xref: /openbmc/phosphor-fan-presence/control/json/zone.cpp (revision 1f4098752ec278febc0a0cf661013a573540e05a)
1 /**
2  * Copyright © 2022 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 "zone.hpp"
17 
18 #include "../utils/flight_recorder.hpp"
19 #include "dbus_zone.hpp"
20 #include "fan.hpp"
21 #include "sdbusplus.hpp"
22 
23 #include <nlohmann/json.hpp>
24 #include <phosphor-logging/log.hpp>
25 #include <sdeventplus/event.hpp>
26 
27 #include <algorithm>
28 #include <chrono>
29 #include <iterator>
30 #include <map>
31 #include <memory>
32 #include <numeric>
33 #include <utility>
34 #include <vector>
35 
36 namespace phosphor::fan::control::json
37 {
38 
39 using json = nlohmann::json;
40 using namespace phosphor::logging;
41 
42 const std::map<
43     std::string,
44     std::map<std::string, std::function<std::function<void(DBusZone&, Zone&)>(
45                               const json&, bool)>>>
46     Zone::_intfPropHandlers = {
47         {DBusZone::thermalModeIntf,
48          {{DBusZone::supportedProp, zone::property::supported},
49           {DBusZone::currentProp, zone::property::current}}}};
50 
51 Zone::Zone(const json& jsonObj, const sdeventplus::Event& event, Manager* mgr) :
52     ConfigBase(jsonObj), _dbusZone{}, _manager(mgr), _defaultFloor(0),
53     _incDelay(0), _decInterval(0), _floor(0), _target(0), _incDelta(0),
54     _decDelta(0), _requestTargetBase(0), _isActive(true),
55     _incTimer(event, std::bind(&Zone::incTimerExpired, this)),
56     _decTimer(event, std::bind(&Zone::decTimerExpired, this))
57 {
58     // Increase delay is optional, defaults to 0
59     if (jsonObj.contains("increase_delay"))
60     {
61         _incDelay =
62             std::chrono::seconds(jsonObj["increase_delay"].get<uint64_t>());
63     }
64 
65     // Poweron target is required
66     setPowerOnTarget(jsonObj);
67 
68     // Default ceiling is optional, defaults to poweron target
69     _defaultCeiling = _poweronTarget;
70     if (jsonObj.contains("default_ceiling"))
71     {
72         _defaultCeiling = jsonObj["default_ceiling"].get<uint64_t>();
73     }
74     // Start with the current ceiling set as the default ceiling
75     _ceiling = _defaultCeiling;
76 
77     // Default floor is optional, defaults to 0
78     if (jsonObj.contains("default_floor"))
79     {
80         _defaultFloor = jsonObj["default_floor"].get<uint64_t>();
81         if (_defaultFloor > _ceiling)
82         {
83             log<level::ERR>(
84                 fmt::format("Configured default_floor({}) above ceiling({}), "
85                             "setting default floor to ceiling",
86                             _defaultFloor, _ceiling)
87                     .c_str());
88             _defaultFloor = _ceiling;
89         }
90         // Start with the current floor set as the default
91         _floor = _defaultFloor;
92     }
93 
94     // Decrease interval is optional, defaults to 0
95     // A decrease interval of 0sec disables the decrease timer
96     if (jsonObj.contains("decrease_interval"))
97     {
98         _decInterval =
99             std::chrono::seconds(jsonObj["decrease_interval"].get<uint64_t>());
100     }
101 
102     // Setting properties on interfaces to be served are optional
103     if (jsonObj.contains("interfaces"))
104     {
105         setInterfaces(jsonObj);
106     }
107 }
108 
109 void Zone::enable()
110 {
111     // Create thermal control dbus object
112     _dbusZone = std::make_unique<DBusZone>(*this);
113 
114     // Init all configured dbus interfaces' property states
115     for (const auto& func : _propInitFunctions)
116     {
117         // Only call non-null init property functions
118         if (func)
119         {
120             func(*_dbusZone, *this);
121         }
122     }
123 
124     // TODO - Restore any persisted properties in init function
125     // Restore thermal control current mode state, if exists
126     _dbusZone->restoreCurrentMode();
127 
128     // Emit object added for this zone's associated dbus object
129     _dbusZone->emit_object_added();
130 
131     // A decrease interval of 0sec disables the decrease timer
132     if (_decInterval != std::chrono::seconds::zero())
133     {
134         // Start timer for fan target decreases
135         _decTimer.restart(_decInterval);
136     }
137 }
138 
139 void Zone::addFan(std::unique_ptr<Fan> fan)
140 {
141     _fans.emplace_back(std::move(fan));
142 }
143 
144 void Zone::setTarget(uint64_t target)
145 {
146     if (_isActive)
147     {
148         _target = target;
149         for (auto& fan : _fans)
150         {
151             fan->setTarget(_target);
152         }
153     }
154 }
155 
156 void Zone::lockFanTarget(const std::string& fname, uint64_t target)
157 {
158     auto fanItr =
159         std::find_if(_fans.begin(), _fans.end(), [&fname](const auto& fan) {
160             return fan->getName() == fname;
161         });
162 
163     if (_fans.end() != fanItr)
164     {
165         (*fanItr)->lockTarget(target);
166     }
167     else
168     {
169         log<level::DEBUG>(
170             fmt::format("Configured fan {} not found in zone {} to lock target",
171                         fname, getName())
172                 .c_str());
173     }
174 }
175 
176 void Zone::unlockFanTarget(const std::string& fname, uint64_t target)
177 {
178     auto fanItr =
179         std::find_if(_fans.begin(), _fans.end(), [&fname](const auto& fan) {
180             return fan->getName() == fname;
181         });
182 
183     if (_fans.end() != fanItr)
184     {
185         (*fanItr)->unlockTarget(target);
186 
187         // attempt to resume Zone target on fan
188         (*fanItr)->setTarget(getTarget());
189     }
190     else
191     {
192         log<level::DEBUG>(
193             fmt::format(
194                 "Configured fan {} not found in zone {} to unlock target",
195                 fname, getName())
196                 .c_str());
197     }
198 }
199 
200 void Zone::setTargetHold(const std::string& ident, uint64_t target, bool hold)
201 {
202     using namespace std::string_literals;
203 
204     if (!hold)
205     {
206         size_t removed = _targetHolds.erase(ident);
207         if (removed)
208         {
209             FlightRecorder::instance().log(
210                 "zone-target"s + getName(),
211                 fmt::format("{} is removing target hold", ident));
212         }
213     }
214     else
215     {
216         if (!((_targetHolds.find(ident) != _targetHolds.end()) &&
217               (_targetHolds[ident] == target)))
218         {
219             FlightRecorder::instance().log(
220                 "zone-target"s + getName(),
221                 fmt::format("{} is setting target hold to {}", ident, target));
222         }
223         _targetHolds[ident] = target;
224         _isActive = false;
225     }
226 
227     auto itHoldMax = std::max_element(_targetHolds.begin(), _targetHolds.end(),
228                                       [](const auto& aHold, const auto& bHold) {
229                                           return aHold.second < bHold.second;
230                                       });
231     if (itHoldMax == _targetHolds.end())
232     {
233         _isActive = true;
234     }
235     else
236     {
237         if (_target != itHoldMax->second)
238         {
239             FlightRecorder::instance().log(
240                 "zone-target"s + getName(),
241                 fmt::format("Settings fans to target hold of {}",
242                             itHoldMax->second));
243         }
244 
245         _target = itHoldMax->second;
246         for (auto& fan : _fans)
247         {
248             fan->setTarget(_target);
249         }
250     }
251 }
252 
253 void Zone::setFloorHold(const std::string& ident, uint64_t target, bool hold)
254 {
255     using namespace std::string_literals;
256 
257     if (target > _ceiling)
258     {
259         target = _ceiling;
260     }
261 
262     if (!hold)
263     {
264         size_t removed = _floorHolds.erase(ident);
265         if (removed)
266         {
267             FlightRecorder::instance().log(
268                 "zone-floor"s + getName(),
269                 fmt::format("{} is removing floor hold", ident));
270         }
271     }
272     else
273     {
274         if (!((_floorHolds.find(ident) != _floorHolds.end()) &&
275               (_floorHolds[ident] == target)))
276         {
277             FlightRecorder::instance().log(
278                 "zone-floor"s + getName(),
279                 fmt::format("{} is setting floor hold to {}", ident, target));
280         }
281         _floorHolds[ident] = target;
282     }
283 
284     if (!std::all_of(_floorChange.begin(), _floorChange.end(),
285                      [](const auto& entry) { return entry.second; }))
286     {
287         return;
288     }
289 
290     auto itHoldMax = std::max_element(_floorHolds.begin(), _floorHolds.end(),
291                                       [](const auto& aHold, const auto& bHold) {
292                                           return aHold.second < bHold.second;
293                                       });
294     if (itHoldMax == _floorHolds.end())
295     {
296         if (_floor != _defaultFloor)
297         {
298             FlightRecorder::instance().log(
299                 "zone-floor"s + getName(),
300                 fmt::format("No set floor exists, using default floor",
301                             _defaultFloor));
302         }
303         _floor = _defaultFloor;
304     }
305     else
306     {
307         if (_floor != itHoldMax->second)
308         {
309             FlightRecorder::instance().log(
310                 "zone-floor"s + getName(),
311                 fmt::format("Setting new floor to {}", itHoldMax->second));
312         }
313         _floor = itHoldMax->second;
314     }
315 
316     // Floor above target, update target to floor
317     if (_target < _floor)
318     {
319         requestIncrease(_floor - _target);
320     }
321 }
322 
323 void Zone::setFloor(uint64_t target)
324 {
325     // Check all entries are set to allow floor to be set
326     auto pred = [](const auto& entry) { return entry.second; };
327     if (std::all_of(_floorChange.begin(), _floorChange.end(), pred))
328     {
329         _floor = (target > _ceiling) ? _ceiling : target;
330         // Floor above target, update target to floor
331         if (_target < _floor)
332         {
333             requestIncrease(_floor - _target);
334         }
335     }
336 }
337 
338 void Zone::requestIncrease(uint64_t targetDelta)
339 {
340     // Only increase when delta is higher than the current increase delta for
341     // the zone and currently under ceiling
342     if (targetDelta > _incDelta && _target < _ceiling)
343     {
344         auto requestTarget = getRequestTargetBase();
345         requestTarget = (targetDelta - _incDelta) + requestTarget;
346         _incDelta = targetDelta;
347         // Target can not go above a current ceiling
348         if (requestTarget > _ceiling)
349         {
350             requestTarget = _ceiling;
351         }
352         setTarget(requestTarget);
353         // Restart timer countdown for fan target increase
354         _incTimer.restartOnce(_incDelay);
355     }
356 }
357 
358 void Zone::incTimerExpired()
359 {
360     // Clear increase delta when timer expires allowing additional target
361     // increase requests or target decreases to occur
362     _incDelta = 0;
363 }
364 
365 void Zone::requestDecrease(uint64_t targetDelta)
366 {
367     // Only decrease the lowest target delta requested
368     if (_decDelta == 0 || targetDelta < _decDelta)
369     {
370         _decDelta = targetDelta;
371     }
372 }
373 
374 void Zone::decTimerExpired()
375 {
376     // Check all entries are set to allow a decrease
377     auto pred = [](auto const& entry) { return entry.second; };
378     auto decAllowed = std::all_of(_decAllowed.begin(), _decAllowed.end(), pred);
379 
380     // Only decrease targets when allowed, a requested decrease target delta
381     // exists, where no requested increases exist and the increase timer is not
382     // running (i.e. not in the middle of increasing)
383     if (decAllowed && _decDelta != 0 && _incDelta == 0 &&
384         !_incTimer.isEnabled())
385     {
386         auto requestTarget = getRequestTargetBase();
387         // Request target should not start above ceiling
388         if (requestTarget > _ceiling)
389         {
390             requestTarget = _ceiling;
391         }
392         // Target can not go below the defined floor
393         if ((requestTarget < _decDelta) || (requestTarget - _decDelta < _floor))
394         {
395             requestTarget = _floor;
396         }
397         else
398         {
399             requestTarget = requestTarget - _decDelta;
400         }
401         setTarget(requestTarget);
402     }
403     // Clear decrease delta when timer expires
404     _decDelta = 0;
405     // Decrease timer is restarted since its repeating
406 }
407 
408 void Zone::setPersisted(const std::string& intf, const std::string& prop)
409 {
410     if (std::find_if(_propsPersisted[intf].begin(), _propsPersisted[intf].end(),
411                      [&prop](const auto& p) { return prop == p; }) ==
412         _propsPersisted[intf].end())
413     {
414         _propsPersisted[intf].emplace_back(prop);
415     }
416 }
417 
418 bool Zone::isPersisted(const std::string& intf, const std::string& prop) const
419 {
420     auto it = _propsPersisted.find(intf);
421     if (it == _propsPersisted.end())
422     {
423         return false;
424     }
425 
426     return std::any_of(it->second.begin(), it->second.end(),
427                        [&prop](const auto& p) { return prop == p; });
428 }
429 
430 void Zone::setPowerOnTarget(const json& jsonObj)
431 {
432     if (!jsonObj.contains("poweron_target"))
433     {
434         auto msg = "Missing required zone's poweron target";
435         log<level::ERR>(msg, entry("JSON=%s", jsonObj.dump().c_str()));
436         throw std::runtime_error(msg);
437     }
438     _poweronTarget = jsonObj["poweron_target"].get<uint64_t>();
439 }
440 
441 void Zone::setInterfaces(const json& jsonObj)
442 {
443     for (const auto& interface : jsonObj["interfaces"])
444     {
445         if (!interface.contains("name") || !interface.contains("properties"))
446         {
447             log<level::ERR>("Missing required zone interface attributes",
448                             entry("JSON=%s", interface.dump().c_str()));
449             throw std::runtime_error(
450                 "Missing required zone interface attributes");
451         }
452         auto propFuncs =
453             _intfPropHandlers.find(interface["name"].get<std::string>());
454         if (propFuncs == _intfPropHandlers.end())
455         {
456             // Construct list of available configurable interfaces
457             auto intfs = std::accumulate(
458                 std::next(_intfPropHandlers.begin()), _intfPropHandlers.end(),
459                 _intfPropHandlers.begin()->first, [](auto list, auto intf) {
460                     return std::move(list) + ", " + intf.first;
461                 });
462             log<level::ERR>("Configured interface not available",
463                             entry("JSON=%s", interface.dump().c_str()),
464                             entry("AVAILABLE_INTFS=%s", intfs.c_str()));
465             throw std::runtime_error("Configured interface not available");
466         }
467 
468         for (const auto& property : interface["properties"])
469         {
470             if (!property.contains("name"))
471             {
472                 log<level::ERR>(
473                     "Missing required interface property attributes",
474                     entry("JSON=%s", property.dump().c_str()));
475                 throw std::runtime_error(
476                     "Missing required interface property attributes");
477             }
478             // Attribute "persist" is optional, defaults to `false`
479             auto persist = false;
480             if (property.contains("persist"))
481             {
482                 persist = property["persist"].get<bool>();
483             }
484             // Property name from JSON must exactly match supported
485             // index names to functions in property namespace
486             auto propFunc =
487                 propFuncs->second.find(property["name"].get<std::string>());
488             if (propFunc == propFuncs->second.end())
489             {
490                 // Construct list of available configurable properties
491                 auto props = std::accumulate(
492                     std::next(propFuncs->second.begin()),
493                     propFuncs->second.end(), propFuncs->second.begin()->first,
494                     [](auto list, auto prop) {
495                         return std::move(list) + ", " + prop.first;
496                     });
497                 log<level::ERR>("Configured property not available",
498                                 entry("JSON=%s", property.dump().c_str()),
499                                 entry("AVAILABLE_PROPS=%s", props.c_str()));
500                 throw std::runtime_error(
501                     "Configured property function not available");
502             }
503 
504             _propInitFunctions.emplace_back(
505                 propFunc->second(property, persist));
506         }
507     }
508 }
509 
510 json Zone::dump() const
511 {
512     json output;
513 
514     output["active"] = _isActive;
515     output["floor"] = _floor;
516     output["ceiling"] = _ceiling;
517     output["target"] = _target;
518     output["increase_delta"] = _incDelta;
519     output["decrease_delta"] = _decDelta;
520     output["power_on_target"] = _poweronTarget;
521     output["default_ceiling"] = _defaultCeiling;
522     output["default_floor"] = _defaultFloor;
523     output["increase_delay"] = _incDelay.count();
524     output["decrease_interval"] = _decInterval.count();
525     output["requested_target_base"] = _requestTargetBase;
526     output["floor_change"] = _floorChange;
527     output["decrease_allowed"] = _decAllowed;
528     output["persisted_props"] = _propsPersisted;
529     output["target_holds"] = _targetHolds;
530     output["floor_holds"] = _floorHolds;
531 
532     return output;
533 }
534 
535 /**
536  * Properties of interfaces supported by the zone configuration that return
537  * a handler function that sets the zone's property value(s) and persist
538  * state.
539  */
540 namespace zone::property
541 {
542 // Get a set property handler function for the configured values of the
543 // "Supported" property
544 std::function<void(DBusZone&, Zone&)> supported(const json& jsonObj,
545                                                 bool persist)
546 {
547     std::vector<std::string> values;
548     if (!jsonObj.contains("values"))
549     {
550         log<level::ERR>("No 'values' found for \"Supported\" property, "
551                         "using an empty list",
552                         entry("JSON=%s", jsonObj.dump().c_str()));
553     }
554     else
555     {
556         for (const auto& value : jsonObj["values"])
557         {
558             if (!value.contains("value"))
559             {
560                 log<level::ERR>("No 'value' found for \"Supported\" property "
561                                 "entry, skipping",
562                                 entry("JSON=%s", value.dump().c_str()));
563             }
564             else
565             {
566                 values.emplace_back(value["value"].get<std::string>());
567             }
568         }
569     }
570 
571     return Zone::setProperty<std::vector<std::string>>(
572         DBusZone::thermalModeIntf, DBusZone::supportedProp,
573         &DBusZone::supported, std::move(values), persist);
574 }
575 
576 // Get a set property handler function for a configured value of the
577 // "Current" property
578 std::function<void(DBusZone&, Zone&)> current(const json& jsonObj, bool persist)
579 {
580     // Use default value for "Current" property if no "value" entry given
581     if (!jsonObj.contains("value"))
582     {
583         log<level::INFO>("No 'value' found for \"Current\" property, "
584                          "using default",
585                          entry("JSON=%s", jsonObj.dump().c_str()));
586         // Set persist state of property
587         return Zone::setPropertyPersist(DBusZone::thermalModeIntf,
588                                         DBusZone::currentProp, persist);
589     }
590 
591     return Zone::setProperty<std::string>(
592         DBusZone::thermalModeIntf, DBusZone::currentProp, &DBusZone::current,
593         jsonObj["value"].get<std::string>(), persist);
594 }
595 
596 } // namespace zone::property
597 
598 } // namespace phosphor::fan::control::json
599