xref: /openbmc/pldm/pldmd/pldmd.cpp (revision 21f128d8)
1 
2 #include "common/flight_recorder.hpp"
3 #include "common/instance_id.hpp"
4 #include "common/transport.hpp"
5 #include "common/utils.hpp"
6 #include "dbus_impl_requester.hpp"
7 #include "fw-update/manager.hpp"
8 #include "invoker.hpp"
9 #include "requester/handler.hpp"
10 #include "requester/mctp_endpoint_discovery.hpp"
11 #include "requester/request.hpp"
12 
13 #include <err.h>
14 #include <getopt.h>
15 #include <libpldm/base.h>
16 #include <libpldm/bios.h>
17 #include <libpldm/pdr.h>
18 #include <libpldm/platform.h>
19 #include <libpldm/transport.h>
20 #include <poll.h>
21 #include <stdlib.h>
22 #include <sys/socket.h>
23 #include <sys/types.h>
24 #include <sys/un.h>
25 #include <unistd.h>
26 
27 #include <phosphor-logging/lg2.hpp>
28 #include <sdeventplus/event.hpp>
29 #include <sdeventplus/source/io.hpp>
30 #include <sdeventplus/source/signal.hpp>
31 #include <stdplus/signal.hpp>
32 
33 #include <cstdio>
34 #include <cstring>
35 #include <fstream>
36 #include <iomanip>
37 #include <iostream>
38 #include <iterator>
39 #include <memory>
40 #include <ranges>
41 #include <sstream>
42 #include <stdexcept>
43 #include <string>
44 #include <vector>
45 
46 PHOSPHOR_LOG2_USING;
47 
48 #ifdef LIBPLDMRESPONDER
49 #include "dbus_impl_pdr.hpp"
50 #include "host-bmc/dbus_to_event_handler.hpp"
51 #include "host-bmc/dbus_to_host_effecters.hpp"
52 #include "host-bmc/host_condition.hpp"
53 #include "host-bmc/host_pdr_handler.hpp"
54 #include "libpldmresponder/base.hpp"
55 #include "libpldmresponder/bios.hpp"
56 #include "libpldmresponder/fru.hpp"
57 #include "libpldmresponder/oem_handler.hpp"
58 #include "libpldmresponder/platform.hpp"
59 #include "xyz/openbmc_project/PLDM/Event/server.hpp"
60 #endif
61 
62 #ifdef OEM_IBM
63 #include "libpldmresponder/bios_oem_ibm.hpp"
64 #include "libpldmresponder/file_io.hpp"
65 #include "libpldmresponder/oem_ibm_handler.hpp"
66 #endif
67 
68 constexpr uint8_t MCTP_MSG_TYPE_PLDM = 1;
69 
70 using namespace pldm;
71 using namespace sdeventplus;
72 using namespace sdeventplus::source;
73 using namespace pldm::responder;
74 using namespace pldm::utils;
75 using sdeventplus::source::Signal;
76 using namespace pldm::flightrecorder;
77 
78 void interruptFlightRecorderCallBack(Signal& /*signal*/,
79                                      const struct signalfd_siginfo*)
80 {
81     error("Received SIGUR1(10) Signal interrupt");
82     // obtain the flight recorder instance and dump the recorder
83     FlightRecorder::GetInstance().playRecorder();
84 }
85 
86 static std::optional<Response>
87     processRxMsg(const std::vector<uint8_t>& requestMsg, Invoker& invoker,
88                  requester::Handler<requester::Request>& handler,
89                  fw_update::Manager* fwManager, pldm_tid_t tid)
90 {
91     uint8_t eid = tid;
92 
93     pldm_header_info hdrFields{};
94     auto hdr = reinterpret_cast<const pldm_msg_hdr*>(requestMsg.data());
95     if (PLDM_SUCCESS != unpack_pldm_header(hdr, &hdrFields))
96     {
97         error("Empty PLDM request header");
98         return std::nullopt;
99     }
100 
101     if (PLDM_RESPONSE != hdrFields.msg_type)
102     {
103         Response response;
104         auto request = reinterpret_cast<const pldm_msg*>(hdr);
105         size_t requestLen = requestMsg.size() - sizeof(struct pldm_msg_hdr);
106         try
107         {
108             if (hdrFields.pldm_type != PLDM_FWUP)
109             {
110                 response = invoker.handle(tid, hdrFields.pldm_type,
111                                           hdrFields.command, request,
112                                           requestLen);
113             }
114             else
115             {
116                 response = fwManager->handleRequest(eid, hdrFields.command,
117                                                     request, requestLen);
118             }
119         }
120         catch (const std::out_of_range& e)
121         {
122             uint8_t completion_code = PLDM_ERROR_UNSUPPORTED_PLDM_CMD;
123             response.resize(sizeof(pldm_msg_hdr));
124             auto responseHdr = reinterpret_cast<pldm_msg_hdr*>(response.data());
125             pldm_header_info header{};
126             header.msg_type = PLDM_RESPONSE;
127             header.instance = hdrFields.instance;
128             header.pldm_type = hdrFields.pldm_type;
129             header.command = hdrFields.command;
130             if (PLDM_SUCCESS != pack_pldm_header(&header, responseHdr))
131             {
132                 error("Failed adding response header");
133                 return std::nullopt;
134             }
135             response.insert(response.end(), completion_code);
136         }
137         return response;
138     }
139     else if (PLDM_RESPONSE == hdrFields.msg_type)
140     {
141         auto response = reinterpret_cast<const pldm_msg*>(hdr);
142         size_t responseLen = requestMsg.size() - sizeof(struct pldm_msg_hdr);
143         handler.handleResponse(eid, hdrFields.instance, hdrFields.pldm_type,
144                                hdrFields.command, response, responseLen);
145     }
146     return std::nullopt;
147 }
148 
149 void optionUsage(void)
150 {
151     info("Usage: pldmd [options]");
152     info("Options:");
153     info(" [--verbose] - would enable verbosity");
154 }
155 
156 int main(int argc, char** argv)
157 {
158     bool verbose = false;
159     static struct option long_options[] = {{"verbose", no_argument, 0, 'v'},
160                                            {0, 0, 0, 0}};
161 
162     auto argflag = getopt_long(argc, argv, "v", long_options, nullptr);
163     switch (argflag)
164     {
165         case 'v':
166             verbose = true;
167             break;
168         case -1:
169             break;
170         default:
171             optionUsage();
172             exit(EXIT_FAILURE);
173     }
174 
175     // Setup PLDM requester transport
176     auto hostEID = pldm::utils::readHostEID();
177     /* To maintain current behaviour until we have the infrastructure to find
178      * and use the correct TIDs */
179     pldm_tid_t TID = hostEID;
180     PldmTransport pldmTransport{};
181     auto event = Event::get_default();
182     auto& bus = pldm::utils::DBusHandler::getBus();
183     sdbusplus::server::manager_t objManager(bus,
184                                             "/xyz/openbmc_project/software");
185 
186     InstanceIdDb instanceIdDb;
187     dbus_api::Requester dbusImplReq(bus, "/xyz/openbmc_project/pldm",
188                                     instanceIdDb);
189     sdbusplus::server::manager_t inventoryManager(
190         bus, "/xyz/openbmc_project/inventory");
191 
192     Invoker invoker{};
193     requester::Handler<requester::Request> reqHandler(&pldmTransport, event,
194                                                       instanceIdDb, verbose);
195 
196 #ifdef LIBPLDMRESPONDER
197     using namespace pldm::state_sensor;
198     dbus_api::Host dbusImplHost(bus, "/xyz/openbmc_project/pldm");
199     std::unique_ptr<pldm_pdr, decltype(&pldm_pdr_destroy)> pdrRepo(
200         pldm_pdr_init(), pldm_pdr_destroy);
201     if (!pdrRepo)
202     {
203         throw std::runtime_error("Failed to instantiate PDR repository");
204     }
205     std::unique_ptr<pldm_entity_association_tree,
206                     decltype(&pldm_entity_association_tree_destroy)>
207         entityTree(pldm_entity_association_tree_init(),
208                    pldm_entity_association_tree_destroy);
209     if (!entityTree)
210     {
211         throw std::runtime_error(
212             "Failed to instantiate general PDR entity association tree");
213     }
214     std::unique_ptr<pldm_entity_association_tree,
215                     decltype(&pldm_entity_association_tree_destroy)>
216         bmcEntityTree(pldm_entity_association_tree_init(),
217                       pldm_entity_association_tree_destroy);
218     if (!bmcEntityTree)
219     {
220         throw std::runtime_error(
221             "Failed to instantiate BMC PDR entity association tree");
222     }
223     std::shared_ptr<HostPDRHandler> hostPDRHandler;
224     std::unique_ptr<pldm::host_effecters::HostEffecterParser>
225         hostEffecterParser;
226     std::unique_ptr<DbusToPLDMEvent> dbusToPLDMEventHandler;
227     DBusHandler dbusHandler;
228     std::unique_ptr<oem_platform::Handler> oemPlatformHandler{};
229     std::unique_ptr<oem_bios::Handler> oemBiosHandler{};
230 
231 #ifdef OEM_IBM
232     std::unique_ptr<pldm::responder::CodeUpdate> codeUpdate =
233         std::make_unique<pldm::responder::CodeUpdate>(&dbusHandler);
234     codeUpdate->clearDirPath(LID_STAGING_DIR);
235     oemPlatformHandler = std::make_unique<oem_ibm_platform::Handler>(
236         &dbusHandler, codeUpdate.get(), pldmTransport.getEventSource(), hostEID,
237         instanceIdDb, event, &reqHandler);
238     codeUpdate->setOemPlatformHandler(oemPlatformHandler.get());
239     invoker.registerHandler(PLDM_OEM, std::make_unique<oem_ibm::Handler>(
240                                           oemPlatformHandler.get(),
241                                           pldmTransport.getEventSource(),
242                                           hostEID, &instanceIdDb, &reqHandler));
243     oemBiosHandler = std::make_unique<oem::ibm::bios::Handler>(&dbusHandler);
244 #endif
245     if (hostEID)
246     {
247         hostPDRHandler = std::make_shared<HostPDRHandler>(
248             pldmTransport.getEventSource(), hostEID, event, pdrRepo.get(),
249             EVENTS_JSONS_DIR, entityTree.get(), bmcEntityTree.get(),
250             instanceIdDb, &reqHandler, oemPlatformHandler.get());
251         // HostFirmware interface needs access to hostPDR to know if host
252         // is running
253         dbusImplHost.setHostPdrObj(hostPDRHandler);
254 
255         hostEffecterParser =
256             std::make_unique<pldm::host_effecters::HostEffecterParser>(
257                 &instanceIdDb, pldmTransport.getEventSource(), pdrRepo.get(),
258                 &dbusHandler, HOST_JSONS_DIR, &reqHandler);
259         dbusToPLDMEventHandler = std::make_unique<DbusToPLDMEvent>(
260             pldmTransport.getEventSource(), hostEID, instanceIdDb, &reqHandler);
261     }
262     auto biosHandler = std::make_unique<bios::Handler>(
263         pldmTransport.getEventSource(), hostEID, &instanceIdDb, &reqHandler,
264         oemBiosHandler.get());
265     auto fruHandler = std::make_unique<fru::Handler>(
266         FRU_JSONS_DIR, FRU_MASTER_JSON, pdrRepo.get(), entityTree.get(),
267         bmcEntityTree.get());
268     // FRU table is built lazily when a FRU command or Get PDR command is
269     // handled. To enable building FRU table, the FRU handler is passed to the
270     // Platform handler.
271     auto platformHandler = std::make_unique<platform::Handler>(
272         &dbusHandler, hostEID, &instanceIdDb, PDR_JSONS_DIR, pdrRepo.get(),
273         hostPDRHandler.get(), dbusToPLDMEventHandler.get(), fruHandler.get(),
274         oemPlatformHandler.get(), &reqHandler, event, true);
275 #ifdef OEM_IBM
276     pldm::responder::oem_ibm_platform::Handler* oemIbmPlatformHandler =
277         dynamic_cast<pldm::responder::oem_ibm_platform::Handler*>(
278             oemPlatformHandler.get());
279     oemIbmPlatformHandler->setPlatformHandler(platformHandler.get());
280 #endif
281 
282     invoker.registerHandler(PLDM_BIOS, std::move(biosHandler));
283     invoker.registerHandler(PLDM_PLATFORM, std::move(platformHandler));
284     invoker.registerHandler(PLDM_BASE, std::make_unique<base::Handler>(
285                                            event, oemPlatformHandler.get()));
286     invoker.registerHandler(PLDM_FRU, std::move(fruHandler));
287     dbus_api::Pdr dbusImplPdr(bus, "/xyz/openbmc_project/pldm", pdrRepo.get());
288     sdbusplus::xyz::openbmc_project::PLDM::server::Event dbusImplEvent(
289         bus, "/xyz/openbmc_project/pldm");
290 
291 #endif
292 
293     std::unique_ptr<fw_update::Manager> fwManager =
294         std::make_unique<fw_update::Manager>(event, reqHandler, instanceIdDb);
295     std::unique_ptr<MctpDiscovery> mctpDiscoveryHandler =
296         std::make_unique<MctpDiscovery>(bus, fwManager.get());
297     auto callback = [verbose, &invoker, &reqHandler, &fwManager, &pldmTransport,
298                      TID](IO& io, int fd, uint32_t revents) mutable {
299         if (!(revents & EPOLLIN))
300         {
301             return;
302         }
303         if (fd < 0)
304         {
305             return;
306         }
307 
308         int returnCode = 0;
309         void* requestMsg;
310         size_t recvDataLength;
311         returnCode = pldmTransport.recvMsg(TID, requestMsg, recvDataLength);
312 
313         if (returnCode == PLDM_REQUESTER_SUCCESS)
314         {
315             std::vector<uint8_t> requestMsgVec(
316                 static_cast<uint8_t*>(requestMsg),
317                 static_cast<uint8_t*>(requestMsg) + recvDataLength);
318             FlightRecorder::GetInstance().saveRecord(requestMsgVec, false);
319             if (verbose)
320             {
321                 printBuffer(Rx, requestMsgVec);
322             }
323             // process message and send response
324             auto response = processRxMsg(requestMsgVec, invoker, reqHandler,
325                                          fwManager.get(), TID);
326             if (response.has_value())
327             {
328                 FlightRecorder::GetInstance().saveRecord(*response, true);
329                 if (verbose)
330                 {
331                     printBuffer(Tx, *response);
332                 }
333 
334                 returnCode = pldmTransport.sendMsg(TID, (*response).data(),
335                                                    (*response).size());
336                 if (returnCode != PLDM_REQUESTER_SUCCESS)
337                 {
338                     warning("Failed to send PLDM response: {RETURN_CODE}",
339                             "RETURN_CODE", returnCode);
340                 }
341             }
342         }
343         // TODO check that we get here if mctp-demux dies?
344         else if (returnCode == PLDM_REQUESTER_RECV_FAIL)
345         {
346             // MCTP daemon has closed the socket this daemon is connected to.
347             // This may or may not be an error scenario, in either case the
348             // recovery mechanism for this daemon is to restart, and hence exit
349             // the event loop, that will cause this daemon to exit with a
350             // failure code.
351             error("io exiting");
352             io.get_event().exit(0);
353         }
354         else
355         {
356             warning("Failed to receive PLDM request: {RETURN_CODE}",
357                     "RETURN_CODE", returnCode);
358         }
359     };
360 
361     bus.attach_event(event.get(), SD_EVENT_PRIORITY_NORMAL);
362     bus.request_name("xyz.openbmc_project.PLDM");
363     IO io(event, pldmTransport.getEventSource(), EPOLLIN, std::move(callback));
364 #ifdef LIBPLDMRESPONDER
365     if (hostPDRHandler)
366     {
367         hostPDRHandler->setHostFirmwareCondition();
368     }
369 #endif
370     stdplus::signal::block(SIGUSR1);
371     sdeventplus::source::Signal sigUsr1(
372         event, SIGUSR1, std::bind_front(&interruptFlightRecorderCallBack));
373     int returnCode = event.loop();
374     if (returnCode)
375     {
376         exit(EXIT_FAILURE);
377     }
378 
379     exit(EXIT_SUCCESS);
380 }
381