xref: /openbmc/openpower-hw-diags/util/dbus.cpp (revision 1ff926e0)
1 #include <fmt/format.h>
2 
3 #include <util/dbus.hpp>
4 #include <util/trace.hpp>
5 #include <xyz/openbmc_project/State/Boot/Progress/server.hpp>
6 
7 namespace util
8 {
9 namespace dbus
10 {
11 //------------------------------------------------------------------------------
12 
13 constexpr auto objectMapperService   = "xyz.openbmc_project.ObjectMapper";
14 constexpr auto objectMapperPath      = "/xyz/openbmc_project/object_mapper";
15 constexpr auto objectMapperInterface = "xyz.openbmc_project.ObjectMapper";
16 
17 constexpr uint8_t terminusIdZero = 0;
18 
19 /** @brief Find the path and service that implements the given interface */
20 int find(const std::string& i_interface, std::string& o_path,
21          std::string& o_service)
22 {
23     int rc = 1; // assume not success
24 
25     auto bus = sdbusplus::bus::new_default();
26 
27     try
28     {
29         constexpr auto function = "GetSubTree";
30 
31         auto method = bus.new_method_call(objectMapperService, objectMapperPath,
32                                           objectMapperInterface, function);
33 
34         // Search the entire dbus tree for the specified interface
35         method.append(std::string{"/"}, 0,
36                       std::vector<std::string>{i_interface});
37 
38         auto reply = bus.call(method);
39 
40         DBusSubTree response;
41         reply.read(response);
42 
43         if (!response.empty())
44         {
45             // Response is a map of object paths to a map of service, interfaces
46             auto object = *(response.begin());
47             o_path      = object.first;                 // return path
48             o_service   = object.second.begin()->first; // return service
49 
50             rc = 0; // success
51         }
52     }
53     catch (const sdbusplus::exception::SdBusError& e)
54     {
55         trace::err("util::dbus::find exception");
56         std::string traceMsg = std::string(e.what());
57         trace::err(traceMsg.c_str());
58     }
59 
60     return rc;
61 }
62 
63 /** @brief Find the service that implements the given object and interface */
64 int findService(const std::string& i_interface, const std::string& i_path,
65                 std::string& o_service)
66 {
67     int rc = 1; // assume not success
68 
69     auto bus = sdbusplus::bus::new_default();
70 
71     try
72     {
73         constexpr auto function = "GetObject";
74 
75         auto method = bus.new_method_call(objectMapperService, objectMapperPath,
76                                           objectMapperInterface, function);
77 
78         // Find services that implement the object path, constrain the search
79         // to the given interface.
80         method.append(i_path, std::vector<std::string>{i_interface});
81 
82         auto reply = bus.call(method);
83 
84         // response is a map of service names to their interfaces
85         std::map<DBusService, DBusInterfaceList> response;
86         reply.read(response);
87 
88         if (!response.empty())
89         {
90             // return the service
91             o_service = response.begin()->first;
92 
93             rc = 0; // success
94         }
95     }
96     catch (const sdbusplus::exception::SdBusError& e)
97     {
98         trace::err("util::dbus::map exception");
99         std::string traceMsg = std::string(e.what());
100         trace::err(traceMsg.c_str());
101     }
102 
103     return rc;
104 }
105 
106 /** @brief Read a property from a dbus object interface */
107 int getProperty(const std::string& i_interface, const std::string& i_path,
108                 const std::string& i_service, const std::string& i_property,
109                 DBusValue& o_response)
110 {
111     int rc = 1; // assume not success
112 
113     auto bus = sdbusplus::bus::new_default();
114 
115     try
116     {
117         constexpr auto interface = "org.freedesktop.DBus.Properties";
118         constexpr auto function  = "Get";
119 
120         // calling the get property method
121         auto method = bus.new_method_call(i_service.c_str(), i_path.c_str(),
122                                           interface, function);
123 
124         method.append(i_interface, i_property);
125         auto reply = bus.call(method);
126 
127         // returning the property value
128         reply.read(o_response);
129 
130         rc = 0; // success
131     }
132     catch (const sdbusplus::exception::SdBusError& e)
133     {
134         trace::err("util::dbus::getProperty exception");
135         std::string traceMsg = std::string(e.what());
136         trace::err(traceMsg.c_str());
137     }
138 
139     return rc;
140 }
141 
142 /** @brief Get the IBM compatible names defined for this system */
143 std::vector<std::string> systemNames()
144 {
145     std::vector<std::string> names;
146 
147     constexpr auto interface =
148         "xyz.openbmc_project.Configuration.IBMCompatibleSystem";
149 
150     DBusService service;
151     DBusPath path;
152 
153     // find a dbus object and path that implements the interface
154     if (0 == find(interface, path, service))
155     {
156         DBusValue value;
157 
158         // compatible system names are implemented as a property
159         constexpr auto property = "Names";
160 
161         if (0 == getProperty(interface, path, service, property, value))
162         {
163             // return value is a variant, names are in the vector
164             names = std::get<std::vector<std::string>>(value);
165         }
166     }
167 
168     return names;
169 }
170 
171 /** @brief Transition the host state */
172 void transitionHost(const HostState i_hostState)
173 {
174     try
175     {
176         // We will be transitioning host by starting appropriate dbus target
177         std::string target = "obmc-host-quiesce@0.target"; // quiesce is default
178 
179         // crash (mpipl) mode state requested
180         if (HostState::Crash == i_hostState)
181         {
182             target = "obmc-host-crash@0.target";
183         }
184 
185         // If the system is powering off for any reason (ex. we hit a PHYP TI
186         // in the graceful power off path), then we want to call the immediate
187         // power off target
188         if (hostRunningState() == HostRunningState::Stopping)
189         {
190             trace::inf("system is powering off so no dump will be requested");
191             target = "obmc-chassis-hard-poweroff@0.target";
192         }
193 
194         auto bus    = sdbusplus::bus::new_system();
195         auto method = bus.new_method_call(
196             "org.freedesktop.systemd1", "/org/freedesktop/systemd1",
197             "org.freedesktop.systemd1.Manager", "StartUnit");
198 
199         method.append(target);    // target unit to start
200         method.append("replace"); // mode = replace conflicting queued jobs
201 
202         bus.call_noreply(method); // start the service
203     }
204     catch (const sdbusplus::exception::SdBusError& e)
205     {
206         trace::err("util::dbus::transitionHost exception");
207         std::string traceMsg = std::string(e.what());
208         trace::err(traceMsg.c_str());
209     }
210 }
211 
212 /** @brief Read state of autoRebootEnabled property via dbus */
213 bool autoRebootEnabled()
214 {
215     // Assume true in case autoRebootEnbabled property is not available
216     bool autoReboot = true;
217 
218     constexpr auto interface = "xyz.openbmc_project.Control.Boot.RebootPolicy";
219 
220     DBusService service; // will find this
221     DBusPath path;       // will find this
222 
223     // find a dbus object and path that implements the interface
224     if (0 == find(interface, path, service))
225     {
226         DBusValue value;
227 
228         // autoreboot policy is implemented as a property
229         constexpr auto property = "AutoReboot";
230 
231         if (0 == getProperty(interface, path, service, property, value))
232         {
233             // return value is a variant, autoreboot policy is boolean
234             autoReboot = std::get<bool>(value);
235         }
236     }
237 
238     return autoReboot;
239 }
240 
241 /** @brief Get the running state of the host */
242 HostRunningState hostRunningState()
243 {
244     // assume not able to get host running state
245     HostRunningState host = HostRunningState::Unknown;
246 
247     constexpr auto interface = "xyz.openbmc_project.State.Boot.Progress";
248 
249     DBusService service;
250     DBusPath path;
251 
252     // find a dbus object and path that implements the interface
253     if (0 == find(interface, path, service))
254     {
255         DBusValue value;
256 
257         // boot progress is implemented as a property
258         constexpr auto property = "BootProgress";
259 
260         if (0 == getProperty(interface, path, service, property, value))
261         {
262             // return value is a variant, progress is in the vector of strings
263             std::string bootProgress(std::get<std::string>(value));
264 
265             // convert boot progress to host state
266             using BootProgress = sdbusplus::xyz::openbmc_project::State::Boot::
267                 server::Progress::ProgressStages;
268 
269             BootProgress stage = sdbusplus::xyz::openbmc_project::State::Boot::
270                 server::Progress::convertProgressStagesFromString(bootProgress);
271 
272             if ((stage == BootProgress::SystemInitComplete) ||
273                 (stage == BootProgress::OSStart) ||
274                 (stage == BootProgress::OSRunning))
275             {
276                 host = HostRunningState::Started;
277             }
278             else
279             {
280                 host = HostRunningState::NotStarted;
281             }
282         }
283     }
284 
285     // See if host in process of powering off when we get NotStarted
286     if (host == HostRunningState::NotStarted)
287     {
288         constexpr auto hostStateInterface = "xyz.openbmc_project.State.Host";
289         if (0 == find(hostStateInterface, path, service))
290         {
291             DBusValue value;
292 
293             // current host state is implemented as a property
294             constexpr auto stateProperty = "CurrentHostState";
295 
296             if (0 == getProperty(hostStateInterface, path, service,
297                                  stateProperty, value))
298             {
299                 // return value is a variant, host state is in the vector of
300                 // strings
301                 std::string hostState(std::get<std::string>(value));
302                 if (hostState == "xyz.openbmc_project.State.Host.HostState."
303                                  "TransitioningToOff")
304                 {
305                     host = HostRunningState::Stopping;
306                 }
307             }
308         }
309     }
310 
311     return host;
312 }
313 
314 /** @brief Read state of dumpPolicyEnabled property via dbus */
315 bool dumpPolicyEnabled()
316 {
317     // Assume true In case dumpPolicyEnabled property is not available
318     bool dumpPolicyEnabled = true;
319 
320     constexpr auto interface = "xyz.openbmc_project.Object.Enable";
321     constexpr auto path      = "/xyz/openbmc_project/dump/system_dump_policy";
322 
323     DBusService service; // will find this
324 
325     // find a dbus object and path that implements the interface
326     if (0 == findService(interface, path, service))
327     {
328         DBusValue value;
329 
330         // autoreboot policy is implemented as a property
331         constexpr auto property = "Enabled";
332 
333         if (0 == getProperty(interface, path, service, property, value))
334         {
335             // return value is a variant, dump policy enabled is a boolean
336             dumpPolicyEnabled = std::get<bool>(value);
337         }
338     }
339 
340     return dumpPolicyEnabled;
341 }
342 
343 /** @brief Create a PEL */
344 uint32_t createPel(const std::string& i_message, const std::string& i_severity,
345                    std::map<std::string, std::string>& io_additional,
346                    const std::vector<util::FFDCTuple>& i_ffdc)
347 {
348     // CreatePELWithFFDCFiles returns plid
349     int plid = 0;
350 
351     // Sdbus call specifics
352     constexpr auto interface = "org.open_power.Logging.PEL";
353     constexpr auto path      = "/xyz/openbmc_project/logging";
354 
355     // we need to find the service implementing the interface
356     util::dbus::DBusService service;
357 
358     if (0 == findService(interface, path, service))
359     {
360         try
361         {
362             constexpr auto function = "CreatePELWithFFDCFiles";
363 
364             // The "Create" method requires manually adding the process ID.
365             io_additional["_PID"] = std::to_string(getpid());
366 
367             // create dbus method
368             auto bus = sdbusplus::bus::new_system();
369             sdbusplus::message_t method =
370                 bus.new_method_call(service.c_str(), path, interface, function);
371 
372             // append additional dbus call paramaters
373             method.append(i_message, i_severity, io_additional, i_ffdc);
374 
375             // using system dbus
376             auto response = bus.call(method);
377 
378             // reply will be tuple containing bmc log id, platform log id
379             std::tuple<uint32_t, uint32_t> reply = {0, 0};
380 
381             // parse dbus response into reply
382             response.read(reply);
383             plid = std::get<1>(reply); // platform log id is tuple "second"
384         }
385         catch (const sdbusplus::exception::SdBusError& e)
386         {
387             trace::err("createPel exception");
388             trace::err(e.what());
389         }
390     }
391 
392     return plid; // platform log id or 0
393 }
394 
395 MachineType getMachineType()
396 {
397     // default to Rainier 2S4U
398     MachineType machineType = MachineType::Rainier_2S4U;
399 
400     // The return value of the dbus operation is a vector of 4 uint8_ts
401     std::vector<uint8_t> ids;
402 
403     constexpr auto interface = "com.ibm.ipzvpd.VSBP";
404 
405     DBusService service;
406     DBusPath path;
407 
408     if (0 == find(interface, path, service))
409     {
410         DBusValue value;
411 
412         // Machine ID is given from the "IM" keyword
413         constexpr auto property = "IM";
414 
415         if (0 == getProperty(interface, path, service, property, value))
416         {
417             // return value is a variant, ID value is a vector of 4 uint8_ts
418             ids = std::get<std::vector<uint8_t>>(value);
419 
420             // Convert the returned ID value to a hex string to determine
421             // machine type. The hex values corresponding to the machine type
422             // are defined in /openbmc/openpower-vpd-parser/const.hpp
423             // RAINIER_2S4U == 0x50001000
424             // RAINIER_2S2U == 0x50001001
425             // RAINIER_1S4U == 0x50001002
426             // RAINIER_1S2U == 0x50001003
427             // EVEREST      == 0x50003000
428             try
429             {
430                 // Format the vector into a single hex string to compare to.
431                 std::string hexId =
432                     fmt::format("0x{:02x}{:02x}{:02x}{:02x}", ids.at(0),
433                                 ids.at(1), ids.at(2), ids.at(3));
434 
435                 std::map<std::string, MachineType> typeMap = {
436                     {"0x50001000", MachineType::Rainier_2S4U},
437                     {"0x50001001", MachineType::Rainier_2S2U},
438                     {"0x50001002", MachineType::Rainier_1S4U},
439                     {"0x50001003", MachineType::Rainier_1S2U},
440                     {"0x50003000", MachineType::Everest},
441                 };
442 
443                 machineType = typeMap.at(hexId);
444             }
445             catch (const std::out_of_range& e)
446             {
447                 trace::err("Out of range exception caught from returned "
448                            "machine ID.");
449                 for (const auto& id : ids)
450                 {
451                     trace::err("Returned Machine ID value: 0x%x", id);
452                 }
453                 throw;
454             }
455         }
456     }
457     else
458     {
459         throw std::invalid_argument(
460             "Unable to find dbus service to get machine type.");
461     }
462 
463     return machineType;
464 }
465 
466 /** @brief Get list of state effecter PDRs */
467 bool getStateEffecterPdrs(std::vector<std::vector<uint8_t>>& pdrList,
468                           uint16_t stateSetId)
469 {
470     constexpr auto service   = "xyz.openbmc_project.PLDM";
471     constexpr auto path      = "/xyz/openbmc_project/pldm";
472     constexpr auto interface = "xyz.openbmc_project.PLDM.PDR";
473     constexpr auto function  = "FindStateEffecterPDR";
474 
475     constexpr uint16_t PLDM_ENTITY_PROC = 135;
476 
477     try
478     {
479         // create dbus method
480         auto bus = sdbusplus::bus::new_default();
481         sdbusplus::message_t method =
482             bus.new_method_call(service, path, interface, function);
483 
484         // append additional method data
485         method.append(terminusIdZero, PLDM_ENTITY_PROC, stateSetId);
486 
487         // request PDRs
488         auto reply = bus.call(method);
489         reply.read(pdrList);
490     }
491     catch (const sdbusplus::exception_t& e)
492     {
493         trace::err("failed to find state effecter PDRs");
494         trace::err(e.what());
495         return false;
496     }
497 
498     return true;
499 }
500 
501 /** @brief Get list of state sensor PDRs */
502 bool getStateSensorPdrs(std::vector<std::vector<uint8_t>>& pdrList,
503                         uint16_t stateSetId)
504 {
505     constexpr auto service   = "xyz.openbmc_project.PLDM";
506     constexpr auto path      = "/xyz/openbmc_project/pldm";
507     constexpr auto interface = "xyz.openbmc_project.PLDM.PDR";
508     constexpr auto function  = "FindStateSensorPDR";
509 
510     constexpr uint16_t PLDM_ENTITY_PROC = 135;
511 
512     try
513     {
514         // create dbus method
515         auto bus = sdbusplus::bus::new_default();
516         sdbusplus::message_t method =
517             bus.new_method_call(service, path, interface, function);
518 
519         // append additional method data
520         method.append(terminusIdZero, PLDM_ENTITY_PROC, stateSetId);
521 
522         // request PDRs
523         auto reply = bus.call(method);
524         reply.read(pdrList);
525     }
526     catch (const sdbusplus::exception_t& e)
527     {
528         trace::err("failed to find state sensor PDRs");
529         trace::err(e.what());
530         return false;
531     }
532 
533     return true;
534 }
535 
536 /** @brief Get MCTP instance associated with endpoint */
537 bool getMctpInstance(uint8_t& mctpInstance, uint8_t Eid)
538 {
539     constexpr auto service   = "xyz.openbmc_project.PLDM";
540     constexpr auto path      = "/xyz/openbmc_project/pldm";
541     constexpr auto interface = "xyz.openbmc_project.PLDM.Requester";
542     constexpr auto function  = "GetInstanceId";
543 
544     try
545     {
546         // create dbus method
547         auto bus = sdbusplus::bus::new_default();
548         sdbusplus::message_t method =
549             bus.new_method_call(service, path, interface, function);
550 
551         // append endpoint ID
552         method.append(Eid);
553 
554         // request MCTP instance ID
555         auto reply = bus.call(method);
556         reply.read(mctpInstance);
557     }
558     catch (const sdbusplus::exception_t& e)
559     {
560         trace::err("get MCTP instance exception");
561         trace::err(e.what());
562         return false;
563     }
564 
565     return true;
566 }
567 
568 /** @brief Determine if power fault was detected */
569 bool powerFault()
570 {
571     // power fault based on pgood property
572     int32_t pgood = 0; // assume fault or unknown
573 
574     constexpr auto interface = "org.openbmc.control.Power";
575 
576     DBusService service;
577     DBusPath path;
578 
579     // find a dbus service and object path that implements the interface
580     if (0 == find(interface, path, service))
581     {
582         DBusValue value;
583 
584         // chassis pgood is implemented as a property
585         constexpr auto property = "pgood";
586 
587         if (0 == getProperty(interface, path, service, property, value))
588         {
589             // return value is a variant, int32 == 1 for pgood OK
590             pgood = std::get<int32_t>(value);
591         }
592     }
593 
594     return pgood != 1 ? true : false; // if not pgood then power fault
595 }
596 
597 } // namespace dbus
598 } // namespace util
599