1 #include <unistd.h>
2 
3 #include <analyzer/analyzer_main.hpp>
4 #include <attn/attn_common.hpp>
5 #include <attn/attn_dbus.hpp>
6 #include <attn/attn_dump.hpp>
7 #include <attn/attn_logging.hpp>
8 #include <attn/pel/pel_minimal.hpp>
9 #include <phosphor-logging/log.hpp>
10 #include <util/dbus.hpp>
11 #include <util/ffdc.hpp>
12 #include <util/trace.hpp>
13 
14 namespace attn
15 {
16 
17 /** @brief Tuple containing information about ffdc files */
18 using FFDCTuple =
19     std::tuple<util::FFDCFormat, uint8_t, uint8_t, sdbusplus::message::unix_fd>;
20 
21 /**
22  * Create FFDCTuple objects corresponding to the specified FFDC files.
23  *
24  * The D-Bus method to create an error log requires a vector of tuples to
25  * pass in the FFDC file information.
26  *
27  * @param   files - FFDC files
28  * @return  vector of FFDCTuple objects
29  */
30 std::vector<FFDCTuple>
31     createFFDCTuples(const std::vector<util::FFDCFile>& files)
32 {
33     std::vector<FFDCTuple> ffdcTuples{};
34     util::transformFFDC(files, ffdcTuples);
35 
36     return ffdcTuples;
37 }
38 
39 /**
40  * @brief Create an FFDCFile object containing raw data
41  *
42  * Throws an exception if an error occurs.
43  *
44  * @param   i_buffer - raw data to add to ffdc faw data file
45  * @param   i_size - size of the raw data
46  * @return  FFDCFile object
47  */
48 util::FFDCFile createFFDCRawFile(void* i_buffer, size_t i_size)
49 {
50     util::FFDCFile file{util::FFDCFormat::Custom};
51 
52     // Write buffer to file and then reset file description file offset
53     int fd          = file.getFileDescriptor();
54     size_t numBytes = write(fd, static_cast<char*>(i_buffer), i_size);
55     if (i_size != numBytes)
56     {
57         trace::err("%s only %u of %u bytes written", file.getPath().c_str(),
58                    numBytes, i_size);
59     }
60 
61     lseek(fd, 0, SEEK_SET);
62 
63     return file;
64 }
65 
66 /**
67  * Create FFDCFile objects containing debug data to store in the error log.
68  *
69  * If an error occurs, the error is written to the journal but an exception
70  * is not thrown.
71  *
72  * @param   i_buffer - raw data (if creating raw dump ffdc entry in log)
73  * @return  vector of FFDCFile objects
74  */
75 std::vector<util::FFDCFile> createFFDCFiles(char* i_buffer = nullptr,
76                                             size_t i_size  = 0)
77 {
78     std::vector<util::FFDCFile> files{};
79 
80     // Create raw dump file
81     if ((nullptr != i_buffer) && (0 != i_size))
82     {
83         files.emplace_back(createFFDCRawFile(i_buffer, i_size));
84     }
85 
86     // Create trace dump file
87     util::createFFDCTraceFiles(files);
88 
89     // Add PRD scratch registers
90     addPrdScratchRegs(files);
91 
92     return files;
93 }
94 
95 /**
96  * Create a PEL from an existing PEL
97  *
98  * Create a new PEL based on the specified raw PEL and submit the new PEL
99  * to the backend logging code as a raw PEL. Note that  additional data map
100  * here contains data to be committed to the PEL and it can also be used to
101  * create the PEL as it contains needed information.
102  *
103  * @param   i_rawPel - buffer containing a raw PEL
104  * @param   i_additional - additional data to be added to the new PEL
105  */
106 void createPelCustom(std::vector<uint8_t>& i_rawPel,
107                      std::map<std::string, std::string> i_additional)
108 {
109     // create PEL object from buffer
110     auto tiPel = std::make_unique<pel::PelMinimal>(i_rawPel);
111 
112     // The additional data contains the TI info as well as the value for the
113     // subystem that provided the TI info. Get the subystem from additional
114     // data and then populate the primary SRC and SRC words for the custom PEL
115     // based on the subsystem's TI info.
116     std::map<std::string, std::string>::iterator it;
117     uint8_t subsystem;
118 
119     it = i_additional.find("Subsystem");
120     if (it != i_additional.end())
121     {
122         subsystem = std::stoi(it->second);
123         tiPel->setSubsystem(subsystem);
124     }
125     else
126     {
127         // The entry with key "Subsystem" does not exist in the additional map.
128         // Log the error, create failure event, and return.
129         trace::err("Error the key Subsystem does not exist in the map.");
130         eventAttentionFail((int)AttnSection::attnLogging | ATTN_INVALID_KEY);
131         return;
132     }
133 
134     // If recoverable attentions are active we will call the analyzer and
135     // then link the custom pel to analyzer pel.
136     it = i_additional.find("recoverables");
137     if (it != i_additional.end() && "true" == it->second)
138     {
139         DumpParameters dumpParameters;
140         auto plid = analyzer::analyzeHardware(
141             analyzer::AnalysisType::TERMINATE_IMMEDIATE, dumpParameters);
142         if (0 != plid)
143         {
144             // Link the PLID if an attention was found and a PEL was generated.
145             tiPel->setPlid(plid);
146         }
147     }
148 
149     if (static_cast<uint8_t>(pel::SubsystemID::hypervisor) == subsystem)
150     {
151         // populate hypervisor SRC words
152         tiPel->setSrcWords(std::array<uint32_t, pel::numSrcWords>{
153             (uint32_t)std::stoul(i_additional["0x10 SRC Word 12"], 0, 16),
154             (uint32_t)std::stoul(i_additional["0x14 SRC Word 13"], 0, 16),
155             (uint32_t)std::stoul(i_additional["0x18 SRC Word 14"], 0, 16),
156             (uint32_t)std::stoul(i_additional["0x1c SRC Word 15"], 0, 16),
157             (uint32_t)std::stoul(i_additional["0x20 SRC Word 16"], 0, 16),
158             (uint32_t)std::stoul(i_additional["0x24 SRC Word 17"], 0, 16),
159             (uint32_t)std::stoul(i_additional["0x28 SRC Word 18"], 0, 16),
160             (uint32_t)std::stoul(i_additional["0x2c SRC Word 19"], 0, 16)});
161 
162         // Populate phyp primary SRC
163 
164         // char array for raw pel src
165         std::array<char, pel::asciiStringSize> srcChars{'0'};
166         std::string srcString;
167 
168         // src from TI info
169         it = i_additional.find("SrcAscii");
170         if (it != i_additional.end())
171         {
172             srcString = it->second;
173         }
174         else
175         {
176             // The entry with key "Subsystem" does not exist in the additional
177             // map. Log the error, create failure event, and return.
178             trace::err("Error the key SrcAscii does not exist in the map.");
179             eventAttentionFail((int)AttnSection::attnLogging |
180                                ATTN_INVALID_KEY);
181             return;
182         }
183 
184         // copy from string to char array
185         srcString.copy(srcChars.data(),
186                        std::min(srcString.size(), pel::asciiStringSize), 0);
187 
188         tiPel->setAsciiString(srcChars); // pel object src is char array
189 
190         // set symptom-id
191         auto symptomId = (srcString.substr(0, 8) + '_');
192 
193         symptomId += (i_additional["0x10 SRC Word 12"]);
194         symptomId += (i_additional["0x14 SRC Word 13"] + '_');
195         symptomId += (i_additional["0x18 SRC Word 14"]);
196         symptomId += (i_additional["0x1c SRC Word 15"] + '_');
197         symptomId += (i_additional["0x20 SRC Word 16"]);
198         symptomId += (i_additional["0x24 SRC Word 17"] + '_');
199         symptomId += (i_additional["0x28 SRC Word 18"]);
200         symptomId += (i_additional["0x2c SRC Word 19"]);
201 
202         // setSymptomId will take care of required null-terminate and padding
203         tiPel->setSymptomId(symptomId);
204     }
205     else
206     {
207         // Populate hostboot SRC words - note HB word 0 from the shared info
208         // data (additional data "0x10 HB Word") is reflected in the PEL as
209         // "reason code" so we zero it here. Also note that the first word
210         // in this group of words starts at word 0 and word 1 does not exits.
211         tiPel->setSrcWords(std::array<uint32_t, pel::numSrcWords>{
212             (uint32_t)0x00000000,
213             (uint32_t)std::stoul(i_additional["0x14 HB Word 2"], 0, 16),
214             (uint32_t)std::stoul(i_additional["0x18 HB Word 3"], 0, 16),
215             (uint32_t)std::stoul(i_additional["0x1c HB Word 4"], 0, 16),
216             (uint32_t)std::stoul(i_additional["0x20 HB Word 5"], 0, 16),
217             (uint32_t)std::stoul(i_additional["0x24 HB Word 6"], 0, 16),
218             (uint32_t)std::stoul(i_additional["0x28 HB Word 7"], 0, 16),
219             (uint32_t)std::stoul(i_additional["0x2c HB Word 8"], 0, 16)});
220 
221         // Populate hostboot primary SRC
222 
223         // char array for raw pel src
224         std::array<char, pel::asciiStringSize> srcChars{'0'};
225         std::string srcString;
226 
227         // src from TI info
228         it = i_additional.find("SrcAscii");
229         if (it != i_additional.end())
230         {
231             srcString = it->second;
232         }
233         else
234         {
235             // The entry with key "Subsystem" does not exist in the additional
236             // map. Log the error, create failure event, and return.
237             trace::err("Error the key SrcAscii does not exist in the map.");
238             eventAttentionFail((int)AttnSection::attnLogging |
239                                ATTN_INVALID_KEY);
240             return;
241         }
242 
243         // copy from string to char array
244         srcString.copy(srcChars.data(),
245                        std::min(srcString.size(), pel::asciiStringSize), 0);
246 
247         tiPel->setAsciiString(srcChars); // pel object src is char array
248 
249         // set symptom-id
250         auto symptomId = (srcString.substr(0, 8) + '_');
251 
252         symptomId += (i_additional["0x10 HB Word 0"]);       // note: word 1
253         symptomId += (i_additional["0x14 HB Word 2"] + '_'); // does not exist
254         symptomId += (i_additional["0x18 HB Word 3"]);
255         symptomId += (i_additional["0x1c HB Word 4"] + '_');
256         symptomId += (i_additional["0x20 HB Word 5"]);
257         symptomId += (i_additional["0x24 HB Word 6"] + '_');
258         symptomId += (i_additional["0x28 HB Word 7"]);
259         symptomId += (i_additional["0x2c HB Word 8"]);
260 
261         // setSymptomId will take care of required null-terminate and padding
262         tiPel->setSymptomId(symptomId);
263     }
264 
265     // set severity, event type and action flags
266     tiPel->setSeverity(static_cast<uint8_t>(pel::Severity::termination));
267     tiPel->setType(static_cast<uint8_t>(pel::EventType::na));
268 
269     auto actionFlags = pel::ActionFlags::service | pel::ActionFlags::report |
270                        pel::ActionFlags::call;
271 
272     it = i_additional.find("hidden");
273     if (it != i_additional.end() && "true" == it->second)
274     {
275         trace::inf("making HB TI PEL hidden");
276         actionFlags = actionFlags | pel::ActionFlags::hidden;
277     }
278 
279     tiPel->setAction(static_cast<uint16_t>(actionFlags));
280 
281     // The raw PEL that we used as the basis for this custom PEL contains some
282     // user data sections that do not need to be in this PEL. However we do
283     // want to include the raw TI information.
284     int ffdcCount = 0;
285     it            = i_additional.find("FFDC count");
286     if (it != i_additional.end())
287     {
288         // remove all sections except 1 (raw Ti info)
289         ffdcCount = std::stoi(it->second) - 1;
290     }
291     tiPel->setSectionCount(tiPel->getSectionCount() - ffdcCount);
292 
293     // Update the raw PEL with the new custom PEL data
294     tiPel->raw(i_rawPel);
295 
296     // create PEL from raw data
297     createPelRaw(i_rawPel);
298 }
299 
300 /**
301  * Log an event handled by the attention handler
302  *
303  * Basic (non TI) events will generate a standard message-registry based PEL
304  *
305  * TI events will create two PEL's. One PEL will be informational and will
306  * contain trace information relevent to attention handler. The second PEL
307  * will be specific to the TI type (including the primary SRC) and will be
308  * based off of the TI information provided to the attention handler through
309  * shared TI info data area.
310  *
311  * @param  i_event - The event type
312  * @param  i_additional - Additional PEL data
313  * @param  i_ffdc - FFDC PEL data
314  * @return Event log Id (0 if no event log generated)
315  */
316 uint32_t event(EventType i_event,
317                std::map<std::string, std::string>& i_additional,
318                const std::vector<util::FFDCFile>& i_ffdc)
319 {
320     uint32_t pelId = 0; // assume no event log generated
321 
322     bool eventValid = false; // assume no event created
323     bool tiEvent    = false; // assume not a terminate event
324 
325     // count user data sections so we can fixup custom PEL
326     i_additional["FFDC count"] = std::to_string(i_ffdc.size());
327 
328     std::string eventName;
329 
330     switch (i_event)
331     {
332         case EventType::Checkstop:
333             eventName  = "org.open_power.HwDiags.Error.Checkstop";
334             eventValid = true;
335             break;
336         case EventType::Terminate:
337             eventName  = "org.open_power.Attn.Error.Terminate";
338             eventValid = true;
339             tiEvent    = true;
340             break;
341         case EventType::Vital:
342             eventName  = "org.open_power.Attn.Error.Vital";
343             eventValid = true;
344             break;
345         case EventType::HwDiagsFail:
346         case EventType::AttentionFail:
347             eventName  = "org.open_power.Attn.Error.Fail";
348             eventValid = true;
349             break;
350         default:
351             eventValid = false;
352             break;
353     }
354 
355     if (true == eventValid)
356     {
357         // Create PEL with additional data and FFDC data. The newly created
358         // PEL's platform log-id will be returned.
359         pelId = util::dbus::createPel(eventName, levelPelError, i_additional,
360                                       createFFDCTuples(i_ffdc));
361 
362         // If this is a TI event we will create an additional PEL that is
363         // specific to the subsystem that generated the TI.
364         if ((0 != pelId) && (true == tiEvent))
365         {
366             // get file descriptor and size of information PEL
367             int pelFd = getPel(pelId);
368 
369             // if PEL found, read into buffer
370             if (-1 != pelFd)
371             {
372                 auto pelSize = lseek(pelFd, 0, SEEK_END);
373                 lseek(pelFd, 0, SEEK_SET);
374 
375                 // read information PEL into buffer
376                 std::vector<uint8_t> buffer(pelSize);
377                 size_t numBytes = read(pelFd, buffer.data(), buffer.size());
378                 if (buffer.size() != numBytes)
379                 {
380                     trace::err("Error reading event log: %u of %u bytes read",
381                                numBytes, buffer.size());
382                 }
383                 else
384                 {
385                     // create PEL from buffer
386                     createPelCustom(buffer, i_additional);
387                 }
388 
389                 close(pelFd);
390             }
391 
392             std::map<std::string, std::string>::iterator it;
393             uint8_t subsystem;
394 
395             it = i_additional.find("Subsystem");
396             if (it != i_additional.end())
397             {
398                 subsystem = std::stoi(it->second);
399             }
400             else
401             {
402                 // The entry with key "Subsystem" does not exist in the
403                 // additional map. Log the error, create failure event, and
404                 // return.
405                 trace::err(
406                     "Error the key Subsystem does not exist in the map.");
407                 eventAttentionFail((int)AttnSection::attnLogging |
408                                    ATTN_INVALID_KEY);
409                 return 0;
410             }
411 
412             // If not hypervisor TI
413             if (static_cast<uint8_t>(pel::SubsystemID::hypervisor) != subsystem)
414             {
415                 // Request a dump and transition the host
416                 if ("true" == i_additional["Dump"])
417                 {
418                     // will not return until dump is complete
419                     requestDump(pelId, DumpParameters{0, DumpType::Hostboot});
420                 }
421             }
422         }
423     }
424     return pelId;
425 }
426 
427 /**
428  * Commit special attention TI event to log
429  *
430  * Create a event log with provided additional information and standard
431  * FFDC data plus TI FFDC data
432  *
433  * @param i_additional - Additional log data
434  * @param i_ti_InfoData - TI FFDC data
435  */
436 void eventTerminate(std::map<std::string, std::string> i_additionalData,
437                     char* i_tiInfoData)
438 {
439     uint32_t tiInfoSize = 0; // assume TI info was not available
440 
441     if (nullptr != i_tiInfoData)
442     {
443         tiInfoSize = 56; // assume not hypervisor TI
444 
445         std::map<std::string, std::string>::iterator it;
446         uint8_t subsystem;
447 
448         it = i_additionalData.find("Subsystem");
449         if (it != i_additionalData.end())
450         {
451             subsystem = std::stoi(it->second);
452         }
453         else
454         {
455             // The entry with key "Subsystem" does not exist in the additional
456             // map. Log the error, create failure event, and return.
457             trace::err("Error the key Subsystem does not exist in the map.");
458             eventAttentionFail((int)AttnSection::attnLogging |
459                                ATTN_INVALID_KEY);
460             return;
461         }
462 
463         // If hypervisor
464         if (static_cast<uint8_t>(pel::SubsystemID::hypervisor) == subsystem)
465         {
466             tiInfoSize = 1024; // assume hypervisor max
467 
468             // hypervisor may just want some of the data
469             if (0 == (*(i_tiInfoData + 0x09) & 0x01))
470             {
471                 uint32_t* additionalLength = (uint32_t*)(i_tiInfoData + 0x50);
472                 uint32_t tiAdditional      = be32toh(*additionalLength);
473                 tiInfoSize = std::min(tiInfoSize, (84 + tiAdditional));
474             }
475         }
476     }
477 
478     trace::inf("TI info size = %u", tiInfoSize);
479 
480     event(EventType::Terminate, i_additionalData,
481           createFFDCFiles(i_tiInfoData, tiInfoSize));
482 }
483 
484 /** @brief Commit SBE vital event to log, returns event log ID */
485 uint32_t eventVital()
486 {
487     // Additional data for log
488     std::map<std::string, std::string> additionalData;
489 
490     // Create log event with additional data and FFDC data
491     return event(EventType::Vital, additionalData, createFFDCFiles(nullptr, 0));
492 }
493 
494 /**
495  * Commit attention handler failure event to log
496  *
497  * Create an event log containing the specified error code.
498  *
499  * @param i_error - Error code
500  */
501 void eventAttentionFail(int i_error)
502 {
503     // Additional data for log
504     std::map<std::string, std::string> additionalData;
505     additionalData["ERROR_CODE"] = std::to_string(i_error);
506 
507     // Create log event with additional data and FFDC data
508     event(EventType::AttentionFail, additionalData,
509           createFFDCFiles(nullptr, 0));
510 }
511 
512 } // namespace attn
513