1 // SPDX-License-Identifier: Apache-2.0
2 // SPDX-FileCopyrightText: Copyright 2020 IBM Corporation
3
4 #include "service_indicators.hpp"
5
6 #include <phosphor-logging/lg2.hpp>
7
8 #include <bitset>
9
10 namespace openpower::pels::service_indicators
11 {
12
13 static constexpr auto platformSaiLedGroup =
14 "/xyz/openbmc_project/led/groups/platform_system_attention_indicator";
15
getPolicy(const DataInterfaceBase & dataIface)16 std::unique_ptr<Policy> getPolicy(const DataInterfaceBase& dataIface)
17 {
18 // At the moment there is just one type of policy.
19 return std::make_unique<LightPath>(dataIface);
20 }
21
ignore(const PEL & pel) const22 bool LightPath::ignore(const PEL& pel) const
23 {
24 auto creator = pel.privateHeader().creatorID();
25
26 // Don't ignore serviceable BMC or hostboot errors
27 if ((static_cast<CreatorID>(creator) == CreatorID::openBMC) ||
28 (static_cast<CreatorID>(creator) == CreatorID::hostboot))
29 {
30 std::bitset<16> actionFlags{pel.userHeader().actionFlags()};
31 if (actionFlags.test(serviceActionFlagBit))
32 {
33 return false;
34 }
35 }
36
37 return true;
38 }
39
activate(const PEL & pel)40 void LightPath::activate(const PEL& pel)
41 {
42 if (ignore(pel))
43 {
44 return;
45 }
46
47 // Now that we've gotten this far, we'll need to turn on
48 // the system attention indicator if we don't find other
49 // indicators to turn on.
50 bool sai = true;
51 auto src = pel.primarySRC();
52 const auto& calloutsObj = (*src)->callouts();
53
54 if (calloutsObj && !calloutsObj->callouts().empty())
55 {
56 const auto& callouts = calloutsObj->callouts();
57
58 // From the callouts, find the location codes whose
59 // LEDs need to be turned on.
60 auto locCodes = getLocationCodes(callouts);
61 if (!locCodes.empty())
62 {
63 // Find the inventory paths for those location codes.
64 auto paths = getInventoryPaths(locCodes);
65 if (!paths.empty())
66 {
67 setNotFunctional(paths);
68 createCriticalAssociation(paths);
69 sai = false;
70 }
71 }
72 }
73
74 if (sai)
75 {
76 try
77 {
78 _dataIface.assertLEDGroup(platformSaiLedGroup, true);
79 }
80 catch (const std::exception& e)
81 {
82 lg2::error("Failed to assert platform SAI LED group: {EXCEPTION}",
83 "EXCEPTION", e);
84 }
85 }
86 }
87
getLocationCodes(const std::vector<std::unique_ptr<src::Callout>> & callouts) const88 std::vector<std::string> LightPath::getLocationCodes(
89 const std::vector<std::unique_ptr<src::Callout>>& callouts) const
90 {
91 std::vector<std::string> locCodes;
92 bool firstCallout = true;
93 uint8_t firstCalloutPriority;
94
95 // Collect location codes for the first group of callouts,
96 // where a group can be:
97 // * a single medium priority callout
98 // * one or more high priority callouts
99 // * one or more medium group a priority callouts
100 //
101 // All callouts in the group must be hardware callouts.
102
103 for (const auto& callout : callouts)
104 {
105 if (firstCallout)
106 {
107 firstCallout = false;
108
109 firstCalloutPriority = callout->priority();
110
111 // If the first callout is High, Medium, or Medium
112 // group A, and is a hardware callout, then we
113 // want it.
114 if (isRequiredPriority(firstCalloutPriority) &&
115 isHardwareCallout(*callout))
116 {
117 locCodes.push_back(callout->locationCode());
118 }
119 else
120 {
121 break;
122 }
123
124 // By definition a medium priority callout can't be part
125 // of a group, so no need to look for more.
126 if (static_cast<CalloutPriority>(firstCalloutPriority) ==
127 CalloutPriority::medium)
128 {
129 break;
130 }
131 }
132 else
133 {
134 // Only continue while the callouts are the same
135 // priority as the first callout.
136 if (callout->priority() != firstCalloutPriority)
137 {
138 break;
139 }
140
141 // If any callout in the group isn't a hardware callout,
142 // then don't light up any LEDs at all.
143 if (!isHardwareCallout(*callout))
144 {
145 locCodes.clear();
146 break;
147 }
148
149 locCodes.push_back(callout->locationCode());
150 }
151 }
152
153 return locCodes;
154 }
155
isRequiredPriority(uint8_t priority) const156 bool LightPath::isRequiredPriority(uint8_t priority) const
157 {
158 auto calloutPriority = static_cast<CalloutPriority>(priority);
159 return (calloutPriority == CalloutPriority::high) ||
160 (calloutPriority == CalloutPriority::medium) ||
161 (calloutPriority == CalloutPriority::mediumGroupA);
162 }
163
isHardwareCallout(const src::Callout & callout) const164 bool LightPath::isHardwareCallout(const src::Callout& callout) const
165 {
166 const auto& fruIdentity = callout.fruIdentity();
167 if (fruIdentity)
168 {
169 return (callout.locationCodeSize() != 0) &&
170 ((fruIdentity->failingComponentType() ==
171 src::FRUIdentity::hardwareFRU) ||
172 (fruIdentity->failingComponentType() ==
173 src::FRUIdentity::symbolicFRUTrustedLocCode));
174 }
175
176 return false;
177 }
178
getInventoryPaths(const std::vector<std::string> & locationCodes) const179 std::vector<std::string> LightPath::getInventoryPaths(
180 const std::vector<std::string>& locationCodes) const
181 {
182 std::vector<std::string> paths;
183
184 for (const auto& locCode : locationCodes)
185 {
186 try
187 {
188 auto inventoryPaths =
189 _dataIface.getInventoryFromLocCode(locCode, 0, true);
190 for (const auto& path : inventoryPaths)
191 {
192 if (std::find(paths.begin(), paths.end(), path) == paths.end())
193 {
194 paths.push_back(path);
195 }
196 }
197 }
198 catch (const std::exception& e)
199 {
200 lg2::error("Could not get inventory path for "
201 "location code {LOCCODE} ({EXCEPTION}).",
202 "LOCCODE", locCode, "EXCEPTION", e);
203
204 // Unless we can set the LEDs for all FRUs, we can't turn
205 // on any of them, so clear the list and quit.
206 paths.clear();
207 break;
208 }
209 }
210
211 return paths;
212 }
213
setNotFunctional(const std::vector<std::string> & inventoryPaths) const214 void LightPath::setNotFunctional(
215 const std::vector<std::string>& inventoryPaths) const
216 {
217 for (const auto& path : inventoryPaths)
218 {
219 try
220 {
221 _dataIface.setFunctional(path, false);
222 }
223 catch (const std::exception& e)
224 {
225 lg2::info(
226 "Could not write Functional property on {PATH} ({EXCEPTION})",
227 "PATH", path, "EXCEPTION", e);
228 }
229 }
230 }
231
createCriticalAssociation(const std::vector<std::string> & inventoryPaths) const232 void LightPath::createCriticalAssociation(
233 const std::vector<std::string>& inventoryPaths) const
234 {
235 for (const auto& path : inventoryPaths)
236 {
237 try
238 {
239 _dataIface.setCriticalAssociation(path);
240 }
241 catch (const std::exception& e)
242 {
243 lg2::info(
244 "Could not set critical association on object path {PATH} ({EXCEPTION})",
245 "PATH", path, "EXCEPTION", e);
246 }
247 }
248 }
249
250 } // namespace openpower::pels::service_indicators
251