1 /*
2 // Copyright (c) 2017-2019 Intel Corporation
3 //
4 // Licensed under the Apache License, Version 2.0 (the "License");
5 // you may not use this file except in compliance with the License.
6 // You may obtain a copy of the License at
7 //
8 //      http://www.apache.org/licenses/LICENSE-2.0
9 //
10 // Unless required by applicable law or agreed to in writing, software
11 // distributed under the License is distributed on an "AS IS" BASIS,
12 // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 // See the License for the specific language governing permissions and
14 // limitations under the License.
15 */
16 
17 #include "dbus-sdr/storagecommands.hpp"
18 
19 #include "dbus-sdr/sdrutils.hpp"
20 #include "selutility.hpp"
21 
22 #include <boost/algorithm/string.hpp>
23 #include <boost/container/flat_map.hpp>
24 #include <boost/process.hpp>
25 #include <ipmid/api.hpp>
26 #include <ipmid/message.hpp>
27 #include <ipmid/types.hpp>
28 #include <phosphor-logging/lg2.hpp>
29 #include <sdbusplus/message/types.hpp>
30 #include <sdbusplus/timer.hpp>
31 
32 #include <filesystem>
33 #include <fstream>
34 #include <functional>
35 #include <iostream>
36 #include <stdexcept>
37 #include <string_view>
38 
39 static constexpr bool DEBUG = false;
40 
41 namespace dynamic_sensors::ipmi::sel
42 {
43 static const std::filesystem::path selLogDir = "/var/log";
44 static const std::string selLogFilename = "ipmi_sel";
45 
getFileTimestamp(const std::filesystem::path & file)46 static int getFileTimestamp(const std::filesystem::path& file)
47 {
48     struct stat st;
49 
50     if (stat(file.c_str(), &st) >= 0)
51     {
52         return st.st_mtime;
53     }
54     return ::ipmi::sel::invalidTimeStamp;
55 }
56 
57 namespace erase_time
58 {
59 static constexpr const char* selEraseTimestamp = "/var/lib/ipmi/sel_erase_time";
60 
get()61 int get()
62 {
63     return getFileTimestamp(selEraseTimestamp);
64 }
65 } // namespace erase_time
66 } // namespace dynamic_sensors::ipmi::sel
67 
68 namespace ipmi
69 {
70 
71 namespace storage
72 {
73 
74 constexpr static const size_t maxFruSdrNameSize = 16;
75 using ObjectType =
76     boost::container::flat_map<std::string,
77                                boost::container::flat_map<std::string, Value>>;
78 using ManagedObjectType =
79     boost::container::flat_map<sdbusplus::message::object_path, ObjectType>;
80 using ManagedEntry = std::pair<sdbusplus::message::object_path, ObjectType>;
81 
82 constexpr static const char* selLoggerServiceName =
83     "xyz.openbmc_project.Logging.IPMI";
84 constexpr static const char* fruDeviceServiceName =
85     "xyz.openbmc_project.FruDevice";
86 constexpr static const char* entityManagerServiceName =
87     "xyz.openbmc_project.EntityManager";
88 constexpr static const size_t writeTimeoutSeconds = 10;
89 constexpr static const char* chassisTypeRackMount = "23";
90 constexpr static const char* chassisTypeMainServer = "17";
91 
92 static std::vector<uint8_t> fruCache;
93 static constexpr uint16_t invalidBus = 0xFFFF;
94 static constexpr uint8_t invalidAddr = 0xFF;
95 static constexpr uint8_t typeASCIILatin8 = 0xC0;
96 static uint16_t cacheBus = invalidBus;
97 static uint8_t cacheAddr = invalidAddr;
98 static uint8_t lastDevId = 0xFF;
99 
100 static uint16_t writeBus = invalidBus;
101 static uint8_t writeAddr = invalidAddr;
102 
103 std::unique_ptr<sdbusplus::Timer> writeTimer = nullptr;
104 static std::vector<sdbusplus::bus::match_t> fruMatches;
105 
106 ManagedObjectType frus;
107 
108 // we unfortunately have to build a map of hashes in case there is a
109 // collision to verify our dev-id
110 boost::container::flat_map<uint8_t, std::pair<uint16_t, uint8_t>> deviceHashes;
111 void registerStorageFunctions() __attribute__((constructor));
112 
writeFru(const std::vector<uint8_t> & fru)113 bool writeFru(const std::vector<uint8_t>& fru)
114 {
115     if (writeBus == invalidBus && writeAddr == invalidAddr)
116     {
117         return true;
118     }
119     lastDevId = 0xFF;
120     std::shared_ptr<sdbusplus::asio::connection> dbus = getSdBus();
121     sdbusplus::message_t writeFru = dbus->new_method_call(
122         fruDeviceServiceName, "/xyz/openbmc_project/FruDevice",
123         "xyz.openbmc_project.FruDeviceManager", "WriteFru");
124     writeFru.append(writeBus, writeAddr, fru);
125     try
126     {
127         sdbusplus::message_t writeFruResp = dbus->call(writeFru);
128     }
129     catch (const sdbusplus::exception_t&)
130     {
131         // todo: log sel?
132         lg2::error("error writing fru");
133         return false;
134     }
135     writeBus = invalidBus;
136     writeAddr = invalidAddr;
137     return true;
138 }
139 
writeFruCache()140 void writeFruCache()
141 {
142     writeFru(fruCache);
143 }
144 
createTimers()145 void createTimers()
146 {
147     writeTimer = std::make_unique<sdbusplus::Timer>(writeFruCache);
148 }
149 
recalculateHashes()150 void recalculateHashes()
151 {
152     deviceHashes.clear();
153     // hash the object paths to create unique device id's. increment on
154     // collision
155     std::hash<std::string> hasher;
156     for (const auto& fru : frus)
157     {
158         auto fruIface = fru.second.find("xyz.openbmc_project.FruDevice");
159         if (fruIface == fru.second.end())
160         {
161             continue;
162         }
163 
164         auto busFind = fruIface->second.find("BUS");
165         auto addrFind = fruIface->second.find("ADDRESS");
166         if (busFind == fruIface->second.end() ||
167             addrFind == fruIface->second.end())
168         {
169             lg2::info("fru device missing Bus or Address, fru: {FRU}", "FRU",
170                       fru.first.str);
171             continue;
172         }
173 
174         uint16_t fruBus = std::get<uint32_t>(busFind->second);
175         uint8_t fruAddr = std::get<uint32_t>(addrFind->second);
176         auto chassisFind = fruIface->second.find("CHASSIS_TYPE");
177         std::string chassisType;
178         if (chassisFind != fruIface->second.end())
179         {
180             chassisType = std::get<std::string>(chassisFind->second);
181         }
182 
183         uint8_t fruHash = 0;
184         if (chassisType.compare(chassisTypeRackMount) != 0 &&
185             chassisType.compare(chassisTypeMainServer) != 0)
186         {
187             fruHash = hasher(fru.first.str);
188             // can't be 0xFF based on spec, and 0 is reserved for baseboard
189             if (fruHash == 0 || fruHash == 0xFF)
190             {
191                 fruHash = 1;
192             }
193         }
194         std::pair<uint16_t, uint8_t> newDev(fruBus, fruAddr);
195 
196         bool emplacePassed = false;
197         while (!emplacePassed)
198         {
199             auto resp = deviceHashes.emplace(fruHash, newDev);
200             emplacePassed = resp.second;
201             if (!emplacePassed)
202             {
203                 fruHash++;
204                 // can't be 0xFF based on spec, and 0 is reserved for
205                 // baseboard
206                 if (fruHash == 0XFF)
207                 {
208                     fruHash = 0x1;
209                 }
210             }
211         }
212     }
213 }
214 
replaceCacheFru(const std::shared_ptr<sdbusplus::asio::connection> & bus,boost::asio::yield_context & yield,const std::optional<std::string> & path=std::nullopt)215 void replaceCacheFru(
216     const std::shared_ptr<sdbusplus::asio::connection>& bus,
217     boost::asio::yield_context& yield,
218     [[maybe_unused]] const std::optional<std::string>& path = std::nullopt)
219 {
220     boost::system::error_code ec;
221 
222     frus = bus->yield_method_call<ManagedObjectType>(
223         yield, ec, fruDeviceServiceName, "/",
224         "org.freedesktop.DBus.ObjectManager", "GetManagedObjects");
225     if (ec)
226     {
227         lg2::error("GetMangagedObjects for replaceCacheFru failed: {ERROR}",
228                    "ERROR", ec.message());
229 
230         return;
231     }
232     recalculateHashes();
233 }
234 
235 std::pair<ipmi::Cc, std::vector<uint8_t>>
getFru(ipmi::Context::ptr ctx,uint8_t devId)236     getFru(ipmi::Context::ptr ctx, uint8_t devId)
237 {
238     if (lastDevId == devId && devId != 0xFF)
239     {
240         return {ipmi::ccSuccess, fruCache};
241     }
242 
243     auto deviceFind = deviceHashes.find(devId);
244     if (deviceFind == deviceHashes.end())
245     {
246         return {IPMI_CC_SENSOR_INVALID, {}};
247     }
248 
249     cacheBus = deviceFind->second.first;
250     cacheAddr = deviceFind->second.second;
251 
252     boost::system::error_code ec;
253 
254     std::vector<uint8_t> fru =
255         ctx->bus->yield_method_call<std::vector<uint8_t>>(
256             ctx->yield, ec, fruDeviceServiceName,
257             "/xyz/openbmc_project/FruDevice",
258             "xyz.openbmc_project.FruDeviceManager", "GetRawFru", cacheBus,
259             cacheAddr);
260     if (ec)
261     {
262         lg2::error("Couldn't get raw fru: {ERROR}", "ERROR", ec.message());
263 
264         cacheBus = invalidBus;
265         cacheAddr = invalidAddr;
266         return {ipmi::ccResponseError, {}};
267     }
268 
269     fruCache.clear();
270     lastDevId = devId;
271     fruCache = fru;
272 
273     return {ipmi::ccSuccess, fru};
274 }
275 
writeFruIfRunning()276 void writeFruIfRunning()
277 {
278     if (!writeTimer->isRunning())
279     {
280         return;
281     }
282     writeTimer->stop();
283     writeFruCache();
284 }
285 
startMatch(void)286 void startMatch(void)
287 {
288     if (fruMatches.size())
289     {
290         return;
291     }
292 
293     fruMatches.reserve(2);
294 
295     auto bus = getSdBus();
296     fruMatches.emplace_back(
297         *bus,
298         "type='signal',arg0path='/xyz/openbmc_project/"
299         "FruDevice/',member='InterfacesAdded'",
300         [](sdbusplus::message_t& message) {
301             sdbusplus::message::object_path path;
302             ObjectType object;
303             try
304             {
305                 message.read(path, object);
306             }
307             catch (const sdbusplus::exception_t&)
308             {
309                 return;
310             }
311             auto findType = object.find("xyz.openbmc_project.FruDevice");
312             if (findType == object.end())
313             {
314                 return;
315             }
316             writeFruIfRunning();
317             frus[path] = object;
318             recalculateHashes();
319             lastDevId = 0xFF;
320         });
321 
322     fruMatches.emplace_back(
323         *bus,
324         "type='signal',arg0path='/xyz/openbmc_project/"
325         "FruDevice/',member='InterfacesRemoved'",
326         [](sdbusplus::message_t& message) {
327             sdbusplus::message::object_path path;
328             std::set<std::string> interfaces;
329             try
330             {
331                 message.read(path, interfaces);
332             }
333             catch (const sdbusplus::exception_t&)
334             {
335                 return;
336             }
337             auto findType = interfaces.find("xyz.openbmc_project.FruDevice");
338             if (findType == interfaces.end())
339             {
340                 return;
341             }
342             writeFruIfRunning();
343             frus.erase(path);
344             recalculateHashes();
345             lastDevId = 0xFF;
346         });
347 
348     // call once to populate
349     boost::asio::spawn(*getIoContext(), [](boost::asio::yield_context yield) {
350         replaceCacheFru(getSdBus(), yield);
351     });
352 }
353 
354 /** @brief implements the read FRU data command
355  *  @param fruDeviceId        - FRU Device ID
356  *  @param fruInventoryOffset - FRU Inventory Offset to write
357  *  @param countToRead        - Count to read
358  *
359  *  @returns ipmi completion code plus response data
360  *   - countWritten  - Count written
361  */
362 ipmi::RspType<uint8_t,             // Count
363               std::vector<uint8_t> // Requested data
364               >
ipmiStorageReadFruData(ipmi::Context::ptr ctx,uint8_t fruDeviceId,uint16_t fruInventoryOffset,uint8_t countToRead)365     ipmiStorageReadFruData(ipmi::Context::ptr ctx, uint8_t fruDeviceId,
366                            uint16_t fruInventoryOffset, uint8_t countToRead)
367 {
368     if (fruDeviceId == 0xFF)
369     {
370         return ipmi::responseInvalidFieldRequest();
371     }
372 
373     auto [status, fru] = getFru(ctx, fruDeviceId);
374     if (status != ipmi::ccSuccess)
375     {
376         return ipmi::response(status);
377     }
378 
379     size_t fromFruByteLen = 0;
380     if (countToRead + fruInventoryOffset < fru.size())
381     {
382         fromFruByteLen = countToRead;
383     }
384     else if (fru.size() > fruInventoryOffset)
385     {
386         fromFruByteLen = fru.size() - fruInventoryOffset;
387     }
388     else
389     {
390         return ipmi::responseReqDataLenExceeded();
391     }
392 
393     std::vector<uint8_t> requestedData;
394 
395     requestedData.insert(requestedData.begin(),
396                          fru.begin() + fruInventoryOffset,
397                          fru.begin() + fruInventoryOffset + fromFruByteLen);
398 
399     return ipmi::responseSuccess(static_cast<uint8_t>(requestedData.size()),
400                                  requestedData);
401 }
402 
403 /** @brief implements the write FRU data command
404  *  @param fruDeviceId        - FRU Device ID
405  *  @param fruInventoryOffset - FRU Inventory Offset to write
406  *  @param dataToWrite        - Data to write
407  *
408  *  @returns ipmi completion code plus response data
409  *   - countWritten  - Count written
410  */
ipmiStorageWriteFruData(ipmi::Context::ptr ctx,uint8_t fruDeviceId,uint16_t fruInventoryOffset,std::vector<uint8_t> & dataToWrite)411 ipmi::RspType<uint8_t> ipmiStorageWriteFruData(
412     ipmi::Context::ptr ctx, uint8_t fruDeviceId, uint16_t fruInventoryOffset,
413     std::vector<uint8_t>& dataToWrite)
414 {
415     if (fruDeviceId == 0xFF)
416     {
417         return ipmi::responseInvalidFieldRequest();
418     }
419 
420     size_t writeLen = dataToWrite.size();
421 
422     auto [status, fru] = getFru(ctx, fruDeviceId);
423     if (status != ipmi::ccSuccess)
424     {
425         return ipmi::response(status);
426     }
427     size_t lastWriteAddr = fruInventoryOffset + writeLen;
428     if (fru.size() < lastWriteAddr)
429     {
430         fru.resize(fruInventoryOffset + writeLen);
431     }
432 
433     std::copy(dataToWrite.begin(), dataToWrite.begin() + writeLen,
434               fru.begin() + fruInventoryOffset);
435 
436     bool atEnd = false;
437 
438     if (fru.size() >= sizeof(FRUHeader))
439     {
440         FRUHeader* header = reinterpret_cast<FRUHeader*>(fru.data());
441 
442         size_t areaLength = 0;
443         size_t lastRecordStart = std::max(
444             {header->internalOffset, header->chassisOffset, header->boardOffset,
445              header->productOffset, header->multiRecordOffset});
446         lastRecordStart *= 8; // header starts in are multiples of 8 bytes
447 
448         if (header->multiRecordOffset)
449         {
450             // This FRU has a MultiRecord Area
451             uint8_t endOfList = 0;
452             // Walk the MultiRecord headers until the last record
453             while (!endOfList)
454             {
455                 // The MSB in the second byte of the MultiRecord header signals
456                 // "End of list"
457                 endOfList = fru[lastRecordStart + 1] & 0x80;
458                 // Third byte in the MultiRecord header is the length
459                 areaLength = fru[lastRecordStart + 2];
460                 // This length is in bytes (not 8 bytes like other headers)
461                 areaLength += 5; // The length omits the 5 byte header
462                 if (!endOfList)
463                 {
464                     // Next MultiRecord header
465                     lastRecordStart += areaLength;
466                 }
467             }
468         }
469         else
470         {
471             // This FRU does not have a MultiRecord Area
472             // Get the length of the area in multiples of 8 bytes
473             if (lastWriteAddr > (lastRecordStart + 1))
474             {
475                 // second byte in record area is the length
476                 areaLength = fru[lastRecordStart + 1];
477                 areaLength *= 8; // it is in multiples of 8 bytes
478             }
479         }
480         if (lastWriteAddr >= (areaLength + lastRecordStart))
481         {
482             atEnd = true;
483         }
484     }
485     uint8_t countWritten = 0;
486 
487     writeBus = cacheBus;
488     writeAddr = cacheAddr;
489     if (atEnd)
490     {
491         // cancel timer, we're at the end so might as well send it
492         writeTimer->stop();
493         if (!writeFru(fru))
494         {
495             return ipmi::responseInvalidFieldRequest();
496         }
497         countWritten = std::min(fru.size(), static_cast<size_t>(0xFF));
498     }
499     else
500     {
501         fruCache = fru; // Write-back
502         // start a timer, if no further data is sent  to check to see if it is
503         // valid
504         writeTimer->start(std::chrono::duration_cast<std::chrono::microseconds>(
505             std::chrono::seconds(writeTimeoutSeconds)));
506         countWritten = 0;
507     }
508 
509     return ipmi::responseSuccess(countWritten);
510 }
511 
512 /** @brief implements the get FRU inventory area info command
513  *  @param fruDeviceId  - FRU Device ID
514  *
515  *  @returns IPMI completion code plus response data
516  *   - inventorySize - Number of possible allocation units
517  *   - accessType    - Allocation unit size in bytes.
518  */
519 ipmi::RspType<uint16_t, // inventorySize
520               uint8_t>  // accessType
ipmiStorageGetFruInvAreaInfo(ipmi::Context::ptr ctx,uint8_t fruDeviceId)521     ipmiStorageGetFruInvAreaInfo(ipmi::Context::ptr ctx, uint8_t fruDeviceId)
522 {
523     if (fruDeviceId == 0xFF)
524     {
525         return ipmi::responseInvalidFieldRequest();
526     }
527 
528     auto [ret, fru] = getFru(ctx, fruDeviceId);
529     if (ret != ipmi::ccSuccess)
530     {
531         return ipmi::response(ret);
532     }
533 
534     constexpr uint8_t accessType =
535         static_cast<uint8_t>(GetFRUAreaAccessType::byte);
536 
537     return ipmi::responseSuccess(fru.size(), accessType);
538 }
539 
getFruSdrCount(ipmi::Context::ptr,size_t & count)540 ipmi_ret_t getFruSdrCount(ipmi::Context::ptr, size_t& count)
541 {
542     count = deviceHashes.size();
543     return IPMI_CC_OK;
544 }
545 
getFruSdrs(ipmi::Context::ptr ctx,size_t index,get_sdr::SensorDataFruRecord & resp)546 ipmi_ret_t getFruSdrs([[maybe_unused]] ipmi::Context::ptr ctx, size_t index,
547                       get_sdr::SensorDataFruRecord& resp)
548 {
549     if (deviceHashes.size() < index)
550     {
551         return IPMI_CC_INVALID_FIELD_REQUEST;
552     }
553     auto device = deviceHashes.begin() + index;
554     uint16_t& bus = device->second.first;
555     uint8_t& address = device->second.second;
556 
557     boost::container::flat_map<std::string, Value>* fruData = nullptr;
558     auto fru = std::find_if(
559         frus.begin(), frus.end(),
560         [bus, address, &fruData](ManagedEntry& entry) {
561             auto findFruDevice =
562                 entry.second.find("xyz.openbmc_project.FruDevice");
563             if (findFruDevice == entry.second.end())
564             {
565                 return false;
566             }
567             fruData = &(findFruDevice->second);
568             auto findBus = findFruDevice->second.find("BUS");
569             auto findAddress = findFruDevice->second.find("ADDRESS");
570             if (findBus == findFruDevice->second.end() ||
571                 findAddress == findFruDevice->second.end())
572             {
573                 return false;
574             }
575             if (std::get<uint32_t>(findBus->second) != bus)
576             {
577                 return false;
578             }
579             if (std::get<uint32_t>(findAddress->second) != address)
580             {
581                 return false;
582             }
583             return true;
584         });
585     if (fru == frus.end())
586     {
587         return IPMI_CC_RESPONSE_ERROR;
588     }
589     std::string name;
590 
591 #ifdef USING_ENTITY_MANAGER_DECORATORS
592 
593     boost::container::flat_map<std::string, Value>* entityData = nullptr;
594 
595     // todo: this should really use caching, this is a very inefficient lookup
596     boost::system::error_code ec;
597 
598     ManagedObjectType entities = ctx->bus->yield_method_call<ManagedObjectType>(
599         ctx->yield, ec, entityManagerServiceName,
600         "/xyz/openbmc_project/inventory", "org.freedesktop.DBus.ObjectManager",
601         "GetManagedObjects");
602 
603     if (ec)
604     {
605         lg2::error("GetMangagedObjects for ipmiStorageGetFruInvAreaInfo "
606                    "failed: {ERROR}",
607                    "ERROR", ec.message());
608 
609         return ipmi::ccResponseError;
610     }
611 
612     auto entity = std::find_if(
613         entities.begin(), entities.end(),
614         [bus, address, &entityData, &name](ManagedEntry& entry) {
615             auto findFruDevice = entry.second.find(
616                 "xyz.openbmc_project.Inventory.Decorator.I2CDevice");
617             if (findFruDevice == entry.second.end())
618             {
619                 return false;
620             }
621 
622             // Integer fields added via Entity-Manager json are uint64_ts by
623             // default.
624             auto findBus = findFruDevice->second.find("Bus");
625             auto findAddress = findFruDevice->second.find("Address");
626 
627             if (findBus == findFruDevice->second.end() ||
628                 findAddress == findFruDevice->second.end())
629             {
630                 return false;
631             }
632             if ((std::get<uint64_t>(findBus->second) != bus) ||
633                 (std::get<uint64_t>(findAddress->second) != address))
634             {
635                 return false;
636             }
637 
638             auto fruName = findFruDevice->second.find("Name");
639             if (fruName != findFruDevice->second.end())
640             {
641                 name = std::get<std::string>(fruName->second);
642             }
643 
644             // At this point we found the device entry and should return
645             // true.
646             auto findIpmiDevice = entry.second.find(
647                 "xyz.openbmc_project.Inventory.Decorator.Ipmi");
648             if (findIpmiDevice != entry.second.end())
649             {
650                 entityData = &(findIpmiDevice->second);
651             }
652 
653             return true;
654         });
655 
656     if (entity == entities.end())
657     {
658         if constexpr (DEBUG)
659         {
660             std::fprintf(stderr, "Ipmi or FruDevice Decorator interface "
661                                  "not found for Fru\n");
662         }
663     }
664 
665 #endif
666 
667     std::vector<std::string> nameProperties = {
668         "PRODUCT_PRODUCT_NAME",  "BOARD_PRODUCT_NAME",   "PRODUCT_PART_NUMBER",
669         "BOARD_PART_NUMBER",     "PRODUCT_MANUFACTURER", "BOARD_MANUFACTURER",
670         "PRODUCT_SERIAL_NUMBER", "BOARD_SERIAL_NUMBER"};
671 
672     for (const std::string& prop : nameProperties)
673     {
674         auto findProp = fruData->find(prop);
675         if (findProp != fruData->end())
676         {
677             name = std::get<std::string>(findProp->second);
678             break;
679         }
680     }
681 
682     if (name.empty())
683     {
684         name = "UNKNOWN";
685     }
686     if (name.size() > maxFruSdrNameSize)
687     {
688         name = name.substr(0, maxFruSdrNameSize);
689     }
690     size_t sizeDiff = maxFruSdrNameSize - name.size();
691 
692     resp.header.record_id_lsb = 0x0; // calling code is to implement these
693     resp.header.record_id_msb = 0x0;
694     resp.header.sdr_version = ipmiSdrVersion;
695     resp.header.record_type = get_sdr::SENSOR_DATA_FRU_RECORD;
696     resp.header.record_length = sizeof(resp.body) + sizeof(resp.key) - sizeDiff;
697     resp.key.deviceAddress = 0x20;
698     resp.key.fruID = device->first;
699     resp.key.accessLun = 0x80; // logical / physical fru device
700     resp.key.channelNumber = 0x0;
701     resp.body.reserved = 0x0;
702     resp.body.deviceType = 0x10;
703     resp.body.deviceTypeModifier = 0x0;
704 
705     uint8_t entityID = 0;
706     uint8_t entityInstance = 0x1;
707 
708 #ifdef USING_ENTITY_MANAGER_DECORATORS
709     if (entityData)
710     {
711         auto entityIdProperty = entityData->find("EntityId");
712         auto entityInstanceProperty = entityData->find("EntityInstance");
713 
714         if (entityIdProperty != entityData->end())
715         {
716             entityID = static_cast<uint8_t>(
717                 std::get<uint64_t>(entityIdProperty->second));
718         }
719         if (entityInstanceProperty != entityData->end())
720         {
721             entityInstance = static_cast<uint8_t>(
722                 std::get<uint64_t>(entityInstanceProperty->second));
723         }
724     }
725 #endif
726 
727     resp.body.entityID = entityID;
728     resp.body.entityInstance = entityInstance;
729 
730     resp.body.oem = 0x0;
731     resp.body.deviceIDLen = ipmi::storage::typeASCIILatin8 | name.size();
732     name.copy(resp.body.deviceID, name.size());
733 
734     return IPMI_CC_OK;
735 }
736 
getSELLogFiles(std::vector<std::filesystem::path> & selLogFiles)737 static bool getSELLogFiles(std::vector<std::filesystem::path>& selLogFiles)
738 {
739     // Loop through the directory looking for ipmi_sel log files
740     for (const std::filesystem::directory_entry& dirEnt :
741          std::filesystem::directory_iterator(
742              dynamic_sensors::ipmi::sel::selLogDir))
743     {
744         std::string filename = dirEnt.path().filename();
745         if (boost::starts_with(filename,
746                                dynamic_sensors::ipmi::sel::selLogFilename))
747         {
748             // If we find an ipmi_sel log file, save the path
749             selLogFiles.emplace_back(
750                 dynamic_sensors::ipmi::sel::selLogDir / filename);
751         }
752     }
753     // As the log files rotate, they are appended with a ".#" that is higher for
754     // the older logs. Since we don't expect more than 10 log files, we
755     // can just sort the list to get them in order from newest to oldest
756     std::sort(selLogFiles.begin(), selLogFiles.end());
757 
758     return !selLogFiles.empty();
759 }
760 
countSELEntries()761 static int countSELEntries()
762 {
763     // Get the list of ipmi_sel log files
764     std::vector<std::filesystem::path> selLogFiles;
765     if (!getSELLogFiles(selLogFiles))
766     {
767         return 0;
768     }
769     int numSELEntries = 0;
770     // Loop through each log file and count the number of logs
771     for (const std::filesystem::path& file : selLogFiles)
772     {
773         std::ifstream logStream(file);
774         if (!logStream.is_open())
775         {
776             continue;
777         }
778 
779         std::string line;
780         while (std::getline(logStream, line))
781         {
782             numSELEntries++;
783         }
784     }
785     return numSELEntries;
786 }
787 
findSELEntry(const int recordID,const std::vector<std::filesystem::path> & selLogFiles,std::string & entry)788 static bool findSELEntry(const int recordID,
789                          const std::vector<std::filesystem::path>& selLogFiles,
790                          std::string& entry)
791 {
792     // Record ID is the first entry field following the timestamp. It is
793     // preceded by a space and followed by a comma
794     std::string search = " " + std::to_string(recordID) + ",";
795 
796     // Loop through the ipmi_sel log entries
797     for (const std::filesystem::path& file : selLogFiles)
798     {
799         std::ifstream logStream(file);
800         if (!logStream.is_open())
801         {
802             continue;
803         }
804 
805         while (std::getline(logStream, entry))
806         {
807             // Check if the record ID matches
808             if (entry.find(search) != std::string::npos)
809             {
810                 return true;
811             }
812         }
813     }
814     return false;
815 }
816 
817 static uint16_t
getNextRecordID(const uint16_t recordID,const std::vector<std::filesystem::path> & selLogFiles)818     getNextRecordID(const uint16_t recordID,
819                     const std::vector<std::filesystem::path>& selLogFiles)
820 {
821     uint16_t nextRecordID = recordID + 1;
822     std::string entry;
823     if (findSELEntry(nextRecordID, selLogFiles, entry))
824     {
825         return nextRecordID;
826     }
827     else
828     {
829         return ipmi::sel::lastEntry;
830     }
831 }
832 
fromHexStr(const std::string & hexStr,std::vector<uint8_t> & data)833 static int fromHexStr(const std::string& hexStr, std::vector<uint8_t>& data)
834 {
835     for (unsigned int i = 0; i < hexStr.size(); i += 2)
836     {
837         try
838         {
839             data.push_back(static_cast<uint8_t>(
840                 std::stoul(hexStr.substr(i, 2), nullptr, 16)));
841         }
842         catch (const std::invalid_argument& e)
843         {
844             lg2::error("Invalid argument: {ERROR}", "ERROR", e);
845             return -1;
846         }
847         catch (const std::out_of_range& e)
848         {
849             lg2::error("Out of range: {ERROR}", "ERROR", e);
850             return -1;
851         }
852     }
853     return 0;
854 }
855 
856 ipmi::RspType<uint8_t,  // SEL version
857               uint16_t, // SEL entry count
858               uint16_t, // free space
859               uint32_t, // last add timestamp
860               uint32_t, // last erase timestamp
861               uint8_t>  // operation support
ipmiStorageGetSELInfo()862     ipmiStorageGetSELInfo()
863 {
864     constexpr uint8_t selVersion = ipmi::sel::selVersion;
865     uint16_t entries = countSELEntries();
866     uint32_t addTimeStamp = dynamic_sensors::ipmi::sel::getFileTimestamp(
867         dynamic_sensors::ipmi::sel::selLogDir /
868         dynamic_sensors::ipmi::sel::selLogFilename);
869     uint32_t eraseTimeStamp = dynamic_sensors::ipmi::sel::erase_time::get();
870     constexpr uint8_t operationSupport =
871         dynamic_sensors::ipmi::sel::selOperationSupport;
872     constexpr uint16_t freeSpace =
873         0xffff; // Spec indicates that more than 64kB is free
874 
875     return ipmi::responseSuccess(selVersion, entries, freeSpace, addTimeStamp,
876                                  eraseTimeStamp, operationSupport);
877 }
878 
879 using systemEventType = std::tuple<
880     uint32_t, // Timestamp
881     uint16_t, // Generator ID
882     uint8_t,  // EvM Rev
883     uint8_t,  // Sensor Type
884     uint8_t,  // Sensor Number
885     uint7_t,  // Event Type
886     bool,     // Event Direction
887     std::array<uint8_t, dynamic_sensors::ipmi::sel::systemEventSize>>; // Event
888                                                                        // Data
889 using oemTsEventType = std::tuple<
890     uint32_t, // Timestamp
891     std::array<uint8_t, dynamic_sensors::ipmi::sel::oemTsEventSize>>; // Event
892                                                                       // Data
893 using oemEventType =
894     std::array<uint8_t, dynamic_sensors::ipmi::sel::oemEventSize>; // Event Data
895 
896 ipmi::RspType<uint16_t,                   // Next Record ID
897               uint16_t,                   // Record ID
898               uint8_t,                    // Record Type
899               std::variant<systemEventType, oemTsEventType,
900                            oemEventType>> // Record Content
ipmiStorageGetSELEntry(uint16_t reservationID,uint16_t targetID,uint8_t offset,uint8_t size)901     ipmiStorageGetSELEntry(uint16_t reservationID, uint16_t targetID,
902                            uint8_t offset, uint8_t size)
903 {
904     // Only support getting the entire SEL record. If a partial size or non-zero
905     // offset is requested, return an error
906     if (offset != 0 || size != ipmi::sel::entireRecord)
907     {
908         return ipmi::responseRetBytesUnavailable();
909     }
910 
911     // Check the reservation ID if one is provided or required (only if the
912     // offset is non-zero)
913     if (reservationID != 0 || offset != 0)
914     {
915         if (!checkSELReservation(reservationID))
916         {
917             return ipmi::responseInvalidReservationId();
918         }
919     }
920 
921     // Get the ipmi_sel log files
922     std::vector<std::filesystem::path> selLogFiles;
923     if (!getSELLogFiles(selLogFiles))
924     {
925         return ipmi::responseSensorInvalid();
926     }
927 
928     std::string targetEntry;
929 
930     if (targetID == ipmi::sel::firstEntry)
931     {
932         // The first entry will be at the top of the oldest log file
933         std::ifstream logStream(selLogFiles.back());
934         if (!logStream.is_open())
935         {
936             return ipmi::responseUnspecifiedError();
937         }
938 
939         if (!std::getline(logStream, targetEntry))
940         {
941             return ipmi::responseUnspecifiedError();
942         }
943     }
944     else if (targetID == ipmi::sel::lastEntry)
945     {
946         // The last entry will be at the bottom of the newest log file
947         std::ifstream logStream(selLogFiles.front());
948         if (!logStream.is_open())
949         {
950             return ipmi::responseUnspecifiedError();
951         }
952 
953         std::string line;
954         while (std::getline(logStream, line))
955         {
956             targetEntry = line;
957         }
958     }
959     else
960     {
961         if (!findSELEntry(targetID, selLogFiles, targetEntry))
962         {
963             return ipmi::responseSensorInvalid();
964         }
965     }
966 
967     // The format of the ipmi_sel message is "<Timestamp>
968     // <ID>,<Type>,<EventData>,[<Generator ID>,<Path>,<Direction>]".
969     // First get the Timestamp
970     size_t space = targetEntry.find_first_of(" ");
971     if (space == std::string::npos)
972     {
973         return ipmi::responseUnspecifiedError();
974     }
975     std::string entryTimestamp = targetEntry.substr(0, space);
976     // Then get the log contents
977     size_t entryStart = targetEntry.find_first_not_of(" ", space);
978     if (entryStart == std::string::npos)
979     {
980         return ipmi::responseUnspecifiedError();
981     }
982     std::string_view entry(targetEntry);
983     entry.remove_prefix(entryStart);
984     // Use split to separate the entry into its fields
985     std::vector<std::string> targetEntryFields;
986     boost::split(targetEntryFields, entry, boost::is_any_of(","),
987                  boost::token_compress_on);
988     if (targetEntryFields.size() < 3)
989     {
990         return ipmi::responseUnspecifiedError();
991     }
992     std::string& recordIDStr = targetEntryFields[0];
993     std::string& recordTypeStr = targetEntryFields[1];
994     std::string& eventDataStr = targetEntryFields[2];
995 
996     uint16_t recordID;
997     uint8_t recordType;
998     try
999     {
1000         recordID = std::stoul(recordIDStr);
1001         recordType = std::stoul(recordTypeStr, nullptr, 16);
1002     }
1003     catch (const std::invalid_argument&)
1004     {
1005         return ipmi::responseUnspecifiedError();
1006     }
1007     uint16_t nextRecordID = getNextRecordID(recordID, selLogFiles);
1008     std::vector<uint8_t> eventDataBytes;
1009     if (fromHexStr(eventDataStr, eventDataBytes) < 0)
1010     {
1011         return ipmi::responseUnspecifiedError();
1012     }
1013 
1014     if (recordType == dynamic_sensors::ipmi::sel::systemEvent)
1015     {
1016         // Get the timestamp
1017         std::tm timeStruct = {};
1018         std::istringstream entryStream(entryTimestamp);
1019 
1020         uint32_t timestamp = ipmi::sel::invalidTimeStamp;
1021         if (entryStream >> std::get_time(&timeStruct, "%Y-%m-%dT%H:%M:%S"))
1022         {
1023             timeStruct.tm_isdst = -1;
1024             timestamp = std::mktime(&timeStruct);
1025         }
1026 
1027         // Set the event message revision
1028         uint8_t evmRev = dynamic_sensors::ipmi::sel::eventMsgRev;
1029 
1030         uint16_t generatorID = 0;
1031         uint8_t sensorType = 0;
1032         uint16_t sensorAndLun = 0;
1033         uint8_t sensorNum = 0xFF;
1034         uint7_t eventType = 0;
1035         bool eventDir = 0;
1036         // System type events should have six fields
1037         if (targetEntryFields.size() >= 6)
1038         {
1039             std::string& generatorIDStr = targetEntryFields[3];
1040             std::string& sensorPath = targetEntryFields[4];
1041             std::string& eventDirStr = targetEntryFields[5];
1042 
1043             // Get the generator ID
1044             try
1045             {
1046                 generatorID = std::stoul(generatorIDStr, nullptr, 16);
1047             }
1048             catch (const std::invalid_argument&)
1049             {
1050                 std::cerr << "Invalid Generator ID\n";
1051             }
1052 
1053             // Get the sensor type, sensor number, and event type for the sensor
1054             sensorType = getSensorTypeFromPath(sensorPath);
1055             sensorAndLun = getSensorNumberFromPath(sensorPath);
1056             sensorNum = static_cast<uint8_t>(sensorAndLun);
1057             if ((generatorID & 0x0001) == 0)
1058             {
1059                 // IPMB Address
1060                 generatorID |= sensorAndLun & 0x0300;
1061             }
1062             else
1063             {
1064                 // system software
1065                 generatorID |= sensorAndLun >> 8;
1066             }
1067             eventType = getSensorEventTypeFromPath(sensorPath);
1068 
1069             // Get the event direction
1070             try
1071             {
1072                 eventDir = std::stoul(eventDirStr) ? 0 : 1;
1073             }
1074             catch (const std::invalid_argument&)
1075             {
1076                 std::cerr << "Invalid Event Direction\n";
1077             }
1078         }
1079 
1080         // Only keep the eventData bytes that fit in the record
1081         std::array<uint8_t, dynamic_sensors::ipmi::sel::systemEventSize>
1082             eventData{};
1083         std::copy_n(eventDataBytes.begin(),
1084                     std::min(eventDataBytes.size(), eventData.size()),
1085                     eventData.begin());
1086 
1087         return ipmi::responseSuccess(
1088             nextRecordID, recordID, recordType,
1089             systemEventType{timestamp, generatorID, evmRev, sensorType,
1090                             sensorNum, eventType, eventDir, eventData});
1091     }
1092 
1093     if (recordType >= dynamic_sensors::ipmi::sel::oemTsEventFirst &&
1094         recordType <= dynamic_sensors::ipmi::sel::oemTsEventLast)
1095     {
1096         // Get the timestamp
1097         std::tm timeStruct = {};
1098         std::istringstream entryStream(entryTimestamp);
1099 
1100         uint32_t timestamp = ipmi::sel::invalidTimeStamp;
1101         if (entryStream >> std::get_time(&timeStruct, "%Y-%m-%dT%H:%M:%S"))
1102         {
1103             timeStruct.tm_isdst = -1;
1104             timestamp = std::mktime(&timeStruct);
1105         }
1106 
1107         // Only keep the bytes that fit in the record
1108         std::array<uint8_t, dynamic_sensors::ipmi::sel::oemTsEventSize>
1109             eventData{};
1110         std::copy_n(eventDataBytes.begin(),
1111                     std::min(eventDataBytes.size(), eventData.size()),
1112                     eventData.begin());
1113 
1114         return ipmi::responseSuccess(nextRecordID, recordID, recordType,
1115                                      oemTsEventType{timestamp, eventData});
1116     }
1117 
1118     if (recordType >= dynamic_sensors::ipmi::sel::oemEventFirst)
1119     {
1120         // Only keep the bytes that fit in the record
1121         std::array<uint8_t, dynamic_sensors::ipmi::sel::oemEventSize>
1122             eventData{};
1123         std::copy_n(eventDataBytes.begin(),
1124                     std::min(eventDataBytes.size(), eventData.size()),
1125                     eventData.begin());
1126 
1127         return ipmi::responseSuccess(nextRecordID, recordID, recordType,
1128                                      eventData);
1129     }
1130 
1131     return ipmi::responseUnspecifiedError();
1132 }
1133 
1134 /*
1135 Unused arguments
1136   uint16_t recordID, uint8_t recordType, uint32_t timestamp,
1137   uint16_t generatorID, uint8_t evmRev, uint8_t sensorType, uint8_t sensorNum,
1138   uint8_t eventType, uint8_t eventData1, uint8_t eventData2,
1139   uint8_t eventData3
1140 */
1141 ipmi::RspType<uint16_t>
ipmiStorageAddSELEntry(uint16_t,uint8_t,uint32_t,uint16_t,uint8_t,uint8_t,uint8_t,uint8_t,uint8_t,uint8_t,uint8_t)1142     ipmiStorageAddSELEntry(uint16_t, uint8_t, uint32_t, uint16_t, uint8_t,
1143                            uint8_t, uint8_t, uint8_t, uint8_t, uint8_t, uint8_t)
1144 {
1145     // Per the IPMI spec, need to cancel any reservation when a SEL entry is
1146     // added
1147     cancelSELReservation();
1148 
1149     uint16_t responseID = 0xFFFF;
1150     return ipmi::responseSuccess(responseID);
1151 }
1152 
ipmiStorageClearSEL(ipmi::Context::ptr ctx,uint16_t reservationID,const std::array<uint8_t,3> & clr,uint8_t eraseOperation)1153 ipmi::RspType<uint8_t> ipmiStorageClearSEL(
1154     ipmi::Context::ptr ctx, uint16_t reservationID,
1155     const std::array<uint8_t, 3>& clr, uint8_t eraseOperation)
1156 {
1157     if (!checkSELReservation(reservationID))
1158     {
1159         return ipmi::responseInvalidReservationId();
1160     }
1161 
1162     static constexpr std::array<uint8_t, 3> clrExpected = {'C', 'L', 'R'};
1163     if (clr != clrExpected)
1164     {
1165         return ipmi::responseInvalidFieldRequest();
1166     }
1167 
1168     // Erasure status cannot be fetched, so always return erasure status as
1169     // `erase completed`.
1170     if (eraseOperation == ipmi::sel::getEraseStatus)
1171     {
1172         return ipmi::responseSuccess(ipmi::sel::eraseComplete);
1173     }
1174 
1175     // Check that initiate erase is correct
1176     if (eraseOperation != ipmi::sel::initiateErase)
1177     {
1178         return ipmi::responseInvalidFieldRequest();
1179     }
1180 
1181     // Per the IPMI spec, need to cancel any reservation when the SEL is
1182     // cleared
1183     cancelSELReservation();
1184 
1185     boost::system::error_code ec;
1186     ctx->bus->yield_method_call<>(ctx->yield, ec, selLoggerServiceName,
1187                                   "/xyz/openbmc_project/Logging/IPMI",
1188                                   "xyz.openbmc_project.Logging.IPMI", "Clear");
1189     if (ec)
1190     {
1191         std::cerr << "error in clear SEL: " << ec << std::endl;
1192         return ipmi::responseUnspecifiedError();
1193     }
1194 
1195     return ipmi::responseSuccess(ipmi::sel::eraseComplete);
1196 }
1197 
getType8SDRs(ipmi::sensor::EntityInfoMap::const_iterator & entity,uint16_t recordId)1198 std::vector<uint8_t> getType8SDRs(
1199     ipmi::sensor::EntityInfoMap::const_iterator& entity, uint16_t recordId)
1200 {
1201     std::vector<uint8_t> resp;
1202     get_sdr::SensorDataEntityRecord data{};
1203 
1204     /* Header */
1205     get_sdr::header::set_record_id(recordId, &(data.header));
1206     // Based on IPMI Spec v2.0 rev 1.1
1207     data.header.sdr_version = SDR_VERSION;
1208     data.header.record_type = 0x08;
1209     data.header.record_length = sizeof(data.key) + sizeof(data.body);
1210 
1211     /* Key */
1212     data.key.containerEntityId = entity->second.containerEntityId;
1213     data.key.containerEntityInstance = entity->second.containerEntityInstance;
1214     get_sdr::key::set_flags(entity->second.isList, entity->second.isLinked,
1215                             &(data.key));
1216     data.key.entityId1 = entity->second.containedEntities[0].first;
1217     data.key.entityInstance1 = entity->second.containedEntities[0].second;
1218 
1219     /* Body */
1220     data.body.entityId2 = entity->second.containedEntities[1].first;
1221     data.body.entityInstance2 = entity->second.containedEntities[1].second;
1222     data.body.entityId3 = entity->second.containedEntities[2].first;
1223     data.body.entityInstance3 = entity->second.containedEntities[2].second;
1224     data.body.entityId4 = entity->second.containedEntities[3].first;
1225     data.body.entityInstance4 = entity->second.containedEntities[3].second;
1226 
1227     resp.insert(resp.end(), (uint8_t*)&data, ((uint8_t*)&data) + sizeof(data));
1228 
1229     return resp;
1230 }
1231 
getType12SDRs(uint16_t index,uint16_t recordId)1232 std::vector<uint8_t> getType12SDRs(uint16_t index, uint16_t recordId)
1233 {
1234     std::vector<uint8_t> resp;
1235     if (index == 0)
1236     {
1237         std::string bmcName = "Basbrd Mgmt Ctlr";
1238         Type12Record bmc(recordId, 0x20, 0, 0, 0xbf, 0x2e, 1, 0, bmcName);
1239         uint8_t* bmcPtr = reinterpret_cast<uint8_t*>(&bmc);
1240         resp.insert(resp.end(), bmcPtr, bmcPtr + sizeof(Type12Record));
1241     }
1242     else if (index == 1)
1243     {
1244         std::string meName = "Mgmt Engine";
1245         Type12Record me(recordId, 0x2c, 6, 0x24, 0x21, 0x2e, 2, 0, meName);
1246         uint8_t* mePtr = reinterpret_cast<uint8_t*>(&me);
1247         resp.insert(resp.end(), mePtr, mePtr + sizeof(Type12Record));
1248     }
1249     else
1250     {
1251         throw std::runtime_error(
1252             "getType12SDRs:: Illegal index " + std::to_string(index));
1253     }
1254 
1255     return resp;
1256 }
1257 
registerStorageFunctions()1258 void registerStorageFunctions()
1259 {
1260     createTimers();
1261     startMatch();
1262 
1263     // <Get FRU Inventory Area Info>
1264     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1265                           ipmi::storage::cmdGetFruInventoryAreaInfo,
1266                           ipmi::Privilege::User, ipmiStorageGetFruInvAreaInfo);
1267     // <READ FRU Data>
1268     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1269                           ipmi::storage::cmdReadFruData, ipmi::Privilege::User,
1270                           ipmiStorageReadFruData);
1271 
1272     // <WRITE FRU Data>
1273     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1274                           ipmi::storage::cmdWriteFruData,
1275                           ipmi::Privilege::Operator, ipmiStorageWriteFruData);
1276 
1277     // <Get SEL Info>
1278     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1279                           ipmi::storage::cmdGetSelInfo, ipmi::Privilege::User,
1280                           ipmiStorageGetSELInfo);
1281 
1282     // <Get SEL Entry>
1283     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1284                           ipmi::storage::cmdGetSelEntry, ipmi::Privilege::User,
1285                           ipmiStorageGetSELEntry);
1286 
1287     // <Add SEL Entry>
1288     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1289                           ipmi::storage::cmdAddSelEntry,
1290                           ipmi::Privilege::Operator, ipmiStorageAddSELEntry);
1291 
1292     // <Clear SEL>
1293     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnStorage,
1294                           ipmi::storage::cmdClearSel, ipmi::Privilege::Operator,
1295                           ipmiStorageClearSEL);
1296 }
1297 } // namespace storage
1298 } // namespace ipmi
1299