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