xref: /openbmc/dbus-sensors/src/psu/PSUSensorMain.cpp (revision 63ea9e3a3c6c027eb4f78ed8730715044de26a2e)
1 /*
2 // Copyright (c) 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 "DeviceMgmt.hpp"
18 #include "PSUEvent.hpp"
19 #include "PSUSensor.hpp"
20 #include "PwmSensor.hpp"
21 #include "SensorPaths.hpp"
22 #include "Thresholds.hpp"
23 #include "Utils.hpp"
24 #include "VariantVisitors.hpp"
25 
26 #include <boost/algorithm/string/case_conv.hpp>
27 #include <boost/algorithm/string/replace.hpp>
28 #include <boost/asio/error.hpp>
29 #include <boost/asio/io_context.hpp>
30 #include <boost/asio/post.hpp>
31 #include <boost/asio/steady_timer.hpp>
32 #include <boost/container/flat_map.hpp>
33 #include <boost/container/flat_set.hpp>
34 #include <phosphor-logging/lg2.hpp>
35 #include <sdbusplus/asio/connection.hpp>
36 #include <sdbusplus/asio/object_server.hpp>
37 #include <sdbusplus/bus.hpp>
38 #include <sdbusplus/bus/match.hpp>
39 #include <sdbusplus/exception.hpp>
40 #include <sdbusplus/message.hpp>
41 #include <sdbusplus/message/native_types.hpp>
42 
43 #include <algorithm>
44 #include <array>
45 #include <cctype>
46 #include <chrono>
47 #include <cmath>
48 #include <cstddef>
49 #include <cstdint>
50 #include <exception>
51 #include <filesystem>
52 #include <fstream>
53 #include <functional>
54 #include <iterator>
55 #include <memory>
56 #include <regex>
57 #include <stdexcept>
58 #include <string>
59 #include <string_view>
60 #include <utility>
61 #include <variant>
62 #include <vector>
63 
64 static std::regex i2cDevRegex(R"((\/i2c\-\d+\/\d+-[a-fA-F0-9]{4,4})(\/|$))");
65 
66 static const I2CDeviceTypeMap sensorTypes{
67     {"ADC128D818", I2CDeviceType{"adc128d818", true}},
68     {"ADM1266", I2CDeviceType{"adm1266", true}},
69     {"ADM1272", I2CDeviceType{"adm1272", true}},
70     {"ADM1275", I2CDeviceType{"adm1275", true}},
71     {"ADM1278", I2CDeviceType{"adm1278", true}},
72     {"ADM1293", I2CDeviceType{"adm1293", true}},
73     {"ADS1015", I2CDeviceType{"ads1015", true}},
74     {"ADS7830", I2CDeviceType{"ads7830", true}},
75     {"AHE50DC_FAN", I2CDeviceType{"ahe50dc_fan", true}},
76     {"BMR490", I2CDeviceType{"bmr490", true}},
77     {"cffps", I2CDeviceType{"cffps", true}},
78     {"cffps1", I2CDeviceType{"cffps", true}},
79     {"cffps2", I2CDeviceType{"cffps", true}},
80     {"cffps3", I2CDeviceType{"cffps", true}},
81     {"CRPS185", I2CDeviceType{"crps185", true}},
82     {"DPS800", I2CDeviceType{"dps800", true}},
83     {"INA219", I2CDeviceType{"ina219", true}},
84     {"INA226", I2CDeviceType{"ina226", true}},
85     {"INA230", I2CDeviceType{"ina230", true}},
86     {"INA233", I2CDeviceType{"ina233", true}},
87     {"INA238", I2CDeviceType{"ina238", true}},
88     {"IPSPS1", I2CDeviceType{"ipsps1", true}},
89     {"IR35221", I2CDeviceType{"ir35221", true}},
90     {"IR38060", I2CDeviceType{"ir38060", true}},
91     {"IR38164", I2CDeviceType{"ir38164", true}},
92     {"IR38263", I2CDeviceType{"ir38263", true}},
93     {"ISL28022", I2CDeviceType{"isl28022", true}},
94     {"ISL68137", I2CDeviceType{"isl68137", true}},
95     {"ISL68220", I2CDeviceType{"isl68220", true}},
96     {"ISL68223", I2CDeviceType{"isl68223", true}},
97     {"ISL69225", I2CDeviceType{"isl69225", true}},
98     {"ISL69243", I2CDeviceType{"isl69243", true}},
99     {"ISL69260", I2CDeviceType{"isl69260", true}},
100     {"LM25066", I2CDeviceType{"lm25066", true}},
101     {"LM5066I", I2CDeviceType{"lm5066i", true}},
102     {"LTC2945", I2CDeviceType{"ltc2945", true}},
103     {"LTC4286", I2CDeviceType{"ltc4286", true}},
104     {"LTC4287", I2CDeviceType{"ltc4287", true}},
105     {"MAX5970", I2CDeviceType{"max5970", true}},
106     {"MAX11607", I2CDeviceType{"max11607", false}},
107     {"MAX11615", I2CDeviceType{"max11615", false}},
108     {"MAX11617", I2CDeviceType{"max11617", false}},
109     {"MAX16601", I2CDeviceType{"max16601", true}},
110     {"MAX20710", I2CDeviceType{"max20710", true}},
111     {"MAX20730", I2CDeviceType{"max20730", true}},
112     {"MAX20734", I2CDeviceType{"max20734", true}},
113     {"MAX20796", I2CDeviceType{"max20796", true}},
114     {"MAX34451", I2CDeviceType{"max34451", true}},
115     {"MP2856", I2CDeviceType{"mp2856", true}},
116     {"MP2857", I2CDeviceType{"mp2857", true}},
117     {"MP2869", I2CDeviceType{"mp2869", true}},
118     {"MP2971", I2CDeviceType{"mp2971", true}},
119     {"MP2973", I2CDeviceType{"mp2973", true}},
120     {"MP2975", I2CDeviceType{"mp2975", true}},
121     {"MP5023", I2CDeviceType{"mp5023", true}},
122     {"MP5990", I2CDeviceType{"mp5990", true}},
123     {"MP5998", I2CDeviceType{"mp5998", true}},
124     {"MP9945", I2CDeviceType{"mp9945", true}},
125     {"MP29612", I2CDeviceType{"mp29612", true}},
126     {"MPQ8785", I2CDeviceType{"mpq8785", true}},
127     {"NCP4200", I2CDeviceType{"ncp4200", true}},
128     {"PLI1209BC", I2CDeviceType{"pli1209bc", true}},
129     {"pmbus", I2CDeviceType{"pmbus", true}},
130     {"PXE1610", I2CDeviceType{"pxe1610", true}},
131     {"SQ52206", I2CDeviceType{"sq52206", true}},
132     {"RAA228000", I2CDeviceType{"raa228000", true}},
133     {"RAA228004", I2CDeviceType{"raa228004", true}},
134     {"RAA228006", I2CDeviceType{"raa228006", true}},
135     {"RAA228228", I2CDeviceType{"raa228228", true}},
136     {"RAA228620", I2CDeviceType{"raa228620", true}},
137     {"RAA229001", I2CDeviceType{"raa229001", true}},
138     {"RAA229004", I2CDeviceType{"raa229004", true}},
139     {"RAA229126", I2CDeviceType{"raa229126", true}},
140     {"RTQ6056", I2CDeviceType{"rtq6056", false}},
141     {"SBRMI", I2CDeviceType{"sbrmi", true}},
142     {"smpro_hwmon", I2CDeviceType{"smpro", false}},
143     {"SY24655", I2CDeviceType{"sy24655", true}},
144     {"TDA38640", I2CDeviceType{"tda38640", true}},
145     {"TPS25990", I2CDeviceType{"tps25990", true}},
146     {"TPS53679", I2CDeviceType{"tps53679", true}},
147     {"TPS546D24", I2CDeviceType{"tps546d24", true}},
148     {"XDP710", I2CDeviceType{"xdp710", true}},
149     {"XDPE11280", I2CDeviceType{"xdpe11280", true}},
150     {"XDPE12284", I2CDeviceType{"xdpe12284", true}},
151     {"XDPE152C4", I2CDeviceType{"xdpe152c4", true}},
152 };
153 
154 enum class DevTypes
155 {
156     Unknown = 0,
157     HWMON,
158     IIO
159 };
160 
161 struct DevParams
162 {
163     unsigned int matchIndex = 0;
164     std::string matchRegEx;
165     std::string nameRegEx;
166 };
167 
168 static boost::container::flat_map<std::string, std::shared_ptr<PSUSensor>>
169     sensors;
170 static boost::container::flat_map<std::string, std::unique_ptr<PSUCombineEvent>>
171     combineEvents;
172 static boost::container::flat_map<std::string, std::unique_ptr<PwmSensor>>
173     pwmSensors;
174 static boost::container::flat_map<std::string, std::string> sensorTable;
175 static boost::container::flat_map<std::string, PSUProperty> labelMatch;
176 static EventPathList eventMatch;
177 static EventPathList limitEventMatch;
178 
179 static boost::container::flat_map<size_t, bool> cpuPresence;
180 static boost::container::flat_map<DevTypes, DevParams> devParamMap;
181 
182 // Function CheckEvent will check each attribute from eventMatch table in the
183 // sysfs. If the attributes exists in sysfs, then store the complete path
184 // of the attribute into eventPathList.
checkEvent(const std::string & directory,const EventPathList & eventMatch,EventPathList & eventPathList)185 void checkEvent(const std::string& directory, const EventPathList& eventMatch,
186                 EventPathList& eventPathList)
187 {
188     for (const auto& match : eventMatch)
189     {
190         const std::vector<std::string>& eventAttrs = match.second;
191         const std::string& eventName = match.first;
192         for (const auto& eventAttr : eventAttrs)
193         {
194             std::string eventPath = directory;
195             eventPath += "/";
196             eventPath += eventAttr;
197 
198             std::ifstream eventFile(eventPath);
199             if (!eventFile.good())
200             {
201                 continue;
202             }
203 
204             eventPathList[eventName].push_back(eventPath);
205         }
206     }
207 }
208 
209 // Check Group Events which contains more than one targets in each combine
210 // events.
checkGroupEvent(const std::string & directory,GroupEventPathList & groupEventPathList)211 void checkGroupEvent(const std::string& directory,
212                      GroupEventPathList& groupEventPathList)
213 {
214     EventPathList pathList;
215     std::vector<std::filesystem::path> eventPaths;
216     if (!findFiles(std::filesystem::path(directory), R"(fan\d+_(alarm|fault))",
217                    eventPaths))
218     {
219         return;
220     }
221 
222     for (const auto& eventPath : eventPaths)
223     {
224         std::string attrName = eventPath.filename();
225         pathList[attrName.substr(0, attrName.find('_'))].push_back(eventPath);
226     }
227     groupEventPathList["FanFault"] = pathList;
228 }
229 
230 // Function checkEventLimits will check all the psu related xxx_input attributes
231 // in sysfs to see if xxx_crit_alarm xxx_lcrit_alarm xxx_max_alarm
232 // xxx_min_alarm exist, then store the existing paths of the alarm attributes
233 // to eventPathList.
checkEventLimits(const std::string & sensorPathStr,const EventPathList & limitEventMatch,EventPathList & eventPathList)234 void checkEventLimits(const std::string& sensorPathStr,
235                       const EventPathList& limitEventMatch,
236                       EventPathList& eventPathList)
237 {
238     auto attributePartPos = sensorPathStr.find_last_of('_');
239     if (attributePartPos == std::string::npos)
240     {
241         // There is no '_' in the string, skip it
242         return;
243     }
244     auto attributePart =
245         std::string_view(sensorPathStr).substr(attributePartPos + 1);
246     if (attributePart != "input")
247     {
248         // If the sensor is not xxx_input, skip it
249         return;
250     }
251 
252     auto prefixPart = sensorPathStr.substr(0, attributePartPos + 1);
253     for (const auto& limitMatch : limitEventMatch)
254     {
255         const std::vector<std::string>& limitEventAttrs = limitMatch.second;
256         const std::string& eventName = limitMatch.first;
257         for (const auto& limitEventAttr : limitEventAttrs)
258         {
259             auto limitEventPath = prefixPart + limitEventAttr;
260             std::ifstream eventFile(limitEventPath);
261             if (!eventFile.good())
262             {
263                 continue;
264             }
265             eventPathList[eventName].push_back(limitEventPath);
266         }
267     }
268 }
269 
checkPWMSensor(const std::filesystem::path & sensorPath,std::string & labelHead,const std::string & interfacePath,std::shared_ptr<sdbusplus::asio::connection> & dbusConnection,sdbusplus::asio::object_server & objectServer,const std::string & psuName)270 static void checkPWMSensor(
271     const std::filesystem::path& sensorPath, std::string& labelHead,
272     const std::string& interfacePath,
273     std::shared_ptr<sdbusplus::asio::connection>& dbusConnection,
274     sdbusplus::asio::object_server& objectServer, const std::string& psuName)
275 {
276     if (!labelHead.starts_with("fan"))
277     {
278         return;
279     }
280     std::string labelHeadIndex = labelHead.substr(3);
281 
282     const std::string& sensorPathStr = sensorPath.string();
283     const std::string& pwmPathStr =
284         boost::replace_all_copy(sensorPathStr, "input", "target");
285     std::ifstream pwmFile(pwmPathStr);
286     if (!pwmFile.good())
287     {
288         return;
289     }
290 
291     auto findPWMSensor = pwmSensors.find(psuName + labelHead);
292     if (findPWMSensor != pwmSensors.end())
293     {
294         return;
295     }
296 
297     std::string name = "Pwm_";
298     name += psuName;
299     name += "_Fan_";
300     name += labelHeadIndex;
301 
302     std::string objPath = interfacePath;
303     objPath += "_Fan_";
304     objPath += labelHeadIndex;
305 
306     pwmSensors[psuName + labelHead] = std::make_unique<PwmSensor>(
307         name, pwmPathStr, dbusConnection, objectServer, objPath, "PSU");
308 }
309 
createSensorsCallback(boost::asio::io_context & io,sdbusplus::asio::object_server & objectServer,std::shared_ptr<sdbusplus::asio::connection> & dbusConnection,const ManagedObjectType & sensorConfigs,const std::shared_ptr<boost::container::flat_set<std::string>> & sensorsChanged,bool activateOnly)310 static void createSensorsCallback(
311     boost::asio::io_context& io, sdbusplus::asio::object_server& objectServer,
312     std::shared_ptr<sdbusplus::asio::connection>& dbusConnection,
313     const ManagedObjectType& sensorConfigs,
314     const std::shared_ptr<boost::container::flat_set<std::string>>&
315         sensorsChanged,
316     bool activateOnly)
317 {
318     int numCreated = 0;
319     bool firstScan = sensorsChanged == nullptr;
320 
321     auto devices = instantiateDevices(sensorConfigs, sensors, sensorTypes);
322 
323     std::vector<std::filesystem::path> pmbusPaths;
324     findFiles(std::filesystem::path("/sys/bus/iio/devices"), "name",
325               pmbusPaths);
326     findFiles(std::filesystem::path("/sys/class/hwmon"), "name", pmbusPaths);
327     if (pmbusPaths.empty())
328     {
329         lg2::error("No PSU sensors in system");
330         return;
331     }
332 
333     boost::container::flat_set<std::string> directories;
334     for (const auto& pmbusPath : pmbusPaths)
335     {
336         EventPathList eventPathList;
337         GroupEventPathList groupEventPathList;
338 
339         std::ifstream nameFile(pmbusPath);
340         if (!nameFile.good())
341         {
342             lg2::error("Failure finding '{PATH}'", "PATH", pmbusPath);
343             continue;
344         }
345 
346         std::string pmbusName;
347         std::getline(nameFile, pmbusName);
348         nameFile.close();
349 
350         if (!sensorTypes.contains(pmbusName))
351         {
352             // To avoid this error message, add your driver name to
353             // the pmbusNames vector at the top of this file.
354             lg2::error("'{NAME}' not found in sensor whitelist", "NAME",
355                        pmbusName);
356             continue;
357         }
358 
359         auto directory = pmbusPath.parent_path();
360 
361         auto ret = directories.insert(directory.string());
362         if (!ret.second)
363         {
364             lg2::error("Duplicate path: '{PATH}'", "PATH", directory);
365             continue; // check if path has already been searched
366         }
367 
368         DevTypes devType = DevTypes::HWMON;
369         std::string deviceName;
370         if (directory.parent_path() == "/sys/class/hwmon")
371         {
372             std::string devicePath =
373                 std::filesystem::canonical(directory / "device");
374             std::smatch match;
375             // Find /i2c-<bus>/<bus>-<address> match in device path
376             std::regex_search(devicePath, match, i2cDevRegex);
377             if (match.empty())
378             {
379                 lg2::error("Found bad device path: '{PATH}'", "PATH",
380                            devicePath);
381                 continue;
382             }
383             // Extract <bus>-<address>
384             std::string matchStr = match[1];
385             deviceName = matchStr.substr(matchStr.find_last_of('/') + 1);
386         }
387         else
388         {
389             deviceName =
390                 std::filesystem::canonical(directory).parent_path().stem();
391             devType = DevTypes::IIO;
392         }
393 
394         size_t bus = 0;
395         size_t addr = 0;
396         if (!getDeviceBusAddr(deviceName, bus, addr))
397         {
398             continue;
399         }
400 
401         const SensorBaseConfigMap* baseConfig = nullptr;
402         const SensorData* sensorData = nullptr;
403         const std::string* interfacePath = nullptr;
404         std::string sensorType;
405         size_t thresholdConfSize = 0;
406 
407         for (const auto& [path, cfgData] : sensorConfigs)
408         {
409             sensorData = &cfgData;
410             for (const auto& [type, dt] : sensorTypes)
411             {
412                 auto sensorBase = sensorData->find(configInterfaceName(type));
413                 if (sensorBase != sensorData->end())
414                 {
415                     baseConfig = &sensorBase->second;
416                     sensorType = type;
417                     break;
418                 }
419             }
420             if (baseConfig == nullptr)
421             {
422                 lg2::error("error finding base configuration for '{NAME}'",
423                            "NAME", deviceName);
424                 continue;
425             }
426 
427             auto configBus = baseConfig->find("Bus");
428             auto configAddress = baseConfig->find("Address");
429 
430             if (configBus == baseConfig->end() ||
431                 configAddress == baseConfig->end())
432             {
433                 lg2::error("error finding necessary entry in configuration");
434                 continue;
435             }
436 
437             const uint64_t* confBus =
438                 std::get_if<uint64_t>(&(configBus->second));
439             const uint64_t* confAddr =
440                 std::get_if<uint64_t>(&(configAddress->second));
441             if (confBus == nullptr || confAddr == nullptr)
442             {
443                 lg2::error("Cannot get bus or address, invalid configuration");
444                 continue;
445             }
446 
447             if ((*confBus != bus) || (*confAddr != addr))
448             {
449                 lg2::debug(
450                     "Configuration skipping '{CONFBUS}'-'{CONFADDR}' because not {BUS}-{ADDR}",
451                     "CONFBUS", *confBus, "CONFADDR", *confAddr, "BUS", bus,
452                     "ADDR", addr);
453                 continue;
454             }
455 
456             std::vector<thresholds::Threshold> confThresholds;
457             if (!parseThresholdsFromConfig(*sensorData, confThresholds))
458             {
459                 lg2::error("error populating total thresholds");
460             }
461             thresholdConfSize = confThresholds.size();
462 
463             interfacePath = &path.str;
464             break;
465         }
466         if (interfacePath == nullptr)
467         {
468             // To avoid this error message, add your export map entry,
469             // from Entity Manager, to sensorTypes at the top of this file.
470             lg2::error("failed to find match for '{NAME}'", "NAME", deviceName);
471             continue;
472         }
473 
474         auto findI2CDev = devices.find(*interfacePath);
475 
476         std::shared_ptr<I2CDevice> i2cDev;
477         if (findI2CDev != devices.end())
478         {
479             if (activateOnly && !findI2CDev->second.second)
480             {
481                 continue;
482             }
483             i2cDev = findI2CDev->second.first;
484         }
485 
486         auto findPSUName = baseConfig->find("Name");
487         if (findPSUName == baseConfig->end())
488         {
489             lg2::error("could not determine configuration name for '{NAME}'",
490                        "NAME", deviceName);
491             continue;
492         }
493         const std::string* psuName =
494             std::get_if<std::string>(&(findPSUName->second));
495         if (psuName == nullptr)
496         {
497             lg2::error("Cannot find psu name, invalid configuration");
498             continue;
499         }
500 
501         auto findCPU = baseConfig->find("CPURequired");
502         if (findCPU != baseConfig->end())
503         {
504             size_t index = std::visit(VariantToIntVisitor(), findCPU->second);
505             auto presenceFind = cpuPresence.find(index);
506             if (presenceFind == cpuPresence.end() || !presenceFind->second)
507             {
508                 continue;
509             }
510         }
511 
512         // on rescans, only update sensors we were signaled by
513         if (!firstScan)
514         {
515             std::string psuNameStr = "/" + escapeName(*psuName);
516             auto it =
517                 std::find_if(sensorsChanged->begin(), sensorsChanged->end(),
518                              [psuNameStr](std::string& s) {
519                                  return s.ends_with(psuNameStr);
520                              });
521 
522             if (it == sensorsChanged->end())
523             {
524                 continue;
525             }
526             sensorsChanged->erase(it);
527         }
528         checkEvent(directory.string(), eventMatch, eventPathList);
529         checkGroupEvent(directory.string(), groupEventPathList);
530 
531         PowerState readState = getPowerState(*baseConfig);
532 
533         /* Check if there are more sensors in the same interface */
534         int i = 1;
535         std::vector<std::string> psuNames;
536         do
537         {
538             // Individual string fields: Name, Name1, Name2, Name3, ...
539             psuNames.push_back(
540                 escapeName(std::get<std::string>(findPSUName->second)));
541             findPSUName = baseConfig->find("Name" + std::to_string(i++));
542         } while (findPSUName != baseConfig->end());
543 
544         std::vector<std::filesystem::path> sensorPaths;
545         if (!findFiles(directory, devParamMap[devType].matchRegEx, sensorPaths,
546                        0))
547         {
548             lg2::error("No PSU non-label sensor in PSU");
549             continue;
550         }
551 
552         /* read max value in sysfs for in, curr, power, temp, ... */
553         if (!findFiles(directory, R"(\w\d+_max$)", sensorPaths, 0))
554         {
555             lg2::debug("No max name in PSU");
556         }
557 
558         float pollRate = getPollRate(*baseConfig, PSUSensor::defaultSensorPoll);
559 
560         /* Find array of labels to be exposed if it is defined in config */
561         std::vector<std::string> findLabels;
562         auto findLabelObj = baseConfig->find("Labels");
563         if (findLabelObj != baseConfig->end())
564         {
565             findLabels =
566                 std::get<std::vector<std::string>>(findLabelObj->second);
567         }
568 
569         std::regex sensorNameRegEx(devParamMap[devType].nameRegEx);
570         std::smatch matches;
571 
572         for (const auto& sensorPath : sensorPaths)
573         {
574             bool maxLabel = false;
575             std::string labelHead;
576             std::string sensorPathStr = sensorPath.string();
577             std::string sensorNameStr = sensorPath.filename();
578             std::string sensorNameSubStr;
579             if (std::regex_search(sensorNameStr, matches, sensorNameRegEx))
580             {
581                 // hwmon *_input filename without number:
582                 // in, curr, power, temp, ...
583                 // iio in_*_raw filename without number:
584                 // voltage, temp, pressure, ...
585                 sensorNameSubStr = matches[devParamMap[devType].matchIndex];
586             }
587             else
588             {
589                 lg2::error("Could not extract the alpha prefix from '{NAME}'",
590                            "NAME", sensorNameStr);
591                 continue;
592             }
593 
594             std::string labelPath;
595 
596             if (devType == DevTypes::HWMON)
597             {
598                 /* find and differentiate _max and _input to replace "label" */
599                 size_t pos = sensorPathStr.find('_');
600                 if (pos != std::string::npos)
601                 {
602                     std::string sensorPathStrMax = sensorPathStr.substr(pos);
603                     if (sensorPathStrMax == "_max")
604                     {
605                         labelPath = boost::replace_all_copy(sensorPathStr,
606                                                             "max", "label");
607                         maxLabel = true;
608                     }
609                     else
610                     {
611                         labelPath = boost::replace_all_copy(sensorPathStr,
612                                                             "input", "label");
613                         maxLabel = false;
614                     }
615                 }
616                 else
617                 {
618                     continue;
619                 }
620 
621                 std::ifstream labelFile(labelPath);
622                 if (!labelFile.good())
623                 {
624                     lg2::debug(
625                         "Input file '{PATH}' has no corresponding label file",
626                         "PATH", sensorPath.string());
627                     // hwmon *_input filename with number:
628                     // temp1, temp2, temp3, ...
629                     labelHead =
630                         sensorNameStr.substr(0, sensorNameStr.find('_'));
631                 }
632                 else
633                 {
634                     std::string label;
635                     std::getline(labelFile, label);
636                     labelFile.close();
637                     auto findSensor = sensors.find(label);
638                     if (findSensor != sensors.end())
639                     {
640                         continue;
641                     }
642 
643                     // hwmon corresponding *_label file contents:
644                     // vin1, vout1, ...
645                     labelHead = label.substr(0, label.find(' '));
646                 }
647 
648                 /* append "max" for labelMatch */
649                 if (maxLabel)
650                 {
651                     labelHead.insert(0, "max");
652                 }
653 
654                 // Don't add PWM sensors if it's not in label list
655                 if (!findLabels.empty())
656                 {
657                     /* Check if this labelHead is enabled in config file */
658                     if (std::find(findLabels.begin(), findLabels.end(),
659                                   labelHead) == findLabels.end())
660                     {
661                         lg2::debug("could not find {LABEL} in the Labels list",
662                                    "LABEL", labelHead);
663                         continue;
664                     }
665                 }
666                 checkPWMSensor(sensorPath, labelHead, *interfacePath,
667                                dbusConnection, objectServer, psuNames[0]);
668             }
669             else if (devType == DevTypes::IIO)
670             {
671                 auto findIIOHyphen = sensorNameStr.find_last_of('_');
672                 labelHead = sensorNameStr.substr(0, findIIOHyphen);
673             }
674 
675             lg2::debug("Sensor type: {NAME}, label: {LABEL}", "NAME",
676                        sensorNameSubStr, "LABEL", labelHead);
677 
678             if (!findLabels.empty())
679             {
680                 /* Check if this labelHead is enabled in config file */
681                 if (std::find(findLabels.begin(), findLabels.end(),
682                               labelHead) == findLabels.end())
683                 {
684                     lg2::debug("could not find '{LABEL}' in the Labels list",
685                                "LABEL", labelHead);
686                     continue;
687                 }
688             }
689             auto it = std::find_if(labelHead.begin(), labelHead.end(),
690                                    static_cast<int (*)(int)>(std::isdigit));
691             std::string_view labelHeadView(
692                 labelHead.data(), std::distance(labelHead.begin(), it));
693             auto findProperty =
694                 labelMatch.find(static_cast<std::string>(labelHeadView));
695             if (findProperty == labelMatch.end())
696             {
697                 lg2::debug(
698                     "Could not find matching default property for '{LABEL}'",
699                     "LABEL", labelHead);
700                 continue;
701             }
702 
703             // Protect the hardcoded labelMatch list from changes,
704             // by making a copy and modifying that instead.
705             // Avoid bleedthrough of one device's customizations to
706             // the next device, as each should be independently customizable.
707             PSUProperty psuProperty = findProperty->second;
708 
709             // Use label head as prefix for reading from config file,
710             // example if temp1: temp1_Name, temp1_Scale, temp1_Min, ...
711             std::string keyName = labelHead + "_Name";
712             std::string keyScale = labelHead + "_Scale";
713             std::string keyMin = labelHead + "_Min";
714             std::string keyMax = labelHead + "_Max";
715             std::string keyOffset = labelHead + "_Offset";
716             std::string keyPowerState = labelHead + "_PowerState";
717 
718             bool customizedName = false;
719             auto findCustomName = baseConfig->find(keyName);
720             if (findCustomName != baseConfig->end())
721             {
722                 try
723                 {
724                     psuProperty.labelTypeName = std::visit(
725                         VariantToStringVisitor(), findCustomName->second);
726                 }
727                 catch (const std::invalid_argument&)
728                 {
729                     lg2::error("Unable to parse '{NAME}'", "NAME", keyName);
730                     continue;
731                 }
732 
733                 // All strings are valid, including empty string
734                 customizedName = true;
735             }
736 
737             bool customizedScale = false;
738             auto findCustomScale = baseConfig->find(keyScale);
739             if (findCustomScale != baseConfig->end())
740             {
741                 try
742                 {
743                     psuProperty.sensorScaleFactor = std::visit(
744                         VariantToUnsignedIntVisitor(), findCustomScale->second);
745                 }
746                 catch (const std::invalid_argument&)
747                 {
748                     lg2::error("Unable to parse '{SCALE}'", "SCALE", keyScale);
749                     continue;
750                 }
751 
752                 // Avoid later division by zero
753                 if (psuProperty.sensorScaleFactor > 0)
754                 {
755                     customizedScale = true;
756                 }
757                 else
758                 {
759                     lg2::error("Unable to accept '{SCALE}'", "SCALE", keyScale);
760                     continue;
761                 }
762             }
763 
764             auto findCustomMin = baseConfig->find(keyMin);
765             if (findCustomMin != baseConfig->end())
766             {
767                 try
768                 {
769                     psuProperty.minReading = std::visit(
770                         VariantToDoubleVisitor(), findCustomMin->second);
771                 }
772                 catch (const std::invalid_argument&)
773                 {
774                     lg2::error("Unable to parse '{MIN}'", "MIN", keyMin);
775                     continue;
776                 }
777             }
778 
779             auto findCustomMax = baseConfig->find(keyMax);
780             if (findCustomMax != baseConfig->end())
781             {
782                 try
783                 {
784                     psuProperty.maxReading = std::visit(
785                         VariantToDoubleVisitor(), findCustomMax->second);
786                 }
787                 catch (const std::invalid_argument&)
788                 {
789                     lg2::error("Unable to parse '{MAX}'", "MAX", keyMax);
790                     continue;
791                 }
792             }
793 
794             auto findCustomOffset = baseConfig->find(keyOffset);
795             if (findCustomOffset != baseConfig->end())
796             {
797                 try
798                 {
799                     psuProperty.sensorOffset = std::visit(
800                         VariantToDoubleVisitor(), findCustomOffset->second);
801                 }
802                 catch (const std::invalid_argument&)
803                 {
804                     lg2::error("Unable to parse '{OFFSET}'", "OFFSET",
805                                keyOffset);
806                     continue;
807                 }
808             }
809 
810             // if we find label head power state set ,override the powerstate.
811             auto findPowerState = baseConfig->find(keyPowerState);
812             if (findPowerState != baseConfig->end())
813             {
814                 std::string powerState = std::visit(VariantToStringVisitor(),
815                                                     findPowerState->second);
816                 setReadState(powerState, readState);
817             }
818             if (!(psuProperty.minReading < psuProperty.maxReading))
819             {
820                 lg2::error("Min must be less than Max");
821                 continue;
822             }
823 
824             // If the sensor name is being customized by config file,
825             // then prefix/suffix composition becomes not necessary,
826             // and in fact not wanted, because it gets in the way.
827             std::string psuNameFromIndex;
828             std::string nameIndexStr = "1";
829             if (!customizedName)
830             {
831                 /* Find out sensor name index for this label */
832                 std::regex rgx("[A-Za-z]+([0-9]+)");
833                 size_t nameIndex{0};
834                 if (std::regex_search(labelHead, matches, rgx))
835                 {
836                     nameIndexStr = matches[1];
837                     nameIndex = std::stoi(nameIndexStr);
838 
839                     // Decrement to preserve alignment, because hwmon
840                     // human-readable filenames and labels use 1-based
841                     // numbering, but the "Name", "Name1", "Name2", etc. naming
842                     // convention (the psuNames vector) uses 0-based numbering.
843                     if (nameIndex > 0)
844                     {
845                         --nameIndex;
846                     }
847                 }
848                 else
849                 {
850                     nameIndex = 0;
851                 }
852 
853                 if (psuNames.size() <= nameIndex)
854                 {
855                     lg2::error("Could not pair '{LABEL}' with a Name field",
856                                "LABEL", labelHead);
857                     continue;
858                 }
859 
860                 psuNameFromIndex = psuNames[nameIndex];
861 
862                 lg2::debug("'{LABEL}' paired with '{NAME}' at index '{INDEX}'",
863                            "LABEL", labelHead, "NAME", psuNameFromIndex,
864                            "INDEX", nameIndex);
865             }
866 
867             if (devType == DevTypes::HWMON)
868             {
869                 checkEventLimits(sensorPathStr, limitEventMatch, eventPathList);
870             }
871 
872             // Similarly, if sensor scaling factor is being customized,
873             // then the below power-of-10 constraint becomes unnecessary,
874             // as config should be able to specify an arbitrary divisor.
875             unsigned int factor = psuProperty.sensorScaleFactor;
876             if (!customizedScale)
877             {
878                 // Preserve existing usage of hardcoded labelMatch table below
879                 factor = std::pow(10.0, factor);
880 
881                 /* Change first char of substring to uppercase */
882                 char firstChar =
883                     static_cast<char>(std::toupper(sensorNameSubStr[0]));
884                 std::string strScaleFactor =
885                     firstChar + sensorNameSubStr.substr(1) + "ScaleFactor";
886 
887                 // Preserve existing configs by accepting earlier syntax,
888                 // example CurrScaleFactor, PowerScaleFactor, ...
889                 auto findScaleFactor = baseConfig->find(strScaleFactor);
890                 if (findScaleFactor != baseConfig->end())
891                 {
892                     factor = std::visit(VariantToIntVisitor(),
893                                         findScaleFactor->second);
894                 }
895 
896                 lg2::debug(
897                     "Sensor scaling factor '{FACTOR}' string '{SCALE_FACTOR}'",
898                     "FACTOR", factor, "SCALE_FACTOR", strScaleFactor);
899             }
900 
901             std::vector<thresholds::Threshold> sensorThresholds;
902             if (!parseThresholdsFromConfig(*sensorData, sensorThresholds,
903                                            &labelHead))
904             {
905                 lg2::error("error populating thresholds for '{NAME}'", "NAME",
906                            sensorNameSubStr);
907             }
908 
909             auto findSensorUnit = sensorTable.find(sensorNameSubStr);
910             if (findSensorUnit == sensorTable.end())
911             {
912                 lg2::error("'{NAME}' is not a recognized sensor type", "NAME",
913                            sensorNameSubStr);
914                 continue;
915             }
916 
917             lg2::debug("Sensor properties - Name: {NAME}, Scale: {SCALE}, "
918                        "Min: {MIN}, Max: {MAX}, Offset: {OFFSET}",
919                        "NAME", psuProperty.labelTypeName, "SCALE",
920                        psuProperty.sensorScaleFactor, "MIN",
921                        psuProperty.minReading, "MAX", psuProperty.maxReading,
922                        "OFFSET", psuProperty.sensorOffset);
923 
924             std::string sensorName = psuProperty.labelTypeName;
925             if (customizedName)
926             {
927                 if (sensorName.empty())
928                 {
929                     // Allow selective disabling of an individual sensor,
930                     // by customizing its name to an empty string.
931                     lg2::error("Sensor disabled, empty string");
932                     continue;
933                 }
934             }
935             else
936             {
937                 // Sensor name not customized, do prefix/suffix composition,
938                 // preserving default behavior by using psuNameFromIndex.
939                 sensorName = psuNameFromIndex + " " + psuProperty.labelTypeName;
940 
941                 // The labelTypeName of a fan can be:
942                 // "Fan Speed 1", "Fan Speed 2", "Fan Speed 3" ...
943                 if (labelHead == "fan" + nameIndexStr)
944                 {
945                     sensorName += nameIndexStr;
946                 }
947             }
948 
949             lg2::debug("Sensor name: {NAME}, path: {PATH}, type: {TYPE}",
950                        "NAME", sensorName, "PATH", sensorPathStr, "TYPE",
951                        sensorType);
952             // destruct existing one first if already created
953 
954             auto& sensor = sensors[sensorName];
955             if (!activateOnly)
956             {
957                 sensor = nullptr;
958             }
959 
960             if (sensor != nullptr)
961             {
962                 sensor->activate(sensorPathStr, i2cDev);
963             }
964             else
965             {
966                 sensors[sensorName] = std::make_shared<PSUSensor>(
967                     sensorPathStr, sensorType, objectServer, dbusConnection, io,
968                     sensorName, std::move(sensorThresholds), *interfacePath,
969                     readState, findSensorUnit->second, factor,
970                     psuProperty.maxReading, psuProperty.minReading,
971                     psuProperty.sensorOffset, labelHead, thresholdConfSize,
972                     pollRate, i2cDev);
973                 sensors[sensorName]->setupRead();
974                 ++numCreated;
975                 lg2::debug("Created '{NUM}' sensors so far", "NUM", numCreated);
976             }
977         }
978 
979         if (devType == DevTypes::HWMON)
980         {
981             // OperationalStatus event
982             combineEvents[*psuName + "OperationalStatus"] = nullptr;
983             combineEvents[*psuName + "OperationalStatus"] =
984                 std::make_unique<PSUCombineEvent>(
985                     objectServer, dbusConnection, io, *psuName, readState,
986                     eventPathList, groupEventPathList, "OperationalStatus",
987                     pollRate);
988         }
989     }
990 
991     lg2::debug("Created total of '{NUM}' sensors", "NUM", numCreated);
992 }
993 
getPresentCpus(std::shared_ptr<sdbusplus::asio::connection> & dbusConnection)994 static void getPresentCpus(
995     std::shared_ptr<sdbusplus::asio::connection>& dbusConnection)
996 {
997     static const int depth = 2;
998     static const int numKeys = 1;
999     GetSubTreeType cpuSubTree;
1000 
1001     try
1002     {
1003         auto getItems = dbusConnection->new_method_call(
1004             mapper::busName, mapper::path, mapper::interface, mapper::subtree);
1005         getItems.append(cpuInventoryPath, static_cast<int32_t>(depth),
1006                         std::array<const char*, numKeys>{
1007                             "xyz.openbmc_project.Inventory.Item"});
1008         auto getItemsResp = dbusConnection->call(getItems);
1009         getItemsResp.read(cpuSubTree);
1010     }
1011     catch (sdbusplus::exception_t& e)
1012     {
1013         lg2::error("error getting inventory item subtree: '{ERR}'", "ERR", e);
1014         return;
1015     }
1016 
1017     for (const auto& [path, objDict] : cpuSubTree)
1018     {
1019         auto obj = sdbusplus::message::object_path(path).filename();
1020         boost::to_lower(obj);
1021 
1022         if (!obj.starts_with("cpu") || objDict.empty())
1023         {
1024             continue;
1025         }
1026         const std::string& owner = objDict.begin()->first;
1027 
1028         std::variant<bool> respValue;
1029         try
1030         {
1031             auto getPresence = dbusConnection->new_method_call(
1032                 owner.c_str(), path.c_str(), "org.freedesktop.DBus.Properties",
1033                 "Get");
1034             getPresence.append("xyz.openbmc_project.Inventory.Item", "Present");
1035             auto resp = dbusConnection->call(getPresence);
1036             resp.read(respValue);
1037         }
1038         catch (sdbusplus::exception_t& e)
1039         {
1040             lg2::error("Error in getting CPU presence: '{ERR}'", "ERR", e);
1041             continue;
1042         }
1043 
1044         auto* present = std::get_if<bool>(&respValue);
1045         if (present != nullptr && *present)
1046         {
1047             int cpuIndex = 0;
1048             try
1049             {
1050                 cpuIndex = std::stoi(obj.substr(obj.size() - 1));
1051             }
1052             catch (const std::exception& e)
1053             {
1054                 lg2::error("Error converting CPU index: '{ERR}'", "ERR", e);
1055                 continue;
1056             }
1057             cpuPresence[cpuIndex] = *present;
1058         }
1059     }
1060 }
1061 
createSensors(boost::asio::io_context & io,sdbusplus::asio::object_server & objectServer,std::shared_ptr<sdbusplus::asio::connection> & dbusConnection,const std::shared_ptr<boost::container::flat_set<std::string>> & sensorsChanged,bool activateOnly)1062 void createSensors(
1063     boost::asio::io_context& io, sdbusplus::asio::object_server& objectServer,
1064     std::shared_ptr<sdbusplus::asio::connection>& dbusConnection,
1065     const std::shared_ptr<boost::container::flat_set<std::string>>&
1066         sensorsChanged,
1067     bool activateOnly)
1068 {
1069     auto getter = std::make_shared<GetSensorConfiguration>(
1070         dbusConnection, [&io, &objectServer, &dbusConnection, sensorsChanged,
1071                          activateOnly](const ManagedObjectType& sensorConfigs) {
1072             createSensorsCallback(io, objectServer, dbusConnection,
1073                                   sensorConfigs, sensorsChanged, activateOnly);
1074         });
1075     std::vector<std::string> types;
1076     types.reserve(sensorTypes.size());
1077     for (const auto& [type, dt] : sensorTypes)
1078     {
1079         types.push_back(type);
1080     }
1081     getter->getConfiguration(types);
1082 }
1083 
propertyInitialize()1084 void propertyInitialize()
1085 {
1086     sensorTable = {{"power", sensor_paths::unitWatts},
1087                    {"curr", sensor_paths::unitAmperes},
1088                    {"temp", sensor_paths::unitDegreesC},
1089                    {"in", sensor_paths::unitVolts},
1090                    {"voltage", sensor_paths::unitVolts},
1091                    {"fan", sensor_paths::unitRPMs}};
1092 
1093     labelMatch = {
1094         {"pin", PSUProperty("Input Power", 3000, 0, 6, 0)},
1095         {"pout", PSUProperty("Output Power", 3000, 0, 6, 0)},
1096         {"power", PSUProperty("Output Power", 3000, 0, 6, 0)},
1097         {"maxpin", PSUProperty("Max Input Power", 3000, 0, 6, 0)},
1098         {"vin", PSUProperty("Input Voltage", 300, 0, 3, 0)},
1099         {"maxvin", PSUProperty("Max Input Voltage", 300, 0, 3, 0)},
1100         {"in_voltage", PSUProperty("Output Voltage", 255, 0, 3, 0)},
1101         {"voltage", PSUProperty("Output Voltage", 255, 0, 3, 0)},
1102         {"vout", PSUProperty("Output Voltage", 255, 0, 3, 0)},
1103         {"vmon", PSUProperty("Auxiliary Input Voltage", 255, 0, 3, 0)},
1104         {"in", PSUProperty("Output Voltage", 255, 0, 3, 0)},
1105         {"iin", PSUProperty("Input Current", 20, 0, 3, 0)},
1106         {"iout", PSUProperty("Output Current", 255, 0, 3, 0)},
1107         {"curr", PSUProperty("Output Current", 255, 0, 3, 0)},
1108         {"maxiout", PSUProperty("Max Output Current", 255, 0, 3, 0)},
1109         {"temp", PSUProperty("Temperature", 127, -128, 3, 0)},
1110         {"maxtemp", PSUProperty("Max Temperature", 127, -128, 3, 0)},
1111         {"fan", PSUProperty("Fan Speed ", 30000, 0, 0, 0)}};
1112 
1113     limitEventMatch = {{"PredictiveFailure", {"max_alarm", "min_alarm"}},
1114                        {"Failure", {"crit_alarm", "lcrit_alarm"}}};
1115 
1116     eventMatch = {{"PredictiveFailure", {"power1_alarm"}},
1117                   {"Failure", {"in2_alarm"}},
1118                   {"ACLost", {"in1_beep"}},
1119                   {"ConfigureError", {"in1_fault"}}};
1120 
1121     devParamMap = {
1122         {DevTypes::HWMON, {1, R"(\w\d+_input$)", "([A-Za-z]+)[0-9]*_"}},
1123         {DevTypes::IIO,
1124          {2, R"(\w+_(raw|input)$)", "^(in|out)_([A-Za-z]+)[0-9]*_"}}};
1125 }
1126 
powerStateChanged(PowerState type,bool newState,boost::container::flat_map<std::string,std::shared_ptr<PSUSensor>> & sensors,boost::asio::io_context & io,sdbusplus::asio::object_server & objectServer,std::shared_ptr<sdbusplus::asio::connection> & dbusConnection)1127 static void powerStateChanged(
1128     PowerState type, bool newState,
1129     boost::container::flat_map<std::string, std::shared_ptr<PSUSensor>>&
1130         sensors,
1131     boost::asio::io_context& io, sdbusplus::asio::object_server& objectServer,
1132     std::shared_ptr<sdbusplus::asio::connection>& dbusConnection)
1133 {
1134     if (newState)
1135     {
1136         createSensors(io, objectServer, dbusConnection, nullptr, true);
1137     }
1138     else
1139     {
1140         for (auto& [path, sensor] : sensors)
1141         {
1142             if (sensor != nullptr && sensor->readState == type)
1143             {
1144                 sensor->deactivate();
1145             }
1146         }
1147     }
1148 }
1149 
main()1150 int main()
1151 {
1152     boost::asio::io_context io;
1153     auto systemBus = std::make_shared<sdbusplus::asio::connection>(io);
1154 
1155     sdbusplus::asio::object_server objectServer(systemBus, true);
1156     objectServer.add_manager("/xyz/openbmc_project/sensors");
1157     objectServer.add_manager("/xyz/openbmc_project/control");
1158     systemBus->request_name("xyz.openbmc_project.PSUSensor");
1159     auto sensorsChanged =
1160         std::make_shared<boost::container::flat_set<std::string>>();
1161 
1162     propertyInitialize();
1163 
1164     auto powerCallBack = [&io, &objectServer,
1165                           &systemBus](PowerState type, bool state) {
1166         powerStateChanged(type, state, sensors, io, objectServer, systemBus);
1167     };
1168 
1169     setupPowerMatchCallback(systemBus, powerCallBack);
1170 
1171     boost::asio::post(io, [&]() {
1172         createSensors(io, objectServer, systemBus, nullptr, false);
1173     });
1174     boost::asio::steady_timer filterTimer(io);
1175     std::function<void(sdbusplus::message_t&)> eventHandler =
1176         [&](sdbusplus::message_t& message) {
1177             if (message.is_method_error())
1178             {
1179                 lg2::error("callback method error");
1180                 return;
1181             }
1182             sensorsChanged->insert(message.get_path());
1183             filterTimer.expires_after(std::chrono::seconds(3));
1184             filterTimer.async_wait([&](const boost::system::error_code& ec) {
1185                 if (ec == boost::asio::error::operation_aborted)
1186                 {
1187                     return;
1188                 }
1189                 if (ec)
1190                 {
1191                     lg2::error("timer error");
1192                 }
1193                 createSensors(io, objectServer, systemBus, sensorsChanged,
1194                               false);
1195             });
1196         };
1197 
1198     boost::asio::steady_timer cpuFilterTimer(io);
1199     std::function<void(sdbusplus::message_t&)> cpuPresenceHandler =
1200         [&](sdbusplus::message_t& message) {
1201             std::string path = message.get_path();
1202             boost::to_lower(path);
1203 
1204             sdbusplus::message::object_path cpuPath(path);
1205             std::string cpuName = cpuPath.filename();
1206             if (!cpuName.starts_with("cpu"))
1207             {
1208                 return;
1209             }
1210             size_t index = 0;
1211             try
1212             {
1213                 index = std::stoi(path.substr(path.size() - 1));
1214             }
1215             catch (const std::invalid_argument&)
1216             {
1217                 lg2::error("Found invalid path: '{PATH}'", "PATH", path);
1218                 return;
1219             }
1220 
1221             std::string objectName;
1222             boost::container::flat_map<std::string, std::variant<bool>> values;
1223             message.read(objectName, values);
1224             auto findPresence = values.find("Present");
1225             if (findPresence == values.end())
1226             {
1227                 return;
1228             }
1229             try
1230             {
1231                 cpuPresence[index] = std::get<bool>(findPresence->second);
1232             }
1233             catch (const std::bad_variant_access& err)
1234             {
1235                 return;
1236             }
1237 
1238             if (!cpuPresence[index])
1239             {
1240                 return;
1241             }
1242             cpuFilterTimer.expires_after(std::chrono::seconds(1));
1243             cpuFilterTimer.async_wait([&](const boost::system::error_code& ec) {
1244                 if (ec == boost::asio::error::operation_aborted)
1245                 {
1246                     return;
1247                 }
1248                 if (ec)
1249                 {
1250                     lg2::error("timer error");
1251                     return;
1252                 }
1253                 createSensors(io, objectServer, systemBus, nullptr, false);
1254             });
1255         };
1256 
1257     std::vector<std::unique_ptr<sdbusplus::bus::match_t>> matches =
1258         setupPropertiesChangedMatches(*systemBus, sensorTypes, eventHandler);
1259 
1260     matches.emplace_back(std::make_unique<sdbusplus::bus::match_t>(
1261         static_cast<sdbusplus::bus_t&>(*systemBus),
1262         "type='signal',member='PropertiesChanged',path_namespace='" +
1263             std::string(cpuInventoryPath) +
1264             "',arg0namespace='xyz.openbmc_project.Inventory.Item'",
1265         cpuPresenceHandler));
1266 
1267     getPresentCpus(systemBus);
1268 
1269     setupManufacturingModeMatch(*systemBus);
1270     io.run();
1271 }
1272