1de54f486SWilly Tu /* 2de54f486SWilly Tu // Copyright (c) 2018 Intel Corporation 3de54f486SWilly Tu // 4de54f486SWilly Tu // Licensed under the Apache License, Version 2.0 (the "License"); 5de54f486SWilly Tu // you may not use this file except in compliance with the License. 6de54f486SWilly Tu // You may obtain a copy of the License at 7de54f486SWilly Tu // 8de54f486SWilly Tu // http://www.apache.org/licenses/LICENSE-2.0 9de54f486SWilly Tu // 10de54f486SWilly Tu // Unless required by applicable law or agreed to in writing, software 11de54f486SWilly Tu // distributed under the License is distributed on an "AS IS" BASIS, 12de54f486SWilly Tu // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13de54f486SWilly Tu // See the License for the specific language governing permissions and 14de54f486SWilly Tu // limitations under the License. 15de54f486SWilly Tu */ 16de54f486SWilly Tu 17de54f486SWilly Tu #include <boost/algorithm/string.hpp> 18de54f486SWilly Tu #include <boost/bimap.hpp> 19de54f486SWilly Tu #include <boost/container/flat_map.hpp> 20de54f486SWilly Tu #include <cstdio> 21de54f486SWilly Tu #include <cstring> 22de54f486SWilly Tu #include <exception> 23de54f486SWilly Tu #include <filesystem> 24de54f486SWilly Tu #include <ipmid/api.hpp> 25de54f486SWilly Tu #include <ipmid/types.hpp> 26de54f486SWilly Tu #include <map> 27*4eca2510SWilly Tu #include <optional> 28de54f486SWilly Tu #include <phosphor-logging/log.hpp> 29de54f486SWilly Tu #include <sdbusplus/bus/match.hpp> 30de54f486SWilly Tu #include <string> 31*4eca2510SWilly Tu #include <unordered_set> 32de54f486SWilly Tu #include <vector> 33de54f486SWilly Tu 34de54f486SWilly Tu #pragma once 35de54f486SWilly Tu 36de54f486SWilly Tu static constexpr bool debug = false; 37de54f486SWilly Tu 38de54f486SWilly Tu struct CmpStrVersion 39de54f486SWilly Tu { 40de54f486SWilly Tu bool operator()(std::string a, std::string b) const 41de54f486SWilly Tu { 42de54f486SWilly Tu return strverscmp(a.c_str(), b.c_str()) < 0; 43de54f486SWilly Tu } 44de54f486SWilly Tu }; 45de54f486SWilly Tu 46de54f486SWilly Tu using SensorSubTree = boost::container::flat_map< 47de54f486SWilly Tu std::string, 48de54f486SWilly Tu boost::container::flat_map<std::string, std::vector<std::string>>, 49de54f486SWilly Tu CmpStrVersion>; 50de54f486SWilly Tu 51de54f486SWilly Tu using SensorNumMap = boost::bimap<int, std::string>; 52de54f486SWilly Tu 53de54f486SWilly Tu static constexpr uint16_t maxSensorsPerLUN = 255; 54de54f486SWilly Tu static constexpr uint16_t maxIPMISensors = (maxSensorsPerLUN * 3); 55de54f486SWilly Tu static constexpr uint16_t lun1Sensor0 = 0x100; 56de54f486SWilly Tu static constexpr uint16_t lun3Sensor0 = 0x300; 57de54f486SWilly Tu static constexpr uint16_t invalidSensorNumber = 0xFFFF; 58de54f486SWilly Tu static constexpr uint8_t reservedSensorNumber = 0xFF; 59de54f486SWilly Tu 60de54f486SWilly Tu namespace details 61de54f486SWilly Tu { 62a55c953dSJosh Lehan // Enable/disable the logging of stats instrumentation 63a55c953dSJosh Lehan static constexpr bool enableInstrumentation = false; 64a55c953dSJosh Lehan 65a55c953dSJosh Lehan class IPMIStatsEntry 66a55c953dSJosh Lehan { 67a55c953dSJosh Lehan private: 68a55c953dSJosh Lehan int numReadings = 0; 69a55c953dSJosh Lehan int numMissings = 0; 70a55c953dSJosh Lehan int numStreakRead = 0; 71a55c953dSJosh Lehan int numStreakMiss = 0; 72a55c953dSJosh Lehan double minValue = 0.0; 73a55c953dSJosh Lehan double maxValue = 0.0; 74a55c953dSJosh Lehan std::string sensorName; 75a55c953dSJosh Lehan 76a55c953dSJosh Lehan public: 77a55c953dSJosh Lehan const std::string& getName(void) const 78a55c953dSJosh Lehan { 79a55c953dSJosh Lehan return sensorName; 80a55c953dSJosh Lehan } 81a55c953dSJosh Lehan 82a55c953dSJosh Lehan void updateName(std::string_view name) 83a55c953dSJosh Lehan { 84a55c953dSJosh Lehan sensorName = name; 85a55c953dSJosh Lehan } 86a55c953dSJosh Lehan 87a55c953dSJosh Lehan // Returns true if this is the first successful reading 88a55c953dSJosh Lehan // This is so the caller can log the coefficients used 89a55c953dSJosh Lehan bool updateReading(double reading, int raw) 90a55c953dSJosh Lehan { 91a55c953dSJosh Lehan if constexpr (!enableInstrumentation) 92a55c953dSJosh Lehan { 93a55c953dSJosh Lehan return false; 94a55c953dSJosh Lehan } 95a55c953dSJosh Lehan 96a55c953dSJosh Lehan bool first = ((numReadings == 0) && (numMissings == 0)); 97a55c953dSJosh Lehan 98a55c953dSJosh Lehan // Sensors can use "nan" to indicate unavailable reading 99a55c953dSJosh Lehan if (!(std::isfinite(reading))) 100a55c953dSJosh Lehan { 101a55c953dSJosh Lehan // Only show this if beginning a new streak 102a55c953dSJosh Lehan if (numStreakMiss == 0) 103a55c953dSJosh Lehan { 104a55c953dSJosh Lehan std::cerr << "IPMI sensor " << sensorName 105a55c953dSJosh Lehan << ": Missing reading, byte=" << raw 106a55c953dSJosh Lehan << ", Reading counts good=" << numReadings 107a55c953dSJosh Lehan << " miss=" << numMissings 108a55c953dSJosh Lehan << ", Prior good streak=" << numStreakRead << "\n"; 109a55c953dSJosh Lehan } 110a55c953dSJosh Lehan 111a55c953dSJosh Lehan numStreakRead = 0; 112a55c953dSJosh Lehan ++numMissings; 113a55c953dSJosh Lehan ++numStreakMiss; 114a55c953dSJosh Lehan 115a55c953dSJosh Lehan return first; 116a55c953dSJosh Lehan } 117a55c953dSJosh Lehan 118a55c953dSJosh Lehan // Only show this if beginning a new streak and not the first time 119a55c953dSJosh Lehan if ((numStreakRead == 0) && (numReadings != 0)) 120a55c953dSJosh Lehan { 121a55c953dSJosh Lehan std::cerr << "IPMI sensor " << sensorName 122a55c953dSJosh Lehan << ": Recovered reading, value=" << reading 123a55c953dSJosh Lehan << " byte=" << raw 124a55c953dSJosh Lehan << ", Reading counts good=" << numReadings 125a55c953dSJosh Lehan << " miss=" << numMissings 126a55c953dSJosh Lehan << ", Prior miss streak=" << numStreakMiss << "\n"; 127a55c953dSJosh Lehan } 128a55c953dSJosh Lehan 129a55c953dSJosh Lehan // Initialize min/max if the first successful reading 130a55c953dSJosh Lehan if (numReadings == 0) 131a55c953dSJosh Lehan { 132a55c953dSJosh Lehan std::cerr << "IPMI sensor " << sensorName 133a55c953dSJosh Lehan << ": First reading, value=" << reading << " byte=" << raw 134a55c953dSJosh Lehan << "\n"; 135a55c953dSJosh Lehan 136a55c953dSJosh Lehan minValue = reading; 137a55c953dSJosh Lehan maxValue = reading; 138a55c953dSJosh Lehan } 139a55c953dSJosh Lehan 140a55c953dSJosh Lehan numStreakMiss = 0; 141a55c953dSJosh Lehan ++numReadings; 142a55c953dSJosh Lehan ++numStreakRead; 143a55c953dSJosh Lehan 144a55c953dSJosh Lehan // Only provide subsequent output if new min/max established 145a55c953dSJosh Lehan if (reading < minValue) 146a55c953dSJosh Lehan { 147a55c953dSJosh Lehan std::cerr << "IPMI sensor " << sensorName 148a55c953dSJosh Lehan << ": Lowest reading, value=" << reading 149a55c953dSJosh Lehan << " byte=" << raw << "\n"; 150a55c953dSJosh Lehan 151a55c953dSJosh Lehan minValue = reading; 152a55c953dSJosh Lehan } 153a55c953dSJosh Lehan 154a55c953dSJosh Lehan if (reading > maxValue) 155a55c953dSJosh Lehan { 156a55c953dSJosh Lehan std::cerr << "IPMI sensor " << sensorName 157a55c953dSJosh Lehan << ": Highest reading, value=" << reading 158a55c953dSJosh Lehan << " byte=" << raw << "\n"; 159a55c953dSJosh Lehan 160a55c953dSJosh Lehan maxValue = reading; 161a55c953dSJosh Lehan } 162a55c953dSJosh Lehan 163a55c953dSJosh Lehan return first; 164a55c953dSJosh Lehan } 165a55c953dSJosh Lehan }; 166a55c953dSJosh Lehan 167a55c953dSJosh Lehan class IPMIStatsTable 168a55c953dSJosh Lehan { 169a55c953dSJosh Lehan private: 170a55c953dSJosh Lehan std::vector<IPMIStatsEntry> entries; 171a55c953dSJosh Lehan 172a55c953dSJosh Lehan private: 173a55c953dSJosh Lehan void padEntries(size_t index) 174a55c953dSJosh Lehan { 175a55c953dSJosh Lehan char hexbuf[16]; 176a55c953dSJosh Lehan 177a55c953dSJosh Lehan // Pad vector until entries[index] becomes a valid index 178a55c953dSJosh Lehan while (entries.size() <= index) 179a55c953dSJosh Lehan { 180a55c953dSJosh Lehan // As name not known yet, use human-readable hex as name 181a55c953dSJosh Lehan IPMIStatsEntry newEntry; 182a55c953dSJosh Lehan sprintf(hexbuf, "0x%02zX", entries.size()); 183a55c953dSJosh Lehan newEntry.updateName(hexbuf); 184a55c953dSJosh Lehan 185a55c953dSJosh Lehan entries.push_back(std::move(newEntry)); 186a55c953dSJosh Lehan } 187a55c953dSJosh Lehan } 188a55c953dSJosh Lehan 189a55c953dSJosh Lehan public: 190a55c953dSJosh Lehan void wipeTable(void) 191a55c953dSJosh Lehan { 192a55c953dSJosh Lehan entries.clear(); 193a55c953dSJosh Lehan } 194a55c953dSJosh Lehan 195a55c953dSJosh Lehan const std::string& getName(size_t index) 196a55c953dSJosh Lehan { 197a55c953dSJosh Lehan padEntries(index); 198a55c953dSJosh Lehan return entries[index].getName(); 199a55c953dSJosh Lehan } 200a55c953dSJosh Lehan 201a55c953dSJosh Lehan void updateName(size_t index, std::string_view name) 202a55c953dSJosh Lehan { 203a55c953dSJosh Lehan padEntries(index); 204a55c953dSJosh Lehan entries[index].updateName(name); 205a55c953dSJosh Lehan } 206a55c953dSJosh Lehan 207a55c953dSJosh Lehan bool updateReading(size_t index, double reading, int raw) 208a55c953dSJosh Lehan { 209a55c953dSJosh Lehan padEntries(index); 210a55c953dSJosh Lehan return entries[index].updateReading(reading, raw); 211a55c953dSJosh Lehan } 212a55c953dSJosh Lehan }; 213a55c953dSJosh Lehan 214f0a89946SJie Yang class IPMIWriteEntry 215f0a89946SJie Yang { 216f0a89946SJie Yang private: 217f0a89946SJie Yang bool writePermission = false; 218f0a89946SJie Yang 219f0a89946SJie Yang public: 220f0a89946SJie Yang bool getWritePermission(void) const 221f0a89946SJie Yang { 222f0a89946SJie Yang return writePermission; 223f0a89946SJie Yang } 224f0a89946SJie Yang 225f0a89946SJie Yang void setWritePermission(bool permission) 226f0a89946SJie Yang { 227f0a89946SJie Yang writePermission = permission; 228f0a89946SJie Yang } 229f0a89946SJie Yang }; 230f0a89946SJie Yang 231f0a89946SJie Yang class IPMIWriteTable 232f0a89946SJie Yang { 233f0a89946SJie Yang private: 234f0a89946SJie Yang std::vector<IPMIWriteEntry> entries; 235f0a89946SJie Yang 236f0a89946SJie Yang private: 237f0a89946SJie Yang void padEntries(size_t index) 238f0a89946SJie Yang { 239f0a89946SJie Yang // Pad vector until entries[index] becomes a valid index 240f0a89946SJie Yang if (entries.size() <= index) 241f0a89946SJie Yang { 242f0a89946SJie Yang entries.resize(index + 1); 243f0a89946SJie Yang } 244f0a89946SJie Yang } 245f0a89946SJie Yang 246f0a89946SJie Yang public: 247f0a89946SJie Yang void wipeTable(void) 248f0a89946SJie Yang { 249f0a89946SJie Yang entries.clear(); 250f0a89946SJie Yang } 251f0a89946SJie Yang 252f0a89946SJie Yang bool getWritePermission(size_t index) 253f0a89946SJie Yang { 254f0a89946SJie Yang padEntries(index); 255f0a89946SJie Yang return entries[index].getWritePermission(); 256f0a89946SJie Yang } 257f0a89946SJie Yang 258f0a89946SJie Yang void setWritePermission(size_t index, bool permission) 259f0a89946SJie Yang { 260f0a89946SJie Yang padEntries(index); 261f0a89946SJie Yang entries[index].setWritePermission(permission); 262f0a89946SJie Yang } 263f0a89946SJie Yang }; 264f0a89946SJie Yang 265d2afd054SHao Jiang // Store information for threshold sensors and they are not used by VR 266d2afd054SHao Jiang // sensors. These objects are global singletons, used from a variety of places. 267a55c953dSJosh Lehan inline IPMIStatsTable sdrStatsTable; 268f0a89946SJie Yang inline IPMIWriteTable sdrWriteTable; 269a55c953dSJosh Lehan 2709a5b51e3SHao Jiang /** 2719a5b51e3SHao Jiang * Search ObjectMapper for sensors and update them to subtree. 2729a5b51e3SHao Jiang * 2739a5b51e3SHao Jiang * The function will search for sensors under either 2749a5b51e3SHao Jiang * /xyz/openbmc_project/sensors or /xyz/openbmc_project/extsensors. It will 2759a5b51e3SHao Jiang * optionally search VR typed sensors under /xyz/openbmc_project/vr 2769a5b51e3SHao Jiang * 2779a5b51e3SHao Jiang * @return the updated amount of times any of "sensors" or "extsensors" sensor 2789a5b51e3SHao Jiang * paths updated successfully, previous amount if all failed. The "vr" 2799a5b51e3SHao Jiang * sensor path is optional, and does not participate in the return value. 2809a5b51e3SHao Jiang */ 281a8b5b26dSKuiying Wang uint16_t getSensorSubtree(std::shared_ptr<SensorSubTree>& subtree); 282de54f486SWilly Tu 283de54f486SWilly Tu bool getSensorNumMap(std::shared_ptr<SensorNumMap>& sensorNumMap); 284de54f486SWilly Tu } // namespace details 285de54f486SWilly Tu 286de54f486SWilly Tu bool getSensorSubtree(SensorSubTree& subtree); 287de54f486SWilly Tu 2882703b029SScron Chang #ifdef FEATURE_HYBRID_SENSORS 2892703b029SScron Chang ipmi::sensor::IdInfoMap::const_iterator 2902703b029SScron Chang findStaticSensor(const std::string& path); 2912703b029SScron Chang #endif 2922703b029SScron Chang 293de54f486SWilly Tu struct CmpStr 294de54f486SWilly Tu { 295de54f486SWilly Tu bool operator()(const char* a, const char* b) const 296de54f486SWilly Tu { 297de54f486SWilly Tu return std::strcmp(a, b) < 0; 298de54f486SWilly Tu } 299de54f486SWilly Tu }; 300de54f486SWilly Tu 3012b42d7eeSScron Chang static constexpr size_t sensorTypeCodes = 0; 3022b42d7eeSScron Chang static constexpr size_t sensorEventTypeCodes = 1; 3032b42d7eeSScron Chang 304de54f486SWilly Tu enum class SensorTypeCodes : uint8_t 305de54f486SWilly Tu { 306604e0c67SDavid Wang reserved = 0x00, 307604e0c67SDavid Wang temperature = 0x01, 308604e0c67SDavid Wang voltage = 0x02, 309604e0c67SDavid Wang current = 0x03, 310604e0c67SDavid Wang fan = 0x04, 311d7c26017SJoseph Fu physical_security = 0x5, 312604e0c67SDavid Wang processor = 0x07, 313b8e5b164SScron Chang power_unit = 0x09, 314604e0c67SDavid Wang other = 0x0b, 315604e0c67SDavid Wang memory = 0x0c, 316b8e5b164SScron Chang buttons = 0x14, 317b8e5b164SScron Chang watchdog2 = 0x23, 318363d8d52SDuke Du entity = 0x25, 319de54f486SWilly Tu }; 320de54f486SWilly Tu 3212b42d7eeSScron Chang enum class SensorEventTypeCodes : uint8_t 3222b42d7eeSScron Chang { 3232b42d7eeSScron Chang unspecified = 0x00, 3242b42d7eeSScron Chang threshold = 0x01, 3252b42d7eeSScron Chang sensorSpecified = 0x6f 3262b42d7eeSScron Chang }; 3272b42d7eeSScron Chang 3282b42d7eeSScron Chang const static boost::container::flat_map< 3292b42d7eeSScron Chang const char*, std::pair<SensorTypeCodes, SensorEventTypeCodes>, CmpStr> 3302b42d7eeSScron Chang sensorTypes{ 3312b42d7eeSScron Chang {{"temperature", std::make_pair(SensorTypeCodes::temperature, 3322b42d7eeSScron Chang SensorEventTypeCodes::threshold)}, 3332b42d7eeSScron Chang {"voltage", std::make_pair(SensorTypeCodes::voltage, 3342b42d7eeSScron Chang SensorEventTypeCodes::threshold)}, 3352b42d7eeSScron Chang {"current", std::make_pair(SensorTypeCodes::current, 3362b42d7eeSScron Chang SensorEventTypeCodes::threshold)}, 3372b42d7eeSScron Chang {"fan_tach", std::make_pair(SensorTypeCodes::fan, 3382b42d7eeSScron Chang SensorEventTypeCodes::threshold)}, 3392b42d7eeSScron Chang {"fan_pwm", std::make_pair(SensorTypeCodes::fan, 3402b42d7eeSScron Chang SensorEventTypeCodes::threshold)}, 341d7c26017SJoseph Fu {"intrusion", std::make_pair(SensorTypeCodes::physical_security, 342d7c26017SJoseph Fu SensorEventTypeCodes::sensorSpecified)}, 343604e0c67SDavid Wang {"processor", std::make_pair(SensorTypeCodes::processor, 344604e0c67SDavid Wang SensorEventTypeCodes::sensorSpecified)}, 3452b42d7eeSScron Chang {"power", std::make_pair(SensorTypeCodes::other, 346b8e5b164SScron Chang SensorEventTypeCodes::threshold)}, 347b8e5b164SScron Chang {"memory", std::make_pair(SensorTypeCodes::memory, 348b8e5b164SScron Chang SensorEventTypeCodes::sensorSpecified)}, 349b8e5b164SScron Chang {"state", std::make_pair(SensorTypeCodes::power_unit, 350b8e5b164SScron Chang SensorEventTypeCodes::sensorSpecified)}, 351b8e5b164SScron Chang {"buttons", std::make_pair(SensorTypeCodes::buttons, 352b8e5b164SScron Chang SensorEventTypeCodes::sensorSpecified)}, 353b8e5b164SScron Chang {"watchdog", std::make_pair(SensorTypeCodes::watchdog2, 354363d8d52SDuke Du SensorEventTypeCodes::sensorSpecified)}, 355363d8d52SDuke Du {"entity", std::make_pair(SensorTypeCodes::entity, 356b8e5b164SScron Chang SensorEventTypeCodes::sensorSpecified)}}}; 357de54f486SWilly Tu std::string getSensorTypeStringFromPath(const std::string& path); 358de54f486SWilly Tu 359de54f486SWilly Tu uint8_t getSensorTypeFromPath(const std::string& path); 360de54f486SWilly Tu 361de54f486SWilly Tu uint16_t getSensorNumberFromPath(const std::string& path); 362de54f486SWilly Tu 363de54f486SWilly Tu uint8_t getSensorEventTypeFromPath(const std::string& path); 364de54f486SWilly Tu 365de54f486SWilly Tu std::string getPathFromSensorNumber(uint16_t sensorNum); 366de54f486SWilly Tu 367de54f486SWilly Tu namespace ipmi 368de54f486SWilly Tu { 369de54f486SWilly Tu std::map<std::string, std::vector<std::string>> 370de54f486SWilly Tu getObjectInterfaces(const char* path); 371de54f486SWilly Tu 372de54f486SWilly Tu std::map<std::string, Value> getEntityManagerProperties(const char* path, 373de54f486SWilly Tu const char* interface); 374de54f486SWilly Tu 375*4eca2510SWilly Tu std::optional<std::unordered_set<std::string>>& 376*4eca2510SWilly Tu getIpmiDecoratorPaths(const std::optional<ipmi::Context::ptr>& ctx); 377*4eca2510SWilly Tu 378de54f486SWilly Tu const std::string* getSensorConfigurationInterface( 379de54f486SWilly Tu const std::map<std::string, std::vector<std::string>>& 380de54f486SWilly Tu sensorInterfacesResponse); 381de54f486SWilly Tu 382*4eca2510SWilly Tu void updateIpmiFromAssociation( 383*4eca2510SWilly Tu const std::string& path, 384*4eca2510SWilly Tu const std::unordered_set<std::string>& ipmiDecoratorPaths, 385*4eca2510SWilly Tu const DbusInterfaceMap& sensorMap, uint8_t& entityId, 386*4eca2510SWilly Tu uint8_t& entityInstance); 387de54f486SWilly Tu } // namespace ipmi 388