1 /** 2 * Copyright © 2019 IBM 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 #include "json_parser.hpp" 17 18 #include "anyof.hpp" 19 #include "fallback.hpp" 20 #include "gpio.hpp" 21 #include "json_config.hpp" 22 #include "sdbusplus.hpp" 23 #include "tach.hpp" 24 25 #include <nlohmann/json.hpp> 26 #include <phosphor-logging/log.hpp> 27 #include <sdbusplus/bus.hpp> 28 #include <xyz/openbmc_project/Logging/Create/server.hpp> 29 #include <xyz/openbmc_project/Logging/Entry/server.hpp> 30 31 #include <filesystem> 32 #include <fstream> 33 #include <string> 34 35 namespace phosphor 36 { 37 namespace fan 38 { 39 namespace presence 40 { 41 42 using json = nlohmann::json; 43 namespace fs = std::filesystem; 44 using namespace phosphor::logging; 45 46 policies JsonConfig::_policies; 47 const std::map<std::string, methodHandler> JsonConfig::_methods = { 48 {"tach", method::getTach}, {"gpio", method::getGpio}}; 49 const std::map<std::string, rpolicyHandler> JsonConfig::_rpolicies = { 50 {"anyof", rpolicy::getAnyof}, {"fallback", rpolicy::getFallback}}; 51 52 const auto loggingPath = "/xyz/openbmc_project/logging"; 53 const auto loggingCreateIface = "xyz.openbmc_project.Logging.Create"; 54 55 JsonConfig::JsonConfig(sdbusplus::bus_t& bus) : _bus(bus) 56 {} 57 58 void JsonConfig::start() 59 { 60 using config = fan::JsonConfig; 61 62 if (!_loaded) 63 { 64 process(config::load(config::getConfFile(confAppName, confFileName))); 65 66 _loaded = true; 67 68 for (auto& p : _policies) 69 { 70 p->monitor(); 71 } 72 } 73 } 74 75 const policies& JsonConfig::get() 76 { 77 return _policies; 78 } 79 80 void JsonConfig::sighupHandler(sdeventplus::source::Signal& /*sigSrc*/, 81 const struct signalfd_siginfo* /*sigInfo*/) 82 { 83 try 84 { 85 using config = fan::JsonConfig; 86 87 _reporter.reset(); 88 89 // Load and process the json configuration 90 process(config::load(config::getConfFile(confAppName, confFileName))); 91 92 for (auto& p : _policies) 93 { 94 p->monitor(); 95 } 96 log<level::INFO>("Configuration loaded successfully"); 97 } 98 catch (const std::runtime_error& re) 99 { 100 log<level::ERR>("Error loading config, no config changes made", 101 entry("LOAD_ERROR=%s", re.what())); 102 } 103 } 104 105 void JsonConfig::process(const json& jsonConf) 106 { 107 policies policies; 108 std::vector<fanPolicy> fans; 109 // Set the expected number of fan entries 110 // to be size of the list of fan json config entries 111 // (Must be done to eliminate vector reallocation of fan references) 112 fans.reserve(jsonConf.size()); 113 for (auto& member : jsonConf) 114 { 115 if (!member.contains("name") || !member.contains("path") || 116 !member.contains("methods") || !member.contains("rpolicy")) 117 { 118 log<level::ERR>("Missing required fan presence properties", 119 entry("REQUIRED_PROPERTIES=%s", 120 "{name, path, methods, rpolicy}")); 121 throw std::runtime_error( 122 "Missing required fan presence properties"); 123 } 124 125 // Loop thru the configured methods of presence detection 126 std::vector<std::unique_ptr<PresenceSensor>> sensors; 127 for (auto& method : member["methods"].items()) 128 { 129 if (!method.value().contains("type")) 130 { 131 log<level::ERR>( 132 "Missing required fan presence method type", 133 entry("FAN_NAME=%s", 134 member["name"].get<std::string>().c_str())); 135 throw std::runtime_error( 136 "Missing required fan presence method type"); 137 } 138 // The method type of fan presence detection 139 // (Must have a supported function within the method namespace) 140 auto type = method.value()["type"].get<std::string>(); 141 std::transform(type.begin(), type.end(), type.begin(), tolower); 142 auto func = _methods.find(type); 143 if (func != _methods.end()) 144 { 145 // Call function for method type 146 auto sensor = func->second(fans.size(), method.value()); 147 if (sensor) 148 { 149 sensors.emplace_back(std::move(sensor)); 150 } 151 } 152 else 153 { 154 log<level::ERR>( 155 "Invalid fan presence method type", 156 entry("FAN_NAME=%s", 157 member["name"].get<std::string>().c_str()), 158 entry("METHOD_TYPE=%s", type.c_str())); 159 throw std::runtime_error("Invalid fan presence method type"); 160 } 161 } 162 163 // Get the amount of time a fan must be not present before 164 // creating an error. 165 std::optional<size_t> timeUntilError; 166 if (member.contains("fan_missing_error_time")) 167 { 168 timeUntilError = member["fan_missing_error_time"].get<size_t>(); 169 } 170 171 auto fan = 172 std::make_tuple(member["name"], member["path"], timeUntilError); 173 // Create a fan object 174 fans.emplace_back(std::make_tuple(fan, std::move(sensors))); 175 176 // Add fan presence policy 177 auto policy = getPolicy(member["rpolicy"], fans.back()); 178 if (policy) 179 { 180 policies.emplace_back(std::move(policy)); 181 } 182 } 183 184 // Success, refresh fans and policies lists 185 _fans.clear(); 186 _fans.swap(fans); 187 188 _policies.clear(); 189 _policies.swap(policies); 190 191 // Create the error reporter class if necessary 192 if (std::any_of(_fans.begin(), _fans.end(), [](const auto& fan) { 193 return std::get<std::optional<size_t>>(std::get<Fan>(fan)) != 194 std::nullopt; 195 })) 196 { 197 _reporter = std::make_unique<ErrorReporter>(_bus, _fans); 198 } 199 } 200 201 std::unique_ptr<RedundancyPolicy> 202 JsonConfig::getPolicy(const json& rpolicy, const fanPolicy& fpolicy) 203 { 204 if (!rpolicy.contains("type")) 205 { 206 log<level::ERR>( 207 "Missing required fan presence policy type", 208 entry("FAN_NAME=%s", 209 std::get<fanPolicyFanPos>(std::get<Fan>(fpolicy)).c_str()), 210 entry("REQUIRED_PROPERTIES=%s", "{type}")); 211 throw std::runtime_error("Missing required fan presence policy type"); 212 } 213 214 // The redundancy policy type for fan presence detection 215 // (Must have a supported function within the rpolicy namespace) 216 auto type = rpolicy["type"].get<std::string>(); 217 std::transform(type.begin(), type.end(), type.begin(), tolower); 218 auto func = _rpolicies.find(type); 219 if (func != _rpolicies.end()) 220 { 221 // Call function for redundancy policy type and return the policy 222 return func->second(fpolicy); 223 } 224 else 225 { 226 log<level::ERR>( 227 "Invalid fan presence policy type", 228 entry("FAN_NAME=%s", 229 std::get<fanPolicyFanPos>(std::get<Fan>(fpolicy)).c_str()), 230 entry("RPOLICY_TYPE=%s", type.c_str())); 231 throw std::runtime_error("Invalid fan presence methods policy type"); 232 } 233 } 234 235 /** 236 * Methods of fan presence detection function definitions 237 */ 238 namespace method 239 { 240 // Get a constructed presence sensor for fan presence detection by tach 241 std::unique_ptr<PresenceSensor> getTach(size_t fanIndex, const json& method) 242 { 243 if (!method.contains("sensors") || method["sensors"].size() == 0) 244 { 245 log<level::ERR>("Missing required tach method properties", 246 entry("FAN_ENTRY=%d", fanIndex), 247 entry("REQUIRED_PROPERTIES=%s", "{sensors}")); 248 throw std::runtime_error("Missing required tach method properties"); 249 } 250 251 std::vector<std::string> sensors; 252 for (auto& sensor : method["sensors"]) 253 { 254 sensors.emplace_back(sensor.get<std::string>()); 255 } 256 257 return std::make_unique<PolicyAccess<Tach, JsonConfig>>(fanIndex, 258 std::move(sensors)); 259 } 260 261 // Get a constructed presence sensor for fan presence detection by gpio 262 std::unique_ptr<PresenceSensor> getGpio(size_t fanIndex, const json& method) 263 { 264 if (!method.contains("physpath") || !method.contains("devpath") || 265 !method.contains("key")) 266 { 267 log<level::ERR>( 268 "Missing required gpio method properties", 269 entry("FAN_ENTRY=%d", fanIndex), 270 entry("REQUIRED_PROPERTIES=%s", "{physpath, devpath, key}")); 271 throw std::runtime_error("Missing required gpio method properties"); 272 } 273 274 auto physpath = method["physpath"].get<std::string>(); 275 auto devpath = method["devpath"].get<std::string>(); 276 auto key = method["key"].get<unsigned int>(); 277 278 try 279 { 280 return std::make_unique<PolicyAccess<Gpio, JsonConfig>>( 281 fanIndex, physpath, devpath, key); 282 } 283 catch (const sdbusplus::exception_t& e) 284 { 285 namespace sdlogging = sdbusplus::xyz::openbmc_project::Logging::server; 286 287 log<level::ERR>( 288 fmt::format( 289 "Error creating Gpio device bridge, hardware not detected: {}", 290 e.what()) 291 .c_str()); 292 293 auto severity = 294 sdlogging::convertForMessage(sdlogging::Entry::Level::Error); 295 296 std::map<std::string, std::string> additionalData{ 297 {"PHYSPATH", physpath}, 298 {"DEVPATH", devpath}, 299 {"FANINDEX", std::to_string(fanIndex)}}; 300 301 try 302 { 303 304 util::SDBusPlus::lookupAndCallMethod( 305 loggingPath, loggingCreateIface, "Create", 306 "xyz.openbmc_project.Fan.Presence.Error.GPIODeviceUnavailable", 307 severity, additionalData); 308 } 309 catch (const util::DBusError& e) 310 { 311 log<level::ERR>(fmt::format("Call to create an error log for " 312 "presence-sensor failure failed: {}", 313 e.what()) 314 .c_str()); 315 } 316 317 return std::make_unique<PolicyAccess<NullGpio, JsonConfig>>(); 318 } 319 } 320 321 } // namespace method 322 323 /** 324 * Redundancy policies for fan presence detection function definitions 325 */ 326 namespace rpolicy 327 { 328 // Get an `Anyof` redundancy policy for the fan 329 std::unique_ptr<RedundancyPolicy> getAnyof(const fanPolicy& fan) 330 { 331 std::vector<std::reference_wrapper<PresenceSensor>> pSensors; 332 for (auto& fanSensor : std::get<fanPolicySensorListPos>(fan)) 333 { 334 pSensors.emplace_back(*fanSensor); 335 } 336 337 return std::make_unique<AnyOf>(std::get<fanPolicyFanPos>(fan), pSensors); 338 } 339 340 // Get a `Fallback` redundancy policy for the fan 341 std::unique_ptr<RedundancyPolicy> getFallback(const fanPolicy& fan) 342 { 343 std::vector<std::reference_wrapper<PresenceSensor>> pSensors; 344 for (auto& fanSensor : std::get<fanPolicySensorListPos>(fan)) 345 { 346 // Place in the order given to fallback correctly 347 pSensors.emplace_back(*fanSensor); 348 } 349 350 return std::make_unique<Fallback>(std::get<fanPolicyFanPos>(fan), pSensors); 351 } 352 353 } // namespace rpolicy 354 355 } // namespace presence 356 } // namespace fan 357 } // namespace phosphor 358