xref: /openbmc/pldm/platform-mc/terminus.cpp (revision 2965f7da346fa3542a4d81a042cbb5a228cb46d6)
1 #include "terminus.hpp"
2 
3 #include "dbus_impl_fru.hpp"
4 #include "terminus_manager.hpp"
5 
6 #include <libpldm/platform.h>
7 
8 #include <common/utils.hpp>
9 
10 #include <ranges>
11 
12 namespace pldm
13 {
14 namespace platform_mc
15 {
16 
Terminus(pldm_tid_t tid,uint64_t supportedTypes,sdeventplus::Event & event)17 Terminus::Terminus(pldm_tid_t tid, uint64_t supportedTypes,
18                    sdeventplus::Event& event) :
19     initialized(false), maxBufferSize(PLDM_PLATFORM_EVENT_MSG_MAX_BUFFER_SIZE),
20     synchronyConfigurationSupported(0), pollEvent(false), tid(tid),
21     supportedTypes(supportedTypes), event(event)
22 {}
23 
doesSupportType(uint8_t type)24 bool Terminus::doesSupportType(uint8_t type)
25 {
26     return supportedTypes.test(type);
27 }
28 
doesSupportCommand(uint8_t type,uint8_t command)29 bool Terminus::doesSupportCommand(uint8_t type, uint8_t command)
30 {
31     if (!doesSupportType(type))
32     {
33         return false;
34     }
35 
36     try
37     {
38         const size_t idx = type * (PLDM_MAX_CMDS_PER_TYPE / 8) + (command / 8);
39         if (idx >= supportedCmds.size())
40         {
41             return false;
42         }
43 
44         if (supportedCmds[idx] & (1 << (command % 8)))
45         {
46             lg2::info(
47                 "PLDM type {TYPE} command {CMD} is supported by terminus {TID}",
48                 "TYPE", type, "CMD", command, "TID", getTid());
49             return true;
50         }
51     }
52     catch (const std::exception& e)
53     {
54         return false;
55     }
56 
57     return false;
58 }
59 
findTerminusName()60 std::optional<std::string_view> Terminus::findTerminusName()
61 {
62     auto it = std::find_if(
63         entityAuxiliaryNamesTbl.begin(), entityAuxiliaryNamesTbl.end(),
64         [](const std::shared_ptr<EntityAuxiliaryNames>& entityAuxiliaryNames) {
65             const auto& [key, entityNames] = *entityAuxiliaryNames;
66             /**
67              * There is only one Overall system container entity in one
68              * terminus. The entity auxiliary name PDR of that terminus with the
69              * that type of containerID will include terminus name.
70              */
71             return (
72                 entityAuxiliaryNames &&
73                 key.containerId == PLDM_PLATFORM_ENTITY_SYSTEM_CONTAINER_ID &&
74                 entityNames.size());
75         });
76 
77     if (it != entityAuxiliaryNamesTbl.end())
78     {
79         const auto& [key, entityNames] = **it;
80         if (!entityNames.size())
81         {
82             return std::nullopt;
83         }
84         return entityNames[0].second;
85     }
86 
87     return std::nullopt;
88 }
89 
createInventoryPath(std::string tName)90 bool Terminus::createInventoryPath(std::string tName)
91 {
92     if (tName.empty())
93     {
94         return false;
95     }
96 
97     /* inventory object is created */
98     if (inventoryItemBoardInft)
99     {
100         return false;
101     }
102 
103     inventoryPath = "/xyz/openbmc_project/inventory/system/board/" + tName;
104     try
105     {
106         inventoryItemBoardInft =
107             std::make_unique<pldm::dbus_api::PldmEntityReq>(
108                 utils::DBusHandler::getBus(), inventoryPath.c_str());
109         return true;
110     }
111     catch (const sdbusplus::exception_t& e)
112     {
113         lg2::error(
114             "Failed to create Inventory Board interface for device {PATH}",
115             "PATH", inventoryPath);
116     }
117 
118     return false;
119 }
120 
parseTerminusPDRs()121 void Terminus::parseTerminusPDRs()
122 {
123     for (auto& pdr : pdrs)
124     {
125         auto pdrHdr = new (pdr.data()) pldm_pdr_hdr;
126         switch (pdrHdr->type)
127         {
128             case PLDM_SENSOR_AUXILIARY_NAMES_PDR:
129             {
130                 auto sensorAuxNames = parseSensorAuxiliaryNamesPDR(pdr);
131                 if (!sensorAuxNames)
132                 {
133                     lg2::error(
134                         "Failed to parse PDR with type {TYPE} handle {HANDLE}",
135                         "TYPE", pdrHdr->type, "HANDLE",
136                         static_cast<uint32_t>(pdrHdr->record_handle));
137                     continue;
138                 }
139                 sensorAuxiliaryNamesTbl.emplace_back(std::move(sensorAuxNames));
140                 break;
141             }
142             case PLDM_NUMERIC_SENSOR_PDR:
143             {
144                 auto parsedPdr = parseNumericSensorPDR(pdr);
145                 if (!parsedPdr)
146                 {
147                     lg2::error(
148                         "Failed to parse PDR with type {TYPE} handle {HANDLE}",
149                         "TYPE", pdrHdr->type, "HANDLE",
150                         static_cast<uint32_t>(pdrHdr->record_handle));
151                     continue;
152                 }
153                 numericSensorPdrs.emplace_back(std::move(parsedPdr));
154                 break;
155             }
156             case PLDM_COMPACT_NUMERIC_SENSOR_PDR:
157             {
158                 auto parsedPdr = parseCompactNumericSensorPDR(pdr);
159                 if (!parsedPdr)
160                 {
161                     lg2::error(
162                         "Failed to parse PDR with type {TYPE} handle {HANDLE}",
163                         "TYPE", pdrHdr->type, "HANDLE",
164                         static_cast<uint32_t>(pdrHdr->record_handle));
165                     continue;
166                 }
167                 auto sensorAuxNames = parseCompactNumericSensorNames(pdr);
168                 if (!sensorAuxNames)
169                 {
170                     lg2::error(
171                         "Failed to parse sensor name PDR with type {TYPE} handle {HANDLE}",
172                         "TYPE", pdrHdr->type, "HANDLE",
173                         static_cast<uint32_t>(pdrHdr->record_handle));
174                     continue;
175                 }
176                 compactNumericSensorPdrs.emplace_back(std::move(parsedPdr));
177                 sensorAuxiliaryNamesTbl.emplace_back(std::move(sensorAuxNames));
178                 break;
179             }
180             case PLDM_ENTITY_AUXILIARY_NAMES_PDR:
181             {
182                 auto entityNames = parseEntityAuxiliaryNamesPDR(pdr);
183                 if (!entityNames)
184                 {
185                     lg2::error(
186                         "Failed to parse sensor name PDR with type {TYPE} handle {HANDLE}",
187                         "TYPE", pdrHdr->type, "HANDLE",
188                         static_cast<uint32_t>(pdrHdr->record_handle));
189                     continue;
190                 }
191                 entityAuxiliaryNamesTbl.emplace_back(std::move(entityNames));
192                 break;
193             }
194             default:
195             {
196                 lg2::error("Unsupported PDR with type {TYPE} handle {HANDLE}",
197                            "TYPE", pdrHdr->type, "HANDLE",
198                            static_cast<uint32_t>(pdrHdr->record_handle));
199                 break;
200             }
201         }
202     }
203 
204     auto tName = findTerminusName();
205     if (tName && !tName.value().empty())
206     {
207         lg2::info("Terminus {TID} has Auxiliary Name {NAME}.", "TID", tid,
208                   "NAME", tName.value());
209         terminusName = static_cast<std::string>(tName.value());
210     }
211 
212     if (terminusName.empty())
213     {
214         terminusName = std::format("Terminus_{}", tid);
215     }
216 
217     if (createInventoryPath(terminusName))
218     {
219         lg2::info("Terminus ID {TID}: Created Inventory path {PATH}.", "TID",
220                   tid, "PATH", inventoryPath);
221     }
222 
223     addNextSensorFromPDRs();
224 }
225 
addNextSensorFromPDRs()226 void Terminus::addNextSensorFromPDRs()
227 {
228     sensorCreationEvent.reset();
229 
230     if (terminusName.empty())
231     {
232         lg2::error(
233             "Terminus ID {TID}: DOES NOT have name. Skip Adding sensors.",
234             "TID", tid);
235         return;
236     }
237 
238     auto pdrIt = sensorPdrIt;
239 
240     if (pdrIt < numericSensorPdrs.size())
241     {
242         const auto& pdr = numericSensorPdrs[pdrIt];
243         // Defer adding the next Numeric Sensor
244         sensorCreationEvent = std::make_unique<sdeventplus::source::Defer>(
245             event,
246             std::bind(std::mem_fn(&Terminus::addNumericSensor), this, pdr));
247     }
248     else if (pdrIt < numericSensorPdrs.size() + compactNumericSensorPdrs.size())
249     {
250         pdrIt -= numericSensorPdrs.size();
251         const auto& pdr = compactNumericSensorPdrs[pdrIt];
252         // Defer adding the next Compact Numeric Sensor
253         sensorCreationEvent = std::make_unique<sdeventplus::source::Defer>(
254             event, std::bind(std::mem_fn(&Terminus::addCompactNumericSensor),
255                              this, pdr));
256     }
257     else
258     {
259         sensorPdrIt = 0;
260         return;
261     }
262 
263     // Move the iteration to the next sensor PDR
264     sensorPdrIt++;
265 }
266 
getSensorAuxiliaryNames(SensorID id)267 std::shared_ptr<SensorAuxiliaryNames> Terminus::getSensorAuxiliaryNames(
268     SensorID id)
269 {
270     auto it = std::find_if(
271         sensorAuxiliaryNamesTbl.begin(), sensorAuxiliaryNamesTbl.end(),
272         [id](
273             const std::shared_ptr<SensorAuxiliaryNames>& sensorAuxiliaryNames) {
274             const auto& [sensorId, sensorCnt, sensorNames] =
275                 *sensorAuxiliaryNames;
276             return sensorId == id;
277         });
278 
279     if (it != sensorAuxiliaryNamesTbl.end())
280     {
281         return *it;
282     }
283     return nullptr;
284 };
285 
parseSensorAuxiliaryNamesPDR(const std::vector<uint8_t> & pdrData)286 std::shared_ptr<SensorAuxiliaryNames> Terminus::parseSensorAuxiliaryNamesPDR(
287     const std::vector<uint8_t>& pdrData)
288 {
289     constexpr uint8_t nullTerminator = 0;
290     auto pdr = reinterpret_cast<const struct pldm_sensor_auxiliary_names_pdr*>(
291         pdrData.data());
292     const uint8_t* ptr = pdr->names;
293     std::vector<AuxiliaryNames> sensorAuxNames{};
294     char16_t alignedBuffer[PLDM_STR_UTF_16_MAX_LEN];
295     for ([[maybe_unused]] const auto& sensor :
296          std::views::iota(0, static_cast<int>(pdr->sensor_count)))
297     {
298         const uint8_t nameStringCount = static_cast<uint8_t>(*ptr);
299         ptr += sizeof(uint8_t);
300         AuxiliaryNames nameStrings{};
301         for ([[maybe_unused]] const auto& count :
302              std::views::iota(0, static_cast<int>(nameStringCount)))
303         {
304             std::string_view nameLanguageTag(
305                 reinterpret_cast<const char*>(ptr));
306             ptr += nameLanguageTag.size() + sizeof(nullTerminator);
307 
308             int u16NameStringLen = 0;
309             for (int i = 0; ptr[i] != 0 || ptr[i + 1] != 0; i += 2)
310             {
311                 u16NameStringLen++;
312             }
313             /* include terminator */
314             u16NameStringLen++;
315 
316             std::fill(std::begin(alignedBuffer), std::end(alignedBuffer), 0);
317             if (u16NameStringLen > PLDM_STR_UTF_16_MAX_LEN)
318             {
319                 lg2::error("Sensor name too long.");
320                 return nullptr;
321             }
322             memcpy(alignedBuffer, ptr, u16NameStringLen * sizeof(uint16_t));
323             std::u16string u16NameString(alignedBuffer, u16NameStringLen);
324             ptr += u16NameString.size() * sizeof(uint16_t);
325             std::transform(u16NameString.cbegin(), u16NameString.cend(),
326                            u16NameString.begin(),
327                            [](uint16_t utf16) { return be16toh(utf16); });
328 #pragma GCC diagnostic push
329 #pragma GCC diagnostic ignored "-Wdeprecated-declarations"
330             std::string nameString =
331                 std::wstring_convert<std::codecvt_utf8_utf16<char16_t>,
332                                      char16_t>{}
333                     .to_bytes(u16NameString);
334 #pragma GCC diagnostic pop
335             nameStrings.emplace_back(std::make_pair(
336                 nameLanguageTag, pldm::utils::trimNameForDbus(nameString)));
337         }
338         sensorAuxNames.emplace_back(std::move(nameStrings));
339     }
340     return std::make_shared<SensorAuxiliaryNames>(
341         pdr->sensor_id, pdr->sensor_count, std::move(sensorAuxNames));
342 }
343 
parseEntityAuxiliaryNamesPDR(const std::vector<uint8_t> & pdrData)344 std::shared_ptr<EntityAuxiliaryNames> Terminus::parseEntityAuxiliaryNamesPDR(
345     const std::vector<uint8_t>& pdrData)
346 {
347     auto names_offset = sizeof(struct pldm_pdr_hdr) +
348                         PLDM_PDR_ENTITY_AUXILIARY_NAME_PDR_MIN_LENGTH;
349     auto names_size = pdrData.size() - names_offset;
350 
351     size_t decodedPdrSize =
352         sizeof(struct pldm_entity_auxiliary_names_pdr) + names_size;
353     auto vPdr = std::vector<char>(decodedPdrSize);
354     auto decodedPdr = new (vPdr.data()) pldm_entity_auxiliary_names_pdr;
355 
356     auto rc = decode_entity_auxiliary_names_pdr(pdrData.data(), pdrData.size(),
357                                                 decodedPdr, decodedPdrSize);
358 
359     if (rc)
360     {
361         lg2::error(
362             "Failed to decode Entity Auxiliary Name PDR data, error {RC}.",
363             "RC", rc);
364         return nullptr;
365     }
366 
367     auto vNames =
368         std::vector<pldm_entity_auxiliary_name>(decodedPdr->name_string_count);
369     decodedPdr->names = vNames.data();
370 
371     rc = decode_pldm_entity_auxiliary_names_pdr_index(decodedPdr);
372     if (rc)
373     {
374         lg2::error("Failed to decode Entity Auxiliary Name, error {RC}.", "RC",
375                    rc);
376         return nullptr;
377     }
378 
379     AuxiliaryNames nameStrings{};
380     for (const auto& count :
381          std::views::iota(0, static_cast<int>(decodedPdr->name_string_count)))
382     {
383         std::string_view nameLanguageTag =
384             static_cast<std::string_view>(decodedPdr->names[count].tag);
385         const size_t u16NameStringLen =
386             std::char_traits<char16_t>::length(decodedPdr->names[count].name);
387         std::u16string u16NameString(decodedPdr->names[count].name,
388                                      u16NameStringLen);
389         std::transform(u16NameString.cbegin(), u16NameString.cend(),
390                        u16NameString.begin(),
391                        [](uint16_t utf16) { return be16toh(utf16); });
392 #pragma GCC diagnostic push
393 #pragma GCC diagnostic ignored "-Wdeprecated-declarations"
394         std::string nameString =
395             std::wstring_convert<std::codecvt_utf8_utf16<char16_t>, char16_t>{}
396                 .to_bytes(u16NameString);
397 #pragma GCC diagnostic pop
398         nameStrings.emplace_back(std::make_pair(
399             nameLanguageTag, pldm::utils::trimNameForDbus(nameString)));
400     }
401 
402     EntityKey key{decodedPdr->container.entity_type,
403                   decodedPdr->container.entity_instance_num,
404                   decodedPdr->container.entity_container_id};
405 
406     return std::make_shared<EntityAuxiliaryNames>(key, nameStrings);
407 }
408 
parseNumericSensorPDR(const std::vector<uint8_t> & pdr)409 std::shared_ptr<pldm_numeric_sensor_value_pdr> Terminus::parseNumericSensorPDR(
410     const std::vector<uint8_t>& pdr)
411 {
412     const uint8_t* ptr = pdr.data();
413     auto parsedPdr = std::make_shared<pldm_numeric_sensor_value_pdr>();
414     auto rc = decode_numeric_sensor_pdr_data(ptr, pdr.size(), parsedPdr.get());
415     if (rc)
416     {
417         return nullptr;
418     }
419     return parsedPdr;
420 }
421 
addNumericSensor(const std::shared_ptr<pldm_numeric_sensor_value_pdr> pdr)422 void Terminus::addNumericSensor(
423     const std::shared_ptr<pldm_numeric_sensor_value_pdr> pdr)
424 {
425     if (!pdr)
426     {
427         lg2::error(
428             "Terminus ID {TID}: Skip adding Numeric Sensor - invalid pointer to PDR.",
429             "TID", tid);
430         addNextSensorFromPDRs();
431     }
432 
433     auto sensorId = pdr->sensor_id;
434     auto sensorNames = getSensorNames(sensorId);
435 
436     if (sensorNames.empty())
437     {
438         lg2::error(
439             "Terminus ID {TID}: Failed to get name for Numeric Sensor {SID}",
440             "TID", tid, "SID", sensorId);
441         addNextSensorFromPDRs();
442     }
443 
444     std::string sensorName = sensorNames.front();
445 
446     try
447     {
448         auto sensor = std::make_shared<NumericSensor>(
449             tid, true, pdr, sensorName, inventoryPath);
450         lg2::info("Created NumericSensor {NAME}", "NAME", sensorName);
451         numericSensors.emplace_back(sensor);
452     }
453     catch (const sdbusplus::exception_t& e)
454     {
455         lg2::error(
456             "Failed to create NumericSensor. error - {ERROR} sensorname - {NAME}",
457             "ERROR", e, "NAME", sensorName);
458     }
459 
460     addNextSensorFromPDRs();
461 }
462 
parseCompactNumericSensorNames(const std::vector<uint8_t> & sPdr)463 std::shared_ptr<SensorAuxiliaryNames> Terminus::parseCompactNumericSensorNames(
464     const std::vector<uint8_t>& sPdr)
465 {
466     std::vector<std::vector<std::pair<NameLanguageTag, SensorName>>>
467         sensorAuxNames{};
468     AuxiliaryNames nameStrings{};
469 
470     auto pdr =
471         reinterpret_cast<const pldm_compact_numeric_sensor_pdr*>(sPdr.data());
472 
473     if (sPdr.size() <
474         (sizeof(pldm_compact_numeric_sensor_pdr) - sizeof(uint8_t)))
475     {
476         return nullptr;
477     }
478 
479     if (!pdr->sensor_name_length ||
480         (sPdr.size() < (sizeof(pldm_compact_numeric_sensor_pdr) -
481                         sizeof(uint8_t) + pdr->sensor_name_length)))
482     {
483         return nullptr;
484     }
485 
486     std::string nameString(reinterpret_cast<const char*>(pdr->sensor_name),
487                            pdr->sensor_name_length);
488     nameStrings.emplace_back(
489         std::make_pair("en", pldm::utils::trimNameForDbus(nameString)));
490     sensorAuxNames.emplace_back(std::move(nameStrings));
491 
492     return std::make_shared<SensorAuxiliaryNames>(pdr->sensor_id, 1,
493                                                   std::move(sensorAuxNames));
494 }
495 
496 std::shared_ptr<pldm_compact_numeric_sensor_pdr>
parseCompactNumericSensorPDR(const std::vector<uint8_t> & sPdr)497     Terminus::parseCompactNumericSensorPDR(const std::vector<uint8_t>& sPdr)
498 {
499     auto pdr =
500         reinterpret_cast<const pldm_compact_numeric_sensor_pdr*>(sPdr.data());
501     if (sPdr.size() < sizeof(pldm_compact_numeric_sensor_pdr))
502     {
503         // Handle error: input data too small to contain valid pdr
504         return nullptr;
505     }
506     auto parsedPdr = std::make_shared<pldm_compact_numeric_sensor_pdr>();
507 
508     parsedPdr->hdr = pdr->hdr;
509     parsedPdr->terminus_handle = pdr->terminus_handle;
510     parsedPdr->sensor_id = pdr->sensor_id;
511     parsedPdr->entity_type = pdr->entity_type;
512     parsedPdr->entity_instance = pdr->entity_instance;
513     parsedPdr->container_id = pdr->container_id;
514     parsedPdr->sensor_name_length = pdr->sensor_name_length;
515     parsedPdr->base_unit = pdr->base_unit;
516     parsedPdr->unit_modifier = pdr->unit_modifier;
517     parsedPdr->occurrence_rate = pdr->occurrence_rate;
518     parsedPdr->range_field_support = pdr->range_field_support;
519     parsedPdr->warning_high = pdr->warning_high;
520     parsedPdr->warning_low = pdr->warning_low;
521     parsedPdr->critical_high = pdr->critical_high;
522     parsedPdr->critical_low = pdr->critical_low;
523     parsedPdr->fatal_high = pdr->fatal_high;
524     parsedPdr->fatal_low = pdr->fatal_low;
525     return parsedPdr;
526 }
527 
addCompactNumericSensor(const std::shared_ptr<pldm_compact_numeric_sensor_pdr> pdr)528 void Terminus::addCompactNumericSensor(
529     const std::shared_ptr<pldm_compact_numeric_sensor_pdr> pdr)
530 {
531     if (!pdr)
532     {
533         lg2::error(
534             "Terminus ID {TID}: Skip adding Compact Numeric Sensor - invalid pointer to PDR.",
535             "TID", tid);
536         addNextSensorFromPDRs();
537     }
538 
539     auto sensorId = pdr->sensor_id;
540     auto sensorNames = getSensorNames(sensorId);
541 
542     if (sensorNames.empty())
543     {
544         lg2::error(
545             "Terminus ID {TID}: Failed to get name for Compact Numeric Sensor {SID}",
546             "TID", tid, "SID", sensorId);
547         addNextSensorFromPDRs();
548     }
549 
550     std::string sensorName = sensorNames.front();
551 
552     try
553     {
554         auto sensor = std::make_shared<NumericSensor>(
555             tid, true, pdr, sensorName, inventoryPath);
556         lg2::info("Created Compact NumericSensor {NAME}", "NAME", sensorName);
557         numericSensors.emplace_back(sensor);
558     }
559     catch (const sdbusplus::exception_t& e)
560     {
561         lg2::error(
562             "Failed to create Compact NumericSensor. error - {ERROR} sensorname - {NAME}",
563             "ERROR", e, "NAME", sensorName);
564     }
565 
566     addNextSensorFromPDRs();
567 }
568 
getSensorObject(SensorID id)569 std::shared_ptr<NumericSensor> Terminus::getSensorObject(SensorID id)
570 {
571     if (terminusName.empty())
572     {
573         lg2::error(
574             "Terminus ID {TID}: DOES NOT have terminus name. No numeric sensor object.",
575             "TID", tid);
576         return nullptr;
577     }
578     if (!numericSensors.size())
579     {
580         lg2::error("Terminus ID {TID} name {NAME}: DOES NOT have sensor.",
581                    "TID", tid, "NAME", terminusName);
582         return nullptr;
583     }
584 
585     for (auto& sensor : numericSensors)
586     {
587         if (!sensor)
588         {
589             continue;
590         }
591 
592         if (sensor->sensorId == id)
593         {
594             return sensor;
595         }
596     }
597 
598     return nullptr;
599 }
600 
601 /** @brief Check if a pointer is go through end of table
602  *  @param[in] table - pointer to FRU record table
603  *  @param[in] p - pointer to each record of FRU record table
604  *  @param[in] tableSize - FRU table size
605  */
isTableEnd(const uint8_t * table,const uint8_t * p,const size_t tableSize)606 static bool isTableEnd(const uint8_t* table, const uint8_t* p,
607                        const size_t tableSize)
608 {
609     auto offset = p - table;
610     return (tableSize - offset) < sizeof(struct pldm_fru_record_data_format);
611 }
612 
updateInventoryWithFru(const uint8_t * fruData,const size_t fruLen)613 void Terminus::updateInventoryWithFru(const uint8_t* fruData,
614                                       const size_t fruLen)
615 {
616     auto tmp = getTerminusName();
617     if (!tmp || tmp.value().empty())
618     {
619         lg2::error(
620             "Terminus ID {TID}: Failed to update Inventory with Fru Data - error : Terminus name is empty.",
621             "TID", tid);
622         return;
623     }
624 
625     if (createInventoryPath(static_cast<std::string>(tmp.value())))
626     {
627         lg2::info("Terminus ID {TID}: Created Inventory path.", "TID", tid);
628     }
629 
630     auto ptr = fruData;
631     while (!isTableEnd(fruData, ptr, fruLen))
632     {
633         auto record = reinterpret_cast<const pldm_fru_record_data_format*>(ptr);
634         ptr += sizeof(pldm_fru_record_data_format) -
635                sizeof(pldm_fru_record_tlv);
636 
637         if (!record->num_fru_fields)
638         {
639             lg2::error(
640                 "Invalid number of fields {NUM} of Record ID Type {TYPE} of terminus {TID}",
641                 "NUM", record->num_fru_fields, "TYPE", record->record_type,
642                 "TID", tid);
643             return;
644         }
645 
646         if (record->record_type != PLDM_FRU_RECORD_TYPE_GENERAL)
647         {
648             lg2::error(
649                 "Does not support Fru Record ID Type {TYPE} of terminus {TID}",
650                 "TYPE", record->record_type, "TID", tid);
651 
652             for ([[maybe_unused]] const auto& idx :
653                  std::views::iota(0, static_cast<int>(record->num_fru_fields)))
654             {
655                 auto tlv = reinterpret_cast<const pldm_fru_record_tlv*>(ptr);
656                 ptr += sizeof(pldm_fru_record_tlv) - 1 + tlv->length;
657             }
658             continue;
659         }
660         /* FRU General record type */
661         for ([[maybe_unused]] const auto& idx :
662              std::views::iota(0, static_cast<int>(record->num_fru_fields)))
663         {
664             auto tlv = reinterpret_cast<const pldm_fru_record_tlv*>(ptr);
665             std::string fruField{};
666             if (tlv->type != PLDM_FRU_FIELD_TYPE_IANA)
667             {
668                 auto strOptional =
669                     pldm::utils::fruFieldValuestring(tlv->value, tlv->length);
670                 if (!strOptional)
671                 {
672                     ptr += sizeof(pldm_fru_record_tlv) - 1 + tlv->length;
673                     continue;
674                 }
675                 fruField = strOptional.value();
676 
677                 if (fruField.empty())
678                 {
679                     ptr += sizeof(pldm_fru_record_tlv) - 1 + tlv->length;
680                     continue;
681                 }
682             }
683 
684             switch (tlv->type)
685             {
686                 case PLDM_FRU_FIELD_TYPE_MODEL:
687                     inventoryItemBoardInft->model(fruField);
688                     break;
689                 case PLDM_FRU_FIELD_TYPE_PN:
690                     inventoryItemBoardInft->partNumber(fruField);
691                     break;
692                 case PLDM_FRU_FIELD_TYPE_SN:
693                     inventoryItemBoardInft->serialNumber(fruField);
694                     break;
695                 case PLDM_FRU_FIELD_TYPE_MANUFAC:
696                     inventoryItemBoardInft->manufacturer(fruField);
697                     break;
698                 case PLDM_FRU_FIELD_TYPE_NAME:
699                     inventoryItemBoardInft->names({fruField});
700                     break;
701                 case PLDM_FRU_FIELD_TYPE_VERSION:
702                     inventoryItemBoardInft->version(fruField);
703                     break;
704                 case PLDM_FRU_FIELD_TYPE_ASSET_TAG:
705                     inventoryItemBoardInft->assetTag(fruField);
706                     break;
707                 case PLDM_FRU_FIELD_TYPE_VENDOR:
708                 case PLDM_FRU_FIELD_TYPE_CHASSIS:
709                 case PLDM_FRU_FIELD_TYPE_SKU:
710                 case PLDM_FRU_FIELD_TYPE_DESC:
711                 case PLDM_FRU_FIELD_TYPE_EC_LVL:
712                 case PLDM_FRU_FIELD_TYPE_OTHER:
713                     break;
714                 case PLDM_FRU_FIELD_TYPE_IANA:
715                     auto iana =
716                         pldm::utils::fruFieldParserU32(tlv->value, tlv->length);
717                     if (!iana)
718                     {
719                         ptr += sizeof(pldm_fru_record_tlv) - 1 + tlv->length;
720                         continue;
721                     }
722                     break;
723             }
724             ptr += sizeof(pldm_fru_record_tlv) - 1 + tlv->length;
725         }
726     }
727 }
728 
getSensorNames(const SensorID & sensorId)729 std::vector<std::string> Terminus::getSensorNames(const SensorID& sensorId)
730 {
731     std::vector<std::string> sensorNames;
732     std::string defaultName =
733         std::format("{}_Sensor_{}", terminusName, unsigned(sensorId));
734     // To ensure there's always a default name at offset 0
735     sensorNames.emplace_back(defaultName);
736 
737     auto sensorAuxiliaryNames = getSensorAuxiliaryNames(sensorId);
738     if (!sensorAuxiliaryNames)
739     {
740         return sensorNames;
741     }
742 
743     const auto& [id, sensorCount, nameMap] = *sensorAuxiliaryNames;
744     for (const unsigned int& i :
745          std::views::iota(0, static_cast<int>(sensorCount)))
746     {
747         auto sensorName = defaultName;
748         if (i > 0)
749         {
750             // Sensor name at offset 0 will be the default name
751             sensorName += "_" + std::to_string(i);
752         }
753 
754         for (const auto& [languageTag, name] : nameMap[i])
755         {
756             if (languageTag == "en" && !name.empty())
757             {
758                 sensorName = std::format("{}_{}", terminusName, name);
759             }
760         }
761 
762         if (i >= sensorNames.size())
763         {
764             sensorNames.emplace_back(sensorName);
765         }
766         else
767         {
768             sensorNames[i] = sensorName;
769         }
770     }
771 
772     return sensorNames;
773 }
774 
775 } // namespace platform_mc
776 } // namespace pldm
777