1 #include "utils.hpp"
2
3 #include <libpldm/pdr.h>
4 #include <libpldm/pldm_types.h>
5 #include <linux/mctp.h>
6
7 #include <phosphor-logging/lg2.hpp>
8 #include <xyz/openbmc_project/Common/error.hpp>
9 #include <xyz/openbmc_project/Logging/Create/client.hpp>
10 #include <xyz/openbmc_project/ObjectMapper/client.hpp>
11
12 #include <algorithm>
13 #include <array>
14 #include <cctype>
15 #include <ctime>
16 #include <fstream>
17 #include <iostream>
18 #include <map>
19 #include <stdexcept>
20 #include <string>
21 #include <vector>
22
23 PHOSPHOR_LOG2_USING;
24
25 namespace pldm
26 {
27 namespace utils
28 {
29
findStateEffecterPDR(uint8_t,uint16_t entityID,uint16_t stateSetId,const pldm_pdr * repo)30 std::vector<std::vector<uint8_t>> findStateEffecterPDR(
31 uint8_t /*tid*/, uint16_t entityID, uint16_t stateSetId,
32 const pldm_pdr* repo)
33 {
34 uint8_t* outData = nullptr;
35 uint32_t size{};
36 const pldm_pdr_record* record{};
37 std::vector<std::vector<uint8_t>> pdrs;
38 try
39 {
40 do
41 {
42 record = pldm_pdr_find_record_by_type(repo, PLDM_STATE_EFFECTER_PDR,
43 record, &outData, &size);
44 if (record)
45 {
46 auto pdr = reinterpret_cast<pldm_state_effecter_pdr*>(outData);
47 auto compositeEffecterCount = pdr->composite_effecter_count;
48 auto possible_states_start = pdr->possible_states;
49
50 for (auto effecters = 0x00; effecters < compositeEffecterCount;
51 effecters++)
52 {
53 auto possibleStates =
54 reinterpret_cast<state_effecter_possible_states*>(
55 possible_states_start);
56 auto setId = possibleStates->state_set_id;
57 auto possibleStateSize =
58 possibleStates->possible_states_size;
59
60 if (pdr->entity_type == entityID && setId == stateSetId)
61 {
62 std::vector<uint8_t> effecter_pdr(&outData[0],
63 &outData[size]);
64 pdrs.emplace_back(std::move(effecter_pdr));
65 break;
66 }
67 possible_states_start += possibleStateSize + sizeof(setId) +
68 sizeof(possibleStateSize);
69 }
70 }
71
72 } while (record);
73 }
74 catch (const std::exception& e)
75 {
76 error("Failed to obtain a record, error - {ERROR}", "ERROR", e);
77 }
78
79 return pdrs;
80 }
81
findStateSensorPDR(uint8_t,uint16_t entityID,uint16_t stateSetId,const pldm_pdr * repo)82 std::vector<std::vector<uint8_t>> findStateSensorPDR(
83 uint8_t /*tid*/, uint16_t entityID, uint16_t stateSetId,
84 const pldm_pdr* repo)
85 {
86 uint8_t* outData = nullptr;
87 uint32_t size{};
88 const pldm_pdr_record* record{};
89 std::vector<std::vector<uint8_t>> pdrs;
90 try
91 {
92 do
93 {
94 record = pldm_pdr_find_record_by_type(repo, PLDM_STATE_SENSOR_PDR,
95 record, &outData, &size);
96 if (record)
97 {
98 auto pdr = reinterpret_cast<pldm_state_sensor_pdr*>(outData);
99 auto compositeSensorCount = pdr->composite_sensor_count;
100 auto possible_states_start = pdr->possible_states;
101
102 for (auto sensors = 0x00; sensors < compositeSensorCount;
103 sensors++)
104 {
105 auto possibleStates =
106 reinterpret_cast<state_sensor_possible_states*>(
107 possible_states_start);
108 auto setId = possibleStates->state_set_id;
109 auto possibleStateSize =
110 possibleStates->possible_states_size;
111
112 if (pdr->entity_type == entityID && setId == stateSetId)
113 {
114 std::vector<uint8_t> sensor_pdr(&outData[0],
115 &outData[size]);
116 pdrs.emplace_back(std::move(sensor_pdr));
117 break;
118 }
119 possible_states_start += possibleStateSize + sizeof(setId) +
120 sizeof(possibleStateSize);
121 }
122 }
123
124 } while (record);
125 }
126 catch (const std::exception& e)
127 {
128 error(
129 "Failed to obtain a record with entity ID '{ENTITYID}', error - {ERROR}",
130 "ENTITYID", entityID, "ERROR", e);
131 }
132
133 return pdrs;
134 }
135
readHostEID()136 uint8_t readHostEID()
137 {
138 uint8_t eid{};
139 std::ifstream eidFile{HOST_EID_PATH};
140 if (!eidFile.good())
141 {
142 error("Failed to open remote terminus EID file at path '{PATH}'",
143 "PATH", static_cast<std::string>(HOST_EID_PATH));
144 }
145 else
146 {
147 std::string eidStr;
148 eidFile >> eidStr;
149 if (!eidStr.empty())
150 {
151 eid = atoi(eidStr.c_str());
152 }
153 else
154 {
155 error("Remote terminus EID file was empty");
156 }
157 }
158
159 return eid;
160 }
161
isValidEID(eid mctpEid)162 bool isValidEID(eid mctpEid)
163 {
164 if (mctpEid == MCTP_ADDR_NULL || mctpEid < MCTP_START_VALID_EID ||
165 mctpEid == MCTP_ADDR_ANY)
166 {
167 return false;
168 }
169
170 return true;
171 }
172
getNumPadBytes(uint32_t data)173 uint8_t getNumPadBytes(uint32_t data)
174 {
175 uint8_t pad;
176 pad = ((data % 4) ? (4 - data % 4) : 0);
177 return pad;
178 } // end getNumPadBytes
179
uintToDate(uint64_t data,uint16_t * year,uint8_t * month,uint8_t * day,uint8_t * hour,uint8_t * min,uint8_t * sec)180 bool uintToDate(uint64_t data, uint16_t* year, uint8_t* month, uint8_t* day,
181 uint8_t* hour, uint8_t* min, uint8_t* sec)
182 {
183 constexpr uint64_t max_data = 29991231115959;
184 constexpr uint64_t min_data = 19700101000000;
185 if (data < min_data || data > max_data)
186 {
187 return false;
188 }
189
190 *year = data / 10000000000;
191 data = data % 10000000000;
192 *month = data / 100000000;
193 data = data % 100000000;
194 *day = data / 1000000;
195 data = data % 1000000;
196 *hour = data / 10000;
197 data = data % 10000;
198 *min = data / 100;
199 *sec = data % 100;
200
201 return true;
202 }
203
parseEffecterData(const std::vector<uint8_t> & effecterData,uint8_t effecterCount)204 std::optional<std::vector<set_effecter_state_field>> parseEffecterData(
205 const std::vector<uint8_t>& effecterData, uint8_t effecterCount)
206 {
207 std::vector<set_effecter_state_field> stateField;
208
209 if (effecterData.size() != effecterCount * 2)
210 {
211 return std::nullopt;
212 }
213
214 for (uint8_t i = 0; i < effecterCount; ++i)
215 {
216 uint8_t set_request = effecterData[i * 2] == PLDM_REQUEST_SET
217 ? PLDM_REQUEST_SET
218 : PLDM_NO_CHANGE;
219 set_effecter_state_field filed{set_request, effecterData[i * 2 + 1]};
220 stateField.emplace_back(std::move(filed));
221 }
222
223 return std::make_optional(std::move(stateField));
224 }
225
getService(const char * path,const char * interface) const226 std::string DBusHandler::getService(const char* path,
227 const char* interface) const
228 {
229 using DbusInterfaceList = std::vector<std::string>;
230 std::map<std::string, std::vector<std::string>> mapperResponse;
231 auto& bus = DBusHandler::getBus();
232
233 auto mapper = bus.new_method_call(ObjectMapper::default_service,
234 ObjectMapper::instance_path,
235 ObjectMapper::interface, "GetObject");
236
237 if (interface)
238 {
239 mapper.append(path, DbusInterfaceList({interface}));
240 }
241 else
242 {
243 mapper.append(path, DbusInterfaceList({}));
244 }
245
246 auto mapperResponseMsg = bus.call(mapper, dbusTimeout);
247 mapperResponseMsg.read(mapperResponse);
248 return mapperResponse.begin()->first;
249 }
250
getSubtree(const std::string & searchPath,int depth,const std::vector<std::string> & ifaceList) const251 GetSubTreeResponse DBusHandler::getSubtree(
252 const std::string& searchPath, int depth,
253 const std::vector<std::string>& ifaceList) const
254 {
255 auto& bus = pldm::utils::DBusHandler::getBus();
256 auto method = bus.new_method_call(ObjectMapper::default_service,
257 ObjectMapper::instance_path,
258 ObjectMapper::interface, "GetSubTree");
259 method.append(searchPath, depth, ifaceList);
260 auto reply = bus.call(method, dbusTimeout);
261 GetSubTreeResponse response;
262 reply.read(response);
263 return response;
264 }
265
getSubTreePaths(const std::string & objectPath,int depth,const std::vector<std::string> & ifaceList) const266 GetSubTreePathsResponse DBusHandler::getSubTreePaths(
267 const std::string& objectPath, int depth,
268 const std::vector<std::string>& ifaceList) const
269 {
270 std::vector<std::string> paths;
271 auto& bus = pldm::utils::DBusHandler::getBus();
272 auto method = bus.new_method_call(
273 ObjectMapper::default_service, ObjectMapper::instance_path,
274 ObjectMapper::interface, "GetSubTreePaths");
275 method.append(objectPath, depth, ifaceList);
276 auto reply = bus.call(method, dbusTimeout);
277
278 reply.read(paths);
279 return paths;
280 }
281
getAncestors(const std::string & path,const std::vector<std::string> & ifaceList) const282 GetAncestorsResponse DBusHandler::getAncestors(
283 const std::string& path, const std::vector<std::string>& ifaceList) const
284 {
285 auto& bus = pldm::utils::DBusHandler::getBus();
286 auto method = bus.new_method_call(ObjectMapper::default_service,
287 ObjectMapper::instance_path,
288 ObjectMapper::interface, "GetAncestors");
289 method.append(path, ifaceList);
290 auto reply = bus.call(method, dbusTimeout);
291 GetAncestorsResponse response;
292 reply.read(response);
293 return response;
294 }
295
reportError(const char * errorMsg)296 void reportError(const char* errorMsg)
297 {
298 auto& bus = pldm::utils::DBusHandler::getBus();
299 using LoggingCreate =
300 sdbusplus::client::xyz::openbmc_project::logging::Create<>;
301 try
302 {
303 using namespace sdbusplus::xyz::openbmc_project::Logging::server;
304 auto severity =
305 sdbusplus::xyz::openbmc_project::Logging::server::convertForMessage(
306 sdbusplus::xyz::openbmc_project::Logging::server::Entry::Level::
307 Error);
308 auto method = bus.new_method_call(LoggingCreate::default_service,
309 LoggingCreate::instance_path,
310 LoggingCreate::interface, "Create");
311
312 std::map<std::string, std::string> addlData{};
313 method.append(errorMsg, severity, addlData);
314 bus.call_noreply(method, dbusTimeout);
315 }
316 catch (const std::exception& e)
317 {
318 error(
319 "Failed to do dbus call for creating error log for '{ERRMSG}' at path '{PATH}' and interface '{INTERFACE}', error - {ERROR}",
320 "ERRMSG", errorMsg, "PATH", LoggingCreate::instance_path,
321 "INTERFACE", LoggingCreate::interface, "ERROR", e);
322 }
323 }
324
setDbusProperty(const DBusMapping & dBusMap,const PropertyValue & value) const325 void DBusHandler::setDbusProperty(const DBusMapping& dBusMap,
326 const PropertyValue& value) const
327 {
328 auto setDbusValue = [&dBusMap, this](const auto& variant) {
329 auto& bus = getBus();
330 auto service =
331 getService(dBusMap.objectPath.c_str(), dBusMap.interface.c_str());
332 auto method = bus.new_method_call(
333 service.c_str(), dBusMap.objectPath.c_str(), dbusProperties, "Set");
334 method.append(dBusMap.interface.c_str(), dBusMap.propertyName.c_str(),
335 variant);
336 bus.call_noreply(method, dbusTimeout);
337 };
338
339 if (dBusMap.propertyType == "uint8_t")
340 {
341 std::variant<uint8_t> v = std::get<uint8_t>(value);
342 setDbusValue(v);
343 }
344 else if (dBusMap.propertyType == "bool")
345 {
346 std::variant<bool> v = std::get<bool>(value);
347 setDbusValue(v);
348 }
349 else if (dBusMap.propertyType == "int16_t")
350 {
351 std::variant<int16_t> v = std::get<int16_t>(value);
352 setDbusValue(v);
353 }
354 else if (dBusMap.propertyType == "uint16_t")
355 {
356 std::variant<uint16_t> v = std::get<uint16_t>(value);
357 setDbusValue(v);
358 }
359 else if (dBusMap.propertyType == "int32_t")
360 {
361 std::variant<int32_t> v = std::get<int32_t>(value);
362 setDbusValue(v);
363 }
364 else if (dBusMap.propertyType == "uint32_t")
365 {
366 std::variant<uint32_t> v = std::get<uint32_t>(value);
367 setDbusValue(v);
368 }
369 else if (dBusMap.propertyType == "int64_t")
370 {
371 std::variant<int64_t> v = std::get<int64_t>(value);
372 setDbusValue(v);
373 }
374 else if (dBusMap.propertyType == "uint64_t")
375 {
376 std::variant<uint64_t> v = std::get<uint64_t>(value);
377 setDbusValue(v);
378 }
379 else if (dBusMap.propertyType == "double")
380 {
381 std::variant<double> v = std::get<double>(value);
382 setDbusValue(v);
383 }
384 else if (dBusMap.propertyType == "string")
385 {
386 std::variant<std::string> v = std::get<std::string>(value);
387 setDbusValue(v);
388 }
389 else
390 {
391 error("Unsupported property type '{TYPE}'", "TYPE",
392 dBusMap.propertyType);
393 throw std::invalid_argument("UnSupported Dbus Type");
394 }
395 }
396
getDbusPropertyVariant(const char * objPath,const char * dbusProp,const char * dbusInterface) const397 PropertyValue DBusHandler::getDbusPropertyVariant(
398 const char* objPath, const char* dbusProp, const char* dbusInterface) const
399 {
400 auto& bus = DBusHandler::getBus();
401 auto service = getService(objPath, dbusInterface);
402 auto method =
403 bus.new_method_call(service.c_str(), objPath, dbusProperties, "Get");
404 method.append(dbusInterface, dbusProp);
405 return bus.call(method, dbusTimeout).unpack<PropertyValue>();
406 }
407
getManagedObj(const char * service,const char * rootPath)408 ObjectValueTree DBusHandler::getManagedObj(const char* service,
409 const char* rootPath)
410 {
411 auto& bus = DBusHandler::getBus();
412 auto method = bus.new_method_call(service, rootPath,
413 "org.freedesktop.DBus.ObjectManager",
414 "GetManagedObjects");
415 return bus.call(method).unpack<ObjectValueTree>();
416 }
417
getDbusPropertiesVariant(const char * serviceName,const char * objPath,const char * dbusInterface) const418 PropertyMap DBusHandler::getDbusPropertiesVariant(
419 const char* serviceName, const char* objPath,
420 const char* dbusInterface) const
421 {
422 auto& bus = DBusHandler::getBus();
423 auto method =
424 bus.new_method_call(serviceName, objPath, dbusProperties, "GetAll");
425 method.append(dbusInterface);
426 return bus.call(method, dbusTimeout).unpack<PropertyMap>();
427 }
428
jsonEntryToDbusVal(std::string_view type,const nlohmann::json & value)429 PropertyValue jsonEntryToDbusVal(std::string_view type,
430 const nlohmann::json& value)
431 {
432 PropertyValue propValue{};
433 if (type == "uint8_t")
434 {
435 propValue = static_cast<uint8_t>(value);
436 }
437 else if (type == "uint16_t")
438 {
439 propValue = static_cast<uint16_t>(value);
440 }
441 else if (type == "uint32_t")
442 {
443 propValue = static_cast<uint32_t>(value);
444 }
445 else if (type == "uint64_t")
446 {
447 propValue = static_cast<uint64_t>(value);
448 }
449 else if (type == "int16_t")
450 {
451 propValue = static_cast<int16_t>(value);
452 }
453 else if (type == "int32_t")
454 {
455 propValue = static_cast<int32_t>(value);
456 }
457 else if (type == "int64_t")
458 {
459 propValue = static_cast<int64_t>(value);
460 }
461 else if (type == "bool")
462 {
463 propValue = static_cast<bool>(value);
464 }
465 else if (type == "double")
466 {
467 propValue = static_cast<double>(value);
468 }
469 else if (type == "string")
470 {
471 propValue = static_cast<std::string>(value);
472 }
473 else
474 {
475 error("Unknown D-Bus property type '{TYPE}'", "TYPE", type);
476 }
477
478 return propValue;
479 }
480
findStateEffecterId(const pldm_pdr * pdrRepo,uint16_t entityType,uint16_t entityInstance,uint16_t containerId,uint16_t stateSetId,bool localOrRemote)481 uint16_t findStateEffecterId(const pldm_pdr* pdrRepo, uint16_t entityType,
482 uint16_t entityInstance, uint16_t containerId,
483 uint16_t stateSetId, bool localOrRemote)
484 {
485 uint8_t* pdrData = nullptr;
486 uint32_t pdrSize{};
487 const pldm_pdr_record* record{};
488 do
489 {
490 record = pldm_pdr_find_record_by_type(pdrRepo, PLDM_STATE_EFFECTER_PDR,
491 record, &pdrData, &pdrSize);
492 if (record && (localOrRemote ^ pldm_pdr_record_is_remote(record)))
493 {
494 auto pdr = reinterpret_cast<pldm_state_effecter_pdr*>(pdrData);
495 auto compositeEffecterCount = pdr->composite_effecter_count;
496 auto possible_states_start = pdr->possible_states;
497
498 for (auto effecters = 0x00; effecters < compositeEffecterCount;
499 effecters++)
500 {
501 auto possibleStates =
502 reinterpret_cast<state_effecter_possible_states*>(
503 possible_states_start);
504 auto setId = possibleStates->state_set_id;
505 auto possibleStateSize = possibleStates->possible_states_size;
506
507 if (entityType == pdr->entity_type &&
508 entityInstance == pdr->entity_instance &&
509 containerId == pdr->container_id && stateSetId == setId)
510 {
511 return pdr->effecter_id;
512 }
513 possible_states_start += possibleStateSize + sizeof(setId) +
514 sizeof(possibleStateSize);
515 }
516 }
517 } while (record);
518
519 return PLDM_INVALID_EFFECTER_ID;
520 }
521
emitStateSensorEventSignal(uint8_t tid,uint16_t sensorId,uint8_t sensorOffset,uint8_t eventState,uint8_t previousEventState)522 int emitStateSensorEventSignal(uint8_t tid, uint16_t sensorId,
523 uint8_t sensorOffset, uint8_t eventState,
524 uint8_t previousEventState)
525 {
526 try
527 {
528 auto& bus = DBusHandler::getBus();
529 auto msg = bus.new_signal("/xyz/openbmc_project/pldm",
530 "xyz.openbmc_project.PLDM.Event",
531 "StateSensorEvent");
532 msg.append(tid, sensorId, sensorOffset, eventState, previousEventState);
533
534 msg.signal_send();
535 }
536 catch (const std::exception& e)
537 {
538 error("Failed to emit pldm event signal, error - {ERROR}", "ERROR", e);
539 return PLDM_ERROR;
540 }
541
542 return PLDM_SUCCESS;
543 }
544
findStateSensorId(const pldm_pdr * pdrRepo,uint8_t tid,uint16_t entityType,uint16_t entityInstance,uint16_t containerId,uint16_t stateSetId)545 uint16_t findStateSensorId(const pldm_pdr* pdrRepo, uint8_t tid,
546 uint16_t entityType, uint16_t entityInstance,
547 uint16_t containerId, uint16_t stateSetId)
548 {
549 auto pdrs = findStateSensorPDR(tid, entityType, stateSetId, pdrRepo);
550 for (auto pdr : pdrs)
551 {
552 auto sensorPdr = reinterpret_cast<pldm_state_sensor_pdr*>(pdr.data());
553 auto compositeSensorCount = sensorPdr->composite_sensor_count;
554 auto possible_states_start = sensorPdr->possible_states;
555
556 for (auto sensors = 0x00; sensors < compositeSensorCount; sensors++)
557 {
558 auto possibleStates =
559 reinterpret_cast<state_sensor_possible_states*>(
560 possible_states_start);
561 auto setId = possibleStates->state_set_id;
562 auto possibleStateSize = possibleStates->possible_states_size;
563 if (entityType == sensorPdr->entity_type &&
564 entityInstance == sensorPdr->entity_instance &&
565 stateSetId == setId && containerId == sensorPdr->container_id)
566 {
567 return sensorPdr->sensor_id;
568 }
569 possible_states_start +=
570 possibleStateSize + sizeof(setId) + sizeof(possibleStateSize);
571 }
572 }
573 return PLDM_INVALID_EFFECTER_ID;
574 }
575
printBuffer(bool isTx,const std::vector<uint8_t> & buffer)576 void printBuffer(bool isTx, const std::vector<uint8_t>& buffer)
577 {
578 if (buffer.empty())
579 {
580 return;
581 }
582
583 std::cout << (isTx ? "Tx: " : "Rx: ");
584
585 std::ranges::for_each(buffer, [](uint8_t byte) {
586 std::cout << std::format("{:02x} ", byte);
587 });
588
589 std::cout << std::endl;
590 }
591
toString(const struct variable_field & var)592 std::string toString(const struct variable_field& var)
593 {
594 if (var.ptr == nullptr || !var.length)
595 {
596 return "";
597 }
598
599 std::string str(reinterpret_cast<const char*>(var.ptr), var.length);
600 std::replace_if(
601 str.begin(), str.end(), [](const char& c) { return !isprint(c); }, ' ');
602 return str;
603 }
604
split(std::string_view srcStr,std::string_view delim,std::string_view trimStr)605 std::vector<std::string> split(std::string_view srcStr, std::string_view delim,
606 std::string_view trimStr)
607 {
608 std::vector<std::string> out;
609 size_t start;
610 size_t end = 0;
611
612 while ((start = srcStr.find_first_not_of(delim, end)) != std::string::npos)
613 {
614 end = srcStr.find(delim, start);
615 std::string_view dstStr = srcStr.substr(start, end - start);
616 if (!trimStr.empty())
617 {
618 dstStr.remove_prefix(dstStr.find_first_not_of(trimStr));
619 dstStr.remove_suffix(
620 dstStr.size() - 1 - dstStr.find_last_not_of(trimStr));
621 }
622
623 if (!dstStr.empty())
624 {
625 out.push_back(std::string(dstStr));
626 }
627 }
628
629 return out;
630 }
631
getCurrentSystemTime()632 std::string getCurrentSystemTime()
633 {
634 const auto zonedTime{std::chrono::zoned_time{
635 std::chrono::current_zone(), std::chrono::system_clock::now()}};
636 return std::format("{:%F %Z %T}", zonedTime);
637 }
638
checkForFruPresence(const std::string & objPath)639 bool checkForFruPresence(const std::string& objPath)
640 {
641 bool isPresent = false;
642 static constexpr auto presentInterface =
643 "xyz.openbmc_project.Inventory.Item";
644 static constexpr auto presentProperty = "Present";
645 try
646 {
647 auto propVal = pldm::utils::DBusHandler().getDbusPropertyVariant(
648 objPath.c_str(), presentProperty, presentInterface);
649 isPresent = std::get<bool>(propVal);
650 }
651 catch (const sdbusplus::exception::SdBusError& e)
652 {
653 error("Failed to check for FRU presence at {PATH}, error - {ERROR}",
654 "PATH", objPath, "ERROR", e);
655 }
656 return isPresent;
657 }
658
checkIfLogicalBitSet(const uint16_t & containerId)659 bool checkIfLogicalBitSet(const uint16_t& containerId)
660 {
661 return !(containerId & 0x8000);
662 }
663
setFruPresence(const std::string & fruObjPath,bool present)664 void setFruPresence(const std::string& fruObjPath, bool present)
665 {
666 pldm::utils::PropertyValue value{present};
667 pldm::utils::DBusMapping dbusMapping;
668 dbusMapping.objectPath = fruObjPath;
669 dbusMapping.interface = "xyz.openbmc_project.Inventory.Item";
670 dbusMapping.propertyName = "Present";
671 dbusMapping.propertyType = "bool";
672 try
673 {
674 pldm::utils::DBusHandler().setDbusProperty(dbusMapping, value);
675 }
676 catch (const std::exception& e)
677 {
678 error(
679 "Failed to set the present property on path '{PATH}', error - {ERROR}.",
680 "PATH", fruObjPath, "ERROR", e);
681 }
682 }
683
trimNameForDbus(std::string & name)684 std::string_view trimNameForDbus(std::string& name)
685 {
686 std::replace(name.begin(), name.end(), ' ', '_');
687 auto nullTerminatorPos = name.find('\0');
688 if (nullTerminatorPos != std::string::npos)
689 {
690 name.erase(nullTerminatorPos);
691 }
692 return name;
693 }
694
dbusPropValuesToDouble(const std::string_view & type,const pldm::utils::PropertyValue & value,double * doubleValue)695 bool dbusPropValuesToDouble(const std::string_view& type,
696 const pldm::utils::PropertyValue& value,
697 double* doubleValue)
698 {
699 if (!dbusValueNumericTypeNames.contains(type))
700 {
701 return false;
702 }
703
704 if (!doubleValue)
705 {
706 return false;
707 }
708
709 try
710 {
711 if (type == "uint8_t")
712 {
713 *doubleValue = static_cast<double>(std::get<uint8_t>(value));
714 }
715 else if (type == "int16_t")
716 {
717 *doubleValue = static_cast<double>(std::get<int16_t>(value));
718 }
719 else if (type == "uint16_t")
720 {
721 *doubleValue = static_cast<double>(std::get<uint16_t>(value));
722 }
723 else if (type == "int32_t")
724 {
725 *doubleValue = static_cast<double>(std::get<int32_t>(value));
726 }
727 else if (type == "uint32_t")
728 {
729 *doubleValue = static_cast<double>(std::get<uint32_t>(value));
730 }
731 else if (type == "int64_t")
732 {
733 *doubleValue = static_cast<double>(std::get<int64_t>(value));
734 }
735 else if (type == "uint64_t")
736 {
737 *doubleValue = static_cast<double>(std::get<uint64_t>(value));
738 }
739 else if (type == "double")
740 {
741 *doubleValue = static_cast<double>(std::get<double>(value));
742 }
743 else
744 {
745 return false;
746 }
747 }
748 catch (const std::exception& e)
749 {
750 return false;
751 }
752
753 return true;
754 }
755
fruFieldValuestring(const uint8_t * value,const uint8_t & length)756 std::optional<std::string> fruFieldValuestring(const uint8_t* value,
757 const uint8_t& length)
758 {
759 if (!value || !length)
760 {
761 lg2::error("Fru data to string invalid data.");
762 return std::nullopt;
763 }
764
765 return std::string(reinterpret_cast<const char*>(value), length);
766 }
767
fruFieldParserU32(const uint8_t * value,const uint8_t & length)768 std::optional<uint32_t> fruFieldParserU32(const uint8_t* value,
769 const uint8_t& length)
770 {
771 if (!value || length != sizeof(uint32_t))
772 {
773 lg2::error("Fru data to u32 invalid data.");
774 return std::nullopt;
775 }
776
777 uint32_t ret;
778 std::memcpy(&ret, value, length);
779 return ret;
780 }
781
782 } // namespace utils
783 } // namespace pldm
784