, (const xmlChar*)name, (const xmlChar*)value); CRM_CHECK(attr && attr->children && attr->children->content, return NULL); return (char *)attr->children->content; } const char * crm_xml_replace(xmlNode* node, const char *name, const char *value) { xmlAttr *attr = NULL; const char *old_value = NULL; CRM_CHECK(node != NULL, return NULL); CRM_CHECK(name != NULL && name[0] != 0, return NULL); old_value = crm_element_value(node, name); /* Could be re-setting the same value */ CRM_CHECK(old_value != value, return value); if (old_value != NULL && value == NULL) { xml_remove_prop(node, name); return NULL; } else if(value == NULL) { return NULL; } attr = xmlSetProp(node, (const xmlChar*)name, (const xmlChar*)value); CRM_CHECK(attr && attr->children && attr->children->content, return NULL); return (char *)attr->children->content; } const char * crm_xml_add_int(xmlNode* node, const char *name, int value) { char *number = crm_itoa(value); const char *added = crm_xml_add(node, name, number); crm_free(number); return added; } xmlNode* create_xml_node(xmlNode *parent, const char *name) { xmlDoc *doc = NULL; xmlNode *node = NULL; if (name == NULL || name[0] == 0) { return NULL; } if(parent == NULL) { doc = xmlNewDoc((const xmlChar*)"1.0"); node = xmlNewDocRawNode(doc, NULL, (const xmlChar*)name, NULL); xmlDocSetRootElement(doc, node); } else { doc = getDocPtr(parent); node = xmlNewDocRawNode(doc, NULL, (const xmlChar*)name, NULL); xmlAddChild(parent, node); } return node; } void free_xml_from_parent(xmlNode *parent, xmlNode *a_node) { CRM_CHECK(a_node != NULL, return); xmlUnlinkNode(a_node); xmlFreeNode(a_node); } xmlNode* copy_xml(xmlNode *src) { xmlDoc *doc = xmlNewDoc((const xmlChar*)"1.0"); xmlNode *copy = xmlDocCopyNode(src, doc, 1); xmlDocSetRootElement(doc, copy); xmlSetTreeDoc(copy, doc); return copy; } static void crm_xml_err(void * ctx, const char * msg, ...) G_GNUC_PRINTF(2,3); extern size_t strlcat(char * dest, const char *source, size_t len); int write_file(const char *string, const char *filename) { int rc = 0; FILE *file_output_strm = NULL; CRM_CHECK(filename != NULL, return -1); if (string == NULL) { crm_err("Cannot write NULL to %s", filename); return -1; } file_output_strm = fopen(filename, "w"); if(file_output_strm == NULL) { crm_perror(LOG_ERR,"Cannot open %s for writing", filename); return -1; } rc = fprintf(file_output_strm, "%s", string); if(rc < 0) { crm_perror(LOG_ERR,"Cannot write output to %s", filename); } if(fflush(file_output_strm) != 0) { crm_perror(LOG_ERR,"fflush for %s failed:", filename); rc = -1; } if(fsync(fileno(file_output_strm)) < 0) { crm_perror(LOG_ERR,"fsync for %s failed:", filename); rc = -1; } fclose(file_output_strm); return rc; } static void crm_xml_err(void * ctx, const char * msg, ...) { int len = 0; va_list args; char *buf = NULL; static int buffer_len = 0; static char *buffer = NULL; va_start(args, msg); len = vasprintf(&buf, msg, args); if(strchr(buf, '\n')) { buf[len - 1] = 0; if(buffer) { crm_err("XML Error: %s%s", buffer, buf); free(buffer); } else { crm_err("XML Error: %s", buf); } buffer = NULL; buffer_len = 0; } else if(buffer == NULL) { buffer_len = len; buffer = buf; buf = NULL; } else { buffer_len += len; buffer = realloc(buffer, buffer_len); strlcat(buffer, buf, buffer_len); } va_end(args); free(buf); } xmlNode* string2xml(const char *input) { xmlNode *xml = NULL; xmlDocPtr output = NULL; xmlParserCtxtPtr ctxt = NULL; xmlErrorPtr last_error = NULL; if(input == NULL) { crm_err("Can't parse NULL input"); return NULL; } /* create a parser context */ ctxt = xmlNewParserCtxt(); CRM_CHECK(ctxt != NULL, return NULL); /* xmlCtxtUseOptions(ctxt, XML_PARSE_NOBLANKS|XML_PARSE_RECOVER); */ xmlCtxtResetLastError(ctxt); xmlSetGenericErrorFunc(ctxt, crm_xml_err); /* initGenericErrorDefaultFunc(crm_xml_err); */ output = xmlCtxtReadDoc(ctxt, (const xmlChar*)input, NULL, NULL, XML_PARSE_NOBLANKS|XML_PARSE_RECOVER); if(output) { xml = xmlDocGetRootElement(output); } last_error = xmlCtxtGetLastError(ctxt); if(last_error && last_error->code != XML_ERR_OK) { /* crm_abort(__FILE__,__PRETTY_FUNCTION__,__LINE__, "last_error->code != XML_ERR_OK", TRUE, TRUE); */ /* * http://xmlsoft.org/html/libxml-xmlerror.html#xmlErrorLevel * http://xmlsoft.org/html/libxml-xmlerror.html#xmlParserErrors */ crm_warn("Parsing failed (domain=%d, level=%d, code=%d): %s", last_error->domain, last_error->level, last_error->code, last_error->message); if(last_error->code != XML_ERR_DOCUMENT_END) { crm_err("Couldn't%s parse %d chars: %s", xml?" fully":"", (int)strlen(input), input); if(xml != NULL) { crm_log_xml_err(xml, "Partial"); } } else { int len = strlen(input); crm_warn("String start: %.50s", input); crm_warn("String start+%d: %s", len-50, input+len-50); crm_abort(__FILE__,__PRETTY_FUNCTION__,__LINE__, "String parsing error", TRUE, TRUE); } } xmlFreeParserCtxt(ctxt); return xml; } xmlNode * stdin2xml(void) { size_t data_length = 0; size_t read_chars = 0; char *xml_buffer = NULL; xmlNode *xml_obj = NULL; do { crm_realloc(xml_buffer, XML_BUFFER_SIZE + data_length + 1); read_chars = fread(xml_buffer + data_length, 1, XML_BUFFER_SIZE, stdin); data_length += read_chars; } while (read_chars > 0); if(data_length == 0) { crm_warn("No XML supplied on stdin"); crm_free(xml_buffer); return NULL; } xml_buffer[data_length] = '\0'; xml_obj = string2xml(xml_buffer); crm_free(xml_buffer); crm_log_xml_debug_3(xml_obj, "Created fragment"); return xml_obj; } static char * decompress_file(const char *filename) { char *buffer = NULL; #if HAVE_BZLIB_H int rc = 0; size_t length = 0, read_len = 0; BZFILE *bz_file = NULL; FILE *input = fopen(filename, "r"); if(input == NULL) { crm_perror(LOG_ERR,"Could not open %s for reading", filename); return NULL; } bz_file = BZ2_bzReadOpen(&rc, input, 0, 0, NULL, 0); if ( rc != BZ_OK ) { BZ2_bzReadClose ( &rc, bz_file); return NULL; } rc = BZ_OK; while ( rc == BZ_OK ) { crm_realloc(buffer, XML_BUFFER_SIZE + length + 1); read_len = BZ2_bzRead ( &rc, bz_file, buffer + length, XML_BUFFER_SIZE); crm_debug_5("Read %ld bytes from file: %d", (long)read_len, rc); if ( rc == BZ_OK || rc == BZ_STREAM_END) { length += read_len; } } buffer[length] = '\0'; read_len = length; if ( rc != BZ_STREAM_END ) { crm_err("Couldnt read compressed xml from file"); crm_free(buffer); buffer = NULL; } BZ2_bzReadClose (&rc, bz_file); fclose(input); #else crm_err("Cannot read compressed files:" " bzlib was not available at compile time"); #endif return buffer; } xmlNode * filename2xml(const char *filename) { xmlNode *xml = NULL; xmlDocPtr output = NULL; xmlParserCtxtPtr ctxt = NULL; xmlErrorPtr last_error = NULL; static int xml_options = XML_PARSE_NOBLANKS|XML_PARSE_RECOVER; /* create a parser context */ ctxt = xmlNewParserCtxt(); CRM_CHECK(ctxt != NULL, return NULL); /* xmlCtxtUseOptions(ctxt, XML_PARSE_NOBLANKS|XML_PARSE_RECOVER); */ xmlCtxtResetLastError(ctxt); xmlSetGenericErrorFunc(ctxt, crm_xml_err); /* initGenericErrorDefaultFunc(crm_xml_err); */ if(filename == NULL) { /* STDIN_FILENO == fileno(stdin) */ output = xmlCtxtReadFd(ctxt, STDIN_FILENO, "unknown.xml", NULL, xml_options); } else if(strstr(filename, ".bz2") == NULL) { output = xmlCtxtReadFile(ctxt, filename, NULL, xml_options); } else { char *input = decompress_file(filename); output = xmlCtxtReadDoc(ctxt, (const xmlChar*)input, NULL, NULL, xml_options); crm_free(input); } if(output) { xml = xmlDocGetRootElement(output); } last_error = xmlCtxtGetLastError(ctxt); if(last_error && last_error->code != XML_ERR_OK) { /* crm_abort(__FILE__,__PRETTY_FUNCTION__,__LINE__, "last_error->code != XML_ERR_OK", TRUE, TRUE); */ /* * http://xmlsoft.org/html/libxml-xmlerror.html#xmlErrorLevel * http://xmlsoft.org/html/libxml-xmlerror.html#xmlParserErrors */ crm_err("Parsing failed (domain=%d, level=%d, code=%d): %s", last_error->domain, last_error->level, last_error->code, last_error->message); if(last_error && last_error->code != XML_ERR_OK) { crm_err("Couldn't%s parse %s", xml?" fully":"", filename); if(xml != NULL) { crm_log_xml_err(xml, "Partial"); } } } xmlFreeParserCtxt(ctxt); return xml; } int write_xml_file(xmlNode *xml_node, const char *filename, gboolean compress) { int res = 0; time_t now; char *buffer = NULL; char *now_str = NULL; unsigned int out = 0; FILE *file_output_strm = NULL; static mode_t cib_mode = S_IRUSR|S_IWUSR; CRM_CHECK(filename != NULL, return -1); crm_debug_3("Writing XML out to %s", filename); crm_validate_data(xml_node); if (xml_node == NULL) { crm_err("Cannot write NULL to %s", filename); return -1; } file_output_strm = fopen(filename, "w"); if(file_output_strm == NULL) { crm_perror(LOG_ERR,"Cannot open %s for writing", filename); return -1; } /* establish the correct permissions */ fchmod(fileno(file_output_strm), cib_mode); crm_log_xml_debug_4(xml_node, "Writing out"); now = time(NULL); now_str = ctime(&now); now_str[24] = EOS; /* replace the newline */ crm_xml_add(xml_node, XML_CIB_ATTR_WRITTEN, now_str); crm_validate_data(xml_node); buffer = dump_xml_formatted(xml_node); CRM_CHECK(buffer != NULL && strlen(buffer) > 0, crm_log_xml_warn(xml_node, "dump:failed"); goto bail); if(compress) { #if HAVE_BZLIB_H int rc = BZ_OK; unsigned int in = 0; BZFILE *bz_file = NULL; bz_file = BZ2_bzWriteOpen(&rc, file_output_strm, 5, 0, 30); if(rc != BZ_OK) { crm_err("bzWriteOpen failed: %d", rc); } else { BZ2_bzWrite(&rc,bz_file,buffer,strlen(buffer)); if(rc != BZ_OK) { crm_err("bzWrite() failed: %d", rc); } } if(rc == BZ_OK) { BZ2_bzWriteClose(&rc, bz_file, 0, &in, &out); if(rc != BZ_OK) { crm_err("bzWriteClose() failed: %d",rc); out = -1; } else { crm_debug_2("%s: In: %d, out: %d", filename, in, out); } } #else crm_err("Cannot write compressed files:" " bzlib was not available at compile time"); #endif } if(out <= 0) { res = fprintf(file_output_strm, "%s", buffer); if(res < 0) { crm_perror(LOG_ERR,"Cannot write output to %s", filename); goto bail; } } bail: if(fflush(file_output_strm) != 0) { crm_perror(LOG_ERR,"fflush for %s failed:", filename); res = -1; } if(fsync(fileno(file_output_strm)) < 0) { crm_perror(LOG_ERR,"fsync for %s failed:", filename); res = -1; } fclose(file_output_strm); crm_debug_3("Saved %d bytes to the Cib as XML", res); crm_free(buffer); return res; } static HA_Message* convert_xml_message_struct(HA_Message *parent, xmlNode *src_node, const char *field) { xmlNode *child = NULL; xmlNode *__crm_xml_iter = src_node->children; xmlAttrPtr prop_iter = src_node->properties; const char *name = NULL; const char *value = NULL; HA_Message *result = ha_msg_new(3); ha_msg_add(result, F_XML_TAGNAME, (const char *)src_node->name); while(prop_iter != NULL) { name = (const char *)prop_iter->name; value = (const char *)xmlGetProp(src_node, prop_iter->name); prop_iter = prop_iter->next; ha_msg_add(result, name, value); } while(__crm_xml_iter != NULL) { child = __crm_xml_iter; __crm_xml_iter = __crm_xml_iter->next; convert_xml_message_struct(result, child, NULL); } if(parent == NULL) { return result; } if(field) { HA_Message *holder = ha_msg_new(3); CRM_ASSERT(holder != NULL); ha_msg_add(holder, F_XML_TAGNAME, field); add_ha_nocopy(holder, result, (const char*)src_node->name); ha_msg_addstruct_compress(parent, field, holder); ha_msg_del(holder); } else { add_ha_nocopy(parent, result, (const char*)src_node->name); } return result; } static void convert_xml_child(HA_Message *msg, xmlNode *xml) { int orig = 0; int rc = BZ_OK; unsigned int len = 0; char *buffer = NULL; char *compressed = NULL; const char *name = NULL; name = (const char *)xml->name; buffer = dump_xml_unformatted(xml); orig = strlen(buffer); if(orig < CRM_BZ2_THRESHOLD) { ha_msg_add(msg, name, buffer); goto done; } len = (orig * 1.1) + 600; /* recomended size */ crm_malloc(compressed, len); rc = BZ2_bzBuffToBuffCompress(compressed, &len, buffer, orig, CRM_BZ2_BLOCKS, 0, CRM_BZ2_WORK); if(rc != BZ_OK) { crm_err("Compression failed: %d", rc); crm_free(compressed); convert_xml_message_struct(msg, xml, name); goto done; } crm_free(buffer); buffer = compressed; crm_debug_2("Compression details: %d -> %d", orig, len); ha_msg_addbin(msg, name, buffer, len); done: crm_free(buffer); # if 0 { unsigned int used = orig; char *uncompressed = NULL; crm_debug("Trying to decompress %d bytes", len); crm_malloc0(uncompressed, orig); rc = BZ2_bzBuffToBuffDecompress( uncompressed, &used, compressed, len, 1, 0); CRM_CHECK(rc == BZ_OK, ;); CRM_CHECK(used == orig, ;); crm_debug("rc=%d, used=%d", rc, used); if(rc != BZ_OK) { exit(100); } crm_debug("Original %s, decompressed %s", buffer, uncompressed); crm_free(uncompressed); } # endif } HA_Message* convert_xml_message(xmlNode *xml) { xmlNode *child = NULL; HA_Message *result = NULL; result = ha_msg_new(3); ha_msg_add(result, F_XML_TAGNAME, (const char *)xml->name); xml_prop_iter(xml, name, value, ha_msg_add(result, name, value)); for(child = __xml_first_child(xml); child != NULL; child = __xml_next(child)) { convert_xml_child(result, child); } return result; } static void convert_ha_field(xmlNode *parent, HA_Message *msg, int lpc) { int type = 0; const char *name = NULL; const char *value = NULL; xmlNode *xml = NULL; int rc = BZ_OK; size_t orig_len = 0; unsigned int used = 0; char *uncompressed = NULL; char *compressed = NULL; int size = orig_len * 10; CRM_CHECK(parent != NULL, return); CRM_CHECK(msg != NULL, return); name = msg->names[lpc]; type = cl_get_type(msg, name); switch(type) { case FT_STRUCT: convert_ha_message(parent, msg->values[lpc], name); break; case FT_COMPRESS: case FT_UNCOMPRESS: convert_ha_message(parent, cl_get_struct(msg, name), name); break; case FT_STRING: value = msg->values[lpc]; CRM_CHECK(value != NULL, return); crm_debug_5("Converting %s/%d/%s", name, type, value[0] == '<' ? "xml":"field"); if( value[0] != '<' ) { crm_xml_add(parent, name, value); break; } /* unpack xml string */ xml = string2xml(value); if(xml == NULL) { crm_err("Conversion of field '%s' failed", name); return; } add_node_nocopy(parent, NULL, xml); break; case FT_BINARY: value = cl_get_binary(msg, name, &orig_len); size = orig_len * 10 + 1; /* +1 because an exact 10x compression factor happens occasionally */ if(orig_len < 3 || value[0] != 'B' || value[1] != 'Z' || value[2] != 'h') { if(strstr(name, "uuid") == NULL) { crm_err("Skipping non-bzip binary field: %s", name); } return; } crm_malloc0(compressed, orig_len); memcpy(compressed, value, orig_len); crm_debug_2("Trying to decompress %d bytes", (int)orig_len); retry: crm_realloc(uncompressed, size); memset(uncompressed, 0, size); used = size - 1; /* always leave room for a trailing '\0' * BZ2_bzBuffToBuffDecompress wont say anything if * the uncompressed data is exactly 'size' bytes */ rc = BZ2_bzBuffToBuffDecompress( uncompressed, &used, compressed, orig_len, 1, 0); if(rc == BZ_OUTBUFF_FULL) { size = size * 2; /* dont try to allocate more memory than we have */ if(size > 0) { goto retry; } } if(rc != BZ_OK) { crm_err("Decompression of %s (%d bytes) into %d failed: %d", name, (int)orig_len, size, rc); } else { CRM_ASSERT(used < size); CRM_CHECK(uncompressed[used] == 0, uncompressed[used] = 0); xml = string2xml(uncompressed); } if(xml != NULL) { add_node_copy(parent, xml); free_xml(xml); } crm_free(uncompressed); crm_free(compressed); break; } } xmlNode * convert_ha_message(xmlNode *parent, HA_Message *msg, const char *field) { int lpc = 0; xmlNode *child = NULL; const char *tag = NULL; CRM_CHECK(msg != NULL, crm_err("Empty message for %s", field); return parent); tag = cl_get_string(msg, F_XML_TAGNAME); if(tag == NULL) { tag = field; } else if(parent && safe_str_neq(field, tag)) { /* For compatability with 0.6.x */ crm_debug("Creating intermediate parent %s between %s and %s", field, crm_element_name(parent), tag); parent = create_xml_node(parent, field); } if(parent == NULL) { parent = create_xml_node(NULL, tag); child = parent; } else { child = create_xml_node(parent, tag); } for (lpc = 0; lpc < msg->nfields; lpc++) { convert_ha_field(child, msg, lpc); } return parent; } xmlNode *convert_ipc_message(IPC_Message *msg, const char *field) { HA_Message *hmsg = wirefmt2msg((char *)msg->msg_body, msg->msg_len, 0); xmlNode *xml = convert_ha_message(NULL, hmsg, __FUNCTION__); crm_msg_del(hmsg); return xml; } xmlNode * get_message_xml(xmlNode *msg, const char *field) { xmlNode *tmp = first_named_child(msg, field); return __xml_first_child(tmp); } gboolean add_message_xml(xmlNode *msg, const char *field, xmlNode *xml) { xmlNode *holder = create_xml_node(msg, field); add_node_copy(holder, xml); return TRUE; } static char * dump_xml(xmlNode *an_xml_node, gboolean formatted, gboolean for_digest) { int len = 0; char *buffer = NULL; xmlBuffer *xml_buffer = NULL; xmlDoc *doc = getDocPtr(an_xml_node); /* doc will only be NULL if an_xml_node is */ CRM_CHECK(doc != NULL, return NULL); xml_buffer = xmlBufferCreate(); CRM_ASSERT(xml_buffer != NULL); len = xmlNodeDump(xml_buffer, doc, an_xml_node, 0, formatted); if(len > 0) { /* The copying here isn't ideal, but it doesn't even register * in the perf numbers */ if(for_digest) { /* for compatability with the old result which is used for digests */ len += 3; crm_malloc0(buffer, len); snprintf(buffer, len, " %s\n", (char *)xml_buffer->content); } else { buffer = crm_strdup((char *)xml_buffer->content); } } else { crm_err("Conversion failed"); } xmlBufferFree(xml_buffer); return buffer; } char * dump_xml_formatted(xmlNode *an_xml_node) { return dump_xml(an_xml_node, TRUE, FALSE); } char * dump_xml_unformatted(xmlNode *an_xml_node) { return dump_xml(an_xml_node, FALSE, FALSE); } #define update_buffer() do { \ if(printed < 0) { \ crm_perror(LOG_ERR,"snprintf failed"); \ goto print; \ } else if(printed >= (buffer_len - offset)) { \ crm_err("Output truncated: available=%d, needed=%d", buffer_len - offset, printed); \ offset += printed; \ goto print; \ } else if(offset >= buffer_len) { \ crm_err("Buffer exceeded"); \ offset += printed; \ goto print; \ } else { \ offset += printed; \ } \ } while(0) int print_spaces(char *buffer, int depth, int max) { int lpc = 0; int spaces = 2*depth; max--; /* <= so that we always print 1 space - prevents problems with syslog */ for(lpc = 0; lpc <= spaces && lpc < max; lpc++) { if(sprintf(buffer+lpc, "%c", ' ') < 1) { return -1; } } return lpc; } int log_data_element( int log_level, const char *file, const char *function, int line, const char *prefix, xmlNode *data, int depth, gboolean formatted) { xmlNode *a_child = NULL; int child_result = 0; int offset = 0; int printed = 0; char *buffer = NULL; int buffer_len = 1000; const char *name = NULL; const char *hidden = NULL; if(data == NULL) { crm_warn("No data to dump as XML"); return 0; } name = crm_element_name(data); CRM_ASSERT(name != NULL); crm_debug_5("Dumping %s", name); crm_malloc0(buffer, buffer_len); if(formatted) { offset = print_spaces(buffer, depth, buffer_len - offset); } printed = snprintf(buffer + offset, buffer_len - offset, "<%s", name); update_buffer(); hidden = crm_element_value(data, "hidden"); xml_prop_iter( data, prop_name, prop_value, if(prop_name == NULL || safe_str_eq(F_XML_TAGNAME, prop_name)) { continue; } else if(hidden != NULL && prop_name[0] != 0 && strstr(hidden, prop_name) != NULL) { prop_value = "*****"; } crm_debug_5("Dumping <%s %s=\"%s\"...", name, prop_name, prop_value); printed = snprintf(buffer + offset, buffer_len - offset, " %s=\"%s\"", prop_name, prop_value); update_buffer(); ); printed = snprintf(buffer + offset, buffer_len - offset, " %s>", xml_has_children(data)?"":"/"); update_buffer(); print: do_crm_log_alias(log_level, file, function, line, "%s%s", prefix?prefix:"", buffer); if(xml_has_children(data) == FALSE) { crm_free(buffer); return 0; } for(a_child = __xml_first_child(data); a_child != NULL; a_child = __xml_next(a_child)) { child_result = log_data_element( log_level, file, function, line, prefix, a_child, depth+1, formatted); } if(formatted) { offset = print_spaces(buffer, depth, buffer_len); } do_crm_log_alias(log_level, file, function, line, "%s%s", prefix?prefix:"", buffer, name); crm_free(buffer); return 1; } gboolean xml_has_children(const xmlNode *xml_root) { if(xml_root != NULL && xml_root->children != NULL) { return TRUE; } return FALSE; } void xml_validate(const xmlNode *xml_root) { CRM_ASSERT(xml_root != NULL); } int crm_element_value_int(xmlNode *data, const char *name, int *dest) { const char *value = crm_element_value(data, name); CRM_CHECK(dest != NULL, return -1); if(value) { *dest = crm_int_helper(value, NULL); return 0; } return -1; } const char * crm_element_value_const(const xmlNode *data, const char *name) { return crm_element_value((xmlNode*)data, name); } char * crm_element_value_copy(xmlNode *data, const char *name) { char *value_copy = NULL; const char *value = crm_element_value(data, name); if(value != NULL) { value_copy = crm_strdup(value); } return value_copy; } void xml_remove_prop(xmlNode *obj, const char *name) { xmlUnsetProp(obj, (const xmlChar*)name); } void log_xml_diff(unsigned int log_level, xmlNode *diff, const char *function) { xmlNode *child = NULL; xmlNode *added = find_xml_node(diff, "diff-added", FALSE); xmlNode *removed = find_xml_node(diff, "diff-removed", FALSE); gboolean is_first = TRUE; if(crm_log_level < log_level) { /* nothing will ever be printed */ return; } for(child = __xml_first_child(removed); child != NULL; child = __xml_next(child)) { log_data_element(log_level, NULL, function, 0, "-", child, 0, TRUE); if(is_first) { is_first = FALSE; } else { do_crm_log(log_level, " --- "); } } is_first = TRUE; for(child = __xml_first_child(added); child != NULL; child = __xml_next(child)) { log_data_element(log_level, NULL, function, 0, "+", child, 0, TRUE); if(is_first) { is_first = FALSE; } else { do_crm_log(log_level, " +++ "); } } } void purge_diff_markers(xmlNode *a_node) { xmlNode *child = NULL; CRM_CHECK(a_node != NULL, return); xml_remove_prop(a_node, XML_DIFF_MARKER); for(child = __xml_first_child(a_node); child != NULL; child = __xml_next(child)) { purge_diff_markers(child); } } gboolean apply_xml_diff(xmlNode *old, xmlNode *diff, xmlNode **new) { gboolean result = TRUE; int root_nodes_seen = 0; const char *digest = crm_element_value(diff, XML_ATTR_DIGEST); const char *version = crm_element_value(diff, XML_ATTR_CRM_VERSION); xmlNode *child_diff = NULL; xmlNode *added = find_xml_node(diff, "diff-added", FALSE); xmlNode *removed = find_xml_node(diff, "diff-removed", FALSE); CRM_CHECK(new != NULL, return FALSE); crm_debug_2("Substraction Phase"); for(child_diff = __xml_first_child(removed); child_diff != NULL; child_diff = __xml_next(child_diff)) { CRM_CHECK(root_nodes_seen == 0, result = FALSE); if(root_nodes_seen == 0) { *new = subtract_xml_object(NULL, old, child_diff, FALSE, NULL); } root_nodes_seen++; } if(root_nodes_seen == 0) { *new = copy_xml(old); } else if(root_nodes_seen > 1) { crm_err("(-) Diffs cannot contain more than one change set..." " saw %d", root_nodes_seen); result = FALSE; } root_nodes_seen = 0; crm_debug_2("Addition Phase"); if(result) { xmlNode *child_diff = NULL; for(child_diff = __xml_first_child(added); child_diff != NULL; child_diff = __xml_next(child_diff)) { CRM_CHECK(root_nodes_seen == 0, result = FALSE); if(root_nodes_seen == 0) { add_xml_object(NULL, *new, child_diff, TRUE); } root_nodes_seen++; } } if(root_nodes_seen > 1) { crm_err("(+) Diffs cannot contain more than one change set..." " saw %d", root_nodes_seen); result = FALSE; } else if(result && digest) { char *new_digest = NULL; purge_diff_markers(*new); /* Purge now so the diff is ok */ new_digest = calculate_xml_versioned_digest(*new, FALSE, TRUE, version); if(safe_str_neq(new_digest, digest)) { crm_info("Digest mis-match: expected %s, calculated %s", digest, new_digest); crm_log_xml_trace(old, "diff:original"); crm_log_xml_trace(diff, "diff:input"); result = FALSE; } else { crm_debug_2("Digest matched: expected %s, calculated %s", digest, new_digest); } crm_free(new_digest); #if XML_PARANOIA_CHECKS } else if(result) { int lpc = 0; xmlNode *intermediate = NULL; xmlNode *diff_of_diff = NULL; xmlNode *calc_added = NULL; xmlNode *calc_removed = NULL; const char *value = NULL; const char *name = NULL; const char *version_attrs[] = { XML_ATTR_NUMUPDATES, XML_ATTR_GENERATION, XML_ATTR_GENERATION_ADMIN }; crm_debug_2("Verification Phase"); intermediate = diff_xml_object(old, *new, FALSE); calc_added = find_xml_node(intermediate, "diff-added", FALSE); calc_removed = find_xml_node(intermediate, "diff-removed", FALSE); /* add any version details to the diff so they match */ for(lpc = 0; lpc < DIMOF(version_attrs); lpc++) { name = version_attrs[lpc]; value = crm_element_value(added, name); crm_xml_add(calc_added, name, value); value = crm_element_value(removed, name); crm_xml_add(calc_removed, name, value); } diff_of_diff = diff_xml_object(intermediate, diff, TRUE); if(diff_of_diff != NULL) { crm_info("Diff application failed!"); crm_log_xml_debug(old, "diff:original"); crm_log_xml_debug(diff, "diff:input"); result = FALSE; } else { purge_diff_markers(*new); } free_xml(diff_of_diff); free_xml(intermediate); diff_of_diff = NULL; intermediate = NULL; #endif } return result; } xmlNode * diff_xml_object(xmlNode *old, xmlNode *new, gboolean suppress) { xmlNode *tmp1 = NULL; xmlNode *diff = create_xml_node(NULL, "diff"); xmlNode *removed = create_xml_node(diff, "diff-removed"); xmlNode *added = create_xml_node(diff, "diff-added"); crm_xml_add(diff, XML_ATTR_CRM_VERSION, CRM_FEATURE_SET); tmp1 = subtract_xml_object(removed, old, new, FALSE, "removed:top"); if(suppress && tmp1 != NULL && can_prune_leaf(tmp1)) { free_xml_from_parent(removed, tmp1); } tmp1 = subtract_xml_object(added, new, old, TRUE, "added:top"); if(suppress && tmp1 != NULL && can_prune_leaf(tmp1)) { free_xml_from_parent(added, tmp1); } if(added->children == NULL && removed->children == NULL) { free_xml(diff); diff = NULL; } return diff; } gboolean can_prune_leaf(xmlNode *xml_node) { xmlNode *child = NULL; gboolean can_prune = TRUE; /* return FALSE; */ xml_prop_name_iter(xml_node, prop_name, if(safe_str_eq(prop_name, XML_ATTR_ID)) { continue; } can_prune = FALSE; ); for(child = __xml_first_child(xml_node); child != NULL; child = __xml_next(child)) { if(can_prune_leaf(child)) { free_xml(child); } else { can_prune = FALSE; } } return can_prune; } void diff_filter_context(int context, int upper_bound, int lower_bound, xmlNode *xml_node, xmlNode *parent) { xmlNode *us = NULL; xmlNode *child = NULL; xmlNode *new_parent = parent; const char *name = crm_element_name(xml_node); CRM_CHECK(xml_node != NULL && name != NULL, return); us = create_xml_node(parent, name); xml_prop_iter(xml_node, prop_name, prop_value, lower_bound = context; crm_xml_add(us, prop_name, prop_value); ); if(lower_bound >= 0 || upper_bound >= 0) { crm_xml_add(us, XML_ATTR_ID, ID(xml_node)); new_parent = us; } else { upper_bound = in_upper_context(0, context, xml_node); if(upper_bound >= 0) { crm_xml_add(us, XML_ATTR_ID, ID(xml_node)); new_parent = us; } else { free_xml(us); us = NULL; } } for(child = __xml_first_child(us); child != NULL; child = __xml_next(child)) { diff_filter_context(context, upper_bound-1, lower_bound-1, child, new_parent); } } int in_upper_context(int depth, int context, xmlNode *xml_node) { gboolean has_attributes = FALSE; if(context == 0) { return 0; } xml_prop_name_iter(xml_node, prop_name, has_attributes = TRUE; break); if(has_attributes) { return depth; } else if(depth < context) { xmlNode *child = NULL; for(child = __xml_first_child(xml_node); child != NULL; child = __xml_next(child)) { if(in_upper_context(depth+1, context, child)) { return depth; } } } return 0; } xmlNode * subtract_xml_object(xmlNode *parent, xmlNode *left, xmlNode *right, gboolean full, const char *marker) { gboolean skip = FALSE; gboolean differences = FALSE; xmlNode *diff = NULL; xmlNode *child_diff = NULL; xmlNode *right_child = NULL; xmlNode *left_child = NULL; const char *id = NULL; const char *name = NULL; const char *value = NULL; const char *right_val = NULL; int lpc = 0; static int filter_len = DIMOF(filter); if(left == NULL) { return NULL; } id = ID(left); if(right == NULL) { xmlNode *deleted = NULL; crm_debug_5("Processing <%s id=%s> (complete copy)", crm_element_name(left), id); deleted = add_node_copy(parent, left); crm_xml_add(deleted, XML_DIFF_MARKER, marker); return deleted; } name = crm_element_name(left); CRM_CHECK(name != NULL, return NULL); /* Avoiding creating the full heirarchy would save even more work here */ diff = create_xml_node(parent, name); /* Reset filter */ for(lpc = 0; lpc < filter_len; lpc++){ filter[lpc].found = FALSE; } /* changes to child objects */ for(left_child = __xml_first_child(left); left_child != NULL; left_child = __xml_next(left_child)) { right_child = find_entity( right, crm_element_name(left_child), ID(left_child)); child_diff = subtract_xml_object(diff, left_child, right_child, full, marker); if(child_diff != NULL) { differences = TRUE; } } if(differences == FALSE) { /* check for XML_DIFF_MARKER in a child */ for(right_child = __xml_first_child(right); right_child != NULL; right_child = __xml_next(right_child)) { value = crm_element_value(right_child, XML_DIFF_MARKER); if(value != NULL && safe_str_eq(value, "removed:top")) { crm_debug_3("Found the root of the deletion: %s", name); xml_prop_iter(left, name, value, xmlSetProp(diff, (const xmlChar*)name, (const xmlChar*)value)); differences = TRUE; goto done; } } } else if(full) { xml_prop_iter(left, name, value, xmlSetProp(diff, (const xmlChar*)name, (const xmlChar*)value)); /* We already have everything we need... */ goto done; } else if(id) { xmlSetProp(diff, (const xmlChar*)XML_ATTR_ID, (const xmlChar*)id); } /* changes to name/value pairs */ xml_prop_name_iter( left, prop_name, if(crm_str_eq(prop_name, XML_ATTR_ID, TRUE)) { continue; } skip = FALSE; for(lpc = 0; skip == FALSE && lpc < filter_len; lpc++){ if(filter[lpc].found == FALSE && crm_str_eq(prop_name, filter[lpc].string, TRUE)) { filter[lpc].found = TRUE; skip = TRUE; break; } } if(skip) { continue; } right_val = crm_element_value(right, prop_name); if(right_val == NULL) { /* new */ differences = TRUE; if(full) { xml_prop_iter(left, name, value, xmlSetProp(diff, (const xmlChar*)name, (const xmlChar*)value)); break; } else { const char *left_value = crm_element_value(left, prop_name); xmlSetProp(diff, (const xmlChar*)prop_name, (const xmlChar*)value); crm_xml_add(diff, prop_name, left_value); } } else { /* Only now do we need the left value */ const char *left_value = crm_element_value(left, prop_name); if(strcmp(left_value, right_val) == 0) { /* unchanged */ } else { /* changed */ differences = TRUE; if(full) { xml_prop_iter(left, name, value, xmlSetProp(diff, (const xmlChar*)name, (const xmlChar*)value)); break; } else { crm_xml_add(diff, prop_name, left_value); } } } ); if(differences == FALSE) { free_xml_from_parent(parent, diff); crm_debug_5("\tNo changes to <%s id=%s>", crm_str(name), id); return NULL; } else if(full == FALSE && id) { crm_xml_add(diff, XML_ATTR_ID, id); } done: return diff; } int add_xml_object(xmlNode *parent, xmlNode *target, xmlNode *update, gboolean as_diff) { xmlNode *a_child = NULL; const char *object_id = NULL; const char *object_name = NULL; #if XML_PARSE_DEBUG crm_log_xml(LOG_DEBUG_5, "update:", update); crm_log_xml(LOG_DEBUG_5, "target:", target); #endif CRM_CHECK(update != NULL, return 0); object_name = crm_element_name(update); object_id = ID(update); CRM_CHECK(object_name != NULL, return 0); if(target == NULL && object_id == NULL) { /* placeholder object */ target = find_xml_node(parent, object_name, FALSE); } else if(target == NULL) { target = find_entity(parent, object_name, object_id); } if(target == NULL) { target = create_xml_node(parent, object_name); CRM_CHECK(target != NULL, return 0); #if XML_PARSER_DEBUG crm_debug_2("Added <%s%s%s/>", crm_str(object_name), object_id?" id=":"", object_id?object_id:""); } else { crm_debug_3("Found node <%s%s%s/> to update", crm_str(object_name), object_id?" id=":"", object_id?object_id:""); #endif } if(as_diff == FALSE) { /* So that expand_plus_plus() gets called */ copy_in_properties(target, update); } else { /* No need for expand_plus_plus(), just raw speed */ xml_prop_iter(update, p_name, p_value, /* Remove it first so the ordering of the update is preserved */ xmlUnsetProp(target, (const xmlChar*)p_name); xmlSetProp(target, (const xmlChar*)p_name, (const xmlChar*)p_value)); } for(a_child = __xml_first_child(update); a_child != NULL; a_child = __xml_next(a_child)) { #if XML_PARSER_DEBUG crm_debug_4("Updating child <%s id=%s>", crm_element_name(a_child), ID(a_child)); #endif add_xml_object(target, NULL, a_child, as_diff); } #if XML_PARSER_DEBUG crm_debug_3("Finished with <%s id=%s>", crm_str(object_name), crm_str(object_id)); #endif return 0; } gboolean update_xml_child(xmlNode *child, xmlNode *to_update) { gboolean can_update = TRUE; xmlNode *child_of_child = NULL; CRM_CHECK(child != NULL, return FALSE); CRM_CHECK(to_update != NULL, return FALSE); if(safe_str_neq(crm_element_name(to_update), crm_element_name(child))) { can_update = FALSE; } else if(safe_str_neq(ID(to_update), ID(child))) { can_update = FALSE; } else if(can_update) { #if XML_PARSER_DEBUG crm_log_xml_debug_2(child, "Update match found..."); #endif add_xml_object(NULL, child, to_update, FALSE); } for(child_of_child = __xml_first_child(child); child_of_child != NULL; child_of_child = __xml_next(child_of_child)) { /* only update the first one */ if(can_update) { break; } can_update = update_xml_child(child_of_child, to_update); } return can_update; } int find_xml_children(xmlNode **children, xmlNode *root, const char *tag, const char *field, const char *value, gboolean search_matches) { int match_found = 0; CRM_CHECK(root != NULL, return FALSE); CRM_CHECK(children != NULL, return FALSE); if(tag != NULL && safe_str_neq(tag, crm_element_name(root))) { } else if(value != NULL && safe_str_neq(value, crm_element_value(root, field))) { } else { if(*children == NULL) { *children = create_xml_node(NULL, __FUNCTION__); } add_node_copy(*children, root); match_found = 1; } if(search_matches || match_found == 0) { xmlNode *child = NULL; for(child = __xml_first_child(root); child != NULL; child = __xml_next(child)) { match_found += find_xml_children( children, child, tag, field, value, search_matches); } } return match_found; } gboolean replace_xml_child(xmlNode *parent, xmlNode *child, xmlNode *update, gboolean delete_only) { gboolean can_delete = FALSE; xmlNode *child_of_child = NULL; const char *up_id = NULL; const char *child_id = NULL; const char *right_val = NULL; CRM_CHECK(child != NULL, return FALSE); CRM_CHECK(update != NULL, return FALSE); up_id = ID(update); child_id = ID(child); if(up_id == NULL || safe_str_eq(child_id, up_id)) { can_delete = TRUE; } if(safe_str_neq(crm_element_name(update), crm_element_name(child))) { can_delete = FALSE; } if(can_delete && delete_only) { xml_prop_iter(update, prop_name, left_value, right_val = crm_element_value(child, prop_name); if(safe_str_neq(left_value, right_val)) { can_delete = FALSE; } ); } if(can_delete && parent != NULL) { crm_log_xml_debug_4(child, "Delete match found..."); if(delete_only || update == NULL) { free_xml_from_parent(NULL, child); } else { xmlNode *tmp = copy_xml(update); xmlDoc *doc = tmp->doc; xmlNode *old = xmlReplaceNode(child, tmp); free_xml_from_parent(NULL, old); xmlDocSetRootElement(doc, NULL); xmlFreeDoc(doc); } child = NULL; return TRUE; } else if(can_delete) { crm_log_xml_debug(child, "Cannot delete the search root"); can_delete = FALSE; } child_of_child = __xml_first_child(child); while(child_of_child) { xmlNode *next = __xml_next(child_of_child); can_delete = replace_xml_child(child, child_of_child, update, delete_only); /* only delete the first one */ if(can_delete) { child_of_child = NULL; } else { child_of_child = next; } } return can_delete; } void hash2nvpair(gpointer key, gpointer value, gpointer user_data) { const char *name = key; const char *s_value = value; xmlNode *xml_node = user_data; xmlNode *xml_child = create_xml_node(xml_node, XML_CIB_TAG_NVPAIR); crm_xml_add(xml_child, XML_ATTR_ID, name); crm_xml_add(xml_child, XML_NVPAIR_ATTR_NAME, name); crm_xml_add(xml_child, XML_NVPAIR_ATTR_VALUE, s_value); crm_debug_3("dumped: name=%s value=%s", name, s_value); } void hash2smartfield(gpointer key, gpointer value, gpointer user_data) { const char *name = key; const char *s_value = value; xmlNode *xml_node = user_data; if(isdigit(name[0])) { xmlNode *tmp = create_xml_node(xml_node, XML_TAG_PARAM); crm_xml_add(tmp, XML_NVPAIR_ATTR_NAME, name); crm_xml_add(tmp, XML_NVPAIR_ATTR_VALUE, s_value); } else if(crm_element_value(xml_node, name) == NULL) { crm_xml_add(xml_node, name, s_value); crm_debug_3("dumped: %s=%s", name, s_value); } else { crm_debug_2("duplicate: %s=%s", name, s_value); } } void hash2field(gpointer key, gpointer value, gpointer user_data) { const char *name = key; const char *s_value = value; xmlNode *xml_node = user_data; if(crm_element_value(xml_node, name) == NULL) { crm_xml_add(xml_node, name, s_value); crm_debug_3("dumped: %s=%s", name, s_value); } else { crm_debug_2("duplicate: %s=%s", name, s_value); } } void hash2metafield(gpointer key, gpointer value, gpointer user_data) { char *crm_name = NULL; if(key == NULL || value == NULL) { return; } else if(((char*)key)[0] == '#') { return; } else if(strstr(key, ":")) { return; } crm_name = crm_meta_name(key); hash2field(crm_name, value, user_data); crm_free(crm_name); } GHashTable * xml2list(xmlNode *parent) { xmlNode *child = NULL; xmlNode *nvpair_list = NULL; GHashTable *nvpair_hash = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); CRM_CHECK(parent != NULL, return nvpair_hash); nvpair_list = find_xml_node(parent, XML_TAG_ATTRS, FALSE); if(nvpair_list == NULL) { crm_debug_2("No attributes in %s", crm_element_name(parent)); crm_log_xml_debug_2( parent,"No attributes for resource op"); } crm_log_xml_debug_3(nvpair_list, "Unpacking"); xml_prop_iter( nvpair_list, key, value, crm_debug_4("Added %s=%s", key, value); g_hash_table_insert( nvpair_hash, crm_strdup(key), crm_strdup(value)); ); for(child = __xml_first_child(nvpair_list); child != NULL; child = __xml_next(child)) { if(crm_str_eq((const char *)child->name, XML_TAG_PARAM, TRUE)) { const char *key = crm_element_value(child, XML_NVPAIR_ATTR_NAME); const char *value = crm_element_value(child, XML_NVPAIR_ATTR_VALUE); crm_debug_4("Added %s=%s", key, value); if(key != NULL && value != NULL) { g_hash_table_insert(nvpair_hash, crm_strdup(key), crm_strdup(value)); } } } return nvpair_hash; } typedef struct name_value_s { const char *name; const void *value; } name_value_t; static gint sort_pairs(gconstpointer a, gconstpointer b) { int rc = 0; const name_value_t *pair_a = a; const name_value_t *pair_b = b; CRM_ASSERT(a != NULL); CRM_ASSERT(pair_a->name != NULL); CRM_ASSERT(b != NULL); CRM_ASSERT(pair_b->name != NULL); rc = strcmp(pair_a->name, pair_b->name); if(rc < 0) { return -1; } else if(rc > 0) { return 1; } return 0; } static void dump_pair(gpointer data, gpointer user_data) { name_value_t *pair = data; xmlNode *parent = user_data; crm_xml_add(parent, pair->name, pair->value); } xmlNode * sorted_xml(xmlNode *input, xmlNode *parent, gboolean recursive) { xmlNode *child = NULL; GListPtr sorted = NULL; GListPtr unsorted = NULL; name_value_t *pair = NULL; xmlNode *result = NULL; const char *name = NULL; CRM_CHECK(input != NULL, return NULL); name = crm_element_name(input); CRM_CHECK(name != NULL, return NULL); result = create_xml_node(parent, name); xml_prop_iter(input, p_name, p_value, crm_malloc0(pair, sizeof(name_value_t)); pair->name = p_name; pair->value = p_value; unsorted = g_list_prepend(unsorted, pair); pair = NULL; ); sorted = g_list_sort(unsorted, sort_pairs); g_list_foreach(sorted, dump_pair, result); slist_basic_destroy(sorted); for(child = __xml_first_child(input); child != NULL; child = __xml_next(child)) { if(recursive) { sorted_xml(child, result, recursive); } else { add_node_copy(result, child); } } return result; } static void filter_xml(xmlNode *data, filter_t *filter, int filter_len, gboolean recursive) { int lpc = 0; xmlNode *child = NULL; for(lpc = 0; lpc < filter_len; lpc++) { xml_remove_prop(data, filter[lpc].string); } if(recursive == FALSE || filter_len == 0) { return; } for(child = __xml_first_child(data); child != NULL; child = __xml_next(child)) { filter_xml(child, filter, filter_len, recursive); } } /* "c048eae664dba840e1d2060f00299e9d" */ static char * calculate_xml_digest_v1(xmlNode *input, gboolean sort, gboolean do_filter) { int i = 0; int digest_len = 16; char *digest = NULL; unsigned char *raw_digest = NULL; xmlNode *copy = NULL; char *buffer = NULL; size_t buffer_len = 0; if(sort || do_filter) { copy = sorted_xml(input, NULL, TRUE); input = copy; } if(do_filter) { filter_xml(input, filter, DIMOF(filter), TRUE); } buffer = dump_xml(input, FALSE, TRUE); buffer_len = strlen(buffer); CRM_CHECK(buffer != NULL && buffer_len > 0, free_xml(copy); crm_free(buffer); return NULL); crm_malloc(digest, (2 * digest_len + 1)); crm_malloc(raw_digest, (digest_len + 1)); MD5((unsigned char *)buffer, buffer_len, raw_digest); for(i = 0; i < digest_len; i++) { sprintf(digest+(2*i), "%02x", raw_digest[i]); } digest[(2*digest_len)] = 0; crm_debug_2("Digest %s: %s\n", digest, buffer); crm_log_xml(LOG_DEBUG_3, "digest:source", copy); crm_free(buffer); crm_free(raw_digest); free_xml(copy); return digest; } static char * calculate_xml_digest_v2(xmlNode *input, gboolean do_filter) { int i = 0; int digest_len = 16; char *digest = NULL; size_t buffer_len = 0; int filter_size = DIMOF(filter); unsigned char *raw_digest = NULL; xmlDoc *doc = NULL; xmlNode *copy = NULL; xmlBuffer *xml_buffer = NULL; if(do_filter && BEST_EFFORT_STATUS) { /* Exclude the status calculation from the digest * * This doesn't mean it wont be sync'd, we just wont be paranoid * about it being an _exact_ copy * * We don't need it to be exact, since we throw it away and regenerate * from our peers whenever a new DC is elected anyway * * Importantly, this reduces the amount of XML to copy+export as * well as the amount of data for MD5 needs to operate on */ xmlNode *child = NULL; copy = create_xml_node(NULL, XML_TAG_CIB); xml_prop_iter(input, p_name, p_value, xmlSetProp(copy, (const xmlChar*)p_name, (const xmlChar*)p_value)); xml_remove_prop(copy, XML_ATTR_ORIGIN); xml_remove_prop(copy, XML_CIB_ATTR_WRITTEN); /* We just did all the filtering */ for(child = __xml_first_child(input); child != NULL; child = __xml_next(child)) { if(safe_str_neq(crm_element_name(child), XML_CIB_TAG_STATUS)) { add_node_copy(copy, child); } } } else if(do_filter) { copy = copy_xml(input); filter_xml(copy, filter, filter_size, TRUE); input = copy; } doc = getDocPtr(input); xml_buffer = xmlBufferCreate(); CRM_ASSERT(xml_buffer != NULL); CRM_CHECK(doc != NULL, return NULL); /* doc will only be NULL if an_xml_node is */ buffer_len = xmlNodeDump(xml_buffer, doc, input, 0, FALSE); CRM_CHECK(xml_buffer->content != NULL && buffer_len > 0, goto done); crm_malloc(digest, (2 * digest_len + 1)); crm_malloc(raw_digest, (digest_len + 1)); MD5((unsigned char *)xml_buffer->content, buffer_len, raw_digest); for(i = 0; i < digest_len; i++) { sprintf(digest+(2*i), "%02x", raw_digest[i]); } digest[(2*digest_len)] = 0; crm_trace("Digest %s\n", digest); crm_log_xml_trace(input, "digest:source"); done: xmlBufferFree(xml_buffer); crm_free(raw_digest); free_xml(copy); return digest; } char * calculate_on_disk_digest(xmlNode *input) { /* Always use the v1 format for on-disk digests * a) its a compatability nightmare * b) we only use this once at startup, all other * invocations are in a separate child process */ return calculate_xml_digest_v1(input, FALSE, FALSE); } char * calculate_operation_digest(xmlNode *input, const char *version) { /* We still need the sorting for parameter digests */ return calculate_xml_digest_v1(input, TRUE, FALSE); } char * calculate_xml_digest(xmlNode *input, gboolean sort, gboolean do_filter) { return calculate_xml_digest_v1(input, sort, do_filter); } char * calculate_xml_versioned_digest(xmlNode *input, gboolean sort, gboolean do_filter, const char *version) { /* * The sorting associated with v1 digest creation accounted for 23% of * the CIB's CPU usage on the server. v2 drops this. * * The filtering accounts for an additional 2.5% and we may want to * remove it in future. * * v2 also uses the xmlBuffer contents directly to avoid additional copying */ if(version == NULL || compare_version("3.0.5", version) > 0) { crm_trace("Using v1 digest algorithm for %s", crm_str(version)); return calculate_xml_digest_v1(input, sort, do_filter); } crm_trace("Using v2 digest algorithm for %s", crm_str(version)); return calculate_xml_digest_v2(input, do_filter); } #if HAVE_LIBXML2 # include # include # include # include # include #endif static gboolean validate_with_dtd( xmlDocPtr doc, gboolean to_logs, const char *dtd_file) { gboolean valid = TRUE; xmlDtdPtr dtd = NULL; xmlValidCtxtPtr cvp = NULL; CRM_CHECK(doc != NULL, return FALSE); CRM_CHECK(dtd_file != NULL, return FALSE); dtd = xmlParseDTD(NULL, (const xmlChar *)dtd_file); CRM_CHECK(dtd != NULL, crm_err("Could not find/parse %s", dtd_file); goto cleanup); cvp = xmlNewValidCtxt(); CRM_CHECK(cvp != NULL, goto cleanup); if(to_logs) { cvp->userData = (void *) LOG_ERR; cvp->error = (xmlValidityErrorFunc) cl_log; cvp->warning = (xmlValidityWarningFunc) cl_log; } else { cvp->userData = (void *) stderr; cvp->error = (xmlValidityErrorFunc) fprintf; cvp->warning = (xmlValidityWarningFunc) fprintf; } if (!xmlValidateDtd(cvp, doc, dtd)) { valid = FALSE; } cleanup: if(cvp) { xmlFreeValidCtxt(cvp); } if(dtd) { xmlFreeDtd(dtd); } return valid; } xmlNode *first_named_child(xmlNode *parent, const char *name) { xmlNode *match = NULL; for(match = __xml_first_child(parent); match != NULL; match = __xml_next(match)) { /* * name == NULL gives first child regardless of name; this is * semantically incorrect in this funciton, but may be necessary * due to prior use of xml_child_iter_filter */ if(name == NULL || crm_str_eq((const char*)match->name, name, TRUE)) { return match; } } return NULL; } #if 0 static void relaxng_invalid_stderr(void * userData, xmlErrorPtr error) { /* Structure xmlError struct _xmlError { int domain : What part of the library raised this er int code : The error code, e.g. an xmlParserError char * message : human-readable informative error messag xmlErrorLevel level : how consequent is the error char * file : the filename int line : the line number if available char * str1 : extra string information char * str2 : extra string information char * str3 : extra string information int int1 : extra number information int int2 : column number of the error or 0 if N/A void * ctxt : the parser context if available void * node : the node in the tree } */ crm_err("Structured error: line=%d, level=%d %s", error->line, error->level, error->message); } #endif static gboolean validate_with_relaxng( xmlDocPtr doc, gboolean to_logs, const char *relaxng_file, relaxng_ctx_cache_t **cached_ctx) { int rc = 0; gboolean valid = TRUE; relaxng_ctx_cache_t *ctx = NULL; CRM_CHECK(doc != NULL, return FALSE); CRM_CHECK(relaxng_file != NULL, return FALSE); if(cached_ctx && *cached_ctx) { ctx = *cached_ctx; } else { crm_info("Creating RNG parser context"); crm_malloc0(ctx, sizeof(relaxng_ctx_cache_t)); xmlLoadExtDtdDefaultValue = 1; ctx->parser = xmlRelaxNGNewParserCtxt(relaxng_file); CRM_CHECK(ctx->parser != NULL, goto cleanup); if(to_logs) { xmlRelaxNGSetParserErrors(ctx->parser, (xmlRelaxNGValidityErrorFunc) cl_log, (xmlRelaxNGValidityWarningFunc) cl_log, GUINT_TO_POINTER(LOG_ERR)); } else { xmlRelaxNGSetParserErrors(ctx->parser, (xmlRelaxNGValidityErrorFunc) fprintf, (xmlRelaxNGValidityWarningFunc) fprintf, stderr); } ctx->rng = xmlRelaxNGParse(ctx->parser); CRM_CHECK(ctx->rng != NULL, crm_err("Could not find/parse %s", relaxng_file); goto cleanup); ctx->valid = xmlRelaxNGNewValidCtxt(ctx->rng); CRM_CHECK(ctx->valid != NULL, goto cleanup); if(to_logs) { xmlRelaxNGSetValidErrors(ctx->valid, (xmlRelaxNGValidityErrorFunc) cl_log, (xmlRelaxNGValidityWarningFunc) cl_log, GUINT_TO_POINTER(LOG_ERR)); } else { xmlRelaxNGSetValidErrors(ctx->valid, (xmlRelaxNGValidityErrorFunc) fprintf, (xmlRelaxNGValidityWarningFunc) fprintf, stderr); } } /* xmlRelaxNGSetValidStructuredErrors( */ /* valid, relaxng_invalid_stderr, valid); */ xmlLineNumbersDefault(1); rc = xmlRelaxNGValidateDoc(ctx->valid, doc); if (rc > 0) { valid = FALSE; } else if (rc < 0) { crm_err("Internal libxml error during validation\n"); } cleanup: if(cached_ctx) { *cached_ctx = ctx; } else { if(ctx->parser != NULL) { xmlRelaxNGFreeParserCtxt(ctx->parser); } if(ctx->valid != NULL) { xmlRelaxNGFreeValidCtxt(ctx->valid); } if (ctx->rng != NULL) { xmlRelaxNGFree(ctx->rng); } crm_free(ctx); } return valid; } void crm_xml_cleanup(void) { int lpc = 0; relaxng_ctx_cache_t *ctx = NULL; crm_info("Cleaning up memory from libxml2"); for(; lpc < all_schemas; lpc++) { switch(known_schemas[lpc].type) { case 0: /* None */ break; case 1: /* DTD - Not cached */ break; case 2: /* RNG - Cached */ ctx = (relaxng_ctx_cache_t *)known_schemas[lpc].cache; if(ctx == NULL) { break; } if(ctx->parser != NULL) { xmlRelaxNGFreeParserCtxt(ctx->parser); } if(ctx->valid != NULL) { xmlRelaxNGFreeValidCtxt(ctx->valid); } if (ctx->rng != NULL) { xmlRelaxNGFree(ctx->rng); } crm_free(ctx); known_schemas[lpc].cache = NULL; break; default: break; } } xmlCleanupParser(); } static gboolean validate_with(xmlNode *xml, int method, gboolean to_logs) { xmlDocPtr doc = NULL; gboolean valid = FALSE; int type = known_schemas[method].type; const char *file = known_schemas[method].location; CRM_CHECK(xml != NULL, return FALSE); doc = getDocPtr(xml); crm_debug_2("Validating with: %s (type=%d)", crm_str(file), type); switch(type) { case 0: valid = TRUE; break; case 1: valid = validate_with_dtd(doc, to_logs, file); break; case 2: valid = validate_with_relaxng(doc, to_logs, file, (relaxng_ctx_cache_t**)&(known_schemas[method].cache)); break; default: crm_err("Unknown validator type: %d", type); break; } return valid; } #include static void dump_file(const char *filename) { FILE *fp = NULL; int ch, line = 0; CRM_CHECK(filename != NULL, return); fp = fopen(filename, "r"); CRM_CHECK(fp != NULL, return); fprintf(stderr, "%4d ", ++line); do { ch = getc(fp); if(ch == EOF) { putc('\n', stderr); break; } else if(ch == '\n') { fprintf(stderr, "\n%4d ", ++line); } else { putc(ch, stderr); } } while(1); fclose(fp); } gboolean validate_xml_verbose(xmlNode *xml_blob) { xmlDoc *doc = NULL; xmlNode *xml = NULL; gboolean rc = FALSE; char *filename = NULL; static char *template = NULL; if(template == NULL) { template = crm_strdup(CRM_STATE_DIR"/cib-invalid.XXXXXX"); } filename = mktemp(template); write_xml_file(xml_blob, filename, FALSE); dump_file(filename); doc = xmlParseFile(filename); xml = xmlDocGetRootElement(doc); rc = validate_xml(xml, NULL, FALSE); free_xml(xml); return rc; } gboolean validate_xml(xmlNode *xml_blob, const char *validation, gboolean to_logs) { int lpc = 0; if(validation == NULL) { validation = crm_element_value(xml_blob, XML_ATTR_VALIDATION); } if(validation == NULL) { validation = crm_element_value(xml_blob, "ignore-dtd"); if(crm_is_true(validation)) { validation = "none"; } else { validation = "pacemaker-1.0"; } } if(safe_str_eq(validation, "none")) { return TRUE; } for(; lpc < all_schemas; lpc++) { if(safe_str_eq(validation, known_schemas[lpc].name)) { return validate_with(xml_blob, lpc, to_logs); } } crm_err("Unknown validator: %s", validation); return FALSE; } static xmlNode *apply_transformation(xmlNode *xml, const char *transform) { xmlNode *out = NULL; xmlDocPtr res = NULL; xmlDocPtr doc = NULL; xsltStylesheet *xslt = NULL; CRM_CHECK(xml != NULL, return FALSE); doc = getDocPtr(xml); xmlLoadExtDtdDefaultValue = 1; xmlSubstituteEntitiesDefault(1); xslt = xsltParseStylesheetFile((const xmlChar *)transform); CRM_CHECK(xslt != NULL, goto cleanup); res = xsltApplyStylesheet(xslt, doc, NULL); CRM_CHECK(res != NULL, goto cleanup); out = xmlDocGetRootElement(res); cleanup: if(xslt) { xsltFreeStylesheet(xslt); } xsltCleanupGlobals(); xmlCleanupParser(); return out; } const char *get_schema_name(int version) { if(version < 0 || version >= all_schemas) { return "unknown"; } return known_schemas[version].name; } int get_schema_version(const char *name) { int lpc = 0; for(; lpc < all_schemas; lpc++) { if(safe_str_eq(name, known_schemas[lpc].name)) { return lpc; } } return -1; } /* set which validation to use */ #include int update_validation( xmlNode **xml_blob, int *best, gboolean transform, gboolean to_logs) { xmlNode *xml = NULL; char *value = NULL; int lpc = 0, match = -1, rc = cib_ok; CRM_CHECK(best != NULL, return cib_invalid_argument); CRM_CHECK(xml_blob != NULL, return cib_invalid_argument); CRM_CHECK(*xml_blob != NULL, return cib_invalid_argument); *best = 0; xml = *xml_blob; value = crm_element_value_copy(xml, XML_ATTR_VALIDATION); if(value != NULL) { match = get_schema_version(value); lpc = match; if(lpc >= 0 && transform == FALSE) { lpc++; } else if(lpc < 0) { crm_debug("Unknown validation type"); lpc = 0; } } if(match >= max_schemas) { /* nothing to do */ crm_free(value); *best = match; return cib_ok; } for(; lpc < max_schemas; lpc++) { gboolean valid = TRUE; crm_debug("Testing '%s' validation", known_schemas[lpc].name?known_schemas[lpc].name:""); valid = validate_with(xml, lpc, to_logs); if(valid) { *best = lpc; } if(valid && transform) { xmlNode *upgrade = NULL; int next = known_schemas[lpc].after_transform; if(next <= 0) { next = lpc+1; } crm_notice("Upgrading %s-style configuration to %s with %s", known_schemas[lpc].name, known_schemas[next].name, known_schemas[lpc].transform?known_schemas[lpc].transform:"no-op"); if(known_schemas[lpc].transform == NULL) { if(validate_with(xml, next, to_logs)) { crm_debug("Configuration valid for schema: %s", known_schemas[next].name); lpc = next; *best = next; rc = cib_ok; } else { crm_info("Configuration not valid for schema: %s", known_schemas[next].name); } } else { upgrade = apply_transformation(xml, known_schemas[lpc].transform); if(upgrade == NULL) { crm_err("Transformation %s failed", known_schemas[lpc].transform); rc = cib_transform_failed; } else if(validate_with(upgrade, next, to_logs)) { crm_info("Transformation %s successful", known_schemas[lpc].transform); lpc = next; *best = next; free_xml(xml); xml = upgrade; rc = cib_ok; } else { crm_err("Transformation %s did not produce a valid configuration", known_schemas[lpc].transform); crm_log_xml_info(upgrade, "transform:bad"); free_xml(upgrade); rc = cib_dtd_validation; } } } } if(*best > match) { crm_notice("Upgraded from %s to %s validation", value?value:"", known_schemas[*best].name); crm_xml_add(xml, XML_ATTR_VALIDATION, known_schemas[*best].name); } *xml_blob = xml; crm_free(value); return rc; } xmlNode * getXpathResult(xmlXPathObjectPtr xpathObj, int index) { xmlNode *match = NULL; CRM_CHECK(index >= 0, return NULL); CRM_CHECK(xpathObj != NULL, return NULL); if(index >= xpathObj->nodesetval->nodeNr) { crm_err("Requested index %d of only %d items", index, xpathObj->nodesetval->nodeNr); return NULL; } match = xpathObj->nodesetval->nodeTab[index]; CRM_CHECK(match != NULL, return NULL); /* * From xpath2.c * * All the elements returned by an XPath query are pointers to * elements from the tree *except* namespace nodes where the XPath * semantic is different from the implementation in libxml2 tree. * As a result when a returned node set is freed when * xmlXPathFreeObject() is called, that routine must check the * element type. But node from the returned set may have been removed * by xmlNodeSetContent() resulting in access to freed data. * This can be exercised by running * valgrind xpath2 test3.xml '//discarded' discarded * There is 2 ways around it: * - make a copy of the pointers to the nodes from the result set * then call xmlXPathFreeObject() and then modify the nodes * or * - remove the reference to the modified nodes from the node set * as they are processed, if they are not namespace nodes. */ if (xpathObj->nodesetval->nodeTab[index]->type != XML_NAMESPACE_DECL) { xpathObj->nodesetval->nodeTab[index] = NULL; } if(match->type == XML_DOCUMENT_NODE) { /* Will happen if section = '/' */ match = match->children; } else if(match->type != XML_ELEMENT_NODE && match->parent && match->parent->type == XML_ELEMENT_NODE) { /* reurning the parent instead */ match = match->parent; } else if(match->type != XML_ELEMENT_NODE) { /* We only support searching nodes */ crm_err("We only support %d not %d", XML_ELEMENT_NODE, match->type); match = NULL; } return match; } /* the caller needs to check if the result contains a xmlDocPtr or xmlNodePtr */ xmlXPathObjectPtr xpath_search(xmlNode *xml_top, const char *path) { xmlDocPtr doc = NULL; xmlXPathObjectPtr xpathObj = NULL; xmlXPathContextPtr xpathCtx = NULL; const xmlChar *xpathExpr = (const xmlChar *)path; CRM_CHECK(path != NULL, return NULL); CRM_CHECK(xml_top != NULL, return NULL); CRM_CHECK(strlen(path) > 0, return NULL); doc = getDocPtr(xml_top); crm_debug_2("Evaluating: %s", path); xpathCtx = xmlXPathNewContext(doc); CRM_ASSERT(xpathCtx != NULL); xpathObj = xmlXPathEvalExpression(xpathExpr, xpathCtx); xmlXPathFreeContext(xpathCtx); return xpathObj; } gboolean cli_config_update(xmlNode **xml, int *best_version, gboolean to_logs) { gboolean rc = TRUE; static int min_version = -1; static int max_version = -1; const char *value = crm_element_value(*xml, XML_ATTR_VALIDATION); int version = get_schema_version(value); if(min_version < 0) { min_version = get_schema_version(MINIMUM_SCHEMA_VERSION); } if(max_version < 0) { max_version = get_schema_version(LATEST_SCHEMA_VERSION); } if(version < min_version) { xmlNode *converted = NULL; converted = copy_xml(*xml); update_validation(&converted, &version, TRUE, to_logs); value = crm_element_value(converted, XML_ATTR_VALIDATION); if(version < min_version) { if(to_logs) { crm_config_err("Your current configuration could only be upgraded to %s... " "the minimum requirement is %s.\n", crm_str(value), MINIMUM_SCHEMA_VERSION); } else { fprintf(stderr, "Your current configuration could only be upgraded to %s... " "the minimum requirement is %s.\n", crm_str(value), MINIMUM_SCHEMA_VERSION); } free_xml(converted); converted = NULL; rc = FALSE; } else { free_xml(*xml); *xml = converted; if(version < max_version) { crm_config_warn("Your configuration was internally updated to %s... " "which is acceptable but not the most recent", get_schema_name(version)); } else if(to_logs){ crm_info("Your configuration was internally updated to the latest version (%s)", get_schema_name(version)); } } } else if(version > max_version) { if(to_logs){ crm_config_warn("Configuration validation is currently disabled." " It is highly encouraged and prevents many common cluster issues."); } else { fprintf(stderr, "Configuration validation is currently disabled." " It is highly encouraged and prevents many common cluster issues.\n"); } } if(best_version) { *best_version = version; } return rc; } xmlNode *expand_idref(xmlNode *input, xmlNode *top) { const char *tag = NULL; const char *ref = NULL; xmlNode *result = input; char *xpath_string = NULL; if(result == NULL) { return NULL; } else if(top == NULL) { top = input; } tag = crm_element_name(result); ref = crm_element_value(result, XML_ATTR_IDREF); if(ref != NULL) { int xpath_max = 512, offset = 0; crm_malloc0(xpath_string, xpath_max); offset += snprintf(xpath_string + offset, xpath_max - offset, "//%s[@id='%s']", tag, ref); result = get_xpath_object(xpath_string, top, LOG_ERR); if(result == NULL) { char *nodePath = (char *)xmlGetNodePath(top); crm_err("No match for %s found in %s: Invalid configuration", xpath_string, crm_str(nodePath)); crm_free(nodePath); } } crm_free(xpath_string); return result; } xmlNode* get_xpath_object_relative(const char *xpath, xmlNode *xml_obj, int error_level) { int len = 0; xmlNode *result = NULL; char *xpath_full = NULL; char *xpath_prefix = NULL; if(xml_obj == NULL || xpath == NULL) { return NULL; } xpath_prefix = (char *)xmlGetNodePath(xml_obj); len += strlen(xpath_prefix); len += strlen(xpath); xpath_full = crm_strdup(xpath_prefix); crm_realloc(xpath_full, len+1); strncat(xpath_full, xpath, len); result = get_xpath_object(xpath_full, xml_obj, error_level); crm_free(xpath_prefix); crm_free(xpath_full); return result; } xmlNode* get_xpath_object(const char *xpath, xmlNode *xml_obj, int error_level) { xmlNode *result = NULL; xmlXPathObjectPtr xpathObj = NULL; char *nodePath = NULL; char *matchNodePath = NULL; if(xpath == NULL) { return xml_obj; /* or return NULL? */ } xpathObj = xpath_search(xml_obj, xpath); nodePath = (char *)xmlGetNodePath(xml_obj); if(xpathObj == NULL || xpathObj->nodesetval == NULL || xpathObj->nodesetval->nodeNr < 1) { do_crm_log(error_level, "No match for %s in %s", xpath, crm_str(nodePath)); crm_log_xml(error_level+1, "Unexpected Input", xml_obj); } else if(xpathObj->nodesetval->nodeNr > 1) { int lpc = 0, max = xpathObj->nodesetval->nodeNr; do_crm_log(error_level, "Too many matches for %s in %s", xpath, crm_str(nodePath)); for(lpc = 0; lpc < max; lpc++) { xmlNode *match = getXpathResult(xpathObj, lpc); CRM_CHECK(match != NULL, continue); matchNodePath = (char *)xmlGetNodePath(match); do_crm_log(error_level, "%s[%d] = %s", xpath, lpc, crm_str(matchNodePath)); crm_free(matchNodePath); } crm_log_xml(LOG_DEBUG_2, "Bad Input", xml_obj); } else { result = getXpathResult(xpathObj, 0); } if(xpathObj) { xmlXPathFreeObject(xpathObj); } crm_free(nodePath); return result; } const char * crm_element_value(xmlNode *data, const char *name) { xmlAttr *attr = NULL; if(data == NULL) { crm_err("Couldn't find %s in NULL", name?name:""); return NULL; } else if(name == NULL) { crm_err("Couldn't find NULL in %s", crm_element_name(data)); return NULL; } attr = xmlHasProp(data, (const xmlChar*)name); if(attr == NULL || attr->children == NULL) { return NULL; } return (const char*)attr->children->content; } diff --git a/lib/fencing/st_client.c b/lib/fencing/st_client.c index 2bf5a49a86..a5766f0e53 100644 --- a/lib/fencing/st_client.c +++ b/lib/fencing/st_client.c @@ -1,1613 +1,1613 @@ /* * Copyright (c) 2004 Andrew Beekhof * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #define FE_AGENT_FORK -2 #define FE_AGENT_ERROR -3 CRM_TRACE_INIT_DATA(stonith); typedef struct stonith_private_s { char *token; IPC_Channel *command_channel; IPC_Channel *callback_channel; GCHSource *callback_source; GHashTable *stonith_op_callback_table; void (*op_callback)( stonith_t *st, const xmlNode *msg, int call, int rc, xmlNode *output, void *userdata); } stonith_private_t; typedef struct stonith_notify_client_s { const char *event; const char *obj_id; /* implement one day */ const char *obj_type; /* implement one day */ void (*notify)(stonith_t *st, const char *event, xmlNode *msg); } stonith_notify_client_t; typedef struct stonith_callback_client_s { void (*callback)( stonith_t *st, const xmlNode *msg, int call, int rc, xmlNode *output, void *userdata); const char *id; void *user_data; gboolean only_success; struct timer_rec_s *timer; } stonith_callback_client_t; struct notify_blob_s { stonith_t *stonith; xmlNode *xml; }; struct timer_rec_s { int call_id; int timeout; guint ref; stonith_t *stonith; }; typedef enum stonith_errors (*stonith_op_t)( const char *, int, const char *, xmlNode *, xmlNode*, xmlNode*, xmlNode**, xmlNode**); static const char META_TEMPLATE[] = "\n" "\n" "\n" " 1.0\n" " \n" "%s\n" " \n" " %s\n" "%s\n" " \n" " \n" " \n" " \n" " \n" " \n" " \n" " \n" " 2.0\n" " \n" "\n"; gboolean stonith_dispatch(IPC_Channel *channel, gpointer user_data); void stonith_perform_callback(stonith_t *stonith, xmlNode *msg, int call_id, int rc); xmlNode *stonith_create_op( int call_id, const char *token, const char *op, xmlNode *data, int call_options); int stonith_send_command( stonith_t *stonith, const char *op, xmlNode *data, xmlNode **output_data, int call_options, int timeout); static void stonith_connection_destroy(gpointer user_data); static void stonith_send_notification(gpointer data, gpointer user_data); static void stonith_connection_destroy(gpointer user_data) { stonith_t *stonith = user_data; stonith_private_t *native = NULL; struct notify_blob_s blob; blob.stonith = stonith; blob.xml = create_xml_node(NULL, "notify");; native = stonith->private; native->callback_source = NULL; stonith->state = stonith_disconnected; crm_xml_add(blob.xml, F_TYPE, T_STONITH_NOTIFY); crm_xml_add(blob.xml, F_SUBTYPE, T_STONITH_NOTIFY_DISCONNECT); g_list_foreach(stonith->notify_list, stonith_send_notification, &blob); free_xml(blob.xml); } static int stonith_api_register_device( stonith_t *stonith, int call_options, const char *id, const char *namespace, const char *agent, GHashTable *params) { int rc = 0; xmlNode *data = create_xml_node(NULL, F_STONITH_DEVICE); xmlNode *args = create_xml_node(data, XML_TAG_ATTRS); crm_xml_add(data, XML_ATTR_ID, id); crm_xml_add(data, "origin", __FUNCTION__); crm_xml_add(data, "agent", agent); crm_xml_add(data, "namespace", namespace); g_hash_table_foreach(params, hash2field, args); rc = stonith_send_command(stonith, STONITH_OP_DEVICE_ADD, data, NULL, call_options, 0); free_xml(data); return rc; } static int stonith_api_remove_device( stonith_t *stonith, int call_options, const char *name) { int rc = 0; xmlNode *data = NULL; data = create_xml_node(NULL, F_STONITH_DEVICE); crm_xml_add(data, "origin", __FUNCTION__); crm_xml_add(data, XML_ATTR_ID, name); rc = stonith_send_command(stonith, STONITH_OP_DEVICE_DEL, data, NULL, call_options, 0); free_xml(data); return rc; } static void append_arg( gpointer key, gpointer value, gpointer user_data) { int len = 3; /* =, \n, \0 */ int last = 0; char **args = user_data; CRM_CHECK(key != NULL, return); CRM_CHECK(value != NULL, return); if(strstr(key, "pcmk_")) { return; } else if(strstr(key, CRM_META)) { return; } else if(safe_str_eq(key, "crm_feature_set")) { return; } len += strlen(key); len += strlen(value); if(*args != NULL) { last = strlen(*args); } crm_realloc(*args, last+len); crm_debug_2("Appending: %s=%s", (char *)key, (char *)value); sprintf((*args)+last, "%s=%s\n", (char *)key, (char *)value); } static void append_const_arg(const char *key, const char *value, char **arg_list) { char *glib_sucks_key = crm_strdup(key); char *glib_sucks_value = crm_strdup(value); append_arg(glib_sucks_key, glib_sucks_value, arg_list); crm_free(glib_sucks_value); crm_free(glib_sucks_key); } static void append_host_specific_args(const char *victim, const char *map, GHashTable *params, char **arg_list) { char *name = NULL; int last = 0, lpc = 0, max = 0; if(map == NULL) { /* The best default there is for now... */ crm_debug("Using default arg map: port=uname"); append_const_arg("port", victim, arg_list); return; } max = strlen(map); crm_debug("Processing arg map: %s", map); for(; lpc < max + 1; lpc++) { if(isalpha(map[lpc])) { /* keep going */ } else if(map[lpc] == '=' || map[lpc] == ':') { crm_free(name); crm_malloc0(name, 1 + lpc - last); strncpy(name, map + last, lpc - last); crm_debug("Got name: %s", name); last = lpc + 1; } else if(map[lpc] == 0 || map[lpc] == ',' || isspace(map[lpc])) { char *param = NULL; const char *value = NULL; crm_malloc0(param, 1 + lpc - last); strncpy(param, map + last, lpc - last); last = lpc + 1; crm_debug("Got key: %s", param); if(name == NULL) { crm_err("Misparsed '%s', found '%s' without a name", map, param); crm_free(param); continue; } if(safe_str_eq(param, "uname")) { value = victim; } else { char *key = crm_meta_name(param); value = g_hash_table_lookup(params, key); crm_free(key); } if(value) { crm_debug("Setting '%s'='%s' (%s) for %s", name, value, param, victim); append_const_arg(name, value, arg_list); } else { crm_err("No node attribute '%s' for '%s'", name, victim); } crm_free(name); name=NULL; crm_free(param); if(map[lpc] == 0) { break; } } else if(isspace(map[lpc])) { last = lpc; } } crm_free(name); } static char *make_args(GHashTable *dev_hash, GHashTable *node_hash, const char *action, const char *victim) { char *arg_list = NULL; const char *map = NULL; CRM_CHECK(action != NULL, return NULL); if(dev_hash) { map = g_hash_table_lookup(dev_hash, STONITH_ATTR_ARGMAP); g_hash_table_foreach(dev_hash, append_arg, &arg_list); } append_const_arg(STONITH_ATTR_ACTION_OP, action, &arg_list); if(victim && safe_str_neq("none", map)) { append_const_arg("nodename", victim, &arg_list); append_host_specific_args(victim, map, node_hash, &arg_list); } crm_debug_3("Calculated: %s", arg_list); return arg_list; } /* Borrowed from libfence and extended */ int run_stonith_agent( const char *agent, GHashTable *dev_hash, GHashTable *node_hash, const char *action, const char *victim, int *agent_result, char **output, async_command_t *track) { char *args = make_args(dev_hash, node_hash, action, victim); int pid, status, len, rc = -1; int p_read_fd, p_write_fd; /* parent read/write file descriptors */ int c_read_fd, c_write_fd; /* child read/write file descriptors */ int fd1[2]; int fd2[2]; c_read_fd = c_write_fd = p_read_fd = p_write_fd = -1; if (args == NULL || agent == NULL) goto fail; len = strlen(args); if (pipe(fd1)) goto fail; p_read_fd = fd1[0]; c_write_fd = fd1[1]; if (pipe(fd2)) goto fail; c_read_fd = fd2[0]; p_write_fd = fd2[1]; crm_debug("forking"); pid = fork(); if (pid < 0) { *agent_result = FE_AGENT_FORK; goto fail; } if (pid) { /* parent */ int ret; fcntl(p_read_fd, F_SETFL, fcntl(p_read_fd, F_GETFL, 0) | O_NONBLOCK); do { crm_debug("sending args"); ret = write(p_write_fd, args, len); } while (ret < 0 && errno == EINTR); if (ret != len) { if(ret >= 0) { rc = st_err_generic; } goto fail; } close(p_write_fd); if(track) { track->stdout = p_read_fd; NewTrackedProc(pid, 0, PT_LOGNORMAL, track, track->pt_ops); crm_trace("Op: %s on %s, timeout: %d", action, agent, track->timeout); if(track->timeout) { track->killseq[0].mstimeout = track->timeout; /* after timeout send TERM */ track->killseq[0].signalno = SIGTERM; track->killseq[1].mstimeout = 5000; /* after another 5s remove it */ track->killseq[1].signalno = SIGKILL; track->killseq[2].mstimeout = 5000; /* if it's still there after another 5s, complain */ track->killseq[2].signalno = 0; SetTrackedProcTimeouts(pid, track->killseq); } else { crm_err("No timeout set for stonith operation %s with device %s", action, agent); } close(c_write_fd); close(c_read_fd); crm_free(args); return pid; } else { waitpid(pid, &status, 0); if(output != NULL) { len = 0; do { char buf[500]; ret = read(p_read_fd, buf, 500); if(ret > 0) { buf[ret] = 0; crm_realloc(*output, len + ret + 1); sprintf((*output)+len, "%s", buf); crm_debug("%d: %s", ret, (*output)+len); len += ret; } } while (ret == 500 || (ret < 0 && errno == EINTR)); } *agent_result = FE_AGENT_ERROR; if (WIFEXITED(status)) { crm_debug("result = %d", WEXITSTATUS(status)); *agent_result = -WEXITSTATUS(status); rc = 0; } if(node_hash) { g_hash_table_destroy(node_hash); } } } else { /* child */ close(1); if (dup(c_write_fd) < 0) goto fail; close(2); if (dup(c_write_fd) < 0) goto fail; close(0); if (dup(c_read_fd) < 0) goto fail; /* keep c_write_fd open so parent can report all errors. */ close(c_read_fd); close(p_read_fd); close(p_write_fd); execlp(agent, agent, NULL); exit(EXIT_FAILURE); } fail: crm_free(args); if(p_read_fd >= 0) { close(p_read_fd); } if(p_write_fd >= 0) { close(p_write_fd); } if(c_read_fd >= 0) { close(c_read_fd); } if(c_write_fd >= 0) { close(c_write_fd); } return rc; } static int stonith_api_device_metadata( stonith_t *stonith, int call_options, const char *agent, const char *namespace, char **output, int timeout) { int rc = 0; int bufferlen = 0; char *buffer = NULL; char *xml_meta_longdesc = NULL; char *xml_meta_shortdesc = NULL; char *meta_param = NULL; char *meta_longdesc = NULL; char *meta_shortdesc = NULL; const char *provider = get_stonith_provider(agent, namespace); Stonith *stonith_obj = NULL; static const char *no_parameter_info = ""; crm_info("looking up %s/%s metadata", agent, provider); /* By having this in a library, we can access it from stonith_admin * when neither lrmd or stonith-ng are running * Important for the crm shell's validations... */ if(safe_str_eq(provider, "redhat")) { int exec_rc = run_stonith_agent( agent, NULL, NULL, "metadata", NULL, &rc, &buffer, NULL); if(exec_rc < 0 || rc != 0 || buffer == NULL) { /* failed */ crm_debug("Query failed: %d %d: %s", exec_rc, rc, crm_str(buffer)); /* provide a fake metadata entry */ meta_longdesc = crm_strdup(no_parameter_info); meta_shortdesc = crm_strdup(no_parameter_info); meta_param = crm_strdup( " \n" " \n" " \n" " \n" " Fencing action (null, off, on, [reboot], status, hostlist, devstatus)\n" " \n" " "); goto build; } } else { stonith_obj = stonith_new(agent); meta_longdesc = crm_strdup(stonith_get_info(stonith_obj, ST_DEVICEDESCR)); if (meta_longdesc == NULL) { crm_warn("no long description in %s's metadata.", agent); meta_longdesc = crm_strdup(no_parameter_info); } meta_shortdesc = crm_strdup(stonith_get_info(stonith_obj, ST_DEVICEID)); if (meta_shortdesc == NULL) { crm_warn("no short description in %s's metadata.", agent); meta_shortdesc = crm_strdup(no_parameter_info); } meta_param = crm_strdup(stonith_get_info(stonith_obj, ST_CONF_XML)); if (meta_param == NULL) { crm_warn("no list of parameters in %s's metadata.", agent); meta_param = crm_strdup(no_parameter_info); } build: xml_meta_longdesc = (char *)xmlEncodeEntitiesReentrant(NULL, (const unsigned char *)meta_longdesc); xml_meta_shortdesc = (char *)xmlEncodeEntitiesReentrant(NULL, (const unsigned char *)meta_shortdesc); bufferlen = strlen(META_TEMPLATE) + strlen(agent) + strlen(xml_meta_longdesc) + strlen(xml_meta_shortdesc) + strlen(meta_param) + 1; crm_malloc0(buffer, bufferlen); snprintf(buffer, bufferlen-1, META_TEMPLATE, agent, xml_meta_longdesc, xml_meta_shortdesc, meta_param); xmlFree(xml_meta_longdesc); xmlFree(xml_meta_shortdesc); if(stonith_obj) { stonith_delete(stonith_obj); } crm_free(meta_shortdesc); crm_free(meta_longdesc); crm_free(meta_param); } if(output) { *output = buffer; } else { crm_free(buffer); } return rc; } static int stonith_api_confirm( stonith_t *stonith, int call_options, const char *target) { int rc = 0; xmlNode *data = NULL; data = create_xml_node(NULL, __FUNCTION__); crm_xml_add(data, F_STONITH_TARGET, target); rc = stonith_send_command(stonith, STONITH_OP_FENCE, data, NULL, call_options, 0); free_xml(data); return rc; } static int stonith_api_query( stonith_t *stonith, int call_options, const char *target, GListPtr *devices, int timeout) { int rc = 0, lpc = 0, max = 0; xmlNode *data = NULL; xmlNode *output = NULL; xmlXPathObjectPtr xpathObj = NULL; CRM_CHECK(devices != NULL, return st_err_missing); data = create_xml_node(NULL, F_STONITH_DEVICE); crm_xml_add(data, "origin", __FUNCTION__); crm_xml_add(data, F_STONITH_TARGET, target); rc = stonith_send_command(stonith, STONITH_OP_QUERY, data, &output, call_options, timeout); if(rc < 0) { return rc; } xpathObj = xpath_search(output, "//@agent"); if(xpathObj) { max = xpathObj->nodesetval->nodeNr; for(lpc = 0; lpc < max; lpc++) { xmlNode *match = getXpathResult(xpathObj, lpc); CRM_CHECK(match != NULL, continue); crm_info("%s[%d] = %s", "//@agent", lpc, xmlGetNodePath(match)); *devices = g_list_append(*devices, crm_element_value_copy(match, XML_ATTR_ID)); } } free_xml(output); free_xml(data); return max; } static int stonith_api_call( stonith_t *stonith, int call_options, const char *id, const char *action, const char *victim, int timeout) { int rc = 0; xmlNode *data = NULL; data = create_xml_node(NULL, F_STONITH_DEVICE); crm_xml_add(data, "origin", __FUNCTION__); crm_xml_add(data, F_STONITH_DEVICE, id); crm_xml_add(data, F_STONITH_ACTION, action); crm_xml_add(data, F_STONITH_TARGET, victim); rc = stonith_send_command(stonith, STONITH_OP_EXEC, data, NULL, call_options, timeout); free_xml(data); return rc; } static int stonith_api_fence( stonith_t *stonith, int call_options, const char *node, GHashTable *parameters, const char *action, int timeout) { int rc = 0; xmlNode *data = NULL; xmlNode *params = NULL; data = create_xml_node(NULL, __FUNCTION__); crm_xml_add(data, F_STONITH_TARGET, node); crm_xml_add(data, F_STONITH_ACTION, action); crm_xml_add_int(data, F_STONITH_TIMEOUT, timeout); params = create_xml_node(data, XML_TAG_ATTRS); g_hash_table_foreach(parameters, hash2nvpair, params); rc = stonith_send_command(stonith, STONITH_OP_FENCE, data, NULL, call_options, timeout); free_xml(data); return rc; } const char * stonith_error2string(enum stonith_errors return_code) { const char *error_msg = NULL; switch(return_code) { case stonith_ok: error_msg = "OK"; break; case st_err_not_supported: error_msg = "Not supported"; break; case st_err_authentication: error_msg = "Not authenticated"; break; case st_err_generic: error_msg = "Generic error"; break; case st_err_internal: error_msg = "Internal error"; break; case st_err_unknown_device: error_msg = "Unknown device"; break; case st_err_unknown_operation: error_msg = "Unknown operation"; break; case st_err_unknown_port: error_msg = "Unknown victim"; break; case st_err_none_available: error_msg = "No available fencing devices"; break; case st_err_connection: error_msg = "Not connected"; break; case st_err_missing: error_msg = "Missing input"; break; case st_err_exists: error_msg = "Device exists"; break; case st_err_timeout: error_msg = "Operation timed out"; break; case st_err_signal: error_msg = "Killed by signal"; break; case st_err_ipc: error_msg = "IPC connection failed"; break; case st_err_peer: error_msg = "Error from peer"; break; } if(error_msg == NULL) { crm_err("Unknown Stonith error code: %d", return_code); error_msg = ""; } return error_msg; } gboolean is_redhat_agent(const char *agent) { int rc = 0; struct stat prop; char buffer[FILENAME_MAX+1]; snprintf(buffer,FILENAME_MAX,"%s/%s", RH_STONITH_DIR, agent); rc = stat(buffer, &prop); if (rc >= 0 && S_ISREG(prop.st_mode)) { return TRUE; } return FALSE; } const char *get_stonith_provider(const char *agent, const char *provider) { /* This function sucks */ if(is_redhat_agent(agent)) { return "redhat"; } else { Stonith *stonith_obj = stonith_new(agent); if(stonith_obj) { stonith_delete(stonith_obj); return "heartbeat"; } } crm_err("No such device: %s", agent); return NULL; } static gint stonithlib_GCompareFunc(gconstpointer a, gconstpointer b) { int rc = 0; const stonith_notify_client_t *a_client = a; const stonith_notify_client_t *b_client = b; CRM_CHECK(a_client->event != NULL && b_client->event != NULL, return 0); rc = strcmp(a_client->event, b_client->event); if(rc == 0) { if(a_client->notify == NULL || b_client->notify == NULL) { return 0; } else if(a_client->notify == b_client->notify) { return 0; } else if(((long)a_client->notify) < ((long)b_client->notify)) { crm_err("callbacks for %s are not equal: %p vs. %p", a_client->event, a_client->notify, b_client->notify); return -1; } crm_err("callbacks for %s are not equal: %p vs. %p", a_client->event, a_client->notify, b_client->notify); return 1; } return rc; } static int get_stonith_token(IPC_Channel *ch, char **token) { int rc = stonith_ok; xmlNode *reg_msg = NULL; const char *msg_type = NULL; const char *tmp_ticket = NULL; CRM_CHECK(ch != NULL, return st_err_missing); CRM_CHECK(token != NULL, return st_err_missing); crm_debug_4("Waiting for msg on command channel"); reg_msg = xmlfromIPC(ch, MAX_IPC_DELAY); if(ch->ops->get_chan_status(ch) != IPC_CONNECT) { crm_err("No reply message - disconnected"); free_xml(reg_msg); return st_err_connection; } else if(reg_msg == NULL) { crm_err("No reply message - empty"); return st_err_ipc; } msg_type = crm_element_value(reg_msg, F_STONITH_OPERATION); tmp_ticket = crm_element_value(reg_msg, F_STONITH_CLIENTID); if(safe_str_neq(msg_type, CRM_OP_REGISTER) ) { crm_err("Invalid registration message: %s", msg_type); rc = st_err_internal; } else if(tmp_ticket == NULL) { crm_err("No registration token provided"); crm_log_xml_warn(reg_msg, "Bad reply"); rc = st_err_internal; } else { crm_debug("Obtained registration token: %s", tmp_ticket); *token = crm_strdup(tmp_ticket); } free_xml(reg_msg); return rc; } xmlNode *stonith_create_op( int call_id, const char *token, const char *op, xmlNode *data, int call_options) { int rc = HA_OK; xmlNode *op_msg = create_xml_node(NULL, "stonith_command"); CRM_CHECK(op_msg != NULL, return NULL); CRM_CHECK(token != NULL, return NULL); crm_xml_add(op_msg, F_XML_TAGNAME, "stonith_command"); crm_xml_add(op_msg, F_TYPE, T_STONITH_NG); crm_xml_add(op_msg, F_STONITH_CALLBACK_TOKEN, token); crm_xml_add(op_msg, F_STONITH_OPERATION, op); crm_xml_add_int(op_msg, F_STONITH_CALLID, call_id); crm_debug_4("Sending call options: %.8lx, %d", (long)call_options, call_options); crm_xml_add_int(op_msg, F_STONITH_CALLOPTS, call_options); if(data != NULL) { add_message_xml(op_msg, F_STONITH_CALLDATA, data); } if (rc != HA_OK) { crm_err("Failed to create STONITH operation message"); crm_log_xml(LOG_ERR, "BadOp", op_msg); free_xml(op_msg); return NULL; } return op_msg; } static void stonith_destroy_op_callback(gpointer data) { stonith_callback_client_t *blob = data; if(blob->timer && blob->timer->ref > 0) { g_source_remove(blob->timer->ref); } crm_free(blob->timer); crm_free(blob); } static int stonith_api_signoff(stonith_t* stonith) { stonith_private_t *native = stonith->private; crm_debug("Signing out of the STONITH Service"); /* close channels */ if (native->command_channel != NULL) { native->command_channel->ops->destroy( native->command_channel); native->command_channel = NULL; } if (native->callback_source != NULL) { G_main_del_IPC_Channel(native->callback_source); native->callback_source = NULL; } if (native->callback_channel != NULL) { #ifdef BUG native->callback_channel->ops->destroy( native->callback_channel); #endif native->callback_channel = NULL; } stonith->state = stonith_disconnected; return stonith_ok; } static int stonith_api_signon( stonith_t* stonith, const char *name, int *async_fd, int *sync_fd) { int rc = stonith_ok; xmlNode *hello = NULL; char *uuid_ticket = NULL; stonith_private_t *native = stonith->private; crm_debug_4("Connecting command channel"); stonith->state = stonith_connected_command; native->command_channel = init_client_ipc_comms_nodispatch(stonith_channel); if(native->command_channel == NULL) { crm_debug("Connection to command channel failed"); rc = st_err_connection; } else if(native->command_channel->ch_status != IPC_CONNECT) { crm_err("Connection may have succeeded," " but authentication to command channel failed"); rc = st_err_authentication; } if(rc == stonith_ok) { rc = get_stonith_token(native->command_channel, &uuid_ticket); if(rc == stonith_ok) { native->token = uuid_ticket; uuid_ticket = NULL; } else { stonith->state = stonith_disconnected; native->command_channel->ops->disconnect(native->command_channel); return rc; } } native->callback_channel = init_client_ipc_comms_nodispatch( stonith_channel_callback); if(native->callback_channel == NULL) { crm_debug("Connection to callback channel failed"); rc = st_err_connection; } else if(native->callback_channel->ch_status != IPC_CONNECT) { crm_err("Connection may have succeeded," " but authentication to command channel failed"); rc = st_err_authentication; } if(rc == stonith_ok) { native->callback_channel->send_queue->max_qlen = 500; rc = get_stonith_token(native->callback_channel, &uuid_ticket); if(rc == stonith_ok) { crm_free(native->token); native->token = uuid_ticket; } } if(rc == stonith_ok) { CRM_CHECK(native->token != NULL, ;); hello = stonith_create_op(0, native->token, CRM_OP_REGISTER, NULL, 0); crm_xml_add(hello, F_STONITH_CLIENTNAME, name); if(send_ipc_message(native->command_channel, hello) == FALSE) { rc = st_err_internal; } free_xml(hello); } if(rc == stonith_ok) { gboolean do_mainloop = TRUE; if(async_fd != NULL) { do_mainloop = FALSE; *async_fd = native->callback_channel->ops->get_recv_select_fd(native->callback_channel); } if(sync_fd != NULL) { do_mainloop = FALSE; *sync_fd = native->callback_channel->ops->get_send_select_fd(native->callback_channel); } if(do_mainloop) { crm_debug_4("Connecting callback channel"); native->callback_source = G_main_add_IPC_Channel( G_PRIORITY_HIGH, native->callback_channel, FALSE, stonith_dispatch, stonith, default_ipc_connection_destroy); if(native->callback_source == NULL) { crm_err("Callback source not recorded"); rc = st_err_connection; } else { set_IPC_Channel_dnotify( native->callback_source, stonith_connection_destroy); } } } if(rc == stonith_ok) { #if HAVE_MSGFROMIPC_TIMEOUT stonith->call_timeout = MAX_IPC_DELAY; #endif crm_debug("Connection to STONITH successful"); return stonith_ok; } crm_debug("Connection to STONITH failed: %s", stonith_error2string(rc)); stonith->cmds->disconnect(stonith); return rc; } static int stonith_set_notification(stonith_t* stonith, const char *callback, int enabled) { xmlNode *notify_msg = create_xml_node(NULL, __FUNCTION__); stonith_private_t *native = stonith->private; if(stonith->state != stonith_disconnected) { crm_xml_add(notify_msg, F_STONITH_OPERATION, T_STONITH_NOTIFY); if(enabled) { crm_xml_add(notify_msg, F_STONITH_NOTIFY_ACTIVATE, callback); } else { crm_xml_add(notify_msg, F_STONITH_NOTIFY_DEACTIVATE, callback); } send_ipc_message(native->callback_channel, notify_msg); } free_xml(notify_msg); return stonith_ok; } static int stonith_api_add_notification( stonith_t *stonith, const char *event, void (*callback)(stonith_t *stonith, const char *event, xmlNode *msg)) { GList *list_item = NULL; stonith_notify_client_t *new_client = NULL; crm_debug_2("Adding callback for %s events (%d)", event, g_list_length(stonith->notify_list)); crm_malloc0(new_client, sizeof(stonith_notify_client_t)); new_client->event = event; new_client->notify = callback; list_item = g_list_find_custom( stonith->notify_list, new_client, stonithlib_GCompareFunc); if(list_item != NULL) { crm_warn("Callback already present"); crm_free(new_client); return st_err_exists; } else { stonith->notify_list = g_list_append( stonith->notify_list, new_client); stonith_set_notification(stonith, event, 1); crm_debug_3("Callback added (%d)", g_list_length(stonith->notify_list)); } return stonith_ok; } static int stonith_api_del_notification(stonith_t *stonith, const char *event) { GList *list_item = NULL; stonith_notify_client_t *new_client = NULL; crm_debug("Removing callback for %s events", event); crm_malloc0(new_client, sizeof(stonith_notify_client_t)); new_client->event = event; new_client->notify = NULL; list_item = g_list_find_custom( stonith->notify_list, new_client, stonithlib_GCompareFunc); stonith_set_notification(stonith, event, 0); if(list_item != NULL) { stonith_notify_client_t *list_client = list_item->data; stonith->notify_list = g_list_remove(stonith->notify_list, list_client); crm_free(list_client); crm_debug_3("Removed callback"); } else { crm_debug_3("Callback not present"); } crm_free(new_client); return stonith_ok; } static gboolean stonith_async_timeout_handler(gpointer data) { struct timer_rec_s *timer = data; crm_debug("Async call %d timed out after %dms", timer->call_id, timer->timeout); stonith_perform_callback(timer->stonith, NULL, timer->call_id, st_err_timeout); /* Always return TRUE, never remove the handler * We do that in stonith_del_callback() */ return TRUE; } static int stonith_api_add_callback( stonith_t *stonith, int call_id, int timeout, gboolean only_success, void *user_data, const char *callback_name, void (*callback)( stonith_t *st, const xmlNode *msg, int call, int rc, xmlNode *output, void *userdata)) { stonith_callback_client_t *blob = NULL; stonith_private_t *private = NULL; CRM_CHECK(stonith != NULL, return st_err_missing); CRM_CHECK(stonith->private != NULL, return st_err_missing); private = stonith->private; if(call_id == 0) { private->op_callback = callback; } else if(call_id < 0) { if(only_success == FALSE) { callback(stonith, NULL, call_id, call_id, NULL, user_data); } else { crm_warn("STONITH call failed: %s", stonith_error2string(call_id)); } return FALSE; } crm_malloc0(blob, sizeof(stonith_callback_client_t)); blob->id = callback_name; blob->only_success = only_success; blob->user_data = user_data; blob->callback = callback; if(timeout > 0) { struct timer_rec_s *async_timer = NULL; crm_malloc0(async_timer, sizeof(struct timer_rec_s)); blob->timer = async_timer; async_timer->stonith = stonith; async_timer->call_id = call_id; async_timer->timeout = timeout*1100; async_timer->ref = g_timeout_add( async_timer->timeout, stonith_async_timeout_handler, async_timer); } g_hash_table_insert(private->stonith_op_callback_table, GINT_TO_POINTER(call_id), blob); return TRUE; } static int stonith_api_del_callback(stonith_t *stonith, int call_id, gboolean all_callbacks) { stonith_private_t *private = stonith->private; if(all_callbacks) { private->op_callback = NULL; g_hash_table_destroy(private->stonith_op_callback_table); private->stonith_op_callback_table = g_hash_table_new_full( g_direct_hash, g_direct_equal, NULL, stonith_destroy_op_callback); } else if(call_id == 0) { private->op_callback = NULL; } else { g_hash_table_remove(private->stonith_op_callback_table, GINT_TO_POINTER(call_id)); } return stonith_ok; } static void stonith_dump_pending_op( gpointer key, gpointer value, gpointer user_data) { int call = GPOINTER_TO_INT(key); stonith_callback_client_t *blob = value; crm_debug("Call %d (%s): pending", call, crm_str(blob->id)); } void stonith_dump_pending_callbacks(stonith_t *stonith) { stonith_private_t *private = stonith->private; if(private->stonith_op_callback_table == NULL) { return; } return g_hash_table_foreach( private->stonith_op_callback_table, stonith_dump_pending_op, NULL); } void stonith_perform_callback(stonith_t *stonith, xmlNode *msg, int call_id, int rc) { xmlNode *output = NULL; stonith_private_t *private = NULL; stonith_callback_client_t *blob = NULL; stonith_callback_client_t local_blob; CRM_CHECK(stonith != NULL, return); CRM_CHECK(stonith->private != NULL, return); private = stonith->private; local_blob.id = NULL; local_blob.callback = NULL; local_blob.user_data = NULL; local_blob.only_success = FALSE; if(msg != NULL) { crm_element_value_int(msg, F_STONITH_RC, &rc); crm_element_value_int(msg, F_STONITH_CALLID, &call_id); output = get_message_xml(msg, F_STONITH_CALLDATA); } CRM_CHECK(call_id > 0, crm_warn("Strange or missing call-id")); blob = g_hash_table_lookup( private->stonith_op_callback_table, GINT_TO_POINTER(call_id)); if(blob != NULL) { local_blob = *blob; blob = NULL; stonith_api_del_callback(stonith, call_id, FALSE); } else { crm_debug_2("No callback found for call %d", call_id); local_blob.callback = NULL; } if(stonith == NULL) { crm_debug("No stonith object supplied"); } if(local_blob.callback != NULL && (rc == stonith_ok || local_blob.only_success == FALSE)) { crm_debug_2("Invoking callback %s for call %d", crm_str(local_blob.id), call_id); local_blob.callback(stonith, msg, call_id, rc, output, local_blob.user_data); } else if(private->op_callback == NULL && rc != stonith_ok) { crm_warn("STONITH command failed: %s", stonith_error2string(rc)); crm_log_xml(LOG_DEBUG, "Failed STONITH Update", msg); } if(private->op_callback != NULL) { crm_debug_2("Invoking global callback for call %d", call_id); private->op_callback(stonith, msg, call_id, rc, output, NULL); } crm_debug_4("OP callback activated."); } static void stonith_send_notification(gpointer data, gpointer user_data) { struct notify_blob_s *blob = user_data; stonith_notify_client_t *entry = data; const char *event = NULL; if(blob->xml == NULL) { crm_warn("Skipping callback - NULL message"); return; } event = crm_element_value(blob->xml, F_SUBTYPE); if(entry == NULL) { crm_warn("Skipping callback - NULL callback client"); return; } else if(entry->notify == NULL) { crm_warn("Skipping callback - NULL callback"); return; } else if(safe_str_neq(entry->event, event)) { crm_debug_4("Skipping callback - event mismatch %p/%s vs. %s", entry, entry->event, event); return; } crm_debug_4("Invoking callback for %p/%s event...", entry, event); entry->notify(blob->stonith, event, blob->xml); crm_debug_4("Callback invoked..."); } int stonith_send_command( stonith_t *stonith, const char *op, xmlNode *data, xmlNode **output_data, int call_options, int timeout) { int rc = HA_OK; xmlNode *op_msg = NULL; xmlNode *op_reply = NULL; stonith_private_t *native = stonith->private; if(stonith->state == stonith_disconnected) { return st_err_connection; } if(output_data != NULL) { *output_data = NULL; } if(op == NULL) { crm_err("No operation specified"); return st_err_missing; } stonith->call_id++; /* prevent call_id from being negative (or zero) and conflicting * with the stonith_errors enum * use 2 because we use it as (stonith->call_id - 1) below */ if(stonith->call_id < 1) { stonith->call_id = 1; } CRM_CHECK(native->token != NULL, ;); op_msg = stonith_create_op(stonith->call_id, native->token, op, data, call_options); if(op_msg == NULL) { return st_err_missing; } crm_xml_add_int(op_msg, F_STONITH_TIMEOUT, timeout); crm_debug_3("Sending %s message to STONITH service, Timeout: %d", op, timeout); if(send_ipc_message(native->command_channel, op_msg) == FALSE) { crm_err("Sending message to STONITH service FAILED"); free_xml(op_msg); return st_err_ipc; } else { crm_debug_3("Message sent"); } free_xml(op_msg); if((call_options & st_opt_discard_reply)) { crm_debug_3("Discarding reply"); return stonith_ok; } else if(!(call_options & st_opt_sync_call)) { crm_debug_3("Async call, returning"); CRM_CHECK(stonith->call_id != 0, return st_err_ipc); return stonith->call_id; } rc = IPC_OK; crm_debug_3("Waiting for a syncronous reply"); rc = stonith_ok; while(IPC_ISRCONN(native->command_channel)) { int reply_id = -1; int msg_id = stonith->call_id; op_reply = xmlfromIPC(native->command_channel, timeout); if(op_reply == NULL) { rc = st_err_peer; break; } crm_element_value_int(op_reply, F_STONITH_CALLID, &reply_id); if(reply_id <= 0) { rc = st_err_peer; break; } else if(reply_id == msg_id) { crm_debug_3("Syncronous reply received"); crm_log_xml(LOG_MSG, "Reply", op_reply); if(crm_element_value_int(op_reply, F_STONITH_RC, &rc) != 0) { rc = st_err_peer; } if(output_data != NULL && is_not_set(call_options, st_opt_discard_reply)) { *output_data = op_reply; op_reply = NULL; } break; } else if(reply_id < msg_id) { crm_debug("Recieved old reply: %d (wanted %d)", reply_id, msg_id); crm_log_xml(LOG_MSG, "Old reply", op_reply); } else if((reply_id - 10000) > msg_id) { /* wrap-around case */ crm_debug("Recieved old reply: %d (wanted %d)", reply_id, msg_id); crm_log_xml(LOG_MSG, "Old reply", op_reply); } else { crm_err("Received a __future__ reply:" " %d (wanted %d)", reply_id, msg_id); } free_xml(op_reply); op_reply = NULL; } if(IPC_ISRCONN(native->command_channel) == FALSE) { crm_err("STONITH disconnected: %d", native->command_channel->ch_status); stonith->state = stonith_disconnected; } if(op_reply == NULL && stonith->state == stonith_disconnected) { rc = st_err_connection; } else if(rc == stonith_ok && op_reply == NULL) { rc = st_err_peer; } free_xml(op_reply); return rc; } static gboolean stonith_msgready(stonith_t* stonith) { stonith_private_t *private = NULL; if (stonith == NULL) { crm_err("No STONITH!"); return FALSE; } private = stonith->private; if(private->command_channel != NULL) { /* drain the channel */ IPC_Channel *cmd_ch = private->command_channel; xmlNode *cmd_msg = NULL; while(cmd_ch->ch_status != IPC_DISCONNECT && cmd_ch->ops->is_message_pending(cmd_ch)) { /* this will happen when the STONITH exited from beneath us */ cmd_msg = xmlfromIPC(cmd_ch, MAX_IPC_DELAY); free_xml(cmd_msg); } } else { crm_err("No command channel"); } if(private->callback_channel == NULL) { crm_err("No callback channel"); return FALSE; } else if(private->callback_channel->ch_status == IPC_DISCONNECT) { crm_info("Lost connection to the STONITH service [%d].", private->callback_channel->farside_pid); return FALSE; } else if(private->callback_channel->ops->is_message_pending( private->callback_channel)) { crm_debug_4("Message pending on command channel [%d]", private->callback_channel->farside_pid); return TRUE; } crm_debug_3("No message pending"); return FALSE; } static int stonith_rcvmsg(stonith_t* stonith) { const char *type = NULL; stonith_private_t *private = NULL; struct notify_blob_s blob; if (stonith == NULL) { crm_err("No STONITH!"); return FALSE; } blob.stonith = stonith; private = stonith->private; /* if it is not blocking mode and no message in the channel, return */ if (stonith_msgready(stonith) == FALSE) { crm_debug_3("No message ready and non-blocking..."); return 0; } /* IPC_INTR is not a factor here */ blob.xml = xmlfromIPC(private->callback_channel, MAX_IPC_DELAY); if (blob.xml == NULL) { crm_warn("Received a NULL msg from STONITH service."); return 0; } /* do callbacks */ type = crm_element_value(blob.xml, F_TYPE); crm_debug_4("Activating %s callbacks...", type); if(safe_str_eq(type, T_STONITH_NG)) { stonith_perform_callback(stonith, blob.xml, 0, 0); } else if(safe_str_eq(type, T_STONITH_NOTIFY)) { g_list_foreach(stonith->notify_list, stonith_send_notification, &blob); } else { crm_err("Unknown message type: %s", type); crm_log_xml_warn(blob.xml, "BadReply"); } free_xml(blob.xml); return 1; } gboolean stonith_dispatch(IPC_Channel *channel, gpointer user_data) { stonith_t *stonith = user_data; stonith_private_t *private = NULL; gboolean stay_connected = TRUE; CRM_CHECK(stonith != NULL, return FALSE); private = stonith->private; CRM_CHECK(private->callback_channel == channel, return FALSE); while(stonith_msgready(stonith)) { /* invoke the callbacks but dont block */ int rc = stonith_rcvmsg(stonith); if( rc < 0) { crm_err("Message acquisition failed: %d", rc); break; } else if(rc == 0) { break; } } if(private->callback_channel && private->callback_channel->ch_status != IPC_CONNECT) { crm_crit("Lost connection to the STONITH service [%d/callback].", channel->farside_pid); private->callback_source = NULL; stay_connected = FALSE; } if(private->command_channel && private->command_channel->ch_status != IPC_CONNECT) { crm_crit("Lost connection to the STONITH service [%d/command].", channel->farside_pid); private->callback_source = NULL; stay_connected = FALSE; } return stay_connected; } static int stonith_api_free (stonith_t* stonith) { int rc = stonith_ok; if(stonith->state != stonith_disconnected) { rc = stonith->cmds->disconnect(stonith); } if(stonith->state == stonith_disconnected) { stonith_private_t *private = stonith->private; g_hash_table_destroy(private->stonith_op_callback_table); crm_free(private->token); crm_free(stonith->private); crm_free(stonith->cmds); crm_free(stonith); } return rc; } void stonith_api_delete(stonith_t *stonith) { GList *list = stonith->notify_list; while(list != NULL) { stonith_notify_client_t *client = g_list_nth_data(list, 0); list = g_list_remove(list, client); crm_free(client); } stonith->cmds->free(stonith); stonith = NULL; } stonith_t *stonith_api_new(void) { stonith_t* new_stonith = NULL; stonith_private_t* private = NULL; crm_malloc0(new_stonith, sizeof(stonith_t)); crm_malloc0(private, sizeof(stonith_private_t)); new_stonith->private = private; private->stonith_op_callback_table = g_hash_table_new_full( g_direct_hash, g_direct_equal, NULL, stonith_destroy_op_callback); new_stonith->call_id = 1; new_stonith->notify_list = NULL; new_stonith->state = stonith_disconnected; crm_malloc0(new_stonith->cmds, sizeof(stonith_api_operations_t)); new_stonith->cmds->free = stonith_api_free; new_stonith->cmds->connect = stonith_api_signon; new_stonith->cmds->disconnect = stonith_api_signoff; new_stonith->cmds->call = stonith_api_call; new_stonith->cmds->fence = stonith_api_fence; new_stonith->cmds->confirm = stonith_api_confirm; new_stonith->cmds->metadata = stonith_api_device_metadata; new_stonith->cmds->query = stonith_api_query; new_stonith->cmds->remove_device = stonith_api_remove_device; new_stonith->cmds->register_device = stonith_api_register_device; new_stonith->cmds->remove_callback = stonith_api_del_callback; new_stonith->cmds->register_callback = stonith_api_add_callback; new_stonith->cmds->remove_notification = stonith_api_del_notification; new_stonith->cmds->register_notification = stonith_api_add_notification; return new_stonith; } diff --git a/lib/pengine/clone.c b/lib/pengine/clone.c index 14d6a71073..fb06160ad0 100644 --- a/lib/pengine/clone.c +++ b/lib/pengine/clone.c @@ -1,509 +1,509 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #define VARIANT_CLONE 1 #include "./variant.h" void clone_create_notifications( resource_t *rsc, action_t *action, action_t *action_complete, pe_working_set_t *data_set); void force_non_unique_clone(resource_t *rsc, const char *rid, pe_working_set_t *data_set); resource_t *create_child_clone(resource_t *rsc, int sub_id, pe_working_set_t *data_set); static void mark_as_orphan(resource_t *rsc) { GListPtr gIter = rsc->children; set_bit(rsc->flags, pe_rsc_orphan); for(; gIter != NULL; gIter = gIter->next) { resource_t *child = (resource_t*)gIter->data; mark_as_orphan(child); } } static void clear_bit_recursive(resource_t *rsc, unsigned long long flag) { GListPtr gIter = rsc->children; clear_bit_inplace(rsc->flags, flag); for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; clear_bit_recursive(child_rsc, flag); } } void force_non_unique_clone(resource_t *rsc, const char *rid, pe_working_set_t *data_set) { if(rsc->variant == pe_clone || rsc->variant == pe_master) { clone_variant_data_t *clone_data = NULL; get_clone_variant_data(clone_data, rsc); crm_config_warn("Clones %s contains non-OCF resource %s and so " "can only be used as an anonymous clone. " "Set the "XML_RSC_ATTR_UNIQUE" meta attribute to false", rsc->id, rid); clone_data->clone_node_max = 1; clone_data->clone_max = g_list_length(data_set->nodes); clear_bit_recursive(rsc, pe_rsc_unique); } } resource_t * find_clone_instance(resource_t *rsc, const char *sub_id, pe_working_set_t *data_set) { char *child_id = NULL; resource_t *child = NULL; const char *child_base = NULL; clone_variant_data_t *clone_data = NULL; get_clone_variant_data(clone_data, rsc); child_base = ID(clone_data->xml_obj_child); child_id = crm_concat(child_base, sub_id, ':'); child = pe_find_resource(rsc->children, child_id); crm_free(child_id); return child; } resource_t * create_child_clone(resource_t *rsc, int sub_id, pe_working_set_t *data_set) { gboolean as_orphan = FALSE; char *inc_num = NULL; char *inc_max = NULL; resource_t *child_rsc = NULL; xmlNode * child_copy = NULL; clone_variant_data_t *clone_data = NULL; get_clone_variant_data(clone_data, rsc); CRM_CHECK(clone_data->xml_obj_child != NULL, return FALSE); if(sub_id < 0) { as_orphan = TRUE; sub_id = clone_data->total_clones; } inc_num = crm_itoa(sub_id); inc_max = crm_itoa(clone_data->clone_max); child_copy = copy_xml(clone_data->xml_obj_child); crm_xml_add(child_copy, XML_RSC_ATTR_INCARNATION, inc_num); if(common_unpack(child_copy, &child_rsc, rsc, data_set) == FALSE) { pe_err("Failed unpacking resource %s", crm_element_value(child_copy, XML_ATTR_ID)); child_rsc = NULL; goto bail; } /* child_rsc->globally_unique = rsc->globally_unique; */ clone_data->total_clones += 1; crm_debug_2("Setting clone attributes for: %s", child_rsc->id); rsc->children = g_list_append(rsc->children, child_rsc); if(as_orphan) { mark_as_orphan(child_rsc); } add_hash_param(child_rsc->meta, XML_RSC_ATTR_INCARNATION_MAX, inc_max); print_resource(LOG_DEBUG_3, "Added", child_rsc, FALSE); bail: crm_free(inc_num); crm_free(inc_max); return child_rsc; } gboolean master_unpack(resource_t *rsc, pe_working_set_t *data_set) { const char *master_max = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_MASTER_MAX); const char *master_node_max = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_MASTER_NODEMAX); g_hash_table_replace(rsc->meta, crm_strdup("stateful"), crm_strdup(XML_BOOLEAN_TRUE)); if(clone_unpack(rsc, data_set)) { clone_variant_data_t *clone_data = NULL; get_clone_variant_data(clone_data, rsc); clone_data->master_max = crm_parse_int(master_max, "1"); clone_data->master_node_max = crm_parse_int(master_node_max, "1"); return TRUE; } return FALSE; } gboolean clone_unpack(resource_t *rsc, pe_working_set_t *data_set) { int lpc = 0; const char *type = NULL; resource_t *self = NULL; int num_xml_children = 0; xmlNode *a_child = NULL; xmlNode *xml_tmp = NULL; xmlNode *xml_self = NULL; xmlNode *xml_obj = rsc->xml; clone_variant_data_t *clone_data = NULL; const char *ordered = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_ORDERED); const char *interleave = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_INTERLEAVE); const char *max_clones = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_INCARNATION_MAX); const char *max_clones_node = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_INCARNATION_NODEMAX); crm_debug_3("Processing resource %s...", rsc->id); crm_malloc0(clone_data, sizeof(clone_variant_data_t)); rsc->variant_opaque = clone_data; clone_data->interleave = FALSE; clone_data->ordered = FALSE; clone_data->active_clones = 0; clone_data->xml_obj_child = NULL; clone_data->clone_node_max = crm_parse_int(max_clones_node, "1"); if(max_clones) { clone_data->clone_max = crm_parse_int(max_clones, "1"); } else if(g_list_length(data_set->nodes) > 0) { clone_data->clone_max = g_list_length(data_set->nodes); } else { clone_data->clone_max = 1; /* Handy during crm_verify */ } if(crm_is_true(interleave)) { clone_data->interleave = TRUE; } if(crm_is_true(ordered)) { clone_data->ordered = TRUE; } if((rsc->flags & pe_rsc_unique) == 0 && clone_data->clone_node_max > 1) { crm_config_err("Anonymous clones (%s) may only support one copy" " per node", rsc->id); clone_data->clone_node_max = 1; } crm_debug_2("Options for %s", rsc->id); crm_debug_2("\tClone max: %d", clone_data->clone_max); crm_debug_2("\tClone node max: %d", clone_data->clone_node_max); crm_debug_2("\tClone is unique: %s", is_set(rsc->flags, pe_rsc_unique)?"true":"false"); clone_data->xml_obj_child = find_xml_node( xml_obj, XML_CIB_TAG_GROUP, FALSE); if(clone_data->xml_obj_child == NULL) { clone_data->xml_obj_child = find_xml_node(xml_obj, XML_CIB_TAG_RESOURCE, TRUE); for(a_child = __xml_first_child(xml_obj); a_child != NULL; a_child = __xml_next(a_child)) { if(crm_str_eq((const char *)a_child->name, XML_CIB_TAG_RESOURCE, TRUE)) { num_xml_children++; } } } if(clone_data->xml_obj_child == NULL) { crm_config_err("%s has nothing to clone", rsc->id); return FALSE; } for(a_child = __xml_first_child(xml_obj); a_child != NULL; a_child = __xml_next(a_child)) { if(crm_str_eq((const char *)a_child->name, type, TRUE)) { num_xml_children++; } } if(num_xml_children > 1) { crm_config_err("%s has too many children. Only the first (%s) will be cloned.", rsc->id, ID(clone_data->xml_obj_child)); } xml_self = copy_xml(rsc->xml); /* this is a bit of a hack - but simplifies everything else */ xmlNodeSetName(xml_self, ((const xmlChar*)XML_CIB_TAG_RESOURCE)); xml_tmp = find_xml_node(xml_obj, "operations", FALSE); if(xml_tmp != NULL) { add_node_copy(xml_self, xml_tmp); } /* Make clones ever so slightly sticky by default * This is the only way to ensure clone instances are not * shuffled around the cluster for no benefit */ add_hash_param(rsc->meta, XML_RSC_ATTR_STICKINESS, "1"); if(common_unpack(xml_self, &self, rsc, data_set)) { clone_data->self = self; } else { crm_log_xml_err(xml_self, "Couldnt unpack dummy child"); clone_data->self = self; return FALSE; } crm_debug_2("\tClone is unique (fixed): %s", is_set(rsc->flags, pe_rsc_unique)?"true":"false"); clone_data->notify_confirm = is_set(rsc->flags, pe_rsc_notify); add_hash_param(rsc->meta, XML_RSC_ATTR_UNIQUE, is_set(rsc->flags, pe_rsc_unique)?XML_BOOLEAN_TRUE:XML_BOOLEAN_FALSE); for(lpc = 0; lpc < clone_data->clone_max; lpc++) { create_child_clone(rsc, lpc, data_set); } if(clone_data->clone_max == 0) { /* create one so that unpack_find_resource() will hook up * any orphans up to the parent correctly */ create_child_clone(rsc, -1, data_set); } crm_debug_3("Added %d children to resource %s...", clone_data->clone_max, rsc->id); return TRUE; } gboolean clone_active(resource_t *rsc, gboolean all) { GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; gboolean child_active = child_rsc->fns->active(child_rsc, all); if(all == FALSE && child_active) { return TRUE; } else if(all && child_active == FALSE) { return FALSE; } } if(all) { return TRUE; } else { return FALSE; } } static char * add_list_element(char *list, const char *value) { int len = 0; int last = 0; if(value == NULL) { return list; } if(list) { last = strlen(list); } len = last + 2; /* +1 space, +1 EOS */ len += strlen(value); crm_realloc(list, len); sprintf(list + last, " %s", value); return list; } static void short_print(char *list, const char *prefix, const char *type, long options, void *print_data) { if(list) { if(options & pe_print_html) { status_print("
  • "); } status_print("%s%s: [%s ]", prefix, type, list); if(options & pe_print_html) { status_print("
  • \n"); } else if(options & pe_print_suppres_nl) { /* nothing */ } else if((options & pe_print_printf) || (options & pe_print_ncurses)) { status_print("\n"); } } } void clone_print( resource_t *rsc, const char *pre_text, long options, void *print_data) { char *child_text = NULL; char *master_list = NULL; char *started_list = NULL; char *stopped_list = NULL; const char *type = "Clone"; GListPtr gIter = rsc->children; clone_variant_data_t *clone_data = NULL; get_clone_variant_data(clone_data, rsc); if(pre_text == NULL) { pre_text = " "; } child_text = crm_concat(pre_text, " ", ' '); if(rsc->variant == pe_master) { type = "Master/Slave"; } status_print("%s%s Set: %s [%s]%s%s", pre_text?pre_text:"", type, rsc->id, ID(clone_data->xml_obj_child), is_set(rsc->flags, pe_rsc_unique)?" (unique)":"", is_set(rsc->flags, pe_rsc_managed)?"":" (unmanaged)"); if(options & pe_print_html) { status_print("\n
      \n"); } else if((options & pe_print_log) == 0) { status_print("\n"); } for(; gIter != NULL; gIter = gIter->next) { gboolean print_full = FALSE; resource_t *child_rsc = (resource_t*)gIter->data; if(child_rsc->fns->active(child_rsc, FALSE) == FALSE) { /* Inactive clone */ if(is_set(child_rsc->flags, pe_rsc_orphan)) { continue; } else if(is_set(rsc->flags, pe_rsc_unique)) { print_full = TRUE; } else { stopped_list = add_list_element(stopped_list, child_rsc->id); } } else if(is_set(child_rsc->flags, pe_rsc_unique) || is_set(child_rsc->flags, pe_rsc_orphan) || is_set(child_rsc->flags, pe_rsc_managed) == FALSE || is_set(child_rsc->flags, pe_rsc_failed)) { /* Unique, unmanaged or failed clone */ print_full = TRUE; } else if(child_rsc->fns->active(child_rsc, TRUE)) { /* Fully active anonymous clone */ node_t *location = child_rsc->fns->location(child_rsc, NULL, TRUE); if(location) { const char *host = location->details->uname; enum rsc_role_e a_role = child_rsc->fns->state(child_rsc, TRUE); if(a_role > RSC_ROLE_SLAVE) { /* And active on a single node as master */ master_list = add_list_element(master_list, host); } else { /* And active on a single node as started/slave */ started_list = add_list_element(started_list, host); } } else { /* uncolocated group - bleh */ print_full = TRUE; } } else { /* Partially active anonymous clone */ print_full = TRUE; } if(print_full) { if(options & pe_print_html) { status_print("
    • \n"); } child_rsc->fns->print( child_rsc, child_text, options, print_data); if(options & pe_print_html) { status_print("
    • \n"); } } } short_print(master_list, child_text, "Masters", options, print_data); short_print(started_list, child_text, rsc->variant==pe_master?"Slaves":"Started", options, print_data); short_print(stopped_list, child_text, "Stopped", options, print_data); crm_free(master_list); crm_free(started_list); crm_free(stopped_list); if(options & pe_print_html) { status_print("
    \n"); } crm_free(child_text); } void clone_free(resource_t *rsc) { GListPtr gIter = rsc->children; clone_variant_data_t *clone_data = NULL; get_clone_variant_data(clone_data, rsc); crm_debug_3("Freeing %s", rsc->id); for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; crm_debug_3("Freeing child %s", child_rsc->id); free_xml(child_rsc->xml); child_rsc->fns->free(child_rsc); } g_list_free(rsc->children); if(clone_data->self) { free_xml(clone_data->self->xml); clone_data->self->fns->free(clone_data->self); } CRM_ASSERT(clone_data->demote_notify == NULL); CRM_ASSERT(clone_data->stop_notify == NULL); CRM_ASSERT(clone_data->start_notify == NULL); CRM_ASSERT(clone_data->promote_notify == NULL); common_free(rsc); } enum rsc_role_e clone_resource_state(const resource_t *rsc, gboolean current) { enum rsc_role_e clone_role = RSC_ROLE_UNKNOWN; GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; enum rsc_role_e a_role = child_rsc->fns->state(child_rsc, current); if(a_role > clone_role) { clone_role = a_role; } } crm_debug_3("%s role: %s", rsc->id, role2text(clone_role)); return clone_role; } diff --git a/lib/pengine/common.c b/lib/pengine/common.c index f35a2a6026..8a86199596 100644 --- a/lib/pengine/common.c +++ b/lib/pengine/common.c @@ -1,436 +1,436 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include gboolean was_processing_error = FALSE; gboolean was_processing_warning = FALSE; static gboolean check_quorum(const char *value) { if(safe_str_eq(value, "stop")) { return TRUE; } else if(safe_str_eq(value, "freeze")) { return TRUE; } else if(safe_str_eq(value, "ignore")) { return TRUE; } else if(safe_str_eq(value, "suicide")) { return TRUE; } return FALSE; } static gboolean check_health(const char *value) { if(safe_str_eq(value, "none")) { return TRUE; } else if(safe_str_eq(value, "custom")) { return TRUE; } else if(safe_str_eq(value, "only-green")) { return TRUE; } else if(safe_str_eq(value, "progressive")) { return TRUE; } else if(safe_str_eq(value, "migrate-on-red")) { return TRUE; } return FALSE; } static gboolean check_stonith_action(const char *value) { if(safe_str_eq(value, "reboot")) { return TRUE; } else if(safe_str_eq(value, "poweroff")) { return TRUE; } return FALSE; } static gboolean check_placement_strategy(const char *value) { if(safe_str_eq(value, "default")) { return TRUE; } else if(safe_str_eq(value, "utilization")) { return TRUE; } else if(safe_str_eq(value, "minimal")) { return TRUE; } else if(safe_str_eq(value, "balanced")) { return TRUE; } return FALSE; } pe_cluster_option pe_opts[] = { /* name, old-name, validate, default, description */ { "no-quorum-policy", "no_quorum_policy", "enum", "stop, freeze, ignore, suicide", "stop", &check_quorum, "What to do when the cluster does not have quorum", NULL }, { "symmetric-cluster", "symmetric_cluster", "boolean", NULL, "true", &check_boolean, "All resources can run anywhere by default", NULL }, { "default-resource-stickiness", "default_resource_stickiness", "integer", NULL, "0", &check_number, "", NULL }, { "is-managed-default", "is_managed_default", "boolean", NULL, "true", &check_boolean, "Should the cluster start/stop resources as required", NULL }, { "maintenance-mode", NULL, "boolean", NULL, "false", &check_boolean, "Should the cluster monitor resources and start/stop them as required", NULL }, { "start-failure-is-fatal", NULL, "boolean", NULL, "true", &check_boolean, "Always treat start failures as fatal", "This was the old default. However when set to FALSE, the cluster will instead use the resource's failcount and value for resource-failure-stickiness" }, { "enable-startup-probes", NULL, "boolean", NULL, "true", &check_boolean, "Should the cluster check for active resources during startup", NULL }, /* Stonith Options */ { "stonith-enabled", "stonith_enabled", "boolean", NULL, "true", &check_boolean, "Failed nodes are STONITH'd", NULL }, { "stonith-action", "stonith_action", "enum", "reboot, poweroff", "reboot", &check_stonith_action, "Action to send to STONITH device", NULL }, { "stonith-timeout", NULL, "time", NULL, "60s", &check_timer, "How long to wait for the STONITH action to complete", NULL }, { "startup-fencing", "startup_fencing", "boolean", NULL, "true", &check_boolean, "STONITH unseen nodes", "Advanced Use Only! Not using the default is very unsafe!" }, /* Timeouts etc */ { "cluster-delay", "transition_idle_timeout", "time", NULL, "60s", &check_time, "Round trip delay over the network (excluding action execution)", "The \"correct\" value will depend on the speed and load of your network and cluster nodes." }, { "batch-limit", NULL, "integer", NULL, "30", &check_number, "The number of jobs that the TE is allowed to execute in parallel", "The \"correct\" value will depend on the speed and load of your network and cluster nodes." }, { "default-action-timeout", "default_action_timeout", "time", NULL, "20s", &check_time, "How long to wait for actions to complete", NULL }, /* Orphans and stopping */ { "stop-all-resources", NULL, "boolean", NULL, "false", &check_boolean, "Should the cluster stop all active resources (except those needed for fencing)", NULL }, { "stop-orphan-resources", "stop_orphan_resources", "boolean", NULL, "true", &check_boolean, "Should deleted resources be stopped", NULL }, { "stop-orphan-actions", "stop_orphan_actions", "boolean", NULL, "true", &check_boolean, "Should deleted actions be cancelled", NULL }, { "remove-after-stop", "remove_after_stop", "boolean", NULL, "false", &check_boolean, "Remove resources from the LRM after they are stopped", "Always set this to false. Other values are, at best, poorly tested and potentially dangerous." }, /* { "", "", , "0", "", NULL }, */ /* Storing inputs */ { "pe-error-series-max", NULL, "integer", NULL, "-1", &check_number, "The number of PE inputs resulting in ERRORs to save", "Zero to disable, -1 to store unlimited." }, { "pe-warn-series-max", NULL, "integer", NULL, "-1", &check_number, "The number of PE inputs resulting in WARNINGs to save", "Zero to disable, -1 to store unlimited." }, { "pe-input-series-max", NULL, "integer", NULL, "-1", &check_number, "The number of other PE inputs to save", "Zero to disable, -1 to store unlimited." }, /* Node health */ { "node-health-strategy", NULL, "enum", "none, migrate-on-red, only-green, progressive, custom", "none", &check_health, "The strategy combining node attributes to determine overall node health.", "Requires external entities to create node attributes (named with the prefix '#health') with values: 'red', 'yellow' or 'green'."}, { "node-health-green", NULL, "integer", NULL, "0", &check_number, "The score 'green' translates to in rsc_location constraints", "Only used when node-health-strategy is set to custom or progressive." }, { "node-health-yellow", NULL, "integer", NULL, "0", &check_number, "The score 'yellow' translates to in rsc_location constraints", "Only used when node-health-strategy is set to custom or progressive." }, { "node-health-red", NULL, "integer", NULL, "-INFINITY", &check_number, "The score 'red' translates to in rsc_location constraints", "Only used when node-health-strategy is set to custom or progressive." }, /*Placement Strategy*/ { "placement-strategy", NULL, "enum", "default, utilization, minimal, balanced", "default", &check_placement_strategy, "The strategy to determine resource placement", NULL}, }; void pe_metadata(void) { config_metadata("Policy Engine", "1.0", "Policy Engine Options", "This is a fake resource that details the options that can be configured for the Policy Engine.", pe_opts, DIMOF(pe_opts)); } void verify_pe_options(GHashTable *options) { verify_all_options(options, pe_opts, DIMOF(pe_opts)); } const char * pe_pref(GHashTable *options, const char *name) { return get_cluster_pref(options, pe_opts, DIMOF(pe_opts), name); } const char * fail2text(enum action_fail_response fail) { const char *result = ""; switch(fail) { case action_fail_ignore: result = "ignore"; break; case action_fail_block: result = "block"; break; case action_fail_recover: result = "recover"; break; case action_fail_migrate: result = "migrate"; break; case action_fail_stop: result = "stop"; break; case action_fail_fence: result = "fence"; break; case action_fail_standby: result = "standby"; break; } return result; } enum action_tasks text2task(const char *task) { if(safe_str_eq(task, CRMD_ACTION_STOP)) { return stop_rsc; } else if(safe_str_eq(task, CRMD_ACTION_STOPPED)) { return stopped_rsc; } else if(safe_str_eq(task, CRMD_ACTION_START)) { return start_rsc; } else if(safe_str_eq(task, CRMD_ACTION_STARTED)) { return started_rsc; } else if(safe_str_eq(task, CRM_OP_SHUTDOWN)) { return shutdown_crm; } else if(safe_str_eq(task, CRM_OP_FENCE)) { return stonith_node; } else if(safe_str_eq(task, CRMD_ACTION_STATUS)) { return monitor_rsc; } else if(safe_str_eq(task, CRMD_ACTION_NOTIFY)) { return action_notify; } else if(safe_str_eq(task, CRMD_ACTION_NOTIFIED)) { return action_notified; } else if(safe_str_eq(task, CRMD_ACTION_PROMOTE)) { return action_promote; } else if(safe_str_eq(task, CRMD_ACTION_DEMOTE)) { return action_demote; } else if(safe_str_eq(task, CRMD_ACTION_PROMOTED)) { return action_promoted; } else if(safe_str_eq(task, CRMD_ACTION_DEMOTED)) { return action_demoted; } #if SUPPORT_TRACING if(safe_str_eq(task, CRMD_ACTION_CANCEL)) { return no_action; } else if(safe_str_eq(task, CRMD_ACTION_DELETE)) { return no_action; } else if(safe_str_eq(task, CRMD_ACTION_STATUS)) { return no_action; } else if(safe_str_eq(task, CRM_OP_PROBED)) { return no_action; } else if(safe_str_eq(task, CRM_OP_LRM_REFRESH)) { return no_action; } else if(safe_str_eq(task, CRMD_ACTION_MIGRATE)) { return no_action; } else if(safe_str_eq(task, CRMD_ACTION_MIGRATED)) { return no_action; } else if(safe_str_eq(task, "fail")) { return no_action; } else if(safe_str_eq(task, "stonith_up")) { return no_action; } else if(safe_str_eq(task, "stonith_complete")) { return no_action; } else if(safe_str_eq(task, "all_stopped")) { return no_action; } crm_trace("Unsupported action: %s", task); #endif return no_action; } const char * task2text(enum action_tasks task) { const char *result = ""; switch(task) { case no_action: result = "no_action"; break; case stop_rsc: result = CRMD_ACTION_STOP; break; case stopped_rsc: result = CRMD_ACTION_STOPPED; break; case start_rsc: result = CRMD_ACTION_START; break; case started_rsc: result = CRMD_ACTION_STARTED; break; case shutdown_crm: result = CRM_OP_SHUTDOWN; break; case stonith_node: result = CRM_OP_FENCE; break; case monitor_rsc: result = CRMD_ACTION_STATUS; break; case action_notify: result = CRMD_ACTION_NOTIFY; break; case action_notified: result = CRMD_ACTION_NOTIFIED; break; case action_promote: result = CRMD_ACTION_PROMOTE; break; case action_promoted: result = CRMD_ACTION_PROMOTED; break; case action_demote: result = CRMD_ACTION_DEMOTE; break; case action_demoted: result = CRMD_ACTION_DEMOTED; break; } return result; } const char * role2text(enum rsc_role_e role) { CRM_CHECK(role >= RSC_ROLE_UNKNOWN, return RSC_ROLE_UNKNOWN_S); CRM_CHECK(role < RSC_ROLE_MAX, return RSC_ROLE_UNKNOWN_S); switch(role) { case RSC_ROLE_UNKNOWN: return RSC_ROLE_UNKNOWN_S; case RSC_ROLE_STOPPED: return RSC_ROLE_STOPPED_S; case RSC_ROLE_STARTED: return RSC_ROLE_STARTED_S; case RSC_ROLE_SLAVE: return RSC_ROLE_SLAVE_S; case RSC_ROLE_MASTER: return RSC_ROLE_MASTER_S; } return RSC_ROLE_UNKNOWN_S; } enum rsc_role_e text2role(const char *role) { if(safe_str_eq(role, RSC_ROLE_STOPPED_S)) { return RSC_ROLE_STOPPED; } else if(safe_str_eq(role, RSC_ROLE_STARTED_S)) { return RSC_ROLE_STARTED; } else if(safe_str_eq(role, RSC_ROLE_SLAVE_S)) { return RSC_ROLE_SLAVE; } else if(safe_str_eq(role, RSC_ROLE_MASTER_S)) { return RSC_ROLE_MASTER; } else if(safe_str_eq(role, RSC_ROLE_UNKNOWN_S)) { return RSC_ROLE_UNKNOWN; } crm_err("Unknown role: %s", role); return RSC_ROLE_UNKNOWN; } int merge_weights(int w1, int w2) { int result = w1 + w2; if(w1 <= -INFINITY || w2 <= -INFINITY) { if(w1 >= INFINITY || w2 >= INFINITY) { crm_debug_2("-INFINITY + INFINITY == -INFINITY"); } return -INFINITY; } else if(w1 >= INFINITY || w2 >= INFINITY) { return INFINITY; } /* detect wrap-around */ if(result > 0) { if(w1 <= 0 && w2 < 0) { result = -INFINITY; } } else if(w1 > 0 && w2 > 0) { result = INFINITY; } /* detect +/- INFINITY */ if(result >= INFINITY) { result = INFINITY; } else if(result <= -INFINITY) { result = -INFINITY; } crm_debug_5("%d + %d = %d", w1, w2, result); return result; } void add_hash_param(GHashTable *hash, const char *name, const char *value) { CRM_CHECK(hash != NULL, return); crm_debug_3("adding: name=%s value=%s", crm_str(name), crm_str(value)); if(name == NULL || value == NULL) { return; } else if(safe_str_eq(value, "#default")) { return; } else if(g_hash_table_lookup(hash, name) == NULL) { g_hash_table_insert(hash, crm_strdup(name), crm_strdup(value)); } } diff --git a/lib/pengine/complex.c b/lib/pengine/complex.c index 686e48f905..739734358e 100644 --- a/lib/pengine/complex.c +++ b/lib/pengine/complex.c @@ -1,472 +1,472 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include extern xmlNode *get_object_root(const char *object_type,xmlNode *the_root); void populate_hash(xmlNode *nvpair_list, GHashTable *hash, const char **attrs, int attrs_length); resource_object_functions_t resource_class_functions[] = { { native_unpack, native_find_rsc, native_parameter, native_print, native_active, native_resource_state, native_location, native_free }, { group_unpack, native_find_rsc, native_parameter, group_print, group_active, group_resource_state, native_location, group_free }, { clone_unpack, native_find_rsc, native_parameter, clone_print, clone_active, clone_resource_state, native_location, clone_free }, { master_unpack, native_find_rsc, native_parameter, clone_print, clone_active, clone_resource_state, native_location, clone_free } }; enum pe_obj_types get_resource_type(const char *name) { if(safe_str_eq(name, XML_CIB_TAG_RESOURCE)) { return pe_native; } else if(safe_str_eq(name, XML_CIB_TAG_GROUP)) { return pe_group; } else if(safe_str_eq(name, XML_CIB_TAG_INCARNATION)) { return pe_clone; } else if(safe_str_eq(name, XML_CIB_TAG_MASTER)) { return pe_master; } return pe_unknown; } const char *get_resource_typename(enum pe_obj_types type) { switch(type) { case pe_native: return XML_CIB_TAG_RESOURCE; case pe_group: return XML_CIB_TAG_GROUP; case pe_clone: return XML_CIB_TAG_INCARNATION; case pe_master: return XML_CIB_TAG_MASTER; case pe_unknown: return "unknown"; } return ""; } static void dup_attr(gpointer key, gpointer value, gpointer user_data) { add_hash_param(user_data, key, value); } void get_meta_attributes(GHashTable *meta_hash, resource_t *rsc, node_t *node, pe_working_set_t *data_set) { GHashTable *node_hash = NULL; if(node) { node_hash = node->details->attrs; } xml_prop_iter(rsc->xml, prop_name, prop_value, add_hash_param(meta_hash, prop_name, prop_value); ); unpack_instance_attributes(data_set->input, rsc->xml, XML_TAG_META_SETS, node_hash, meta_hash, NULL, FALSE, data_set->now); /* populate from the regular attributes until the GUI can create * meta attributes */ unpack_instance_attributes(data_set->input, rsc->xml, XML_TAG_ATTR_SETS, node_hash, meta_hash, NULL, FALSE, data_set->now); /* set anything else based on the parent */ if(rsc->parent != NULL) { g_hash_table_foreach(rsc->parent->meta, dup_attr, meta_hash); } /* and finally check the defaults */ unpack_instance_attributes(data_set->input, data_set->rsc_defaults, XML_TAG_META_SETS, node_hash, meta_hash, NULL, FALSE, data_set->now); } void get_rsc_attributes(GHashTable *meta_hash, resource_t *rsc, node_t *node, pe_working_set_t *data_set) { GHashTable *node_hash = NULL; if(node) { node_hash = node->details->attrs; } unpack_instance_attributes(data_set->input, rsc->xml, XML_TAG_ATTR_SETS, node_hash, meta_hash, NULL, FALSE, data_set->now); /* set anything else based on the parent */ if(rsc->parent != NULL) { get_rsc_attributes(meta_hash, rsc->parent, node, data_set); } else { /* and finally check the defaults */ unpack_instance_attributes(data_set->input, data_set->rsc_defaults, XML_TAG_ATTR_SETS, node_hash, meta_hash, NULL, FALSE, data_set->now); } } gboolean common_unpack(xmlNode * xml_obj, resource_t **rsc, resource_t *parent, pe_working_set_t *data_set) { xmlNode *ops = NULL; resource_t *top = NULL; const char *value = NULL; const char *id = crm_element_value(xml_obj, XML_ATTR_ID); const char *class = crm_element_value(xml_obj, XML_AGENT_ATTR_CLASS); crm_log_xml_debug_3(xml_obj, "Processing resource input..."); if(id == NULL) { pe_err("Must specify id tag in "); return FALSE; } else if(rsc == NULL) { pe_err("Nowhere to unpack resource into"); return FALSE; } crm_malloc0(*rsc, sizeof(resource_t)); ops = find_xml_node(xml_obj, "operations", FALSE); (*rsc)->xml = xml_obj; (*rsc)->parent = parent; (*rsc)->ops_xml = expand_idref(ops, data_set->input); (*rsc)->variant = get_resource_type(crm_element_name(xml_obj)); if((*rsc)->variant == pe_unknown) { pe_err("Unknown resource type: %s", crm_element_name(xml_obj)); crm_free(*rsc); return FALSE; } (*rsc)->parameters = g_hash_table_new_full( g_str_hash,g_str_equal, g_hash_destroy_str,g_hash_destroy_str); (*rsc)->meta = g_hash_table_new_full( g_str_hash,g_str_equal, g_hash_destroy_str,g_hash_destroy_str); (*rsc)->allowed_nodes = g_hash_table_new_full( g_str_hash,g_str_equal, NULL, g_hash_destroy_str); (*rsc)->known_on = g_hash_table_new_full( g_str_hash,g_str_equal, NULL, g_hash_destroy_str); value = crm_element_value(xml_obj, XML_RSC_ATTR_INCARNATION); if(value) { (*rsc)->id = crm_concat(id, value, ':'); add_hash_param((*rsc)->meta, XML_RSC_ATTR_INCARNATION, value); } else { (*rsc)->id = crm_strdup(id); } if(parent) { (*rsc)->long_name = crm_concat(parent->long_name, (*rsc)->id, ':'); } else { (*rsc)->long_name = crm_strdup((*rsc)->id); } (*rsc)->fns = &resource_class_functions[(*rsc)->variant]; crm_debug_3("Unpacking resource..."); get_meta_attributes((*rsc)->meta, *rsc, NULL, data_set); (*rsc)->flags = 0; set_bit((*rsc)->flags, pe_rsc_runnable); set_bit((*rsc)->flags, pe_rsc_provisional); if(is_set(data_set->flags, pe_flag_is_managed_default)) { set_bit((*rsc)->flags, pe_rsc_managed); } (*rsc)->rsc_cons = NULL; (*rsc)->actions = NULL; (*rsc)->role = RSC_ROLE_STOPPED; (*rsc)->next_role = RSC_ROLE_UNKNOWN; (*rsc)->recovery_type = recovery_stop_start; (*rsc)->stickiness = data_set->default_resource_stickiness; (*rsc)->migration_threshold= INFINITY; (*rsc)->failure_timeout = 0; value = g_hash_table_lookup((*rsc)->meta, XML_CIB_ATTR_PRIORITY); (*rsc)->priority = crm_parse_int(value, "0"); (*rsc)->effective_priority = (*rsc)->priority; value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_NOTIFY); if(crm_is_true(value)) { set_bit((*rsc)->flags, pe_rsc_notify); } value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_MANAGED); if(value != NULL && safe_str_neq("default", value)) { gboolean bool_value = TRUE; crm_str_to_boolean(value, &bool_value); if(bool_value == FALSE) { clear_bit((*rsc)->flags, pe_rsc_managed); } else { set_bit((*rsc)->flags, pe_rsc_managed); } } if(is_set(data_set->flags, pe_flag_maintenance_mode)) { clear_bit((*rsc)->flags, pe_rsc_managed); } crm_debug_2("Options for %s", (*rsc)->id); value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_UNIQUE); top = uber_parent(*rsc); if(crm_is_true(value) || top->variant < pe_clone) { set_bit((*rsc)->flags, pe_rsc_unique); } value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_RESTART); if(safe_str_eq(value, "restart")) { (*rsc)->restart_type = pe_restart_restart; crm_debug_2("\tDependency restart handling: restart"); } else { (*rsc)->restart_type = pe_restart_ignore; crm_debug_2("\tDependency restart handling: ignore"); } value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_MULTIPLE); if(safe_str_eq(value, "stop_only")) { (*rsc)->recovery_type = recovery_stop_only; crm_debug_2("\tMultiple running resource recovery: stop only"); } else if(safe_str_eq(value, "block")) { (*rsc)->recovery_type = recovery_block; crm_debug_2("\tMultiple running resource recovery: block"); } else { (*rsc)->recovery_type = recovery_stop_start; crm_debug_2("\tMultiple running resource recovery: stop/start"); } value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_STICKINESS); if(value != NULL && safe_str_neq("default", value)) { (*rsc)->stickiness = char2score(value); } value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_FAIL_STICKINESS); if(value != NULL && safe_str_neq("default", value)) { (*rsc)->migration_threshold = char2score(value); } else if(value == NULL) { /* Make a best-effort guess at a migration threshold for people with 0.6 configs * try with underscores and hyphens, from both the resource and global defaults section */ value = g_hash_table_lookup((*rsc)->meta, "resource-failure-stickiness"); if(value == NULL) { value = g_hash_table_lookup((*rsc)->meta, "resource_failure_stickiness"); } if(value == NULL) { value = g_hash_table_lookup(data_set->config_hash, "default-resource-failure-stickiness"); } if(value == NULL) { value = g_hash_table_lookup(data_set->config_hash, "default_resource_failure_stickiness"); } if(value) { int fail_sticky = char2score(value); if(fail_sticky == -INFINITY) { (*rsc)->migration_threshold = 1; crm_info("Set a migration threshold of %d for %s based on a failure-stickiness of %s", (*rsc)->migration_threshold, (*rsc)->id, value); } else if((*rsc)->stickiness != 0 && fail_sticky != 0) { (*rsc)->migration_threshold = (*rsc)->stickiness / fail_sticky; if((*rsc)->migration_threshold < 0) { /* Make sure it's positive */ (*rsc)->migration_threshold = 0 - (*rsc)->migration_threshold; } (*rsc)->migration_threshold += 1; crm_info("Calculated a migration threshold for %s of %d based on a stickiness of %d/%s", (*rsc)->id, (*rsc)->migration_threshold, (*rsc)->stickiness, value); } } } value = g_hash_table_lookup((*rsc)->meta, XML_RSC_ATTR_FAIL_TIMEOUT); if(value != NULL) { /* call crm_get_msec() and convert back to seconds */ (*rsc)->failure_timeout = (crm_get_msec(value) / 1000); } get_target_role(*rsc, &((*rsc)->next_role)); crm_debug_2("\tDesired next state: %s", (*rsc)->next_role!=RSC_ROLE_UNKNOWN?role2text((*rsc)->next_role):"default"); if((*rsc)->fns->unpack(*rsc, data_set) == FALSE) { return FALSE; } if(is_set(data_set->flags, pe_flag_symmetric_cluster)) { resource_location(*rsc, NULL, 0, "symmetric_default", data_set); } crm_debug_2("\tAction notification: %s", is_set((*rsc)->flags, pe_rsc_notify)?"required":"not required"); if(safe_str_eq(class, "stonith")) { set_bit_inplace(data_set->flags, pe_flag_have_stonith_resource); } (*rsc)->utilization = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); unpack_instance_attributes(data_set->input, (*rsc)->xml, XML_TAG_UTILIZATION, NULL, (*rsc)->utilization, NULL, FALSE, data_set->now); /* data_set->resources = g_list_append(data_set->resources, (*rsc)); */ return TRUE; } void common_update_score(resource_t *rsc, const char *id, int score) { node_t *node = NULL; node = pe_hash_table_lookup(rsc->allowed_nodes, id); if(node != NULL) { crm_debug_2("Updating score for %s on %s: %d + %d", rsc->id, id, node->weight, score); node->weight = merge_weights(node->weight, score); } if(rsc->children) { GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; common_update_score(child_rsc, id, score); } } } resource_t *uber_parent(resource_t *rsc) { resource_t *parent = rsc; if(parent == NULL) { return NULL; } while(parent->parent != NULL) { parent = parent->parent; } return parent; } void common_free(resource_t *rsc) { if(rsc == NULL) { return; } crm_debug_5("Freeing %s %d", rsc->id, rsc->variant); g_list_free(rsc->rsc_cons); g_list_free(rsc->rsc_cons_lhs); g_list_free(rsc->dangling_migrations); if(rsc->parameters != NULL) { g_hash_table_destroy(rsc->parameters); } if(rsc->meta != NULL) { g_hash_table_destroy(rsc->meta); } if(rsc->utilization != NULL) { g_hash_table_destroy(rsc->utilization); } if(rsc->parent == NULL && is_set(rsc->flags, pe_rsc_orphan)) { free_xml(rsc->xml); } if(rsc->running_on) { g_list_free(rsc->running_on); rsc->running_on = NULL; } if(rsc->known_on) { g_hash_table_destroy(rsc->known_on); rsc->known_on = NULL; } if(rsc->actions) { g_list_free(rsc->actions); rsc->actions = NULL; } if(rsc->allowed_nodes) { g_hash_table_destroy(rsc->allowed_nodes); rsc->allowed_nodes = NULL; } g_list_free(rsc->rsc_location); crm_free(rsc->id); crm_free(rsc->long_name); crm_free(rsc->clone_name); crm_free(rsc->allocated_to); crm_free(rsc->variant_opaque); crm_free(rsc); crm_debug_5("Resource freed"); } diff --git a/lib/pengine/group.c b/lib/pengine/group.c index 182931ee9b..bd91c091c4 100644 --- a/lib/pengine/group.c +++ b/lib/pengine/group.c @@ -1,225 +1,225 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #define VARIANT_GROUP 1 #include "./variant.h" gboolean group_unpack(resource_t *rsc, pe_working_set_t *data_set) { resource_t *self = NULL; xmlNode *xml_obj = rsc->xml; xmlNode *xml_self = copy_xml(rsc->xml); xmlNode *xml_native_rsc = NULL; group_variant_data_t *group_data = NULL; const char *group_ordered = g_hash_table_lookup( rsc->meta, XML_RSC_ATTR_ORDERED); const char *group_colocated = g_hash_table_lookup( rsc->meta, "collocated"); const char *clone_id = NULL; crm_debug_3("Processing resource %s...", rsc->id); crm_malloc0(group_data, sizeof(group_variant_data_t)); group_data->num_children = 0; group_data->self = NULL; group_data->first_child = NULL; group_data->last_child = NULL; rsc->variant_opaque = group_data; group_data->ordered = TRUE; group_data->colocated = TRUE; if(group_ordered != NULL) { crm_str_to_boolean(group_ordered, &(group_data->ordered)); } if(group_colocated != NULL) { crm_str_to_boolean(group_colocated, &(group_data->colocated)); } /* this is a bit of a hack - but simplifies everything else */ xmlNodeSetName(xml_self, ((const xmlChar*)XML_CIB_TAG_RESOURCE)); if(common_unpack(xml_self, &self, NULL, data_set)) { group_data->self = self; self->restart_type = pe_restart_restart; } else { crm_log_xml_err(xml_self, "Couldnt unpack dummy child"); return FALSE; } clone_id = crm_element_value(rsc->xml, XML_RSC_ATTR_INCARNATION); for(xml_native_rsc = __xml_first_child(xml_obj); xml_native_rsc != NULL; xml_native_rsc = __xml_next(xml_native_rsc)) { if(crm_str_eq((const char *)xml_native_rsc->name, XML_CIB_TAG_RESOURCE, TRUE)) { resource_t *new_rsc = NULL; crm_xml_add(xml_native_rsc, XML_RSC_ATTR_INCARNATION, clone_id); if(common_unpack(xml_native_rsc, &new_rsc, rsc, data_set) == FALSE) { pe_err("Failed unpacking resource %s", crm_element_value(xml_obj, XML_ATTR_ID)); if(new_rsc != NULL && new_rsc->fns != NULL) { new_rsc->fns->free(new_rsc); } } group_data->num_children++; rsc->children = g_list_append(rsc->children, new_rsc); if(group_data->first_child == NULL) { group_data->first_child = new_rsc; } group_data->last_child = new_rsc; print_resource(LOG_DEBUG_3, "Added", new_rsc, FALSE); } } if(group_data->num_children == 0) { #if 0 /* Bug #1287 */ crm_config_err("Group %s did not have any children", rsc->id); return FALSE; #else crm_config_warn("Group %s did not have any children", rsc->id); return TRUE; #endif } crm_debug_3("Added %d children to resource %s...", group_data->num_children, rsc->id); return TRUE; } gboolean group_active(resource_t *rsc, gboolean all) { gboolean c_all = TRUE; gboolean c_any = FALSE; GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; if(child_rsc->fns->active(child_rsc, all)) { c_any = TRUE; } else { c_all = FALSE; } } if(c_any == FALSE) { return FALSE; } else if(all && c_all == FALSE) { return FALSE; } return TRUE; } void group_print( resource_t *rsc, const char *pre_text, long options, void *print_data) { char *child_text = NULL; GListPtr gIter = rsc->children; if(pre_text == NULL) { pre_text = " "; } child_text = crm_concat(pre_text, " ", ' '); status_print("%sResource Group: %s", pre_text?pre_text:"", rsc->id); if(options & pe_print_html) { status_print("\n
      \n"); } else if((options & pe_print_log) == 0) { status_print("\n"); } for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; if(options & pe_print_html) { status_print("
    • \n"); } child_rsc->fns->print( child_rsc, child_text, options, print_data); if(options & pe_print_html) { status_print("
    • \n"); } } if(options & pe_print_html) { status_print("
    \n"); } crm_free(child_text); } void group_free(resource_t *rsc) { GListPtr gIter = rsc->children; group_variant_data_t *group_data = NULL; CRM_CHECK(rsc != NULL, return); get_group_variant_data(group_data, rsc); crm_debug_3("Freeing %s", rsc->id); for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; crm_debug_3("Freeing child %s", child_rsc->id); child_rsc->fns->free(child_rsc); } crm_debug_3("Freeing child list"); g_list_free(rsc->children); if(group_data->self != NULL) { free_xml(group_data->self->xml); group_data->self->fns->free(group_data->self); } common_free(rsc); } enum rsc_role_e group_resource_state(const resource_t *rsc, gboolean current) { enum rsc_role_e group_role = RSC_ROLE_UNKNOWN; GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; enum rsc_role_e role = child_rsc->fns->state(child_rsc, current); if(role > group_role) { group_role = role; } } crm_debug_3("%s role: %s", rsc->id, role2text(group_role)); return group_role; } diff --git a/lib/pengine/native.c b/lib/pengine/native.c index ed66991d05..5039c91d24 100644 --- a/lib/pengine/native.c +++ b/lib/pengine/native.c @@ -1,486 +1,486 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #define VARIANT_NATIVE 1 #include "./variant.h" void native_add_running(resource_t *rsc, node_t *node, pe_working_set_t *data_set) { GListPtr gIter = rsc->running_on; CRM_CHECK(node != NULL, return); for(; gIter != NULL; gIter = gIter->next) { node_t *a_node = (node_t*)gIter->data; CRM_CHECK(a_node != NULL, return); if(safe_str_eq(a_node->details->id, node->details->id)) { return; } } crm_debug_3("Adding %s to %s", rsc->id, node->details->uname); rsc->running_on = g_list_append(rsc->running_on, node); if(rsc->variant == pe_native) { node->details->running_rsc = g_list_append( node->details->running_rsc, rsc); } if(is_not_set(rsc->flags, pe_rsc_managed)) { crm_info("resource %s isnt managed", rsc->id); resource_location(rsc, node, INFINITY, "not_managed_default", data_set); return; } if(rsc->variant == pe_native && g_list_length(rsc->running_on) > 1) { const char *type = crm_element_value(rsc->xml, XML_ATTR_TYPE); const char *class = crm_element_value( rsc->xml, XML_AGENT_ATTR_CLASS); /* these are errors because hardly anyone gets it right * at the moment and this way they might notice */ pe_proc_err("Resource %s::%s:%s appears to be active on %d nodes.", class, type, rsc->id, g_list_length(rsc->running_on)); cl_log(LOG_WARNING, "See %s for more information.", "http://clusterlabs.org/wiki/FAQ#Resource_is_Too_Active"); if(rsc->recovery_type == recovery_stop_only) { GHashTableIter iter; node_t *node = NULL; crm_debug("Making sure %s doesn't come up again", rsc->id); /* make sure it doesnt come up again */ g_hash_table_destroy(rsc->allowed_nodes); /* TODO: Free contents */ rsc->allowed_nodes = node_hash_from_list(data_set->nodes); g_hash_table_iter_init (&iter, rsc->allowed_nodes); while (g_hash_table_iter_next (&iter, NULL, (void**)&node)) { node->weight = -INFINITY; } } else if(rsc->recovery_type == recovery_block) { clear_bit(rsc->flags, pe_rsc_managed); } } else { crm_debug_3("Resource %s is active on: %s", rsc->id, node->details->uname); } if(rsc->parent != NULL) { native_add_running(rsc->parent, node, data_set); } } extern void force_non_unique_clone(resource_t *rsc, const char *rid, pe_working_set_t *data_set); gboolean native_unpack(resource_t *rsc, pe_working_set_t *data_set) { native_variant_data_t *native_data = NULL; crm_debug_3("Processing resource %s...", rsc->id); crm_malloc0(native_data, sizeof(native_variant_data_t)); if(is_set(rsc->flags, pe_rsc_unique) && rsc->parent) { const char *class = crm_element_value(rsc->xml, XML_AGENT_ATTR_CLASS); if(safe_str_eq(class, "lsb")) { resource_t *top = uber_parent(rsc); force_non_unique_clone(top, rsc->id, data_set); } } rsc->variant_opaque = native_data; return TRUE; } resource_t * native_find_rsc( resource_t *rsc, const char *id, gboolean renamed_clones, gboolean partial, node_t *on_node, gboolean current) { gboolean match = FALSE; resource_t *result = NULL; GListPtr gIter = rsc->children; if(id == NULL) { return NULL; } if(partial) { if(strstr(rsc->id, id) == rsc->id) { match = TRUE; } else if(rsc->long_name && strstr(rsc->long_name, id) == rsc->long_name) { match = TRUE; } else if(renamed_clones && rsc->clone_name && strstr(rsc->clone_name, id) == rsc->clone_name) { match = TRUE; } } else { if(strcmp(rsc->id, id) == 0){ match = TRUE; } else if(rsc->long_name && strcmp(rsc->long_name, id) == 0) { match = TRUE; } else if(renamed_clones && rsc->clone_name && strcmp(rsc->clone_name, id) == 0) { match = TRUE; } } if(match && on_node) { if(current && rsc->running_on) { GListPtr gIter = rsc->running_on; for(; gIter != NULL; gIter = gIter->next) { node_t *loc = (node_t*)gIter->data; if(loc->details == on_node->details) { return rsc; } } } else if(current == FALSE && rsc->allocated_to->details == on_node->details) { return rsc; } } else if(match) { return rsc; } for(; gIter != NULL; gIter = gIter->next) { resource_t *child = (resource_t*)gIter->data; result = rsc->fns->find_rsc(child, id, renamed_clones, partial, on_node, current); if(result) { return result; } } return NULL; } char * native_parameter( resource_t *rsc, node_t *node, gboolean create, const char *name, pe_working_set_t *data_set) { char *value_copy = NULL; const char *value = NULL; GHashTable *hash = rsc->parameters; GHashTable *local_hash = NULL; CRM_CHECK(rsc != NULL, return NULL); CRM_CHECK(name != NULL && strlen(name) != 0, return NULL); crm_debug_2("Looking up %s in %s", name, rsc->id); if(create || g_hash_table_size(rsc->parameters) == 0) { if(node != NULL) { crm_debug_2("Creating hash with node %s", node->details->uname); } else { crm_debug_2("Creating default hash"); } local_hash = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); get_rsc_attributes(local_hash, rsc, node, data_set); hash = local_hash; } value = g_hash_table_lookup(hash, name); if(value == NULL) { /* try meta attributes instead */ value = g_hash_table_lookup(rsc->meta, name); } if(value != NULL) { value_copy = crm_strdup(value); } if(local_hash != NULL) { g_hash_table_destroy(local_hash); } return value_copy; } gboolean native_active(resource_t *rsc, gboolean all) { GListPtr gIter = rsc->running_on; for(; gIter != NULL; gIter = gIter->next) { node_t *a_node = (node_t*)gIter->data; if(a_node->details->online == FALSE) { crm_debug("Resource %s: node %s is offline", rsc->id, a_node->details->uname); } else if(a_node->details->unclean) { crm_debug("Resource %s: node %s is unclean", rsc->id, a_node->details->uname); } else { crm_debug("Resource %s active on %s", rsc->id, a_node->details->uname); return TRUE; } } return FALSE; } struct print_data_s { long options; void *print_data; }; static void native_print_attr(gpointer key, gpointer value, gpointer user_data) { long options = ((struct print_data_s*)user_data)->options; void *print_data = ((struct print_data_s*)user_data)->print_data; status_print("Option: %s = %s\n", (char*)key, (char*)value); } void native_print( resource_t *rsc, const char *pre_text, long options, void *print_data) { node_t *node = NULL; const char *prov = NULL; const char *class = crm_element_value(rsc->xml, XML_AGENT_ATTR_CLASS); if(pre_text == NULL && (options & pe_print_printf)) { pre_text = " "; } if(safe_str_eq(class, "ocf")) { prov = crm_element_value(rsc->xml, XML_AGENT_ATTR_PROVIDER); } if(rsc->running_on != NULL) { node = rsc->running_on->data; } if(options & pe_print_html) { if(is_not_set(rsc->flags, pe_rsc_managed)) { status_print(""); } else if(is_set(rsc->flags, pe_rsc_failed)) { status_print(""); } else if(rsc->variant == pe_native && g_list_length(rsc->running_on) == 0) { status_print(""); } else if(g_list_length(rsc->running_on) > 1) { status_print(""); } else { status_print(""); } } if((options & pe_print_rsconly) || g_list_length(rsc->running_on) > 1) { const char *desc = NULL; desc = crm_element_value(rsc->xml, XML_ATTR_DESC); status_print("%s%s\t(%s%s%s:%s%s) %s %s%s%s%s", pre_text?pre_text:"", rsc->id, class, prov?"::":"", prov?prov:"", crm_element_value(rsc->xml, XML_ATTR_TYPE), is_set(rsc->flags, pe_rsc_orphan)?" ORPHANED":"", (rsc->variant!=pe_native)?"":role2text(rsc->role), is_set(rsc->flags, pe_rsc_managed)?"":" (unmanaged)", is_set(rsc->flags, pe_rsc_failed)?" FAILED":"", desc?": ":"", desc?desc:""); } else { status_print("%s%s\t(%s%s%s:%s):\t%s%s %s%s%s", pre_text?pre_text:"", rsc->id, class, prov?"::":"", prov?prov:"", crm_element_value(rsc->xml, XML_ATTR_TYPE), is_set(rsc->flags, pe_rsc_orphan)?" ORPHANED ":"", (rsc->variant!=pe_native)?"":role2text(rsc->role), (rsc->variant!=pe_native)?"":node!=NULL?node->details->uname:"", is_set(rsc->flags, pe_rsc_managed)?"":" (unmanaged)", is_set(rsc->flags, pe_rsc_failed)?" FAILED":""); #if CURSES_ENABLED if(options & pe_print_ncurses) { move(-1, 0); } #endif } if(options & pe_print_html) { status_print(" "); } if((options & pe_print_rsconly)) { } else if(g_list_length(rsc->running_on) > 1) { GListPtr gIter = rsc->running_on; int counter = 0; if(options & pe_print_html) { status_print("
      \n"); } else if((options & pe_print_printf) || (options & pe_print_ncurses)) { status_print("["); } for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; counter++; if(options & pe_print_html) { status_print("
    • \n%s", node->details->uname); } else if((options & pe_print_printf) || (options & pe_print_ncurses)) { status_print("\t%s", node->details->uname); } else if((options & pe_print_log)) { status_print("\t%d : %s", counter, node->details->uname); } else { status_print("%s", node->details->uname); } if(options & pe_print_html) { status_print("
    • \n"); } } if(options & pe_print_html) { status_print("
    \n"); } else if((options & pe_print_printf) || (options & pe_print_ncurses)) { status_print(" ]"); } } if(options & pe_print_html) { status_print("
    \n"); } else if(options & pe_print_suppres_nl) { /* nothing */ } else if((options & pe_print_printf) || (options & pe_print_ncurses)) { status_print("\n"); } if(options & pe_print_details) { struct print_data_s pdata; pdata.options = options; pdata.print_data = print_data; g_hash_table_foreach(rsc->parameters, native_print_attr, &pdata); } if(options & pe_print_dev) { GHashTableIter iter; node_t *node = NULL; status_print("%s\t(%s%svariant=%s, priority=%f)", pre_text, is_set(rsc->flags, pe_rsc_provisional)?"provisional, ":"", is_set(rsc->flags, pe_rsc_runnable)?"":"non-startable, ", crm_element_name(rsc->xml), (double)rsc->priority); status_print("%s\tAllowed Nodes", pre_text); g_hash_table_iter_init (&iter, rsc->allowed_nodes); while (g_hash_table_iter_next (&iter, NULL, (void**)&node)) { status_print("%s\t * %s %d", pre_text, node->details->uname, node->weight); } } if(options & pe_print_max_details) { GHashTableIter iter; node_t *node = NULL; status_print("%s\t=== Allowed Nodes\n", pre_text); g_hash_table_iter_init (&iter, rsc->allowed_nodes); while (g_hash_table_iter_next (&iter, NULL, (void**)&node)) { print_node("\t", node, FALSE); } } } void native_free(resource_t *rsc) { crm_debug_4("Freeing resource action list (not the data)"); common_free(rsc); } enum rsc_role_e native_resource_state(const resource_t *rsc, gboolean current) { enum rsc_role_e role = rsc->next_role; if(current) { role = rsc->role; } crm_debug_4("%s state: %s", rsc->id, role2text(role)); return role; } node_t *native_location(resource_t *rsc, GListPtr *list, gboolean current) { node_t *one = NULL; GListPtr result = NULL; if(rsc->children) { GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child = (resource_t*)gIter->data; child->fns->location(child, &result, current); } } else if(current && rsc->running_on) { result = g_list_copy(rsc->running_on); } else if(current == FALSE && rsc->allocated_to) { result = g_list_append(NULL, rsc->allocated_to); } if(result && g_list_length(result) == 1) { one = g_list_nth_data(result, 0); } if(list) { GListPtr gIter = result; for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; if(*list == NULL || pe_find_node_id(*list, node->details->id) == NULL) { *list = g_list_append(*list, node); } } } g_list_free(result); return one; } diff --git a/lib/pengine/rules.c b/lib/pengine/rules.c index 017ad89785..32ad038783 100644 --- a/lib/pengine/rules.c +++ b/lib/pengine/rules.c @@ -1,662 +1,662 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include CRM_TRACE_INIT_DATA(pe_rules); ha_time_t *parse_xml_duration(ha_time_t *start, xmlNode *duration_spec); gboolean test_date_expression(xmlNode *time_expr, ha_time_t *now); gboolean cron_range_satisfied(ha_time_t *now, xmlNode *cron_spec); gboolean test_attr_expression( xmlNode *expr, GHashTable *hash, ha_time_t *now); gboolean test_role_expression( xmlNode *expr, enum rsc_role_e role, ha_time_t *now); gboolean test_ruleset(xmlNode *ruleset, GHashTable *node_hash, ha_time_t *now) { gboolean ruleset_default = TRUE; xmlNode *rule = NULL; for(rule = __xml_first_child(ruleset); rule != NULL; rule = __xml_next(rule)) { if(crm_str_eq((const char *)rule->name, XML_TAG_RULE, TRUE)) { ruleset_default = FALSE; if(test_rule(rule, node_hash, RSC_ROLE_UNKNOWN, now)) { return TRUE; } } } return ruleset_default; } gboolean test_rule(xmlNode *rule, GHashTable *node_hash, enum rsc_role_e role, ha_time_t *now) { xmlNode *expr = NULL; gboolean test = TRUE; gboolean empty = TRUE; gboolean passed = TRUE; gboolean do_and = TRUE; const char *value = NULL; rule = expand_idref(rule, NULL); value = crm_element_value(rule, XML_RULE_ATTR_BOOLEAN_OP); if(safe_str_eq(value, "or")) { do_and = FALSE; passed = FALSE; } crm_debug_2("Testing rule %s", ID(rule)); for(expr = __xml_first_child(rule); expr != NULL; expr = __xml_next(expr)) { test = test_expression(expr, node_hash, role, now); empty = FALSE; if(test && do_and == FALSE) { crm_debug_3("Expression %s/%s passed", ID(rule), ID(expr)); return TRUE; } else if(test == FALSE && do_and) { crm_debug_3("Expression %s/%s failed", ID(rule), ID(expr)); return FALSE; } } if(empty) { crm_err("Invalid Rule %s: rules must contain at least one expression", ID(rule)); } crm_debug_2("Rule %s %s", ID(rule), passed?"passed":"failed"); return passed; } gboolean test_expression(xmlNode *expr, GHashTable *node_hash, enum rsc_role_e role, ha_time_t *now) { gboolean accept = FALSE; const char *uname = NULL; switch(find_expression_type(expr)) { case nested_rule: accept = test_rule(expr, node_hash, role, now); break; case attr_expr: case loc_expr: /* these expressions can never succeed if there is * no node to compare with */ if(node_hash != NULL) { accept = test_attr_expression(expr, node_hash, now); } break; case time_expr: accept = test_date_expression(expr, now); break; case role_expr: accept = test_role_expression(expr, role, now); break; default: CRM_CHECK(FALSE /* bad type */, return FALSE); accept = FALSE; } if(node_hash) { uname = g_hash_table_lookup(node_hash, "#uname"); } crm_debug_2("Expression %s %s on %s", ID(expr), accept?"passed":"failed", uname?uname:"all ndoes"); return accept; } enum expression_type find_expression_type(xmlNode *expr) { const char *tag = NULL; const char *attr = NULL; attr = crm_element_value(expr, XML_EXPR_ATTR_ATTRIBUTE); tag = crm_element_name(expr); if(safe_str_eq(tag, "date_expression")) { return time_expr; } else if(safe_str_eq(tag, XML_TAG_RULE)) { return nested_rule; } else if(safe_str_neq(tag, "expression")) { return not_expr; } else if(safe_str_eq(attr, "#uname") || safe_str_eq(attr, "#id")) { return loc_expr; } else if(safe_str_eq(attr, "#role")) { return role_expr; } return attr_expr; } gboolean test_role_expression( xmlNode *expr, enum rsc_role_e role, ha_time_t *now) { gboolean accept = FALSE; const char *op = NULL; const char *value = NULL; if(role == RSC_ROLE_UNKNOWN) { return accept; } value = crm_element_value(expr, XML_EXPR_ATTR_VALUE); op = crm_element_value(expr, XML_EXPR_ATTR_OPERATION); if(safe_str_eq(op, "defined")) { if(role > RSC_ROLE_STARTED) { accept = TRUE; } } else if(safe_str_eq(op, "not_defined")) { if(role < RSC_ROLE_SLAVE && role > RSC_ROLE_UNKNOWN) { accept = TRUE; } } else if(safe_str_eq(op, "eq")) { if(text2role(value) == role) { accept = TRUE; } } else if(safe_str_eq(op, "ne")) { /* we will only test "ne" wtih master/slave roles style */ if(role < RSC_ROLE_SLAVE && role > RSC_ROLE_UNKNOWN) { accept = FALSE; } else if(text2role(value) != role) { accept = TRUE; } } return accept; } gboolean test_attr_expression(xmlNode *expr, GHashTable *hash, ha_time_t *now) { gboolean accept = FALSE; int cmp = 0; const char *h_val = NULL; const char *op = NULL; const char *type = NULL; const char *attr = NULL; const char *value = NULL; attr = crm_element_value(expr, XML_EXPR_ATTR_ATTRIBUTE); op = crm_element_value(expr, XML_EXPR_ATTR_OPERATION); value = crm_element_value(expr, XML_EXPR_ATTR_VALUE); type = crm_element_value(expr, XML_EXPR_ATTR_TYPE); if(attr == NULL || op == NULL) { pe_err("Invlaid attribute or operation in expression" " (\'%s\' \'%s\' \'%s\')", crm_str(attr), crm_str(op), crm_str(value)); return FALSE; } if(hash != NULL) { h_val = (const char*)g_hash_table_lookup(hash, attr); } if(value != NULL && h_val != NULL) { if(type == NULL) { if(safe_str_eq(op, "lt") || safe_str_eq(op, "lte") || safe_str_eq(op, "gt") || safe_str_eq(op, "gte")) { type = "number"; } else { type = "string"; } crm_debug_2("Defaulting to %s based comparison for '%s' op", type, op); } if(safe_str_eq(type, "string")) { cmp = strcasecmp(h_val, value); } else if(safe_str_eq(type, "number")) { int h_val_f = crm_parse_int(h_val, NULL); int value_f = crm_parse_int(value, NULL); if(h_val_f < value_f) { cmp = -1; } else if(h_val_f > value_f) { cmp = 1; } else { cmp = 0; } } else if(safe_str_eq(type, "version")) { cmp = compare_version(h_val, value); } } else if(value == NULL && h_val == NULL) { cmp = 0; } else if(value == NULL) { cmp = 1; } else { cmp = -1; } if(safe_str_eq(op, "defined")) { if(h_val != NULL) { accept = TRUE; } } else if(safe_str_eq(op, "not_defined")) { if(h_val == NULL) { accept = TRUE; } } else if(safe_str_eq(op, "eq")) { if((h_val == value) || cmp == 0) { accept = TRUE; } } else if(safe_str_eq(op, "ne")) { if((h_val == NULL && value != NULL) || (h_val != NULL && value == NULL) || cmp != 0) { accept = TRUE; } } else if(value == NULL || h_val == NULL) { /* the comparision is meaningless from this point on */ accept = FALSE; } else if(safe_str_eq(op, "lt")) { if(cmp < 0) { accept = TRUE; } } else if(safe_str_eq(op, "lte")) { if(cmp <= 0) { accept = TRUE; } } else if(safe_str_eq(op, "gt")) { if(cmp > 0) { accept = TRUE; } } else if(safe_str_eq(op, "gte")) { if(cmp >= 0) { accept = TRUE; } } return accept; } /* As per the nethack rules: * * moon period = 29.53058 days ~= 30, year = 365.2422 days * days moon phase advances on first day of year compared to preceding year * = 365.2422 - 12*29.53058 ~= 11 * years in Metonic cycle (time until same phases fall on the same days of * the month) = 18.6 ~= 19 * moon phase on first day of year (epact) ~= (11*(year%19) + 29) % 30 * (29 as initial condition) * current phase in days = first day phase + days elapsed in year * 6 moons ~= 177 days * 177 ~= 8 reported phases * 22 * + 11/22 for rounding * * 0-7, with 0: new, 4: full */ static int phase_of_the_moon(ha_time_t *now) { int epact, diy, goldn; diy = now->yeardays; goldn = (now->years % 19) + 1; epact = (11 * goldn + 18) % 30; if ((epact == 25 && goldn > 11) || epact == 24) epact++; return( (((((diy + epact) * 6) + 11) % 177) / 22) & 7 ); } #define cron_check(xml_field, time_field) \ value = crm_element_value(cron_spec, xml_field); \ if(value != NULL) { \ gboolean pass = TRUE; \ decodeNVpair(value, '-', &value_low, &value_high); \ if(value_low == NULL) { \ value_low = crm_strdup(value); \ } \ value_low_i = crm_parse_int(value_low, "0"); \ value_high_i = crm_parse_int(value_high, "-1"); \ if(value_high_i < 0) { \ if(value_low_i != time_field) { \ pass = FALSE; \ } \ } else if(value_low_i > time_field) { \ pass = FALSE; \ } else if(value_high_i < time_field) { \ pass = FALSE; \ } \ crm_free(value_low); \ crm_free(value_high); \ if(pass == FALSE) { \ crm_debug("Condition '%s' in %s: failed", value, xml_field); \ return pass; \ } \ crm_debug("Condition '%s' in %s: passed", value, xml_field); \ } gboolean cron_range_satisfied(ha_time_t *now, xmlNode *cron_spec) { const char *value = NULL; char *value_low = NULL; char *value_high = NULL; int value_low_i = 0; int value_high_i = 0; CRM_CHECK(now != NULL, return FALSE); cron_check("seconds", now->seconds); cron_check("minutes", now->minutes); cron_check("hours", now->hours); cron_check("monthdays", now->days); cron_check("weekdays", now->weekdays); cron_check("yeardays", now->yeardays); cron_check("weeks", now->weeks); cron_check("months", now->months); cron_check("years", now->years); cron_check("weekyears", now->weekyears); cron_check("moon", phase_of_the_moon(now)); return TRUE; } #define update_field(xml_field, time_fn) \ value = crm_element_value(duration_spec, xml_field); \ if(value != NULL) { \ int value_i = crm_parse_int(value, "0"); \ time_fn(end, value_i); \ } ha_time_t * parse_xml_duration(ha_time_t *start, xmlNode *duration_spec) { ha_time_t *end = NULL; const char *value = NULL; end = new_ha_date(FALSE); ha_set_time(end, start, TRUE); update_field("years", add_years); update_field("months", add_months); update_field("weeks", add_weeks); update_field("days", add_days); update_field("hours", add_hours); update_field("minutes", add_minutes); update_field("seconds", add_seconds); return end; } gboolean test_date_expression(xmlNode *time_expr, ha_time_t *now) { ha_time_t *start = NULL; ha_time_t *end = NULL; const char *value = NULL; char *value_copy = NULL; char *value_copy_start = NULL; const char *op = crm_element_value(time_expr, "operation"); xmlNode *duration_spec = NULL; xmlNode *date_spec = NULL; gboolean passed = FALSE; crm_debug_2("Testing expression: %s", ID(time_expr)); duration_spec = first_named_child(time_expr, "duration"); date_spec = first_named_child(time_expr, "date_spec"); value = crm_element_value(time_expr, "start"); if(value != NULL) { value_copy = crm_strdup(value); value_copy_start = value_copy; start = parse_date(&value_copy); crm_free(value_copy_start); } value = crm_element_value(time_expr, "end"); if(value != NULL) { value_copy = crm_strdup(value); value_copy_start = value_copy; end = parse_date(&value_copy); crm_free(value_copy_start); } if(start != NULL && end == NULL && duration_spec != NULL) { end = parse_xml_duration(start, duration_spec); } if(op == NULL) { op = "in_range"; } if(safe_str_eq(op, "date_spec") || safe_str_eq(op, "in_range")) { if(start != NULL && compare_date(start, now) > 0) { passed = FALSE; } else if(end != NULL && compare_date(end, now) < 0) { passed = FALSE; } else if(safe_str_eq(op, "in_range")) { passed = TRUE; } else { passed = cron_range_satisfied(now, date_spec); } } else if(safe_str_eq(op, "gt") && compare_date(start, now) < 0) { passed = TRUE; } else if(safe_str_eq(op, "lt") && compare_date(end, now) > 0) { passed = TRUE; } else if(safe_str_eq(op, "eq") && compare_date(start, now) == 0) { passed = TRUE; } else if(safe_str_eq(op, "neq") && compare_date(start, now) != 0) { passed = TRUE; } free_ha_date(start); free_ha_date(end); return passed; } typedef struct sorted_set_s { int score; const char *name; const char *special_name; xmlNode *attr_set; } sorted_set_t; static gint sort_pairs(gconstpointer a, gconstpointer b) { const sorted_set_t *pair_a = a; const sorted_set_t *pair_b = b; if(a == NULL && b == NULL) { return 0; } else if(a == NULL) { return 1; } else if(b == NULL) { return -1; } if(safe_str_eq(pair_a->name, pair_a->special_name)) { return -1; } else if(safe_str_eq(pair_b->name, pair_a->special_name)) { return 1; } if(pair_a->score < pair_b->score) { return 1; } else if(pair_a->score > pair_b->score) { return -1; } return 0; } static void populate_hash(xmlNode *nvpair_list, GHashTable *hash, gboolean overwrite) { const char *name = NULL; const char *value = NULL; const char *old_value = NULL; xmlNode *list = nvpair_list; xmlNode *an_attr = NULL; name = crm_element_name(list->children); if(safe_str_eq(XML_TAG_ATTRS, name)) { list = list->children; } for(an_attr = __xml_first_child(list); an_attr != NULL; an_attr = __xml_next(an_attr)) { if(crm_str_eq((const char *)an_attr->name, XML_CIB_TAG_NVPAIR, TRUE)) { name = crm_element_value(an_attr, XML_NVPAIR_ATTR_NAME); crm_debug_4("Setting attribute: %s", name); value = crm_element_value( an_attr, XML_NVPAIR_ATTR_VALUE); if(name == NULL || value == NULL) { continue; } old_value = g_hash_table_lookup(hash, name); if(safe_str_eq(value, "#default")) { if(old_value) { crm_debug_2("Removing value for %s (%s)", name, value); g_hash_table_remove(hash, name); } continue; } else if(old_value == NULL) { g_hash_table_insert(hash, crm_strdup(name), crm_strdup(value)); } else if(overwrite) { crm_debug("Overwriting value of %s: %s -> %s", name, old_value, value); g_hash_table_replace(hash, crm_strdup(name), crm_strdup(value)); } } } } struct unpack_data_s { gboolean overwrite; GHashTable *node_hash; GHashTable *hash; ha_time_t *now; }; static void unpack_attr_set(gpointer data, gpointer user_data) { sorted_set_t *pair = data; struct unpack_data_s *unpack_data = user_data; if(test_ruleset(pair->attr_set, unpack_data->node_hash, unpack_data->now) == FALSE) { return; } crm_debug_3("Adding attributes from %s", pair->name); populate_hash(pair->attr_set, unpack_data->hash, unpack_data->overwrite); } void unpack_instance_attributes( xmlNode *top, xmlNode *xml_obj, const char *set_name, GHashTable *node_hash, GHashTable *hash, const char *always_first, gboolean overwrite, ha_time_t *now) { GListPtr sorted = NULL; GListPtr unsorted = NULL; const char *score = NULL; sorted_set_t *pair = NULL; struct unpack_data_s data; xmlNode *attr_set = NULL; if(xml_obj == NULL) { crm_debug_4("No instance attributes"); return; } crm_debug_4("Checking for attributes"); for(attr_set = __xml_first_child(xml_obj); attr_set != NULL; attr_set = __xml_next(attr_set)) { /* Uncertain if set_name == NULL check is strictly necessary here */ if(set_name == NULL || crm_str_eq((const char *)attr_set->name, set_name, TRUE)) { pair = NULL; attr_set = expand_idref(attr_set, top); if(attr_set == NULL) { continue; } crm_malloc0(pair, sizeof(sorted_set_t)); pair->name = ID(attr_set); pair->special_name = always_first; pair->attr_set = attr_set; score = crm_element_value(attr_set, XML_RULE_ATTR_SCORE); pair->score = char2score(score); unsorted = g_list_prepend(unsorted, pair); } } if(pair != NULL) { data.hash = hash; data.node_hash = node_hash; data.now = now; data.overwrite = overwrite; } sorted = g_list_sort(unsorted, sort_pairs); g_list_foreach(sorted, unpack_attr_set, &data); slist_basic_destroy(sorted); } diff --git a/lib/pengine/status.c b/lib/pengine/status.c index e83c1c863a..fb4feb1a02 100644 --- a/lib/pengine/status.c +++ b/lib/pengine/status.c @@ -1,285 +1,285 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include extern xmlNode*get_object_root( const char *object_type, xmlNode *the_root); #define MEMCHECK_STAGE_0 0 #define check_and_exit(stage) cleanup_calculations(data_set); \ crm_mem_stats(NULL); \ crm_err("Exiting: stage %d", stage); \ exit(1); /* * Unpack everything * At the end you'll have: * - A list of nodes * - A list of resources (each with any dependencies on other resources) * - A list of constraints between resources and nodes * - A list of constraints between start/stop actions * - A list of nodes that need to be stonith'd * - A list of nodes that need to be shutdown * - A list of the possible stop/start actions (without dependencies) */ gboolean cluster_status(pe_working_set_t *data_set) { xmlNode * config = get_object_root( XML_CIB_TAG_CRMCONFIG, data_set->input); xmlNode * cib_nodes = get_object_root( XML_CIB_TAG_NODES, data_set->input); xmlNode * cib_resources = get_object_root( XML_CIB_TAG_RESOURCES, data_set->input); xmlNode * cib_status = get_object_root( XML_CIB_TAG_STATUS, data_set->input); xmlNode * cib_domains = get_object_root( XML_CIB_TAG_DOMAINS, data_set->input); const char *value = crm_element_value( data_set->input, XML_ATTR_HAVE_QUORUM); crm_debug_3("Beginning unpack"); pe_dataset = data_set; /* reset remaining global variables */ data_set->failed = create_xml_node(NULL, "failed-ops"); if(data_set->input == NULL) { return FALSE; } if(data_set->now == NULL) { data_set->now = new_ha_date(TRUE); } if(data_set->input != NULL && crm_element_value(data_set->input, XML_ATTR_DC_UUID) != NULL) { /* this should always be present */ data_set->dc_uuid = crm_element_value_copy( data_set->input, XML_ATTR_DC_UUID); } clear_bit_inplace(data_set->flags, pe_flag_have_quorum); if(crm_is_true(value)) { set_bit_inplace(data_set->flags, pe_flag_have_quorum); } data_set->op_defaults = get_object_root(XML_CIB_TAG_OPCONFIG, data_set->input); data_set->rsc_defaults = get_object_root(XML_CIB_TAG_RSCCONFIG, data_set->input); unpack_config(config, data_set); if(is_set(data_set->flags, pe_flag_have_quorum) == FALSE && data_set->no_quorum_policy != no_quorum_ignore) { crm_warn("We do not have quorum" " - fencing and resource management disabled"); } unpack_nodes(cib_nodes, data_set); unpack_domains(cib_domains, data_set); unpack_resources(cib_resources, data_set); unpack_status(cib_status, data_set); set_bit_inplace(data_set->flags, pe_flag_have_status); return TRUE; } static void pe_free_resources(GListPtr resources) { resource_t *rsc = NULL; GListPtr iterator = resources; while(iterator != NULL) { iterator = iterator; rsc = (resource_t *)iterator->data; iterator = iterator->next; rsc->fns->free(rsc); } if(resources != NULL) { g_list_free(resources); } } static void pe_free_actions(GListPtr actions) { GListPtr iterator = actions; while(iterator != NULL) { pe_free_action(iterator->data); iterator = iterator->next; } if(actions != NULL) { g_list_free(actions); } } static void pe_free_nodes(GListPtr nodes) { GListPtr iterator = nodes; while(iterator != NULL) { node_t *node = (node_t*)iterator->data; struct node_shared_s *details = node->details; iterator = iterator->next; crm_debug_5("deleting node"); crm_debug_5("%s is being deleted", details->uname); print_node("delete", node, FALSE); if(details != NULL) { if(details->attrs != NULL) { g_hash_table_destroy(details->attrs); } if(details->utilization != NULL) { g_hash_table_destroy(details->utilization); } g_list_free(details->running_rsc); g_list_free(details->allocated_rsc); crm_free(details); } crm_free(node); } if(nodes != NULL) { g_list_free(nodes); } } void cleanup_calculations(pe_working_set_t *data_set) { pe_dataset = NULL; if(data_set == NULL) { return; } clear_bit_inplace(data_set->flags, pe_flag_have_status); if(data_set->config_hash != NULL) { g_hash_table_destroy(data_set->config_hash); } crm_free(data_set->dc_uuid); crm_debug_3("deleting resources"); pe_free_resources(data_set->resources); crm_debug_3("deleting actions"); pe_free_actions(data_set->actions); if(data_set->domains) { g_hash_table_destroy(data_set->domains); } crm_debug_3("deleting nodes"); pe_free_nodes(data_set->nodes); free_xml(data_set->graph); free_ha_date(data_set->now); free_xml(data_set->input); free_xml(data_set->failed); set_working_set_defaults(data_set); CRM_CHECK(data_set->ordering_constraints == NULL, ;); CRM_CHECK(data_set->placement_constraints == NULL, ;); } void set_working_set_defaults(pe_working_set_t *data_set) { pe_dataset = data_set; memset(data_set, 0, sizeof(pe_working_set_t)); data_set->order_id = 1; data_set->action_id = 1; data_set->no_quorum_policy = no_quorum_freeze; data_set->flags = 0x0ULL; set_bit_inplace(data_set->flags, pe_flag_stop_rsc_orphans); set_bit_inplace(data_set->flags, pe_flag_symmetric_cluster); set_bit_inplace(data_set->flags, pe_flag_is_managed_default); set_bit_inplace(data_set->flags, pe_flag_stop_action_orphans); } resource_t * pe_find_resource(GListPtr rsc_list, const char *id) { unsigned lpc = 0; resource_t *rsc = NULL; resource_t *match = NULL; if(id == NULL) { return NULL; } for(lpc = 0; lpc < g_list_length(rsc_list); lpc++) { rsc = g_list_nth_data(rsc_list, lpc); match = rsc->fns->find_rsc(rsc, id, TRUE, FALSE, NULL, TRUE); if(match != NULL) { return match; } } crm_debug_2("No match for %s", id); return NULL; } node_t * pe_find_node_id(GListPtr nodes, const char *id) { GListPtr gIter = nodes; for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; if(node && safe_str_eq(node->details->id, id)) { return node; } } /* error */ return NULL; } node_t * pe_find_node(GListPtr nodes, const char *uname) { GListPtr gIter = nodes; for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; if(node && safe_str_eq(node->details->uname, uname)) { return node; } } /* error */ return NULL; } diff --git a/lib/pengine/unpack.c b/lib/pengine/unpack.c index cbbfd98146..45b490926f 100644 --- a/lib/pengine/unpack.c +++ b/lib/pengine/unpack.c @@ -1,2036 +1,2036 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include #include #include #include #include CRM_TRACE_INIT_DATA(pe_status); #define set_config_flag(data_set, option, flag) do { \ const char *tmp = pe_pref(data_set->config_hash, option); \ if(tmp) { \ if(crm_is_true(tmp)) { \ set_bit_inplace(data_set->flags, flag); \ } else { \ clear_bit_inplace(data_set->flags, flag); \ } \ } \ } while(0) gboolean unpack_rsc_op( resource_t *rsc, node_t *node, xmlNode *xml_op, GListPtr next, enum action_fail_response *failed, pe_working_set_t *data_set); static void pe_fence_node(pe_working_set_t *data_set, node_t *node, const char *reason) { CRM_CHECK(node, return); if(node->details->unclean == FALSE) { if(is_set(data_set->flags, pe_flag_stonith_enabled)) { crm_warn("Node %s will be fenced %s", node->details->uname, reason); } else { crm_warn("Node %s is unclean %s", node->details->uname, reason); } } node->details->unclean = TRUE; } gboolean unpack_config(xmlNode *config, pe_working_set_t *data_set) { const char *value = NULL; GHashTable *config_hash = g_hash_table_new_full( g_str_hash,g_str_equal, g_hash_destroy_str,g_hash_destroy_str); data_set->config_hash = config_hash; unpack_instance_attributes( data_set->input, config, XML_CIB_TAG_PROPSET, NULL, config_hash, CIB_OPTIONS_FIRST, FALSE, data_set->now); verify_pe_options(data_set->config_hash); set_config_flag(data_set, "enable-startup-probes", pe_flag_startup_probes); crm_info("Startup probes: %s", is_set(data_set->flags, pe_flag_startup_probes)?"enabled":"disabled (dangerous)"); value = pe_pref(data_set->config_hash, "stonith-timeout"); data_set->stonith_timeout = crm_get_msec(value); crm_debug("STONITH timeout: %d", data_set->stonith_timeout); set_config_flag(data_set, "stonith-enabled", pe_flag_stonith_enabled); crm_debug("STONITH of failed nodes is %s", is_set(data_set->flags, pe_flag_stonith_enabled)?"enabled":"disabled"); data_set->stonith_action = pe_pref(data_set->config_hash, "stonith-action"); crm_debug_2("STONITH will %s nodes", data_set->stonith_action); set_config_flag(data_set, "stop-all-resources", pe_flag_stop_everything); crm_debug("Stop all active resources: %s", is_set(data_set->flags, pe_flag_stop_everything)?"true":"false"); set_config_flag(data_set, "symmetric-cluster", pe_flag_symmetric_cluster); if(is_set(data_set->flags, pe_flag_symmetric_cluster)) { crm_debug("Cluster is symmetric" " - resources can run anywhere by default"); } value = pe_pref(data_set->config_hash, "default-resource-stickiness"); data_set->default_resource_stickiness = char2score(value); crm_debug("Default stickiness: %d", data_set->default_resource_stickiness); value = pe_pref(data_set->config_hash, "no-quorum-policy"); if(safe_str_eq(value, "ignore")) { data_set->no_quorum_policy = no_quorum_ignore; } else if(safe_str_eq(value, "freeze")) { data_set->no_quorum_policy = no_quorum_freeze; } else if(safe_str_eq(value, "suicide")) { gboolean do_panic = FALSE; crm_element_value_int(data_set->input, XML_ATTR_QUORUM_PANIC, &do_panic); if(is_set(data_set->flags, pe_flag_stonith_enabled) == FALSE){ crm_config_err("Setting no-quorum-policy=suicide makes no sense if stonith-enabled=false"); } if(do_panic && is_set(data_set->flags, pe_flag_stonith_enabled)) { data_set->no_quorum_policy = no_quorum_suicide; } else if(is_set(data_set->flags, pe_flag_have_quorum) == FALSE && do_panic == FALSE) { crm_notice("Resetting no-quorum-policy to 'stop': The cluster has never had quorum"); data_set->no_quorum_policy = no_quorum_stop; } } else { data_set->no_quorum_policy = no_quorum_stop; } switch (data_set->no_quorum_policy) { case no_quorum_freeze: crm_debug("On loss of CCM Quorum: Freeze resources"); break; case no_quorum_stop: crm_debug("On loss of CCM Quorum: Stop ALL resources"); break; case no_quorum_suicide: crm_notice("On loss of CCM Quorum: Fence all remaining nodes"); break; case no_quorum_ignore: crm_notice("On loss of CCM Quorum: Ignore"); break; } set_config_flag(data_set, "stop-orphan-resources", pe_flag_stop_rsc_orphans); crm_debug_2("Orphan resources are %s", is_set(data_set->flags, pe_flag_stop_rsc_orphans)?"stopped":"ignored"); set_config_flag(data_set, "stop-orphan-actions", pe_flag_stop_action_orphans); crm_debug_2("Orphan resource actions are %s", is_set(data_set->flags, pe_flag_stop_action_orphans)?"stopped":"ignored"); set_config_flag(data_set, "remove-after-stop", pe_flag_remove_after_stop); crm_debug_2("Stopped resources are removed from the status section: %s", is_set(data_set->flags, pe_flag_remove_after_stop)?"true":"false"); set_config_flag(data_set, "maintenance-mode", pe_flag_maintenance_mode); crm_debug_2("Maintenance mode: %s", is_set(data_set->flags, pe_flag_maintenance_mode)?"true":"false"); if(is_set(data_set->flags, pe_flag_maintenance_mode)) { clear_bit(data_set->flags, pe_flag_is_managed_default); } else { set_config_flag(data_set, "is-managed-default", pe_flag_is_managed_default); } crm_debug_2("By default resources are %smanaged", is_set(data_set->flags, pe_flag_is_managed_default)?"":"not "); set_config_flag(data_set, "start-failure-is-fatal", pe_flag_start_failure_fatal); crm_debug_2("Start failures are %s", is_set(data_set->flags, pe_flag_start_failure_fatal)?"always fatal":"handled by failcount"); node_score_red = char2score(pe_pref(data_set->config_hash, "node-health-red")); node_score_green = char2score(pe_pref(data_set->config_hash, "node-health-green")); node_score_yellow = char2score(pe_pref(data_set->config_hash, "node-health-yellow")); crm_info("Node scores: 'red' = %s, 'yellow' = %s, 'green' = %s", pe_pref(data_set->config_hash, "node-health-red"), pe_pref(data_set->config_hash, "node-health-yellow"), pe_pref(data_set->config_hash, "node-health-green")); data_set->placement_strategy = pe_pref(data_set->config_hash, "placement-strategy"); crm_debug_2("Placement strategy: %s", data_set->placement_strategy); return TRUE; } gboolean unpack_nodes(xmlNode * xml_nodes, pe_working_set_t *data_set) { xmlNode *xml_obj = NULL; node_t *new_node = NULL; const char *id = NULL; const char *uname = NULL; const char *type = NULL; const char *score = NULL; gboolean unseen_are_unclean = TRUE; const char *blind_faith = pe_pref( data_set->config_hash, "startup-fencing"); if(crm_is_true(blind_faith) == FALSE) { unseen_are_unclean = FALSE; crm_warn("Blind faith: not fencing unseen nodes"); } for(xml_obj = __xml_first_child(xml_nodes); xml_obj != NULL; xml_obj = __xml_next(xml_obj)) { if(crm_str_eq((const char *)xml_obj->name, XML_CIB_TAG_NODE, TRUE)) { new_node = NULL; id = crm_element_value(xml_obj, XML_ATTR_ID); uname = crm_element_value(xml_obj, XML_ATTR_UNAME); type = crm_element_value(xml_obj, XML_ATTR_TYPE); score = crm_element_value(xml_obj, XML_RULE_ATTR_SCORE); crm_debug_3("Processing node %s/%s", uname, id); if(id == NULL) { crm_config_err("Must specify id tag in "); continue; } if(type == NULL) { crm_config_err("Must specify type tag in "); continue; } if(pe_find_node(data_set->nodes, uname) != NULL) { crm_config_warn("Detected multiple node entries with uname=%s" " - this is rarely intended", uname); } crm_malloc0(new_node, sizeof(node_t)); if(new_node == NULL) { return FALSE; } new_node->weight = char2score(score); new_node->fixed = FALSE; crm_malloc0(new_node->details, sizeof(struct node_shared_s)); if(new_node->details == NULL) { crm_free(new_node); return FALSE; } crm_debug_3("Creaing node for entry %s/%s", uname, id); new_node->details->id = id; new_node->details->uname = uname; new_node->details->type = node_ping; new_node->details->online = FALSE; new_node->details->shutdown = FALSE; new_node->details->running_rsc = NULL; new_node->details->attrs = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); new_node->details->utilization = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); /* if(data_set->have_quorum == FALSE */ /* && data_set->no_quorum_policy == no_quorum_stop) { */ /* /\* start shutting resources down *\/ */ /* new_node->weight = -INFINITY; */ /* } */ if(is_set(data_set->flags, pe_flag_stonith_enabled) == FALSE || unseen_are_unclean == FALSE) { /* blind faith... */ new_node->details->unclean = FALSE; } else { /* all nodes are unclean until we've seen their * status entry */ new_node->details->unclean = TRUE; } if(type == NULL || safe_str_eq(type, "member") || safe_str_eq(type, NORMALNODE)) { new_node->details->type = node_member; } add_node_attrs(xml_obj, new_node, FALSE, data_set); unpack_instance_attributes( data_set->input, xml_obj, XML_TAG_UTILIZATION, NULL, new_node->details->utilization, NULL, FALSE, data_set->now); data_set->nodes = g_list_append(data_set->nodes, new_node); crm_debug_3("Done with node %s", crm_element_value(xml_obj, XML_ATTR_UNAME)); } } return TRUE; } static void g_hash_destroy_node_list(gpointer data) { GListPtr domain = data; slist_basic_destroy(domain); } gboolean unpack_domains(xmlNode *xml_domains, pe_working_set_t *data_set) { const char *id = NULL; GListPtr domain = NULL; xmlNode *xml_node = NULL; xmlNode *xml_domain = NULL; crm_info("Unpacking domains"); data_set->domains = g_hash_table_new_full( g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_node_list); for(xml_domain = __xml_first_child(xml_domains); xml_domain != NULL; xml_domain = __xml_next(xml_domain)) { if(crm_str_eq((const char *)xml_domain->name, XML_CIB_TAG_DOMAIN, TRUE)) { domain = NULL; id = crm_element_value(xml_domain, XML_ATTR_ID); for(xml_node = __xml_first_child(xml_domain); xml_node != NULL; xml_node = __xml_next(xml_node)) { if(crm_str_eq((const char *)xml_node->name, XML_CIB_TAG_NODE, TRUE)) { node_t *copy = NULL; node_t *node = NULL; const char *uname = crm_element_value(xml_node, "name"); const char *score = crm_element_value(xml_node, XML_RULE_ATTR_SCORE); if(uname == NULL) { crm_config_err("Invalid domain %s: Must specify id tag in ", id); continue; } node = pe_find_node(data_set->nodes, uname); if(node == NULL) { node = pe_find_node_id(data_set->nodes, uname); } if(node == NULL) { crm_config_warn("Invalid domain %s: Node %s does not exist", id, uname); continue; } copy = node_copy(node); copy->weight = char2score(score); crm_debug("Adding %s to domain %s with score %s", node->details->uname, id, score); domain = g_list_prepend(domain, copy); } } if(domain) { crm_debug("Created domain %s with %d members", id, g_list_length(domain)); g_hash_table_replace(data_set->domains, crm_strdup(id), domain); } } } return TRUE; } gboolean unpack_resources(xmlNode * xml_resources, pe_working_set_t *data_set) { xmlNode *xml_obj = NULL; for(xml_obj = __xml_first_child(xml_resources); xml_obj != NULL; xml_obj = __xml_next(xml_obj)) { resource_t *new_rsc = NULL; crm_debug_3("Beginning unpack... <%s id=%s... >", crm_element_name(xml_obj), ID(xml_obj)); if(common_unpack(xml_obj, &new_rsc, NULL, data_set)) { data_set->resources = g_list_append( data_set->resources, new_rsc); print_resource(LOG_DEBUG_3, "Added", new_rsc, FALSE); } else { crm_config_err("Failed unpacking %s %s", crm_element_name(xml_obj), crm_element_value(xml_obj, XML_ATTR_ID)); if(new_rsc != NULL && new_rsc->fns != NULL) { new_rsc->fns->free(new_rsc); } } } data_set->resources = g_list_sort( data_set->resources, sort_rsc_priority); if(is_set(data_set->flags, pe_flag_stonith_enabled) && is_set(data_set->flags, pe_flag_have_stonith_resource) == FALSE) { crm_config_err("Resource start-up disabled since no STONITH resources have been defined"); crm_config_err("Either configure some or disable STONITH with the stonith-enabled option"); crm_config_err("NOTE: Clusters with shared data need STONITH to ensure data integrity"); } return TRUE; } /* remove nodes that are down, stopping */ /* create +ve rsc_to_node constraints between resources and the nodes they are running on */ /* anything else? */ gboolean unpack_status(xmlNode * status, pe_working_set_t *data_set) { const char *id = NULL; const char *uname = NULL; xmlNode * lrm_rsc = NULL; xmlNode * attrs = NULL; xmlNode * node_state = NULL; node_t *this_node = NULL; crm_debug_3("Beginning unpack"); for(node_state = __xml_first_child(status); node_state != NULL; node_state = __xml_next(node_state)) { if(crm_str_eq((const char *)node_state->name, XML_CIB_TAG_STATE, TRUE)) { id = crm_element_value(node_state, XML_ATTR_ID); uname = crm_element_value(node_state, XML_ATTR_UNAME); attrs = find_xml_node(node_state, XML_TAG_TRANSIENT_NODEATTRS, FALSE); crm_debug_3("Processing node id=%s, uname=%s", id, uname); this_node = pe_find_node_id(data_set->nodes, id); if(uname == NULL) { /* error */ continue; } else if(this_node == NULL) { crm_config_warn("Node %s in status section no longer exists", uname); continue; } /* Mark the node as provisionally clean * - at least we have seen it in the current cluster's lifetime */ this_node->details->unclean = FALSE; add_node_attrs(attrs, this_node, TRUE, data_set); if(crm_is_true(g_hash_table_lookup(this_node->details->attrs, "standby"))) { crm_info("Node %s is in standby-mode", this_node->details->uname); this_node->details->standby = TRUE; } crm_debug_3("determining node state"); determine_online_status(node_state, this_node, data_set); if(this_node->details->online && data_set->no_quorum_policy == no_quorum_suicide) { /* Everything else should flow from this automatically * At least until the PE becomes able to migrate off healthy resources */ pe_fence_node(data_set, this_node, "because the cluster does not have quorum"); } } } /* Split into two phases so that we know all node states before we hit migration ops */ for(node_state = __xml_first_child(status); node_state != NULL; node_state = __xml_next(node_state)) { if(crm_str_eq((const char *)node_state->name, XML_CIB_TAG_STATE, TRUE)) { id = crm_element_value(node_state, XML_ATTR_ID); lrm_rsc = find_xml_node(node_state, XML_CIB_TAG_LRM, FALSE); lrm_rsc = find_xml_node(lrm_rsc, XML_LRM_TAG_RESOURCES, FALSE); crm_debug_3("Processing lrm operations on node %s", id); this_node = pe_find_node_id(data_set->nodes, id); if(this_node == NULL) { continue; } else if(this_node->details->online || is_set(data_set->flags, pe_flag_stonith_enabled)) { /* offline nodes run no resources... * unless stonith is enabled in which case we need to * make sure rsc start events happen after the stonith */ crm_debug_3("Processing lrm resource entries"); unpack_lrm_resources(this_node, lrm_rsc, data_set); } } } return TRUE; } static gboolean determine_online_status_no_fencing(pe_working_set_t *data_set, xmlNode * node_state, node_t *this_node) { gboolean online = FALSE; const char *join_state = crm_element_value(node_state, XML_CIB_ATTR_JOINSTATE); const char *crm_state = crm_element_value(node_state, XML_CIB_ATTR_CRMDSTATE); const char *ccm_state = crm_element_value(node_state, XML_CIB_ATTR_INCCM); const char *ha_state = crm_element_value(node_state, XML_CIB_ATTR_HASTATE); const char *exp_state = crm_element_value(node_state, XML_CIB_ATTR_EXPSTATE); if(ha_state == NULL) { ha_state = DEADSTATUS; } if(!crm_is_true(ccm_state) || safe_str_eq(ha_state, DEADSTATUS)){ crm_debug_2("Node is down: ha_state=%s, ccm_state=%s", crm_str(ha_state), crm_str(ccm_state)); } else if(safe_str_eq(crm_state, ONLINESTATUS)) { if(safe_str_eq(join_state, CRMD_JOINSTATE_MEMBER)) { online = TRUE; } else { crm_debug("Node is not ready to run resources: %s", join_state); } } else if(this_node->details->expected_up == FALSE) { crm_debug_2("CRMd is down: ha_state=%s, ccm_state=%s", crm_str(ha_state), crm_str(ccm_state)); crm_debug_2("\tcrm_state=%s, join_state=%s, expected=%s", crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); } else { /* mark it unclean */ pe_fence_node(data_set, this_node, "because it is partially and/or un-expectedly down"); crm_info("\tha_state=%s, ccm_state=%s," " crm_state=%s, join_state=%s, expected=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); } return online; } static gboolean determine_online_status_fencing(pe_working_set_t *data_set, xmlNode * node_state, node_t *this_node) { gboolean online = FALSE; gboolean do_terminate = FALSE; const char *join_state = crm_element_value(node_state, XML_CIB_ATTR_JOINSTATE); const char *crm_state = crm_element_value(node_state, XML_CIB_ATTR_CRMDSTATE); const char *ccm_state = crm_element_value(node_state, XML_CIB_ATTR_INCCM); const char *ha_state = crm_element_value(node_state, XML_CIB_ATTR_HASTATE); const char *exp_state = crm_element_value(node_state, XML_CIB_ATTR_EXPSTATE); const char *terminate = g_hash_table_lookup(this_node->details->attrs, "terminate"); if(ha_state == NULL) { ha_state = DEADSTATUS; } if(crm_is_true(terminate)) { do_terminate = TRUE; } else if(terminate != NULL && strlen(terminate) > 0) { /* could be a time() value */ char t = terminate[0]; if(t != '0' && isdigit(t)) { do_terminate = TRUE; } } if(crm_is_true(ccm_state) && safe_str_eq(ha_state, ACTIVESTATUS) && safe_str_eq(crm_state, ONLINESTATUS)) { if(safe_str_eq(join_state, CRMD_JOINSTATE_MEMBER)) { online = TRUE; if(do_terminate) { pe_fence_node(data_set, this_node, "because termination was requested"); } } else if(join_state == exp_state /* == NULL */) { crm_info("Node %s is coming up", this_node->details->uname); crm_debug("\tha_state=%s, ccm_state=%s," " crm_state=%s, join_state=%s, expected=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); } else if(safe_str_eq(join_state, CRMD_JOINSTATE_PENDING)) { crm_info("Node %s is not ready to run resources", this_node->details->uname); this_node->details->standby = TRUE; this_node->details->pending = TRUE; online = TRUE; } else if(safe_str_eq(join_state, CRMD_JOINSTATE_NACK)) { crm_warn("Node %s is not part of the cluster", this_node->details->uname); this_node->details->standby = TRUE; this_node->details->pending = TRUE; online = TRUE; } else if(safe_str_eq(join_state, exp_state)) { crm_info("Node %s is still coming up: %s", this_node->details->uname, join_state); crm_info("\tha_state=%s, ccm_state=%s, crm_state=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state)); this_node->details->standby = TRUE; this_node->details->pending = TRUE; online = TRUE; } else { crm_warn("Node %s (%s) is un-expectedly down", this_node->details->uname, this_node->details->id); crm_info("\tha_state=%s, ccm_state=%s," " crm_state=%s, join_state=%s, expected=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); pe_fence_node(data_set, this_node, "because it is un-expectedly down"); } } else if(crm_is_true(ccm_state) == FALSE && safe_str_eq(ha_state, DEADSTATUS) && safe_str_eq(crm_state, OFFLINESTATUS) && this_node->details->expected_up == FALSE) { crm_debug("Node %s is down: join_state=%s, expected=%s", this_node->details->uname, crm_str(join_state), crm_str(exp_state)); #if 0 /* While a nice optimization, it causes the cluster to block until the node * comes back online. Which is a serious problem if the cluster software * is not configured to start at boot or stonith is configured to merely * stop the node instead of restart it. * Easily triggered by setting terminate=true for the DC */ } else if(do_terminate) { crm_info("Node %s is %s after forced termination", this_node->details->uname, crm_is_true(ccm_state)?"coming up":"going down"); crm_debug("\tha_state=%s, ccm_state=%s," " crm_state=%s, join_state=%s, expected=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); if(crm_is_true(ccm_state) == FALSE) { this_node->details->standby = TRUE; this_node->details->pending = TRUE; online = TRUE; } #endif } else if(this_node->details->expected_up) { /* mark it unclean */ pe_fence_node(data_set, this_node, "because it is un-expectedly down"); crm_info("\tha_state=%s, ccm_state=%s," " crm_state=%s, join_state=%s, expected=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); } else { crm_info("Node %s is down", this_node->details->uname); crm_debug("\tha_state=%s, ccm_state=%s," " crm_state=%s, join_state=%s, expected=%s", crm_str(ha_state), crm_str(ccm_state), crm_str(crm_state), crm_str(join_state), crm_str(exp_state)); } return online; } gboolean determine_online_status( xmlNode * node_state, node_t *this_node, pe_working_set_t *data_set) { gboolean online = FALSE; const char *shutdown = NULL; const char *exp_state = crm_element_value(node_state, XML_CIB_ATTR_EXPSTATE); if(this_node == NULL) { crm_config_err("No node to check"); return online; } this_node->details->shutdown = FALSE; this_node->details->expected_up = FALSE; shutdown = g_hash_table_lookup(this_node->details->attrs, XML_CIB_ATTR_SHUTDOWN); if(shutdown != NULL && safe_str_neq("0", shutdown)) { this_node->details->shutdown = TRUE; } else if(safe_str_eq(exp_state, CRMD_JOINSTATE_MEMBER)) { this_node->details->expected_up = TRUE; } if(is_set(data_set->flags, pe_flag_stonith_enabled) == FALSE) { online = determine_online_status_no_fencing( data_set, node_state, this_node); } else { online = determine_online_status_fencing( data_set, node_state, this_node); } if(online) { this_node->details->online = TRUE; } else { /* remove node from contention */ this_node->fixed = TRUE; this_node->weight = -INFINITY; } if(online && this_node->details->shutdown) { /* dont run resources here */ this_node->fixed = TRUE; this_node->weight = -INFINITY; } if(this_node->details->unclean) { pe_proc_warn("Node %s is unclean", this_node->details->uname); } else if(this_node->details->online) { crm_info("Node %s is %s", this_node->details->uname, this_node->details->shutdown?"shutting down": this_node->details->pending?"pending": this_node->details->standby?"standby":"online"); } else { crm_debug_2("Node %s is offline", this_node->details->uname); } return online; } #define set_char(x) last_rsc_id[lpc] = x; complete = TRUE; char * clone_zero(const char *last_rsc_id) { int lpc = 0; char *zero = NULL; CRM_CHECK(last_rsc_id != NULL, return NULL); if(last_rsc_id != NULL) { lpc = strlen(last_rsc_id); } while(--lpc > 0) { switch(last_rsc_id[lpc]) { case 0: return NULL; break; case '0': case '1': case '2': case '3': case '4': case '5': case '6': case '7': case '8': case '9': break; case ':': crm_malloc0(zero, lpc + 3); memcpy(zero, last_rsc_id, lpc); zero[lpc] = ':'; zero[lpc+1] = '0'; zero[lpc+2] = 0; return zero; } } return NULL; } char * increment_clone(char *last_rsc_id) { int lpc = 0; int len = 0; char *tmp = NULL; gboolean complete = FALSE; CRM_CHECK(last_rsc_id != NULL, return NULL); if(last_rsc_id != NULL) { len = strlen(last_rsc_id); } lpc = len-1; while(complete == FALSE && lpc > 0) { switch (last_rsc_id[lpc]) { case 0: lpc--; break; case '0': set_char('1'); break; case '1': set_char('2'); break; case '2': set_char('3'); break; case '3': set_char('4'); break; case '4': set_char('5'); break; case '5': set_char('6'); break; case '6': set_char('7'); break; case '7': set_char('8'); break; case '8': set_char('9'); break; case '9': last_rsc_id[lpc] = '0'; lpc--; break; case ':': tmp = last_rsc_id; crm_malloc0(last_rsc_id, len + 2); memcpy(last_rsc_id, tmp, len); last_rsc_id[++lpc] = '1'; last_rsc_id[len] = '0'; last_rsc_id[len+1] = 0; complete = TRUE; crm_free(tmp); break; default: crm_err("Unexpected char: %c (%d)", last_rsc_id[lpc], lpc); break; } } return last_rsc_id; } static resource_t * create_fake_resource(const char *rsc_id, xmlNode *rsc_entry, pe_working_set_t *data_set) { resource_t *rsc = NULL; xmlNode *xml_rsc = create_xml_node(NULL, XML_CIB_TAG_RESOURCE); copy_in_properties(xml_rsc, rsc_entry); crm_xml_add(xml_rsc, XML_ATTR_ID, rsc_id); crm_log_xml_debug(xml_rsc, "Orphan resource"); if(!common_unpack(xml_rsc, &rsc, NULL, data_set)) { return NULL; } set_bit(rsc->flags, pe_rsc_orphan); data_set->resources = g_list_append(data_set->resources, rsc); return rsc; } extern resource_t *create_child_clone(resource_t *rsc, int sub_id, pe_working_set_t *data_set); static resource_t *find_clone(pe_working_set_t *data_set, node_t *node, resource_t *parent, const char *rsc_id) { int len = 0; resource_t *rsc = NULL; char *base = clone_zero(rsc_id); char *alt_rsc_id = crm_strdup(rsc_id); CRM_ASSERT(parent != NULL); CRM_ASSERT(parent->variant == pe_clone || parent->variant == pe_master); if(base) { len = strlen(base); } if(len > 0) { base[len-1] = 0; } crm_debug_3("Looking for %s on %s in %s %d", rsc_id, node->details->uname, parent->id, is_set(parent->flags, pe_rsc_unique)); if(is_set(parent->flags, pe_rsc_unique)) { crm_debug_3("Looking for %s", rsc_id); rsc = parent->fns->find_rsc(parent, rsc_id, FALSE, FALSE, NULL, TRUE); } else { rsc = parent->fns->find_rsc(parent, base, FALSE, TRUE, node, TRUE); if(rsc != NULL && rsc->running_on) { GListPtr gIter = parent->children; rsc = NULL; crm_debug_3("Looking for an existing orphan for %s: %s on %s", parent->id, rsc_id, node->details->uname); /* There is already an instance of this _anonymous_ clone active on "node". * * If there is a partially active orphan (only applies to clone groups) on * the same node, use that. * Otherwise create a new (orphaned) instance at "orphan_check:". */ for(; gIter != NULL; gIter = gIter->next) { resource_t *child = (resource_t*)gIter->data; node_t *loc = child->fns->location(child, NULL, TRUE); if(loc && loc->details == node->details) { resource_t *tmp = child->fns->find_rsc(child, base, FALSE, TRUE, NULL, TRUE); if(tmp && tmp->running_on == NULL) { rsc = tmp; break; } } } goto orphan_check; } while(rsc == NULL) { crm_debug_3("Trying %s", alt_rsc_id); rsc = parent->fns->find_rsc(parent, alt_rsc_id, FALSE, FALSE, NULL, TRUE); if(rsc == NULL) { break; } else if(rsc->running_on == NULL) { break; } alt_rsc_id = increment_clone(alt_rsc_id); rsc = NULL; } } orphan_check: if(rsc == NULL) { /* Create an extra orphan */ resource_t *top = create_child_clone(parent, -1, data_set); crm_debug("Created orphan for %s: %s on %s", parent->id, rsc_id, node->details->uname); rsc = top->fns->find_rsc(top, base, FALSE, TRUE, NULL, TRUE); CRM_ASSERT(rsc != NULL); } crm_free(rsc->clone_name); rsc->clone_name = NULL; if(safe_str_neq(rsc_id, rsc->id)) { crm_info("Internally renamed %s on %s to %s%s", rsc_id, node->details->uname, rsc->id, is_set(rsc->flags, pe_rsc_orphan)?" (ORPHAN)":""); rsc->clone_name = crm_strdup(rsc_id); } crm_free(alt_rsc_id); crm_free(base); return rsc; } static resource_t * unpack_find_resource( pe_working_set_t *data_set, node_t *node, const char *rsc_id, xmlNode *rsc_entry) { resource_t *rsc = NULL; resource_t *clone_parent = NULL; char *alt_rsc_id = crm_strdup(rsc_id); crm_debug_2("looking for %s", rsc_id); rsc = pe_find_resource(data_set->resources, alt_rsc_id); /* no match */ if(rsc == NULL) { /* Even when clone-max=0, we still create a single :0 orphan to match against */ char *tmp = clone_zero(alt_rsc_id); resource_t *clone0 = pe_find_resource(data_set->resources, tmp); clone_parent = uber_parent(clone0); crm_free(tmp); crm_debug_2("%s not found: %s", alt_rsc_id, clone_parent?clone_parent->id:"orphan"); } else { clone_parent = uber_parent(rsc); } if(clone_parent && clone_parent->variant > pe_group) { rsc = find_clone(data_set, node, clone_parent, rsc_id); CRM_ASSERT(rsc != NULL); } crm_free(alt_rsc_id); return rsc; } static resource_t * process_orphan_resource(xmlNode *rsc_entry, node_t *node, pe_working_set_t *data_set) { resource_t *rsc = NULL; const char *rsc_id = crm_element_value(rsc_entry, XML_ATTR_ID); crm_debug("Detected orphan resource %s on %s", rsc_id, node->details->uname); rsc = create_fake_resource(rsc_id, rsc_entry, data_set); if(is_set(data_set->flags, pe_flag_stop_rsc_orphans) == FALSE) { clear_bit(rsc->flags, pe_rsc_managed); } else { print_resource(LOG_DEBUG_3, "Added orphan", rsc, FALSE); CRM_CHECK(rsc != NULL, return NULL); resource_location(rsc, NULL, -INFINITY, "__orphan_dont_run__", data_set); } return rsc; } static void process_rsc_state(resource_t *rsc, node_t *node, enum action_fail_response on_fail, xmlNode *migrate_op, pe_working_set_t *data_set) { crm_debug_2("Resource %s is %s on %s: on_fail=%s", rsc->id, role2text(rsc->role), node->details->uname, fail2text(on_fail)); /* process current state */ if(rsc->role != RSC_ROLE_UNKNOWN) { resource_t *iter = rsc; while(iter) { if(g_hash_table_lookup(iter->known_on, node->details->id) == NULL) { node_t *n = node_copy(node); g_hash_table_insert(iter->known_on, (gpointer)n->details->id, n); } if(is_set(iter->flags, pe_rsc_unique)) { break; } iter = iter->parent; } } if(node->details->unclean) { /* No extra processing needed * Also allows resources to be started again after a node is shot */ on_fail = action_fail_ignore; } switch(on_fail) { case action_fail_ignore: /* nothing to do */ break; case action_fail_fence: /* treat it as if it is still running * but also mark the node as unclean */ pe_fence_node(data_set, node, "to recover from resource failure(s)"); break; case action_fail_standby: node->details->standby = TRUE; node->details->standby_onfail = TRUE; break; case action_fail_block: /* is_managed == FALSE will prevent any * actions being sent for the resource */ clear_bit(rsc->flags, pe_rsc_managed); break; case action_fail_migrate: /* make sure it comes up somewhere else * or not at all */ resource_location(rsc, node, -INFINITY, "__action_migration_auto__",data_set); break; case action_fail_stop: rsc->next_role = RSC_ROLE_STOPPED; break; case action_fail_recover: if(rsc->role != RSC_ROLE_STOPPED && rsc->role != RSC_ROLE_UNKNOWN) { set_bit(rsc->flags, pe_rsc_failed); stop_action(rsc, node, FALSE); } break; } if(rsc->role != RSC_ROLE_STOPPED && rsc->role != RSC_ROLE_UNKNOWN) { if(is_set(rsc->flags, pe_rsc_orphan)) { if(is_set(rsc->flags, pe_rsc_managed)) { crm_config_warn("Detected active orphan %s running on %s", rsc->id, node->details->uname); } else { crm_config_warn("Cluster configured not to stop active orphans." " %s must be stopped manually on %s", rsc->id, node->details->uname); } } native_add_running(rsc, node, data_set); if(on_fail != action_fail_ignore) { set_bit(rsc->flags, pe_rsc_failed); } } else if(rsc->clone_name) { crm_debug_2("Resetting clone_name %s for %s (stopped)", rsc->clone_name, rsc->id); crm_free(rsc->clone_name); rsc->clone_name = NULL; } else { char *key = stop_key(rsc); GListPtr possible_matches = find_actions(rsc->actions, key, node); GListPtr gIter = possible_matches; for(; gIter != NULL; gIter = gIter->next) { action_t *stop = (action_t*)gIter->data; stop->flags |= pe_action_optional; } crm_free(key); } } /* create active recurring operations as optional */ static void process_recurring(node_t *node, resource_t *rsc, int start_index, int stop_index, GListPtr sorted_op_list, pe_working_set_t *data_set) { int counter = -1; const char *task = NULL; const char *status = NULL; GListPtr gIter = sorted_op_list; crm_debug_3("%s: Start index %d, stop index = %d", rsc->id, start_index, stop_index); for(; gIter != NULL; gIter = gIter->next) { xmlNode *rsc_op = (xmlNode*)gIter->data; int interval = 0; char *key = NULL; const char *id = ID(rsc_op); const char *interval_s = NULL; counter++; if(node->details->online == FALSE) { crm_debug_4("Skipping %s/%s: node is offline", rsc->id, node->details->uname); break; } else if(start_index < stop_index) { crm_debug_4("Skipping %s/%s: not active", rsc->id, node->details->uname); break; } else if(counter <= start_index) { crm_debug_4("Skipping %s/%s: old", id, node->details->uname); continue; } interval_s = crm_element_value(rsc_op,XML_LRM_ATTR_INTERVAL); interval = crm_parse_int(interval_s, "0"); if(interval == 0) { crm_debug_4("Skipping %s/%s: non-recurring", id, node->details->uname); continue; } status = crm_element_value(rsc_op, XML_LRM_ATTR_OPSTATUS); if(safe_str_eq(status, "-1")) { crm_debug_4("Skipping %s/%s: status", id, node->details->uname); continue; } task = crm_element_value(rsc_op, XML_LRM_ATTR_TASK); /* create the action */ key = generate_op_key(rsc->id, task, interval); crm_debug_3("Creating %s/%s", key, node->details->uname); custom_action(rsc, key, task, node, TRUE, TRUE, data_set); } } void calculate_active_ops(GListPtr sorted_op_list, int *start_index, int *stop_index) { int counter = -1; const char *task = NULL; const char *status = NULL; GListPtr gIter = sorted_op_list; *stop_index = -1; *start_index = -1; for(; gIter != NULL; gIter = gIter->next) { xmlNode *rsc_op = (xmlNode*)gIter->data; counter++; task = crm_element_value(rsc_op, XML_LRM_ATTR_TASK); status = crm_element_value(rsc_op, XML_LRM_ATTR_OPSTATUS); if(safe_str_eq(task, CRMD_ACTION_STOP) && safe_str_eq(status, "0")) { *stop_index = counter; } else if(safe_str_eq(task, CRMD_ACTION_START)) { *start_index = counter; } else if(*start_index <= *stop_index && safe_str_eq(task, CRMD_ACTION_STATUS)) { const char *rc = crm_element_value(rsc_op, XML_LRM_ATTR_RC); if(safe_str_eq(rc, "0") || safe_str_eq(rc, "8")) { *start_index = counter; } } } } static void unpack_lrm_rsc_state( node_t *node, xmlNode * rsc_entry, pe_working_set_t *data_set) { GListPtr gIter = NULL; int stop_index = -1; int start_index = -1; enum rsc_role_e req_role = RSC_ROLE_UNKNOWN; const char *task = NULL; const char *rsc_id = crm_element_value(rsc_entry, XML_ATTR_ID); resource_t *rsc = NULL; GListPtr op_list = NULL; GListPtr sorted_op_list = NULL; xmlNode *migrate_op = NULL; xmlNode *rsc_op = NULL; enum action_fail_response on_fail = FALSE; enum rsc_role_e saved_role = RSC_ROLE_UNKNOWN; crm_debug_3("[%s] Processing %s on %s", crm_element_name(rsc_entry), rsc_id, node->details->uname); /* extract operations */ op_list = NULL; sorted_op_list = NULL; 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_prepend(op_list, rsc_op); } } if(op_list == NULL) { /* if there are no operations, there is nothing to do */ return; } /* find the resource */ rsc = unpack_find_resource(data_set, node, rsc_id, rsc_entry); if(rsc == NULL) { rsc = process_orphan_resource(rsc_entry, node, data_set); } CRM_ASSERT(rsc != NULL); /* process operations */ saved_role = rsc->role; on_fail = action_fail_ignore; rsc->role = RSC_ROLE_UNKNOWN; sorted_op_list = g_list_sort(op_list, sort_op_by_callid); for(gIter = sorted_op_list; gIter != NULL; gIter = gIter->next) { xmlNode *rsc_op = (xmlNode*)gIter->data; task = crm_element_value(rsc_op, XML_LRM_ATTR_TASK); if(safe_str_eq(task, CRMD_ACTION_MIGRATED)) { migrate_op = rsc_op; } unpack_rsc_op(rsc, node, rsc_op, gIter->next, &on_fail, data_set); } /* create active recurring operations as optional */ calculate_active_ops(sorted_op_list, &start_index, &stop_index); process_recurring(node, rsc, start_index, stop_index, sorted_op_list, data_set); /* no need to free the contents */ g_list_free(sorted_op_list); process_rsc_state(rsc, node, on_fail, migrate_op, data_set); if(get_target_role(rsc, &req_role)) { if(rsc->next_role == RSC_ROLE_UNKNOWN || req_role < rsc->next_role) { crm_debug("%s: Overwriting calculated next role %s" " with requested next role %s", rsc->id, role2text(rsc->next_role), role2text(req_role)); rsc->next_role = req_role; } else if(req_role > rsc->next_role) { crm_info("%s: Not overwriting calculated next role %s" " with requested next role %s", rsc->id, role2text(rsc->next_role), role2text(req_role)); } } if(saved_role > rsc->role) { rsc->role = saved_role; } } gboolean unpack_lrm_resources(node_t *node, xmlNode * lrm_rsc_list, pe_working_set_t *data_set) { xmlNode *rsc_entry = NULL; CRM_CHECK(node != NULL, return FALSE); crm_debug_3("Unpacking resources on %s", node->details->uname); for(rsc_entry = __xml_first_child(lrm_rsc_list); rsc_entry != NULL; rsc_entry = __xml_next(rsc_entry)) { if(crm_str_eq((const char *)rsc_entry->name, XML_LRM_TAG_RESOURCE, TRUE)) { unpack_lrm_rsc_state(node, rsc_entry, data_set); } } return TRUE; } static void set_active(resource_t *rsc) { resource_t *top = uber_parent(rsc); if(top && top->variant == pe_master) { rsc->role = RSC_ROLE_SLAVE; } else { rsc->role = RSC_ROLE_STARTED; } } static void set_node_score(gpointer key, gpointer value, gpointer user_data) { node_t *node = value; int *score = user_data; node->weight = *score; } #define STATUS_PATH_MAX 1024 static xmlNode *find_lrm_op(const char *resource, const char *op, const char *node, const char *source, pe_working_set_t *data_set) { int offset = 0; char xpath[STATUS_PATH_MAX]; offset += snprintf(xpath+offset, STATUS_PATH_MAX-offset, "//node_state[@id='%s']", node); offset += snprintf(xpath+offset, STATUS_PATH_MAX-offset, "//"XML_LRM_TAG_RESOURCE"[@id='%s']", resource); /* Need to check against transition_magic too? */ if(source && safe_str_eq(op, CRMD_ACTION_MIGRATE)) { offset += snprintf(xpath+offset, STATUS_PATH_MAX-offset, "/"XML_LRM_TAG_RSC_OP"[@operation='%s' and @migrate_target='%s']", op, source); } else if(source && safe_str_eq(op, CRMD_ACTION_MIGRATED)) { offset += snprintf(xpath+offset, STATUS_PATH_MAX-offset, "/"XML_LRM_TAG_RSC_OP"[@operation='%s' and @migrate_source='%s']", op, source); } else { offset += snprintf(xpath+offset, STATUS_PATH_MAX-offset, "/"XML_LRM_TAG_RSC_OP"[@operation='%s']", op); } return get_xpath_object(xpath, data_set->input, LOG_DEBUG); } gboolean unpack_rsc_op(resource_t *rsc, node_t *node, xmlNode *xml_op, GListPtr next, enum action_fail_response *on_fail, pe_working_set_t *data_set) { int task_id = 0; const char *id = NULL; const char *key = NULL; const char *task = NULL; const char *magic = NULL; const char *actual_rc = NULL; /* const char *target_rc = NULL; */ const char *task_status = NULL; const char *interval_s = NULL; const char *op_version = NULL; int interval = 0; int task_status_i = -2; int actual_rc_i = 0; int target_rc = -1; int last_failure = 0; action_t *action = NULL; node_t *effective_node = NULL; resource_t *failed = NULL; gboolean expired = FALSE; gboolean is_probe = FALSE; CRM_CHECK(rsc != NULL, return FALSE); CRM_CHECK(node != NULL, return FALSE); CRM_CHECK(xml_op != NULL, return FALSE); id = ID(xml_op); task = crm_element_value(xml_op, XML_LRM_ATTR_TASK); task_status = crm_element_value(xml_op, XML_LRM_ATTR_OPSTATUS); op_version = crm_element_value(xml_op, XML_ATTR_CRM_VERSION); magic = crm_element_value(xml_op, XML_ATTR_TRANSITION_MAGIC); key = crm_element_value(xml_op, XML_ATTR_TRANSITION_KEY); crm_element_value_int(xml_op, XML_LRM_ATTR_CALLID, &task_id); CRM_CHECK(id != NULL, return FALSE); CRM_CHECK(task != NULL, return FALSE); CRM_CHECK(task_status != NULL, return FALSE); task_status_i = crm_parse_int(task_status, NULL); CRM_CHECK(task_status_i <= LRM_OP_ERROR, return FALSE); CRM_CHECK(task_status_i >= LRM_OP_PENDING, return FALSE); if(safe_str_eq(task, CRMD_ACTION_NOTIFY)) { /* safe to ignore these */ return TRUE; } if(rsc->failure_timeout > 0) { int last_run = 0; if(crm_element_value_int(xml_op, "last-run", &last_run) == 0) { /* int last_change = crm_element_value_int(xml_op, "last_rc_change"); */ time_t now = get_timet_now(data_set); if(now > (last_run + rsc->failure_timeout)) { expired = TRUE; } } } crm_debug_2("Unpacking task %s/%s (call_id=%d, status=%s) on %s (role=%s)", id, task, task_id, task_status, node->details->uname, role2text(rsc->role)); interval_s = crm_element_value(xml_op, XML_LRM_ATTR_INTERVAL); interval = crm_parse_int(interval_s, "0"); if(interval == 0 && safe_str_eq(task, CRMD_ACTION_STATUS)) { is_probe = TRUE; } if(node->details->unclean) { crm_debug_2("Node %s (where %s is running) is unclean." " Further action depends on the value of the stop's on-fail attribue", node->details->uname, rsc->id); } actual_rc = crm_element_value(xml_op, XML_LRM_ATTR_RC); CRM_CHECK(actual_rc != NULL, return FALSE); actual_rc_i = crm_parse_int(actual_rc, NULL); if(key) { int dummy = 0; char *dummy_string = NULL; decode_transition_key(key, &dummy_string, &dummy, &dummy, &target_rc); crm_free(dummy_string); } if(task_status_i == LRM_OP_DONE && target_rc >= 0) { if(target_rc == actual_rc_i) { task_status_i = LRM_OP_DONE; } else { task_status_i = LRM_OP_ERROR; crm_debug("%s on %s returned %d (%s) instead of the expected value: %d (%s)", id, node->details->uname, actual_rc_i, execra_code2string(actual_rc_i), target_rc, execra_code2string(target_rc)); } } else if(task_status_i == LRM_OP_ERROR) { /* let us decide that */ task_status_i = LRM_OP_DONE; } if(task_status_i == LRM_OP_NOTSUPPORTED) { actual_rc_i = EXECRA_UNIMPLEMENT_FEATURE; } if(task_status_i != actual_rc_i && rsc->failure_timeout > 0 && get_failcount(node, rsc, &last_failure, data_set) == 0) { if(last_failure > 0) { action_t *clear_op = NULL; clear_op = custom_action( rsc, crm_concat(rsc->id, CRM_OP_CLEAR_FAILCOUNT, '_'), CRM_OP_CLEAR_FAILCOUNT, node, FALSE, TRUE, data_set); add_hash_param(clear_op->meta, XML_ATTR_TE_NOWAIT, XML_BOOLEAN_TRUE); crm_notice("Clearing expired failcount for %s on %s", rsc->id, node->details->uname); } } if(expired && actual_rc_i != EXECRA_NOT_RUNNING && actual_rc_i != EXECRA_RUNNING_MASTER && actual_rc_i != EXECRA_OK) { crm_notice("Ignoring expired failure %s (rc=%d, magic=%s) on %s", id, actual_rc_i, magic, node->details->uname); goto done; } /* we could clean this up significantly except for old LRMs and CRMs that * didnt include target_rc and liked to remap status */ switch(actual_rc_i) { case EXECRA_NOT_RUNNING: if(is_probe || target_rc == actual_rc_i) { task_status_i = LRM_OP_DONE; rsc->role = RSC_ROLE_STOPPED; /* clear any previous failure actions */ *on_fail = action_fail_ignore; rsc->next_role = RSC_ROLE_UNKNOWN; } else if(safe_str_neq(task, CRMD_ACTION_STOP)) { task_status_i = LRM_OP_ERROR; } break; case EXECRA_RUNNING_MASTER: if(is_probe) { task_status_i = LRM_OP_DONE; crm_notice("Operation %s found resource %s active in master mode on %s", id, rsc->id, node->details->uname); } else if(target_rc == actual_rc_i) { /* nothing to do */ } else if(target_rc >= 0) { task_status_i = LRM_OP_ERROR; /* legacy code for pre-0.6.5 operations */ } else if(safe_str_neq(task, CRMD_ACTION_STATUS) || rsc->role != RSC_ROLE_MASTER) { task_status_i = LRM_OP_ERROR; if(rsc->role != RSC_ROLE_MASTER) { crm_err("%s reported %s in master mode on %s", id, rsc->id, node->details->uname); } } rsc->role = RSC_ROLE_MASTER; break; case EXECRA_FAILED_MASTER: rsc->role = RSC_ROLE_MASTER; task_status_i = LRM_OP_ERROR; break; case EXECRA_UNIMPLEMENT_FEATURE: if(interval > 0) { task_status_i = LRM_OP_NOTSUPPORTED; break; } /* else: fall through */ case EXECRA_INSUFFICIENT_PRIV: case EXECRA_NOT_INSTALLED: case EXECRA_INVALID_PARAM: effective_node = node; /* fall through */ case EXECRA_NOT_CONFIGURED: failed = rsc; if(is_not_set(rsc->flags, pe_rsc_unique)) { failed = uber_parent(failed); } do_crm_log(actual_rc_i==EXECRA_NOT_INSTALLED?LOG_NOTICE:LOG_ERR, "Hard error - %s failed with rc=%d: Preventing %s from re-starting %s %s", id, actual_rc_i, failed->id, effective_node?"on":"anywhere", effective_node?effective_node->details->uname:"in the cluster"); resource_location(failed, effective_node, -INFINITY, "hard-error", data_set); if(is_probe) { /* treat these like stops */ task = CRMD_ACTION_STOP; task_status_i = LRM_OP_DONE; crm_xml_add(xml_op, XML_ATTR_UNAME, node->details->uname); if(actual_rc_i != EXECRA_NOT_INSTALLED || is_set(data_set->flags, pe_flag_symmetric_cluster)) { if ((node->details->shutdown == FALSE) || (node->details->online == TRUE)) { add_node_copy(data_set->failed, xml_op); } } } break; case EXECRA_OK: if(is_probe && target_rc == 7) { task_status_i = LRM_OP_DONE; crm_notice("Operation %s found resource %s active on %s", id, rsc->id, node->details->uname); /* legacy code for pre-0.6.5 operations */ } else if(target_rc < 0 && interval > 0 && rsc->role == RSC_ROLE_MASTER) { /* catch status ops that return 0 instead of 8 while they * are supposed to be in master mode */ task_status_i = LRM_OP_ERROR; } break; default: if(task_status_i == LRM_OP_DONE) { crm_info("Remapping %s (rc=%d) on %s to an ERROR", id, actual_rc_i, node->details->uname); task_status_i = LRM_OP_ERROR; } } if(task_status_i == LRM_OP_ERROR || task_status_i == LRM_OP_TIMEOUT || task_status_i == LRM_OP_NOTSUPPORTED) { action = custom_action(rsc, crm_strdup(id), task, NULL, TRUE, FALSE, data_set); if(expired) { crm_notice("Ignoring expired failure (calculated) %s (rc=%d, magic=%s) on %s", id, actual_rc_i, magic, node->details->uname); goto done; } else if(action->on_fail == action_fail_ignore) { crm_warn("Remapping %s (rc=%d) on %s to DONE: ignore", id, actual_rc_i, node->details->uname); task_status_i = LRM_OP_DONE; } } switch(task_status_i) { case LRM_OP_PENDING: if(safe_str_eq(task, CRMD_ACTION_START)) { set_bit(rsc->flags, pe_rsc_start_pending); set_active(rsc); } else if(safe_str_eq(task, CRMD_ACTION_PROMOTE)) { rsc->role = RSC_ROLE_MASTER; } /* * Intentionally ignoring pending migrate ops here; * haven't decided if we need to do anything special * with them yet... */ break; case LRM_OP_DONE: crm_debug_3("%s/%s completed on %s", rsc->id, task, node->details->uname); if(actual_rc_i == EXECRA_NOT_RUNNING) { /* nothing to do */ } else if(safe_str_eq(task, CRMD_ACTION_STOP)) { rsc->role = RSC_ROLE_STOPPED; /* clear any previous failure actions */ switch(*on_fail) { case action_fail_block: case action_fail_stop: case action_fail_fence: case action_fail_migrate: case action_fail_standby: crm_debug_2("%s.%s is not cleared by a completed stop", rsc->id, fail2text(*on_fail)); break; case action_fail_ignore: case action_fail_recover: *on_fail = action_fail_ignore; rsc->next_role = RSC_ROLE_UNKNOWN; } } else if(safe_str_eq(task, CRMD_ACTION_PROMOTE)) { rsc->role = RSC_ROLE_MASTER; } else if(safe_str_eq(task, CRMD_ACTION_DEMOTE)) { rsc->role = RSC_ROLE_SLAVE; } else if(safe_str_eq(task, CRMD_ACTION_MIGRATED)) { rsc->role = RSC_ROLE_STARTED; } else if(safe_str_eq(task, CRMD_ACTION_MIGRATE)) { /* * The normal sequence is (now): migrate_to(Src) -> migrate_from(Tgt) -> stop(Src) * * So if a migrate_to is followed by a stop, then we dont need to care what * happended on the target node * * Without the stop, we need to look for a successful migrate_from. * This would also imply we're no longer running on the source * * Without the stop, and without a migrate_from op we make sure the resource * gets stopped on both source and target (assuming the target is up) * */ int stop_id = 0; xmlNode *stop_op = find_lrm_op(rsc->id, CRMD_ACTION_STOP, node->details->id, NULL, data_set); if(stop_op) { crm_element_value_int(stop_op, XML_LRM_ATTR_CALLID, &stop_id); } if(stop_op == NULL || stop_id < task_id) { int from_rc = 0, from_status = 0; const char *migrate_source = crm_element_value(xml_op, XML_LRM_ATTR_MIGRATE_SOURCE); const char *migrate_target = crm_element_value(xml_op, XML_LRM_ATTR_MIGRATE_TARGET); node_t *target = pe_find_node_id(data_set->nodes, migrate_target); xmlNode *migrate_from = find_lrm_op(rsc->id, CRMD_ACTION_MIGRATED, migrate_target, migrate_source, data_set); rsc->role = RSC_ROLE_STARTED; /* can be master? */ if(migrate_from) { crm_element_value_int(migrate_from, XML_LRM_ATTR_RC, &from_rc); crm_element_value_int(migrate_from, XML_LRM_ATTR_OPSTATUS, &from_status); crm_trace("%s op on %s exited with status=%d, rc=%d", ID(migrate_from), migrate_target, from_status, from_rc); } if(migrate_from && from_rc == EXECRA_OK && from_status == LRM_OP_DONE) { crm_trace("Detected dangling migration op: %s on %s", ID(xml_op), migrate_source); /* all good * just need to arrange for the stop action to get sent * but _without_ affecting the target somehow */ rsc->role = RSC_ROLE_STOPPED; rsc->dangling_migrations = g_list_prepend(rsc->dangling_migrations, node); } else if(migrate_from) { /* Failed */ crm_trace("Marking active on %s %p %d", migrate_target, target, target->details->online); if(target && target->details->online) { native_add_running(rsc, target, data_set); } } else { /* Pending or complete but erased */ node_t *target = pe_find_node_id(data_set->nodes, migrate_target); crm_trace("Marking active on %s %p %d", migrate_target, target, target->details->online); if(target && target->details->online) { /* TODO: One day, figure out how to complete the migration * For now, consider it active in both locations so it gets stopped everywhere */ native_add_running(rsc, target, data_set); } else { /* Consider it failed here - forces a restart, prevents migration */ set_bit_inplace(rsc->flags, pe_rsc_failed); } } } } else if(rsc->role < RSC_ROLE_STARTED) { /* start, migrate_to and migrate_from will land here */ crm_debug_3("%s active on %s", rsc->id, node->details->uname); set_active(rsc); } break; case LRM_OP_ERROR: case LRM_OP_TIMEOUT: case LRM_OP_NOTSUPPORTED: crm_warn("Processing failed op %s on %s: %s (%d)", id, node->details->uname, execra_code2string(actual_rc_i), actual_rc_i); crm_xml_add(xml_op, XML_ATTR_UNAME, node->details->uname); if ((node->details->shutdown == FALSE) || (node->details->online == TRUE)) { add_node_copy(data_set->failed, xml_op); } if(*on_fail < action->on_fail) { *on_fail = action->on_fail; } if(safe_str_eq(task, CRMD_ACTION_STOP)) { resource_location( rsc, node, -INFINITY, "__stop_fail__", data_set); } else if(safe_str_eq(task, CRMD_ACTION_MIGRATED)) { int stop_id = 0; int migrate_id = 0; const char *migrate_source = crm_element_value(xml_op, XML_LRM_ATTR_MIGRATE_SOURCE); const char *migrate_target = crm_element_value(xml_op, XML_LRM_ATTR_MIGRATE_TARGET); xmlNode *stop_op = find_lrm_op(rsc->id, CRMD_ACTION_STOP, migrate_source, NULL, data_set); xmlNode *migrate_op = find_lrm_op(rsc->id, CRMD_ACTION_MIGRATE, migrate_source, migrate_target, data_set); if(stop_op) { crm_element_value_int(stop_op, XML_LRM_ATTR_CALLID, &stop_id); } if(migrate_op) { crm_element_value_int(migrate_op, XML_LRM_ATTR_CALLID, &migrate_id); } /* Get our state right */ rsc->role = RSC_ROLE_STARTED; /* can be master? */ if(stop_op == NULL || stop_id < migrate_id) { node_t *source = pe_find_node_id(data_set->nodes, migrate_source); if(source && source->details->online) { native_add_running(rsc, source, data_set); } } } else if(safe_str_eq(task, CRMD_ACTION_MIGRATE)) { int stop_id = 0; int migrate_id = 0; const char *migrate_source = crm_element_value(xml_op, XML_LRM_ATTR_MIGRATE_SOURCE); const char *migrate_target = crm_element_value(xml_op, XML_LRM_ATTR_MIGRATE_TARGET); xmlNode *stop_op = find_lrm_op(rsc->id, CRMD_ACTION_STOP, migrate_target, NULL, data_set); xmlNode *migrate_op = find_lrm_op(rsc->id, CRMD_ACTION_MIGRATED, migrate_target, migrate_source, data_set); if(stop_op) { crm_element_value_int(stop_op, XML_LRM_ATTR_CALLID, &stop_id); } if(migrate_op) { crm_element_value_int(migrate_op, XML_LRM_ATTR_CALLID, &migrate_id); } /* Get our state right */ rsc->role = RSC_ROLE_STARTED; /* can be master? */ if(stop_op == NULL || stop_id < migrate_id) { node_t *target = pe_find_node_id(data_set->nodes, migrate_target); crm_trace("Stop: %p %d, Migrated: %p %d", stop_op, stop_id, migrate_op, migrate_id); if(target && target->details->online) { native_add_running(rsc, target, data_set); } } else if(migrate_op == NULL) { /* Make sure it gets cleaned up, the stop may pre-date the migrate_from */ rsc->dangling_migrations = g_list_prepend(rsc->dangling_migrations, node); } } else if(safe_str_eq(task, CRMD_ACTION_PROMOTE)) { rsc->role = RSC_ROLE_MASTER; } else if(safe_str_eq(task, CRMD_ACTION_DEMOTE)) { /* * staying in role=master ends up putting the PE/TE into a loop * setting role=slave is not dangerous because no master will be * promoted until the failed resource has been fully stopped */ crm_warn("Forcing %s to stop after a failed demote action", rsc->id); rsc->next_role = RSC_ROLE_STOPPED; rsc->role = RSC_ROLE_SLAVE; } else if(compare_version("2.0", op_version) > 0 && safe_str_eq(task, CRMD_ACTION_START)) { crm_warn("Compatibility handling for failed op %s on %s", id, node->details->uname); resource_location( rsc, node, -INFINITY, "__legacy_start__", data_set); } if(rsc->role < RSC_ROLE_STARTED) { set_active(rsc); } crm_debug_2("Resource %s: role=%s, unclean=%s, on_fail=%s, fail_role=%s", rsc->id, role2text(rsc->role), node->details->unclean?"true":"false", fail2text(action->on_fail), role2text(action->fail_role)); if(action->fail_role != RSC_ROLE_STARTED && rsc->next_role < action->fail_role) { rsc->next_role = action->fail_role; } if(action->fail_role == RSC_ROLE_STOPPED) { int score = -INFINITY; crm_err("Making sure %s doesn't come up again", rsc->id); /* make sure it doesnt come up again */ g_hash_table_destroy(rsc->allowed_nodes); rsc->allowed_nodes = node_hash_from_list(data_set->nodes); g_hash_table_foreach(rsc->allowed_nodes, set_node_score, &score); } pe_free_action(action); action = NULL; break; case LRM_OP_CANCELLED: /* do nothing?? */ pe_err("Dont know what to do for cancelled ops yet"); break; } done: crm_debug_3("Resource %s after %s: role=%s", rsc->id, task, role2text(rsc->role)); pe_free_action(action); return TRUE; } gboolean add_node_attrs(xmlNode *xml_obj, node_t *node, gboolean overwrite, pe_working_set_t *data_set) { g_hash_table_insert(node->details->attrs, crm_strdup("#"XML_ATTR_UNAME), crm_strdup(node->details->uname)); g_hash_table_insert(node->details->attrs, crm_strdup("#"XML_ATTR_ID), crm_strdup(node->details->id)); if(safe_str_eq(node->details->id, data_set->dc_uuid)) { data_set->dc_node = node; node->details->is_dc = TRUE; g_hash_table_insert(node->details->attrs, crm_strdup("#"XML_ATTR_DC), crm_strdup(XML_BOOLEAN_TRUE)); } else { g_hash_table_insert(node->details->attrs, crm_strdup("#"XML_ATTR_DC), crm_strdup(XML_BOOLEAN_FALSE)); } unpack_instance_attributes( data_set->input, xml_obj, XML_TAG_ATTR_SETS, NULL, node->details->attrs, NULL, overwrite, data_set->now); return TRUE; } static GListPtr extract_operations(const char *node, const char *rsc, xmlNode *rsc_entry, gboolean active_filter) { int counter = -1; int stop_index = -1; int start_index = -1; xmlNode *rsc_op = NULL; GListPtr gIter = NULL; GListPtr op_list = NULL; GListPtr sorted_op_list = NULL; /* extract operations */ op_list = NULL; sorted_op_list = NULL; 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)) { crm_xml_add(rsc_op, "resource", rsc); crm_xml_add(rsc_op, XML_ATTR_UNAME, node); op_list = g_list_prepend(op_list, rsc_op); } } if(op_list == NULL) { /* if there are no operations, there is nothing to do */ return NULL; } sorted_op_list = g_list_sort(op_list, sort_op_by_callid); /* create active recurring operations as optional */ if(active_filter == FALSE) { return sorted_op_list; } op_list = NULL; calculate_active_ops(sorted_op_list, &start_index, &stop_index); for(gIter = sorted_op_list; gIter != NULL; gIter = gIter->next) { xmlNode *rsc_op = (xmlNode*)gIter->data; counter++; if(start_index < stop_index) { crm_debug_4("Skipping %s: not active", ID(rsc_entry)); break; } else if(counter < start_index) { crm_debug_4("Skipping %s: old", ID(rsc_op)); continue; } op_list = g_list_append(op_list, rsc_op); } g_list_free(sorted_op_list); return op_list; } GListPtr find_operations( const char *rsc, const char *node, gboolean active_filter, pe_working_set_t *data_set) { GListPtr output = NULL; GListPtr intermediate = NULL; xmlNode *tmp = NULL; xmlNode *status = find_xml_node(data_set->input, XML_CIB_TAG_STATUS, TRUE); const char *uname = NULL; node_t *this_node = NULL; xmlNode *node_state = NULL; for(node_state = __xml_first_child(status); node_state != NULL; node_state = __xml_next(node_state)) { if(crm_str_eq((const char *)node_state->name, XML_CIB_TAG_STATE, TRUE)) { uname = crm_element_value(node_state, XML_ATTR_UNAME); if(node != NULL && safe_str_neq(uname, node)) { continue; } this_node = pe_find_node(data_set->nodes, uname); CRM_CHECK(this_node != NULL, continue); determine_online_status(node_state, this_node, data_set); if(this_node->details->online || is_set(data_set->flags, pe_flag_stonith_enabled)) { /* offline nodes run no resources... * unless stonith is enabled in which case we need to * make sure rsc start events happen after the stonith */ xmlNode *lrm_rsc = NULL; tmp = find_xml_node(node_state, XML_CIB_TAG_LRM, FALSE); tmp = find_xml_node(tmp, XML_LRM_TAG_RESOURCES, FALSE); for(lrm_rsc = __xml_first_child(tmp); lrm_rsc != NULL; lrm_rsc = __xml_next(lrm_rsc)) { if(crm_str_eq((const char *)lrm_rsc->name, XML_LRM_TAG_RESOURCE, TRUE)) { const char *rsc_id = crm_element_value(lrm_rsc, XML_ATTR_ID); if(rsc != NULL && safe_str_neq(rsc_id, rsc)) { continue; } intermediate = extract_operations(uname, rsc_id, lrm_rsc, active_filter); output = g_list_concat(output, intermediate); } } } } } return output; } diff --git a/lib/pengine/unpack.h b/lib/pengine/unpack.h index fa57928050..acd90c0269 100644 --- a/lib/pengine/unpack.h +++ b/lib/pengine/unpack.h @@ -1,96 +1,96 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef PENGINE_UNPACK__H #define PENGINE_UNPACK__H extern gboolean unpack_resources( xmlNode *xml_resources, pe_working_set_t *data_set); extern gboolean unpack_config(xmlNode *config, pe_working_set_t *data_set); extern gboolean unpack_nodes(xmlNode *xml_nodes, pe_working_set_t *data_set); extern gboolean unpack_domains(xmlNode *xml_domains, pe_working_set_t *data_set); extern gboolean unpack_status(xmlNode *status, pe_working_set_t *data_set); extern gint sort_op_by_callid(gconstpointer a, gconstpointer b); extern gboolean unpack_lrm_resources( node_t *node, xmlNode * lrm_state, pe_working_set_t *data_set); extern gboolean add_node_attrs( xmlNode * attrs, node_t *node, gboolean overwrite, pe_working_set_t *data_set); extern gboolean determine_online_status( xmlNode * node_state, node_t *this_node, pe_working_set_t *data_set); extern const char *param_value( GHashTable *hash, xmlNode * parent, const char *name); extern char *clone_zero(const char *last_rsc_id); extern char *increment_clone(char *last_rsc_id); /* * The man pages for both curses and ncurses suggest inclusion of "curses.h". * We believe the following to be acceptable and portable. */ #if defined(HAVE_LIBNCURSES) || defined(HAVE_LIBCURSES) # if defined(HAVE_NCURSES_H) && !defined(HAVE_INCOMPATIBLE_PRINTW) # include # define CURSES_ENABLED 1 # elif defined(HAVE_NCURSES_NCURSES_H) && !defined(HAVE_INCOMPATIBLE_PRINTW) # include # define CURSES_ENABLED 1 # elif defined(HAVE_CURSES_H) && !defined(HAVE_INCOMPATIBLE_PRINTW) # include # define CURSES_ENABLED 1 # elif defined(HAVE_CURSES_CURSES_H) && !defined(HAVE_INCOMPATIBLE_PRINTW) # include # define CURSES_ENABLED 1 # else # define CURSES_ENABLED 0 # endif #else # define CURSES_ENABLED 0 #endif #if CURSES_ENABLED # define status_printw(fmt, args...) printw(fmt, ##args) #else # define status_printw(fmt, args...) \ crm_err("printw support requires ncurses to be available during configure"); \ do_crm_log(LOG_WARNING, fmt, ##args); #endif #define status_print(fmt, args...) \ if(options & pe_print_html) { \ FILE *stream = print_data; \ fprintf(stream, fmt, ##args); \ } else if(options & pe_print_ncurses) { \ status_printw(fmt, ##args); \ } else if(options & pe_print_printf) { \ FILE *stream = print_data; \ fprintf(stream, fmt, ##args); \ } else if(options & pe_print_log) { \ int log_level = *(int*)print_data; \ do_crm_log(log_level, fmt, ##args); \ } #endif diff --git a/lib/pengine/utils.c b/lib/pengine/utils.c index 14ec5a00d2..8bea7708de 100644 --- a/lib/pengine/utils.c +++ b/lib/pengine/utils.c @@ -1,1341 +1,1341 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include pe_working_set_t *pe_dataset = NULL; extern xmlNode *get_object_root(const char *object_type,xmlNode *the_root); void print_str_str(gpointer key, gpointer value, gpointer user_data); gboolean ghash_free_str_str(gpointer key, gpointer value, gpointer user_data); void unpack_operation( action_t *action, xmlNode *xml_obj, pe_working_set_t* data_set); node_t * node_copy(node_t *this_node) { node_t *new_node = NULL; CRM_CHECK(this_node != NULL, return NULL); crm_malloc0(new_node, sizeof(node_t)); CRM_ASSERT(new_node != NULL); crm_debug_5("Copying %p (%s) to %p", this_node, this_node->details->uname, new_node); new_node->weight = this_node->weight; new_node->fixed = this_node->fixed; new_node->details = this_node->details; return new_node; } /* any node in list1 or list2 and not in the other gets a score of -INFINITY */ void node_list_exclude(GHashTable *hash, GListPtr list, gboolean merge_scores) { GHashTable *result = hash; node_t *other_node = NULL; GListPtr gIter = list; GHashTableIter iter; node_t *node = NULL; g_hash_table_iter_init (&iter, hash); while (g_hash_table_iter_next (&iter, NULL, (void**)&node)) { other_node = pe_find_node_id(list, node->details->id); if(other_node == NULL) { node->weight = -INFINITY; } else if(merge_scores) { node->weight = merge_weights(node->weight, other_node->weight); } } for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; other_node = pe_hash_table_lookup(result, node->details->id); if(other_node == NULL) { node_t *new_node = node_copy(node); new_node->weight = -INFINITY; g_hash_table_insert(result, (gpointer)new_node->details->id, new_node); } } } GHashTable * node_hash_from_list(GListPtr list) { GListPtr gIter = list; GHashTable *result = g_hash_table_new_full( g_str_hash,g_str_equal, NULL, g_hash_destroy_str); for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; node_t *n = node_copy(node); g_hash_table_insert(result, (gpointer)n->details->id, n); } return result; } GListPtr node_list_dup(GListPtr list1, gboolean reset, gboolean filter) { GListPtr result = NULL; GListPtr gIter = list1; for(; gIter != NULL; gIter = gIter->next) { node_t *new_node = NULL; node_t *this_node = (node_t*)gIter->data; if(filter && this_node->weight < 0) { continue; } new_node = node_copy(this_node); if(reset) { new_node->weight = 0; } if(new_node != NULL) { result = g_list_prepend(result, new_node); } } return result; } static gint sort_node_uname(gconstpointer a, gconstpointer b) { const node_t *node_a = a; const node_t *node_b = b; return strcmp(node_a->details->uname, node_b->details->uname); } void dump_node_scores_worker(int level, const char *file, const char *function, int line, resource_t *rsc, const char *comment, GHashTable *nodes) { GHashTable *hash = nodes; GHashTableIter iter; node_t *node = NULL; if(rsc) { hash = rsc->allowed_nodes; } if(rsc && is_set(rsc->flags, pe_rsc_orphan)) { /* Don't show the allocation scores for orphans */ return; } if(level == 0) { /* For now we want this in sorted order to keep the regression tests happy */ GListPtr gIter = NULL; GListPtr list = g_hash_table_get_values(hash); list = g_list_sort(list, sort_node_uname); gIter = list; for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; char *score = score2char(node->weight); if(rsc) { printf("%s: %s allocation score on %s: %s\n", comment, rsc->id, node->details->uname, score); } else { printf("%s: %s = %s\n", comment, node->details->uname, score); } crm_free(score); } g_list_free(list); } else { g_hash_table_iter_init (&iter, hash); while (g_hash_table_iter_next (&iter, NULL, (void**)&node)) { char *score = score2char(node->weight); if(rsc) { do_crm_log_alias(level, file, function, line, "%s: %s allocation score on %s: %s", comment, rsc->id, node->details->uname, score); } else { do_crm_log_alias(level, file, function, line, "%s: %s = %s", comment, node->details->uname, score); } crm_free(score); } } if(rsc && rsc->children) { GListPtr gIter = NULL; gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child = (resource_t*)gIter->data; dump_node_scores_worker(level, file, function, line, child, comment, nodes); } } } static void append_dump_text(gpointer key, gpointer value, gpointer user_data) { char **dump_text = user_data; int len = 0; char *new_text = NULL; len = strlen(*dump_text) + strlen(" ") + strlen(key) + strlen("=") + strlen(value) + 1; crm_malloc0(new_text, len); sprintf(new_text, "%s %s=%s", *dump_text, (char *)key, (char *)value); crm_free(*dump_text); *dump_text = new_text; } void dump_node_capacity(int level, const char *comment, node_t *node) { int len = 0; char *dump_text = NULL; len = strlen(comment) + strlen(": ") + strlen(node->details->uname) + strlen(" capacity:") + 1; crm_malloc0(dump_text, len); sprintf(dump_text, "%s: %s capacity:", comment, node->details->uname); g_hash_table_foreach(node->details->utilization, append_dump_text, &dump_text); if(level == 0) { fprintf(stdout, "%s\n", dump_text); } else { do_crm_log_unlikely(level, "%s", dump_text); } crm_free(dump_text); } void dump_rsc_utilization(int level, const char *comment, resource_t *rsc, node_t *node) { int len = 0; char *dump_text = NULL; len = strlen(comment) + strlen(": ") + strlen(rsc->id) + strlen(" utilization on ") + strlen(node->details->uname) + strlen(":") + 1; crm_malloc0(dump_text, len); sprintf(dump_text, "%s: %s utilization on %s:", comment, rsc->id, node->details->uname); g_hash_table_foreach(rsc->utilization, append_dump_text, &dump_text); if(level == 0) { fprintf(stdout, "%s\n", dump_text); } else { do_crm_log_unlikely(level, "%s", dump_text); } crm_free(dump_text); } gint sort_rsc_index(gconstpointer a, gconstpointer b) { const resource_t *resource1 = (const resource_t*)a; const resource_t *resource2 = (const resource_t*)b; if(a == NULL && b == NULL) { return 0; } if(a == NULL) { return 1; } if(b == NULL) { return -1; } if(resource1->sort_index > resource2->sort_index) { return -1; } if(resource1->sort_index < resource2->sort_index) { return 1; } return 0; } gint sort_rsc_priority(gconstpointer a, gconstpointer b) { const resource_t *resource1 = (const resource_t*)a; const resource_t *resource2 = (const resource_t*)b; if(a == NULL && b == NULL) { return 0; } if(a == NULL) { return 1; } if(b == NULL) { return -1; } if(resource1->priority > resource2->priority) { return -1; } if(resource1->priority < resource2->priority) { return 1; } return 0; } action_t * custom_action(resource_t *rsc, char *key, const char *task, node_t *on_node, gboolean optional, gboolean save_action, pe_working_set_t *data_set) { action_t *action = NULL; GListPtr possible_matches = NULL; CRM_CHECK(key != NULL, return NULL); CRM_CHECK(task != NULL, return NULL); if(save_action && rsc != NULL) { possible_matches = find_actions(rsc->actions, key, on_node); } if(possible_matches != NULL) { crm_free(key); if(g_list_length(possible_matches) > 1) { pe_warn("Action %s for %s on %s exists %d times", task, rsc?rsc->id:"", on_node?on_node->details->uname:"", g_list_length(possible_matches)); } action = g_list_nth_data(possible_matches, 0); crm_debug_4("Found existing action (%d) %s for %s on %s", action->id, task, rsc?rsc->id:"", on_node?on_node->details->uname:""); g_list_free(possible_matches); } if(action == NULL) { if(save_action) { crm_debug_4("Creating%s action %d: %s for %s on %s", optional?"":" manditory", data_set->action_id, key, rsc?rsc->id:"", on_node?on_node->details->uname:""); } crm_malloc0(action, sizeof(action_t)); if(save_action) { action->id = data_set->action_id++; } else { action->id = 0; } action->rsc = rsc; CRM_ASSERT(task != NULL); action->task = crm_strdup(task); if(on_node) { action->node = node_copy(on_node); } action->uuid = key; set_bit_inplace(action->flags, pe_action_failure_is_fatal); set_bit_inplace(action->flags, pe_action_runnable); if(optional) { set_bit_inplace(action->flags, pe_action_optional); } else { clear_bit_inplace(action->flags, pe_action_optional); } /* Implied by crm_malloc0()... action->actions_before = NULL; action->actions_after = NULL; action->pseudo = FALSE; action->dumped = FALSE; action->processed = FALSE; action->seen_count = 0; */ action->extra = g_hash_table_new_full( g_str_hash, g_str_equal, free, free); action->meta = g_hash_table_new_full( g_str_hash, g_str_equal, free, free); if(save_action) { data_set->actions = g_list_prepend( data_set->actions, action); } if(rsc != NULL) { action->op_entry = find_rsc_op_entry(rsc, key); unpack_operation( action, action->op_entry, data_set); if(save_action) { rsc->actions = g_list_prepend( rsc->actions, action); } } if(save_action) { crm_debug_4("Action %d created", action->id); } } if(optional == FALSE && (action->flags & pe_action_optional)) { crm_debug_2("Action %d (%s) marked manditory", action->id, action->uuid); clear_bit_inplace(action->flags, pe_action_optional); } if(rsc != NULL) { enum action_tasks a_task = text2task(action->task); int warn_level = LOG_DEBUG_3; if(save_action) { warn_level = LOG_WARNING; } if(is_set(action->flags, pe_action_have_node_attrs) == FALSE && action->node != NULL && action->op_entry != NULL) { set_bit_inplace(action->flags, pe_action_have_node_attrs); unpack_instance_attributes( data_set->input, action->op_entry, XML_TAG_ATTR_SETS, action->node->details->attrs, action->extra, NULL, FALSE, data_set->now); } if(is_set(action->flags, pe_action_pseudo)) { /* leave untouched */ } else if(action->node == NULL) { clear_bit_inplace(action->flags, pe_action_runnable); } else if(is_not_set(rsc->flags, pe_rsc_managed) && g_hash_table_lookup(action->meta, XML_LRM_ATTR_INTERVAL) == NULL) { do_crm_log_unlikely(LOG_DEBUG, "Action %s (unmanaged)", action->uuid); set_bit_inplace(action->flags, pe_action_optional); /* action->runnable = FALSE; */ } else if(action->node->details->online == FALSE) { clear_bit_inplace(action->flags, pe_action_runnable); do_crm_log(warn_level, "Action %s on %s is unrunnable (offline)", action->uuid, action->node->details->uname); if(is_set(action->rsc->flags, pe_rsc_managed) && save_action && a_task == stop_rsc) { do_crm_log(warn_level, "Marking node %s unclean", action->node->details->uname); action->node->details->unclean = TRUE; } } else if(action->node->details->pending) { clear_bit_inplace(action->flags, pe_action_runnable); do_crm_log(warn_level, "Action %s on %s is unrunnable (pending)", action->uuid, action->node->details->uname); } else if(action->needs == rsc_req_nothing) { crm_debug_3("Action %s doesnt require anything", action->uuid); set_bit_inplace(action->flags, pe_action_runnable); #if 0 /* * No point checking this * - if we dont have quorum we cant stonith anyway */ } else if(action->needs == rsc_req_stonith) { crm_debug_3("Action %s requires only stonith", action->uuid); action->runnable = TRUE; #endif } else if(is_set(data_set->flags, pe_flag_have_quorum) == FALSE && data_set->no_quorum_policy == no_quorum_stop) { clear_bit_inplace(action->flags, pe_action_runnable); crm_debug("%s\t%s (cancelled : quorum)", action->node->details->uname, action->uuid); } else if(is_set(data_set->flags, pe_flag_have_quorum) == FALSE && data_set->no_quorum_policy == no_quorum_freeze) { crm_debug_3("Check resource is already active"); if(rsc->fns->active(rsc, TRUE) == FALSE) { clear_bit_inplace(action->flags, pe_action_runnable); crm_debug("%s\t%s (cancelled : quorum freeze)", action->node->details->uname, action->uuid); } } else { crm_debug_3("Action %s is runnable", action->uuid); set_bit_inplace(action->flags, pe_action_runnable); } if(save_action) { switch(a_task) { case stop_rsc: set_bit(rsc->flags, pe_rsc_stopping); break; case start_rsc: clear_bit(rsc->flags, pe_rsc_starting); if(is_set(action->flags, pe_action_runnable)) { set_bit(rsc->flags, pe_rsc_starting); } break; default: break; } } } return action; } void unpack_operation( action_t *action, xmlNode *xml_obj, pe_working_set_t* data_set) { int value_i = 0; unsigned long long interval = 0; unsigned long long start_delay = 0; char *value_ms = NULL; const char *class = NULL; const char *value = NULL; const char *field = NULL; CRM_CHECK(action->rsc != NULL, return); unpack_instance_attributes(data_set->input, data_set->op_defaults, XML_TAG_META_SETS, NULL, action->meta, NULL, FALSE, data_set->now); xml_prop_iter(xml_obj, name, value, if (value != NULL) { g_hash_table_replace(action->meta, crm_strdup(name), crm_strdup(value)); } ); unpack_instance_attributes(data_set->input, xml_obj, XML_TAG_META_SETS, NULL, action->meta, NULL, FALSE, data_set->now); unpack_instance_attributes(data_set->input, xml_obj, XML_TAG_ATTR_SETS, NULL, action->meta, NULL, FALSE, data_set->now); g_hash_table_remove(action->meta, "id"); class = g_hash_table_lookup(action->rsc->meta, "class"); value = g_hash_table_lookup(action->meta, "requires"); if(safe_str_eq(class, "stonith")) { action->needs = rsc_req_nothing; value = "nothing (fencing op)"; } else if(value == NULL && safe_str_neq(action->task, CRMD_ACTION_START)) { action->needs = rsc_req_nothing; value = "nothing (default)"; } else if(safe_str_eq(value, "nothing")) { action->needs = rsc_req_nothing; } else if(safe_str_eq(value, "quorum")) { action->needs = rsc_req_quorum; } else if(safe_str_eq(value, "fencing")) { action->needs = rsc_req_stonith; } else if(data_set->no_quorum_policy == no_quorum_ignore) { action->needs = rsc_req_nothing; value = "nothing (default)"; } else if(data_set->no_quorum_policy == no_quorum_freeze && is_set(data_set->flags, pe_flag_stonith_enabled)) { action->needs = rsc_req_stonith; value = "fencing (default)"; } else { action->needs = rsc_req_quorum; value = "quorum (default)"; } crm_debug_3("\tAction %s requires: %s", action->task, value); value = g_hash_table_lookup(action->meta, XML_OP_ATTR_ON_FAIL); if(safe_str_eq(action->task, CRMD_ACTION_STOP) && safe_str_eq(value, "standby")) { crm_config_err("on-fail=standby is not allowed for stop actions: %s", action->rsc->id); value = NULL; } if(value == NULL) { } else if(safe_str_eq(value, "block")) { action->on_fail = action_fail_block; } else if(safe_str_eq(value, "fence")) { action->on_fail = action_fail_fence; value = "node fencing"; if(is_set(data_set->flags, pe_flag_stonith_enabled) == FALSE) { crm_config_err("Specifying on_fail=fence and" " stonith-enabled=false makes no sense"); action->on_fail = action_fail_stop; action->fail_role = RSC_ROLE_STOPPED; value = "stop resource"; } } else if(safe_str_eq(value, "standby")) { action->on_fail = action_fail_standby; value = "node standby"; } else if(safe_str_eq(value, "ignore") || safe_str_eq(value, "nothing")) { action->on_fail = action_fail_ignore; value = "ignore"; } else if(safe_str_eq(value, "migrate")) { action->on_fail = action_fail_migrate; value = "force migration"; } else if(safe_str_eq(value, "stop")) { action->on_fail = action_fail_stop; action->fail_role = RSC_ROLE_STOPPED; value = "stop resource"; } else if(safe_str_eq(value, "restart")) { action->on_fail = action_fail_recover; value = "restart (and possibly migrate)"; } else { pe_err("Resource %s: Unknown failure type (%s)", action->rsc->id, value); value = NULL; } /* defaults */ if(value == NULL && safe_str_eq(action->task, CRMD_ACTION_STOP)) { if(is_set(data_set->flags, pe_flag_stonith_enabled)) { action->on_fail = action_fail_fence; value = "resource fence (default)"; } else { action->on_fail = action_fail_block; value = "resource block (default)"; } } else if(value == NULL) { action->on_fail = action_fail_recover; value = "restart (and possibly migrate) (default)"; } crm_debug_3("\t%s failure handling: %s", action->task, value); value = NULL; if(xml_obj != NULL) { value = g_hash_table_lookup(action->meta, "role_after_failure"); } if(value != NULL && action->fail_role == RSC_ROLE_UNKNOWN) { action->fail_role = text2role(value); } /* defaults */ if(action->fail_role == RSC_ROLE_UNKNOWN) { if(safe_str_eq(action->task, CRMD_ACTION_PROMOTE)) { action->fail_role = RSC_ROLE_SLAVE; } else { action->fail_role = RSC_ROLE_STARTED; } } crm_debug_3("\t%s failure results in: %s", action->task, role2text(action->fail_role)); field = XML_LRM_ATTR_INTERVAL; value = g_hash_table_lookup(action->meta, field); if(value != NULL) { interval = crm_get_interval(value); if(interval > 0) { value_ms = crm_itoa(interval); g_hash_table_replace(action->meta, crm_strdup(field), value_ms); } else { g_hash_table_remove(action->meta, field); } } field = XML_OP_ATTR_START_DELAY; value = g_hash_table_lookup(action->meta, field); if(value != NULL) { value_i = crm_get_msec(value); if(value_i < 0) { value_i = 0; } start_delay = value_i; value_ms = crm_itoa(value_i); g_hash_table_replace(action->meta, crm_strdup(field), value_ms); } else if(interval > 0 && g_hash_table_lookup(action->meta, XML_OP_ATTR_ORIGIN)) { char *date_str = NULL; char *date_str_mutable = NULL; ha_time_t *origin = NULL; value = g_hash_table_lookup(action->meta, XML_OP_ATTR_ORIGIN); date_str = crm_strdup(value); date_str_mutable = date_str; origin = parse_date(&date_str_mutable); crm_free(date_str); if(origin == NULL) { crm_config_err("Operation %s contained an invalid "XML_OP_ATTR_ORIGIN": %s", ID(xml_obj), value); } else { ha_time_t *delay = NULL; int rc = compare_date(origin, data_set->now); unsigned long long delay_s = 0; while(rc < 0) { add_seconds(origin, interval/1000); rc = compare_date(origin, data_set->now); } delay = subtract_time(origin, data_set->now); delay_s = date_in_seconds(delay); /* log_date(LOG_DEBUG_5, "delay", delay, ha_log_date|ha_log_time|ha_log_local); */ crm_info("Calculated a start delay of %llus for %s", delay_s, ID(xml_obj)); g_hash_table_replace(action->meta, crm_strdup(XML_OP_ATTR_START_DELAY), crm_itoa(delay_s * 1000)); start_delay = delay_s * 1000; free_ha_date(origin); free_ha_date(delay); } } field = XML_ATTR_TIMEOUT; value = g_hash_table_lookup(action->meta, field); if(value == NULL) { value = pe_pref( data_set->config_hash, "default-action-timeout"); } value_i = crm_get_msec(value); if(value_i < 0) { value_i = 0; } value_i += start_delay; value_ms = crm_itoa(value_i); g_hash_table_replace(action->meta, crm_strdup(field), value_ms); } xmlNode * find_rsc_op_entry(resource_t *rsc, const char *key) { int number = 0; gboolean do_retry = TRUE; char *local_key = NULL; const char *name = NULL; const char *value = NULL; const char *interval = NULL; char *match_key = NULL; xmlNode *op = NULL; xmlNode *operation = NULL; retry: for(operation = __xml_first_child(rsc->ops_xml); operation != NULL; operation = __xml_next(operation)) { if(crm_str_eq((const char *)operation->name, "op", TRUE)) { name = crm_element_value(operation, "name"); interval = crm_element_value(operation, XML_LRM_ATTR_INTERVAL); value = crm_element_value(operation, "enabled"); if(value && crm_is_true(value) == FALSE) { continue; } number = crm_get_interval(interval); if(number < 0) { continue; } match_key = generate_op_key(rsc->id, name, number); if(safe_str_eq(key, match_key)) { op = operation; } crm_free(match_key); if(op != NULL) { crm_free(local_key); return op; } } } crm_free(local_key); if(do_retry == FALSE) { return NULL; } do_retry = FALSE; if(strstr(key, CRMD_ACTION_MIGRATE) || strstr(key, CRMD_ACTION_MIGRATED)) { local_key = generate_op_key(rsc->id, "migrate", 0); key = local_key; goto retry; } else if(strstr(key, "_notify_")) { local_key = generate_op_key(rsc->id, "notify", 0); key = local_key; goto retry; } return NULL; } void print_node(const char *pre_text, node_t *node, gboolean details) { if(node == NULL) { crm_debug_4("%s%s: ", pre_text==NULL?"":pre_text, pre_text==NULL?"":": "); return; } crm_debug_4("%s%s%sNode %s: (weight=%d, fixed=%s)", pre_text==NULL?"":pre_text, pre_text==NULL?"":": ", node->details==NULL?"error ":node->details->online?"":"Unavailable/Unclean ", node->details->uname, node->weight, node->fixed?"True":"False"); if(details && node != NULL && node->details != NULL) { char *pe_mutable = crm_strdup("\t\t"); GListPtr gIter = node->details->running_rsc; crm_debug_4("\t\t===Node Attributes"); g_hash_table_foreach(node->details->attrs, print_str_str, pe_mutable); crm_free(pe_mutable); crm_debug_4("\t\t=== Resources"); for(; gIter != NULL; gIter = gIter->next) { resource_t *rsc = (resource_t*)gIter->data; print_resource(LOG_DEBUG_4, "\t\t", rsc, FALSE); } } } /* * Used by the HashTable for-loop */ void print_str_str(gpointer key, gpointer value, gpointer user_data) { crm_debug_4("%s%s %s ==> %s", user_data==NULL?"":(char*)user_data, user_data==NULL?"":": ", (char*)key, (char*)value); } void print_resource( int log_level, const char *pre_text, resource_t *rsc, gboolean details) { long options = pe_print_log; if(rsc == NULL) { do_crm_log(log_level-1, "%s%s: ", pre_text==NULL?"":pre_text, pre_text==NULL?"":": "); return; } if(details) { options |= pe_print_details; } rsc->fns->print(rsc, pre_text, options, &log_level); } void pe_free_action(action_t *action) { if(action == NULL) { return; } slist_basic_destroy(action->actions_before);/* action_warpper_t* */ slist_basic_destroy(action->actions_after); /* action_warpper_t* */ if(action->extra) { g_hash_table_destroy(action->extra); } if(action->meta) { g_hash_table_destroy(action->meta); } crm_free(action->task); crm_free(action->uuid); crm_free(action->node); crm_free(action); } GListPtr find_recurring_actions(GListPtr input, node_t *not_on_node) { const char *value = NULL; GListPtr result = NULL; GListPtr gIter = input; CRM_CHECK(input != NULL, return NULL); for(; gIter != NULL; gIter = gIter->next) { action_t *action = (action_t*)gIter->data; value = g_hash_table_lookup(action->meta, XML_LRM_ATTR_INTERVAL); if(value == NULL) { /* skip */ } else if(safe_str_eq(value, "0")) { /* skip */ } else if(safe_str_eq(CRMD_ACTION_CANCEL, action->task)) { /* skip */ } else if(not_on_node == NULL) { crm_debug_5("(null) Found: %s", action->uuid); result = g_list_prepend(result, action); } else if(action->node == NULL) { /* skip */ } else if(action->node->details != not_on_node->details) { crm_debug_5("Found: %s", action->uuid); result = g_list_prepend(result, action); } } return result; } action_t * find_first_action(GListPtr input, const char *uuid, const char *task, node_t *on_node) { GListPtr gIter = input; CRM_CHECK(uuid || task, return NULL); for(; gIter != NULL; gIter = gIter->next) { action_t *action = (action_t*)gIter->data; if(uuid != NULL && safe_str_neq(uuid, action->uuid)) { continue; } else if(task != NULL && safe_str_neq(task, action->task)) { continue; } else if(on_node == NULL) { return action; } else if(action->node == NULL) { continue; } else if(on_node->details == action->node->details) { return action; } } return NULL; } GListPtr find_actions(GListPtr input, const char *key, node_t *on_node) { GListPtr gIter = input; GListPtr result = NULL; CRM_CHECK(key != NULL, return NULL); for(; gIter != NULL; gIter = gIter->next) { action_t *action = (action_t*)gIter->data; crm_debug_5("Matching %s against %s", key, action->uuid); if(safe_str_neq(key, action->uuid)) { continue; } else if(on_node == NULL) { result = g_list_prepend(result, action); } else if(action->node == NULL) { /* skip */ crm_debug_2("While looking for %s action on %s, " "found an unallocated one. Assigning" " it to the requested node...", key, on_node->details->uname); action->node = node_copy(on_node); result = g_list_prepend(result, action); } else if(on_node->details == action->node->details) { result = g_list_prepend(result, action); } } return result; } GListPtr find_actions_exact(GListPtr input, const char *key, node_t *on_node) { GListPtr gIter = input; GListPtr result = NULL; CRM_CHECK(key != NULL, return NULL); for(; gIter != NULL; gIter = gIter->next) { action_t *action = (action_t*)gIter->data; crm_debug_5("Matching %s against %s", key, action->uuid); if(safe_str_neq(key, action->uuid)) { crm_debug_3("Key mismatch: %s vs. %s", key, action->uuid); continue; } else if(on_node == NULL || action->node == NULL) { crm_debug_3("on_node=%p, action->node=%p", on_node, action->node); continue; } else if(safe_str_eq(on_node->details->id, action->node->details->id)) { result = g_list_prepend(result, action); } crm_debug_2("Node mismatch: %s vs. %s", on_node->details->id, action->node->details->id); } return result; } static void resource_node_score(resource_t *rsc, node_t *node, int score, const char *tag) { node_t *match = NULL; if(rsc->children) { GListPtr gIter = rsc->children; for(; gIter != NULL; gIter = gIter->next) { resource_t *child_rsc = (resource_t*)gIter->data; resource_node_score(child_rsc, node, score, tag); } } crm_debug_2("Setting %s for %s on %s: %d", tag, rsc->id, node->details->uname, score); match = pe_hash_table_lookup(rsc->allowed_nodes, node->details->id); if(match == NULL) { match = node_copy(node); match->weight = merge_weights(score, node->weight); g_hash_table_insert(rsc->allowed_nodes, (gpointer)match->details->id, match); } match->weight = merge_weights(match->weight, score); } void resource_location(resource_t *rsc, node_t *node, int score, const char *tag, pe_working_set_t *data_set) { if(node != NULL) { resource_node_score(rsc, node, score, tag); } else if(data_set != NULL) { GListPtr gIter = data_set->nodes; for(; gIter != NULL; gIter = gIter->next) { node_t *node = (node_t*)gIter->data; resource_node_score(rsc, node, score, tag); } } else { GHashTableIter iter; node_t *node = NULL; g_hash_table_iter_init (&iter, rsc->allowed_nodes); while (g_hash_table_iter_next (&iter, NULL, (void**)&node)) { resource_node_score(rsc, node, score, tag); } } if(node == NULL && score == -INFINITY) { if(rsc->allocated_to) { crm_info("Deallocating %s from %s", rsc->id, rsc->allocated_to->details->uname); crm_free(rsc->allocated_to); rsc->allocated_to = NULL; } } } #define sort_return(an_int) crm_free(a_uuid); crm_free(b_uuid); return an_int gint sort_op_by_callid(gconstpointer a, gconstpointer b) { char *a_uuid = NULL; char *b_uuid = NULL; const xmlNode *xml_a = a; const xmlNode *xml_b = b; const char *a_xml_id = crm_element_value_const(xml_a, XML_ATTR_ID); const char *b_xml_id = crm_element_value_const(xml_b, XML_ATTR_ID); const char *a_task_id = crm_element_value_const(xml_a, XML_LRM_ATTR_CALLID); const char *b_task_id = crm_element_value_const(xml_b, XML_LRM_ATTR_CALLID); const char *a_key = crm_element_value_const(xml_a, XML_ATTR_TRANSITION_MAGIC); const char *b_key = crm_element_value_const(xml_b, XML_ATTR_TRANSITION_MAGIC); int dummy = -1; int a_id = -1; int b_id = -1; int a_rc = -1; int b_rc = -1; int a_status = -1; int b_status = -1; int a_call_id = -1; int b_call_id = -1; if(safe_str_eq(a_xml_id, b_xml_id)) { /* We have duplicate lrm_rsc_op entries in the status * section which is unliklely to be a good thing * - we can handle it easily enough, but we need to get * to the bottom of why its happening. */ pe_err("Duplicate lrm_rsc_op entries named %s", a_xml_id); sort_return(0); } CRM_CHECK(a_task_id != NULL && b_task_id != NULL, crm_err("a: %s, b: %s", crm_str(a_xml_id), crm_str(b_xml_id)); sort_return(0)); a_call_id = crm_parse_int(a_task_id, NULL); b_call_id = crm_parse_int(b_task_id, NULL); if(a_call_id == -1 && b_call_id == -1) { /* both are pending ops so it doesnt matter since * stops are never pending */ sort_return(0); } else if(a_call_id >= 0 && a_call_id < b_call_id) { crm_debug_4("%s (%d) < %s (%d) : call id", a_xml_id, a_call_id, b_xml_id, b_call_id); sort_return(-1); } else if(b_call_id >= 0 && a_call_id > b_call_id) { crm_debug_4("%s (%d) > %s (%d) : call id", a_xml_id, a_call_id, b_xml_id, b_call_id); sort_return(1); } crm_debug_5("%s (%d) == %s (%d) : continuing", a_xml_id, a_call_id, b_xml_id, b_call_id); /* now process pending ops */ CRM_CHECK(a_key != NULL && b_key != NULL, sort_return(0)); CRM_CHECK(decode_transition_magic( a_key, &a_uuid, &a_id, &dummy, &a_status, &a_rc, &dummy), sort_return(0)); CRM_CHECK(decode_transition_magic( b_key, &b_uuid, &b_id, &dummy, &b_status, &b_rc, &dummy), sort_return(0)); /* try and determin the relative age of the operation... * some pending operations (ie. a start) may have been supuerceeded * by a subsequent stop * * [a|b]_id == -1 means its a shutdown operation and _always_ comes last */ if(safe_str_neq(a_uuid, b_uuid) || a_id == b_id) { /* * some of the logic in here may be redundant... * * if the UUID from the TE doesnt match then one better * be a pending operation. * pending operations dont survive between elections and joins * because we query the LRM directly */ CRM_CHECK(a_call_id == -1 || b_call_id == -1, crm_err("a: %s=%d, b: %s=%d", crm_str(a_xml_id), a_call_id, crm_str(b_xml_id), b_call_id); sort_return(0)); CRM_CHECK(a_call_id >= 0 || b_call_id >= 0, sort_return(0)); if(b_call_id == -1) { crm_debug_2("%s (%d) < %s (%d) : transition + call id", a_xml_id, a_call_id, b_xml_id, b_call_id); sort_return(-1); } if(a_call_id == -1) { crm_debug_2("%s (%d) > %s (%d) : transition + call id", a_xml_id, a_call_id, b_xml_id, b_call_id); sort_return(1); } } else if((a_id >= 0 && a_id < b_id) || b_id == -1) { crm_debug_3("%s (%d) < %s (%d) : transition", a_xml_id, a_id, b_xml_id, b_id); sort_return(-1); } else if((b_id >= 0 && a_id > b_id) || a_id == -1) { crm_debug_3("%s (%d) > %s (%d) : transition", a_xml_id, a_id, b_xml_id, b_id); sort_return(1); } /* we should never end up here */ crm_err("%s (%d:%d:%s) ?? %s (%d:%d:%s) : default", a_xml_id, a_call_id, a_id, a_uuid, b_xml_id, b_call_id, b_id, b_uuid); CRM_CHECK(FALSE, sort_return(0)); } time_t get_timet_now(pe_working_set_t *data_set) { time_t now = 0; if(data_set && data_set->now) { now = data_set->now->tm_now; } if(now == 0) { /* eventually we should convert data_set->now into time_tm * for now, its only triggered by PE regression tests */ now = time(NULL); crm_crit("Defaulting to 'now'"); if(data_set && data_set->now) { data_set->now->tm_now = now; } } return now; } struct fail_search { resource_t *rsc; int count; long long last; char *key; }; static void get_failcount_by_prefix(gpointer key_p, gpointer value, gpointer user_data) { struct fail_search *search = user_data; const char *key = key_p; const char *match = strstr(key, search->key); if(match) { if(strstr(key, "last-failure-") == key && (key+13) == match) { search->last = crm_int_helper(value, NULL); } else if(strstr(key, "fail-count-") == key && (key+11) == match) { search->count += char2score(value); } } } int get_failcount(node_t *node, resource_t *rsc, int *last_failure, pe_working_set_t *data_set) { struct fail_search search = {rsc, 0, 0, NULL}; search.key = crm_strdup(rsc->id); if(is_not_set(rsc->flags, pe_rsc_unique)) { int lpc = 0; search.rsc = uber_parent(rsc); /* Strip the clone incarnation */ for(lpc = strlen(search.key); lpc > 0; lpc--) { if(search.key[lpc] == ':') { search.key[lpc+1] = 0; break; } } g_hash_table_foreach(node->details->attrs, get_failcount_by_prefix, &search); } else { /* Optimize the "normal" case */ char *key = NULL; const char *value = NULL; key = crm_concat("fail-count", rsc->id, '-'); value = g_hash_table_lookup(node->details->attrs, key); search.count = char2score(value); crm_free(key); key = crm_concat("last-failure", rsc->id, '-'); value = g_hash_table_lookup(node->details->attrs, key); search.last = crm_int_helper(value, NULL); crm_free(key); } if(search.count != 0 && search.last != 0 && rsc->failure_timeout) { if(last_failure) { *last_failure = search.last; } if(search.last > 0) { time_t now = get_timet_now(data_set); if(now > (search.last + rsc->failure_timeout)) { crm_notice("Failcount for %s on %s has expired (limit was %ds)", search.rsc->id, node->details->uname, rsc->failure_timeout); search.count = 0; } } } if(search.count != 0) { crm_info("%s has failed %s times on %s", search.rsc->id, score2char(search.count), node->details->uname); } crm_free(search.key); return search.count; } gboolean get_target_role(resource_t *rsc, enum rsc_role_e *role) { const char *value = g_hash_table_lookup(rsc->meta, XML_RSC_ATTR_TARGET_ROLE); CRM_CHECK(role != NULL, return FALSE); if(value == NULL || safe_str_eq("started", value) || safe_str_eq("default", value)) { return FALSE; } *role = text2role(value); if(*role == RSC_ROLE_UNKNOWN) { crm_config_err("%s: Unknown value for %s: %s", rsc->id, XML_RSC_ATTR_TARGET_ROLE, value); return FALSE; } else if(*role > RSC_ROLE_STARTED) { const char *stateful = g_hash_table_lookup(rsc->meta, "stateful"); if(rsc->variant == pe_master) { /* Next check isn't true during common_unpack() for the master */ } else if(crm_is_true(stateful) == FALSE) { pe_warn("%s is not part of a master/slave resource, a %s of '%s' makes no sense: %s", rsc->id, XML_RSC_ATTR_TARGET_ROLE, value, stateful); *role = RSC_ROLE_STARTED; return FALSE; } } return TRUE; } diff --git a/lib/pengine/utils.h b/lib/pengine/utils.h index 9b6b170c1c..d3a91162fe 100644 --- a/lib/pengine/utils.h +++ b/lib/pengine/utils.h @@ -1,162 +1,162 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef PE_UTILS__H #define PE_UTILS__H #include #include extern pe_working_set_t *pe_dataset; extern node_t *node_copy(node_t *this_node) ; extern time_t get_timet_now(pe_working_set_t *data_set); extern int get_failcount(node_t *node, resource_t *rsc, int *last_failure, pe_working_set_t *data_set); /* Binary like operators for lists of nodes */ extern void node_list_exclude(GHashTable *list, GListPtr list2, gboolean merge_scores); extern GListPtr node_list_dup(GListPtr list, gboolean reset, gboolean filter); extern GListPtr node_list_from_hash(GHashTable *hash, gboolean reset, gboolean filter); extern GHashTable *node_hash_from_list(GListPtr list); static inline gpointer pe_hash_table_lookup(GHashTable *hash, gconstpointer key) { if(hash) { return g_hash_table_lookup(hash, key); } return NULL; } extern GListPtr node_list_and(GListPtr list1, GListPtr list2, gboolean filter); extern GListPtr node_list_xor(GListPtr list1, GListPtr list2, gboolean filter); extern GListPtr node_list_minus(GListPtr list1,GListPtr list2,gboolean filter); extern void pe_free_shallow(GListPtr alist); extern void pe_free_shallow_adv(GListPtr alist, gboolean with_data); /* For creating the transition graph */ extern xmlNode *action2xml(action_t *action, gboolean as_input); /* Printing functions for debug */ extern void print_node( const char *pre_text, node_t *node, gboolean details); extern void print_resource( int log_level, const char *pre_text, resource_t *rsc, gboolean details); extern void dump_node_scores_worker(int level, const char *file, const char *function, int line, resource_t *rsc, const char *comment, GHashTable *nodes); extern void dump_node_capacity(int level, const char *comment, node_t *node); extern void dump_rsc_utilization(int level, const char *comment, resource_t *rsc, node_t *node); #if SUPPORT_TRACING # define dump_node_scores(level, rsc, text, nodes) do { \ static struct _pcmk_ddebug descriptor \ __attribute__((section("__verbose"), aligned(8))) = \ { __func__, __FILE__, "node-scores", __LINE__, LOG_TRACE }; \ \ if((level) == 0 || __unlikely((level) < crm_log_level)) { \ dump_node_scores_worker(level, __FILE__, NULL, 0, rsc, text, nodes); \ \ } else if(__unlikely(descriptor.bump != LOG_TRACE)) { \ dump_node_scores_worker(LOG_NOTICE, __FILE__, __PRETTY_FUNCTION__, __LINE__, rsc, text, nodes); \ } \ } while(0) #else # define dump_node_scores(level, rsc, text, nodes) do { \ if((level) == 0 || __unlikely((level) < crm_log_level)) { \ dump_node_scores_worker(level, __FILE__, NULL, 0, rsc, text, nodes); \ } \ } while(0) #endif /* Sorting functions */ extern gint sort_rsc_priority(gconstpointer a, gconstpointer b); extern gint sort_rsc_index(gconstpointer a, gconstpointer b); extern xmlNode *find_rsc_op_entry(resource_t *rsc, const char *key); extern action_t *custom_action( resource_t *rsc, char *key, const char *task, node_t *on_node, gboolean optional, gboolean foo, pe_working_set_t *data_set); #define delete_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_DELETE, 0) #define delete_action(rsc, node, optional) custom_action( \ rsc, delete_key(rsc), CRMD_ACTION_DELETE, node, \ optional, TRUE, data_set); #define stopped_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_STOPPED, 0) #define stopped_action(rsc, node, optional) custom_action( \ rsc, stopped_key(rsc), CRMD_ACTION_STOPPED, node, \ optional, TRUE, data_set); #define stop_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_STOP, 0) #define stop_action(rsc, node, optional) custom_action( \ rsc, stop_key(rsc), CRMD_ACTION_STOP, node, \ optional, TRUE, data_set); #define start_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_START, 0) #define start_action(rsc, node, optional) custom_action( \ rsc, start_key(rsc), CRMD_ACTION_START, node, \ optional, TRUE, data_set) #define started_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_STARTED, 0) #define started_action(rsc, node, optional) custom_action( \ rsc, started_key(rsc), CRMD_ACTION_STARTED, node, \ optional, TRUE, data_set) #define promote_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_PROMOTE, 0) #define promote_action(rsc, node, optional) custom_action( \ rsc, promote_key(rsc), CRMD_ACTION_PROMOTE, node, \ optional, TRUE, data_set) #define promoted_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_PROMOTED, 0) #define promoted_action(rsc, node, optional) custom_action( \ rsc, promoted_key(rsc), CRMD_ACTION_PROMOTED, node, \ optional, TRUE, data_set) #define demote_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_DEMOTE, 0) #define demote_action(rsc, node, optional) custom_action( \ rsc, demote_key(rsc), CRMD_ACTION_DEMOTE, node, \ optional, TRUE, data_set) #define demoted_key(rsc) generate_op_key(rsc->id, CRMD_ACTION_DEMOTED, 0) #define demoted_action(rsc, node, optional) custom_action( \ rsc, demoted_key(rsc), CRMD_ACTION_DEMOTED, node, \ optional, TRUE, data_set) extern action_t *find_first_action(GListPtr input, const char *uuid, const char *task, node_t *on_node); extern GListPtr find_actions(GListPtr input, const char *key, node_t *on_node); extern GListPtr find_actions_exact( GListPtr input, const char *key, node_t *on_node); extern GListPtr find_recurring_actions(GListPtr input, node_t *not_on_node); extern void pe_free_action(action_t *action); extern void resource_location(resource_t *rsc, node_t *node, int score, const char *tag, pe_working_set_t *data_set); extern gint sort_op_by_callid(gconstpointer a, gconstpointer b); extern gboolean get_target_role(resource_t *rsc, enum rsc_role_e *role); extern resource_t *find_clone_instance(resource_t *rsc, const char *sub_id, pe_working_set_t *data_set); #endif diff --git a/lib/pengine/variant.h b/lib/pengine/variant.h index c209e428ba..ec83487fad 100644 --- a/lib/pengine/variant.h +++ b/lib/pengine/variant.h @@ -1,96 +1,96 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #ifndef PE_VARIANT__H #define PE_VARIANT__H #if VARIANT_CLONE typedef struct clone_variant_data_s { resource_t *self; int clone_max; int clone_node_max; int master_max; int master_node_max; int total_clones; int active_clones; int max_nodes; int masters_active; int masters_allocated; gboolean interleave; gboolean ordered; gboolean applied_master_prefs; gboolean merged_master_weights; notify_data_t *stop_notify; notify_data_t *start_notify; notify_data_t *demote_notify; notify_data_t *promote_notify; xmlNode *xml_obj_child; gboolean notify_confirm; } clone_variant_data_t; # define get_clone_variant_data(data, rsc) \ CRM_ASSERT(rsc != NULL); \ CRM_ASSERT(rsc->variant == pe_clone || rsc->variant == pe_master); \ data = (clone_variant_data_t *)rsc->variant_opaque; #elif VARIANT_GROUP typedef struct group_variant_data_s { int num_children; resource_t *self; resource_t *first_child; resource_t *last_child; gboolean colocated; gboolean ordered; gboolean child_starting; gboolean child_stopping; } group_variant_data_t; # define get_group_variant_data(data, rsc) \ CRM_ASSERT(rsc != NULL); \ CRM_ASSERT(rsc->variant == pe_group); \ CRM_ASSERT(rsc->variant_opaque != NULL); \ data = (group_variant_data_t *)rsc->variant_opaque; \ #elif VARIANT_NATIVE typedef struct native_variant_data_s { int dummy; } native_variant_data_t; # define get_native_variant_data(data, rsc) \ CRM_ASSERT(rsc != NULL); \ CRM_ASSERT(rsc->variant == pe_native); \ CRM_ASSERT(rsc->variant_opaque != NULL); \ data = (native_variant_data_t *)rsc->variant_opaque; #endif #endif diff --git a/lib/transition/graph.c b/lib/transition/graph.c index dc2fafd57c..31d957e602 100644 --- a/lib/transition/graph.c +++ b/lib/transition/graph.c @@ -1,334 +1,334 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include /* #include */ /* */ crm_graph_functions_t *graph_fns = NULL; static gboolean update_synapse_ready(synapse_t *synapse, int action_id) { GListPtr lpc = NULL; gboolean updates = FALSE; CRM_CHECK(synapse->executed == FALSE, return FALSE); CRM_CHECK(synapse->confirmed == FALSE, return FALSE); synapse->ready = TRUE; for(lpc = synapse->inputs; lpc != NULL; lpc = lpc->next) { crm_action_t *prereq = (crm_action_t*)lpc->data; crm_debug_3("Processing input %d", prereq->id); if(prereq->id == action_id) { crm_debug_2("Marking input %d of synapse %d confirmed", action_id, synapse->id); prereq->confirmed = TRUE; updates = TRUE; } else if(prereq->confirmed == FALSE) { synapse->ready = FALSE; } } if(updates) { crm_debug_2("Updated synapse %d", synapse->id); } return updates; } static gboolean update_synapse_confirmed(synapse_t *synapse, int action_id) { GListPtr lpc = NULL; gboolean updates = FALSE; gboolean is_confirmed = TRUE; CRM_CHECK(synapse->executed, return FALSE); CRM_CHECK(synapse->confirmed == FALSE, return TRUE); is_confirmed = TRUE; for(lpc = synapse->actions; lpc != NULL; lpc = lpc->next) { crm_action_t *action = (crm_action_t*)lpc->data; crm_debug_3("Processing action %d", action->id); if(action->id == action_id) { crm_debug_2("Confirmed: Action %d of Synapse %d", action_id, synapse->id); action->confirmed = TRUE; updates = TRUE; } else if(action->confirmed == FALSE) { is_confirmed = FALSE; crm_debug_3("Synapse %d still not confirmed after action %d", synapse->id, action_id); } } if(is_confirmed && synapse->confirmed == FALSE) { crm_debug_2("Confirmed: Synapse %d", synapse->id); synapse->confirmed = TRUE; updates = TRUE; } if(updates) { crm_debug_3("Updated synapse %d", synapse->id); } return updates; } gboolean update_graph(crm_graph_t *graph, crm_action_t *action) { gboolean rc = FALSE; gboolean updates = FALSE; GListPtr lpc = NULL; for(lpc = graph->synapses; lpc != NULL; lpc = lpc->next) { synapse_t *synapse = (synapse_t*)lpc->data; if (synapse->confirmed) { crm_debug_2("Synapse complete"); } else if (synapse->executed) { crm_debug_2("Synapse executed"); rc = update_synapse_confirmed(synapse, action->id); } else if(action->failed == FALSE || synapse->priority == INFINITY) { rc = update_synapse_ready(synapse, action->id); } updates = updates || rc; } if(updates) { crm_debug_2("Updated graph with completed action %d", action->id); } return updates; } static gboolean should_fire_synapse(synapse_t *synapse) { GListPtr lpc = NULL; CRM_CHECK(synapse->executed == FALSE, return FALSE); CRM_CHECK(synapse->confirmed == FALSE, return FALSE); crm_debug_3("Checking pre-reqs for %d", synapse->id); /* lookup prereqs */ synapse->ready = TRUE; for(lpc = synapse->inputs; lpc != NULL; lpc = lpc->next) { crm_action_t *prereq = (crm_action_t*)lpc->data; crm_debug_3("Processing input %d", prereq->id); if(prereq->confirmed == FALSE) { crm_debug_3("Inputs for synapse %d not satisfied", synapse->id); synapse->ready = FALSE; break; } } return synapse->ready; } static gboolean initiate_action(crm_graph_t *graph, crm_action_t *action) { const char *id = NULL; CRM_CHECK(action->executed == FALSE, return FALSE); id = ID(action->xml); CRM_CHECK(id != NULL, return FALSE); action->executed = TRUE; if(action->type == action_type_pseudo){ crm_debug_2("Executing pseudo-event: %d", action->id); return graph_fns->pseudo(graph, action); } else if(action->type == action_type_rsc) { crm_debug_2("Executing rsc-event: %d", action->id); return graph_fns->rsc(graph, action); } else if(action->type == action_type_crm) { const char *task = NULL; task = crm_element_value(action->xml, XML_LRM_ATTR_TASK); CRM_CHECK(task != NULL, return FALSE); if(safe_str_eq(task, CRM_OP_FENCE)) { crm_debug_2("Executing STONITH-event: %d", action->id); return graph_fns->stonith(graph, action); } crm_debug_2("Executing crm-event: %d", action->id); return graph_fns->crmd(graph, action); } te_log_action(LOG_ERR, "Failed on unsupported command type: %s (id=%s)", crm_element_name(action->xml), id); return FALSE; } static gboolean fire_synapse(crm_graph_t *graph, synapse_t *synapse) { GListPtr lpc = NULL; CRM_CHECK(synapse != NULL, return FALSE); CRM_CHECK(synapse->ready, return FALSE); CRM_CHECK(synapse->confirmed == FALSE, return TRUE); crm_debug_2("Synapse %d fired", synapse->id); synapse->executed = TRUE; for(lpc = synapse->actions; lpc != NULL; lpc = lpc->next) { crm_action_t *action = (crm_action_t*)lpc->data; /* allow some leeway */ gboolean passed = FALSE; /* Invoke the action and start the timer */ passed = initiate_action(graph, action); if(passed == FALSE) { crm_err("Failed initiating <%s id=%d> in synapse %d", crm_element_name(action->xml), action->id, synapse->id); synapse->confirmed = TRUE; action->confirmed = TRUE; action->failed = TRUE; return FALSE; } } return TRUE; } int run_graph(crm_graph_t *graph) { GListPtr lpc = NULL; int stat_log_level = LOG_DEBUG; int pass_result = transition_active; const char *status = "In-progress"; if(graph_fns == NULL) { set_default_graph_functions(); } if(graph == NULL) { return transition_complete; } graph->fired = 0; graph->pending = 0; graph->skipped = 0; graph->completed = 0; graph->incomplete = 0; crm_debug_2("Entering graph %d callback", graph->id); /* Pre-calculate the number of completed and in-flight operations */ for(lpc = graph->synapses; lpc != NULL; lpc = lpc->next) { synapse_t *synapse = (synapse_t*)lpc->data; if (synapse->confirmed) { crm_debug_3("Synapse %d complete", synapse->id); graph->completed++; } else if(synapse->executed) { crm_debug_2("Synapse %d: confirmation pending", synapse->id); graph->pending++; } } /* Now check if there is work to do */ for(lpc = graph->synapses; lpc != NULL; lpc = lpc->next) { synapse_t *synapse = (synapse_t*)lpc->data; if(graph->batch_limit > 0 && graph->pending >= graph->batch_limit) { crm_debug("Throttling output: batch limit (%d) reached", graph->batch_limit); break; } else if (synapse->confirmed || synapse->executed) { /* Already handled */ continue; } if(synapse->priority < graph->abort_priority) { crm_debug_2("Skipping synapse %d: aborting", synapse->id); graph->skipped++; } else if(should_fire_synapse(synapse)) { crm_debug_2("Synapse %d fired", synapse->id); graph->fired++; CRM_CHECK(fire_synapse(graph, synapse), stat_log_level = LOG_ERR; graph->abort_priority = INFINITY; graph->incomplete++; graph->fired--); if (synapse->confirmed == FALSE) { graph->pending++; } } else { crm_debug_2("Synapse %d cannot fire", synapse->id); graph->incomplete++; } } if(graph->pending == 0 && graph->fired == 0) { graph->complete = TRUE; stat_log_level = LOG_NOTICE; pass_result = transition_complete; status = "Complete"; if(graph->incomplete != 0 && graph->abort_priority <= 0) { stat_log_level = LOG_WARNING; pass_result = transition_terminated; status = "Terminated"; } else if(graph->skipped != 0) { status = "Stopped"; } } else if(graph->fired == 0) { pass_result = transition_pending; } do_crm_log(stat_log_level+1, "===================================================="); do_crm_log(stat_log_level, "Transition %d (Complete=%d, Pending=%d," " Fired=%d, Skipped=%d, Incomplete=%d, Source=%s): %s", graph->id, graph->completed, graph->pending, graph->fired, graph->skipped, graph->incomplete, graph->source, status); return pass_result; } diff --git a/lib/transition/unpack.c b/lib/transition/unpack.c index 356685aa52..a345978d3f 100644 --- a/lib/transition/unpack.c +++ b/lib/transition/unpack.c @@ -1,323 +1,323 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include #include #include #include CRM_TRACE_INIT_DATA(transitioner); static crm_action_t* unpack_action(synapse_t *parent, xmlNode *xml_action) { crm_action_t *action = NULL; xmlNode *action_copy = NULL; const char *value = crm_element_value(xml_action, XML_ATTR_ID); if(value == NULL) { crm_err("Actions must have an id!"); crm_log_xml_debug_3(xml_action, "Action with missing id"); return NULL; } action_copy = copy_xml(xml_action); crm_malloc0(action, sizeof(crm_action_t)); if(action == NULL) { return NULL; } action->id = crm_parse_int(value, NULL); action->type = action_type_rsc; action->xml = action_copy; action->synapse = parent; if(safe_str_eq(crm_element_name(action_copy), XML_GRAPH_TAG_RSC_OP)) { action->type = action_type_rsc; } else if(safe_str_eq(crm_element_name(action_copy), XML_GRAPH_TAG_PSEUDO_EVENT)) { action->type = action_type_pseudo; } else if(safe_str_eq(crm_element_name(action_copy), XML_GRAPH_TAG_CRM_EVENT)) { action->type = action_type_crm; } action->params = xml2list(action_copy); value = g_hash_table_lookup(action->params, "CRM_meta_timeout"); if(value != NULL) { action->timeout = crm_parse_int(value, NULL); } value = g_hash_table_lookup(action->params, "CRM_meta_interval"); if(value != NULL) { action->interval = crm_parse_int(value, NULL); } value = g_hash_table_lookup(action->params, "CRM_meta_can_fail"); if(value != NULL) { crm_str_to_boolean(value, &(action->can_fail)); } crm_debug_3("Action %d has timer set to %dms", action->id, action->timeout); return action; } static synapse_t * unpack_synapse(crm_graph_t *new_graph, xmlNode *xml_synapse) { const char *value = NULL; xmlNode *inputs = NULL; xmlNode *action_set = NULL; synapse_t *new_synapse = NULL; CRM_CHECK(xml_synapse != NULL, return NULL); crm_debug_3("looking in synapse %s", ID(xml_synapse)); crm_malloc0(new_synapse, sizeof(synapse_t)); new_synapse->id = crm_parse_int(ID(xml_synapse), NULL); value = crm_element_value(xml_synapse, XML_CIB_ATTR_PRIORITY); if(value != NULL) { new_synapse->priority = crm_parse_int(value, NULL); } new_graph->num_synapses++; CRM_CHECK(new_synapse->id >= 0, crm_free(new_synapse); return NULL); crm_debug_3("look for actions in synapse %s", crm_element_value(xml_synapse, XML_ATTR_ID)); for(action_set = __xml_first_child(xml_synapse); action_set != NULL; action_set = __xml_next(action_set)) { if(crm_str_eq((const char *)action_set->name, "action_set", TRUE)) { xmlNode *action = NULL; for(action = __xml_first_child(action_set); action != NULL; action = __xml_next(action)) { crm_action_t *new_action = unpack_action(new_synapse, action); new_graph->num_actions++; if(new_action == NULL) { continue; } crm_debug_3("Adding action %d to synapse %d", new_action->id, new_synapse->id); new_synapse->actions = g_list_append( new_synapse->actions, new_action); } } } crm_debug_3("look for inputs in synapse %s", ID(xml_synapse)); for(inputs = __xml_first_child(xml_synapse); inputs != NULL; inputs = __xml_next(inputs)) { if(crm_str_eq((const char *)inputs->name, "inputs", TRUE)) { xmlNode *trigger = NULL; for(trigger = __xml_first_child(inputs); trigger != NULL; trigger = __xml_next(trigger)) { xmlNode *input = NULL; for(input = __xml_first_child(trigger); input != NULL; input = __xml_next(input)) { crm_action_t *new_input = unpack_action( new_synapse, input); if(new_input == NULL) { continue; } crm_debug_3("Adding input %d to synapse %d", new_input->id, new_synapse->id); new_synapse->inputs = g_list_append( new_synapse->inputs, new_input); } } } } return new_synapse; } crm_graph_t * unpack_graph(xmlNode *xml_graph, const char *reference) { /* id = -1; new_graph->abort_priority = 0; new_graph->network_delay = -1; new_graph->transition_timeout = -1; new_graph->stonith_timeout = -1; new_graph->completion_action = tg_done; if(reference) { new_graph->source = crm_strdup(reference); } else { new_graph->source = crm_strdup("unknown"); } if(xml_graph != NULL) { t_id = crm_element_value(xml_graph, "transition_id"); CRM_CHECK(t_id != NULL, crm_free(new_graph); return NULL); new_graph->id = crm_parse_int(t_id, "-1"); time = crm_element_value(xml_graph, "cluster-delay"); CRM_CHECK(time != NULL, crm_free(new_graph); return NULL); new_graph->network_delay = crm_get_msec(time); time = crm_element_value(xml_graph, "stonith-timeout"); if(time == NULL) { new_graph->stonith_timeout = new_graph->network_delay; } else { new_graph->stonith_timeout = crm_get_msec(time); } t_id = crm_element_value(xml_graph, "batch-limit"); new_graph->batch_limit = crm_parse_int(t_id, "0"); } for(synapse = __xml_first_child(xml_graph); synapse != NULL; synapse = __xml_next(synapse)) { if(crm_str_eq((const char *)synapse->name, "synapse", TRUE)) { synapse_t *new_synapse = unpack_synapse(new_graph, synapse); if(new_synapse != NULL) { new_graph->synapses = g_list_append( new_graph->synapses, new_synapse); } } } crm_info("Unpacked transition %d: %d actions in %d synapses", new_graph->id, new_graph->num_actions,new_graph->num_synapses); return new_graph; } static void destroy_action(crm_action_t *action) { if(action->timer && action->timer->source_id != 0) { crm_warn("Cancelling timer for action %d (src=%d)", action->id, action->timer->source_id); g_source_remove(action->timer->source_id); } if(action->params) { g_hash_table_destroy(action->params); } free_xml(action->xml); crm_free(action->timer); crm_free(action); } static void destroy_synapse(synapse_t *synapse) { while(g_list_length(synapse->actions) > 0) { crm_action_t *action = g_list_nth_data(synapse->actions, 0); synapse->actions = g_list_remove(synapse->actions, action); destroy_action(action); } while(g_list_length(synapse->inputs) > 0) { crm_action_t *action = g_list_nth_data(synapse->inputs, 0); synapse->inputs = g_list_remove(synapse->inputs, action); destroy_action(action); } crm_free(synapse); } void destroy_graph(crm_graph_t *graph) { if(graph == NULL) { return; } while(g_list_length(graph->synapses) > 0) { synapse_t *synapse = g_list_nth_data(graph->synapses, 0); graph->synapses = g_list_remove(graph->synapses, synapse); destroy_synapse(synapse); } crm_free(graph->source); crm_free(graph); } lrm_op_t *convert_graph_action(xmlNode *resource, crm_action_t *action, int status, int rc) { xmlNode *xop = NULL; lrm_op_t *op = NULL; GHashTableIter iter; const char *name = NULL; const char *value = NULL; xmlNode *action_resource = NULL; CRM_CHECK(action != NULL, return NULL); CRM_CHECK(action->type == action_type_rsc, return NULL); action_resource = first_named_child(action->xml, XML_CIB_TAG_RESOURCE); CRM_CHECK(action_resource != NULL, crm_log_xml_warn(action->xml, "Bad"); return NULL); crm_malloc0(op, sizeof(lrm_op_t)); op->app_name = crm_strdup(crm_system_name); op->rsc_id = crm_strdup(ID(action_resource)); op->interval = action->interval; op->op_type = crm_strdup(crm_element_value(action->xml, XML_LRM_ATTR_TASK)); op->rc = rc; op->op_status = status; op->params = g_hash_table_new_full(g_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); g_hash_table_iter_init (&iter, action->params); while (g_hash_table_iter_next (&iter, (void**)&name, (void**)&value)) { g_hash_table_insert(op->params, crm_strdup(name), crm_strdup(value)); } for(xop = __xml_first_child(resource); xop != NULL; xop = __xml_next(xop)) { int tmp = 0; crm_element_value_int(xop, XML_LRM_ATTR_CALLID, &tmp); crm_info("Got call_id=%d for %s", tmp, ID(resource)); if(tmp > op->call_id) { op->call_id = tmp; } } op->call_id++; return op; } diff --git a/lib/transition/utils.c b/lib/transition/utils.c index c059fad1fb..03252b39c5 100644 --- a/lib/transition/utils.c +++ b/lib/transition/utils.c @@ -1,284 +1,284 @@ /* * Copyright (C) 2004 Andrew Beekhof * - * This program is free software; you can redistribute it and/or - * modify it under the terms of the GNU General Public + * This library is free software; you can redistribute it and/or + * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * - * This software is distributed in the hope that it will be useful, + * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU - * General Public License for more details. + * Lesser General Public License for more details. * - * You should have received a copy of the GNU General Public + * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software - * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */ #include #include #include #include #include /* #include */ /* */ extern crm_graph_functions_t *graph_fns; static gboolean pseudo_action_dummy(crm_graph_t *graph, crm_action_t *action) { static int fail = -1; if(fail < 0) { char *fail_s = getenv("PE_fail"); if(fail_s) { fail = crm_int_helper(fail_s, NULL); } else { fail = 0; } } crm_debug_2("Dummy event handler: action %d executed", action->id); if(action->id == fail) { crm_err("Dummy event handler: pretending action %d failed", action->id); action->failed = TRUE; graph->abort_priority = INFINITY; } action->confirmed = TRUE; update_graph(graph, action); return TRUE; } crm_graph_functions_t default_fns = { pseudo_action_dummy, pseudo_action_dummy, pseudo_action_dummy, pseudo_action_dummy }; void set_default_graph_functions(void) { graph_fns = &default_fns; } void set_graph_functions(crm_graph_functions_t *fns) { crm_info("Setting custom graph functions"); graph_fns = fns; CRM_ASSERT(graph_fns != NULL); CRM_ASSERT(graph_fns->rsc != NULL); CRM_ASSERT(graph_fns->crmd != NULL); CRM_ASSERT(graph_fns->pseudo != NULL); CRM_ASSERT(graph_fns->stonith != NULL); } const char * transition_status(enum transition_status state) { switch(state) { case transition_active: return "active"; case transition_pending: return "pending"; case transition_complete: return "complete"; case transition_stopped: return "stopped"; case transition_terminated: return "terminated"; case transition_action_failed: return "failed (action)"; case transition_failed: return "failed"; } return "unknown"; } const char * actiontype2text(action_type_e type) { switch(type) { case action_type_pseudo: return "pseduo"; case action_type_rsc: return "rsc"; case action_type_crm: return "crm"; } return ""; } static void print_elem(int log_level, const char *prefix, gboolean as_input, crm_action_t *action) { int priority = 0; const char *key = NULL; const char *host = NULL; const char *class = "Action"; const char *state = "Pending"; if(action->failed) { state = "Failed"; } else if(action->confirmed) { state = "Completed"; } else if(action->executed) { state = "In-flight"; } else if(action->sent_update) { state = "Update sent"; } if(as_input) { class = "Input"; } if(as_input == FALSE) { priority = action->synapse->priority; } key = crm_element_value(action->xml, XML_LRM_ATTR_TASK_KEY); host = crm_element_value(action->xml, XML_LRM_ATTR_TARGET); switch(action->type) { case action_type_pseudo: do_crm_log(log_level, "%s[%s %d]: %s (id: %s, type: %s, priority: %d)", prefix, class, action->id, state, key, actiontype2text(action->type), priority); break; case action_type_rsc: do_crm_log(log_level, "%s[%s %d]: %s (id: %s, loc: %s, priority: %d)", prefix, class, action->id, state, key, host, priority); break; case action_type_crm: do_crm_log(log_level, "%s[%s %d]: %s (id: %s, loc: %s, type: %s, priority: %d)", prefix, class, action->id, state, key, host, actiontype2text(action->type), priority); break; default: crm_err("%s[%s %d]: %s (id: %s, loc: %s, type: %s (unhandled), priority: %d)", prefix, class, action->id, state, key, host, actiontype2text(action->type), priority); } if(as_input == FALSE) { return; } if(action->timer) { do_crm_log(log_level, "%s\ttimeout=%d, timer=%d", prefix, action->timeout, action->timer->source_id); } if(action->confirmed == FALSE) { crm_log_xml(LOG_DEBUG_3, "\t\t\tRaw xml: ", action->xml); } } void print_action(int log_level, const char *prefix, crm_action_t *action) { print_elem(log_level, prefix, FALSE, action); } void print_graph(unsigned int log_level, crm_graph_t *graph) { GListPtr lpc = NULL; if(graph == NULL || graph->num_actions == 0) { if(log_level > LOG_DEBUG) { crm_debug("## Empty transition graph ##"); } return; } do_crm_log(log_level, "Graph %d (%d actions in %d synapses):" " batch-limit=%d jobs, network-delay=%dms", graph->id, graph->num_actions, graph->num_synapses, graph->batch_limit, graph->network_delay); for(lpc = graph->synapses; lpc != NULL; lpc = lpc->next) { synapse_t *synapse = (synapse_t*)lpc->data; do_crm_log(log_level, "Synapse %d %s (priority: %d)", synapse->id, synapse->confirmed?"was confirmed": synapse->executed?"was executed": "is pending", synapse->priority); if(synapse->confirmed == FALSE) { GListPtr lpc2 = NULL; for(lpc2 = synapse->actions; lpc2 != NULL; lpc2 = lpc2->next) { crm_action_t *action = (crm_action_t*)lpc2->data; print_elem(log_level, " ", FALSE, action); } } if(synapse->executed == FALSE) { GListPtr lpc2 = NULL; for(lpc2 = synapse->inputs; lpc2 != NULL; lpc2 = lpc2->next) { crm_action_t *input = (crm_action_t*)lpc2->data; print_elem(log_level, " * ", TRUE, input); } } } } static const char *abort2text(enum transition_action abort_action) { switch(abort_action) { case tg_done: return "done"; case tg_stop: return "stop"; case tg_restart: return "restart"; case tg_shutdown: return "shutdown"; } return "unknown"; } void update_abort_priority( crm_graph_t *graph, int priority, enum transition_action action, const char *abort_reason) { if(graph == NULL) { return; } if(graph->abort_priority < priority) { crm_info("Abort priority upgraded from %d to %d", graph->abort_priority, priority); graph->abort_priority = priority; if(graph->abort_reason != NULL) { crm_info("'%s' abort superceeded", graph->abort_reason); } graph->abort_reason = abort_reason; } if(graph->completion_action < action) { crm_info("Abort action %s superceeded by %s", abort2text(graph->completion_action), abort2text(action)); graph->completion_action = action; } }