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