diff --git a/cts/CIB.py b/cts/CIB.py index 33d63c97a7..4767b70928 100644 --- a/cts/CIB.py +++ b/cts/CIB.py @@ -1,613 +1,608 @@ '''CTS: Cluster Testing System: CIB generator ''' __copyright__=''' Author: Andrew Beekhof Copyright (C) 2008 Andrew Beekhof ''' from UserDict import UserDict import sys, time, types, syslog, os, struct, string, signal, traceback, warnings, socket from cts.CTSvars import * from cts.CTS import ClusterManager class CibBase: cts_cib = None version = "unknown" feature_set = "unknown" Factory = None def __init__(self, CM, factory, tmpfile=None): self.CM = CM self.Factory = factory if not tmpfile: warnings.filterwarnings("ignore") tmpfile=os.tmpnam() warnings.resetwarnings() self.Factory.tmpfile = tmpfile def version(self): return self.version def NextIP(self): fields = string.split(self.CM.Env["IPBase"], '.') fields[3] = str(int(fields[3])+1) ip = string.join(fields, '.') self.CM.Env["IPBase"] = ip return ip class CibXml: def __init__(self, Factory, tag, _id, **kwargs): self.tag = tag self.name = _id self.kwargs = kwargs self.children = [] self.Factory = Factory def add_child(self, child): self.children.append(child) def __setitem__(self, key, value): self.kwargs[key] = value def show(self): text = '''<%s''' % self.tag if self.name: text += ''' id="%s"''' % (self.name) for k in self.kwargs.keys(): text += ''' %s="%s"''' % (k, self.kwargs[k]) if not self.children: text += '''/>''' return text text += '''>''' for c in self.children: text += c.show() text += '''''' % self.tag return text def _run(self, operation, xml, section="all", options=""): self.Factory.debug("Writing out %s" % self.name) fixed = "HOME=/root CIB_file="+self.Factory.tmpfile fixed += " cibadmin --%s --scope %s %s --xml-text '%s'" % (operation, section, options, xml) rc = self.Factory.rsh(self.Factory.target, fixed) if rc != 0: self.Factory.log("Configure call failed: "+fixed) sys.exit(1) class FencingTopology(CibXml): def __init__(self, Factory): CibXml.__init__(self, Factory, "fencing-topology", None) def level(self, index, node, devices): self.add_child(CibXml(self.Factory, "fencing-level", "%s.%d" % (node, index), target=node, index=index, devices=devices)) def commit(self): self._run("create", self.show(), "configuration", "--allow-create") class Option(CibXml): def __init__(self, Factory, name=None, value=None, section="cib-bootstrap-options"): CibXml.__init__(self, Factory, "cluster_property_set", section) if name and value: self.add_child(CibXml(Factory, "nvpair", "cts-%s" % name, name=name, value=value)) def __setitem__(self, key, value): self.add_child(CibXml(self.Factory, "nvpair", "cts-%s" % key, name=key, value=value)) def commit(self): self._run("modify", self.show(), "crm_config", "--allow-create") class Expression(CibXml): def __init__(self, Factory, name, attr, op, value=None): CibXml.__init__(self, Factory, "expression", name, attribute=attr, operation=op) if value: self["value"] = value class Rule(CibXml): def __init__(self, Factory, name, score, op="and", expr=None): CibXml.__init__(self, Factory, "rule", "%s" % name) self["boolean-op"] = op self["score"] = score if expr: self.add_child(expr) class Resource(CibXml): def __init__(self, Factory, name, rtype, standard, provider=None): CibXml.__init__(self, Factory, "native", name) self.rtype = rtype self.standard = standard self.provider = provider self.op=[] self.meta={} self.param={} self.scores={} self.needs={} self.coloc={} if self.standard == "ocf" and not provider: self.provider = "heartbeat" elif self.standard == "lsb": self.provider = None def __setitem__(self, key, value): self.add_param(key, value) def add_op(self, name, interval, **kwargs): self.op.append( CibXml(self.Factory, "op", "%s-%s" % (name, interval), name=name, interval=interval, **kwargs)) def add_param(self, name, value): self.param[name] = value def add_meta(self, name, value): self.meta[name] = value def prefer(self, node, score="INFINITY", rule=None): if not rule: rule = Rule(self.Factory, "prefer-%s-r" % node, score, expr=Expression(self.Factory, "prefer-%s-e" % node, "#uname", "eq", node)) self.scores[node] = rule def after(self, resource, kind="Mandatory", first="start", then="start", **kwargs): kargs = kwargs.copy() kargs["kind"] = kind if then: kargs["first-action"] = "start" kargs["then-action"] = then if first: kargs["first-action"] = first self.needs[resource] = kargs def colocate(self, resource, score="INFINITY", role=None, withrole=None, **kwargs): kargs = kwargs.copy() kargs["score"] = score if role: kargs["rsc-role"] = role if withrole: kargs["with-rsc-role"] = withrole self.coloc[resource] = kargs def constraints(self): text = "" for k in self.scores.keys(): text += '''''' % (k, self.name) text += self.scores[k].show() text += '''''' for k in self.needs.keys(): text += '''''' for k in self.coloc.keys(): text += '''''' text += "" return text def show(self): text = '''''' if len(self.meta) > 0: text += '''''' % self.name for p in self.meta.keys(): text += '''''' % (self.name, p, p, self.meta[p]) text += '''''' if len(self.param) > 0: text += '''''' % self.name for p in self.param.keys(): text += '''''' % (self.name, p, p, self.param[p]) text += '''''' if len(self.op) > 0: text += '''''' for o in self.op: key = o.name o.name = "%s-%s" % (self.name, key) text += o.show() o.name = key text += '''''' text += '''''' return text def commit(self): self._run("create", self.show(), "resources") self._run("modify", self.constraints()) class Group(Resource): def __init__(self, Factory, name): Resource.__init__(self, Factory, name, None, None) self.tag = "group" def __setitem__(self, key, value): self.add_meta(key, value) def show(self): text = '''<%s id="%s">''' % (self.tag, self.name) if len(self.meta) > 0: text += '''''' % self.name for p in self.meta.keys(): text += '''''' % (self.name, p, p, self.meta[p]) text += '''''' for c in self.children: text += c.show() text += '''''' % self.tag return text class Clone(Group): def __init__(self, Factory, name, child=None): Group.__init__(self, Factory, name) self.tag = "clone" if child: self.add_child(child) def add_child(self, resource): if not self.children: self.children.append(resource) else: self.Factory.log("Clones can only have a single child. Ignoring %s" % resource.name) class Master(Clone): def __init__(self, Factory, name, child=None): Clone.__init__(self, Factory, name, child) self.tag = "master" class CIB11(CibBase): feature_set = "3.0" version = "pacemaker-1.1" def _show(self, command=""): output = "" (rc, result) = self.Factory.rsh(self.Factory.target, "HOME=/root CIB_file="+self.Factory.tmpfile+" cibadmin -Ql "+command, None, ) for line in result: output += line self.Factory.debug("Generated Config: "+line) return output def NewIP(self, name=None, standard="ocf"): ip = self.NextIP() if not name: name = "r"+ip r = Resource(self.Factory, name, "IPaddr2", standard) r["ip"] = ip r["cidr_netmask"] = "32" r.add_op("monitor", "5s") return r def install(self, target): old = self.Factory.tmpfile # Force a rebuild self.cts_cib = None self.Factory.tmpfile = CTSvars.CRM_CONFIG_DIR+"/cib.xml" self.contents(target) self.Factory.rsh(self.Factory.target, "chown "+CTSvars.CRM_DAEMON_USER+" "+self.Factory.tmpfile) self.Factory.tmpfile = old def contents(self, target=None): # fencing resource if self.cts_cib: return self.cts_cib if target: self.Factory.target = target self.Factory.rsh(self.Factory.target, "HOME=/root cibadmin --empty %s > %s" % (self.version, self.Factory.tmpfile)) #cib_base = self.cib_template % (self.feature_set, self.version, ''' remote-tls-port='9898' remote-clear-port='9999' ''') nodelist = "" self.num_nodes = 0 for node in self.CM.Env["nodes"]: nodelist += node + " " self.num_nodes = self.num_nodes + 1 no_quorum = "stop" if self.num_nodes < 3: no_quorum = "ignore" self.Factory.log("Cluster only has %d nodes, configuring: no-quroum-policy=ignore" % self.num_nodes) # Fencing resource # Define first so that the shell doesn't reject every update if self.CM.Env["DoFencing"]: st = Resource(self.Factory, "Fencing", self.CM.Env["stonith-type"], "stonith") # Set a threshold for unreliable stonith devices such as the vmware one st.add_meta("migration-threshold", "5") st.add_op("monitor", "120s", timeout="300s") st.add_op("stop", "0", timeout="180s") st.add_op("start", "0", timeout="180s") entries = string.split(self.CM.Env["stonith-params"], ',') for entry in entries: (name, value) = string.split(entry, '=') if name == "hostlist" and value == "all": value = string.join(self.CM.Env["nodes"], " ") elif name == "pcmk_host_list" and value == "all": value = string.join(self.CM.Env["nodes"], " ") st[name] = value st.commit() # Test advanced fencing logic if True: stf_nodes = [] stt_nodes = [] - # Cheat to create a second copy of the real device - st.name = "FencingDup" - st.colocate("Fencing", "-INFINITY") - st.commit() - # Create the levels stl = FencingTopology(self.Factory) for node in self.CM.Env["nodes"]: ftype = self.CM.Env.RandomGen.choice(["levels-and", "levels-or ", "broadcast "]) self.CM.log(" - Using %s fencing for node: %s" % (ftype, node)) if ftype == "levels-and": stl.level(1, node, "FencingPass,Fencing") stt_nodes.append(node) elif ftype == "levels-or ": stl.level(1, node, "FencingFail") stl.level(2, node, "Fencing") stf_nodes.append(node) # Create a Dummy agent that always passes for levels-and if len(stt_nodes): ftype="fence_true" self.CM.install_helper(ftype, destdir="/usr/sbin") stt = Resource(self.Factory, "FencingPass", ftype, "stonith") stt["pcmk_host_list"] = string.join(stt_nodes, " ") # Wait this many seconds before doing anything, handy for letting disks get flushed too stt["power_timeout"] = "20" stt.commit() # Create a Dummy agent that always fails for levels-or if len(stf_nodes): ftype="fence_false" self.CM.install_helper(ftype, destdir="/usr/sbin") stf = Resource(self.Factory, "FencingFail", ftype, "stonith") stf["pcmk_host_list"] = string.join(stf_nodes, " ") # Wait this many seconds before doing anything, handy for letting disks get flushed too stf["power_timeout"] = "20" stf.commit() # Now commit the levels themselves stl.commit() o = Option(self.Factory, "stonith-enabled", self.CM.Env["DoFencing"]) o["start-failure-is-fatal"] = "false" o["pe-input-series-max"] = "5000" o["default-action-timeout"] = "90s" o["shutdown-escalation"] = "5min" o["batch-limit"] = "10" o["dc-deadtime"] = "5s" o["no-quorum-policy"] = no_quorum o["expected-quorum-votes"] = self.num_nodes if self.CM.Env["DoBSC"] == 1: o["ident-string"] = "Linux-HA TEST configuration file - REMOVEME!!" o.commit() # Add resources? if self.CM.Env["CIBResource"] == 1: self.add_resources() if self.CM.cluster_monitor == 1: mon = Resource(self.Factory, "cluster_mon", "ocf", "ClusterMon", "pacemaker") mon.add_op("start", "0", requires="nothing") mon.add_op("monitor", "5s", requires="nothing") mon["update"] = "10" mon["extra_options"] = "-r -n" mon["user"] = "abeekhof" mon["htmlfile"] = "/suse/abeekhof/Export/cluster.html" mon.commit() #self._create('''location prefer-dc cluster_mon rule -INFINITY: \#is_dc eq false''') # generate cib self.cts_cib = self._show() if self.Factory.tmpfile != CTSvars.CRM_CONFIG_DIR+"/cib.xml": self.Factory.rsh(self.Factory.target, "rm -f "+self.Factory.tmpfile) return self.cts_cib def add_resources(self): # Per-node resources for node in self.CM.Env["nodes"]: name = "rsc_"+node r = self.NewIP(name) r.prefer(node, "100") r.commit() # Migrator # Make this slightly sticky (since we have no other location constraints) to avoid relocation during Reattach m = Resource(self.Factory, "migrator","Dummy", "ocf", "pacemaker") m.add_meta("resource-stickiness","1") m.add_meta("allow-migrate", "1") m.add_op("monitor", "P10S") m.commit() # Ping the test master p = Resource(self.Factory, "ping-1","ping", "ocf", "pacemaker") p.add_op("monitor", "60s") p["host-list"] = self.CM.Env["cts-master"] p["name"] = "connected" p["debug"] = "true" c = Clone(self.Factory, "Connectivity", p) c["globally-unique"] = "false" c.commit() #master slave resource s = Resource(self.Factory, "stateful-1", "Stateful", "ocf", "pacemaker") s.add_op("monitor", "15s", timeout="60s") s.add_op("monitor", "16s", timeout="60s", role="Master") ms = Master(self.Factory, "master-1", s) ms["clone-max"] = self.num_nodes ms["master-max"] = 1 ms["clone-node-max"] = 1 ms["master-node-max"] = 1 # Require conectivity to run the master r = Rule(self.Factory, "connected", "-INFINITY", op="or") r.add_child(Expression(self.Factory, "m1-connected-1", "connected", "lt", "1")) r.add_child(Expression(self.Factory, "m1-connected-2", "connected", "not_defined", None)) ms.prefer("connected", rule=r) ms.commit() # Group Resource g = Group(self.Factory, "group-1") g.add_child(self.NewIP()) g.add_child(self.NewIP()) g.add_child(self.NewIP()) # Group with the master g.after("master-1", first="promote", then="start") g.colocate("master-1", "INFINITY", withrole="Master") g.commit() # LSB resource lsb_agent = self.CM.install_helper("LSBDummy") lsb = Resource(self.Factory, "lsb-dummy",lsb_agent, "lsb") lsb.add_op("monitor", "5s") # LSB with group lsb.after("group-1") lsb.colocate("group-1") lsb.commit() class CIB12(CIB11): feature_set = "3.0" version = "pacemaker-1.2" #class HASI(CIB10): # def add_resources(self): # # DLM resource # self._create('''primitive dlm ocf:pacemaker:controld op monitor interval=120s''') # self._create('''clone dlm-clone dlm meta globally-unique=false interleave=true''') # O2CB resource # self._create('''primitive o2cb ocf:ocfs2:o2cb op monitor interval=120s''') # self._create('''clone o2cb-clone o2cb meta globally-unique=false interleave=true''') # self._create('''colocation o2cb-with-dlm INFINITY: o2cb-clone dlm-clone''') # self._create('''order start-o2cb-after-dlm mandatory: dlm-clone o2cb-clone''') class ConfigFactory: def __init__(self, CM): self.CM = CM self.rsh = self.CM.rsh self.register("pacemaker11", CIB11, CM, self) self.register("pacemaker12", CIB12, CM, self) # self.register("hae", HASI, CM, self) self.target = self.CM.Env["nodes"][0] self.tmpfile = None def log(self, args): self.CM.log("cib: %s" % args) def debug(self, args): self.CM.debug("cib: %s" % args) def register(self, methodName, constructor, *args, **kargs): """register a constructor""" _args = [constructor] _args.extend(args) setattr(self, methodName, apply(ConfigFactoryItem,_args, kargs)) def unregister(self, methodName): """unregister a constructor""" delattr(self, methodName) def createConfig(self, name="pacemaker-1.0"): if name == "pacemaker-1.0": name = "pacemaker10"; elif name == "pacemaker-1.1": name = "pacemaker11"; elif name == "pacemaker-1.2": name = "pacemaker12"; elif name == "hasi": name = "hae"; if hasattr(self, name): return getattr(self, name)() else: self.CM.log("Configuration variant '%s' is unknown. Defaulting to latest config" % name) return self.pacemaker12() class ConfigFactoryItem: def __init__(self, function, *args, **kargs): assert callable(function), "function should be a callable obj" self._function = function self._args = args self._kargs = kargs def __call__(self, *args, **kargs): """call function""" _args = list(self._args) _args.extend(args) _kargs = self._kargs.copy() _kargs.update(kargs) return apply(self._function,_args,_kargs) # Basic Sanity Testing if __name__ == '__main__': import CTSlab env = CTSlab.LabEnvironment() env["nodes"] = [] env["nodes"].append("pcmk-1") env["nodes"].append("pcmk-2") env["nodes"].append("pcmk-3") env["nodes"].append("pcmk-4") env["CIBResource"] = 1 env["IPBase"] = "10.0.0.10" env["DoStonith"]=1 env["stonith-type"] = "fence_xvm" env["stonith-params"] = "pcmk_arg_map=domain:uname" manager = ClusterManager(env) manager.cluster_monitor = False CibFactory = ConfigFactory(manager) cib = CibFactory.createConfig("pacemaker-1.1") print cib.contents() diff --git a/fencing/commands.c b/fencing/commands.c index 26434117d4..b77fc95121 100644 --- a/fencing/commands.c +++ b/fencing/commands.c @@ -1,1697 +1,1883 @@ /* * Copyright (C) 2009 Andrew Beekhof * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public * License as published by the Free Software Foundation; either * version 2 of the License, or (at your option) any later version. * * This software 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. * * You should have received a copy of the GNU General Public * License along with this library; if not, write to the Free Software * 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 #include #include #include GHashTable *device_list = NULL; GHashTable *topology = NULL; GList *cmd_list = NULL; static int active_children = 0; + +struct device_search_s +{ + char *host; + char *action; + int per_device_timeout; + int replies_needed; + int replies_received; + + void *user_data; + void (*callback) (GList *devices, void *user_data); + GListPtr capable; +}; + static gboolean stonith_device_dispatch(gpointer user_data); static void st_child_done(GPid pid, int rc, const char *output, gpointer user_data); +static void +stonith_send_reply(xmlNode *reply, int call_options, const char *remote_peer, const char *client_id); + +static void search_devices_record_result(struct device_search_s *search, const char *device, gboolean can_fence); typedef struct async_command_s { int id; int pid; int fd_stdout; int options; int default_timeout; int timeout; char *op; char *origin; char *client; char *client_name; char *remote_op_id; char *victim; char *action; char *device; char *mode; GListPtr device_list; GListPtr device_next; - void (*done)(GPid pid, int rc, const char *output, gpointer user_data); + void *internal_user_data; + void (*done_cb)(GPid pid, int rc, const char *output, gpointer user_data); guint timer_sigterm; guint timer_sigkill; /*! If the operation timed out, this is the last signal * we sent to the process to get it to terminate */ int last_timeout_signo; } async_command_t; static xmlNode * stonith_construct_async_reply(async_command_t *cmd, const char *output, xmlNode *data, int rc); static int get_action_timeout(stonith_device_t *device, const char *action, int default_timeout) { char buffer[512] = { 0, }; char *value = NULL; CRM_CHECK(action != NULL, return default_timeout); if (!device->params) { return default_timeout; } snprintf(buffer, sizeof(buffer) - 1, "pcmk_%s_timeout", action); value = g_hash_table_lookup(device->params, buffer); if (!value) { return default_timeout; } return atoi(value); } static void free_async_command(async_command_t *cmd) { if (!cmd) { return; } cmd_list = g_list_remove(cmd_list, cmd); - g_list_free(cmd->device_list); + g_list_free_full(cmd->device_list, free); free(cmd->device); free(cmd->action); free(cmd->victim); free(cmd->remote_op_id); free(cmd->client); free(cmd->client_name); free(cmd->origin); free(cmd->op); free(cmd); } static async_command_t *create_async_command(xmlNode *msg) { async_command_t *cmd = NULL; xmlNode *op = get_xpath_object("//@"F_STONITH_ACTION, msg, LOG_ERR); const char *action = crm_element_value(op, F_STONITH_ACTION); CRM_CHECK(action != NULL, crm_log_xml_warn(msg, "NoAction"); return NULL); crm_log_xml_trace(msg, "Command"); cmd = calloc(1, sizeof(async_command_t)); crm_element_value_int(msg, F_STONITH_CALLID, &(cmd->id)); crm_element_value_int(msg, F_STONITH_CALLOPTS, &(cmd->options)); crm_element_value_int(msg, F_STONITH_TIMEOUT, &(cmd->default_timeout)); cmd->timeout = cmd->default_timeout; cmd->origin = crm_element_value_copy(msg, F_ORIG); cmd->remote_op_id = crm_element_value_copy(msg, F_STONITH_REMOTE_OP_ID); cmd->client = crm_element_value_copy(msg, F_STONITH_CLIENTID); cmd->client_name = crm_element_value_copy(msg, F_STONITH_CLIENTNAME); cmd->op = crm_element_value_copy(msg, F_STONITH_OPERATION); cmd->action = strdup(action); cmd->victim = crm_element_value_copy(op, F_STONITH_TARGET); cmd->mode = crm_element_value_copy(op, F_STONITH_MODE); cmd->device = crm_element_value_copy(op, F_STONITH_DEVICE); CRM_CHECK(cmd->op != NULL, crm_log_xml_warn(msg, "NoOp"); free_async_command(cmd); return NULL); CRM_CHECK(cmd->client != NULL, crm_log_xml_warn(msg, "NoClient")); + cmd->done_cb = st_child_done; cmd_list = g_list_append(cmd_list, cmd); return cmd; } static int stonith_manual_ack(xmlNode *msg, remote_fencing_op_t *op) { async_command_t *cmd = create_async_command(msg); xmlNode *dev = get_xpath_object("//@"F_STONITH_TARGET, msg, LOG_ERR); if(cmd == NULL) { return -EINVAL; } cmd->device = strdup("manual_ack"); cmd->remote_op_id = strdup(op->id); crm_notice("Injecting manual confirmation that %s is safely off/down", crm_element_value(dev, F_STONITH_TARGET)); - st_child_done(0, 0, NULL, cmd); + cmd->done_cb(0, 0, NULL, cmd); return pcmk_ok; } static gboolean stonith_device_execute(stonith_device_t *device) { int rc = 0; int exec_rc = 0; async_command_t *cmd = NULL; stonith_action_t *action = NULL; CRM_CHECK(device != NULL, return FALSE); if(device->active_pid) { crm_trace("%s is still active with pid %u", device->id, device->active_pid); return TRUE; } if(device->pending_ops) { GList *first = device->pending_ops; device->pending_ops = g_list_remove_link(device->pending_ops, first); cmd = first->data; g_list_free_1(first); } if(cmd == NULL) { crm_trace("Nothing further to do for %s", device->id); return TRUE; } action = stonith_action_create(device->agent, cmd->action, cmd->victim, cmd->timeout, device->params, device->aliases); - exec_rc = stonith_action_execute_async(action, (void *) cmd, st_child_done); + /* for async exec, exec_rc is pid if positive and error code if negative/zero */ + exec_rc = stonith_action_execute_async(action, (void *) cmd, cmd->done_cb); if(exec_rc > 0) { crm_debug("Operation %s%s%s on %s now running with pid=%d, timeout=%dms", cmd->action, cmd->victim?" for node ":"", cmd->victim?cmd->victim:"", device->id, exec_rc, cmd->timeout); device->active_pid = exec_rc; } else { crm_warn("Operation %s%s%s on %s failed (%d/%d)", cmd->action, cmd->victim?" for node ":"", cmd->victim?cmd->victim:"", device->id, exec_rc, rc); - st_child_done(0, rc<0?rc:exec_rc, NULL, cmd); + cmd->done_cb(0, rc<0?rc:exec_rc, NULL, cmd); } return TRUE; } static gboolean stonith_device_dispatch(gpointer user_data) { return stonith_device_execute(user_data); } static void schedule_stonith_command(async_command_t *cmd, stonith_device_t *device) { CRM_CHECK(cmd != NULL, return); CRM_CHECK(device != NULL, return); if (cmd->device) { free(cmd->device); } cmd->device = strdup(device->id); cmd->timeout = get_action_timeout(device, cmd->action, cmd->default_timeout); if (cmd->remote_op_id) { - crm_debug("Scheduling %s on %s for remote peer %s with op id (%s) (timeout=%dms)", + crm_debug("Scheduling %s on %s for remote peer %s with op id (%s) (timeout=%ds)", cmd->action, device->id, cmd->origin, cmd->remote_op_id, cmd->timeout); } else { - crm_debug("Scheduling %s on %s for %s (timeout=%dms)", + crm_debug("Scheduling %s on %s for %s (timeout=%ds)", cmd->action, device->id, cmd->client, cmd->timeout); } device->pending_ops = g_list_append(device->pending_ops, cmd); mainloop_set_trigger(device->work); } void free_device(gpointer data) { GListPtr gIter = NULL; stonith_device_t *device = data; g_hash_table_destroy(device->params); g_hash_table_destroy(device->aliases); for(gIter = device->pending_ops; gIter != NULL; gIter = gIter->next) { async_command_t *cmd = gIter->data; crm_warn("Removal of device '%s' purged operation %s", device->id, cmd->action); - st_child_done(0, -ENODEV, NULL, cmd); + cmd->done_cb(0, -ENODEV, NULL, cmd); free_async_command(cmd); } g_list_free(device->pending_ops); g_list_free_full(device->targets, free); free(device->namespace); free(device->on_target_actions); free(device->agent); free(device->id); free(device); } static GHashTable *build_port_aliases(const char *hostmap, GListPtr *targets) { char *name = NULL; int last = 0, lpc = 0, max = 0, added = 0; GHashTable *aliases = g_hash_table_new_full(crm_str_hash, g_str_equal, g_hash_destroy_str, g_hash_destroy_str); if(hostmap == NULL) { return aliases; } max = strlen(hostmap); for(; lpc <= max; lpc++) { switch(hostmap[lpc]) { /* Assignment chars */ case '=': case ':': if(lpc > last) { free(name); name = calloc(1, 1 + lpc - last); memcpy(name, hostmap + last, lpc - last); } last = lpc + 1; break; /* Delimeter chars */ /* case ',': Potentially used to specify multiple ports */ case 0: case ';': case ' ': case '\t': if(name) { char *value = NULL; value = calloc(1, 1 + lpc - last); memcpy(value, hostmap + last, lpc - last); crm_debug("Adding alias '%s'='%s'", name, value); g_hash_table_replace(aliases, name, value); if(targets) { *targets = g_list_append(*targets, strdup(value)); } value=NULL; name=NULL; added++; } else if(lpc > last) { crm_debug("Parse error at offset %d near '%s'", lpc-last, hostmap+last); } last = lpc + 1; break; } if(hostmap[lpc] == 0) { break; } } if(added == 0) { crm_info("No host mappings detected in '%s'", hostmap); } free(name); return aliases; } static void parse_host_line(const char *line, GListPtr *output) { int lpc = 0; int max = 0; int last = 0; if(line) { max = strlen(line); } else { return; } /* Check for any complaints about additional parameters that the device doesn't understand */ if(strstr(line, "invalid") || strstr(line, "variable")) { crm_debug("Skipping: %s", line); return; } crm_trace("Processing: %s", line); /* Skip initial whitespace */ for(lpc = 0; lpc <= max && isspace(line[lpc]); lpc++) { last = lpc+1; } /* Now the actual content */ for(lpc = 0; lpc <= max; lpc++) { gboolean a_space = isspace(line[lpc]); if(a_space && lpc < max && isspace(line[lpc+1])) { /* fast-forward to the end of the spaces */ } else if(a_space || line[lpc] == ',' || line[lpc] == 0) { int rc = 1; char *entry = NULL; if(lpc != last) { entry = calloc(1, 1 + lpc - last); rc = sscanf(line+last, "%[a-zA-Z0-9_-.]", entry); } if(entry == NULL) { /* Skip */ } else if(rc != 1) { crm_warn("Could not parse (%d %d): %s", last, lpc, line+last); } else if(safe_str_neq(entry, "on") && safe_str_neq(entry, "off")) { crm_trace("Adding '%s'", entry); *output = g_list_append(*output, entry); entry = NULL; } free(entry); last = lpc + 1; } } } static GListPtr parse_host_list(const char *hosts) { int lpc = 0; int max = 0; int last = 0; GListPtr output = NULL; if(hosts == NULL) { return output; } max = strlen(hosts); for(lpc = 0; lpc <= max; lpc++) { if(hosts[lpc] == '\n' || hosts[lpc] == 0) { char *line = NULL; line = calloc(1, 2 + lpc - last); snprintf(line, 1 + lpc - last, "%s", hosts+last); parse_host_line(line, &output); free(line); last = lpc + 1; } } return output; } static stonith_device_t *build_device_from_xml(xmlNode *msg) { xmlNode *dev = get_xpath_object("//"F_STONITH_DEVICE, msg, LOG_ERR); stonith_device_t *device = NULL; device = calloc(1, sizeof(stonith_device_t)); device->id = crm_element_value_copy(dev, XML_ATTR_ID); device->agent = crm_element_value_copy(dev, "agent"); device->namespace = crm_element_value_copy(dev, "namespace"); device->params = xml2list(dev); device->work = mainloop_add_trigger(G_PRIORITY_HIGH, stonith_device_dispatch, device); /* TODO: Hook up priority */ return device; } static const char * target_list_type(stonith_device_t *dev) { const char *check_type = NULL; check_type = g_hash_table_lookup(dev->params, STONITH_ATTR_HOSTCHECK); if(check_type == NULL) { if(g_hash_table_lookup(dev->params, STONITH_ATTR_HOSTLIST)) { check_type = "static-list"; } else if(g_hash_table_lookup(dev->params, STONITH_ATTR_HOSTMAP)) { check_type = "static-list"; } else { check_type = "dynamic-list"; } } - return check_type; + return check_type; } static void -update_dynamic_list(stonith_device_t *dev) +schedule_internal_command(stonith_device_t *device, + const char *action, + const char *victim, + int timeout, + void *internal_user_data, + void (*done_cb)(GPid pid, int rc, const char *output, gpointer user_data)) { - time_t now = time(NULL); + async_command_t *cmd = NULL; + + cmd = calloc(1, sizeof(async_command_t)); + + cmd->id = -1; + cmd->default_timeout = timeout ? timeout : 60; + cmd->timeout = cmd->default_timeout; + cmd->action = strdup(action); + cmd->victim = victim ? strdup(victim) : NULL; + cmd->device = strdup(device->id); + cmd->origin = strdup("st_internal_cmd"); + cmd->client = strdup("st_internal_client"); + cmd->client_name = strdup("st_internal_client_name"); + + cmd->internal_user_data = internal_user_data; + cmd->done_cb = done_cb; + + schedule_stonith_command(cmd, device); +} + +static gboolean string_in_list(GListPtr list, const char *item) +{ + int lpc = 0; + int max = g_list_length(list); + for(lpc = 0; lpc < max; lpc ++) { + const char *value = g_list_nth_data(list, lpc); + if(safe_str_eq(item, value)) { + return TRUE; + } + } + return FALSE; +} + +static void +status_search_cb(GPid pid, int rc, const char *output, gpointer user_data) +{ + async_command_t *cmd = user_data; + struct device_search_s *search = cmd->internal_user_data; + stonith_device_t *dev = cmd->device ? + g_hash_table_lookup(device_list, cmd->device) : NULL; + gboolean can = FALSE; + + if (!dev) { + search_devices_record_result(search, NULL, FALSE); + return; + } + + dev->active_pid = 0; + mainloop_set_trigger(dev->work); + + if (rc != 0) { + crm_err("Could not invoke %s: rc=%d", dev->id, rc); + + } else if(rc == 1 /* unkown */) { + crm_trace("Host %s is not known by %s", search->host, dev->id); + + } else if(rc == 0 /* active */ || rc == 2 /* inactive */) { + can = TRUE; + + } else { + crm_notice("Unkown result when testing if %s can fence %s: rc=%d", dev->id, search->host, rc); + } + search_devices_record_result(search, dev->id, can); +} + +static void +dynamic_list_search_cb(GPid pid, int rc, const char *output, gpointer user_data) +{ + async_command_t *cmd = user_data; + struct device_search_s *search = cmd->internal_user_data; + stonith_device_t *dev = cmd->device ? + g_hash_table_lookup(device_list, cmd->device) : NULL; + gboolean can_fence = FALSE; /* Host/alias must be in the list output to be eligable to be fenced * * Will cause problems if down'd nodes aren't listed or (for virtual nodes) * if the guest is still listed despite being moved to another machine */ + if (!dev) { + search_devices_record_result(search, NULL, FALSE); + return; + } - if(dev->targets_age < 0) { - crm_trace("Port list queries disabled for %s", dev->id); - - } else if(dev->targets == NULL || dev->targets_age + 60 < now) { - stonith_action_t *action = NULL; - char *output = NULL; - int rc = pcmk_ok; - int exec_rc = pcmk_ok; + dev->active_pid = 0; + mainloop_set_trigger(dev->work); - if(dev->active_pid != 0) { - crm_notice("Port list query can not execute because device is busy, using cache: %s", - dev->targets ? "YES" : "NO"); - return; - } + /* If we successfully got the targets earlier, don't disable. */ + if (rc != 0 && !dev->targets) { + crm_notice("Disabling port list queries for %s (%d): %s", + dev->id, rc, output); + /* Fall back to status */ + g_hash_table_replace(dev->params, strdup(STONITH_ATTR_HOSTCHECK), strdup("status")); - action = stonith_action_create(dev->agent, "list", NULL, 10, dev->params, NULL); - exec_rc = stonith_action_execute(action, &rc, &output); - - if(rc != 0 && dev->active_pid == 0) { - /* This device probably only supports a single - * connection, which appears to already be in use, - * likely involved in a montior or (less likely) - * metadata operation. - * - * Avoid disabling port list queries in the hope that - * the op would succeed next time - */ - crm_info("Couldn't query ports for %s. Call failed with rc=%d and active_pid=%d: %s", - dev->agent, rc, dev->active_pid, output); - - } else if(exec_rc < 0 || rc != 0) { - /* If we successfully got the targets earlier, don't disable. */ - if (dev->targets) { - return; - } - crm_notice("Disabling port list queries for %s (%d/%d): %s", - dev->id, exec_rc, rc, output); - dev->targets_age = -1; + g_list_free_full(dev->targets, free); + dev->targets = NULL; + } else if (!rc) { + crm_info("Refreshing port list for %s", dev->id); + g_list_free_full(dev->targets, free); + dev->targets = parse_host_list(output); + dev->targets_age = time(NULL); + } - /* Fall back to status */ - g_hash_table_replace(dev->params, strdup(STONITH_ATTR_HOSTCHECK), strdup("status")); + if (dev->targets) { + const char *alias = g_hash_table_lookup(dev->aliases, search->host); - g_list_free_full(dev->targets, free); - dev->targets = NULL; - } else { - crm_info("Refreshing port list for %s", dev->id); - g_list_free_full(dev->targets, free); - dev->targets = parse_host_list(output); - dev->targets_age = now; + if (!alias) { + alias = search->host; + } + if (string_in_list(dev->targets, alias)) { + can_fence = TRUE; } - - free(output); } + search_devices_record_result(search, dev->id, can_fence); } /*! * \internal * \brief Checks to see if an identical device already exists in the device_list */ static stonith_device_t * device_has_duplicate(stonith_device_t *device) { char *key = NULL; char *value = NULL; GHashTableIter gIter; stonith_device_t *dup = g_hash_table_lookup(device_list, device->id); if (!dup || safe_str_neq(dup->agent, device->agent)) { return NULL; } g_hash_table_iter_init(&gIter, device->params); while (g_hash_table_iter_next(&gIter, (void **) &key, (void **) &value)) { char *other_value = g_hash_table_lookup(dup->params, key); if (!other_value || safe_str_neq(other_value, value)) { return NULL; } } return dup; } static char * get_on_target_actions(const char *agent) { stonith_t *st = stonith_api_new(); char *actions = NULL; char *buffer = NULL; xmlNode *xml = NULL; xmlXPathObjectPtr xpath = NULL; int rc = 0, max = 0, lpc = 0; rc = st->cmds->metadata(st, st_opt_sync_call, agent, NULL, &buffer, 10); if (rc || !buffer) { goto on_target_actions_cleanup; } xml = string2xml(buffer); xpath = xpath_search(xml, "//action"); if (!xpath || !xpath->nodesetval) { goto on_target_actions_cleanup; } max = xpath->nodesetval->nodeNr; actions = calloc(1, 512); for (lpc = 0; lpc < max; lpc++) { const char *on_target = NULL; const char *action = NULL; xmlNode *match = getXpathResult(xpath, lpc); CRM_CHECK(match != NULL, continue); on_target = crm_element_value(match, "on_target"); action = crm_element_value(match, "name"); if (action && safe_str_eq(on_target, "true")) { if (strlen(actions)) { g_strlcat(actions, " ", 512); } g_strlcat(actions, action, 512); } } if (!strlen(actions)) { free(actions); actions = NULL; } on_target_actions_cleanup: free(buffer); stonith_api_delete(st); free_xml(xml); return actions; } int stonith_device_register(xmlNode *msg, const char **desc, gboolean from_cib) { const char *value = NULL; stonith_device_t *dup = NULL; stonith_device_t *device = build_device_from_xml(msg); value = g_hash_table_lookup(device->params, STONITH_ATTR_HOSTLIST); if(value) { device->targets = parse_host_list(value); } value = g_hash_table_lookup(device->params, STONITH_ATTR_HOSTMAP); device->aliases = build_port_aliases(value, &(device->targets)); - value = target_list_type(device); - if (safe_str_eq(value, "dynamic-list")) { - /* set the dynamic list during the register to guarantee we have - * targets cached */ - update_dynamic_list(device); - } - if ((dup = device_has_duplicate(device))) { crm_notice("Device '%s' already existed in device list (%d active devices)", device->id, g_hash_table_size(device_list)); free_device(device); device = dup; } else { stonith_device_t *old = g_hash_table_lookup(device_list, device->id); if (from_cib && old && old->api_registered) { /* If the cib is writing over an entry that is shared with a stonith client, * copy any pending ops that currently exist on the old entry to the new one. * Otherwise the pending ops will be reported as failures */ device->pending_ops = old->pending_ops; device->api_registered = TRUE; old->pending_ops = NULL; if (device->pending_ops) { mainloop_set_trigger(device->work); } } g_hash_table_replace(device_list, device->id, device); crm_notice("Added '%s' to the device list (%d active devices)", device->id, g_hash_table_size(device_list)); if ((device->on_target_actions = get_on_target_actions(device->agent))) { crm_info("The fencing device '%s' requires actions (%s) to be executed on the target node", device->id, device->on_target_actions); } } if(desc) { *desc = device->id; } if (from_cib) { device->cib_registered = TRUE; } else { device->api_registered = TRUE; } return pcmk_ok; } int stonith_device_remove(const char *id, gboolean from_cib) { stonith_device_t *device = g_hash_table_lookup(device_list, id); if (!device) { crm_info("Device '%s' not found (%d active devices)", id, g_hash_table_size(device_list)); return pcmk_ok; } if (from_cib) { device->cib_registered = FALSE; } else { device->verified = FALSE; device->api_registered = FALSE; } if (!device->cib_registered && !device->api_registered) { g_hash_table_remove(device_list, id); crm_info("Removed '%s' from the device list (%d active devices)", id, g_hash_table_size(device_list)); } return pcmk_ok; } static int count_active_levels(stonith_topology_t *tp) { int lpc = 0; int count = 0; for(lpc = 0; lpc < ST_LEVEL_MAX; lpc++) { if(tp->levels[lpc] != NULL) { count++; } } return count; } void free_topology_entry(gpointer data) { stonith_topology_t *tp = data; int lpc = 0; for(lpc = 0; lpc < ST_LEVEL_MAX; lpc++) { if(tp->levels[lpc] != NULL) { g_list_free_full(tp->levels[lpc], free); } } free(tp->node); free(tp); } int stonith_level_register(xmlNode *msg, char **desc) { int id = 0; int rc = pcmk_ok; xmlNode *child = NULL; xmlNode *level = get_xpath_object("//"F_STONITH_LEVEL, msg, LOG_ERR); const char *node = crm_element_value(level, F_STONITH_TARGET); stonith_topology_t *tp = g_hash_table_lookup(topology, node); crm_element_value_int(level, XML_ATTR_ID, &id); if(desc) { *desc = g_strdup_printf("%s[%d]", node, id); } if(id <= 0 || id >= ST_LEVEL_MAX) { return -EINVAL; } if(tp == NULL) { tp = calloc(1, sizeof(stonith_topology_t)); tp->node = strdup(node); g_hash_table_replace(topology, tp->node, tp); crm_trace("Added %s to the topology (%d active entries)", node, g_hash_table_size(topology)); } if(tp->levels[id] != NULL) { crm_info("Adding to the existing %s[%d] topology entry (%d active entries)", node, id, count_active_levels(tp)); } for (child = __xml_first_child(level); child != NULL; child = __xml_next(child)) { const char *device = ID(child); crm_trace("Adding device '%s' for %s (%d)", device, node, id); tp->levels[id] = g_list_append(tp->levels[id], strdup(device)); } crm_info("Node %s has %d active fencing levels", node, count_active_levels(tp)); return rc; } int stonith_level_remove(xmlNode *msg, char **desc) { int id = 0; xmlNode *level = get_xpath_object("//"F_STONITH_LEVEL, msg, LOG_ERR); const char *node = crm_element_value(level, F_STONITH_TARGET); stonith_topology_t *tp = g_hash_table_lookup(topology, node); if(desc) { *desc = g_strdup_printf("%s[%d]", node, id); } crm_element_value_int(level, XML_ATTR_ID, &id); if(tp == NULL) { crm_info("Node %s not found (%d active entries)", node, g_hash_table_size(topology)); return pcmk_ok; } else if(id < 0 || id >= ST_LEVEL_MAX) { return -EINVAL; } if(id == 0 && g_hash_table_remove(topology, node)) { crm_info("Removed all %s related entries from the topology (%d active entries)", node, g_hash_table_size(topology)); } else if(id > 0 && tp->levels[id] != NULL) { g_list_free_full(tp->levels[id], free); tp->levels[id] = NULL; crm_info("Removed entry '%d' from %s's topology (%d active entries remaining)", id, node, count_active_levels(tp)); } return pcmk_ok; } -static gboolean string_in_list(GListPtr list, const char *item) -{ - int lpc = 0; - int max = g_list_length(list); - for(lpc = 0; lpc < max; lpc ++) { - const char *value = g_list_nth_data(list, lpc); - if(safe_str_eq(item, value)) { - return TRUE; - } - } - return FALSE; -} - static int stonith_device_action(xmlNode *msg, char **output) { int rc = pcmk_ok; xmlNode *dev = get_xpath_object("//"F_STONITH_DEVICE, msg, LOG_ERR); const char *id = crm_element_value(dev, F_STONITH_DEVICE); async_command_t *cmd = NULL; stonith_device_t *device = NULL; if(id) { crm_trace("Looking for '%s'", id); device = g_hash_table_lookup(device_list, id); } if(device) { cmd = create_async_command(msg); if(cmd == NULL) { free_device(device); return -EPROTO; } schedule_stonith_command(cmd, device); rc = -EINPROGRESS; } else { crm_info("Device %s not found", id?id:""); rc = -ENODEV; } return rc; } -static gboolean can_fence_host_with_device(stonith_device_t *dev, const char *host, const char *action) +static void +search_devices_record_result(struct device_search_s *search, const char *device, gboolean can_fence) +{ + search->replies_received++; + + if (can_fence) { + search->capable = g_list_append(search->capable, strdup(device)); + } + + if (search->replies_needed == search->replies_received) { + + crm_debug("Finished Search. %d devices can perform action (%s) on node %s", + g_list_length(search->capable), + search->action ? search->action : "", + search->host ? search->host : ""); + + search->callback(search->capable, search->user_data); + free(search->host); + free(search->action); + free(search); + } +} + +static void +can_fence_host_with_device(stonith_device_t *dev, struct device_search_s *search) { gboolean can = FALSE; - const char *alias = host; const char *check_type = NULL; + const char *host = search->host; + const char *alias = host; if(dev == NULL) { - return FALSE; - + goto search_report_results; } else if(host == NULL) { - return TRUE; + can = TRUE; + goto search_report_results; } if (dev->on_target_actions && - action && - strstr(dev->on_target_actions, action) && + search->action && + strstr(dev->on_target_actions, search->action) && safe_str_neq(host, stonith_our_uname)) { /* this device can only execute this action on the target node */ - return FALSE; + goto search_report_results; } if(g_hash_table_lookup(dev->aliases, host)) { alias = g_hash_table_lookup(dev->aliases, host); } check_type = target_list_type(dev); if(safe_str_eq(check_type, "none")) { can = TRUE; } else if(safe_str_eq(check_type, "static-list")) { /* Presence in the hostmap is sufficient * Only use if all hosts on which the device can be active can always fence all listed hosts */ if(string_in_list(dev->targets, host)) { can = TRUE; } else if(g_hash_table_lookup(dev->params, STONITH_ATTR_HOSTMAP) && g_hash_table_lookup(dev->aliases, host)) { can = TRUE; } } else if(safe_str_eq(check_type, "dynamic-list")) { - update_dynamic_list(dev); - - if(string_in_list(dev->targets, alias)) { - can = TRUE; + time_t now = time(NULL); + if (dev->targets == NULL || dev->targets_age + 60 < now) { + schedule_internal_command(dev, + "list", + NULL, + search->per_device_timeout, + search, + dynamic_list_search_cb); + + /* we'll respond to this search request async in the cb */ + return; } - } else if(safe_str_eq(check_type, "status")) { - int rc = 0; - int exec_rc = 0; - stonith_action_t *action = NULL; - /* Run the status operation for the device/target combination - * Will cause problems if the device doesn't return 2 for down'd nodes or - * (for virtual nodes) if the device doesn't return 1 for guests that - * have been moved to another host - */ - - action = stonith_action_create(dev->agent, "status", host, 5, dev->params, dev->aliases); - exec_rc = stonith_action_execute(action, &rc, NULL); - - if(exec_rc != 0) { - crm_err("Could not invoke %s: rc=%d", dev->id, exec_rc); - - } else if(rc == 1 /* unkown */) { - crm_trace("Host %s is not known by %s", host, dev->id); - - } else if(rc == 0 /* active */ || rc == 2 /* inactive */) { + if (string_in_list(dev->targets, alias)) { can = TRUE; - - } else { - crm_notice("Unkown result when testing if %s can fence %s: rc=%d", dev->id, host, rc); } + } else if(safe_str_eq(check_type, "status")) { + schedule_internal_command(dev, + "status", + search->host, + search->per_device_timeout, + search, + status_search_cb); + /* we'll respond to this search request async in the cb */ + return; } else { crm_err("Unknown check type: %s", check_type); } if(safe_str_eq(host, alias)) { crm_info("%s can%s fence %s: %s", dev->id, can?"":" not", host, check_type); } else { crm_info("%s can%s fence %s (aka. '%s'): %s", dev->id, can?"":" not", host, alias, check_type); } - return can; -} - -struct device_search_s -{ - const char *host; - const char *action; - GListPtr capable; -}; +search_report_results: + search_devices_record_result(search, dev->id, can); +} -static void search_devices( - gpointer key, gpointer value, gpointer user_data) +static void +search_devices(gpointer key, gpointer value, gpointer user_data) { stonith_device_t *dev = value; struct device_search_s *search = user_data; - if(can_fence_host_with_device(dev, search->host, search->action)) { - search->capable = g_list_append(search->capable, value); - } + + can_fence_host_with_device(dev, search); } -static int stonith_query(xmlNode *msg, xmlNode **list) +#define DEFAULT_QUERY_TIMEOUT 20 +static void +get_capable_devices(const char *host, const char *action, int timeout, void *user_data, void (*callback)(GList *devices, void *user_data)) { - struct device_search_s search; - int available_devices = 0; - const char *action = NULL; - xmlNode *dev = get_xpath_object("//@"F_STONITH_ACTION, msg, LOG_DEBUG_3); + struct device_search_s *search; + int per_device_timeout = DEFAULT_QUERY_TIMEOUT; + int devices_needing_async_query = 0; + char *key = NULL; + const char *check_type = NULL; + GHashTableIter gIter; + stonith_device_t *device = NULL; - search.host = NULL; - search.capable = NULL; + if (!g_hash_table_size(device_list)) { + callback(NULL, user_data); + return; + } - if(dev) { - const char *device = crm_element_value(dev, F_STONITH_DEVICE); - search.host = crm_element_value(dev, F_STONITH_TARGET); - search.action = crm_element_value(dev, F_STONITH_ACTION); - if(device && safe_str_eq(device, "manual_ack")) { - /* No query necessary */ - if(list) { - *list = NULL; - } - return pcmk_ok; + search = calloc(1, sizeof(struct device_search_s)); + if (!search) { + callback(NULL, user_data); + return; + } + + g_hash_table_iter_init(&gIter, device_list); + while (g_hash_table_iter_next(&gIter, (void **) &key, (void **) &device)) { + check_type = target_list_type(device); + if (safe_str_eq(check_type, "status") || safe_str_eq(check_type, "dynamic-list")) { + devices_needing_async_query++; } + } - action = search.action; + /* If we have devices that require an async event in order to know what + * nodes they can fence, we have to give the events a timeout. The total + * query timeout is divided among those events. */ + if (devices_needing_async_query) { + per_device_timeout = timeout / devices_needing_async_query; + if (!per_device_timeout) { + crm_err("stonith-timeout value %d is too low, raise the duration to %d seconds", + DEFAULT_QUERY_TIMEOUT * per_device_timeout); + per_device_timeout = DEFAULT_QUERY_TIMEOUT; + } else if (per_device_timeout < DEFAULT_QUERY_TIMEOUT) { + crm_warn("stonith-timeout duration is low for the current configuration. Consider raising it to %d seconds", + DEFAULT_QUERY_TIMEOUT * per_device_timeout); + } } - crm_log_xml_debug(msg, "Query"); + search->host = host ? strdup(host) : NULL; + search->action = action ? strdup(action) : NULL; + search->per_device_timeout = per_device_timeout; + /* We are guaranteed this many replies. Even if a device gets + * unregistered some how during the async search, we will get + * the correct number of replies. */ + search->replies_needed = g_hash_table_size(device_list); + search->callback = callback; + search->user_data = user_data; + /* kick off the search */ + + crm_debug("Searching through %d devices to see what is capable of action (%s) for target %s", + search->replies_needed, + search->action ? search->action : "", + search->host ? search->host : ""); + g_hash_table_foreach(device_list, search_devices, search); +} + +struct st_query_data { + xmlNode *reply; + char *remote_peer; + char *client_id; + char *target; + char *action; + int call_options; +}; - g_hash_table_foreach(device_list, search_devices, &search); - available_devices = g_list_length(search.capable); - if(search.host) { +static void +stonith_query_capable_device_cb(GList *devices, void *user_data) +{ + struct st_query_data *query = user_data; + int available_devices = 0; + xmlNode *dev = NULL; + xmlNode *list = NULL; + GListPtr lpc = NULL; + + available_devices = g_list_length(devices); + if (query->target) { crm_debug("Found %d matching devices for '%s'", - available_devices, search.host); + available_devices, query->target); } else { crm_debug("%d devices installed", available_devices); } /* Pack the results into data */ - if(list) { - GListPtr lpc = NULL; - *list = create_xml_node(NULL, __FUNCTION__); - crm_xml_add(*list, F_STONITH_TARGET, search.host); - crm_xml_add_int(*list, "st-available-devices", available_devices); - for(lpc = search.capable; lpc != NULL; lpc = lpc->next) { - stonith_device_t *device = (stonith_device_t*)lpc->data; - int action_specific_timeout = get_action_timeout(device, action, 0); - - dev = create_xml_node(*list, F_STONITH_DEVICE); - crm_xml_add(dev, XML_ATTR_ID, device->id); - crm_xml_add(dev, "namespace", device->namespace); - crm_xml_add(dev, "agent", device->agent); - crm_xml_add_int(dev, F_STONITH_DEVICE_VERIFIED, device->verified); - if (action_specific_timeout) { - crm_xml_add_int(dev, F_STONITH_ACTION_TIMEOUT, action_specific_timeout); - } - if(search.host == NULL) { - xmlNode *attrs = create_xml_node(dev, XML_TAG_ATTRS); - g_hash_table_foreach(device->params, hash2field, attrs); - } + list = create_xml_node(NULL, __FUNCTION__); + crm_xml_add(list, F_STONITH_TARGET, query->target); + crm_xml_add_int(list, "st-available-devices", available_devices); + for(lpc = devices; lpc != NULL; lpc = lpc->next) { + stonith_device_t *device = g_hash_table_lookup(device_list, lpc->data); + int action_specific_timeout; + + if (!device) { + /* It is possible the device got unregistered while + * determining who can fence the target */ + continue; + } + + action_specific_timeout = get_action_timeout(device, query->action, 0); + dev = create_xml_node(list, F_STONITH_DEVICE); + crm_xml_add(dev, XML_ATTR_ID, device->id); + crm_xml_add(dev, "namespace", device->namespace); + crm_xml_add(dev, "agent", device->agent); + crm_xml_add_int(dev, F_STONITH_DEVICE_VERIFIED, device->verified); + if (action_specific_timeout) { + crm_xml_add_int(dev, F_STONITH_ACTION_TIMEOUT, action_specific_timeout); + } + if (query->target == NULL) { + xmlNode *attrs = create_xml_node(dev, XML_TAG_ATTRS); + g_hash_table_foreach(device->params, hash2field, attrs); + } + } + + if (list != NULL) { + crm_trace("Attaching query list output"); + add_message_xml(query->reply, F_STONITH_CALLDATA, list); + } + stonith_send_reply(query->reply, query->call_options, query->remote_peer, query->client_id); + + free_xml(query->reply); + free(query->remote_peer); + free(query->client_id); + free(query->target); + free(query->action); + free(query); + free_xml(list); + g_list_free_full(devices, free); +} + +static void +stonith_query(xmlNode *msg, const char *remote_peer, const char *client_id, int call_options) +{ + struct st_query_data *query = NULL; + const char *action = NULL; + const char *target = NULL; + int timeout = 0; + xmlNode *dev = get_xpath_object("//@"F_STONITH_ACTION, msg, LOG_DEBUG_3); + + if(dev) { + const char *device = crm_element_value(dev, F_STONITH_DEVICE); + target = crm_element_value(dev, F_STONITH_TARGET); + action = crm_element_value(dev, F_STONITH_ACTION); + crm_element_value_int(dev, F_STONITH_TIMEOUT, &timeout); + if(device && safe_str_eq(device, "manual_ack")) { + /* No query or reply necessary */ + return; } } - g_list_free(search.capable); + crm_log_xml_debug(msg, "Query"); + query = calloc(1, sizeof(struct st_query_data)); + + query->reply = stonith_construct_reply(msg, NULL, NULL, pcmk_ok); + query->remote_peer = remote_peer ? strdup(remote_peer) : NULL; + query->client_id = client_id ? strdup(client_id) : NULL; + query->target = target ? strdup(target) : NULL; + query->action = action ? strdup(action) : NULL; + query->call_options = call_options; - return available_devices; + get_capable_devices(target, action, timeout, query, stonith_query_capable_device_cb); } #define ST_LOG_OUTPUT_MAX 512 static void log_operation(async_command_t *cmd, int rc, int pid, const char *next, const char *output) { if(rc == 0) { next = NULL; } if(cmd->victim != NULL) { do_crm_log(rc==0?LOG_NOTICE:LOG_ERR, "Operation '%s' [%d] (call %d from %s) for host '%s' with device '%s' returned: %d (%s)%s%s", cmd->action, pid, cmd->id, cmd->client_name, cmd->victim, cmd->device, rc, pcmk_strerror(rc), next?". Trying: ":"", next?next:""); } else { do_crm_log_unlikely(rc==0?LOG_DEBUG:LOG_NOTICE, "Operation '%s' [%d] for device '%s' returned: %d (%s)%s%s", cmd->action, pid, cmd->device, rc, pcmk_strerror(rc), next?". Trying: ":"", next?next:""); } if(output) { /* Logging the whole string confuses syslog when the string is xml */ char *local_copy = strdup(output); int lpc = 0, last = 0, more = strlen(local_copy); /* Give the log output some reasonable boundary */ more = more > ST_LOG_OUTPUT_MAX ? ST_LOG_OUTPUT_MAX : more; for(lpc = 0; lpc < more; lpc++) { if(local_copy[lpc] == '\n' || local_copy[lpc] == 0) { local_copy[lpc] = 0; do_crm_log(rc==0?LOG_INFO:LOG_WARNING, "%s: %s", cmd->device, local_copy+last); last = lpc+1; } } crm_debug("%s: %s (total %d bytes)", cmd->device, local_copy+last, more); free(local_copy); } } static void stonith_send_async_reply(async_command_t *cmd, const char *output, int rc, GPid pid) { xmlNode *reply = NULL; gboolean bcast = FALSE; reply = stonith_construct_async_reply(cmd, output, NULL, rc); if(safe_str_eq(cmd->action, "metadata")) { /* Too verbose to log */ crm_trace("Metadata query for %s", cmd->device); output = NULL; } else if(crm_str_eq(cmd->action, "monitor", TRUE) || crm_str_eq(cmd->action, "list", TRUE) || crm_str_eq(cmd->action, "status", TRUE)) { crm_trace("Never broadcast %s replies", cmd->action); } else if(!stand_alone && safe_str_eq(cmd->origin, cmd->victim)) { crm_trace("Broadcast %s reply for %s", cmd->action, cmd->victim); crm_xml_add(reply, F_SUBTYPE, "broadcast"); bcast = TRUE; } log_operation(cmd, rc, pid, NULL, output); crm_log_xml_trace(reply, "Reply"); if(bcast) { crm_xml_add(reply, F_STONITH_OPERATION, T_STONITH_NOTIFY); send_cluster_message(NULL, crm_msg_stonith_ng, reply, FALSE); } else if(cmd->origin) { crm_trace("Directed reply to %s", cmd->origin); send_cluster_message(crm_get_peer(0, cmd->origin), crm_msg_stonith_ng, reply, FALSE); } else { crm_trace("Directed local %ssync reply to %s", (cmd->options & st_opt_sync_call)?"":"a-", cmd->client_name); do_local_reply(reply, cmd->client, cmd->options & st_opt_sync_call, FALSE); } if(stand_alone) { /* Do notification with a clean data object */ xmlNode *notify_data = create_xml_node(NULL, T_STONITH_NOTIFY_FENCE); crm_xml_add_int(notify_data, F_STONITH_RC, rc); crm_xml_add(notify_data, F_STONITH_TARGET, cmd->victim); crm_xml_add(notify_data, F_STONITH_OPERATION, cmd->op); crm_xml_add(notify_data, F_STONITH_DELEGATE, cmd->device); crm_xml_add(notify_data, F_STONITH_REMOTE_OP_ID, cmd->remote_op_id); crm_xml_add(notify_data, F_STONITH_ORIGIN, cmd->client); do_stonith_notify(0, T_STONITH_NOTIFY_FENCE, rc, notify_data); } free_xml(reply); } static void cancel_stonith_command(async_command_t *cmd) { stonith_device_t *device; CRM_CHECK(cmd != NULL, return); if (!cmd->device) { return; } device = g_hash_table_lookup(device_list, cmd->device); if (device) { crm_trace("Cancel scheduled %s on %s", cmd->action, device->id); device->pending_ops = g_list_remove(device->pending_ops, cmd); } } #define READ_MAX 500 static void st_child_done(GPid pid, int rc, const char *output, gpointer user_data) { stonith_device_t *device = NULL; async_command_t *cmd = user_data; GListPtr gIter = NULL; GListPtr gIterNext = NULL; CRM_CHECK(cmd != NULL, return); active_children--; /* The device is ready to do something else now */ device = g_hash_table_lookup(device_list, cmd->device); if(device) { device->active_pid = 0; if (rc == pcmk_ok && (safe_str_eq(cmd->action, "list") || safe_str_eq(cmd->action, "monitor") || safe_str_eq(cmd->action, "status"))) { device->verified = TRUE; } mainloop_set_trigger(device->work); } crm_trace("Operation %s on %s completed with rc=%d (%d remaining)", cmd->action, cmd->device, rc, g_list_length(cmd->device_next)); if(rc != 0 && cmd->device_next) { - stonith_device_t *dev = cmd->device_next->data; + stonith_device_t *dev = g_hash_table_lookup(device_list, cmd->device_next->data); - log_operation(cmd, rc, pid, dev->id, output); + if (dev) { + log_operation(cmd, rc, pid, dev->id, output); - cmd->device_next = cmd->device_next->next; - schedule_stonith_command(cmd, dev); - /* Prevent cmd from being freed */ - cmd = NULL; - goto done; + cmd->device_next = cmd->device_next->next; + schedule_stonith_command(cmd, dev); + /* Prevent cmd from being freed */ + cmd = NULL; + goto done; + } } if(rc > 0) { rc = -pcmk_err_generic; } stonith_send_async_reply(cmd, output, rc, pid); if(rc != 0) { goto done; } /* Check to see if any operations are scheduled to do the exact * same thing that just completed. If so, rather than * performing the same fencing operation twice, return the result * of this operation for all pending commands it matches. */ for (gIter = cmd_list; gIter != NULL; gIter = gIterNext) { async_command_t *cmd_other = gIter->data; gIterNext = gIter->next; if(cmd == cmd_other) { continue; } /* A pending scheduled command matches the command that just finished if. * 1. The client connections are different. * 2. The node victim is the same. * 3. The fencing action is the same. * 4. The device scheduled to execute the action is the same. */ if(safe_str_eq(cmd->client, cmd_other->client) || safe_str_neq(cmd->victim, cmd_other->victim) || safe_str_neq(cmd->action, cmd_other->action) || safe_str_neq(cmd->device, cmd_other->device)) { continue; } crm_notice("Merging stonith action %s for node %s originating from client %s with identical stonith request from client %s", cmd_other->action, cmd_other->victim, cmd_other->client_name, cmd->client_name); cmd_list = g_list_remove_link(cmd_list, gIter); stonith_send_async_reply(cmd_other, output, rc, pid); cancel_stonith_command(cmd_other); free_async_command(cmd_other); g_list_free_1(gIter); } done: free_async_command(cmd); } static gint sort_device_priority(gconstpointer a, gconstpointer b) { const stonith_device_t *dev_a = a; const stonith_device_t *dev_b = a; if(dev_a->priority > dev_b->priority) { return -1; } else if(dev_a->priority < dev_b->priority) { return 1; } return 0; } -static int stonith_fence(xmlNode *msg) +static void +stonith_fence_get_devices_cb(GList *devices, void *user_data) +{ + async_command_t *cmd = user_data; + stonith_device_t *device = NULL; + + crm_info("Found %d matching devices for '%s'", g_list_length(devices), cmd->victim); + + if (g_list_length(devices) > 0) { + /* Order based on priority */ + devices = g_list_sort(devices, sort_device_priority); + device = g_hash_table_lookup(device_list, devices->data); + + if (device) { + cmd->device_list = devices; + cmd->device_next = devices->next; + devices = NULL; /* list owned by cmd now */ + } + } + + /* we have a device, schedule it for fencing. */ + if (device) { + schedule_stonith_command(cmd, device); + /* in progress */ + return; + } + + /* no device found! */ + stonith_send_async_reply(cmd, NULL, -EHOSTUNREACH, 0); + + free_async_command(cmd); + g_list_free_full(devices, free); +} + +static int +stonith_fence(xmlNode *msg) { - int options = 0; const char *device_id = NULL; + int rc = -EHOSTUNREACH; stonith_device_t *device = NULL; async_command_t *cmd = create_async_command(msg); xmlNode *dev = get_xpath_object("//@"F_STONITH_TARGET, msg, LOG_ERR); if(cmd == NULL) { return -EPROTO; } device_id = crm_element_value(dev, F_STONITH_DEVICE); if(device_id) { device = g_hash_table_lookup(device_list, device_id); if(device == NULL) { crm_err("Requested device '%s' is not available", device_id); + } else { + schedule_stonith_command(cmd, device); + rc = -EINPROGRESS; } - } else { - struct device_search_s search; + const char *host = crm_element_value(dev, F_STONITH_TARGET); - search.capable = NULL; - search.host = crm_element_value(dev, F_STONITH_TARGET); - search.action = crm_element_value(dev, F_STONITH_ACTION); - - crm_element_value_int(msg, F_STONITH_CALLOPTS, &options); - if(options & st_opt_cs_nodeid) { - int nodeid = crm_atoi(search.host, NULL); + if(cmd->options & st_opt_cs_nodeid) { + int nodeid = crm_atoi(host, NULL); crm_node_t *node = crm_get_peer(nodeid, NULL); if(node) { - search.host = node->uname; + host = node->uname; } } - - g_hash_table_foreach(device_list, search_devices, &search); - crm_info("Found %d matching devices for '%s'", g_list_length(search.capable), search.host); - - if(g_list_length(search.capable) > 0) { - /* Order based on priority */ - search.capable = g_list_sort(search.capable, sort_device_priority); - - device = search.capable->data; - - if(g_list_length(search.capable) > 1) { - cmd->device_list = search.capable; - cmd->device_next = cmd->device_list->next; - } else { - g_list_free(search.capable); - } - } - } - - if(device) { - schedule_stonith_command(cmd, device); - return -EINPROGRESS; + get_capable_devices(host, cmd->action, cmd->default_timeout, cmd, stonith_fence_get_devices_cb); + rc = -EINPROGRESS; } - free_async_command(cmd); - return -EHOSTUNREACH; + return rc; } -xmlNode *stonith_construct_reply(xmlNode *request, char *output, xmlNode *data, int rc) +xmlNode *stonith_construct_reply(xmlNode *request, const char *output, xmlNode *data, int rc) { int lpc = 0; xmlNode *reply = NULL; const char *name = NULL; const char *value = NULL; const char *names[] = { F_STONITH_OPERATION, F_STONITH_CALLID, F_STONITH_CLIENTID, F_STONITH_CLIENTNAME, F_STONITH_REMOTE_OP_ID, F_STONITH_CALLOPTS }; crm_trace("Creating a basic reply"); reply = create_xml_node(NULL, T_STONITH_REPLY); crm_xml_add(reply, "st_origin", __FUNCTION__); crm_xml_add(reply, F_TYPE, T_STONITH_NG); crm_xml_add(reply, "st_output", output); crm_xml_add_int(reply, F_STONITH_RC, rc); CRM_CHECK(request != NULL, crm_warn("Can't create a sane reply"); return reply); for(lpc = 0; lpc < DIMOF(names); lpc++) { name = names[lpc]; value = crm_element_value(request, name); crm_xml_add(reply, name, value); } if(data != NULL) { crm_trace("Attaching reply output"); add_message_xml(reply, F_STONITH_CALLDATA, data); } return reply; } static xmlNode * stonith_construct_async_reply(async_command_t *cmd, const char *output, xmlNode *data, int rc) { xmlNode *reply = NULL; crm_trace("Creating a basic reply"); reply = create_xml_node(NULL, T_STONITH_REPLY); crm_xml_add(reply, "st_origin", __FUNCTION__); crm_xml_add(reply, F_TYPE, T_STONITH_NG); crm_xml_add(reply, F_STONITH_OPERATION, cmd->op); crm_xml_add(reply, F_STONITH_DEVICE, cmd->device); crm_xml_add(reply, F_STONITH_REMOTE_OP_ID, cmd->remote_op_id); crm_xml_add(reply, F_STONITH_CLIENTID, cmd->client); crm_xml_add(reply, F_STONITH_CLIENTNAME, cmd->client_name); crm_xml_add(reply, F_STONITH_TARGET, cmd->victim); crm_xml_add(reply, F_STONITH_ACTION, cmd->op); crm_xml_add(reply, F_STONITH_ORIGIN, cmd->origin); crm_xml_add_int(reply, F_STONITH_CALLID, cmd->id); crm_xml_add_int(reply, F_STONITH_CALLOPTS, cmd->options); crm_xml_add_int(reply, F_STONITH_RC, rc); crm_xml_add(reply, "st_output", output); if(data != NULL) { crm_info("Attaching reply output"); add_message_xml(reply, F_STONITH_CALLDATA, data); } return reply; } /*! * \internal * \brief Determine if we need to use an alternate node to * fence the target. If so return that node's uname * * \retval NULL, no alternate host * \retval uname, uname of alternate host to use */ static const char * check_alternate_host(const char *target) { const char *alternate_host = NULL; if(g_hash_table_lookup(topology, target) && safe_str_eq(target, stonith_our_uname)) { GHashTableIter gIter; crm_node_t *entry = NULL; int membership = crm_proc_plugin | crm_proc_heartbeat | crm_proc_cpg; g_hash_table_iter_init(&gIter, crm_peer_cache); while (g_hash_table_iter_next(&gIter, NULL, (void **)&entry)) { crm_trace("Checking for %s.%d != %s", entry->uname, entry->id, target); if(entry->uname && (entry->processes & membership) && safe_str_neq(entry->uname, target)) { alternate_host = entry->uname; break; } } if(alternate_host == NULL) { crm_err("No alternate host available to handle complex self fencing request"); g_hash_table_iter_init(&gIter, crm_peer_cache); while (g_hash_table_iter_next(&gIter, NULL, (void **)&entry)) { crm_notice("Peer[%d] %s", entry->id, entry->uname); } } } return alternate_host; } +static void +stonith_send_reply(xmlNode *reply, int call_options, const char *remote_peer, const char *client_id) +{ + if (remote_peer) { + send_cluster_message(crm_get_peer(0, remote_peer), crm_msg_stonith_ng, reply, FALSE); + } else { + do_local_reply(reply, client_id, call_options & st_opt_sync_call, remote_peer!=NULL); + } +} + static int handle_request(stonith_client_t *client, uint32_t id, uint32_t flags, xmlNode *request, const char *remote_peer) { int call_options = 0; int rc = -EOPNOTSUPP; - gboolean always_reply = FALSE; - - xmlNode *reply = NULL; xmlNode *data = NULL; + xmlNode *reply = NULL; char *output = NULL; const char *op = crm_element_value(request, F_STONITH_OPERATION); const char *client_id = crm_element_value(request, F_STONITH_CLIENTID); crm_element_value_int(request, F_STONITH_CALLOPTS, &call_options); if(is_set(call_options, st_opt_sync_call)) { CRM_ASSERT(client == NULL || client->request_id == id); } if(crm_str_eq(op, CRM_OP_REGISTER, TRUE)) { xmlNode *reply = create_xml_node(NULL, "reply"); CRM_ASSERT(client); crm_xml_add(reply, F_STONITH_OPERATION, CRM_OP_REGISTER); crm_xml_add(reply, F_STONITH_CLIENTID, client->id); crm_ipcs_send(client->channel, id, reply, FALSE); client->request_id = 0; free_xml(reply); return 0; } else if(crm_str_eq(op, STONITH_OP_EXEC, TRUE)) { rc = stonith_device_action(request, &output); } else if (crm_str_eq(op, STONITH_OP_TIMEOUT_UPDATE, TRUE)) { const char *call_id = crm_element_value(request, F_STONITH_CALLID); const char *client_id = crm_element_value(request, F_STONITH_CLIENTID); int op_timeout = 0; crm_element_value_int(request, F_STONITH_TIMEOUT, &op_timeout); do_stonith_async_timeout_update(client_id, call_id, op_timeout); return 0; } else if(crm_str_eq(op, STONITH_OP_QUERY, TRUE)) { if (remote_peer) { create_remote_stonith_op(client_id, request, TRUE); /* Record it for the future notification */ } - rc = stonith_query(request, &data); - always_reply = TRUE; - if(!data) { - return 0; - } + stonith_query(request, remote_peer, client_id, call_options); + return 0; } else if(crm_str_eq(op, T_STONITH_NOTIFY, TRUE)) { const char *flag_name = NULL; CRM_ASSERT(client); flag_name = crm_element_value(request, F_STONITH_NOTIFY_ACTIVATE); if(flag_name) { crm_debug("Setting %s callbacks for %s (%s): ON", flag_name, client->name, client->id); client->flags |= get_stonith_flag(flag_name); } flag_name = crm_element_value(request, F_STONITH_NOTIFY_DEACTIVATE); if(flag_name) { crm_debug("Setting %s callbacks for %s (%s): off", flag_name, client->name, client->id); client->flags |= get_stonith_flag(flag_name); } if(flags & crm_ipc_client_response) { crm_ipcs_send_ack(client->channel, id, "ack", __FUNCTION__, __LINE__); client->request_id = 0; } return 0; } else if(crm_str_eq(op, STONITH_OP_RELAY, TRUE)) { xmlNode *dev = get_xpath_object("//@"F_STONITH_TARGET, request, LOG_TRACE); crm_notice("Peer %s has received a forwarded fencing request from %s to fence (%s) peer %s", stonith_our_uname, client ? client->name : remote_peer, crm_element_value(dev, F_STONITH_ACTION), crm_element_value(dev, F_STONITH_TARGET)); if(initiate_remote_stonith_op(NULL, request, FALSE) != NULL) { rc = -EINPROGRESS; } } else if(crm_str_eq(op, STONITH_OP_FENCE, TRUE)) { if(remote_peer || stand_alone) { rc = stonith_fence(request); } else if(call_options & st_opt_manual_ack) { remote_fencing_op_t *rop = initiate_remote_stonith_op(client, request, TRUE); rc = stonith_manual_ack(request, rop); } else { const char *alternate_host = NULL; xmlNode *dev = get_xpath_object("//@"F_STONITH_TARGET, request, LOG_TRACE); const char *target = crm_element_value(dev, F_STONITH_TARGET); const char *action = crm_element_value(dev, F_STONITH_ACTION); const char *device = crm_element_value(dev, F_STONITH_DEVICE); if(client) { int tolerance = 0; crm_notice("Client %s.%.8s wants to fence (%s) '%s' with device '%s'", client->name, client->id, action, target, device?device:"(any)"); crm_element_value_int(dev, F_STONITH_TOLERANCE, &tolerance); if(stonith_check_fence_tolerance(tolerance, target, action)) { rc = 0; goto done; } } else { crm_notice("Peer %s wants to fence (%s) '%s' with device '%s'", remote_peer, action, target, device?device:"(any)"); } alternate_host = check_alternate_host(target); if(alternate_host) { crm_notice("Forwarding complex self fencing request to peer %s", alternate_host); crm_xml_add(request, F_STONITH_OPERATION, STONITH_OP_RELAY); crm_xml_add(request, F_STONITH_CLIENTID, client->id); send_cluster_message(crm_get_peer(0, alternate_host), crm_msg_stonith_ng, request, FALSE); rc = -EINPROGRESS; } else if(initiate_remote_stonith_op(client, request, FALSE) != NULL) { rc = -EINPROGRESS; } } } else if (crm_str_eq(op, STONITH_OP_FENCE_HISTORY, TRUE)) { rc = stonith_fence_history(request, &data); - always_reply = TRUE; } else if(crm_str_eq(op, STONITH_OP_DEVICE_ADD, TRUE)) { const char *id = NULL; xmlNode *notify_data = create_xml_node(NULL, op); rc = stonith_device_register(request, &id, FALSE); crm_xml_add(notify_data, F_STONITH_DEVICE, id); crm_xml_add_int(notify_data, F_STONITH_ACTIVE, g_hash_table_size(device_list)); do_stonith_notify(call_options, op, rc, notify_data); free_xml(notify_data); } else if(crm_str_eq(op, STONITH_OP_DEVICE_DEL, TRUE)) { xmlNode *dev = get_xpath_object("//"F_STONITH_DEVICE, request, LOG_ERR); const char *id = crm_element_value(dev, XML_ATTR_ID); xmlNode *notify_data = create_xml_node(NULL, op); rc = stonith_device_remove(id, FALSE); crm_xml_add(notify_data, F_STONITH_DEVICE, id); crm_xml_add_int(notify_data, F_STONITH_ACTIVE, g_hash_table_size(device_list)); do_stonith_notify(call_options, op, rc, notify_data); free_xml(notify_data); } else if(crm_str_eq(op, STONITH_OP_LEVEL_ADD, TRUE)) { char *id = NULL; xmlNode *notify_data = create_xml_node(NULL, op); rc = stonith_level_register(request, &id); crm_xml_add(notify_data, F_STONITH_DEVICE, id); crm_xml_add_int(notify_data, F_STONITH_ACTIVE, g_hash_table_size(topology)); do_stonith_notify(call_options, op, rc, notify_data); free_xml(notify_data); } else if(crm_str_eq(op, STONITH_OP_LEVEL_DEL, TRUE)) { char *id = NULL; xmlNode *notify_data = create_xml_node(NULL, op); rc = stonith_level_remove(request, &id); crm_xml_add(notify_data, F_STONITH_DEVICE, id); crm_xml_add_int(notify_data, F_STONITH_ACTIVE, g_hash_table_size(topology)); do_stonith_notify(call_options, op, rc, notify_data); free_xml(notify_data); } else if(crm_str_eq(op, STONITH_OP_CONFIRM, TRUE)) { async_command_t *cmd = create_async_command(request); xmlNode *reply = stonith_construct_async_reply(cmd, NULL, NULL, 0); crm_xml_add(reply, F_STONITH_OPERATION, T_STONITH_NOTIFY); crm_notice("Broadcasting manual fencing confirmation for node %s", cmd->victim); send_cluster_message(NULL, crm_msg_stonith_ng, reply, FALSE); free_async_command(cmd); free_xml(reply); } else { crm_err("Unknown %s from %s", op, client ? client->name : remote_peer); crm_log_xml_warn(request, "UnknownOp"); } done: - if (rc == -EINPROGRESS) { - /* Nothing (yet) */ - } else if(remote_peer) { + /* Always reply unles the request is in process still. + * If in progress, a reply will happen async after the request + * processing is finished */ + if (rc != -EINPROGRESS) { reply = stonith_construct_reply(request, output, data, rc); - send_cluster_message(crm_get_peer(0, remote_peer), crm_msg_stonith_ng, reply, FALSE); - free_xml(reply); - - } else if(rc <= pcmk_ok || always_reply) { - reply = stonith_construct_reply(request, output, data, rc); - do_local_reply(reply, client_id, call_options & st_opt_sync_call, remote_peer!=NULL); - free_xml(reply); + stonith_send_reply(reply, call_options, remote_peer, client_id); } free(output); free_xml(data); + free_xml(reply); return rc; } static void handle_reply(stonith_client_t *client, xmlNode *request, const char *remote_peer) { const char *op = crm_element_value(request, F_STONITH_OPERATION); if(crm_str_eq(op, STONITH_OP_QUERY, TRUE)) { process_remote_stonith_query(request); } else if(crm_str_eq(op, T_STONITH_NOTIFY, TRUE)) { process_remote_stonith_exec(request); } else if(crm_str_eq(op, STONITH_OP_FENCE, TRUE)) { /* Reply to a complex fencing op */ process_remote_stonith_exec(request); } else { crm_err("Unknown %s reply from %s", op, client ? client->name : remote_peer); crm_log_xml_warn(request, "UnknownOp"); } } void stonith_command(stonith_client_t *client, uint32_t id, uint32_t flags, xmlNode *request, const char *remote_peer) { int call_options = 0; int rc = 0; gboolean is_reply = FALSE; const char *op = crm_element_value(request, F_STONITH_OPERATION); if(get_xpath_object("//"T_STONITH_REPLY, request, LOG_DEBUG_3)) { is_reply = TRUE; } crm_element_value_int(request, F_STONITH_CALLOPTS, &call_options); crm_debug("Processing %s%s from %s (%16x)", op, is_reply?" reply":"", client?client->name:remote_peer, call_options); if(is_set(call_options, st_opt_sync_call)) { CRM_ASSERT(client == NULL || client->request_id == id); } if (is_reply) { handle_reply(client, request, remote_peer); } else { rc = handle_request(client, id, flags, request, remote_peer); } do_crm_log_unlikely(rc>0?LOG_DEBUG:LOG_INFO,"Processed %s%s from %s: %s (%d)", op, is_reply?" reply":"", client?client->name:remote_peer, rc>0?"":pcmk_strerror(rc), rc); } diff --git a/fencing/internal.h b/fencing/internal.h index 670124915e..52ce19bd6a 100644 --- a/fencing/internal.h +++ b/fencing/internal.h @@ -1,170 +1,170 @@ #include /*! * \internal * \brief Check to see if target was fenced in the last few seconds. * \param tolerance, The number of seconds to look back in time * \param target, The node to search for * \param action, The action we want to match. * * \retval FALSE, not match * \retval TRUE, fencing operation took place in the last 'tolerance' number of seconds. */ gboolean stonith_check_fence_tolerance(int tolerance, const char *target, const char *action); typedef struct stonith_device_s { char *id; char *agent; char *namespace; /*! list of actions that must execute on the target node. Used for unfencing*/ char *on_target_actions; GListPtr targets; time_t targets_age; gboolean has_attr_map; guint priority; guint active_pid; GHashTable *params; GHashTable *aliases; GList *pending_ops; crm_trigger_t *work; /*! A verified device is one that has contacted the * agent successfully to perform a monitor operation */ gboolean verified; gboolean cib_registered; gboolean api_registered; } stonith_device_t; typedef struct stonith_client_s { char *id; char *name; int pid; int request_id; char *channel_name; qb_ipcs_connection_t *channel; long long flags; } stonith_client_t; typedef struct remote_fencing_op_s { /* The unique id associated with this operation */ char *id; /*! The node this operation will fence */ char *target; /*! The fencing action to perform on the target. (reboot, on, off) */ char *action; /*! Marks if the final notifications have been sent to local stonith clients. */ gboolean notify_sent; /*! The number of query replies received */ guint replies; /*! Does this node own control of this operation */ gboolean owner; /*! After query is complete, This the high level timer that expires the entire operation */ guint op_timer_total; /*! This timer expires the current fencing request. Many fencing * requests may exist in a single operation */ guint op_timer_one; /*! This timer expires the query request sent out to determine * what nodes are contain what devices, and who those devices can fence */ guint query_timer; /*! This is the default timeout to use for each fencing device if no * custom timeout is received in the query. */ gint base_timeout; /*! This is the calculated total timeout an operation can take before * expiring. This is calculated by adding together all the timeout * values associated with the devices this fencing operation may call */ gint total_timeout; /*! Delegate is the node being asked to perform a fencing action * on behalf of the node that owns the remote operation. Some operations * will involve multiple delegates. This value represents the final delegate * that is used. */ char *delegate; /*! The point at which the remote operation completed */ time_t completed; /*! The stonith_call_options associated with this remote operation */ long long call_options; /*! The current state of the remote operation. This indicates * what phase the op is in, query, exec, done, duplicate, failed. */ enum op_state state; /*! The node that owns the remote operation */ char *originator; /*! The local client id that initiated the fencing request */ char *client_id; /*! The name of client that initiated the fencing request */ char *client_name; /*! List of the received query results for all the nodes in the cpg group */ GListPtr query_results; /*! The original request that initiated the remote stonith operation */ xmlNode *request; /*! The current topology level being executed */ guint level; /*! The device list of all the devices at the current executing topology level. */ GListPtr devices; /*! List of duplicate operations attached to this operation. Once this operation * completes, the duplicate operations will be closed out as well. */ GListPtr duplicates; } remote_fencing_op_t; typedef struct stonith_topology_s { char *node; GListPtr levels[ST_LEVEL_MAX]; } stonith_topology_t; extern long long get_stonith_flag(const char *name); extern void stonith_command(stonith_client_t * client, uint32_t id, uint32_t flags, xmlNode * op_request, const char *remote_peer); extern int stonith_device_register(xmlNode * msg, const char **desc, gboolean from_cib); extern int stonith_device_remove(const char *id, gboolean from_cib); extern int stonith_level_register(xmlNode * msg, char **desc); extern int stonith_level_remove(xmlNode * msg, char **desc); extern void do_local_reply(xmlNode * notify_src, const char *client_id, gboolean sync_reply, gboolean from_peer); -extern xmlNode *stonith_construct_reply(xmlNode * request, char *output, xmlNode * data, int rc); +extern xmlNode *stonith_construct_reply(xmlNode * request, const char *output, xmlNode * data, int rc); void do_stonith_async_timeout_update(const char *client, const char *call_id, int timeout); extern void do_stonith_notify(int options, const char *type, int result, xmlNode * data); extern remote_fencing_op_t *initiate_remote_stonith_op(stonith_client_t * client, xmlNode * request, gboolean manual_ack); extern int process_remote_stonith_exec(xmlNode * msg); extern int process_remote_stonith_query(xmlNode * msg); extern void *create_remote_stonith_op(const char *client, xmlNode * request, gboolean peer); extern int stonith_fence_history(xmlNode * msg, xmlNode ** output); extern void free_device(gpointer data); extern void free_topology_entry(gpointer data); extern char *stonith_our_uname; extern gboolean stand_alone; extern GHashTable *device_list; extern GHashTable *topology; extern GHashTable *client_list; diff --git a/fencing/regression.py.in b/fencing/regression.py.in index 9463558e58..b312699acf 100644 --- a/fencing/regression.py.in +++ b/fencing/regression.py.in @@ -1,923 +1,985 @@ #!/usr/bin/python # # This program is free software; you can redistribute it and/or # modify it under the terms of the GNU General Public License # as published by the Free Software Foundation; either version 2 # of the License, or (at your option) any later version. # # This program 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. # # You should have received a copy of the GNU General Public License # along with this program; if not, write to the Free Software # Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. import os import sys import subprocess import shlex import time def output_from_command(command): test = subprocess.Popen(shlex.split(command), stdout=subprocess.PIPE, stderr=subprocess.PIPE) test.wait() return test.communicate()[0].split("\n") class Test: def __init__(self, name, description, verbose = 0, with_cpg = 0): self.name = name self.description = description self.cmds = [] self.verbose = verbose self.result_txt = "" self.cmd_tool_output = "" self.result_exitcode = 0; self.stonith_options = "-s" self.enable_corosync = 0 if with_cpg: self.stonith_options = "-c" self.enable_corosync = 1 self.stonith_process = None self.stonith_output = "" self.stonith_patterns = [] self.negative_stonith_patterns = [] self.executed = 0 rsc_classes = output_from_command("crm_resource --list-standards") def __new_cmd(self, cmd, args, exitcode, stdout_match = "", no_wait = 0, stdout_negative_match = "", kill=None): self.cmds.append( { "cmd" : cmd, "kill" : kill, "args" : args, "expected_exitcode" : exitcode, "stdout_match" : stdout_match, "stdout_negative_match" : stdout_negative_match, "no_wait" : no_wait, } ) def stop_pacemaker(self): cmd = shlex.split("killall -9 -q pacemakerd") test = subprocess.Popen(cmd, stdout=subprocess.PIPE) test.wait() def start_environment(self): ### make sure we are in full control here ### self.stop_pacemaker() cmd = shlex.split("killall -9 -q stonithd") test = subprocess.Popen(cmd, stdout=subprocess.PIPE) test.wait() if self.verbose: print "Starting stonithd with %s" % self.stonith_options self.stonith_process = subprocess.Popen( shlex.split("@CRM_DAEMON_DIR@/stonithd %s -V" % self.stonith_options), stdout=subprocess.PIPE, stderr=subprocess.PIPE) time.sleep(1) def clean_environment(self): if self.stonith_process: self.stonith_process.terminate() self.stonith_output = self.stonith_process.communicate()[1] self.stonith_process = None if self.verbose: print self.stonith_output def add_stonith_log_pattern(self, pattern): self.stonith_patterns.append(pattern) def add_stonith_negative_log_pattern(self, pattern): self.negative_stonith_patterns.append(pattern) def add_cmd(self, cmd, args): self.__new_cmd(cmd, args, 0, "") def add_cmd_no_wait(self, cmd, args): self.__new_cmd(cmd, args, 0, "", 1) def add_cmd_check_stdout(self, cmd, args, match, no_match = ""): self.__new_cmd(cmd, args, 0, match, 0, no_match) def add_expected_fail_cmd(self, cmd, args, exitcode = 255): self.__new_cmd(cmd, args, exitcode, "") def get_exitcode(self): return self.result_exitcode def print_result(self, filler): print "%s%s" % (filler, self.result_txt) def run_cmd(self, args): cmd = shlex.split(args['args']) cmd.insert(0, args['cmd']) if self.verbose: print "\n\nRunning: "+" ".join(cmd) test = subprocess.Popen(cmd, stdout=subprocess.PIPE, stderr=subprocess.PIPE) if args['kill']: if self.verbose: print "Also running: "+args['kill'] subprocess.Popen(shlex.split(args['kill'])) if args['no_wait'] == 0: test.wait() else: return 0 - output = test.communicate()[0] + output_res = test.communicate() + output = output_res[0] + output_res[1] + if self.verbose: print output if args['stdout_match'] != "" and output.count(args['stdout_match']) == 0: test.returncode = -2 print "STDOUT string '%s' was not found in cmd output: %s" % (args['stdout_match'], output) if args['stdout_negative_match'] != "" and output.count(args['stdout_negative_match']) != 0: test.returncode = -2 print "STDOUT string '%s' was found in cmd output: %s" % (args['stdout_negative_match'], output) return test.returncode; def count_negative_matches(self, outline): count = 0 for line in self.negative_stonith_patterns: if outline.count(line): count = 1 if self.verbose: print "This pattern should not have matched = '%s" % (line) return count def match_stonith_patterns(self): negative_matches = 0 cur = 0 pats = self.stonith_patterns total_patterns = len(self.stonith_patterns) if len(self.stonith_patterns) == 0: return for line in self.stonith_output.split("\n"): negative_matches = negative_matches + self.count_negative_matches(line) if len(pats) == 0: continue cur = -1 for p in pats: cur = cur + 1 if line.count(pats[cur]): del pats[cur] break if len(pats) > 0 or negative_matches: if self.verbose: for p in pats: print "Pattern Not Matched = '%s'" % p self.result_txt = "FAILURE - '%s' failed. %d patterns out of %d not matched. %d negative matches." % (self.name, len(pats), total_patterns, negative_matches) self.result_exitcode = -1 def run(self): res = 0 i = 1 self.start_environment() if self.verbose: print "\n--- START TEST - %s" % self.name self.result_txt = "SUCCESS - '%s'" % (self.name) self.result_exitcode = 0 for cmd in self.cmds: res = self.run_cmd(cmd) if res != cmd['expected_exitcode']: print "Step %d FAILED - command returned %d, expected %d" % (i, res, cmd['expected_exitcode']) - self.result_txt = "FAILURE - '%s' failed at step %d. Command: lrmd_test %s" % (self.name, i, cmd['args']) + self.result_txt = "FAILURE - '%s' failed at step %d. Command: %s %s" % (self.name, i, cmd['cmd'], cmd['args']) self.result_exitcode = -1 break else: if self.verbose: print "Step %d SUCCESS" % (i) i = i + 1 self.clean_environment() if self.result_exitcode == 0: self.match_stonith_patterns() print self.result_txt if self.verbose: print "--- END TEST - %s\n" % self.name self.executed = 1 return res class Tests: def __init__(self, verbose = 0): self.tests = [] self.verbose = verbose self.autogen_corosync_cfg = 0 if not os.path.exists("/etc/corosync/corosync.conf"): self.autogen_corosync_cfg = 1 def new_test(self, name, description, with_cpg = 0): test = Test(name, description, self.verbose, with_cpg) self.tests.append(test) return test def print_list(self): print "\n==== %d TESTS FOUND ====" % (len(self.tests)) print "%35s - %s" % ("TEST NAME", "TEST DESCRIPTION") print "%35s - %s" % ("--------------------", "--------------------") for test in self.tests: print "%35s - %s" % (test.name, test.description) print "==== END OF LIST ====\n" def start_corosync(self): if self.verbose: print "Starting corosync" test = subprocess.Popen("corosync", stdout=subprocess.PIPE) test.wait() time.sleep(10) def stop_corosync(self): cmd = shlex.split("killall -9 -q corosync") test = subprocess.Popen(cmd, stdout=subprocess.PIPE) test.wait() def run_single(self, name): for test in self.tests: if test.name == name: test.run() break; def run_tests_matching(self, pattern): for test in self.tests: if test.name.count(pattern) != 0: test.run() def run_cpg_only(self): for test in self.tests: if test.enable_corosync: test.run() def run_no_cpg(self): for test in self.tests: if not test.enable_corosync: test.run() def run_tests(self): for test in self.tests: test.run() def exit(self): for test in self.tests: if test.executed == 0: continue if test.get_exitcode() != 0: sys.exit(-1) sys.exit(0) def print_results(self): failures = 0; success = 0; print "\n\n======= FINAL RESULTS ==========" print "\n--- FAILURE RESULTS:" for test in self.tests: if test.executed == 0: continue if test.get_exitcode() != 0: failures = failures + 1 test.print_result(" ") else: success = success + 1 if failures == 0: print " None" print "\n--- TOTALS\n Pass:%d\n Fail:%d\n" % (success, failures) def build_api_sanity_tests(self): verbose_arg = "" if self.verbose: verbose_arg = "-V" test = self.new_test("standalone_low_level_api_test", "Sanity test client api in standalone mode.") test.add_cmd("@CRM_DAEMON_DIR@/stonith-test", "-t %s" % (verbose_arg)) test = self.new_test("cpg_low_level_api_test", "Sanity test client api using mainloop and cpg.", 1) test.add_cmd("@CRM_DAEMON_DIR@/stonith-test", "-m %s" % (verbose_arg)) def build_custom_timeout_tests(self): # custom timeout without topology test = self.new_test("cpg_custom_timeout_1", "Verify per device timeouts work as expected without using topology.", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\" -o \"pcmk_off_timeout=1\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3\" -o \"pcmk_off_timeout=4\"") test.add_cmd("stonith_admin", "-F node3 -t 2") # timeout is 2+1+4 = 7 test.add_stonith_log_pattern("remote op timeout set to 7") # custom timeout _WITH_ topology test = self.new_test("cpg_custom_timeout_2", "Verify per device timeouts work as expected _WITH_ topology.", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\" -o \"pcmk_off_timeout=1\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3\" -o \"pcmk_off_timeout=4000\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false1") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true1") test.add_cmd("stonith_admin", "-r node3 -i 3 -v false2") test.add_cmd("stonith_admin", "-F node3 -t 2") # timeout is 2+1+4000 = 4003 test.add_stonith_log_pattern("remote op timeout set to 4003") def build_fence_merge_tests(self): ### Simple test that overlapping fencing operations get merged test = self.new_test("cpg_custom_merge_single", "Verify overlapping identical fencing operations are merged, no fencing levels used.", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\" ") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd("stonith_admin", "-F node3 -t 10") ### one merger will happen test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") ### the pattern below signifies that both the original and duplicate operation completed test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") ### Test that multiple mergers occur test = self.new_test("cpg_custom_merge_multiple", "Verify multiple overlapping identical fencing operations are merged", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\" ") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd("stonith_admin", "-F node3 -t 10") ### 4 mergers should occur test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") ### the pattern below signifies that both the original and duplicate operation completed test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") ### Test that multiple mergers occur with topologies used test = self.new_test("cpg_custom_merge_with_topology", "Verify multiple overlapping identical fencing operations are merged with fencing levels.", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\" ") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false1") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false2") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true1") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd_no_wait("stonith_admin", "-F node3 -t 10") test.add_cmd("stonith_admin", "-F node3 -t 10") ### 4 mergers should occur test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") test.add_stonith_log_pattern("Merging stonith action off for node node3 originating from client") ### the pattern below signifies that both the original and duplicate operation completed test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test.add_stonith_log_pattern("Operation off of node3 by") test = self.new_test("cpg_custom_no_merge", "Verify differing fencing operations are not merged", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node3 node2\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3 node2\" ") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3 node2\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false1") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false2") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true1") test.add_cmd_no_wait("stonith_admin", "-F node2 -t 10") test.add_cmd("stonith_admin", "-F node3 -t 10") test.add_stonith_negative_log_pattern("Merging stonith action off for node node3 originating from client") def build_standalone_tests(self): test_types = [ { "prefix" : "standalone" , "use_cpg" : 0, }, { "prefix" : "cpg" , "use_cpg" : 1, }, ] # test what happens when all devices timeout for test_type in test_types: test = self.new_test("%s_fence_multi_device_failure" % test_type["prefix"], "Verify that all devices timeout, a fencing failure is returned.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false3 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_expected_fail_cmd("stonith_admin", "-F node3 -t 2", 194) if test_type["use_cpg"] == 1: test.add_stonith_log_pattern("remote op timeout set to 6") test.add_stonith_log_pattern("for host 'node3' with device 'false1' returned: -62") test.add_stonith_log_pattern("for host 'node3' with device 'false2' returned: -62") test.add_stonith_log_pattern("for host 'node3' with device 'false3' returned: -62") # test what happens when multiple devices can fence a node, but the first device fails. for test_type in test_types: test = self.new_test("%s_fence_device_failure_rollover" % test_type["prefix"], "Verify that when one fence device fails for a node, the others are tried.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-F node3 -t 2") if test_type["use_cpg"] == 1: test.add_stonith_log_pattern("remote op timeout set to 6") # simple topology test for one device for test_type in test_types: if test_type["use_cpg"] == 0: continue test = self.new_test("%s_topology_simple" % test_type["prefix"], "Verify all fencing devices at a level are used.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v true") test.add_cmd("stonith_admin", "-F node3 -t 2") test.add_stonith_log_pattern("remote op timeout set to 2") test.add_stonith_log_pattern("for host 'node3' with device 'true' returned: 0") # test what happens when the first fencing level has multiple devices. for test_type in test_types: if test_type["use_cpg"] == 0: continue test = self.new_test("%s_topology_device_fails" % test_type["prefix"], "Verify if one device in a level fails, the other is tried.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R false -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true") test.add_cmd("stonith_admin", "-F node3 -t 20") test.add_stonith_log_pattern("remote op timeout set to 4") test.add_stonith_log_pattern("for host 'node3' with device 'false' returned: -62") test.add_stonith_log_pattern("for host 'node3' with device 'true' returned: 0") # test what happens when the first fencing level fails. for test_type in test_types: if test_type["use_cpg"] == 0: continue test = self.new_test("%s_topology_multi_level_fails" % test_type["prefix"], "Verify if one level fails, the next leve is tried.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true2 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true3 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true4 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false1") test.add_cmd("stonith_admin", "-r node3 -i 1 -v true1") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true2") test.add_cmd("stonith_admin", "-r node3 -i 2 -v false2") test.add_cmd("stonith_admin", "-r node3 -i 3 -v true3") test.add_cmd("stonith_admin", "-r node3 -i 3 -v true4") test.add_cmd("stonith_admin", "-F node3 -t 2") test.add_stonith_log_pattern("remote op timeout set to 12") test.add_stonith_log_pattern("for host 'node3' with device 'false1' returned: -62") test.add_stonith_log_pattern("for host 'node3' with device 'false2' returned: -62") test.add_stonith_log_pattern("for host 'node3' with device 'true3' returned: 0") test.add_stonith_log_pattern("for host 'node3' with device 'true4' returned: 0") # test what happens when the first fencing level had devices that no one has registered for test_type in test_types: if test_type["use_cpg"] == 0: continue test = self.new_test("%s_topology_missing_devices" % test_type["prefix"], "Verify topology can continue with missing devices.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true2 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true3 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true4 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false1") test.add_cmd("stonith_admin", "-r node3 -i 1 -v true1") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true2") test.add_cmd("stonith_admin", "-r node3 -i 2 -v false2") test.add_cmd("stonith_admin", "-r node3 -i 3 -v true3") test.add_cmd("stonith_admin", "-r node3 -i 3 -v true4") test.add_cmd("stonith_admin", "-F node3 -t 2") # Test what happens if multiple fencing levels are defined, and then the first one is removed. for test_type in test_types: if test_type["use_cpg"] == 0: continue test = self.new_test("%s_topology_level_removal" % test_type["prefix"], "Verify level removal works.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true2 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true3 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true4 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-r node3 -i 1 -v false1") test.add_cmd("stonith_admin", "-r node3 -i 1 -v true1") test.add_cmd("stonith_admin", "-r node3 -i 2 -v true2") test.add_cmd("stonith_admin", "-r node3 -i 2 -v false2") test.add_cmd("stonith_admin", "-r node3 -i 3 -v true3") test.add_cmd("stonith_admin", "-r node3 -i 3 -v true4") # Now remove level 2, verify none of the devices in level two are hit. test.add_cmd("stonith_admin", "-d node3 -i 2") test.add_cmd("stonith_admin", "-F node3 -t 20") test.add_stonith_log_pattern("remote op timeout set to 8") test.add_stonith_log_pattern("for host 'node3' with device 'false1' returned: -62") test.add_stonith_negative_log_pattern("for host 'node3' with device 'false2' returned: -62") test.add_stonith_negative_log_pattern("for host 'node3' with device 'false2' returned: -1001") test.add_stonith_log_pattern("for host 'node3' with device 'true3' returned: 0") test.add_stonith_log_pattern("for host 'node3' with device 'true4' returned: 0") # test the stonith builds the correct list of devices that can fence a node. for test_type in test_types: test = self.new_test("%s_list_devices" % test_type["prefix"], "Verify list of devices that can fence a node is correct", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-R true2 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd("stonith_admin", "-R true3 -a fence_true -o \"pcmk_host_list=node1 node2 node3\"") test.add_cmd_check_stdout("stonith_admin", "-l node1 -V", "true2", "true1") test.add_cmd_check_stdout("stonith_admin", "-l node1 -V", "true3", "true1") # simple test of device monitor for test_type in test_types: test = self.new_test("%s_monitor" % test_type["prefix"], "Verify device is reachable", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-Q true1") test.add_cmd("stonith_admin", "-Q false1") test.add_expected_fail_cmd("stonith_admin", "-Q true2", 237) + # Verify monitor occurs for duration of timeout period on failure + for test_type in test_types: + test = self.new_test("%s_monitor_timeout" % test_type["prefix"], + "Verify monitor uses duration of timeout period given.", test_type["use_cpg"]) + test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_monitor_fail -o \"pcmk_host_list=node3\"") + test.add_expected_fail_cmd("stonith_admin", "-Q true1 -t 5", 23) + test.add_stonith_log_pattern("Attempt 2 to execute") + + # Verify monitor occurs for duration of timeout period on failure, but stops at max retries + for test_type in test_types: + test = self.new_test("%s_monitor_timeout_max_retries" % test_type["prefix"], + "Verify monitor retries until max retry value or timeout is hit.", test_type["use_cpg"]) + test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_monitor_fail -o \"pcmk_host_list=node3\"") + test.add_expected_fail_cmd("stonith_admin", "-Q true1 -t 15", 23) + test.add_stonith_log_pattern("Attempt 10 to execute") + # simple register test for test_type in test_types: test = self.new_test("%s_register" % test_type["prefix"], "Verify devices can be registered and un-registered", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-Q true1") test.add_cmd("stonith_admin", "-D true1") test.add_expected_fail_cmd("stonith_admin", "-Q true1", 237) # simple reboot test for test_type in test_types: test = self.new_test("%s_reboot" % test_type["prefix"], "Verify devices can be rebooted", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-B node3 -t 2") test.add_cmd("stonith_admin", "-D true1") test.add_expected_fail_cmd("stonith_admin", "-Q true1", 237) # test fencing history. for test_type in test_types: if test_type["use_cpg"] == 0: continue test = self.new_test("%s_fence_history" % test_type["prefix"], "Verify last fencing operation is returned.", test_type["use_cpg"]) test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-F node3 -t 2 -V") test.add_cmd_check_stdout("stonith_admin", "-H node3", "was able to turn off node node3", "") + # simple test of dynamic list query + for test_type in test_types: + test = self.new_test("%s_dynamic_list_query" % test_type["prefix"], + "Verify dynamic list of fencing devices can be retrieved.", test_type["use_cpg"]) + test.add_cmd("stonith_admin", "-R true1 -a fence_true") + test.add_cmd("stonith_admin", "-R true2 -a fence_true") + test.add_cmd("stonith_admin", "-R true3 -a fence_true") + + test.add_cmd_check_stdout("stonith_admin", "-l fake_port_1", "3 devices found") + + + # fence using dynamic list query + for test_type in test_types: + test = self.new_test("%s_fence_dynamic_list_query" % test_type["prefix"], + "Verify dynamic list of fencing devices can be retrieved.", test_type["use_cpg"]) + test.add_cmd("stonith_admin", "-R true1 -a fence_true") + test.add_cmd("stonith_admin", "-R true2 -a fence_true") + test.add_cmd("stonith_admin", "-R true3 -a fence_true") + + test.add_cmd("stonith_admin", "-F fake_port_1 -t 5 -V"); + + # simple test of query using status action + for test_type in test_types: + test = self.new_test("%s_status_query" % test_type["prefix"], + "Verify dynamic list of fencing devices can be retrieved.", test_type["use_cpg"]) + test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_check=status\"") + test.add_cmd("stonith_admin", "-R true2 -a fence_true -o \"pcmk_host_check=status\"") + test.add_cmd("stonith_admin", "-R true3 -a fence_true -o \"pcmk_host_check=status\"") + + test.add_cmd_check_stdout("stonith_admin", "-l fake_port_1", "3 devices found") + def build_unfence_tests(self): our_uname = output_from_command("uname -n") if our_uname: our_uname = our_uname[0] ### Simple test unfencing works test = self.new_test("cpg_unfence_simple", "Verify simple unfencing.", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-R true1 -a fence_true -o \"pcmk_host_list=node3\" ") test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=node3\"") test.add_cmd("stonith_admin", "-U node3 -t 3") ### verify unfencing using on_target device test = self.new_test("cpg_unfence_on_target_1", "Verify unfencing with on_target = true", 1) test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_on_target -o \"pcmk_host_list=%s\"" % (our_uname)) test.add_cmd("stonith_admin", "-U %s -t 3" % (our_uname)) test.add_stonith_log_pattern("(on) to be executed on the target node") ### verify failure of unfencing using on_target device test = self.new_test("cpg_unfence_on_target_2", "Verify failure unfencing with on_target = true", 1) test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_on_target -o \"pcmk_host_list=%s node_fake_1234\"" % (our_uname)) test.add_expected_fail_cmd("stonith_admin", "-U node_fake_1234 -t 3", 194) test.add_stonith_log_pattern("(on) to be executed on the target node") ### verify unfencing using on_target device with topology test = self.new_test("cpg_unfence_on_target_3", "Verify unfencing with on_target = true using topology", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=%s node3\"" % (our_uname)) test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=%s node3\"" % (our_uname)) test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_on_target -o \"pcmk_host_list=%s node3\"" % (our_uname)) test.add_cmd("stonith_admin", "-r %s -i 1 -v false1" % (our_uname)) test.add_cmd("stonith_admin", "-r %s -i 2 -v false2" % (our_uname)) test.add_cmd("stonith_admin", "-r %s -i 3 -v true1" % (our_uname)) test.add_cmd("stonith_admin", "-U %s -t 3" % (our_uname)) test.add_stonith_log_pattern("(on) to be executed on the target node") ### verify unfencing using on_target device with topology fails test = self.new_test("cpg_unfence_on_target_4", "Verify unfencing failure with on_target = true using topology", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=%s node_fake\"" % (our_uname)) test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=%s node_fake\"" % (our_uname)) test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_on_target -o \"pcmk_host_list=%s node_fake\"" % (our_uname)) test.add_cmd("stonith_admin", "-r node_fake -i 1 -v false1") test.add_cmd("stonith_admin", "-r node_fake -i 2 -v false2") test.add_cmd("stonith_admin", "-r node_fake -i 3 -v true1") test.add_expected_fail_cmd("stonith_admin", "-U node_fake -t 3", 194) test.add_stonith_log_pattern("(on) to be executed on the target node") ### verify use of on_target = true for "on" action does not interfere with "off" action test = self.new_test("cpg_unfence_on_target_ignored", "Verify on target is ignored for other actions", 1) test.add_cmd("stonith_admin", "-R false1 -a fence_false -o \"pcmk_host_list=%s node_fake\"" % (our_uname)) test.add_cmd("stonith_admin", "-R false2 -a fence_false -o \"pcmk_host_list=%s node_fake\"" % (our_uname)) test.add_cmd("stonith_admin", "-R true1 -a fence_dummy_on_target -o \"pcmk_host_list=%s node_fake\"" % (our_uname)) test.add_cmd("stonith_admin", "-r node_fake -i 1 -v false1") test.add_cmd("stonith_admin", "-r node_fake -i 2 -v false2") test.add_cmd("stonith_admin", "-r node_fake -i 3 -v true1") test.add_cmd("stonith_admin", "-F node_fake -t 3") test.add_stonith_log_pattern("(on) to be executed on the target node") def setup_environment(self, use_corosync): if self.autogen_corosync_cfg and use_corosync: corosync_conf = (""" totem { version: 2 crypto_cipher: none crypto_hash: none nodeid: 101 secauth: off interface { ttl: 1 ringnumber: 0 mcastport: 6666 mcastaddr: 226.94.1.1 bindnetaddr: 127.0.0.1 } } logging { debug: off fileline: off to_syslog: no to_stderr: no syslog_facility: daemon timestamp: on to_logfile: yes logfile: /var/log/corosync.log logfile_priority: info } """) os.system("cat <<-END >>/etc/corosync/corosync.conf\n%s\nEND" % (corosync_conf)) if use_corosync: ### make sure we are in control ### self.stop_corosync() self.start_corosync() - + monitor_fail_agent = ("""#!/usr/bin/python +import sys +def main(): + for line in sys.stdin.readlines(): + if line.count("monitor") > 0: + sys.exit(-1); + sys.exit(-1) +if __name__ == "__main__": + main() +""") on_target_agent = ("""#!/usr/bin/python import sys def main(): for line in sys.stdin.readlines(): if line.count("monitor") > 0: sys.exit(0) if line.count("metadata") > 0: print '' print ' dummy description.' print ' http://www.example.com' print ' ' print ' ' print ' ' print ' ' print ' Fencing Action' print ' ' print ' ' print ' ' print ' ' print ' Physical plug number or name of virtual machine' print ' ' print ' ' print ' ' print ' ' print ' ' print ' ' print ' ' print ' ' print '' sys.exit(0) if line.count("on") > 0: sys.exit(0) sys.exit(-1) if __name__ == "__main__": main() """) os.system("cat <<-END >>/usr/sbin/fence_dummy_on_target\n%s\nEND" % (on_target_agent)) os.system("chmod 711 /usr/sbin/fence_dummy_on_target") + + os.system("cat <<-END >>/usr/sbin/fence_dummy_monitor_fail\n%s\nEND" % (monitor_fail_agent)) + os.system("chmod 711 /usr/sbin/fence_dummy_monitor_fail") os.system("cp /usr/share/pacemaker/tests/cts/fence_false /usr/sbin/fence_false") os.system("cp /usr/share/pacemaker/tests/cts/fence_true /usr/sbin/fence_true") def cleanup_environment(self, use_corosync): if use_corosync: self.stop_corosync() if self.verbose and os.path.exists('/var/log/corosync.log'): print "Daemon output" f = open('/var/log/corosync.log', 'r') for line in f.readlines(): print line.strip() os.remove('/var/log/corosync.log') if self.autogen_corosync_cfg: os.system("rm -f /etc/corosync/corosync.conf") os.system("rm -f /usr/sbin/fence_dummy_on_target") + os.system("rm -f /usr/sbin/fence_dummy_monitor_fail") class TestOptions: def __init__(self): self.options = {} self.options['list-tests'] = 0 self.options['run-all'] = 1 self.options['run-only'] = "" self.options['run-only-pattern'] = "" self.options['verbose'] = 0 self.options['invalid-arg'] = "" self.options['cpg-only'] = 0 self.options['no-cpg'] = 0 self.options['show-usage'] = 0 def build_options(self, argv): args = argv[1:] skip = 0 for i in range(0, len(args)): if skip: skip = 0 continue elif args[i] == "-h" or args[i] == "--help": self.options['show-usage'] = 1 elif args[i] == "-l" or args[i] == "--list-tests": self.options['list-tests'] = 1 elif args[i] == "-V" or args[i] == "--verbose": self.options['verbose'] = 1 elif args[i] == "-n" or args[i] == "--no-cpg": self.options['no-cpg'] = 1 elif args[i] == "-c" or args[i] == "--cpg-only": self.options['cpg-only'] = 1 elif args[i] == "-r" or args[i] == "--run-only": self.options['run-only'] = args[i+1] skip = 1 elif args[i] == "-p" or args[i] == "--run-only-pattern": self.options['run-only-pattern'] = args[i+1] skip = 1 def show_usage(self): print "usage: " + sys.argv[0] + " [options]" print "If no options are provided, all tests will run" print "Options:" print "\t [--help | -h] Show usage" print "\t [--list-tests | -l] Print out all registered tests." print "\t [--cpg-only | -c] Only run tests that require corosync." print "\t [--no-cpg | -n] Only run tests that do not require corosync" print "\t [--run-only | -r 'testname'] Run a specific test" print "\t [--verbose | -V] Verbose output" print "\t [--run-only-pattern | -p 'string'] Run only tests containing the string value" print "\n\tExample: Run only the test 'start_top'" print "\t\t python ./regression.py --run-only start_stop" print "\n\tExample: Run only the tests with the string 'systemd' present in them" print "\t\t python ./regression.py --run-only-pattern systemd" def main(argv): o = TestOptions() o.build_options(argv) use_corosync = 1 tests = Tests(o.options['verbose']) tests.build_standalone_tests() tests.build_custom_timeout_tests() tests.build_api_sanity_tests() tests.build_fence_merge_tests() tests.build_unfence_tests() if o.options['list-tests']: tests.print_list() sys.exit(0) elif o.options['show-usage']: o.show_usage() sys.exit(0) print "Starting ..." if o.options['no-cpg']: use_corosync = 0 tests.setup_environment(use_corosync) if o.options['run-only-pattern'] != "": tests.run_tests_matching(o.options['run-only-pattern']) tests.print_results() elif o.options['run-only'] != "": tests.run_single(o.options['run-only']) tests.print_results() elif o.options['no-cpg']: tests.run_no_cpg() tests.print_results() elif o.options['cpg-only']: tests.run_cpg_only() tests.print_results() else: tests.run_tests() tests.print_results() tests.cleanup_environment(use_corosync) tests.exit() if __name__=="__main__": main(sys.argv) diff --git a/fencing/remote.c b/fencing/remote.c index 1ebd106b9a..afb82869ee 100644 --- a/fencing/remote.c +++ b/fencing/remote.c @@ -1,1212 +1,1224 @@ /* * Copyright (C) 2009 Andrew Beekhof * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public * License as published by the Free Software Foundation; either * version 2 of the License, or (at your option) any later version. * * This software 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. * * You should have received a copy of the GNU General Public * License along with this library; if not, write to the Free Software * 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 #include #include #include #define TIMEOUT_MULTIPLY_FACTOR 1.2 typedef struct st_query_result_s { char *host; int devices; GListPtr device_list; GHashTable *custom_action_timeouts; /* Subset of devices that peer has verified connectivity on */ GHashTable *verified_devices; } st_query_result_t; GHashTable *remote_op_list = NULL; void call_remote_stonith(remote_fencing_op_t *op, st_query_result_t *peer); static void remote_op_done(remote_fencing_op_t *op, xmlNode *data, int rc, int dup); extern xmlNode *stonith_create_op( int call_id, const char *token, const char *op, xmlNode *data, int call_options); static void report_timeout_period(remote_fencing_op_t *op, int op_timeout); static int get_op_total_timeout(remote_fencing_op_t *op, st_query_result_t *chosen_peer, int default_timeout); static void free_remote_query(gpointer data) { if(data) { st_query_result_t *query = data; crm_trace("Free'ing query result from %s", query->host); free(query->host); g_hash_table_destroy(query->custom_action_timeouts); g_hash_table_destroy(query->verified_devices); free(query); } } static void clear_remote_op_timers(remote_fencing_op_t *op) { if(op->query_timer) { g_source_remove(op->query_timer); op->query_timer = 0; } if(op->op_timer_total) { g_source_remove(op->op_timer_total); op->op_timer_total = 0; } if(op->op_timer_one) { g_source_remove(op->op_timer_one); op->op_timer_one = 0; } } static void free_remote_op(gpointer data) { remote_fencing_op_t *op = data; crm_trace("Free'ing op %s for %s", op->id, op->target); crm_log_xml_debug(op->request, "Destroying"); clear_remote_op_timers(op); free(op->id); free(op->action); free(op->target); free(op->client_id); free(op->client_name); free(op->originator); if(op->query_results) { g_list_free_full(op->query_results, free_remote_query); } if(op->request) { free_xml(op->request); op->request = NULL; } free(op); } static xmlNode * create_op_done_notify(remote_fencing_op_t *op, int rc) { xmlNode *notify_data = create_xml_node(NULL, T_STONITH_NOTIFY_FENCE); crm_xml_add_int(notify_data, "state", op->state); crm_xml_add_int(notify_data, F_STONITH_RC, rc); crm_xml_add(notify_data, F_STONITH_TARGET, op->target); crm_xml_add(notify_data, F_STONITH_ACTION, op->action); crm_xml_add(notify_data, F_STONITH_DELEGATE, op->delegate); crm_xml_add(notify_data, F_STONITH_REMOTE_OP_ID, op->id); crm_xml_add(notify_data, F_STONITH_ORIGIN, op->originator); crm_xml_add(notify_data, F_STONITH_CLIENTID, op->client_id); crm_xml_add(notify_data, F_STONITH_CLIENTNAME,op->client_name); return notify_data; } static void bcast_result_to_peers(remote_fencing_op_t *op, int rc) { static int count = 0; xmlNode *bcast = create_xml_node(NULL, T_STONITH_REPLY); xmlNode *notify_data = create_op_done_notify(op, rc); count++; crm_trace("Broadcasting result to peers"); crm_xml_add(bcast, F_TYPE, T_STONITH_NOTIFY); crm_xml_add(bcast, F_SUBTYPE, "broadcast"); crm_xml_add(bcast, F_STONITH_OPERATION, T_STONITH_NOTIFY); crm_xml_add_int(bcast, "count", count); add_message_xml(bcast, F_STONITH_CALLDATA, notify_data); send_cluster_message(NULL, crm_msg_stonith_ng, bcast, FALSE); free_xml(notify_data); free_xml(bcast); return; } static void handle_local_reply_and_notify(remote_fencing_op_t *op, xmlNode *data, int rc) { xmlNode *notify_data = NULL; xmlNode *reply = NULL; if (op->notify_sent == TRUE) { /* nothing to do */ return; } /* Do notification with a clean data object */ notify_data = create_op_done_notify(op, rc); crm_xml_add_int(data, "state", op->state); crm_xml_add(data, F_STONITH_TARGET, op->target); crm_xml_add(data, F_STONITH_OPERATION, op->action); reply = stonith_construct_reply(op->request, NULL, data, rc); crm_xml_add(reply, F_STONITH_DELEGATE, op->delegate); /* Send fencing OP reply to local client that initiated fencing */ do_local_reply(reply, op->client_id, op->call_options & st_opt_sync_call, FALSE); /* bcast to all local clients that the fencing operation happend */ do_stonith_notify(0, T_STONITH_NOTIFY_FENCE, rc, notify_data); /* mark this op as having notify's already sent */ op->notify_sent = TRUE; free_xml(reply); free_xml(notify_data); } static void handle_duplicates(remote_fencing_op_t *op, xmlNode *data, int rc) { GListPtr iter = NULL; for(iter = op->duplicates; iter != NULL; iter = iter->next) { remote_fencing_op_t *other = iter->data; if(other->state == st_duplicate) { /* Ie. it hasn't timed out already */ other->state = op->state; crm_debug("Peforming duplicate notification for %s@%s.%.8s = %s", other->client_name, other->originator, other->id, pcmk_strerror(rc)); remote_op_done(other, data, rc, TRUE); } else { crm_err("Skipping duplicate notification for %s@%s - %d", other->client_name, other->originator, other->state); } } } /*! * \internal * \brief Finalize a remote operation. * * \description This function has two code paths. * * Path 1. This node is the owner of the operation and needs * to notify the cpg group via a broadcast as to the operation's * results. * * Path 2. The cpg broadcast is received. All nodes notify their local * stonith clients the operation results. * * So, The owner of the operation first notifies the cluster of the result, * and once that cpg notify is received back it notifies all the local clients. * * Nodes that are passive watchers of the operation will receive the * broadcast and only need to notify their local clients the operation finished. * * \param op, The fencing operation to finalize * \param data, The xml msg reply (if present) of the last delegated fencing * operation. * \param dup, Is this operation a duplicate, if so treat it a little differently * making sure the broadcast is not sent out. */ static void remote_op_done(remote_fencing_op_t *op, xmlNode *data, int rc, int dup) { int level = LOG_ERR; const char *subt = NULL; xmlNode *local_data = NULL; op->completed = time(NULL); clear_remote_op_timers(op); if(op->notify_sent == TRUE) { crm_err("Already sent notifications for '%s of %s by %s' (for=%s@%s.%.8s, state=%d): %s", op->action, op->target, op->delegate?op->delegate:"", op->client_name, op->originator, op->id, op->state, pcmk_strerror(rc)); goto remote_op_done_cleanup; } if(!op->delegate && data) { op->delegate = crm_element_value_copy(data, F_ORIG); } if(data == NULL) { data = create_xml_node(NULL, "remote-op"); local_data = data; } /* Tell everyone the operation is done, we will continue * with doing the local notifications once we receive * the broadcast back. */ subt = crm_element_value(data, F_SUBTYPE); if(dup == FALSE && safe_str_neq(subt, "broadcast")) { /* Defer notification until the bcast message arrives */ bcast_result_to_peers(op, rc); goto remote_op_done_cleanup; } if(rc == pcmk_ok || dup) { level = LOG_NOTICE; } else if(safe_str_neq(op->originator, stonith_our_uname)) { level = LOG_NOTICE; } do_crm_log(level, "Operation %s of %s by %s for %s@%s.%.8s: %s", op->action, op->target, op->delegate?op->delegate:"", op->client_name, op->originator, op->id, pcmk_strerror(rc)); handle_local_reply_and_notify(op, data, rc); if (dup == FALSE) { handle_duplicates(op, data, rc); } /* Free non-essential parts of the record * Keep the record around so we can query the history */ if(op->query_results) { g_list_free_full(op->query_results, free_remote_query); op->query_results = NULL; } if(op->request) { free_xml(op->request); op->request = NULL; } remote_op_done_cleanup: free_xml(local_data); } static gboolean remote_op_timeout_one(gpointer userdata) { remote_fencing_op_t *op = userdata; op->op_timer_one = 0; crm_notice("Remote %s operation on %s for %s.%8s timed out", op->action, op->target, op->client_name, op->id); call_remote_stonith(op, NULL); return FALSE; } static gboolean remote_op_timeout(gpointer userdata) { remote_fencing_op_t *op = userdata; op->op_timer_total = 0; if(op->state == st_done) { crm_debug("Action %s (%s) for %s (%s) already completed", op->action, op->id, op->target, op->client_name); return FALSE; } crm_debug("Action %s (%s) for %s (%s) timed out", op->action, op->id, op->target, op->client_name); op->state = st_failed; remote_op_done(op, NULL, -ETIME, FALSE); return FALSE; } static gboolean remote_op_query_timeout(gpointer data) { remote_fencing_op_t *op = data; op->query_timer = 0; if(op->state == st_done) { crm_debug("Operation %s for %s already completed", op->id, op->target); } else if(op->state == st_exec) { crm_debug("Operation %s for %s already in progress", op->id, op->target); } else if(op->query_results) { crm_debug("Query %s for %s complete: %d", op->id, op->target, op->state); call_remote_stonith(op, NULL); } else { crm_debug("Query %s for %s timed out: %d", op->id, op->target, op->state); if(op->op_timer_total) { g_source_remove(op->op_timer_total); op->op_timer_total = 0; } remote_op_timeout(op); } return FALSE; } static int stonith_topology_next(remote_fencing_op_t *op) { stonith_topology_t *tp = NULL; if(op->target) { /* Queries don't have a target set */ tp = g_hash_table_lookup(topology, op->target); } if(tp == NULL) { return pcmk_ok; } set_bit(op->call_options, st_opt_topology); do { op->level++; } while(op->level < ST_LEVEL_MAX && tp->levels[op->level] == NULL); if(op->level < ST_LEVEL_MAX) { crm_trace("Attempting fencing level %d for %s (%d devices) - %s@%s.%.8s", op->level, op->target, g_list_length(tp->levels[op->level]), op->client_name, op->originator, op->id); op->devices = tp->levels[op->level]; return pcmk_ok; } crm_notice("All fencing options to fence %s for %s@%s.%.8s failed", op->target, op->client_name, op->originator, op->id); return -EINVAL; } /*! * \brief Check to see if this operation is a duplicate of another in flight * operation. If so merge this operation into the inflight operation, and mark * it as a duplicate. */ static void merge_duplicates(remote_fencing_op_t *op) { GHashTableIter iter; remote_fencing_op_t *other = NULL; g_hash_table_iter_init(&iter, remote_op_list); while(g_hash_table_iter_next(&iter, NULL, (void**)&other)) { if(other->state > st_exec) { /* Must be in-progress */ continue; } else if (safe_str_neq(op->target, other->target)) { /* Must be for the same node */ continue; } else if(safe_str_neq(op->action, other->action)) { crm_trace("Must be for the same action: %s vs. ", op->action, other->action); continue; } else if(safe_str_eq(op->client_name, other->client_name)) { crm_trace("Must be for different clients: %s", op->client_name); continue; } else if(safe_str_eq(other->target, other->originator)) { crm_trace("Can't be a suicide operation: %s", other->target); continue; } /* There is another in-flight request to fence the same host * Piggyback on that instead. If it fails, so do we. */ other->duplicates = g_list_append(other->duplicates, op); if(other->total_timeout == 0) { crm_trace("Making a best-guess as to the timeout used"); other->total_timeout = op->total_timeout = TIMEOUT_MULTIPLY_FACTOR * get_op_total_timeout(op, NULL, op->base_timeout); } crm_notice("Merging stonith action %s for node %s originating from client %s.%.8s with identical request from %s@%s.%.8s (%ds)", op->action, op->target, op->client_name, op->id, other->client_name, other->originator, other->id, other->total_timeout); report_timeout_period(op, other->total_timeout); op->state = st_duplicate; } } /*! * \internal * \brief Create a new remote stonith op * \param client, he local stonith client id that initaited the operation * \param request, The request from the client that started the operation * \param peer, Is this operation owned by another stonith peer? Operations * owned by other peers are stored on all the stonith nodes, but only the * owner executes the operation. All the nodes get the results to the operation * once the owner finishes executing it. */ void *create_remote_stonith_op(const char *client, xmlNode *request, gboolean peer) { remote_fencing_op_t *op = NULL; xmlNode *dev = get_xpath_object("//@"F_STONITH_TARGET, request, LOG_TRACE); if(remote_op_list == NULL) { remote_op_list = g_hash_table_new_full( crm_str_hash, g_str_equal, NULL, free_remote_op); } /* If this operation is owned by another node, check to make * sure we haven't already created this operation. */ if(peer && dev) { const char *op_id = crm_element_value(dev, F_STONITH_REMOTE_OP_ID); CRM_CHECK(op_id != NULL, return NULL); op = g_hash_table_lookup(remote_op_list, op_id); if(op) { crm_debug("%s already exists", op_id); return op; } } op = calloc(1, sizeof(remote_fencing_op_t)); crm_element_value_int(request, F_STONITH_TIMEOUT, (int*)&(op->base_timeout)); if(peer && dev) { op->id = crm_element_value_copy(dev, F_STONITH_REMOTE_OP_ID); } else { op->id = crm_generate_uuid(); } g_hash_table_replace(remote_op_list, op->id, op); CRM_LOG_ASSERT(g_hash_table_lookup(remote_op_list, op->id) != NULL); op->state = st_query; op->action = crm_element_value_copy(dev, F_STONITH_ACTION); op->originator = crm_element_value_copy(dev, F_STONITH_ORIGIN); if(op->originator == NULL) { /* Local or relayed request */ op->originator = strdup(stonith_our_uname); } if(client) { op->client_id = strdup(client); } op->client_name = crm_element_value_copy(request, F_STONITH_CLIENTNAME); op->target = crm_element_value_copy(dev, F_STONITH_TARGET); op->request = copy_xml(request); /* TODO: Figure out how to avoid this */ crm_element_value_int(request, F_STONITH_CALLOPTS, (int*)&(op->call_options)); crm_trace("%s new stonith op: %s - %s of %s for %s", (peer && dev)?"Recorded":"Generated", op->id, op->action, op->target, op->client_name); if(op->call_options & st_opt_cs_nodeid) { int nodeid = crm_atoi(op->target, NULL); crm_node_t *node = crm_get_peer(nodeid, NULL); /* Ensure the conversion only happens once */ op->call_options &= ~st_opt_cs_nodeid; if(node && node->uname) { free(op->target); op->target = strdup(node->uname); } else { crm_warn("Could not expand nodeid '%s' into a host name (%p)", op->target, node); } } /* check to see if this is a duplicate operation of another in-flight operation */ merge_duplicates(op); return op; } remote_fencing_op_t *initiate_remote_stonith_op(stonith_client_t *client, xmlNode *request, gboolean manual_ack) { xmlNode *query = NULL; const char *client_id = NULL; remote_fencing_op_t *op = NULL; if(client) { client_id = client->id; } else { client_id = crm_element_value(request, F_STONITH_CLIENTID); } CRM_LOG_ASSERT(client_id != NULL); op = create_remote_stonith_op(client_id, request, FALSE); op->owner = TRUE; CRM_CHECK(op->action, return NULL); if(stonith_topology_next(op) != pcmk_ok) { op->state = st_failed; } switch(op->state) { case st_failed: crm_warn("Initiation of remote operation %s for %s: failed (%s)", op->action, op->target, op->id); remote_op_done(op, NULL, -EINVAL, FALSE); return op; case st_duplicate: crm_info("Initiating remote operation %s for %s: %s (duplicate)", op->action, op->target, op->id); return op; default: crm_notice("Initiating remote operation %s for %s: %s (%d)", op->action, op->target, op->id, op->state); } query = stonith_create_op(0, op->id, STONITH_OP_QUERY, NULL, 0); if(!manual_ack) { - op->query_timer = g_timeout_add(100*op->base_timeout, remote_op_query_timeout, op); + int query_timeout = op->base_timeout * TIMEOUT_MULTIPLY_FACTOR; + op->query_timer = g_timeout_add((1000 * query_timeout), remote_op_query_timeout, op); } else { crm_xml_add(query, F_STONITH_DEVICE, "manual_ack"); } crm_xml_add(query, F_STONITH_REMOTE_OP_ID, op->id); crm_xml_add(query, F_STONITH_TARGET, op->target); crm_xml_add(query, F_STONITH_ACTION, op->action); crm_xml_add(query, F_STONITH_ORIGIN, op->originator); crm_xml_add(query, F_STONITH_CLIENTID, op->client_id); crm_xml_add(query, F_STONITH_CLIENTNAME, op->client_name); crm_xml_add_int(query, F_STONITH_TIMEOUT, op->base_timeout); send_cluster_message(NULL, crm_msg_stonith_ng, query, FALSE); free_xml(query); return op; } static gint sort_strings(gconstpointer a, gconstpointer b) { return strcmp(a, b); } enum find_best_peer_options { /*! Skip checking the target peer for capable fencing devices */ FIND_PEER_SKIP_TARGET = 0x0001, /*! Only check the target peer for capable fencing devices */ FIND_PEER_TARGET_ONLY = 0x0002, /*! Skip peers and devices that are not verified */ FIND_PEER_VERIFIED_ONLY = 0x0004, }; static st_query_result_t * find_best_peer(const char *device, remote_fencing_op_t *op, enum find_best_peer_options options) { GListPtr iter = NULL; gboolean verified_devices_only = (options & FIND_PEER_VERIFIED_ONLY) ? TRUE : FALSE; if (!device && is_set(op->call_options, st_opt_topology)) { return NULL; } for(iter = op->query_results; iter != NULL; iter = iter->next) { st_query_result_t *peer = iter->data; if ((options & FIND_PEER_SKIP_TARGET) && safe_str_eq(peer->host, op->target)) { continue; } if ((options & FIND_PEER_TARGET_ONLY) && safe_str_neq(peer->host, op->target)) { continue; } if(is_set(op->call_options, st_opt_topology)) { /* Do they have the next device of the current fencing level? */ GListPtr match = NULL; if (verified_devices_only && !g_hash_table_lookup(peer->verified_devices, device)) { continue; } match = g_list_find_custom(peer->device_list, device, sort_strings); if(match) { crm_trace("Removing %s from %s (%d remaining)", (char*)match->data, peer->host, g_list_length(peer->device_list)); peer->device_list = g_list_remove(peer->device_list, match->data); return peer; } } else if(peer->devices > 0) { if (verified_devices_only && !g_hash_table_size(peer->verified_devices)) { continue; } /* No topology: Use the current best peer */ crm_trace("Simple fencing"); return peer; } } return NULL; } static st_query_result_t *stonith_choose_peer(remote_fencing_op_t *op) { st_query_result_t *peer = NULL; const char *device = NULL; do { if(op->devices) { device = op->devices->data; crm_trace("Checking for someone to fence %s with %s", op->target, (char*)op->devices->data); } else { crm_trace("Checking for someone to fence %s", op->target); } if ((peer = find_best_peer(device, op, FIND_PEER_SKIP_TARGET | FIND_PEER_VERIFIED_ONLY))) { return peer; } else if ((peer = find_best_peer(device, op, FIND_PEER_SKIP_TARGET))) { return peer; } else if ((peer = find_best_peer(device, op, FIND_PEER_TARGET_ONLY))) { return peer; } /* Try the next fencing level if there is one */ } while(is_set(op->call_options, st_opt_topology) && stonith_topology_next(op) == pcmk_ok); if(op->devices) { crm_debug("Couldn't find anyone to fence %s with %s", op->target, (char*)op->devices->data); } else { crm_debug("Couldn't find anyone to fence %s", op->target); } return NULL; } static int get_device_timeout(st_query_result_t *peer, const char *device, int default_timeout) { gpointer res; if (!peer || !device) { return default_timeout; } res = g_hash_table_lookup(peer->custom_action_timeouts, device); return res ? GPOINTER_TO_INT(res) : default_timeout; } static int get_op_total_timeout(remote_fencing_op_t *op, st_query_result_t *chosen_peer, int default_timeout) { stonith_topology_t *tp = g_hash_table_lookup(topology, op->target); int total_timeout = 0; if (is_set(op->call_options, st_opt_topology) && tp) { int i; GListPtr device_list = NULL; GListPtr iter = NULL; /* Yep, this looks scary, nested loops all over the place. * Here is what is going on. * Loop1: Iterate through fencing levels. * Loop2: If a fencing level has devices, loop through each device * Loop3: For each device in a fencing level, see what peer owns it * and what that peer has reported the timeout is for the device. */ for (i = 0; i < ST_LEVEL_MAX; i++) { if (!tp->levels[i]) { continue; } for (device_list = tp->levels[i]; device_list; device_list = device_list->next) { for(iter = op->query_results; iter != NULL; iter = iter->next) { st_query_result_t *peer = iter->data; if (g_list_find_custom(peer->device_list, device_list->data, sort_strings)) { total_timeout += get_device_timeout(peer, device_list->data, default_timeout); break; } } /* End Loop3: match device with peer that owns device, find device's timeout period */ } /* End Loop2: iterate through devices at a specific level */ } /*End Loop1: iterate through fencing levels */ } else if (chosen_peer) { GListPtr cur = NULL; for (cur = chosen_peer->device_list; cur; cur = cur->next) { total_timeout += get_device_timeout(chosen_peer, cur->data, default_timeout); } } else { total_timeout = default_timeout; } return total_timeout ? total_timeout : default_timeout; } static void report_timeout_period(remote_fencing_op_t *op, int op_timeout) { GListPtr iter = NULL; xmlNode *update = NULL; const char *client_node = NULL; const char *client_id = NULL; const char *call_id = NULL; if (op->call_options & st_opt_sync_call) { /* There is no reason to report the timeout for a syncronous call. It * is impossible to use the reported timeout to do anything when the client * is blocking for the response. This update is only important for * async calls that require a callback to report the results in. */ return; } else if (!op->request) { return; } crm_trace("Reporting timeout for %s.%.8s", op->client_name, op->id); client_node = crm_element_value(op->request, F_STONITH_CLIENTNODE); call_id = crm_element_value(op->request, F_STONITH_CALLID); client_id = crm_element_value(op->request, F_STONITH_CLIENTID); if (!client_node || !call_id || !client_id) { return; } if (safe_str_eq(client_node, stonith_our_uname)) { /* The client is connected to this node, send the update direclty to them */ do_stonith_async_timeout_update(client_id, call_id, op_timeout); return; } /* The client is connected to another node, relay this update to them */ update = stonith_create_op(0, op->id, STONITH_OP_TIMEOUT_UPDATE, NULL, 0); crm_xml_add(update, F_STONITH_REMOTE_OP_ID, op->id); crm_xml_add(update, F_STONITH_CLIENTID, client_id); crm_xml_add(update, F_STONITH_CALLID, call_id); crm_xml_add_int(update, F_STONITH_TIMEOUT, op_timeout); send_cluster_message(crm_get_peer(0, client_node), crm_msg_stonith_ng, update, FALSE); free_xml(update); for(iter = op->duplicates; iter != NULL; iter = iter->next) { remote_fencing_op_t *dup = iter->data; crm_trace("Reporting timeout for duplicate %s.%.8s", dup->client_name, dup->id); report_timeout_period(iter->data, op_timeout); } } void call_remote_stonith(remote_fencing_op_t *op, st_query_result_t *peer) { const char *device = NULL; int timeout = op->base_timeout; if(peer == NULL && !is_set(op->call_options, st_opt_topology)) { peer = stonith_choose_peer(op); } if(!op->op_timer_total) { int t = get_op_total_timeout(op, peer, op->base_timeout); op->total_timeout = TIMEOUT_MULTIPLY_FACTOR * t; op->op_timer_total = g_timeout_add(1000 * op->total_timeout, remote_op_timeout, op); report_timeout_period(op, op->total_timeout); crm_info("Total remote op timeout set to %d for fencing of node %s for %s.%.8s", t, op->target, op->client_name, op->id); } if(is_set(op->call_options, st_opt_topology) && op->devices) { /* Ignore any preference, they might not have the device we need */ /* When using topology, the stonith_choose_peer function pops off * the peer from the op's query results. Make sure to calculate * the op_timeout before calling this function when topology is in use */ peer = stonith_choose_peer(op); device = op->devices->data; timeout = get_device_timeout(peer, device, op->base_timeout); } if(peer) { int t = TIMEOUT_MULTIPLY_FACTOR * get_device_timeout(peer, device, op->base_timeout); xmlNode *query = stonith_create_op(0, op->id, STONITH_OP_FENCE, NULL, 0); crm_xml_add(query, F_STONITH_REMOTE_OP_ID, op->id); crm_xml_add(query, F_STONITH_TARGET, op->target); crm_xml_add(query, F_STONITH_ACTION, op->action); crm_xml_add(query, F_STONITH_ORIGIN, op->originator); crm_xml_add(query, F_STONITH_CLIENTID, op->client_id); crm_xml_add(query, F_STONITH_CLIENTNAME, op->client_name); crm_xml_add_int(query, F_STONITH_TIMEOUT, timeout); if(device) { crm_info("Requesting that %s perform op %s %s with %s for %s (%ds)", peer->host, op->action, op->target, device, op->client_name, t); crm_xml_add(query, F_STONITH_DEVICE, device); crm_xml_add(query, F_STONITH_MODE, "slave"); } else { crm_info("Requesting that %s perform op %s %s for %s (%ds)", peer->host, op->action, op->target, op->client_name, t); crm_xml_add(query, F_STONITH_MODE, "smart"); } op->state = st_exec; if(op->op_timer_one) { g_source_remove(op->op_timer_one); } op->op_timer_one = g_timeout_add((1000 * t), remote_op_timeout_one, op); send_cluster_message(crm_get_peer(0, peer->host), crm_msg_stonith_ng, query, FALSE); free_xml(query); return; } else if(!op->owner) { crm_err("The termination of %s for %s is not ours to control", op->target, op->client_name); } else if(!op->query_timer) { CRM_LOG_ASSERT(op->state < st_done); /* We've exhausted all available peers */ crm_info("No remaining peers capable of terminating %s for %s", op->target, op->client_name, op->state); remote_op_timeout(op); } else if(device) { crm_info("Waiting for additional peers capable of terminating %s with %s for %s.%.8s", op->target, device, op->client_name, op->id); } else { crm_info("Waiting for additional peers capable of terminating %s for %s%.8s", op->target, op->client_name, op->id); } free_remote_query(peer); } static gint sort_peers(gconstpointer a, gconstpointer b) { const st_query_result_t *peer_a = a; const st_query_result_t *peer_b = a; if(peer_a->devices > peer_b->devices) { return -1; } else if(peer_a->devices > peer_b->devices) { return 1; } return 0; } /*! * \internal * \brief Determine if all the devices in the topology are found or not */ static gboolean all_topology_devices_found(remote_fencing_op_t *op) { GListPtr device = NULL; GListPtr iter = NULL; GListPtr match = NULL; stonith_topology_t *tp = NULL; gboolean skip_target = FALSE; int i; tp = g_hash_table_lookup(topology, op->target); if (!tp) { return FALSE; } if (safe_str_eq(op->action, "off") || safe_str_eq(op->action, "reboot")) { /* Don't count the devices on the target node if we are killing * the target node. */ skip_target = TRUE; } for (i = 0; i < ST_LEVEL_MAX; i++) { for (device = tp->levels[i]; device; device = device->next) { match = FALSE; for(iter = op->query_results; iter != NULL; iter = iter->next) { st_query_result_t *peer = iter->data; if (skip_target && safe_str_eq(peer->host, op->target)) { continue; } match = g_list_find_custom(peer->device_list, device->data, sort_strings); } if (!match) { return FALSE; } } } return TRUE; } int process_remote_stonith_query(xmlNode *msg) { int devices = 0; const char *id = NULL; const char *host = NULL; remote_fencing_op_t *op = NULL; st_query_result_t *result = NULL; xmlNode *dev = get_xpath_object("//@"F_STONITH_REMOTE_OP_ID, msg, LOG_ERR); xmlNode *child = NULL; CRM_CHECK(dev != NULL, return -EPROTO); id = crm_element_value(dev, F_STONITH_REMOTE_OP_ID); CRM_CHECK(id != NULL, return -EPROTO); dev = get_xpath_object("//@st-available-devices", msg, LOG_ERR); CRM_CHECK(dev != NULL, return -EPROTO); crm_element_value_int(dev, "st-available-devices", &devices); op = g_hash_table_lookup(remote_op_list, id); if(op == NULL) { crm_debug("Unknown or expired remote op: %s", id); return -EOPNOTSUPP; } op->replies++; host = crm_element_value(msg, F_ORIG); if(devices <= 0) { /* If we're doing 'known' then we might need to fire anyway */ crm_trace("Query result from %s (%d devices)", host, devices); return pcmk_ok; } else if(op->call_options & st_opt_allow_suicide) { crm_trace("Allowing %s to potentialy fence itself", op->target); } else if(safe_str_eq(host, op->target)) { crm_info("Ignoring reply from %s, hosts are not permitted to commit suicide", op->target); return pcmk_ok; } crm_debug("Query result from %s (%d devices)", host, devices); result = calloc(1, sizeof(st_query_result_t)); result->host = strdup(host); result->devices = devices; result->custom_action_timeouts = g_hash_table_new_full( crm_str_hash, g_str_equal, free, NULL); result->verified_devices = g_hash_table_new_full( crm_str_hash, g_str_equal, free, NULL); for (child = __xml_first_child(dev); child != NULL; child = __xml_next(child)) { const char *device = ID(child); int action_timeout = 0; int verified = 0; if(device) { result->device_list = g_list_prepend(result->device_list, strdup(device)); crm_element_value_int(child, F_STONITH_ACTION_TIMEOUT, &action_timeout); crm_element_value_int(child, F_STONITH_DEVICE_VERIFIED, &verified); if (action_timeout) { crm_trace("Peer %s with device %s returned action timeout %d", result->host, device, action_timeout); g_hash_table_insert(result->custom_action_timeouts, strdup(device), GINT_TO_POINTER(action_timeout)); } if (verified) { crm_trace("Peer %s has confirmed a verified device %s", result->host, device); g_hash_table_insert(result->verified_devices, strdup(device), GINT_TO_POINTER(verified)); } } } CRM_CHECK(devices == g_list_length(result->device_list), crm_err("Mis-match: Query claimed to have %d devices but %d found", devices, g_list_length(result->device_list))); op->query_results = g_list_insert_sorted(op->query_results, result, sort_peers); /* All the query results are in for the topology, start the fencing ops. */ if(is_set(op->call_options, st_opt_topology)) { /* If we start the fencing before all the topology results are in, * it is possible fencing levels will be skipped because of the missing * query results. */ if (op->state == st_query && all_topology_devices_found(op)) { call_remote_stonith(op, result); } /* We have a result for a non-topology fencing op, start fencing */ } else if(op->state == st_query) { call_remote_stonith(op, result); } else if(op->state == st_done) { crm_info("Discarding query result from %s (%d devices): Operation is in state %d", result->host, result->devices, op->state); } return pcmk_ok; } int process_remote_stonith_exec(xmlNode *msg) { int rc = 0; const char *id = NULL; const char *device = NULL; remote_fencing_op_t *op = NULL; xmlNode *dev = get_xpath_object("//@"F_STONITH_REMOTE_OP_ID, msg, LOG_ERR); CRM_CHECK(dev != NULL, return -EPROTO); id = crm_element_value(dev, F_STONITH_REMOTE_OP_ID); CRM_CHECK(id != NULL, return -EPROTO); dev = get_xpath_object("//@"F_STONITH_RC, msg, LOG_ERR); CRM_CHECK(dev != NULL, return -EPROTO); crm_element_value_int(dev, F_STONITH_RC, &rc); device = crm_element_value(dev, F_STONITH_DEVICE); if(remote_op_list) { op = g_hash_table_lookup(remote_op_list, id); } if(op == NULL && rc == pcmk_ok) { /* Record successful fencing operations */ const char *client_id = crm_element_value(msg, F_STONITH_CLIENTID); op = create_remote_stonith_op(client_id, msg, TRUE); } if(op == NULL) { /* Could be for an event that began before we started */ /* TODO: Record the op for later querying */ crm_info("Unknown or expired remote op: %s", id); return -EOPNOTSUPP; } if (op->devices && device && safe_str_neq(op->devices->data, device)) { crm_err("Received outdated reply for device %s to %s node %s. Operation already timed out at remote level.", device, op->action, op->target); return rc; } if(safe_str_eq(crm_element_value(msg, F_SUBTYPE), "broadcast")) { crm_debug("Marking call to %s for %s on behalf of %s@%s.%.8s: %s (%d)", op->action, op->target, op->client_name, op->id, op->originator, rc == pcmk_ok?"passed":"failed", rc); if(rc == pcmk_ok) { op->state = st_done; } else { op->state = st_failed; } remote_op_done(op, msg, rc, FALSE); return pcmk_ok; + } else if(safe_str_neq(op->originator, stonith_our_uname)) { + /* If this isn't a remote level broadcast, and we are not the + * originator of the operation, we should not be receiving this msg. */ + crm_err("%s received non-broadcast fencing result for operation it does not own (device %s targeting %s)", + stonith_our_uname, device, op->target); + return rc; } - + if(is_set(op->call_options, st_opt_topology)) { const char *device = crm_element_value(msg, F_STONITH_DEVICE); crm_notice("Call to %s for %s on behalf of %s@%s: %s (%d)", device, op->target, op->client_name, op->originator, rc == pcmk_ok?"passed":"failed", rc); - if(safe_str_eq(op->originator, stonith_our_uname)) { - if(op->state == st_done) { - remote_op_done(op, msg, rc, FALSE); - return rc; + /* We own the op, and it is complete. broadcast the result to all nodes + * and notify our local clients. */ + if(op->state == st_done) { + remote_op_done(op, msg, rc, FALSE); + return rc; - } else if(rc == pcmk_ok && op->devices) { + } + + /* An operation completed succesfully but has not yet been marked as done. + * Continue the topology if more devices exist at the current level, otherwise + * mark as done. */ + if(rc == pcmk_ok) { + if (op->devices) { /* Success, are there any more? */ op->devices = op->devices->next; } - + /* if no more devices at this fencing level, we are done, + * else we need to contine with executing the next device in the list */ if(op->devices == NULL) { crm_trace("Marking complex fencing op for %s as complete", op->target); - if(rc == pcmk_ok) { - op->state = st_done; - } else { - op->state = st_failed; - } + op->state = st_done; remote_op_done(op, msg, rc, FALSE); return rc; } - } else { - op->state = st_done; - remote_op_done(op, msg, rc, FALSE); - return rc; + /* This device failed, time to try another topology level. If no other + * levels are available, mark this operation as failed and report results. */ + if (stonith_topology_next(op) != pcmk_ok) { + op->state = st_failed; + remote_op_done(op, msg, rc, FALSE); + } } - } else if(rc == pcmk_ok && op->devices == NULL) { crm_trace("All done for %s", op->target); op->state = st_done; remote_op_done(op, msg, rc, FALSE); return rc; } /* Retry on failure or execute the rest of the topology */ crm_trace("Next for %s on behalf of %s@%s (rc was %d)", op->target, op->originator, op->client_name, rc); call_remote_stonith(op, NULL); return rc; } int stonith_fence_history(xmlNode *msg, xmlNode **output) { int rc = 0; const char *target = NULL; xmlNode *dev = get_xpath_object("//@"F_STONITH_TARGET, msg, LOG_TRACE); if(dev) { int options = 0; target = crm_element_value(dev, F_STONITH_TARGET); crm_element_value_int(msg, F_STONITH_CALLOPTS, &options); if(target && (options & st_opt_cs_nodeid)) { int nodeid = crm_atoi(target, NULL); crm_node_t *node = crm_get_peer(nodeid, NULL); if(node) { target = node->uname; } } } *output = create_xml_node(NULL, F_STONITH_HISTORY_LIST); if (remote_op_list) { GHashTableIter iter; remote_fencing_op_t *op = NULL; g_hash_table_iter_init(&iter, remote_op_list); while(g_hash_table_iter_next(&iter, NULL, (void**)&op)) { xmlNode *entry = NULL; if (target && strcmp(op->target, target) != 0) { continue; } rc = 0; entry = create_xml_node(*output, STONITH_OP_EXEC); crm_xml_add(entry, F_STONITH_TARGET, op->target); crm_xml_add(entry, F_STONITH_ACTION, op->action); crm_xml_add(entry, F_STONITH_ORIGIN, op->originator); crm_xml_add(entry, F_STONITH_DELEGATE, op->delegate); crm_xml_add_int(entry, F_STONITH_DATE, op->completed); crm_xml_add_int(entry, F_STONITH_STATE, op->state); } } return rc; } gboolean stonith_check_fence_tolerance(int tolerance, const char *target, const char *action) { GHashTableIter iter; time_t now = time(NULL); remote_fencing_op_t *rop = NULL; crm_trace("tolerance=%d, remote_op_list=%p", tolerance, remote_op_list); if (tolerance <= 0 || !remote_op_list || target == NULL || action == NULL) { return FALSE; } g_hash_table_iter_init(&iter, remote_op_list); while(g_hash_table_iter_next(&iter, NULL, (void**)&rop)) { if(strcmp(rop->target, target) != 0) { continue; } else if(rop->state != st_done) { continue; } else if(strcmp(rop->action, action) != 0) { continue; } else if((rop->completed + tolerance) < now) { continue; } crm_notice("Target %s was fenced (%s) less than %ds ago by %s on behalf of %s", target, action, tolerance, rop->delegate, rop->originator); return TRUE; } return FALSE; } diff --git a/lib/fencing/st_client.c b/lib/fencing/st_client.c index d2e7300702..e764fe3f1a 100644 --- a/lib/fencing/st_client.c +++ b/lib/fencing/st_client.c @@ -1,2288 +1,2360 @@ /* * 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., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * */ #include #include #include #include #include #include #include #include #include #include #include #include #include /* Add it for compiling on OSX */ #include #include #include #include #include #ifdef HAVE_STONITH_STONITH_H # include # define LHA_STONITH_LIBRARY "libstonith.so.1" static void *lha_agents_lib = NULL; #endif #include CRM_TRACE_INIT_DATA(stonith); struct stonith_action_s { + /*! user defined data */ char *agent; char *action; char *victim; char *args; int timeout; int async; void *userdata; void (*done_cb)(GPid pid, gint status, const char *output, gpointer user_data); - /* async track data */ + /*! internal async track data */ int fd_stdout; int last_timeout_signo; + + /*! internal timing information */ + time_t initial_start_time; + int tries; + int remaining_timeout; guint timer_sigterm; guint timer_sigkill; - /* output data */ + /* device output data */ GPid pid; int rc; char *output; }; typedef struct stonith_private_s { char *token; crm_ipc_t *ipc; mainloop_io_t *source; GHashTable *stonith_op_callback_table; GList *notify_list; void (*op_callback) (stonith_t * st, stonith_callback_data_t *data); } 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, stonith_event_t *e); } stonith_notify_client_t; typedef struct stonith_callback_client_s { void (*callback) (stonith_t * st, stonith_callback_data_t *data); const char *id; void *user_data; gboolean only_success; gboolean allow_timeout_updates; 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 int (*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"; bool stonith_dispatch(stonith_t * st); int stonith_dispatch_internal(const char *buffer, ssize_t length, gpointer userdata); 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 int internal_stonith_action_execute(stonith_action_t *action); static void stonith_connection_destroy(gpointer user_data) { stonith_t *stonith = user_data; stonith_private_t *native = NULL; struct notify_blob_s blob; crm_trace("Sending destroyed notification"); blob.stonith = stonith; blob.xml = create_xml_node(NULL, "notify"); native = stonith->private; native->ipc = NULL; native->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(native->notify_list, stonith_send_notification, &blob); free_xml(blob.xml); } xmlNode * create_device_registration_xml(const char *id, const char *namespace, const char *agent, stonith_key_value_t * params) { 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); for (; params; params = params->next) { hash2field((gpointer) params->key, (gpointer) params->value, args); } return data; } static int stonith_api_register_device(stonith_t * st, int call_options, const char *id, const char *namespace, const char *agent, stonith_key_value_t * params) { int rc = 0; xmlNode *data = NULL; #if HAVE_STONITH_STONITH_H namespace = get_stonith_provider(agent, namespace); if (safe_str_eq(namespace, "heartbeat")) { stonith_key_value_add(params, "plugin", agent); agent = "fence_legacy"; } #endif data = create_device_registration_xml(id, namespace, agent, params); rc = stonith_send_command(st, STONITH_OP_DEVICE_ADD, data, NULL, call_options, 0); free_xml(data); return rc; } static int stonith_api_remove_device(stonith_t * st, 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(st, STONITH_OP_DEVICE_DEL, data, NULL, call_options, 0); free_xml(data); return rc; } static int stonith_api_remove_level(stonith_t * st, int options, const char *node, int level) { int rc = 0; xmlNode *data = NULL; data = create_xml_node(NULL, F_STONITH_LEVEL); crm_xml_add(data, "origin", __FUNCTION__); crm_xml_add(data, F_STONITH_TARGET, node); crm_xml_add_int(data, XML_ATTR_ID, level); rc = stonith_send_command(st, STONITH_OP_LEVEL_DEL, data, NULL, options, 0); free_xml(data); return rc; } xmlNode * create_level_registration_xml(const char *node, int level, stonith_key_value_t * device_list) { xmlNode *data = create_xml_node(NULL, F_STONITH_LEVEL); crm_xml_add_int(data, XML_ATTR_ID, level); crm_xml_add(data, F_STONITH_TARGET, node); crm_xml_add(data, "origin", __FUNCTION__); for (; device_list; device_list = device_list->next) { xmlNode *dev = create_xml_node(data, F_STONITH_DEVICE); crm_xml_add(dev, XML_ATTR_ID, device_list->value); } return data; } static int stonith_api_register_level(stonith_t * st, int options, const char *node, int level, stonith_key_value_t * device_list) { int rc = 0; xmlNode *data = create_level_registration_xml(node, level, device_list); rc = stonith_send_command(st, STONITH_OP_LEVEL_ADD, data, NULL, 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); } *args = realloc(*args, last + len); crm_trace("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 = strdup(key); char *glib_sucks_value = strdup(value); append_arg(glib_sucks_key, glib_sucks_value, arg_list); free(glib_sucks_value); 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] == ':') { free(name); name = calloc(1, 1 + lpc - last); memcpy(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; param = calloc(1, 1 + lpc - last); memcpy(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); 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); 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); } free(name); name = NULL; free(param); if (map[lpc] == 0) { break; } } else if (isspace(map[lpc])) { last = lpc; } } free(name); } static char * make_args(const char *action, const char *victim, GHashTable * device_args, GHashTable * port_map) { char buffer[512]; char *arg_list = NULL; const char *value = NULL; CRM_CHECK(action != NULL, return NULL); if (device_args) { g_hash_table_foreach(device_args, append_arg, &arg_list); } buffer[511] = 0; snprintf(buffer, 511, "pcmk_%s_action", action); if (device_args) { value = g_hash_table_lookup(device_args, buffer); } if (value == NULL && device_args) { /* Legacy support for early 1.1 releases - Remove for 1.4 */ snprintf(buffer, 511, "pcmk_%s_cmd", action); value = g_hash_table_lookup(device_args, buffer); } if (value == NULL && device_args && safe_str_eq(action, "off")) { /* Legacy support for late 1.1 releases - Remove for 1.4 */ value = g_hash_table_lookup(device_args, "pcmk_poweroff_action"); } if (value) { crm_info("Substituting action '%s' for requested operation '%s'", value, action); action = value; } append_const_arg(STONITH_ATTR_ACTION_OP, action, &arg_list); if (victim && device_args) { const char *alias = victim; const char *param = g_hash_table_lookup(device_args, STONITH_ATTR_HOSTARG); if (port_map && g_hash_table_lookup(port_map, victim)) { alias = g_hash_table_lookup(port_map, victim); } /* Always supply the node's name too: * https://fedorahosted.org/cluster/wiki/FenceAgentAPI */ append_const_arg("nodename", victim, &arg_list); /* Check if we need to supply the victim in any other form */ if (param == NULL) { const char *map = g_hash_table_lookup(device_args, STONITH_ATTR_ARGMAP); if (map == NULL) { param = "port"; value = g_hash_table_lookup(device_args, param); } else { /* Legacy handling */ append_host_specific_args(alias, map, device_args, &arg_list); value = map; /* Nothing more to do */ } } else if (safe_str_eq(param, "none")) { value = param; /* Nothing more to do */ } else { value = g_hash_table_lookup(device_args, param); } /* Don't overwrite explictly set values for $param */ if (value == NULL || safe_str_eq(value, "dynamic")) { crm_debug("Performing %s action for node '%s' as '%s=%s'", action, victim, param, alias); append_const_arg(param, alias, &arg_list); } } crm_trace("Calculated: %s", arg_list); return arg_list; } static gboolean st_child_term(gpointer data) { int rc = 0; stonith_action_t *track = data; crm_info("Child %d timed out, sending SIGTERM", track->pid); track->timer_sigterm = 0; track->last_timeout_signo = SIGTERM; rc = kill(track->pid, SIGTERM); if(rc < 0) { crm_perror(LOG_ERR, "Couldn't send SIGTERM to %d", track->pid); } return FALSE; } static gboolean st_child_kill(gpointer data) { int rc = 0; stonith_action_t *track = data; crm_info("Child %d timed out, sending SIGKILL", track->pid); track->timer_sigkill = 0; track->last_timeout_signo = SIGKILL; rc = kill(track->pid, SIGKILL); if(rc < 0) { crm_perror(LOG_ERR, "Couldn't send SIGKILL to %d", track->pid); } return FALSE; } static void -stonith_action_destroy(stonith_action_t *action) +stonith_action_clear_tracking_data(stonith_action_t *action) { - if (action->timer_sigterm > 0) { g_source_remove(action->timer_sigterm); + action->timer_sigterm = 0; } if (action->timer_sigkill > 0) { g_source_remove(action->timer_sigkill); + action->timer_sigkill = 0; } - if (action->fd_stdout) { close(action->fd_stdout); + action->fd_stdout = 0; } + free(action->output); + action->output = NULL; + action->rc = 0; + action->pid = 0; + action->last_timeout_signo = 0; +} + +static void +stonith_action_destroy(stonith_action_t *action) +{ + stonith_action_clear_tracking_data(action); free(action->agent); free(action->args); - free(action->output); free(action->action); free(action->victim); free(action); } stonith_action_t * stonith_action_create(const char *agent, const char *_action, const char *victim, int timeout, GHashTable * device_args, GHashTable * port_map) { stonith_action_t *action; action = calloc(1, sizeof(stonith_action_t)); crm_info("Initiating action %s for agent %s (target=%s)", _action, agent, victim); action->args = make_args(_action, victim, device_args, port_map); action->agent = strdup(agent); action->action = strdup(_action); if (victim) { action->victim = strdup(victim); } - action->timeout = timeout; + action->timeout = action->remaining_timeout = timeout; return action; } #define READ_MAX 500 static char* read_output(int fd) { char buffer[READ_MAX]; char *output = NULL; int len = 0; int more = 0; if (!fd) { return NULL; } do { errno = 0; memset(&buffer, 0, READ_MAX); more = read(fd, buffer, READ_MAX-1); if (more > 0) { crm_trace("Got %d more bytes: %s", more, buffer); output = realloc(output, len + more + 1); sprintf(output+len, "%s", buffer); len += more; } } while (more == (READ_MAX-1) || (more < 0 && errno == EINTR)); return output; } +#define FAILURE_MAX_RETRIES 10 +static gboolean +update_remaining_timeout(stonith_action_t *action) +{ + int diff = time(NULL) - action->initial_start_time; + + if (action->tries >= FAILURE_MAX_RETRIES) { + crm_info("Attempted to execute agent %s (%s) the maximum number of times (%d) allowed", + action->agent, action->action, FAILURE_MAX_RETRIES); + action->remaining_timeout = 0; + } else if ((action->rc != -ETIME) && diff < (action->timeout * 0.7)) { + /* only set remaining timeout period if there is 30% + * or greater of the original timeout period left */ + action->remaining_timeout = action->timeout - diff; + } else { + action->remaining_timeout = 0; + } + return action->remaining_timeout ? TRUE : FALSE; +} + static void stonith_action_async_done(GPid pid, gint status, gpointer user_data) { int rc = -pcmk_err_generic; stonith_action_t *action = user_data; if (action->timer_sigterm > 0) { g_source_remove(action->timer_sigterm); } if (action->timer_sigkill > 0) { g_source_remove(action->timer_sigkill); } if(action->last_timeout_signo) { rc = -ETIME; crm_notice("Child process %d performing action '%s' timed out with signal %d", pid, action->action, action->last_timeout_signo); } else if(WIFSIGNALED(status)) { int signo = WTERMSIG(status); rc = -ECONNABORTED; crm_notice("Child process %d performing action '%s' timed out with signal %d", pid, action->action, signo); } else if(WIFEXITED(status)) { rc = WEXITSTATUS(status); crm_debug("Child process %d performing action '%s' exited with rc %d", pid, action->action, rc); } action->rc = rc; action->output = read_output(action->fd_stdout); + if (action->rc != pcmk_ok && update_remaining_timeout(action)) { + rc = internal_stonith_action_execute(action); + if (rc == pcmk_ok) { + return; + } + } + if (action->done_cb) { action->done_cb(pid, action->rc, action->output, action->userdata); } stonith_action_destroy(action); } static int internal_stonith_action_execute(stonith_action_t *action) { int pid, status, len, rc = -EPROTO; int ret; int total = 0; 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]; + int is_retry = 0; + + /* clear any previous tracking data */ + stonith_action_clear_tracking_data(action); + + if (!action->tries) { + action->initial_start_time = time(NULL); + } + action->tries++; + + if (action->tries > 1) { + crm_info("Attempt %d to execute %s (%s). remaining timeout is %d", + action->tries, action->agent, action->action, action->remaining_timeout); + is_retry = 1; + } c_read_fd = c_write_fd = p_read_fd = p_write_fd = -1; if (action->args == NULL || action->agent == NULL) goto fail; len = strlen(action->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) { rc = -ECHILD; goto fail; } if (!pid) { /* child */ close(1); /* coverity[leaked_handle] False positive */ if (dup(c_write_fd) < 0) goto fail; close(2); /* coverity[leaked_handle] False positive */ if (dup(c_write_fd) < 0) goto fail; close(0); /* coverity[leaked_handle] False positive */ 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); + /* keep retries from executing out of control */ + if (is_retry) { + sleep(1); + } execlp(action->agent, action->agent, NULL); exit(EXIT_FAILURE); } /* parent */ action->pid = pid; ret = fcntl(p_read_fd, F_SETFL, fcntl(p_read_fd, F_GETFL, 0) | O_NONBLOCK); if(ret < 0) { crm_perror(LOG_NOTICE, "Could not change the output of %s to be non-blocking", action->agent); } do { crm_debug("sending args"); ret = write(p_write_fd, action->args + total, len - total); if (ret > 0) { total += ret; } } while (errno == EINTR && total < len); if (total != len) { crm_perror(LOG_ERR, "Sent %d not %d bytes", total, len); if (ret >= 0) { rc = -EREMOTEIO; } goto fail; } close(p_write_fd); /* async */ if (action->async) { action->fd_stdout = p_read_fd; g_child_watch_add(pid, stonith_action_async_done, action); - crm_trace("Op: %s on %s, pid: %d, timeout: %ds", action->action, action->agent, pid, action->timeout); + crm_trace("Op: %s on %s, pid: %d, timeout: %ds", action->action, action->agent, pid, action->remaining_timeout); action->last_timeout_signo = 0; - if (action->timeout) { - action->timer_sigterm = g_timeout_add(1000*action->timeout, st_child_term, action); - action->timer_sigkill = g_timeout_add(1000*(action->timeout+5), st_child_kill, action); + if (action->remaining_timeout) { + action->timer_sigterm = g_timeout_add(1000*action->remaining_timeout, st_child_term, action); + action->timer_sigkill = g_timeout_add(1000*(action->remaining_timeout+5), st_child_kill, action); } else { crm_err("No timeout set for stonith operation %s with device %s", action->action, action->agent); } close(c_write_fd); close(c_read_fd); return 0; } else { /* sync */ - int timeout = action->timeout + 1; + int timeout = action->remaining_timeout + 1; pid_t p = 0; - while (action->timeout < 0 || timeout > 0) { + while (action->remaining_timeout < 0 || timeout > 0) { p = waitpid(pid, &status, WNOHANG); if (p > 0) { break; } sleep(1); timeout--; } if (timeout == 0) { int killrc = kill(pid, 9 /*SIGKILL*/); if (killrc && errno != ESRCH) { crm_err("kill(%d, KILL) failed: %s (%d)", pid, pcmk_strerror(errno), errno); } p = waitpid(pid, &status, WNOHANG); } if (p <= 0) { crm_perror(LOG_ERR, "waitpid(%d)", pid); } else if (p != pid) { crm_err("Waited for %d, got %d", pid, p); } action->output = read_output(p_read_fd); action->rc = -ECONNABORTED; rc = action->rc; if (timeout == 0) { action->rc = -ETIME; } else if (WIFEXITED(status)) { crm_debug("result = %d", WEXITSTATUS(status)); action->rc = -WEXITSTATUS(status); rc = 0; } else if (WIFSIGNALED(status)) { crm_err("call %s for %s exited due to signal %d", action->action, action->agent, WTERMSIG(status)); } else { crm_err("call %s for %s exited abnormally. stopped=%d, continued=%d", action->action, action->agent, WIFSTOPPED(status), WIFCONTINUED(status)); } } fail: 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; } GPid stonith_action_execute_async(stonith_action_t *action, void *userdata, void (*done)(GPid pid, int rc, const char *output, gpointer user_data)) { int rc = 0; if (!action) { return -1; } action->userdata = userdata; action->done_cb = done; action->async = 1; rc = internal_stonith_action_execute(action); return rc ? rc : action->pid; } int stonith_action_execute(stonith_action_t *action, int *agent_result, char **output) { int rc = 0; if (!action) { return -1; } - rc = internal_stonith_action_execute(action); + do { + rc = internal_stonith_action_execute(action); + if (rc == pcmk_ok) { + /* success! */ + break; + } + /* keep retrying while we have time left */ + } while (update_remaining_timeout(action)); + if (rc) { /* error */ return rc; } if (agent_result) { *agent_result = action->rc; } if (output) { *output = action->output; action->output = NULL; /* handed it off, do not free */ } stonith_action_destroy(action); return rc; } static int stonith_api_device_list(stonith_t * stonith, int call_options, const char *namespace, stonith_key_value_t ** devices, int timeout) { int count = 0; if (devices == NULL) { crm_err("Parameter error: stonith_api_device_list"); return -EFAULT; } /* Include Heartbeat agents */ if (namespace == NULL || safe_str_eq("heartbeat", namespace)) { #if HAVE_STONITH_STONITH_H static gboolean need_init = TRUE; char **entry = NULL; char **type_list = NULL; static char **(*type_list_fn) (void) = NULL; static void (*type_free_fn) (char **) = NULL; if(need_init) { need_init = FALSE; type_list_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_types", FALSE); type_free_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_free_hostlist", FALSE); } if(type_list_fn) { type_list = (*type_list_fn)(); } for (entry = type_list; entry != NULL && *entry; ++entry) { crm_trace("Added: %s", *entry); *devices = stonith_key_value_add(*devices, NULL, *entry); count++; } if (type_list && type_free_fn) { (*type_free_fn)(type_list); } #else if(namespace != NULL) { return -EINVAL; /* Heartbeat agents not supported */ } #endif } /* Include Red Hat agents, basically: ls -1 @sbin_dir@/fence_* */ if (namespace == NULL || safe_str_eq("redhat", namespace)) { struct dirent **namelist; int file_num = scandir(RH_STONITH_DIR, &namelist, 0, alphasort); if (file_num > 0) { struct stat prop; char buffer[FILENAME_MAX + 1]; while (file_num--) { if ('.' == namelist[file_num]->d_name[0]) { free(namelist[file_num]); continue; } else if (0 != strncmp(RH_STONITH_PREFIX, namelist[file_num]->d_name, strlen(RH_STONITH_PREFIX))) { free(namelist[file_num]); continue; } snprintf(buffer, FILENAME_MAX, "%s/%s", RH_STONITH_DIR, namelist[file_num]->d_name); if (stat(buffer, &prop) == 0 && S_ISREG(prop.st_mode)) { *devices = stonith_key_value_add(*devices, NULL, namelist[file_num]->d_name); count++; } free(namelist[file_num]); } free(namelist); } } return count; } 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; char *buffer = NULL; const char *provider = get_stonith_provider(agent, namespace); crm_trace("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")) { stonith_action_t *action = stonith_action_create(agent, "metadata", NULL, 5, NULL, NULL); int exec_rc = stonith_action_execute(action, &rc, &buffer); if (exec_rc < 0 || rc != 0 || buffer == NULL) { crm_debug("Query failed: %d %d: %s", exec_rc, rc, crm_str(buffer)); free(buffer); /* Just in case */ return -EINVAL; } else { xmlNode *xml = string2xml(buffer); xmlNode *actions = NULL; xmlXPathObject *xpathObj = NULL; xpathObj = xpath_search(xml, "//actions"); if (xpathObj && xpathObj->nodesetval->nodeNr > 0) { actions = getXpathResult(xpathObj, 0); } /* Now fudge the metadata so that the start/stop actions appear */ xpathObj = xpath_search(xml, "//action[@name='stop']"); if (xpathObj == NULL || xpathObj->nodesetval->nodeNr <= 0) { xmlNode *tmp = NULL; tmp = create_xml_node(actions, "action"); crm_xml_add(tmp, "name", "stop"); crm_xml_add(tmp, "timeout", "20s"); tmp = create_xml_node(actions, "action"); crm_xml_add(tmp, "name", "start"); crm_xml_add(tmp, "timeout", "20s"); } /* Now fudge the metadata so that the port isn't required in the configuration */ xpathObj = xpath_search(xml, "//parameter[@name='port']"); if (xpathObj && xpathObj->nodesetval->nodeNr > 0) { /* We'll fill this in */ xmlNode *tmp = getXpathResult(xpathObj, 0); crm_xml_add(tmp, "required", "0"); } free(buffer); buffer = dump_xml_formatted(xml); free_xml(xml); if (!buffer) { return -EINVAL; } } } else { #if !HAVE_STONITH_STONITH_H return -EINVAL; /* Heartbeat agents not supported */ #else int bufferlen = 0; static const char *no_parameter_info = ""; Stonith *stonith_obj = NULL; static gboolean need_init = TRUE; static Stonith *(*st_new_fn) (const char *) = NULL; static const char *(*st_info_fn) (Stonith *, int) = NULL; static void (*st_del_fn) (Stonith *) = NULL; if(need_init) { need_init = FALSE; st_new_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_new", FALSE); st_del_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_delete", FALSE); st_info_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_get_info", FALSE); } if (lha_agents_lib && st_new_fn && st_del_fn && st_info_fn) { char *xml_meta_longdesc = NULL; char *xml_meta_shortdesc = NULL; char *meta_param = NULL; char *meta_longdesc = NULL; char *meta_shortdesc = NULL; stonith_obj = (*st_new_fn) (agent); if(stonith_obj) { meta_longdesc = strdup((*st_info_fn)(stonith_obj, ST_DEVICEDESCR)); if (meta_longdesc == NULL) { crm_warn("no long description in %s's metadata.", agent); meta_longdesc = strdup(no_parameter_info); } meta_shortdesc = strdup((*st_info_fn)(stonith_obj, ST_DEVICEID)); if (meta_shortdesc == NULL) { crm_warn("no short description in %s's metadata.", agent); meta_shortdesc = strdup(no_parameter_info); } meta_param = strdup((*st_info_fn)(stonith_obj, ST_CONF_XML)); if (meta_param == NULL) { crm_warn("no list of parameters in %s's metadata.", agent); meta_param = strdup(no_parameter_info); } (*st_del_fn)(stonith_obj); } else { return -EINVAL; /* Heartbeat agents not supported */ } 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; buffer = calloc(1, bufferlen); snprintf(buffer, bufferlen - 1, META_TEMPLATE, agent, xml_meta_longdesc, xml_meta_shortdesc, meta_param); xmlFree(xml_meta_longdesc); xmlFree(xml_meta_shortdesc); free(meta_shortdesc); free(meta_longdesc); free(meta_param); } #endif } if (output) { *output = buffer; } else { free(buffer); } return rc; } static int stonith_api_query(stonith_t * stonith, int call_options, const char *target, stonith_key_value_t ** devices, int timeout) { int rc = 0, lpc = 0, max = 0; xmlNode *data = NULL; xmlNode *output = NULL; xmlXPathObjectPtr xpathObj = NULL; CRM_CHECK(devices != NULL, return -EINVAL); data = create_xml_node(NULL, F_STONITH_DEVICE); crm_xml_add(data, "origin", __FUNCTION__); crm_xml_add(data, F_STONITH_TARGET, target); crm_xml_add(data, F_STONITH_ACTION, "off"); 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 = stonith_key_value_add(*devices, NULL, crm_element_value(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, xmlNode **output) { 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, output, call_options, timeout); free_xml(data); return rc; } static int stonith_api_list(stonith_t * stonith, int call_options, const char *id, char **list_info, int timeout) { int rc; xmlNode *output = NULL; rc = stonith_api_call(stonith, call_options, id, "list", NULL, timeout, &output); if (output && list_info) { const char *list_str; list_str = crm_element_value(output, "st_output"); if (list_str) { *list_info = strdup(list_str); } } if (output) { free_xml(output); } return rc; } static int stonith_api_monitor(stonith_t * stonith, int call_options, const char *id, int timeout) { return stonith_api_call(stonith, call_options, id, "monitor", NULL, timeout, NULL); } static int stonith_api_status(stonith_t * stonith, int call_options, const char *id, const char *port, int timeout) { return stonith_api_call(stonith, call_options, id, "status", port, timeout, NULL); } static int stonith_api_fence(stonith_t * stonith, int call_options, const char *node, const char *action, int timeout, int tolerance) { int rc = 0; xmlNode *data = 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); crm_xml_add_int(data, F_STONITH_TOLERANCE, tolerance); rc = stonith_send_command(stonith, STONITH_OP_FENCE, data, NULL, call_options, timeout); free_xml(data); return rc; } static int stonith_api_confirm(stonith_t * stonith, int call_options, const char *target) { return stonith_api_fence(stonith, call_options | st_opt_manual_ack, target, "off", 0, 0); } static int stonith_api_history(stonith_t * stonith, int call_options, const char *node, stonith_history_t ** history, int timeout) { int rc = 0; xmlNode *data = NULL; xmlNode *output = NULL; stonith_history_t *last = NULL; *history = NULL; if (node) { data = create_xml_node(NULL, __FUNCTION__); crm_xml_add(data, F_STONITH_TARGET, node); } rc = stonith_send_command(stonith, STONITH_OP_FENCE_HISTORY, data, &output, call_options | st_opt_sync_call, timeout); free_xml(data); if (rc == 0) { xmlNode *op = NULL; xmlNode *reply = get_xpath_object("//" F_STONITH_HISTORY_LIST, output, LOG_ERR); for (op = __xml_first_child(reply); op != NULL; op = __xml_next(op)) { stonith_history_t *kvp; kvp = calloc(1, sizeof(stonith_history_t)); kvp->target = crm_element_value_copy(op, F_STONITH_TARGET); kvp->action = crm_element_value_copy(op, F_STONITH_ACTION); kvp->origin = crm_element_value_copy(op, F_STONITH_ORIGIN); kvp->delegate = crm_element_value_copy(op, F_STONITH_DELEGATE); crm_element_value_int(op, F_STONITH_DATE, &kvp->completed); crm_element_value_int(op, F_STONITH_STATE, &kvp->state); if (last) { last->next = kvp; } else { *history = kvp; } last = kvp; } } return rc; } 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"; #if HAVE_STONITH_STONITH_H } else { Stonith *stonith_obj = NULL; static gboolean need_init = TRUE; static Stonith *(*st_new_fn) (const char *) = NULL; static void (*st_del_fn) (Stonith *) = NULL; if(need_init) { need_init = FALSE; st_new_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_new", FALSE); st_del_fn = find_library_function(&lha_agents_lib, LHA_STONITH_LIBRARY, "stonith_delete", FALSE); } if (lha_agents_lib && st_new_fn && st_del_fn) { stonith_obj = (*st_new_fn) (agent); if(stonith_obj) { (*st_del_fn)(stonith_obj); return "heartbeat"; } } #endif } 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; } xmlNode * stonith_create_op(int call_id, const char *token, const char *op, xmlNode * data, int call_options) { 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_trace("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); } 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); } free(blob->timer); free(blob); } static int stonith_api_signoff(stonith_t * stonith) { stonith_private_t *native = stonith->private; crm_debug("Signing out of the STONITH Service"); if (native->source != NULL) { /* Attached to mainloop */ mainloop_del_ipc_client(native->source); native->source = NULL; native->ipc = NULL; } else if(native->ipc) { /* Not attached to mainloop */ crm_ipc_t *ipc = native->ipc; native->ipc = NULL; crm_ipc_close(ipc); crm_ipc_destroy(ipc); } stonith->state = stonith_disconnected; return pcmk_ok; } static int stonith_api_signon(stonith_t * stonith, const char *name, int *stonith_fd) { int rc = pcmk_ok; stonith_private_t *native = stonith->private; static struct ipc_client_callbacks st_callbacks = { .dispatch = stonith_dispatch_internal, .destroy = stonith_connection_destroy }; crm_trace("Connecting command channel"); stonith->state = stonith_connected_command; if(stonith_fd) { /* No mainloop */ native->ipc = crm_ipc_new("stonith-ng", 0); if(native->ipc && crm_ipc_connect(native->ipc)) { *stonith_fd = crm_ipc_get_fd(native->ipc); } else if(native->ipc) { rc = -ENOTCONN; } } else { /* With mainloop */ native->source = mainloop_add_ipc_client("stonith-ng", G_PRIORITY_MEDIUM, 0, stonith, &st_callbacks); native->ipc = mainloop_get_ipc_client(native->source); } if (native->ipc == NULL) { crm_debug("Could not connect to the Stonith API"); rc = -ENOTCONN; } if (rc == pcmk_ok) { xmlNode *reply = NULL; xmlNode *hello = create_xml_node(NULL, "stonith_command"); crm_xml_add(hello, F_TYPE, T_STONITH_NG); crm_xml_add(hello, F_STONITH_OPERATION, CRM_OP_REGISTER); crm_xml_add(hello, F_STONITH_CLIENTNAME, name); rc = crm_ipc_send(native->ipc, hello, crm_ipc_client_response, -1, &reply); if(rc < 0) { crm_perror(LOG_DEBUG, "Couldn't complete registration with the fencing API: %d", rc); rc = -ECOMM; } else if(reply == NULL) { crm_err("Did not receive registration reply"); rc = -EPROTO; } else { const char *msg_type = crm_element_value(reply, F_STONITH_OPERATION); const char *tmp_ticket = crm_element_value(reply, F_STONITH_CLIENTID); if (safe_str_neq(msg_type, CRM_OP_REGISTER)) { crm_err("Invalid registration message: %s", msg_type); crm_log_xml_err(reply, "Bad reply"); rc = -EPROTO; } else if (tmp_ticket == NULL) { crm_err("No registration token provided"); crm_log_xml_err(reply, "Bad reply"); rc = -EPROTO; } else { crm_trace("Obtained registration token: %s", tmp_ticket); native->token = strdup(tmp_ticket); rc = pcmk_ok; } } free_xml(reply); free_xml(hello); } if (rc == pcmk_ok) { #if HAVE_MSGFROMIPC_TIMEOUT stonith->call_timeout = MAX_IPC_DELAY; #endif crm_debug("Connection to STONITH successful"); return pcmk_ok; } crm_debug("Connection to STONITH failed: %s", pcmk_strerror(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) { int rc; 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); } rc = crm_ipc_send(native->ipc, notify_msg, crm_ipc_client_response, -1, NULL); if(rc < 0) { crm_perror(LOG_DEBUG, "Couldn't register for fencing notifications: %d", rc); rc = -ECOMM; } } free_xml(notify_msg); return pcmk_ok; } static int stonith_api_add_notification(stonith_t * stonith, const char *event, void (*callback) (stonith_t * stonith, stonith_event_t *e)) { GList *list_item = NULL; stonith_notify_client_t *new_client = NULL; stonith_private_t *private = NULL; private = stonith->private; crm_trace("Adding callback for %s events (%d)", event, g_list_length(private->notify_list)); new_client = calloc(1, sizeof(stonith_notify_client_t)); new_client->event = event; new_client->notify = callback; list_item = g_list_find_custom(private->notify_list, new_client, stonithlib_GCompareFunc); if (list_item != NULL) { crm_warn("Callback already present"); free(new_client); return -ENOTUNIQ; } else { private->notify_list = g_list_append(private->notify_list, new_client); stonith_set_notification(stonith, event, 1); crm_trace("Callback added (%d)", g_list_length(private->notify_list)); } return pcmk_ok; } static int stonith_api_del_notification(stonith_t * stonith, const char *event) { GList *list_item = NULL; stonith_notify_client_t *new_client = NULL; stonith_private_t *private = NULL; crm_debug("Removing callback for %s events", event); private = stonith->private; new_client = calloc(1, sizeof(stonith_notify_client_t)); new_client->event = event; new_client->notify = NULL; list_item = g_list_find_custom(private->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; private->notify_list = g_list_remove(private->notify_list, list_client); free(list_client); crm_trace("Removed callback"); } else { crm_trace("Callback not present"); } free(new_client); return pcmk_ok; } static gboolean stonith_async_timeout_handler(gpointer data) { struct timer_rec_s *timer = data; crm_err("Async call %d timed out after %dms", timer->call_id, timer->timeout); stonith_perform_callback(timer->stonith, NULL, timer->call_id, -ETIME); /* Always return TRUE, never remove the handler * We do that in stonith_del_callback() */ return TRUE; } static void set_callback_timeout(stonith_callback_client_t *callback, stonith_t *stonith, int call_id, int timeout) { struct timer_rec_s *async_timer = callback->timer; if (timeout <= 0) { return; } if (!async_timer) { async_timer = calloc(1, sizeof(struct timer_rec_s)); callback->timer = async_timer; } async_timer->stonith = stonith; async_timer->call_id = call_id; /* Allow a fair bit of grace to allow the server to tell us of a timeout * This is only a fallback */ async_timer->timeout = (timeout + 60) * 1000; if (async_timer->ref) { g_source_remove(async_timer->ref); } async_timer->ref = g_timeout_add(async_timer->timeout, stonith_async_timeout_handler, async_timer); } static void update_callback_timeout(int call_id, int timeout, stonith_t *st) { stonith_callback_client_t *callback = NULL; stonith_private_t *private = st->private; callback = g_hash_table_lookup(private->stonith_op_callback_table, GINT_TO_POINTER(call_id)); if (!callback || !callback->allow_timeout_updates) { return; } set_callback_timeout(callback, st, call_id, timeout); } static void invoke_callback(stonith_t *st, int call_id, int rc, void *userdata, void (*callback) (stonith_t * st, stonith_callback_data_t *data)) { stonith_callback_data_t data = { 0, }; data.call_id = call_id; data.rc = rc; data.userdata = userdata; callback(st, &data); } static int stonith_api_add_callback(stonith_t * stonith, int call_id, int timeout, int options, void *user_data, const char *callback_name, void (*callback) (stonith_t * st, stonith_callback_data_t *data)) { stonith_callback_client_t *blob = NULL; stonith_private_t *private = NULL; CRM_CHECK(stonith != NULL, return -EINVAL); CRM_CHECK(stonith->private != NULL, return -EINVAL); private = stonith->private; if (call_id == 0) { private->op_callback = callback; } else if (call_id < 0) { if (!(options & st_opt_report_only_success)) { crm_trace("Call failed, calling %s: %s", callback_name, pcmk_strerror(call_id)); invoke_callback(stonith, call_id, call_id, user_data, callback); } else { crm_warn("STONITH call failed: %s", pcmk_strerror(call_id)); } return FALSE; } blob = calloc(1, sizeof(stonith_callback_client_t)); blob->id = callback_name; blob->only_success = (options & st_opt_report_only_success) ? TRUE : FALSE; blob->user_data = user_data; blob->callback = callback; blob->allow_timeout_updates = (options & st_opt_timeout_updates) ? TRUE : FALSE; if (timeout > 0) { set_callback_timeout(blob, stonith, call_id, timeout); } g_hash_table_insert(private->stonith_op_callback_table, GINT_TO_POINTER(call_id), blob); crm_trace("Added callback to %s for call %d", callback_name, call_id); return TRUE; } static int stonith_api_del_callback(stonith_t * stonith, int call_id, bool 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 pcmk_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) { 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); } CRM_CHECK(call_id > 0, crm_log_xml_err(msg, "Bad result")); 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_trace("No callback found for call %d", call_id); local_blob.callback = NULL; } if (local_blob.callback != NULL && (rc == pcmk_ok || local_blob.only_success == FALSE)) { crm_trace("Invoking callback %s for call %d", crm_str(local_blob.id), call_id); invoke_callback(stonith, call_id, rc, local_blob.user_data, local_blob.callback); } else if (private->op_callback == NULL && rc != pcmk_ok) { crm_warn("STONITH command failed: %s", pcmk_strerror(rc)); crm_log_xml_debug(msg, "Failed STONITH Update"); } if (private->op_callback != NULL) { crm_trace("Invoking global callback for call %d", call_id); invoke_callback(stonith, call_id, rc, NULL, private->op_callback); } crm_trace("OP callback activated."); } /* */ static stonith_event_t * xml_to_event(xmlNode *msg) { stonith_event_t *event = calloc(1, sizeof(stonith_event_t)); const char *ntype = crm_element_value(msg, F_SUBTYPE); char *data_addr = g_strdup_printf("//%s", ntype); xmlNode *data = get_xpath_object(data_addr, msg, LOG_DEBUG); crm_log_xml_trace(msg, "stonith_notify"); crm_element_value_int(msg, F_STONITH_RC, &(event->result)); if(safe_str_eq(ntype, T_STONITH_NOTIFY_FENCE)) { event->operation = crm_element_value_copy(msg, F_STONITH_OPERATION); if(data) { event->origin = crm_element_value_copy(data, F_STONITH_ORIGIN); event->action = crm_element_value_copy(data, F_STONITH_ACTION); event->target = crm_element_value_copy(data, F_STONITH_TARGET); event->executioner = crm_element_value_copy(data, F_STONITH_DELEGATE); event->id = crm_element_value_copy(data, F_STONITH_REMOTE_OP_ID); event->client_origin = crm_element_value_copy(data, F_STONITH_CLIENTNAME); } else { crm_err("No data for %s event", ntype); crm_log_xml_notice(msg, "BadEvent"); } } g_free(data_addr); return event; } static void event_free(stonith_event_t *event) { free(event->id); free(event->type); free(event->message); free(event->operation); free(event->origin); free(event->action); free(event->target); free(event->executioner); free(event->device); free(event->client_origin); free(event); } static void stonith_send_notification(gpointer data, gpointer user_data) { struct notify_blob_s *blob = user_data; stonith_notify_client_t *entry = data; stonith_event_t *st_event = NULL; 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_trace("Skipping callback - event mismatch %p/%s vs. %s", entry, entry->event, event); return; } st_event = xml_to_event(blob->xml); crm_trace("Invoking callback for %p/%s event...", entry, event); entry->notify(blob->stonith, st_event); crm_trace("Callback invoked..."); event_free(st_event); } int stonith_send_command(stonith_t * stonith, const char *op, xmlNode * data, xmlNode ** output_data, int call_options, int timeout) { int rc = 0; int reply_id = -1; enum crm_ipc_flags ipc_flags = crm_ipc_client_none; xmlNode *op_msg = NULL; xmlNode *op_reply = NULL; stonith_private_t *native = stonith->private; if (stonith->state == stonith_disconnected) { return -ENOTCONN; } if (output_data != NULL) { *output_data = NULL; } if (op == NULL) { crm_err("No operation specified"); return -EINVAL; } if (call_options & st_opt_sync_call) { ipc_flags |= crm_ipc_client_response; } 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 -EINVAL; } crm_xml_add_int(op_msg, F_STONITH_TIMEOUT, timeout); crm_trace("Sending %s message to STONITH service, Timeout: %ds", op, timeout); rc = crm_ipc_send(native->ipc, op_msg, ipc_flags, 1000*(timeout + 60), &op_reply); free_xml(op_msg); if(rc < 0) { crm_perror(LOG_ERR, "Couldn't perform %s operation (timeout=%ds): %d", op, timeout, rc); rc = -ECOMM; goto done; } crm_log_xml_trace(op_reply, "Reply"); if (!(call_options & st_opt_sync_call)) { crm_trace("Async call %d, returning", stonith->call_id); CRM_CHECK(stonith->call_id != 0, return -EPROTO); free_xml(op_reply); return stonith->call_id; } rc = pcmk_ok; crm_element_value_int(op_reply, F_STONITH_CALLID, &reply_id); if (reply_id == stonith->call_id) { crm_trace("Syncronous reply %d received", reply_id); if (crm_element_value_int(op_reply, F_STONITH_RC, &rc) != 0) { rc = -ENOMSG; } if ((call_options & st_opt_discard_reply) || output_data == NULL) { crm_trace("Discarding reply"); } else { *output_data = op_reply; op_reply = NULL; /* Prevent subsequent free */ } } else if (reply_id <= 0) { crm_err("Recieved bad reply: No id set"); crm_log_xml_err(op_reply, "Bad reply"); free_xml(op_reply); rc = -ENOMSG; } else { crm_err("Recieved bad reply: %d (wanted %d)", reply_id, stonith->call_id); crm_log_xml_err(op_reply, "Old reply"); free_xml(op_reply); rc = -ENOMSG; } done: if (crm_ipc_connected(native->ipc) == FALSE) { crm_err("STONITH disconnected"); stonith->state = stonith_disconnected; } free_xml(op_reply); return rc; } /* Not used with mainloop */ bool stonith_dispatch(stonith_t * st) { gboolean stay_connected = TRUE; stonith_private_t *private = NULL; CRM_ASSERT(st != NULL); private = st->private; while(crm_ipc_ready(private->ipc)) { if(crm_ipc_read(private->ipc) > 0) { const char *msg = crm_ipc_buffer(private->ipc); stonith_dispatch_internal(msg, strlen(msg), st); } if(crm_ipc_connected(private->ipc) == FALSE) { crm_err("Connection closed"); stay_connected = FALSE; } } return stay_connected; } int stonith_dispatch_internal(const char *buffer, ssize_t length, gpointer userdata) { const char *type = NULL; struct notify_blob_s blob; stonith_t * st = userdata; stonith_private_t *private = NULL; CRM_ASSERT(st != NULL); private = st->private; blob.stonith = st; blob.xml = string2xml(buffer); if (blob.xml == NULL) { crm_warn("Received a NULL msg from STONITH service: %s.", buffer); return 0; } /* do callbacks */ type = crm_element_value(blob.xml, F_TYPE); crm_trace("Activating %s callbacks...", type); if (safe_str_eq(type, T_STONITH_NG)) { stonith_perform_callback(st, blob.xml, 0, 0); } else if (safe_str_eq(type, T_STONITH_NOTIFY)) { g_list_foreach(private->notify_list, stonith_send_notification, &blob); } else if (safe_str_eq(type, T_STONITH_TIMEOUT_VALUE)) { int call_id = 0; int timeout = 0; crm_element_value_int(blob.xml, F_STONITH_TIMEOUT, &timeout); crm_element_value_int(blob.xml, F_STONITH_CALLID, &call_id); update_callback_timeout(call_id, timeout, st); } else { crm_err("Unknown message type: %s", type); crm_log_xml_warn(blob.xml, "BadReply"); } free_xml(blob.xml); return 1; } static int stonith_api_free(stonith_t * stonith) { int rc = pcmk_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); free(private->token); free(stonith->private); free(stonith->cmds); free(stonith); } return rc; } void stonith_api_delete(stonith_t * stonith) { stonith_private_t *private = stonith->private; GList *list = private->notify_list; while (list != NULL) { stonith_notify_client_t *client = g_list_nth_data(list, 0); list = g_list_remove(list, client); free(client); } stonith->cmds->free(stonith); stonith = NULL; } stonith_t * stonith_api_new(void) { stonith_t *new_stonith = NULL; stonith_private_t *private = NULL; new_stonith = calloc(1, sizeof(stonith_t)); private = calloc(1, 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); private->notify_list = NULL; new_stonith->call_id = 1; new_stonith->state = stonith_disconnected; new_stonith->cmds = calloc(1, sizeof(stonith_api_operations_t)); /* *INDENT-OFF* */ new_stonith->cmds->free = stonith_api_free; new_stonith->cmds->connect = stonith_api_signon; new_stonith->cmds->disconnect = stonith_api_signoff; new_stonith->cmds->list = stonith_api_list; new_stonith->cmds->monitor = stonith_api_monitor; new_stonith->cmds->status = stonith_api_status; new_stonith->cmds->fence = stonith_api_fence; new_stonith->cmds->confirm = stonith_api_confirm; new_stonith->cmds->history = stonith_api_history; new_stonith->cmds->list_agents = stonith_api_device_list; 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_level = stonith_api_remove_level; new_stonith->cmds->register_level = stonith_api_register_level; 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; /* *INDENT-ON* */ return new_stonith; } stonith_key_value_t * stonith_key_value_add(stonith_key_value_t * head, const char *key, const char *value) { stonith_key_value_t *p, *end; p = calloc(1, sizeof(stonith_key_value_t)); if (key) { p->key = strdup(key); } if (value) { p->value = strdup(value); } end = head; while (end && end->next) { end = end->next; } if (end) { end->next = p; } else { head = p; } return head; } void stonith_key_value_freeall(stonith_key_value_t * head, int keys, int values) { stonith_key_value_t *p; while (head) { p = head->next; if (keys) { free(head->key); } if (values) { free(head->value); } free(head); head = p; } } int stonith_api_kick(int nodeid, const char *uname, int timeout, bool off) { char *name = NULL; const char *action = "reboot"; int rc = -EPROTO; stonith_t *st = NULL; enum stonith_call_options opts = st_opt_sync_call | st_opt_allow_suicide; st = stonith_api_new(); if (st) { rc = st->cmds->connect(st, "stonith-api", NULL); } if (uname != NULL) { name = strdup(uname); } else if (nodeid > 0) { opts |= st_opt_cs_nodeid; name = crm_itoa(nodeid); } if (off) { action = "off"; } if (rc == pcmk_ok) { rc = st->cmds->fence(st, opts, name, action, timeout, 0); } if (st) { st->cmds->disconnect(st); stonith_api_delete(st); } free(name); return rc; } time_t stonith_api_time(int nodeid, const char *uname, bool in_progress) { int rc = 0; char *name = NULL; time_t when = 0; time_t progress = 0; stonith_t *st = NULL; stonith_history_t *history, *hp = NULL; enum stonith_call_options opts = st_opt_sync_call; st = stonith_api_new(); if (st) { rc = st->cmds->connect(st, "stonith-api", NULL); } if (uname != NULL) { name = strdup(uname); } else if (nodeid > 0) { opts |= st_opt_cs_nodeid; name = crm_itoa(nodeid); } if (st && rc == pcmk_ok) { st->cmds->history(st, st_opt_sync_call | st_opt_cs_nodeid, name, &history, 120); for (hp = history; hp; hp = hp->next) { if (in_progress) { if (hp->state != st_done && hp->state != st_failed) { progress = time(NULL); } } else if (hp->state == st_done) { when = hp->completed; } } } if (progress) { when = progress; } if (st) { st->cmds->disconnect(st); stonith_api_delete(st); } free(name); return when; } #if HAVE_STONITH_STONITH_H #include const char *i_hate_pils(int rc); const char * i_hate_pils(int rc) { return PIL_strerror(rc); } #endif