1 // SPDX-License-Identifier: Apache-2.0
2 // SPDX-FileCopyrightText: Copyright 2018 Intel Corporation
3
4 #include "../utils.hpp"
5 #include "fru_utils.hpp"
6
7 #include <fcntl.h>
8 #include <sys/inotify.h>
9 #include <sys/ioctl.h>
10
11 #include <boost/asio/io_context.hpp>
12 #include <boost/asio/steady_timer.hpp>
13 #include <boost/container/flat_map.hpp>
14 #include <nlohmann/json.hpp>
15 #include <phosphor-logging/lg2.hpp>
16 #include <sdbusplus/asio/connection.hpp>
17 #include <sdbusplus/asio/object_server.hpp>
18
19 #include <array>
20 #include <cerrno>
21 #include <charconv>
22 #include <chrono>
23 #include <ctime>
24 #include <filesystem>
25 #include <fstream>
26 #include <functional>
27 #include <future>
28 #include <iomanip>
29 #include <iostream>
30 #include <limits>
31 #include <map>
32 #include <optional>
33 #include <regex>
34 #include <set>
35 #include <sstream>
36 #include <string>
37 #include <thread>
38 #include <utility>
39 #include <variant>
40 #include <vector>
41
42 extern "C"
43 {
44 #include <i2c/smbus.h>
45 #include <linux/i2c-dev.h>
46 }
47
48 namespace fs = std::filesystem;
49 constexpr size_t maxFruSize = 512;
50 constexpr size_t maxEepromPageIndex = 255;
51 constexpr size_t busTimeoutSeconds = 10;
52
53 constexpr const char* blocklistPath = PACKAGE_DIR "blacklist.json";
54
55 const static constexpr char* baseboardFruLocation =
56 "/etc/fru/baseboard.fru.bin";
57
58 const static constexpr char* i2CDevLocation = "/dev";
59
60 constexpr const char* fruDevice16BitDetectMode = FRU_DEVICE_16BITDETECTMODE;
61
62 // TODO Refactor these to not be globals
63 // NOLINTBEGIN(cppcoreguidelines-avoid-non-const-global-variables)
64 static boost::container::flat_map<size_t, std::optional<std::set<size_t>>>
65 busBlocklist;
66 struct FindDevicesWithCallback;
67
68 static boost::container::flat_map<
69 std::pair<size_t, size_t>, std::shared_ptr<sdbusplus::asio::dbus_interface>>
70 foundDevices;
71
72 static boost::container::flat_map<size_t, std::set<size_t>> failedAddresses;
73 static boost::container::flat_map<size_t, std::set<size_t>> fruAddresses;
74
75 boost::asio::io_context io;
76 // NOLINTEND(cppcoreguidelines-avoid-non-const-global-variables)
77
78 bool updateFruProperty(
79 const std::string& propertyValue, uint32_t bus, uint32_t address,
80 const std::string& propertyName,
81 boost::container::flat_map<
82 std::pair<size_t, size_t>,
83 std::shared_ptr<sdbusplus::asio::dbus_interface>>& dbusInterfaceMap,
84 size_t& unknownBusObjectCount, const bool& powerIsOn,
85 sdbusplus::asio::object_server& objServer);
86
87 // Given a bus/address, produce the path in sysfs for an eeprom.
getEepromPath(size_t bus,size_t address)88 static std::string getEepromPath(size_t bus, size_t address)
89 {
90 std::stringstream output;
91 output << "/sys/bus/i2c/devices/" << bus << "-" << std::right
92 << std::setfill('0') << std::setw(4) << std::hex << address
93 << "/eeprom";
94 return output.str();
95 }
96
hasEepromFile(size_t bus,size_t address)97 static bool hasEepromFile(size_t bus, size_t address)
98 {
99 auto path = getEepromPath(bus, address);
100 try
101 {
102 return fs::exists(path);
103 }
104 catch (...)
105 {
106 return false;
107 }
108 }
109
readFromEeprom(int fd,off_t offset,size_t len,uint8_t * buf)110 static int64_t readFromEeprom(int fd, off_t offset, size_t len, uint8_t* buf)
111 {
112 auto result = lseek(fd, offset, SEEK_SET);
113 if (result < 0)
114 {
115 std::cerr << "failed to seek\n";
116 return -1;
117 }
118
119 return read(fd, buf, len);
120 }
121
busStrToInt(const std::string_view busName)122 static int busStrToInt(const std::string_view busName)
123 {
124 auto findBus = busName.rfind('-');
125 if (findBus == std::string::npos)
126 {
127 return -1;
128 }
129 std::string_view num = busName.substr(findBus + 1);
130 int val = 0;
131 bool fullMatch = false;
132 fromCharsWrapper(num, val, fullMatch);
133 return val;
134 }
135
getRootBus(size_t bus)136 static int getRootBus(size_t bus)
137 {
138 auto ec = std::error_code();
139 auto path = std::filesystem::read_symlink(
140 std::filesystem::path(
141 "/sys/bus/i2c/devices/i2c-" + std::to_string(bus) + "/mux_device"),
142 ec);
143 if (ec)
144 {
145 return -1;
146 }
147
148 std::string filename = path.filename();
149 auto findBus = filename.find('-');
150 if (findBus == std::string::npos)
151 {
152 return -1;
153 }
154 return std::stoi(filename.substr(0, findBus));
155 }
156
isMuxBus(size_t bus)157 static bool isMuxBus(size_t bus)
158 {
159 auto ec = std::error_code();
160 auto isSymlink =
161 is_symlink(std::filesystem::path("/sys/bus/i2c/devices/i2c-" +
162 std::to_string(bus) + "/mux_device"),
163 ec);
164 return (!ec && isSymlink);
165 }
166
makeProbeInterface(size_t bus,size_t address,sdbusplus::asio::object_server & objServer)167 static void makeProbeInterface(size_t bus, size_t address,
168 sdbusplus::asio::object_server& objServer)
169 {
170 if (isMuxBus(bus))
171 {
172 return; // the mux buses are random, no need to publish
173 }
174 auto [it, success] = foundDevices.emplace(
175 std::make_pair(bus, address),
176 objServer.add_interface(
177 "/xyz/openbmc_project/FruDevice/" + std::to_string(bus) + "_" +
178 std::to_string(address),
179 "xyz.openbmc_project.Inventory.Item.I2CDevice"));
180 if (!success)
181 {
182 return; // already added
183 }
184 it->second->register_property("Bus", bus);
185 it->second->register_property("Address", address);
186 it->second->initialize();
187 }
188
189 // Issue an I2C transaction to first write to_target_buf_len bytes,then read
190 // from_target_buf_len bytes.
i2cSmbusWriteThenRead(int file,uint16_t address,uint8_t * toTargetBuf,uint8_t toTargetBufLen,uint8_t * fromTargetBuf,uint8_t fromTargetBufLen)191 static int i2cSmbusWriteThenRead(
192 int file, uint16_t address, uint8_t* toTargetBuf, uint8_t toTargetBufLen,
193 uint8_t* fromTargetBuf, uint8_t fromTargetBufLen)
194 {
195 if (toTargetBuf == nullptr || toTargetBufLen == 0 ||
196 fromTargetBuf == nullptr || fromTargetBufLen == 0)
197 {
198 return -1;
199 }
200
201 constexpr size_t smbusWriteThenReadMsgCount = 2;
202 std::array<struct i2c_msg, smbusWriteThenReadMsgCount> msgs{};
203 struct i2c_rdwr_ioctl_data rdwr{};
204
205 msgs[0].addr = address;
206 msgs[0].flags = 0;
207 msgs[0].len = toTargetBufLen;
208 msgs[0].buf = toTargetBuf;
209 msgs[1].addr = address;
210 msgs[1].flags = I2C_M_RD;
211 msgs[1].len = fromTargetBufLen;
212 msgs[1].buf = fromTargetBuf;
213
214 rdwr.msgs = msgs.data();
215 rdwr.nmsgs = msgs.size();
216
217 int ret = ioctl(file, I2C_RDWR, &rdwr);
218
219 return (ret == static_cast<int>(msgs.size())) ? msgs[1].len : -1;
220 }
221
readData(bool is16bit,bool isBytewise,int file,uint16_t address,off_t offset,size_t len,uint8_t * buf)222 static int64_t readData(bool is16bit, bool isBytewise, int file,
223 uint16_t address, off_t offset, size_t len,
224 uint8_t* buf)
225 {
226 if (!is16bit)
227 {
228 if (!isBytewise)
229 {
230 return i2c_smbus_read_i2c_block_data(
231 file, static_cast<uint8_t>(offset), len, buf);
232 }
233
234 std::span<uint8_t> bufspan{buf, len};
235 for (size_t i = 0; i < len; i++)
236 {
237 int byte = i2c_smbus_read_byte_data(
238 file, static_cast<uint8_t>(offset + i));
239 if (byte < 0)
240 {
241 return static_cast<int64_t>(byte);
242 }
243 bufspan[i] = static_cast<uint8_t>(byte);
244 }
245 return static_cast<int64_t>(len);
246 }
247
248 offset = htobe16(offset);
249 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast)
250 uint8_t* u8Offset = reinterpret_cast<uint8_t*>(&offset);
251 return i2cSmbusWriteThenRead(file, address, u8Offset, 2, buf, len);
252 }
253
254 // Mode_1:
255 // --------
256 // Please refer to document docs/address_size_detection_modes.md for
257 // more details and explanations.
isDevice16BitMode1(int file)258 static std::optional<bool> isDevice16BitMode1(int file)
259 {
260 // Set the higher data word address bits to 0. It's safe on 8-bit
261 // addressing EEPROMs because it doesn't write any actual data.
262 int ret = i2c_smbus_write_byte(file, 0);
263 if (ret < 0)
264 {
265 return std::nullopt;
266 }
267
268 /* Get first byte */
269 int byte1 = i2c_smbus_read_byte_data(file, 0);
270 if (byte1 < 0)
271 {
272 return std::nullopt;
273 }
274 /* Read 7 more bytes, it will read same first byte in case of
275 * 8 bit but it will read next byte in case of 16 bit
276 */
277 for (int i = 0; i < 7; i++)
278 {
279 int byte2 = i2c_smbus_read_byte_data(file, 0);
280 if (byte2 < 0)
281 {
282 return std::nullopt;
283 }
284 if (byte2 != byte1)
285 {
286 return true;
287 }
288 }
289 return false;
290 }
291
292 // Mode_2:
293 // --------
294 // Please refer to document docs/address_size_detection_modes.md for
295 // more details and explanations.
isDevice16BitMode2(int file,uint16_t address)296 static std::optional<bool> isDevice16BitMode2(int file, uint16_t address)
297 {
298 uint8_t first = 0;
299 uint8_t cur = 0;
300 uint16_t v = 0;
301 int ret = 0;
302 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast)
303 uint8_t* p = reinterpret_cast<uint8_t*>(&v);
304
305 /*
306 * Write 2 bytes byte0 = 0, byte1 = {0..7} and then subsequent read byte
307 * It will read same first byte in case of 8 bit but
308 * it will read next byte in case of 16 bit
309 */
310 for (int i = 0; i < 8; i++)
311 {
312 v = htobe16(i);
313
314 ret = i2cSmbusWriteThenRead(file, address, p, 2, &cur, 1);
315 if (ret < 0)
316 {
317 return std::nullopt;
318 }
319
320 if (i == 0)
321 {
322 first = cur;
323 }
324
325 if (first != cur)
326 {
327 return true;
328 }
329 }
330 return false;
331 }
332
isDevice16Bit(int file,uint16_t address)333 static std::optional<bool> isDevice16Bit(int file, uint16_t address)
334 {
335 std::string mode(fruDevice16BitDetectMode);
336
337 if (mode == "MODE_2")
338 {
339 return isDevice16BitMode2(file, address);
340 }
341
342 return isDevice16BitMode1(file);
343 }
344
345 // TODO: This code is very similar to the non-eeprom version and can be merged
346 // with some tweaks.
processEeprom(int bus,int address)347 static std::vector<uint8_t> processEeprom(int bus, int address)
348 {
349 auto path = getEepromPath(bus, address);
350
351 int file = open(path.c_str(), O_RDONLY);
352 if (file < 0)
353 {
354 std::cerr << "Unable to open eeprom file: " << path << "\n";
355 return {};
356 }
357
358 std::string errorMessage = "eeprom at " + std::to_string(bus) +
359 " address " + std::to_string(address);
360 auto readFunc = [file](off_t offset, size_t length, uint8_t* outbuf) {
361 return readFromEeprom(file, offset, length, outbuf);
362 };
363 FRUReader reader(std::move(readFunc));
364 std::pair<std::vector<uint8_t>, bool> pair =
365 readFRUContents(reader, errorMessage);
366
367 close(file);
368 return pair.first;
369 }
370
findI2CEeproms(int i2cBus,const std::shared_ptr<DeviceMap> & devices)371 std::set<size_t> findI2CEeproms(int i2cBus,
372 const std::shared_ptr<DeviceMap>& devices)
373 {
374 std::set<size_t> foundList;
375
376 std::string path = "/sys/bus/i2c/devices/i2c-" + std::to_string(i2cBus);
377
378 // For each file listed under the i2c device
379 // NOTE: This should be faster than just checking for each possible address
380 // path.
381 auto ec = std::error_code();
382 for (const auto& p : fs::directory_iterator(path, ec))
383 {
384 if (ec)
385 {
386 std::cerr << "directory_iterator err " << ec.message() << "\n";
387 break;
388 }
389 const std::string node = p.path().string();
390 std::smatch m;
391 bool found =
392 std::regex_match(node, m, std::regex(".+\\d+-([0-9abcdef]+$)"));
393
394 if (!found)
395 {
396 continue;
397 }
398 if (m.size() != 2)
399 {
400 std::cerr << "regex didn't capture\n";
401 continue;
402 }
403
404 std::ssub_match subMatch = m[1];
405 std::string addressString = subMatch.str();
406 std::string_view addressStringView(addressString);
407
408 size_t address = 0;
409 std::from_chars(addressStringView.begin(), addressStringView.end(),
410 address, 16);
411
412 const std::string eeprom = node + "/eeprom";
413
414 try
415 {
416 if (!fs::exists(eeprom))
417 {
418 continue;
419 }
420 }
421 catch (...)
422 {
423 continue;
424 }
425
426 // There is an eeprom file at this address, it may have invalid
427 // contents, but we found it.
428 foundList.insert(address);
429
430 std::vector<uint8_t> device = processEeprom(i2cBus, address);
431 if (!device.empty())
432 {
433 devices->emplace(address, device);
434 }
435 }
436
437 return foundList;
438 }
439
getBusFRUs(int file,int first,int last,int bus,std::shared_ptr<DeviceMap> devices,const bool & powerIsOn,sdbusplus::asio::object_server & objServer)440 int getBusFRUs(int file, int first, int last, int bus,
441 std::shared_ptr<DeviceMap> devices, const bool& powerIsOn,
442 sdbusplus::asio::object_server& objServer)
443 {
444 std::future<int> future = std::async(std::launch::async, [&]() {
445 // NOTE: When reading the devices raw on the bus, it can interfere with
446 // the driver's ability to operate, therefore read eeproms first before
447 // scanning for devices without drivers. Several experiments were run
448 // and it was determined that if there were any devices on the bus
449 // before the eeprom was hit and read, the eeprom driver wouldn't open
450 // while the bus device was open. An experiment was not performed to see
451 // if this issue was resolved if the i2c bus device was closed, but
452 // hexdumps of the eeprom later were successful.
453
454 // Scan for i2c eeproms loaded on this bus.
455 std::set<size_t> skipList = findI2CEeproms(bus, devices);
456 std::set<size_t>& failedItems = failedAddresses[bus];
457 std::set<size_t>& foundItems = fruAddresses[bus];
458 foundItems.clear();
459
460 auto busFind = busBlocklist.find(bus);
461 if (busFind != busBlocklist.end())
462 {
463 if (busFind->second != std::nullopt)
464 {
465 for (const auto& address : *(busFind->second))
466 {
467 skipList.insert(address);
468 }
469 }
470 }
471
472 std::set<size_t>* rootFailures = nullptr;
473 int rootBus = getRootBus(bus);
474
475 if (rootBus >= 0)
476 {
477 auto rootBusFind = busBlocklist.find(rootBus);
478 if (rootBusFind != busBlocklist.end())
479 {
480 if (rootBusFind->second != std::nullopt)
481 {
482 for (const auto& rootAddress : *(rootBusFind->second))
483 {
484 skipList.insert(rootAddress);
485 }
486 }
487 }
488 rootFailures = &(failedAddresses[rootBus]);
489 foundItems = fruAddresses[rootBus];
490 }
491
492 constexpr int startSkipTargetAddr = 0;
493 constexpr int endSkipTargetAddr = 12;
494
495 for (int ii = first; ii <= last; ii++)
496 {
497 if (foundItems.contains(ii))
498 {
499 continue;
500 }
501 if (skipList.contains(ii))
502 {
503 continue;
504 }
505 // skipping since no device is present in this range
506 if (ii >= startSkipTargetAddr && ii <= endSkipTargetAddr)
507 {
508 continue;
509 }
510 // Set target address
511 if (ioctl(file, I2C_SLAVE, ii) < 0)
512 {
513 std::cerr << "device at bus " << bus << " address " << ii
514 << " busy\n";
515 continue;
516 }
517 // probe
518 if (i2c_smbus_read_byte(file) < 0)
519 {
520 continue;
521 }
522
523 lg2::debug("something at bus {BUS}, addr {ADDR}", "BUS", bus,
524 "ADDR", ii);
525
526 makeProbeInterface(bus, ii, objServer);
527
528 if (failedItems.contains(ii))
529 {
530 // if we failed to read it once, unlikely we can read it later
531 continue;
532 }
533
534 if (rootFailures != nullptr)
535 {
536 if (rootFailures->contains(ii))
537 {
538 continue;
539 }
540 }
541
542 /* Check for Device type if it is 8 bit or 16 bit */
543 std::optional<bool> is16Bit = isDevice16Bit(file, ii);
544 if (!is16Bit.has_value())
545 {
546 std::cerr << "failed to read bus " << bus << " address " << ii
547 << "\n";
548 if (powerIsOn)
549 {
550 failedItems.insert(ii);
551 }
552 continue;
553 }
554 bool is16BitBool{*is16Bit};
555
556 auto readFunc = [is16BitBool, file,
557 ii](off_t offset, size_t length, uint8_t* outbuf) {
558 return readData(is16BitBool, false, file, ii, offset, length,
559 outbuf);
560 };
561 FRUReader reader(std::move(readFunc));
562 std::string errorMessage =
563 "bus " + std::to_string(bus) + " address " + std::to_string(ii);
564 std::pair<std::vector<uint8_t>, bool> pair =
565 readFRUContents(reader, errorMessage);
566 const bool foundHeader = pair.second;
567
568 if (!foundHeader && !is16BitBool)
569 {
570 // certain FRU eeproms require bytewise reading.
571 // otherwise garbage is read. e.g. SuperMicro PWS 920P-SQ
572
573 auto readFunc =
574 [is16BitBool, file,
575 ii](off_t offset, size_t length, uint8_t* outbuf) {
576 return readData(is16BitBool, true, file, ii, offset,
577 length, outbuf);
578 };
579 FRUReader readerBytewise(std::move(readFunc));
580 pair = readFRUContents(readerBytewise, errorMessage);
581 }
582
583 if (pair.first.empty())
584 {
585 continue;
586 }
587
588 devices->emplace(ii, pair.first);
589 fruAddresses[bus].insert(ii);
590 }
591 return 1;
592 });
593 std::future_status status =
594 future.wait_for(std::chrono::seconds(busTimeoutSeconds));
595 if (status == std::future_status::timeout)
596 {
597 std::cerr << "Error reading bus " << bus << "\n";
598 if (powerIsOn)
599 {
600 busBlocklist[bus] = std::nullopt;
601 }
602 close(file);
603 return -1;
604 }
605
606 close(file);
607 return future.get();
608 }
609
loadBlocklist(const char * path)610 void loadBlocklist(const char* path)
611 {
612 std::ifstream blocklistStream(path);
613 if (!blocklistStream.good())
614 {
615 // File is optional.
616 std::cerr << "Cannot open blocklist file.\n\n";
617 return;
618 }
619
620 nlohmann::json data =
621 nlohmann::json::parse(blocklistStream, nullptr, false);
622 if (data.is_discarded())
623 {
624 std::cerr << "Illegal blocklist file detected, cannot validate JSON, "
625 "exiting\n";
626 std::exit(EXIT_FAILURE);
627 }
628
629 // It's expected to have at least one field, "buses" that is an array of the
630 // buses by integer. Allow for future options to exclude further aspects,
631 // such as specific addresses or ranges.
632 if (data.type() != nlohmann::json::value_t::object)
633 {
634 std::cerr << "Illegal blocklist, expected to read dictionary\n";
635 std::exit(EXIT_FAILURE);
636 }
637
638 // If buses field is missing, that's fine.
639 if (data.count("buses") == 1)
640 {
641 // Parse the buses array after a little validation.
642 auto buses = data.at("buses");
643 if (buses.type() != nlohmann::json::value_t::array)
644 {
645 // Buses field present but invalid, therefore this is an error.
646 std::cerr << "Invalid contents for blocklist buses field\n";
647 std::exit(EXIT_FAILURE);
648 }
649
650 // Catch exception here for type mis-match.
651 try
652 {
653 for (const auto& busIterator : buses)
654 {
655 // If bus and addresses field are missing, that's fine.
656 if (busIterator.contains("bus") &&
657 busIterator.contains("addresses"))
658 {
659 auto busData = busIterator.at("bus");
660 auto bus = busData.get<size_t>();
661
662 auto addressData = busIterator.at("addresses");
663 auto addresses =
664 addressData.get<std::set<std::string_view>>();
665
666 auto& block = busBlocklist[bus].emplace();
667 for (const auto& address : addresses)
668 {
669 size_t addressInt = 0;
670 bool fullMatch = false;
671 fromCharsWrapper(address.substr(2), addressInt,
672 fullMatch, 16);
673 block.insert(addressInt);
674 }
675 }
676 else
677 {
678 busBlocklist[busIterator.get<size_t>()] = std::nullopt;
679 }
680 }
681 }
682 catch (const nlohmann::detail::type_error& e)
683 {
684 // Type mis-match is a critical error.
685 std::cerr << "Invalid bus type: " << e.what() << "\n";
686 std::exit(EXIT_FAILURE);
687 }
688 }
689 }
690
findI2CDevices(const std::vector<fs::path> & i2cBuses,BusMap & busmap,const bool & powerIsOn,sdbusplus::asio::object_server & objServer)691 static void findI2CDevices(const std::vector<fs::path>& i2cBuses,
692 BusMap& busmap, const bool& powerIsOn,
693 sdbusplus::asio::object_server& objServer)
694 {
695 for (const auto& i2cBus : i2cBuses)
696 {
697 int bus = busStrToInt(i2cBus.string());
698
699 if (bus < 0)
700 {
701 std::cerr << "Cannot translate " << i2cBus << " to int\n";
702 continue;
703 }
704 auto busFind = busBlocklist.find(bus);
705 if (busFind != busBlocklist.end())
706 {
707 if (busFind->second == std::nullopt)
708 {
709 continue; // Skip blocked busses.
710 }
711 }
712 int rootBus = getRootBus(bus);
713 auto rootBusFind = busBlocklist.find(rootBus);
714 if (rootBusFind != busBlocklist.end())
715 {
716 if (rootBusFind->second == std::nullopt)
717 {
718 continue;
719 }
720 }
721
722 auto file = open(i2cBus.c_str(), O_RDWR);
723 if (file < 0)
724 {
725 std::cerr << "unable to open i2c device " << i2cBus.string()
726 << "\n";
727 continue;
728 }
729 unsigned long funcs = 0;
730
731 if (ioctl(file, I2C_FUNCS, &funcs) < 0)
732 {
733 std::cerr
734 << "Error: Could not get the adapter functionality matrix bus "
735 << bus << "\n";
736 close(file);
737 continue;
738 }
739 if (((funcs & I2C_FUNC_SMBUS_READ_BYTE) == 0U) ||
740 ((I2C_FUNC_SMBUS_READ_I2C_BLOCK) == 0))
741 {
742 std::cerr << "Error: Can't use SMBus Receive Byte command bus "
743 << bus << "\n";
744 close(file);
745 continue;
746 }
747 auto& device = busmap[bus];
748 device = std::make_shared<DeviceMap>();
749
750 // i2cdetect by default uses the range 0x03 to 0x77, as
751 // this is what we have tested with, use this range. Could be
752 // changed in future.
753 lg2::debug("Scanning bus {BUS}", "BUS", bus);
754
755 // fd is closed in this function in case the bus locks up
756 getBusFRUs(file, 0x03, 0x77, bus, device, powerIsOn, objServer);
757
758 lg2::debug("Done scanning bus {BUS}", "BUS", bus);
759 }
760 }
761
762 // this class allows an async response after all i2c devices are discovered
763 struct FindDevicesWithCallback :
764 std::enable_shared_from_this<FindDevicesWithCallback>
765 {
FindDevicesWithCallbackFindDevicesWithCallback766 FindDevicesWithCallback(const std::vector<fs::path>& i2cBuses,
767 BusMap& busmap, const bool& powerIsOn,
768 sdbusplus::asio::object_server& objServer,
769 std::function<void()>&& callback) :
770 _i2cBuses(i2cBuses), _busMap(busmap), _powerIsOn(powerIsOn),
771 _objServer(objServer), _callback(std::move(callback))
772 {}
~FindDevicesWithCallbackFindDevicesWithCallback773 ~FindDevicesWithCallback()
774 {
775 _callback();
776 }
runFindDevicesWithCallback777 void run()
778 {
779 findI2CDevices(_i2cBuses, _busMap, _powerIsOn, _objServer);
780 }
781
782 const std::vector<fs::path>& _i2cBuses;
783 BusMap& _busMap;
784 const bool& _powerIsOn;
785 sdbusplus::asio::object_server& _objServer;
786 std::function<void()> _callback;
787 };
788
addFruObjectToDbus(std::vector<uint8_t> & device,boost::container::flat_map<std::pair<size_t,size_t>,std::shared_ptr<sdbusplus::asio::dbus_interface>> & dbusInterfaceMap,uint32_t bus,uint32_t address,size_t & unknownBusObjectCount,const bool & powerIsOn,sdbusplus::asio::object_server & objServer)789 void addFruObjectToDbus(
790 std::vector<uint8_t>& device,
791 boost::container::flat_map<
792 std::pair<size_t, size_t>,
793 std::shared_ptr<sdbusplus::asio::dbus_interface>>& dbusInterfaceMap,
794 uint32_t bus, uint32_t address, size_t& unknownBusObjectCount,
795 const bool& powerIsOn, sdbusplus::asio::object_server& objServer)
796 {
797 boost::container::flat_map<std::string, std::string> formattedFRU;
798
799 std::optional<std::string> optionalProductName = getProductName(
800 device, formattedFRU, bus, address, unknownBusObjectCount);
801 if (!optionalProductName)
802 {
803 std::cerr << "getProductName failed. product name is empty.\n";
804 return;
805 }
806
807 std::string productName =
808 "/xyz/openbmc_project/FruDevice/" + optionalProductName.value();
809
810 std::optional<int> index = findIndexForFRU(dbusInterfaceMap, productName);
811 if (index.has_value())
812 {
813 productName += "_";
814 productName += std::to_string(++(*index));
815 }
816
817 std::shared_ptr<sdbusplus::asio::dbus_interface> iface =
818 objServer.add_interface(productName, "xyz.openbmc_project.FruDevice");
819 dbusInterfaceMap[std::pair<size_t, size_t>(bus, address)] = iface;
820
821 if (ENABLE_FRU_UPDATE_PROPERTY)
822 {
823 iface->register_method(
824 "UpdateFruField",
825 [bus, address, &dbusInterfaceMap, &unknownBusObjectCount,
826 &powerIsOn, &objServer](const std::string& fieldName,
827 const std::string& fieldValue) {
828 // Update the property
829 if (!updateFruProperty(fieldValue, bus, address, fieldName,
830 dbusInterfaceMap, unknownBusObjectCount,
831 powerIsOn, objServer))
832 {
833 lg2::debug(
834 "Failed to Add Field: Name = {NAME}, Value = {VALUE}",
835 "NAME", fieldName, "VALUE", fieldValue);
836 return false;
837 }
838
839 return true;
840 });
841 }
842
843 for (auto& property : formattedFRU)
844 {
845 std::regex_replace(property.second.begin(), property.second.begin(),
846 property.second.end(), nonAsciiRegex, "_");
847 if (property.second.empty())
848 {
849 continue;
850 }
851 std::string key =
852 std::regex_replace(property.first, nonAsciiRegex, "_");
853
854 // Allow FRU field update if ENABLE_FRU_UPDATE_PROPERTY is set.
855 if (isFieldEditable(property.first))
856 {
857 std::string propertyName = property.first;
858 iface->register_property(
859 key, property.second + '\0',
860 [bus, address, propertyName, &dbusInterfaceMap,
861 &unknownBusObjectCount, &powerIsOn,
862 &objServer](const std::string& req, std::string& resp) {
863 if (strcmp(req.c_str(), resp.c_str()) != 0)
864 {
865 // call the method which will update
866 if (updateFruProperty(req, bus, address, propertyName,
867 dbusInterfaceMap,
868 unknownBusObjectCount, powerIsOn,
869 objServer))
870 {
871 resp = req;
872 }
873 else
874 {
875 throw std::invalid_argument(
876 "FRU property update failed.");
877 }
878 }
879 return 1;
880 });
881 }
882 else if (!iface->register_property(key, property.second + '\0'))
883 {
884 std::cerr << "illegal key: " << key << "\n";
885 }
886 lg2::debug("parsed FRU property: {FIRST}: {SECOND}", "FIRST",
887 property.first, "SECOND", property.second);
888 }
889
890 // baseboard will be 0, 0
891 iface->register_property("BUS", bus);
892 iface->register_property("ADDRESS", address);
893
894 iface->initialize();
895 }
896
readBaseboardFRU(std::vector<uint8_t> & baseboardFRU)897 static bool readBaseboardFRU(std::vector<uint8_t>& baseboardFRU)
898 {
899 // try to read baseboard fru from file
900 std::ifstream baseboardFRUFile(baseboardFruLocation, std::ios::binary);
901 if (baseboardFRUFile.good())
902 {
903 baseboardFRUFile.seekg(0, std::ios_base::end);
904 size_t fileSize = static_cast<size_t>(baseboardFRUFile.tellg());
905 baseboardFRU.resize(fileSize);
906 baseboardFRUFile.seekg(0, std::ios_base::beg);
907 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast)
908 char* charOffset = reinterpret_cast<char*>(baseboardFRU.data());
909 baseboardFRUFile.read(charOffset, fileSize);
910 }
911 else
912 {
913 return false;
914 }
915 return true;
916 }
917
writeFRU(uint8_t bus,uint8_t address,const std::vector<uint8_t> & fru)918 bool writeFRU(uint8_t bus, uint8_t address, const std::vector<uint8_t>& fru)
919 {
920 boost::container::flat_map<std::string, std::string> tmp;
921 if (fru.size() > maxFruSize)
922 {
923 std::cerr << "Invalid fru.size() during writeFRU\n";
924 return false;
925 }
926 // verify legal fru by running it through fru parsing logic
927 if (formatIPMIFRU(fru, tmp) != resCodes::resOK)
928 {
929 std::cerr << "Invalid fru format during writeFRU\n";
930 return false;
931 }
932 // baseboard fru
933 if (bus == 0 && address == 0)
934 {
935 std::ofstream file(baseboardFruLocation, std::ios_base::binary);
936 if (!file.good())
937 {
938 std::cerr << "Error opening file " << baseboardFruLocation << "\n";
939 throw DBusInternalError();
940 return false;
941 }
942 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast)
943 const char* charOffset = reinterpret_cast<const char*>(fru.data());
944 file.write(charOffset, fru.size());
945 return file.good();
946 }
947
948 if (hasEepromFile(bus, address))
949 {
950 auto path = getEepromPath(bus, address);
951 off_t offset = 0;
952
953 int eeprom = open(path.c_str(), O_RDWR | O_CLOEXEC);
954 if (eeprom < 0)
955 {
956 std::cerr << "unable to open i2c device " << path << "\n";
957 throw DBusInternalError();
958 return false;
959 }
960
961 std::array<uint8_t, I2C_SMBUS_BLOCK_MAX> blockData{};
962 std::string errorMessage = "eeprom at " + std::to_string(bus) +
963 " address " + std::to_string(address);
964 auto readFunc = [eeprom](off_t offset, size_t length, uint8_t* outbuf) {
965 return readFromEeprom(eeprom, offset, length, outbuf);
966 };
967 FRUReader reader(std::move(readFunc));
968
969 if (!findFRUHeader(reader, errorMessage, blockData, offset))
970 {
971 offset = 0;
972 }
973
974 if (lseek(eeprom, offset, SEEK_SET) < 0)
975 {
976 std::cerr << "Unable to seek to offset " << offset
977 << " in device: " << path << "\n";
978 close(eeprom);
979 throw DBusInternalError();
980 }
981
982 ssize_t writtenBytes = write(eeprom, fru.data(), fru.size());
983 if (writtenBytes < 0)
984 {
985 std::cerr << "unable to write to i2c device " << path << "\n";
986 close(eeprom);
987 throw DBusInternalError();
988 return false;
989 }
990
991 close(eeprom);
992 return true;
993 }
994
995 std::string i2cBus = "/dev/i2c-" + std::to_string(bus);
996
997 int file = open(i2cBus.c_str(), O_RDWR | O_CLOEXEC);
998 if (file < 0)
999 {
1000 std::cerr << "unable to open i2c device " << i2cBus << "\n";
1001 throw DBusInternalError();
1002 return false;
1003 }
1004 if (ioctl(file, I2C_SLAVE_FORCE, address) < 0)
1005 {
1006 std::cerr << "unable to set device address\n";
1007 close(file);
1008 throw DBusInternalError();
1009 return false;
1010 }
1011
1012 constexpr const size_t retryMax = 2;
1013 uint16_t index = 0;
1014 size_t retries = retryMax;
1015 while (index < fru.size())
1016 {
1017 if (((index != 0U) && ((index % (maxEepromPageIndex + 1)) == 0)) &&
1018 (retries == retryMax))
1019 {
1020 // The 4K EEPROM only uses the A2 and A1 device address bits
1021 // with the third bit being a memory page address bit.
1022 if (ioctl(file, I2C_SLAVE_FORCE, ++address) < 0)
1023 {
1024 std::cerr << "unable to set device address\n";
1025 close(file);
1026 throw DBusInternalError();
1027 return false;
1028 }
1029 }
1030
1031 if (i2c_smbus_write_byte_data(file, static_cast<uint8_t>(index),
1032 fru[index]) < 0)
1033 {
1034 if ((retries--) == 0U)
1035 {
1036 std::cerr << "error writing fru: " << strerror(errno) << "\n";
1037 close(file);
1038 throw DBusInternalError();
1039 return false;
1040 }
1041 }
1042 else
1043 {
1044 retries = retryMax;
1045 index++;
1046 }
1047 // most eeproms require 5-10ms between writes
1048 std::this_thread::sleep_for(std::chrono::milliseconds(10));
1049 }
1050 close(file);
1051 return true;
1052 }
1053
rescanOneBus(BusMap & busmap,uint16_t busNum,boost::container::flat_map<std::pair<size_t,size_t>,std::shared_ptr<sdbusplus::asio::dbus_interface>> & dbusInterfaceMap,bool dbusCall,size_t & unknownBusObjectCount,const bool & powerIsOn,sdbusplus::asio::object_server & objServer)1054 void rescanOneBus(
1055 BusMap& busmap, uint16_t busNum,
1056 boost::container::flat_map<
1057 std::pair<size_t, size_t>,
1058 std::shared_ptr<sdbusplus::asio::dbus_interface>>& dbusInterfaceMap,
1059 bool dbusCall, size_t& unknownBusObjectCount, const bool& powerIsOn,
1060 sdbusplus::asio::object_server& objServer)
1061 {
1062 for (auto device = foundDevices.begin(); device != foundDevices.end();)
1063 {
1064 if (device->first.first == static_cast<size_t>(busNum))
1065 {
1066 objServer.remove_interface(device->second);
1067 device = foundDevices.erase(device);
1068 }
1069 else
1070 {
1071 device++;
1072 }
1073 }
1074
1075 fs::path busPath = fs::path("/dev/i2c-" + std::to_string(busNum));
1076 if (!fs::exists(busPath))
1077 {
1078 if (dbusCall)
1079 {
1080 std::cerr << "Unable to access i2c bus " << static_cast<int>(busNum)
1081 << "\n";
1082 throw std::invalid_argument("Invalid Bus.");
1083 }
1084 return;
1085 }
1086
1087 std::vector<fs::path> i2cBuses;
1088 i2cBuses.emplace_back(busPath);
1089
1090 auto scan = std::make_shared<FindDevicesWithCallback>(
1091 i2cBuses, busmap, powerIsOn, objServer,
1092 [busNum, &busmap, &dbusInterfaceMap, &unknownBusObjectCount, &powerIsOn,
1093 &objServer]() {
1094 for (auto busIface = dbusInterfaceMap.begin();
1095 busIface != dbusInterfaceMap.end();)
1096 {
1097 if (busIface->first.first == static_cast<size_t>(busNum))
1098 {
1099 objServer.remove_interface(busIface->second);
1100 busIface = dbusInterfaceMap.erase(busIface);
1101 }
1102 else
1103 {
1104 busIface++;
1105 }
1106 }
1107 auto found = busmap.find(busNum);
1108 if (found == busmap.end() || found->second == nullptr)
1109 {
1110 return;
1111 }
1112 for (auto& device : *(found->second))
1113 {
1114 addFruObjectToDbus(device.second, dbusInterfaceMap,
1115 static_cast<uint32_t>(busNum), device.first,
1116 unknownBusObjectCount, powerIsOn, objServer);
1117 }
1118 });
1119 scan->run();
1120 }
1121
rescanBusses(BusMap & busmap,boost::container::flat_map<std::pair<size_t,size_t>,std::shared_ptr<sdbusplus::asio::dbus_interface>> & dbusInterfaceMap,size_t & unknownBusObjectCount,const bool & powerIsOn,sdbusplus::asio::object_server & objServer)1122 void rescanBusses(
1123 BusMap& busmap,
1124 boost::container::flat_map<
1125 std::pair<size_t, size_t>,
1126 std::shared_ptr<sdbusplus::asio::dbus_interface>>& dbusInterfaceMap,
1127 size_t& unknownBusObjectCount, const bool& powerIsOn,
1128 sdbusplus::asio::object_server& objServer)
1129 {
1130 static boost::asio::steady_timer timer(io);
1131 timer.expires_after(std::chrono::seconds(1));
1132
1133 // setup an async wait in case we get flooded with requests
1134 timer.async_wait([&](const boost::system::error_code& ec) {
1135 if (ec == boost::asio::error::operation_aborted)
1136 {
1137 return;
1138 }
1139
1140 if (ec)
1141 {
1142 std::cerr << "Error in timer: " << ec.message() << "\n";
1143 return;
1144 }
1145
1146 auto devDir = fs::path("/dev/");
1147 std::vector<fs::path> i2cBuses;
1148
1149 boost::container::flat_map<size_t, fs::path> busPaths;
1150 if (!getI2cDevicePaths(devDir, busPaths))
1151 {
1152 std::cerr << "unable to find i2c devices\n";
1153 return;
1154 }
1155
1156 for (const auto& busPath : busPaths)
1157 {
1158 i2cBuses.emplace_back(busPath.second);
1159 }
1160
1161 busmap.clear();
1162 for (auto& [pair, interface] : foundDevices)
1163 {
1164 objServer.remove_interface(interface);
1165 }
1166 foundDevices.clear();
1167
1168 auto scan = std::make_shared<FindDevicesWithCallback>(
1169 i2cBuses, busmap, powerIsOn, objServer, [&]() {
1170 for (auto& busIface : dbusInterfaceMap)
1171 {
1172 objServer.remove_interface(busIface.second);
1173 }
1174
1175 dbusInterfaceMap.clear();
1176 unknownBusObjectCount = 0;
1177
1178 // todo, get this from a more sensable place
1179 std::vector<uint8_t> baseboardFRU;
1180 if (readBaseboardFRU(baseboardFRU))
1181 {
1182 // If no device on i2c bus 0, the insertion will happen.
1183 auto bus0 =
1184 busmap.try_emplace(0, std::make_shared<DeviceMap>());
1185 bus0.first->second->emplace(0, baseboardFRU);
1186 }
1187 for (auto& devicemap : busmap)
1188 {
1189 for (auto& device : *devicemap.second)
1190 {
1191 addFruObjectToDbus(device.second, dbusInterfaceMap,
1192 devicemap.first, device.first,
1193 unknownBusObjectCount, powerIsOn,
1194 objServer);
1195 }
1196 }
1197 });
1198 scan->run();
1199 });
1200 }
1201
updateFruProperty(const std::string & propertyValue,uint32_t bus,uint32_t address,const std::string & propertyName,boost::container::flat_map<std::pair<size_t,size_t>,std::shared_ptr<sdbusplus::asio::dbus_interface>> & dbusInterfaceMap,size_t & unknownBusObjectCount,const bool & powerIsOn,sdbusplus::asio::object_server & objServer)1202 bool updateFruProperty(
1203 const std::string& propertyValue, uint32_t bus, uint32_t address,
1204 const std::string& propertyName,
1205 boost::container::flat_map<
1206 std::pair<size_t, size_t>,
1207 std::shared_ptr<sdbusplus::asio::dbus_interface>>& dbusInterfaceMap,
1208 size_t& unknownBusObjectCount, const bool& powerIsOn,
1209 sdbusplus::asio::object_server& objServer)
1210 {
1211 lg2::debug(
1212 "updateFruProperty called: FieldName = {NAME}, FieldValue = {VALUE}",
1213 "NAME", propertyName, "VALUE", propertyValue);
1214
1215 // Validate field length: must be 2–63 characters
1216 const size_t len = propertyValue.length();
1217 if (len == 1 || len > 63)
1218 {
1219 lg2::error(
1220 "FRU field data must be 0 or between 2 and 63 characters. Invalid Length: {LEN}",
1221 "LEN", len);
1222 return false;
1223 }
1224
1225 std::vector<uint8_t> fruData;
1226 if (!getFruData(fruData, bus, address))
1227 {
1228 lg2::error("Failure getting FRU Data from bus {BUS}, address {ADDRESS}",
1229 "BUS", bus, "ADDRESS", address);
1230 return false;
1231 }
1232
1233 if (fruData.empty())
1234 {
1235 lg2::error("Empty FRU data\n");
1236 return false;
1237 }
1238
1239 // Extract area name (prefix before underscore)
1240 std::string areaName = propertyName.substr(0, propertyName.find('_'));
1241 auto areaIterator =
1242 std::find(fruAreaNames.begin(), fruAreaNames.end(), areaName);
1243 if (areaIterator == fruAreaNames.end())
1244 {
1245 lg2::error("Failed to get FRU area for property: {AREA}", "AREA",
1246 areaName);
1247 return false;
1248 }
1249
1250 fruAreas fruAreaToUpdate = static_cast<fruAreas>(
1251 std::distance(fruAreaNames.begin(), areaIterator));
1252
1253 std::vector<std::vector<uint8_t>> areasData;
1254 if (!disassembleFruData(fruData, areasData))
1255 {
1256 lg2::error("Failed to disassemble Fru Data");
1257 return false;
1258 }
1259
1260 std::vector<uint8_t>& areaData =
1261 areasData[static_cast<size_t>(fruAreaToUpdate)];
1262 if (areaData.empty())
1263 {
1264 // If ENABLE_FRU_AREA_RESIZE is not defined then return with failure
1265 #ifndef ENABLE_FRU_AREA_RESIZE
1266 lg2::error(
1267 "FRU area {AREA} not present and ENABLE_FRU_AREA_RESIZE is not set. "
1268 "Returning failure.",
1269 "AREA", areaName);
1270 return false;
1271 #endif
1272 if (!createDummyArea(fruAreaToUpdate, areaData))
1273 {
1274 lg2::error("Failed to create dummy area for {AREA}", "AREA",
1275 areaName);
1276 return false;
1277 }
1278 }
1279
1280 if (!setField(fruAreaToUpdate, areaData, propertyName, propertyValue))
1281 {
1282 lg2::error("Failed to set field value for property: {PROPERTY}",
1283 "PROPERTY", propertyName);
1284 return false;
1285 }
1286
1287 if (!assembleFruData(fruData, areasData))
1288 {
1289 lg2::error("Failed to reassemble FRU data");
1290 return false;
1291 }
1292
1293 if (fruData.empty())
1294 {
1295 lg2::error("FRU data is empty after assembly");
1296 return false;
1297 }
1298
1299 if (!writeFRU(static_cast<uint8_t>(bus), static_cast<uint8_t>(address),
1300 fruData))
1301 {
1302 lg2::error("Failed to write the FRU");
1303 return false;
1304 }
1305
1306 rescanBusses(busMap, dbusInterfaceMap, unknownBusObjectCount, powerIsOn,
1307 objServer);
1308 return true;
1309 }
1310
main()1311 int main()
1312 {
1313 auto systemBus = std::make_shared<sdbusplus::asio::connection>(io);
1314 sdbusplus::asio::object_server objServer(systemBus);
1315
1316 static size_t unknownBusObjectCount = 0;
1317 static bool powerIsOn = false;
1318 auto devDir = fs::path("/dev/");
1319 auto matchString = std::string(R"(i2c-\d+$)");
1320 std::vector<fs::path> i2cBuses;
1321
1322 if (!findFiles(devDir, matchString, i2cBuses))
1323 {
1324 std::cerr << "unable to find i2c devices\n";
1325 return 1;
1326 }
1327
1328 // check for and load blocklist with initial buses.
1329 loadBlocklist(blocklistPath);
1330
1331 systemBus->request_name("xyz.openbmc_project.FruDevice");
1332
1333 // this is a map with keys of pair(bus number, address) and values of
1334 // the object on dbus
1335 boost::container::flat_map<std::pair<size_t, size_t>,
1336 std::shared_ptr<sdbusplus::asio::dbus_interface>>
1337 dbusInterfaceMap;
1338
1339 std::shared_ptr<sdbusplus::asio::dbus_interface> iface =
1340 objServer.add_interface("/xyz/openbmc_project/FruDevice",
1341 "xyz.openbmc_project.FruDeviceManager");
1342
1343 iface->register_method("ReScan", [&]() {
1344 rescanBusses(busMap, dbusInterfaceMap, unknownBusObjectCount, powerIsOn,
1345 objServer);
1346 });
1347
1348 iface->register_method("ReScanBus", [&](uint16_t bus) {
1349 rescanOneBus(busMap, bus, dbusInterfaceMap, true, unknownBusObjectCount,
1350 powerIsOn, objServer);
1351 });
1352
1353 iface->register_method("GetRawFru", getFRUInfo);
1354
1355 iface->register_method(
1356 "WriteFru", [&](const uint16_t bus, const uint8_t address,
1357 const std::vector<uint8_t>& data) {
1358 if (!writeFRU(bus, address, data))
1359 {
1360 throw std::invalid_argument("Invalid Arguments.");
1361 return;
1362 }
1363 // schedule rescan on success
1364 rescanBusses(busMap, dbusInterfaceMap, unknownBusObjectCount,
1365 powerIsOn, objServer);
1366 });
1367 iface->initialize();
1368
1369 std::function<void(sdbusplus::message_t & message)> eventHandler =
1370 [&](sdbusplus::message_t& message) {
1371 std::string objectName;
1372 boost::container::flat_map<
1373 std::string,
1374 std::variant<std::string, bool, int64_t, uint64_t, double>>
1375 values;
1376 message.read(objectName, values);
1377 auto findState = values.find("CurrentHostState");
1378 if (findState != values.end())
1379 {
1380 if (std::get<std::string>(findState->second) ==
1381 "xyz.openbmc_project.State.Host.HostState.Running")
1382 {
1383 powerIsOn = true;
1384 }
1385 }
1386
1387 if (powerIsOn)
1388 {
1389 rescanBusses(busMap, dbusInterfaceMap, unknownBusObjectCount,
1390 powerIsOn, objServer);
1391 }
1392 };
1393
1394 sdbusplus::bus::match_t powerMatch = sdbusplus::bus::match_t(
1395 static_cast<sdbusplus::bus_t&>(*systemBus),
1396 "type='signal',interface='org.freedesktop.DBus.Properties',path='/xyz/"
1397 "openbmc_project/state/"
1398 "host0',arg0='xyz.openbmc_project.State.Host'",
1399 eventHandler);
1400
1401 int fd = inotify_init();
1402 inotify_add_watch(fd, i2CDevLocation, IN_CREATE | IN_MOVED_TO | IN_DELETE);
1403 std::array<char, 4096> readBuffer{};
1404 // monitor for new i2c devices
1405 boost::asio::posix::stream_descriptor dirWatch(io, fd);
1406 std::function<void(const boost::system::error_code, std::size_t)>
1407 watchI2cBusses = [&](const boost::system::error_code& ec,
1408 std::size_t bytesTransferred) {
1409 if (ec)
1410 {
1411 std::cout << "Callback Error " << ec << "\n";
1412 return;
1413 }
1414 size_t index = 0;
1415 while ((index + sizeof(inotify_event)) <= bytesTransferred)
1416 {
1417 const char* p = &readBuffer[index];
1418 // NOLINTNEXTLINE(cppcoreguidelines-pro-type-reinterpret-cast)
1419 const auto* iEvent = reinterpret_cast<const inotify_event*>(p);
1420 switch (iEvent->mask)
1421 {
1422 case IN_CREATE:
1423 case IN_MOVED_TO:
1424 case IN_DELETE:
1425 {
1426 std::string_view name(&iEvent->name[0], iEvent->len);
1427 if (name.starts_with("i2c"))
1428 {
1429 int bus = busStrToInt(name);
1430 if (bus < 0)
1431 {
1432 std::cerr
1433 << "Could not parse bus " << name << "\n";
1434 continue;
1435 }
1436 int rootBus = getRootBus(bus);
1437 if (rootBus >= 0)
1438 {
1439 rescanOneBus(busMap,
1440 static_cast<uint16_t>(rootBus),
1441 dbusInterfaceMap, false,
1442 unknownBusObjectCount, powerIsOn,
1443 objServer);
1444 }
1445 rescanOneBus(busMap, static_cast<uint16_t>(bus),
1446 dbusInterfaceMap, false,
1447 unknownBusObjectCount, powerIsOn,
1448 objServer);
1449 }
1450 }
1451 break;
1452 default:
1453 break;
1454 }
1455 index += sizeof(inotify_event) + iEvent->len;
1456 }
1457
1458 dirWatch.async_read_some(boost::asio::buffer(readBuffer),
1459 watchI2cBusses);
1460 };
1461
1462 dirWatch.async_read_some(boost::asio::buffer(readBuffer), watchI2cBusses);
1463 // run the initial scan
1464 rescanBusses(busMap, dbusInterfaceMap, unknownBusObjectCount, powerIsOn,
1465 objServer);
1466
1467 io.run();
1468 return 0;
1469 }
1470