xref: /openbmc/fb-ipmi-oem/src/oemcommands.cpp (revision 695ef4e2b86f503beec14f3aa9de2e22a2581f90)
1 /*
2  * Copyright (c)  2018 Intel Corporation.
3  * Copyright (c)  2018-present Facebook.
4  *
5  * Licensed under the Apache License, Version 2.0 (the "License");
6  * you may not use this file except in compliance with the License.
7  * You may obtain a copy of the License at
8  *
9  *      http://www.apache.org/licenses/LICENSE-2.0
10  *
11  * Unless required by applicable law or agreed to in writing, software
12  * distributed under the License is distributed on an "AS IS" BASIS,
13  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14  * See the License for the specific language governing permissions and
15  * limitations under the License.
16  */
17 
18 #include "xyz/openbmc_project/Common/error.hpp"
19 
20 #include <boost/crc.hpp>
21 #include <commandutils.hpp>
22 #include <ipmid/api-types.hpp>
23 #include <ipmid/api.hpp>
24 #include <ipmid/utils.hpp>
25 #include <nlohmann/json.hpp>
26 #include <oemcommands.hpp>
27 #include <phosphor-logging/log.hpp>
28 #include <sdbusplus/bus.hpp>
29 #include <xyz/openbmc_project/Control/Boot/Mode/server.hpp>
30 #include <xyz/openbmc_project/Control/Boot/Source/server.hpp>
31 #include <xyz/openbmc_project/Control/Boot/Type/server.hpp>
32 
33 #include <array>
34 #include <cstring>
35 #include <fstream>
36 #include <functional>
37 #include <iomanip>
38 #include <iostream>
39 #include <optional>
40 #include <regex>
41 #include <sstream>
42 #include <string>
43 #include <vector>
44 
45 #define SIZE_IANA_ID 3
46 
47 namespace ipmi
48 {
49 
50 using namespace phosphor::logging;
51 
52 void getSelectorPosition(size_t& position);
53 static void registerOEMFunctions() __attribute__((constructor));
54 sdbusplus::bus_t dbus(ipmid_get_sd_bus_connection()); // from ipmid/api.h
55 static constexpr size_t maxFRUStringLength = 0x3F;
56 constexpr uint8_t cmdSetSystemGuid = 0xEF;
57 
58 constexpr uint8_t cmdSetQDimmInfo = 0x12;
59 constexpr uint8_t cmdGetQDimmInfo = 0x13;
60 
61 constexpr ipmi_ret_t ccInvalidParam = 0x80;
62 
63 int plat_udbg_get_post_desc(uint8_t, uint8_t*, uint8_t, uint8_t*, uint8_t*,
64                             uint8_t*);
65 int plat_udbg_get_gpio_desc(uint8_t, uint8_t*, uint8_t*, uint8_t*, uint8_t*,
66                             uint8_t*);
67 int plat_udbg_get_frame_data(uint8_t, uint8_t, uint8_t*, uint8_t*, uint8_t*);
68 ipmi_ret_t plat_udbg_control_panel(uint8_t, uint8_t, uint8_t, uint8_t*,
69                                    uint8_t*);
70 int sendMeCmd(uint8_t, uint8_t, std::vector<uint8_t>&, std::vector<uint8_t>&);
71 
72 int sendBicCmd(uint8_t, uint8_t, uint8_t, std::vector<uint8_t>&,
73                std::vector<uint8_t>&);
74 
75 nlohmann::json oemData __attribute__((init_priority(101)));
76 
77 constexpr const char* certPath = "/mnt/data/host/bios-rootcert";
78 
79 static constexpr size_t GUID_SIZE = 16;
80 // TODO Make offset and location runtime configurable to ensure we
81 // can make each define their own locations.
82 static constexpr off_t OFFSET_SYS_GUID = 0x17F0;
83 static constexpr const char* FRU_EEPROM = "/sys/bus/i2c/devices/6-0054/eeprom";
84 void flushOemData();
85 
86 enum class LanParam : uint8_t
87 {
88     INPROGRESS = 0,
89     AUTHSUPPORT = 1,
90     AUTHENABLES = 2,
91     IP = 3,
92     IPSRC = 4,
93     MAC = 5,
94     SUBNET = 6,
95     GATEWAY = 12,
96     VLAN = 20,
97     CIPHER_SUITE_COUNT = 22,
98     CIPHER_SUITE_ENTRIES = 23,
99     IPV6 = 59,
100 };
101 
102 namespace network
103 {
104 
105 constexpr auto ROOT = "/xyz/openbmc_project/network";
106 constexpr auto SERVICE = "xyz.openbmc_project.Network";
107 constexpr auto IPV4_TYPE = "ipv4";
108 constexpr auto IPV6_TYPE = "ipv6";
109 constexpr auto IPV4_PREFIX = "169.254";
110 constexpr auto IPV6_PREFIX = "fe80";
111 constexpr auto IP_INTERFACE = "xyz.openbmc_project.Network.IP";
112 constexpr auto MAC_INTERFACE = "xyz.openbmc_project.Network.MACAddress";
113 constexpr auto IPV4_PROTOCOL = "xyz.openbmc_project.Network.IP.Protocol.IPv4";
114 constexpr auto IPV6_PROTOCOL = "xyz.openbmc_project.Network.IP.Protocol.IPv6";
115 
isLinkLocalIP(const std::string & address)116 bool isLinkLocalIP(const std::string& address)
117 {
118     return address.find(IPV4_PREFIX) == 0 || address.find(IPV6_PREFIX) == 0;
119 }
120 
getIPObject(sdbusplus::bus_t & bus,const std::string & interface,const std::string & serviceRoot,const std::string & protocol,const std::string & ethdev)121 DbusObjectInfo getIPObject(sdbusplus::bus_t& bus, const std::string& interface,
122                            const std::string& serviceRoot,
123                            const std::string& protocol,
124                            const std::string& ethdev)
125 {
126     auto objectTree = getAllDbusObjects(bus, serviceRoot, interface, ethdev);
127 
128     if (objectTree.empty())
129     {
130         log<level::ERR>("No Object has implemented the IP interface",
131                         entry("INTERFACE=%s", interface.c_str()));
132     }
133 
134     DbusObjectInfo objectInfo;
135 
136     for (auto& object : objectTree)
137     {
138         auto variant =
139             ipmi::getDbusProperty(bus, object.second.begin()->first,
140                                   object.first, IP_INTERFACE, "Type");
141         if (std::get<std::string>(variant) != protocol)
142         {
143             continue;
144         }
145 
146         variant = ipmi::getDbusProperty(bus, object.second.begin()->first,
147                                         object.first, IP_INTERFACE, "Address");
148 
149         objectInfo = std::make_pair(object.first, object.second.begin()->first);
150 
151         // if LinkLocalIP found look for Non-LinkLocalIP
152         if (isLinkLocalIP(std::get<std::string>(variant)))
153         {
154             continue;
155         }
156         else
157         {
158             break;
159         }
160     }
161     return objectInfo;
162 }
163 
164 } // namespace network
165 
166 namespace boot
167 {
168 using BootSource =
169     sdbusplus::xyz::openbmc_project::Control::Boot::server::Source::Sources;
170 using BootMode =
171     sdbusplus::xyz::openbmc_project::Control::Boot::server::Mode::Modes;
172 using BootType =
173     sdbusplus::xyz::openbmc_project::Control::Boot::server::Type::Types;
174 
175 using IpmiValue = uint8_t;
176 
177 std::map<IpmiValue, BootSource> sourceIpmiToDbus = {
178     {0x0f, BootSource::Default},       {0x00, BootSource::RemovableMedia},
179     {0x01, BootSource::Network},       {0x02, BootSource::Disk},
180     {0x03, BootSource::ExternalMedia}, {0x04, BootSource::RemovableMedia},
181     {0x09, BootSource::Network}};
182 
183 std::map<IpmiValue, BootMode> modeIpmiToDbus = {{0x04, BootMode::Setup},
184                                                 {0x00, BootMode::Regular}};
185 
186 std::map<IpmiValue, BootType> typeIpmiToDbus = {{0x00, BootType::Legacy},
187                                                 {0x01, BootType::EFI}};
188 
189 std::map<std::optional<BootSource>, IpmiValue> sourceDbusToIpmi = {
190     {BootSource::Default, 0x0f},
191     {BootSource::RemovableMedia, 0x00},
192     {BootSource::Network, 0x01},
193     {BootSource::Disk, 0x02},
194     {BootSource::ExternalMedia, 0x03}};
195 
196 std::map<std::optional<BootMode>, IpmiValue> modeDbusToIpmi = {
197     {BootMode::Setup, 0x04}, {BootMode::Regular, 0x00}};
198 
199 std::map<std::optional<BootType>, IpmiValue> typeDbusToIpmi = {
200     {BootType::Legacy, 0x00}, {BootType::EFI, 0x01}};
201 
202 static constexpr auto bootEnableIntf = "xyz.openbmc_project.Object.Enable";
203 static constexpr auto bootModeIntf = "xyz.openbmc_project.Control.Boot.Mode";
204 static constexpr auto bootSourceIntf =
205     "xyz.openbmc_project.Control.Boot.Source";
206 static constexpr auto bootTypeIntf = "xyz.openbmc_project.Control.Boot.Type";
207 static constexpr auto bootSourceProp = "BootSource";
208 static constexpr auto bootModeProp = "BootMode";
209 static constexpr auto bootTypeProp = "BootType";
210 static constexpr auto bootEnableProp = "Enabled";
211 
objPath(size_t id)212 std::tuple<std::string, std::string> objPath(size_t id)
213 {
214     std::string hostName = "host" + std::to_string(id);
215     std::string bootObjPath =
216         "/xyz/openbmc_project/control/" + hostName + "/boot";
217     return std::make_tuple(std::move(bootObjPath), std::move(hostName));
218 }
219 
220 /* Helper functions to set boot order */
setBootOrder(std::string bootObjPath,const std::vector<uint8_t> & bootSeq,std::string bootOrderKey)221 void setBootOrder(std::string bootObjPath, const std::vector<uint8_t>& bootSeq,
222                   std::string bootOrderKey)
223 {
224     if (bootSeq.size() != SIZE_BOOT_ORDER)
225     {
226         phosphor::logging::log<phosphor::logging::level::ERR>(
227             "Invalid Boot order length received");
228         return;
229     }
230 
231     std::shared_ptr<sdbusplus::asio::connection> dbus = getSdBus();
232 
233     uint8_t mode = bootSeq.front();
234 
235     // SETTING BOOT MODE PROPERTY
236     uint8_t bootModeBit = mode & 0x04;
237     auto bootValue = ipmi::boot::modeIpmiToDbus.at(bootModeBit);
238 
239     std::string bootOption =
240         sdbusplus::message::convert_to_string<boot::BootMode>(bootValue);
241 
242     std::string service =
243         getService(*dbus, ipmi::boot::bootModeIntf, bootObjPath);
244     setDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootModeIntf,
245                     ipmi::boot::bootModeProp, bootOption);
246 
247     // SETTING BOOT SOURCE PROPERTY
248     auto bootOrder = ipmi::boot::sourceIpmiToDbus.at(bootSeq.at(1));
249     std::string bootSource =
250         sdbusplus::message::convert_to_string<boot::BootSource>(bootOrder);
251 
252     service = getService(*dbus, ipmi::boot::bootSourceIntf, bootObjPath);
253     setDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootSourceIntf,
254                     ipmi::boot::bootSourceProp, bootSource);
255 
256     // SETTING BOOT TYPE PROPERTY
257     uint8_t bootTypeBit = mode & 0x01;
258     auto bootTypeVal = ipmi::boot::typeIpmiToDbus.at(bootTypeBit);
259 
260     std::string bootType =
261         sdbusplus::message::convert_to_string<boot::BootType>(bootTypeVal);
262 
263     service = getService(*dbus, ipmi::boot::bootTypeIntf, bootObjPath);
264 
265     setDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootTypeIntf,
266                     ipmi::boot::bootTypeProp, bootType);
267 
268     // Set the valid bit to boot enabled property
269     service = getService(*dbus, ipmi::boot::bootEnableIntf, bootObjPath);
270 
271     setDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootEnableIntf,
272                     ipmi::boot::bootEnableProp,
273                     (mode & BOOT_MODE_BOOT_FLAG) ? true : false);
274 
275     nlohmann::json bootMode;
276 
277     bootMode["UEFI"] = (mode & BOOT_MODE_UEFI) ? true : false;
278     bootMode["CMOS_CLR"] = (mode & BOOT_MODE_CMOS_CLR) ? true : false;
279     bootMode["FORCE_BOOT"] = (mode & BOOT_MODE_FORCE_BOOT) ? true : false;
280     bootMode["BOOT_FLAG"] = (mode & BOOT_MODE_BOOT_FLAG) ? true : false;
281     oemData[bootOrderKey][KEY_BOOT_MODE] = bootMode;
282 
283     /* Initialize boot sequence array */
284     oemData[bootOrderKey][KEY_BOOT_SEQ] = {};
285     for (size_t i = 1; i < SIZE_BOOT_ORDER; i++)
286     {
287         if (bootSeq.at(i) >= BOOT_SEQ_ARRAY_SIZE)
288             oemData[bootOrderKey][KEY_BOOT_SEQ][i - 1] = "NA";
289         else
290             oemData[bootOrderKey][KEY_BOOT_SEQ][i - 1] =
291                 bootSeqDefine[bootSeq.at(i)];
292     }
293 
294     flushOemData();
295 }
296 
getBootOrder(std::string bootObjPath,std::vector<uint8_t> & bootSeq,std::string hostName)297 void getBootOrder(std::string bootObjPath, std::vector<uint8_t>& bootSeq,
298                   std::string hostName)
299 {
300     if (oemData.find(hostName) == oemData.end())
301     {
302         /* Return default boot order 0100090203ff */
303         bootSeq.push_back(BOOT_MODE_UEFI);
304         bootSeq.push_back(static_cast<uint8_t>(bootMap["USB_DEV"]));
305         bootSeq.push_back(static_cast<uint8_t>(bootMap["NET_IPV6"]));
306         bootSeq.push_back(static_cast<uint8_t>(bootMap["SATA_HDD"]));
307         bootSeq.push_back(static_cast<uint8_t>(bootMap["SATA_CD"]));
308         bootSeq.push_back(0xff);
309 
310         phosphor::logging::log<phosphor::logging::level::INFO>(
311             "Set default boot order");
312         setBootOrder(bootObjPath, bootSeq, hostName);
313         return;
314     }
315 
316     std::shared_ptr<sdbusplus::asio::connection> dbus = getSdBus();
317 
318     // GETTING PROPERTY OF MODE INTERFACE
319 
320     std::string service =
321         getService(*dbus, ipmi::boot::bootModeIntf, bootObjPath);
322     Value variant =
323         getDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootModeIntf,
324                         ipmi::boot::bootModeProp);
325 
326     auto bootMode = sdbusplus::message::convert_from_string<boot::BootMode>(
327         std::get<std::string>(variant));
328 
329     uint8_t bootOption = ipmi::boot::modeDbusToIpmi.at(bootMode);
330 
331     // GETTING PROPERTY OF TYPE INTERFACE
332 
333     service = getService(*dbus, ipmi::boot::bootTypeIntf, bootObjPath);
334     variant =
335         getDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootTypeIntf,
336                         ipmi::boot::bootTypeProp);
337 
338     auto bootType = sdbusplus::message::convert_from_string<boot::BootType>(
339         std::get<std::string>(variant));
340 
341     // Get the valid bit to boot enabled property
342     service = getService(*dbus, ipmi::boot::bootEnableIntf, bootObjPath);
343     variant =
344         getDbusProperty(*dbus, service, bootObjPath, ipmi::boot::bootEnableIntf,
345                         ipmi::boot::bootEnableProp);
346 
347     bool validFlag = std::get<bool>(variant);
348 
349     uint8_t bootTypeVal = ipmi::boot::typeDbusToIpmi.at(bootType);
350 
351     bootSeq.push_back(bootOption | bootTypeVal);
352 
353     if (validFlag)
354     {
355         bootSeq.front() |= BOOT_MODE_BOOT_FLAG;
356     }
357 
358     nlohmann::json bootModeJson = oemData[hostName][KEY_BOOT_MODE];
359     if (bootModeJson["CMOS_CLR"])
360         bootSeq.front() |= BOOT_MODE_CMOS_CLR;
361 
362     for (int i = 1; i < SIZE_BOOT_ORDER; i++)
363     {
364         std::string seqStr = oemData[hostName][KEY_BOOT_SEQ][i - 1];
365         if (bootMap.find(seqStr) != bootMap.end())
366             bootSeq.push_back(bootMap[seqStr]);
367         else
368             bootSeq.push_back(0xff);
369     }
370 }
371 
372 } // namespace boot
373 
374 //----------------------------------------------------------------------
375 // Helper functions for storing oem data
376 //----------------------------------------------------------------------
377 
flushOemData()378 void flushOemData()
379 {
380     std::ofstream file(JSON_OEM_DATA_FILE);
381     file << oemData;
382     file.close();
383     return;
384 }
385 
bytesToStr(uint8_t * byte,int len)386 std::string bytesToStr(uint8_t* byte, int len)
387 {
388     std::stringstream ss;
389     int i;
390 
391     ss << std::hex;
392     for (i = 0; i < len; i++)
393     {
394         ss << std::setw(2) << std::setfill('0') << (int)byte[i];
395     }
396 
397     return ss.str();
398 }
399 
strToBytes(std::string & str,uint8_t * data)400 int strToBytes(std::string& str, uint8_t* data)
401 {
402     std::string sstr;
403     size_t i;
404 
405     for (i = 0; i < (str.length()) / 2; i++)
406     {
407         sstr = str.substr(i * 2, 2);
408         data[i] = (uint8_t)std::strtol(sstr.c_str(), NULL, 16);
409     }
410     return i;
411 }
412 
readDimmType(std::string & data,uint8_t param)413 int readDimmType(std::string& data, uint8_t param)
414 {
415     nlohmann::json dimmObj;
416     /* Get dimm type names stored in json file */
417     std::ifstream file(JSON_DIMM_TYPE_FILE);
418     if (file)
419     {
420         file >> dimmObj;
421         file.close();
422     }
423     else
424     {
425         phosphor::logging::log<phosphor::logging::level::ERR>(
426             "DIMM type names file not found",
427             phosphor::logging::entry("DIMM_TYPE_FILE=%s", JSON_DIMM_TYPE_FILE));
428         return -1;
429     }
430 
431     std::string dimmKey = "dimm_type" + std::to_string(param);
432     auto obj = dimmObj[dimmKey]["short_name"];
433     data = obj;
434     return 0;
435 }
436 
findIpAddress(sdbusplus::bus_t & bus,const std::string & protocol,const std::vector<std::string> & ifaces)437 static std::optional<std::string> findIpAddress(
438     sdbusplus::bus_t& bus, const std::string& protocol,
439     const std::vector<std::string>& ifaces)
440 {
441     for (auto& dev : ifaces)
442     {
443         try
444         {
445             auto ipObjectInfo =
446                 ipmi::network::getIPObject(bus, ipmi::network::IP_INTERFACE,
447                                            ipmi::network::ROOT, protocol, dev);
448 
449             auto props = ipmi::getAllDbusProperties(
450                 bus, ipObjectInfo.second, ipObjectInfo.first,
451                 ipmi::network::IP_INTERFACE);
452 
453             auto addr = std::get<std::string>(props.at("Address"));
454             if (!addr.empty())
455                 return addr;
456         }
457         catch (const sdbusplus::exception::SdBusError&)
458         {}
459     }
460     return std::nullopt;
461 }
findMacAddress(sdbusplus::bus_t & bus,const std::vector<std::string> & ifaces)462 static std::optional<std::string> findMacAddress(
463     sdbusplus::bus_t& bus, const std::vector<std::string>& ifaces)
464 {
465     for (auto& dev : ifaces)
466     {
467         try
468         {
469             auto [path, obj] = ipmi::getDbusObject(
470                 bus, ipmi::network::MAC_INTERFACE, ipmi::network::ROOT, dev);
471 
472             auto var = ipmi::getDbusProperty(
473                 bus, obj, path, ipmi::network::MAC_INTERFACE, "MACAddress");
474 
475             auto mac = std::get<std::string>(var);
476             if (!mac.empty())
477                 return mac;
478         }
479         catch (const sdbusplus::exception::SdBusError&)
480         {}
481     }
482     return std::nullopt;
483 }
484 
getNetworkData(uint8_t lan_param,char * data)485 ipmi_ret_t getNetworkData(uint8_t lan_param, char* data)
486 {
487     static const std::vector<std::string> ifaces{"eth0", "eth1"};
488 
489     sdbusplus::bus_t bus(ipmid_get_sd_bus_connection());
490     ipmi_ret_t rc = IPMI_CC_OK;
491     std::optional<std::string> result;
492 
493     switch (static_cast<LanParam>(lan_param))
494     {
495         case LanParam::IP:
496             result = findIpAddress(bus, ipmi::network::IPV4_PROTOCOL, ifaces);
497             lg2::info("Found IP Address: {ADDR}", "ADDR",
498                       result.value_or("Not Found"));
499             break;
500 
501         case LanParam::IPV6:
502             result = findIpAddress(bus, ipmi::network::IPV6_PROTOCOL, ifaces);
503             lg2::info("Found IPv6 Address: {ADDR}", "ADDR",
504                       result.value_or("Not Found"));
505             break;
506 
507         case LanParam::MAC:
508             result = findMacAddress(bus, ifaces);
509             lg2::info("Found MAC Address: {ADDR}", "ADDR",
510                       result.value_or("Not Found"));
511             break;
512 
513         default:
514             return IPMI_CC_PARM_OUT_OF_RANGE;
515     }
516 
517     if (!result.has_value())
518     {
519         rc = IPMI_CC_UNSPECIFIED_ERROR;
520         data[0] = '\0';
521     }
522     else
523     {
524         std::strcpy(data, result->c_str());
525     }
526     return rc;
527 }
528 
isMultiHostPlatform()529 bool isMultiHostPlatform()
530 {
531     bool platform;
532     if (hostInstances == "0")
533     {
534         platform = false;
535     }
536     else
537     {
538         platform = true;
539     }
540     return platform;
541 }
findFruPathByInterface(sdbusplus::bus_t & dbus,const std::string & interfaceName,std::function<bool (const std::string &)> predicate)542 static std::optional<std::string> findFruPathByInterface(
543     sdbusplus::bus_t& dbus, const std::string& interfaceName,
544     std::function<bool(const std::string&)> predicate)
545 {
546     const int depth = 0;
547     std::vector<std::string> paths;
548 
549     auto mapperCall = dbus.new_method_call(
550         "xyz.openbmc_project.ObjectMapper",
551         "/xyz/openbmc_project/object_mapper",
552         "xyz.openbmc_project.ObjectMapper", "GetSubTreePaths");
553     mapperCall.append("/xyz/openbmc_project/inventory/", depth,
554                       std::array<const char*, 1>{interfaceName.c_str()});
555 
556     try
557     {
558         auto reply = dbus.call(mapperCall);
559         reply.read(paths);
560     }
561     catch (const sdbusplus::exception_t& e)
562     {
563         phosphor::logging::log<phosphor::logging::level::ERR>(e.what());
564         return std::nullopt;
565     }
566 
567     for (const auto& path : paths)
568     {
569         if (predicate(path))
570         {
571             return path;
572         }
573     }
574     return std::nullopt;
575 }
576 
577 // return "" equals failed
getMotherBoardFruPath()578 std::string getMotherBoardFruPath()
579 {
580     sdbusplus::bus_t dbus(ipmid_get_sd_bus_connection());
581 
582     bool platform = isMultiHostPlatform();
583     size_t hostPosition;
584     if (platform)
585         getSelectorPosition(hostPosition);
586 
587     if (hostPosition == 0)
588     {
589         if (auto path = findFruPathByInterface(
590                 dbus, "xyz.openbmc_project.Inventory.Item.Bmc",
591                 [](const std::string&) { return true; }))
592         {
593             lg2::info("[1] Found Motherboard: {PATH}", "PATH", *path);
594             return *path;
595         }
596     }
597 
598     size_t targetIndex = (hostPosition > 0 ? hostPosition - 1 : 0);
599     auto predNth = [targetIndex,
600                     counter = size_t{0}](const std::string& /*path*/) mutable {
601         return (counter++ == targetIndex);
602     };
603 
604     if (auto path = findFruPathByInterface(
605             dbus, "xyz.openbmc_project.Inventory.Item.Board.Motherboard",
606             predNth))
607     {
608         lg2::info("[2] Found Motherboard: {PATH}", "PATH", *path);
609         return *path;
610     }
611 
612     phosphor::logging::log<phosphor::logging::level::ERR>(
613         "getMotherBoardFruPath: no valid FRU path found");
614     return "";
615 }
616 
617 // return "" equals failed
getMotherBoardFruName()618 std::string getMotherBoardFruName()
619 {
620     std::string path = getMotherBoardFruPath();
621     std::shared_ptr<sdbusplus::asio::connection> dbus = getSdBus();
622     std::string service = "xyz.openbmc_project.EntityManager";
623 
624     try
625     {
626         auto value = ipmi::getDbusProperty(
627             *dbus, service, path, "xyz.openbmc_project.Inventory.Item.Board",
628             "Name");
629         return std::get<std::string>(value);
630     }
631     catch (sdbusplus::exception_t& e)
632     {
633         phosphor::logging::log<phosphor::logging::level::ERR>(e.what());
634         return "";
635     }
636 }
637 
638 // return code: 0 successful
getFruData(std::string & data,std::string & name)639 int8_t getFruData(std::string& data, std::string& name)
640 {
641     size_t pos;
642     static constexpr const auto depth = 0;
643     std::vector<std::string> paths;
644     std::string machinePath;
645     std::string baseBoard = getMotherBoardFruPath();
646     baseBoard = baseBoard.empty() ? "Baseboard" : baseBoard;
647 
648     bool platform = isMultiHostPlatform();
649     if (platform == true)
650     {
651         getSelectorPosition(pos);
652     }
653 
654     sd_bus* bus = NULL;
655     int ret = sd_bus_default_system(&bus);
656     if (ret < 0)
657     {
658         phosphor::logging::log<phosphor::logging::level::ERR>(
659             "Failed to connect to system bus",
660             phosphor::logging::entry("ERRNO=0x%X", -ret));
661         sd_bus_unref(bus);
662         return -1;
663     }
664     sdbusplus::bus_t dbus(bus);
665     auto mapperCall = dbus.new_method_call(
666         "xyz.openbmc_project.ObjectMapper",
667         "/xyz/openbmc_project/object_mapper",
668         "xyz.openbmc_project.ObjectMapper", "GetSubTreePaths");
669     static constexpr std::array<const char*, 1> interface = {
670         "xyz.openbmc_project.Inventory.Decorator.Asset"};
671     mapperCall.append("/xyz/openbmc_project/inventory/", depth, interface);
672 
673     try
674     {
675         auto reply = dbus.call(mapperCall);
676         reply.read(paths);
677     }
678     catch (sdbusplus::exception_t& e)
679     {
680         phosphor::logging::log<phosphor::logging::level::ERR>(e.what());
681         return -1;
682     }
683 
684     for (const auto& path : paths)
685     {
686         if (platform == true)
687         {
688             if (pos == BMC_POS)
689             {
690                 machinePath = baseBoard;
691             }
692             else
693             {
694                 machinePath = "_" + std::to_string(pos);
695             }
696         }
697         else
698         {
699             machinePath = baseBoard;
700         }
701 
702         auto found = path.find(machinePath);
703         if (found == std::string::npos)
704         {
705             continue;
706         }
707 
708         std::shared_ptr<sdbusplus::asio::connection> dbus = getSdBus();
709         std::string service = getService(
710             *dbus, "xyz.openbmc_project.Inventory.Decorator.Asset", path);
711 
712         auto Value = ipmi::getDbusProperty(
713             *dbus, service, path,
714             "xyz.openbmc_project.Inventory.Decorator.Asset", name);
715 
716         data = std::get<std::string>(Value);
717         return 0;
718     }
719     return -1;
720 }
721 
sysConfig(std::vector<std::string> & data,size_t pos)722 int8_t sysConfig(std::vector<std::string>& data, size_t pos)
723 {
724     nlohmann::json sysObj;
725     std::string dimmInfo = KEY_Q_DIMM_INFO + std::to_string(pos);
726     std::string result, typeName;
727     uint8_t res[MAX_BUF];
728 
729     /* Get sysConfig data stored in json file */
730     std::ifstream file(JSON_OEM_DATA_FILE);
731     if (file)
732     {
733         file >> sysObj;
734         file.close();
735     }
736     else
737     {
738         phosphor::logging::log<phosphor::logging::level::ERR>(
739             "oemData file not found",
740             phosphor::logging::entry("OEM_DATA_FILE=%s", JSON_OEM_DATA_FILE));
741         return -1;
742     }
743 
744     if (sysObj.find(dimmInfo) == sysObj.end())
745     {
746         phosphor::logging::log<phosphor::logging::level::ERR>(
747             "sysconfig key not available",
748             phosphor::logging::entry("SYS_JSON_KEY=%s", dimmInfo.c_str()));
749         return -1;
750     }
751     /* Get dimm type names stored in json file */
752     nlohmann::json dimmObj;
753     std::ifstream dimmFile(JSON_DIMM_TYPE_FILE);
754     if (file)
755     {
756         dimmFile >> dimmObj;
757         dimmFile.close();
758     }
759     else
760     {
761         phosphor::logging::log<phosphor::logging::level::ERR>(
762             "DIMM type names file not found",
763             phosphor::logging::entry("DIMM_TYPE_FILE=%s", JSON_DIMM_TYPE_FILE));
764         return -1;
765     }
766     std::vector<std::string> a;
767     for (auto& j : dimmObj.items())
768     {
769         std::string name = j.key();
770         a.push_back(name);
771     }
772 
773     uint8_t len = a.size();
774     for (uint8_t ii = 0; ii < len; ii++)
775     {
776         std::string indKey = std::to_string(ii);
777         std::string speedSize = sysObj[dimmInfo][indKey][DIMM_SPEED];
778         strToBytes(speedSize, res);
779         auto speed = (res[1] << 8 | res[0]);
780         size_t dimmSize = ((res[3] << 8 | res[2]) / 1000);
781 
782         if (dimmSize == 0)
783         {
784             std::cerr << "Dimm information not available for slot_" +
785                              std::to_string(ii)
786                       << std::endl;
787             continue;
788         }
789         std::string type = sysObj[dimmInfo][indKey][DIMM_TYPE];
790         std::string dualInlineMem = sysObj[dimmInfo][indKey][KEY_DIMM_TYPE];
791         strToBytes(type, res);
792         size_t dimmType = res[0];
793         if (dimmVenMap.find(dimmType) == dimmVenMap.end())
794         {
795             typeName = "unknown";
796         }
797         else
798         {
799             typeName = dimmVenMap[dimmType];
800         }
801         result = dualInlineMem + "/" + typeName + "/" + std::to_string(speed) +
802                  "MHz" + "/" + std::to_string(dimmSize) + "GB";
803         data.push_back(result);
804     }
805     return 0;
806 }
807 
procInfo(std::string & result,size_t pos)808 int8_t procInfo(std::string& result, size_t pos)
809 {
810     std::vector<char> data;
811     uint8_t res[MAX_BUF];
812     std::string procIndex = "00";
813     nlohmann::json proObj;
814     std::string procInfo = KEY_Q_PROC_INFO + std::to_string(pos);
815     /* Get processor data stored in json file */
816     std::ifstream file(JSON_OEM_DATA_FILE);
817     if (file)
818     {
819         file >> proObj;
820         file.close();
821     }
822     else
823     {
824         phosphor::logging::log<phosphor::logging::level::ERR>(
825             "oemData file not found",
826             phosphor::logging::entry("OEM_DATA_FILE=%s", JSON_OEM_DATA_FILE));
827         return -1;
828     }
829     if (proObj.find(procInfo) == proObj.end())
830     {
831         phosphor::logging::log<phosphor::logging::level::ERR>(
832             "processor info key not available",
833             phosphor::logging::entry("PROC_JSON_KEY=%s", procInfo.c_str()));
834         return -1;
835     }
836     std::string procName = proObj[procInfo][procIndex][KEY_PROC_NAME];
837     std::string basicInfo = proObj[procInfo][procIndex][KEY_BASIC_INFO];
838     // Processor Product Name
839     strToBytes(procName, res);
840     data.assign(reinterpret_cast<char*>(&res),
841                 reinterpret_cast<char*>(&res) + sizeof(res));
842 
843     std::string s(data.begin(), data.end());
844     std::regex regex(" ");
845     std::vector<std::string> productName(
846         std::sregex_token_iterator(s.begin(), s.end(), regex, -1),
847         std::sregex_token_iterator());
848 
849     // Processor core and frequency
850     strToBytes(basicInfo, res);
851     uint16_t coreNum = res[0];
852     double procFrequency = (float)(res[4] << 8 | res[3]) / 1000;
853     result = "CPU:" + productName[2] + "/" + std::to_string(procFrequency) +
854              "GHz" + "/" + std::to_string(coreNum) + "c";
855     return 0;
856 }
857 
858 typedef struct
859 {
860     uint8_t cur_power_state;
861     uint8_t last_power_event;
862     uint8_t misc_power_state;
863     uint8_t front_panel_button_cap_status;
864 } ipmi_get_chassis_status_t;
865 
866 //----------------------------------------------------------------------
867 // Get Debug Frame Info
868 //----------------------------------------------------------------------
ipmiOemDbgGetFrameInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)869 ipmi_ret_t ipmiOemDbgGetFrameInfo(
870     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
871     ipmi_data_len_t data_len, ipmi_context_t)
872 {
873     uint8_t* req = reinterpret_cast<uint8_t*>(request);
874     uint8_t* res = reinterpret_cast<uint8_t*>(response);
875     uint8_t num_frames = debugCardFrameSize;
876 
877     std::memcpy(res, req, SIZE_IANA_ID); // IANA ID
878     res[SIZE_IANA_ID] = num_frames;
879     *data_len = SIZE_IANA_ID + 1;
880 
881     return ipmi::ccSuccess;
882 }
883 
884 //----------------------------------------------------------------------
885 // Get Debug Updated Frames
886 //----------------------------------------------------------------------
ipmiOemDbgGetUpdFrames(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)887 ipmi_ret_t ipmiOemDbgGetUpdFrames(
888     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
889     ipmi_data_len_t data_len, ipmi_context_t)
890 {
891     uint8_t* req = reinterpret_cast<uint8_t*>(request);
892     uint8_t* res = reinterpret_cast<uint8_t*>(response);
893     uint8_t num_updates = 3;
894     *data_len = 4;
895 
896     std::memcpy(res, req, SIZE_IANA_ID); // IANA ID
897     res[SIZE_IANA_ID] = num_updates;
898     *data_len = SIZE_IANA_ID + num_updates + 1;
899     res[SIZE_IANA_ID + 1] = 1; // info page update
900     res[SIZE_IANA_ID + 2] = 2; // cri sel update
901     res[SIZE_IANA_ID + 3] = 3; // cri sensor update
902 
903     return ipmi::ccSuccess;
904 }
905 
906 //----------------------------------------------------------------------
907 // Get Debug POST Description
908 //----------------------------------------------------------------------
ipmiOemDbgGetPostDesc(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)909 ipmi_ret_t ipmiOemDbgGetPostDesc(
910     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
911     ipmi_data_len_t data_len, ipmi_context_t)
912 {
913     uint8_t* req = reinterpret_cast<uint8_t*>(request);
914     uint8_t* res = reinterpret_cast<uint8_t*>(response);
915     uint8_t index = 0;
916     uint8_t next = 0;
917     uint8_t end = 0;
918     uint8_t phase = 0;
919     uint8_t descLen = 0;
920     int ret;
921 
922     index = req[3];
923     phase = req[4];
924 
925     ret = plat_udbg_get_post_desc(index, &next, phase, &end, &descLen, &res[8]);
926     if (ret)
927     {
928         memcpy(res, req, SIZE_IANA_ID); // IANA ID
929         *data_len = SIZE_IANA_ID;
930         return ipmi::ccUnspecifiedError;
931     }
932 
933     memcpy(res, req, SIZE_IANA_ID); // IANA ID
934     res[3] = index;
935     res[4] = next;
936     res[5] = phase;
937     res[6] = end;
938     res[7] = descLen;
939     *data_len = SIZE_IANA_ID + 5 + descLen;
940 
941     return ipmi::ccSuccess;
942 }
943 
944 //----------------------------------------------------------------------
945 // Get Debug GPIO Description
946 //----------------------------------------------------------------------
ipmiOemDbgGetGpioDesc(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)947 ipmi_ret_t ipmiOemDbgGetGpioDesc(
948     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
949     ipmi_data_len_t data_len, ipmi_context_t)
950 {
951     uint8_t* req = reinterpret_cast<uint8_t*>(request);
952     uint8_t* res = reinterpret_cast<uint8_t*>(response);
953 
954     uint8_t index = 0;
955     uint8_t next = 0;
956     uint8_t level = 0;
957     uint8_t pinDef = 0;
958     uint8_t descLen = 0;
959     int ret;
960 
961     index = req[3];
962 
963     ret = plat_udbg_get_gpio_desc(index, &next, &level, &pinDef, &descLen,
964                                   &res[8]);
965     if (ret)
966     {
967         memcpy(res, req, SIZE_IANA_ID); // IANA ID
968         *data_len = SIZE_IANA_ID;
969         return ipmi::ccUnspecifiedError;
970     }
971 
972     memcpy(res, req, SIZE_IANA_ID); // IANA ID
973     res[3] = index;
974     res[4] = next;
975     res[5] = level;
976     res[6] = pinDef;
977     res[7] = descLen;
978     *data_len = SIZE_IANA_ID + 5 + descLen;
979 
980     return ipmi::ccSuccess;
981 }
982 
983 //----------------------------------------------------------------------
984 // Get Debug Frame Data
985 //----------------------------------------------------------------------
ipmiOemDbgGetFrameData(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)986 ipmi_ret_t ipmiOemDbgGetFrameData(
987     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
988     ipmi_data_len_t data_len, ipmi_context_t)
989 {
990     uint8_t* req = reinterpret_cast<uint8_t*>(request);
991     uint8_t* res = reinterpret_cast<uint8_t*>(response);
992     uint8_t frame;
993     uint8_t page;
994     uint8_t next;
995     uint8_t count;
996     int ret;
997 
998     frame = req[3];
999     page = req[4];
1000 
1001     ret = plat_udbg_get_frame_data(frame, page, &next, &count, &res[7]);
1002     if (ret)
1003     {
1004         memcpy(res, req, SIZE_IANA_ID); // IANA ID
1005         *data_len = SIZE_IANA_ID;
1006         return ipmi::ccUnspecifiedError;
1007     }
1008 
1009     memcpy(res, req, SIZE_IANA_ID); // IANA ID
1010     res[3] = frame;
1011     res[4] = page;
1012     res[5] = next;
1013     res[6] = count;
1014     *data_len = SIZE_IANA_ID + 4 + count;
1015 
1016     return ipmi::ccSuccess;
1017 }
1018 
1019 //----------------------------------------------------------------------
1020 // Get Debug Control Panel
1021 //----------------------------------------------------------------------
ipmiOemDbgGetCtrlPanel(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)1022 ipmi_ret_t ipmiOemDbgGetCtrlPanel(
1023     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
1024     ipmi_data_len_t data_len, ipmi_context_t)
1025 {
1026     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1027     uint8_t* res = reinterpret_cast<uint8_t*>(response);
1028 
1029     uint8_t panel;
1030     uint8_t operation;
1031     uint8_t item;
1032     uint8_t count;
1033     ipmi_ret_t ret;
1034 
1035     panel = req[3];
1036     operation = req[4];
1037     item = req[5];
1038 
1039     ret = plat_udbg_control_panel(panel, operation, item, &count, &res[3]);
1040 
1041     std::memcpy(res, req, SIZE_IANA_ID); // IANA ID
1042     *data_len = SIZE_IANA_ID + count;
1043 
1044     return ret;
1045 }
1046 
1047 //----------------------------------------------------------------------
1048 // Set Dimm Info (CMD_OEM_SET_DIMM_INFO)
1049 //----------------------------------------------------------------------
ipmiOemSetDimmInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1050 ipmi_ret_t ipmiOemSetDimmInfo(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request,
1051                               ipmi_response_t, ipmi_data_len_t data_len,
1052                               ipmi_context_t)
1053 {
1054     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1055 
1056     uint8_t index = req[0];
1057     uint8_t type = req[1];
1058     uint16_t speed;
1059     uint32_t size;
1060 
1061     memcpy(&speed, &req[2], 2);
1062     memcpy(&size, &req[4], 4);
1063 
1064     std::stringstream ss;
1065     ss << std::hex;
1066     ss << std::setw(2) << std::setfill('0') << (int)index;
1067 
1068     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_INDEX] = index;
1069     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_TYPE] = type;
1070     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_SPEED] = speed;
1071     oemData[KEY_SYS_CONFIG][ss.str()][KEY_DIMM_SIZE] = size;
1072 
1073     flushOemData();
1074 
1075     *data_len = 0;
1076 
1077     return ipmi::ccSuccess;
1078 }
1079 
1080 //----------------------------------------------------------------------
1081 // Get Board ID (CMD_OEM_GET_BOARD_ID)
1082 //----------------------------------------------------------------------
ipmiOemGetBoardID(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1083 ipmi_ret_t ipmiOemGetBoardID(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t,
1084                              ipmi_response_t, ipmi_data_len_t data_len,
1085                              ipmi_context_t)
1086 {
1087     /* TODO: Needs to implement this after GPIO implementation */
1088     *data_len = 0;
1089 
1090     return ipmi::ccSuccess;
1091 }
1092 
1093 //----------------------------------------------------------------------
1094 // Get port 80 record (CMD_OEM_GET_80PORT_RECORD)
1095 //----------------------------------------------------------------------
ipmiOemGet80PortRecord(ipmi::Context::ptr ctx)1096 ipmi::RspType<std::vector<uint8_t>> ipmiOemGet80PortRecord(
1097     ipmi::Context::ptr ctx)
1098 {
1099     auto postCodeService = "xyz.openbmc_project.State.Boot.PostCode" +
1100                            std::to_string(ctx->hostIdx + 1);
1101     auto postCodeObjPath = "/xyz/openbmc_project/State/Boot/PostCode" +
1102                            std::to_string(ctx->hostIdx + 1);
1103     constexpr auto postCodeInterface =
1104         "xyz.openbmc_project.State.Boot.PostCode";
1105     const static uint16_t lastestPostCodeIndex = 1;
1106     constexpr const auto maxPostCodeLen =
1107         224; // The length must be lower than IPMB limitation
1108     size_t startIndex = 0;
1109 
1110     std::vector<std::tuple<uint64_t, std::vector<uint8_t>>> postCodes;
1111     std::vector<uint8_t> resData;
1112 
1113     auto conn = getSdBus();
1114     /* Get the post codes by calling GetPostCodes method */
1115     auto msg =
1116         conn->new_method_call(postCodeService.c_str(), postCodeObjPath.c_str(),
1117                               postCodeInterface, "GetPostCodes");
1118     msg.append(lastestPostCodeIndex);
1119 
1120     try
1121     {
1122         auto reply = conn->call(msg);
1123         reply.read(postCodes);
1124     }
1125     catch (const sdbusplus::exception::SdBusError& e)
1126     {
1127         phosphor::logging::log<phosphor::logging::level::ERR>(
1128             "IPMI Get80PortRecord Failed in call method",
1129             phosphor::logging::entry("ERROR=%s", e.what()));
1130         return ipmi::responseUnspecifiedError();
1131     }
1132 
1133     /* Get post code data */
1134     for (size_t i = 0; i < postCodes.size(); ++i)
1135     {
1136         uint64_t primaryPostCode = std::get<uint64_t>(postCodes[i]);
1137         for (int j = postCodeSize - 1; j >= 0; --j)
1138         {
1139             uint8_t postCode =
1140                 ((primaryPostCode >> (sizeof(uint64_t) * j)) & 0xFF);
1141             resData.emplace_back(postCode);
1142         }
1143     }
1144 
1145     std::vector<uint8_t> response;
1146     if (resData.size() > maxPostCodeLen)
1147     {
1148         startIndex = resData.size() - maxPostCodeLen;
1149     }
1150 
1151     response.assign(resData.begin() + startIndex, resData.end());
1152 
1153     return ipmi::responseSuccess(response);
1154 }
1155 
1156 //----------------------------------------------------------------------
1157 // Set Boot Order (CMD_OEM_SET_BOOT_ORDER)
1158 //----------------------------------------------------------------------
ipmiOemSetBootOrder(ipmi::Context::ptr ctx,std::vector<uint8_t> bootSeq)1159 ipmi::RspType<std::vector<uint8_t>> ipmiOemSetBootOrder(
1160     ipmi::Context::ptr ctx, std::vector<uint8_t> bootSeq)
1161 {
1162     size_t len = bootSeq.size();
1163 
1164     if (len != SIZE_BOOT_ORDER)
1165     {
1166         phosphor::logging::log<phosphor::logging::level::ERR>(
1167             "Invalid Boot order length received");
1168         return ipmi::responseReqDataLenInvalid();
1169     }
1170 
1171     std::optional<size_t> hostId = findHost(ctx->hostIdx);
1172 
1173     if (!hostId)
1174     {
1175         phosphor::logging::log<phosphor::logging::level::ERR>(
1176             "Invalid Host Id received");
1177         return ipmi::responseInvalidCommand();
1178     }
1179     auto [bootObjPath, hostName] = ipmi::boot::objPath(*hostId);
1180 
1181     ipmi::boot::setBootOrder(bootObjPath, bootSeq, hostName);
1182 
1183     return ipmi::responseSuccess(bootSeq);
1184 }
1185 
1186 //----------------------------------------------------------------------
1187 // Get Boot Order (CMD_OEM_GET_BOOT_ORDER)
1188 //----------------------------------------------------------------------
ipmiOemGetBootOrder(ipmi::Context::ptr ctx)1189 ipmi::RspType<std::vector<uint8_t>> ipmiOemGetBootOrder(ipmi::Context::ptr ctx)
1190 {
1191     std::vector<uint8_t> bootSeq;
1192 
1193     std::optional<size_t> hostId = findHost(ctx->hostIdx);
1194 
1195     if (!hostId)
1196     {
1197         phosphor::logging::log<phosphor::logging::level::ERR>(
1198             "Invalid Host Id received");
1199         return ipmi::responseInvalidCommand();
1200     }
1201     auto [bootObjPath, hostName] = ipmi::boot::objPath(*hostId);
1202 
1203     ipmi::boot::getBootOrder(bootObjPath, bootSeq, hostName);
1204 
1205     return ipmi::responseSuccess(bootSeq);
1206 }
1207 // Set Machine Config Info (CMD_OEM_SET_MACHINE_CONFIG_INFO)
1208 //----------------------------------------------------------------------
ipmiOemSetMachineCfgInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1209 ipmi_ret_t ipmiOemSetMachineCfgInfo(ipmi_netfn_t, ipmi_cmd_t,
1210                                     ipmi_request_t request, ipmi_response_t,
1211                                     ipmi_data_len_t data_len, ipmi_context_t)
1212 {
1213     machineConfigInfo_t* req = reinterpret_cast<machineConfigInfo_t*>(request);
1214     uint8_t len = *data_len;
1215 
1216     *data_len = 0;
1217 
1218     if (len < sizeof(machineConfigInfo_t))
1219     {
1220         phosphor::logging::log<phosphor::logging::level::ERR>(
1221             "Invalid machine configuration length received");
1222         return ipmi::ccReqDataLenInvalid;
1223     }
1224 
1225     if (req->chassis_type >= sizeof(chassisType) / sizeof(uint8_t*))
1226         oemData[KEY_MC_CONFIG][KEY_MC_CHAS_TYPE] = "UNKNOWN";
1227     else
1228         oemData[KEY_MC_CONFIG][KEY_MC_CHAS_TYPE] =
1229             chassisType[req->chassis_type];
1230 
1231     if (req->mb_type >= sizeof(mbType) / sizeof(uint8_t*))
1232         oemData[KEY_MC_CONFIG][KEY_MC_MB_TYPE] = "UNKNOWN";
1233     else
1234         oemData[KEY_MC_CONFIG][KEY_MC_MB_TYPE] = mbType[req->mb_type];
1235 
1236     oemData[KEY_MC_CONFIG][KEY_MC_PROC_CNT] = req->proc_cnt;
1237     oemData[KEY_MC_CONFIG][KEY_MC_MEM_CNT] = req->mem_cnt;
1238     oemData[KEY_MC_CONFIG][KEY_MC_HDD35_CNT] = req->hdd35_cnt;
1239     oemData[KEY_MC_CONFIG][KEY_MC_HDD25_CNT] = req->hdd25_cnt;
1240 
1241     if (req->riser_type >= sizeof(riserType) / sizeof(uint8_t*))
1242         oemData[KEY_MC_CONFIG][KEY_MC_RSR_TYPE] = "UNKNOWN";
1243     else
1244         oemData[KEY_MC_CONFIG][KEY_MC_RSR_TYPE] = riserType[req->riser_type];
1245 
1246     oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC] = {};
1247     int i = 0;
1248     if (req->pcie_card_loc & BIT_0)
1249         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT1";
1250     if (req->pcie_card_loc & BIT_1)
1251         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT2";
1252     if (req->pcie_card_loc & BIT_2)
1253         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT3";
1254     if (req->pcie_card_loc & BIT_3)
1255         oemData[KEY_MC_CONFIG][KEY_MC_PCIE_LOC][i++] = "SLOT4";
1256 
1257     if (req->slot1_pcie_type >= sizeof(pcieType) / sizeof(uint8_t*))
1258         oemData[KEY_MC_CONFIG][KEY_MC_SLOT1_TYPE] = "UNKNOWN";
1259     else
1260         oemData[KEY_MC_CONFIG][KEY_MC_SLOT1_TYPE] =
1261             pcieType[req->slot1_pcie_type];
1262 
1263     if (req->slot2_pcie_type >= sizeof(pcieType) / sizeof(uint8_t*))
1264         oemData[KEY_MC_CONFIG][KEY_MC_SLOT2_TYPE] = "UNKNOWN";
1265     else
1266         oemData[KEY_MC_CONFIG][KEY_MC_SLOT2_TYPE] =
1267             pcieType[req->slot2_pcie_type];
1268 
1269     if (req->slot3_pcie_type >= sizeof(pcieType) / sizeof(uint8_t*))
1270         oemData[KEY_MC_CONFIG][KEY_MC_SLOT3_TYPE] = "UNKNOWN";
1271     else
1272         oemData[KEY_MC_CONFIG][KEY_MC_SLOT3_TYPE] =
1273             pcieType[req->slot3_pcie_type];
1274 
1275     if (req->slot4_pcie_type >= sizeof(pcieType) / sizeof(uint8_t*))
1276         oemData[KEY_MC_CONFIG][KEY_MC_SLOT4_TYPE] = "UNKNOWN";
1277     else
1278         oemData[KEY_MC_CONFIG][KEY_MC_SLOT4_TYPE] =
1279             pcieType[req->slot4_pcie_type];
1280 
1281     oemData[KEY_MC_CONFIG][KEY_MC_AEP_CNT] = req->aep_mem_cnt;
1282 
1283     flushOemData();
1284 
1285     return ipmi::ccSuccess;
1286 }
1287 
1288 //----------------------------------------------------------------------
1289 // Set POST start (CMD_OEM_SET_POST_START)
1290 //----------------------------------------------------------------------
ipmiOemSetPostStart(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1291 ipmi_ret_t ipmiOemSetPostStart(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t,
1292                                ipmi_response_t, ipmi_data_len_t data_len,
1293                                ipmi_context_t)
1294 {
1295     phosphor::logging::log<phosphor::logging::level::INFO>("POST Start Event");
1296 
1297     /* Do nothing, return success */
1298     *data_len = 0;
1299     return ipmi::ccSuccess;
1300 }
1301 
1302 //----------------------------------------------------------------------
1303 // Set POST End (CMD_OEM_SET_POST_END)
1304 //----------------------------------------------------------------------
ipmiOemSetPostEnd(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1305 ipmi_ret_t ipmiOemSetPostEnd(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t,
1306                              ipmi_response_t, ipmi_data_len_t data_len,
1307                              ipmi_context_t)
1308 {
1309     struct timespec ts;
1310 
1311     phosphor::logging::log<phosphor::logging::level::INFO>("POST End Event");
1312 
1313     *data_len = 0;
1314 
1315     // Timestamp post end time.
1316     clock_gettime(CLOCK_REALTIME, &ts);
1317     oemData[KEY_TS_SLED] = ts.tv_sec;
1318     flushOemData();
1319 
1320     // Sync time with system
1321     // TODO: Add code for syncing time
1322 
1323     return ipmi::ccSuccess;
1324 }
1325 
1326 //----------------------------------------------------------------------
1327 // Set PPIN Info (CMD_OEM_SET_PPIN_INFO)
1328 //----------------------------------------------------------------------
1329 // Inform BMC about PPIN data of 8 bytes for each CPU
1330 //
1331 // Request:
1332 // Byte 1:8 – CPU0 PPIN data
1333 // Optional:
1334 // Byte 9:16 – CPU1 PPIN data
1335 //
1336 // Response:
1337 // Byte 1 – Completion Code
ipmiOemSetPPINInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1338 ipmi_ret_t ipmiOemSetPPINInfo(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request,
1339                               ipmi_response_t, ipmi_data_len_t data_len,
1340                               ipmi_context_t)
1341 {
1342     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1343     std::string ppinStr;
1344     int len;
1345 
1346     if (*data_len > SIZE_CPU_PPIN * 2)
1347         len = SIZE_CPU_PPIN * 2;
1348     else
1349         len = *data_len;
1350     *data_len = 0;
1351 
1352     ppinStr = bytesToStr(req, len);
1353     oemData[KEY_PPIN_INFO] = ppinStr.c_str();
1354     flushOemData();
1355 
1356     return ipmi::ccSuccess;
1357 }
1358 
1359 //----------------------------------------------------------------------
1360 // Set ADR Trigger (CMD_OEM_SET_ADR_TRIGGER)
1361 //----------------------------------------------------------------------
ipmiOemSetAdrTrigger(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1362 ipmi_ret_t ipmiOemSetAdrTrigger(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t,
1363                                 ipmi_response_t, ipmi_data_len_t data_len,
1364                                 ipmi_context_t)
1365 {
1366     /* Do nothing, return success */
1367     *data_len = 0;
1368     return ipmi::ccSuccess;
1369 }
1370 
1371 // Helper function to set guid at offset in EEPROM
setGUID(off_t offset,uint8_t * guid)1372 [[maybe_unused]] static int setGUID(off_t offset, uint8_t* guid)
1373 {
1374     int fd = -1;
1375     ssize_t len;
1376     int ret = 0;
1377     std::string eepromPath = FRU_EEPROM;
1378 
1379     // find the eeprom path of MB FRU
1380     auto device = getMbFruDevice();
1381     if (device)
1382     {
1383         auto [bus, address] = *device;
1384         std::stringstream ss;
1385         ss << "/sys/bus/i2c/devices/" << static_cast<int>(bus) << "-"
1386            << std::setw(4) << std::setfill('0') << std::hex
1387            << static_cast<int>(address) << "/eeprom";
1388         eepromPath = ss.str();
1389     }
1390 
1391     errno = 0;
1392 
1393     // Check if file is present
1394     if (access(eepromPath.c_str(), F_OK) == -1)
1395     {
1396         std::cerr << "Unable to access: " << eepromPath << std::endl;
1397         return errno;
1398     }
1399 
1400     // Open the file
1401     fd = open(eepromPath.c_str(), O_WRONLY);
1402     if (fd == -1)
1403     {
1404         std::cerr << "Unable to open: " << eepromPath << std::endl;
1405         return errno;
1406     }
1407 
1408     // seek to the offset
1409     lseek(fd, offset, SEEK_SET);
1410 
1411     // Write bytes to location
1412     len = write(fd, guid, GUID_SIZE);
1413     if (len != GUID_SIZE)
1414     {
1415         phosphor::logging::log<phosphor::logging::level::ERR>(
1416             "GUID write data to EEPROM failed");
1417         ret = errno;
1418     }
1419 
1420     close(fd);
1421     return ret;
1422 }
1423 
1424 //----------------------------------------------------------------------
1425 // Set System GUID (CMD_OEM_SET_SYSTEM_GUID)
1426 //----------------------------------------------------------------------
1427 #if BIC_ENABLED
ipmiOemSetSystemGuid(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)1428 ipmi::RspType<> ipmiOemSetSystemGuid(ipmi::Context::ptr ctx,
1429                                      std::vector<uint8_t> reqData)
1430 {
1431     std::vector<uint8_t> respData;
1432 
1433     if (reqData.size() != GUID_SIZE) // 16bytes
1434     {
1435         return ipmi::responseReqDataLenInvalid();
1436     }
1437 
1438     uint8_t bicAddr = (uint8_t)ctx->hostIdx << 2;
1439 
1440     if (sendBicCmd(ctx->netFn, ctx->cmd, bicAddr, reqData, respData))
1441         return ipmi::responseUnspecifiedError();
1442 
1443     return ipmi::responseSuccess();
1444 }
1445 
1446 #else
ipmiOemSetSystemGuid(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1447 ipmi_ret_t ipmiOemSetSystemGuid(ipmi_netfn_t, ipmi_cmd_t,
1448                                 ipmi_request_t request, ipmi_response_t,
1449                                 ipmi_data_len_t data_len, ipmi_context_t)
1450 {
1451     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1452 
1453     if (*data_len != GUID_SIZE) // 16bytes
1454     {
1455         *data_len = 0;
1456         return ipmi::ccReqDataLenInvalid;
1457     }
1458 
1459     *data_len = 0;
1460 
1461     if (setGUID(OFFSET_SYS_GUID, req))
1462     {
1463         return ipmi::ccUnspecifiedError;
1464     }
1465     return ipmi::ccSuccess;
1466 }
1467 #endif
1468 
1469 //----------------------------------------------------------------------
1470 // Set Bios Flash Info (CMD_OEM_SET_BIOS_FLASH_INFO)
1471 //----------------------------------------------------------------------
ipmiOemSetBiosFlashInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1472 ipmi_ret_t ipmiOemSetBiosFlashInfo(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t,
1473                                    ipmi_response_t, ipmi_data_len_t data_len,
1474                                    ipmi_context_t)
1475 {
1476     /* Do nothing, return success */
1477     *data_len = 0;
1478     return ipmi::ccSuccess;
1479 }
1480 
1481 //----------------------------------------------------------------------
1482 // Set PPR (CMD_OEM_SET_PPR)
1483 //----------------------------------------------------------------------
ipmiOemSetPpr(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)1484 ipmi_ret_t ipmiOemSetPpr(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request,
1485                          ipmi_response_t, ipmi_data_len_t data_len,
1486                          ipmi_context_t)
1487 {
1488     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1489     uint8_t pprCnt, pprAct, pprIndex;
1490     uint8_t selParam = req[0];
1491     uint8_t len = *data_len;
1492     std::stringstream ss;
1493     std::string str;
1494 
1495     *data_len = 0;
1496 
1497     switch (selParam)
1498     {
1499         case PPR_ACTION:
1500             if (oemData[KEY_PPR].find(KEY_PPR_ROW_COUNT) ==
1501                 oemData[KEY_PPR].end())
1502                 return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
1503 
1504             pprCnt = oemData[KEY_PPR][KEY_PPR_ROW_COUNT];
1505             if (pprCnt == 0)
1506                 return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
1507 
1508             pprAct = req[1];
1509             /* Check if ppr is enabled or disabled */
1510             if (!(pprAct & 0x80))
1511                 pprAct = 0;
1512 
1513             oemData[KEY_PPR][KEY_PPR_ACTION] = pprAct;
1514             break;
1515         case PPR_ROW_COUNT:
1516             if (req[1] > 100)
1517                 return ipmi::ccParmOutOfRange;
1518 
1519             oemData[KEY_PPR][KEY_PPR_ROW_COUNT] = req[1];
1520             break;
1521         case PPR_ROW_ADDR:
1522             pprIndex = req[1];
1523             if (pprIndex > 100)
1524                 return ipmi::ccParmOutOfRange;
1525 
1526             if (len < PPR_ROW_ADDR_LEN + 1)
1527             {
1528                 phosphor::logging::log<phosphor::logging::level::ERR>(
1529                     "Invalid PPR Row Address length received");
1530                 return ipmi::ccReqDataLenInvalid;
1531             }
1532 
1533             ss << std::hex;
1534             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
1535 
1536             oemData[KEY_PPR][ss.str()][KEY_PPR_INDEX] = pprIndex;
1537 
1538             str = bytesToStr(&req[1], PPR_ROW_ADDR_LEN);
1539             oemData[KEY_PPR][ss.str()][KEY_PPR_ROW_ADDR] = str.c_str();
1540             break;
1541         case PPR_HISTORY_DATA:
1542             pprIndex = req[1];
1543             if (pprIndex > 100)
1544                 return ipmi::ccParmOutOfRange;
1545 
1546             if (len < PPR_HST_DATA_LEN + 1)
1547             {
1548                 phosphor::logging::log<phosphor::logging::level::ERR>(
1549                     "Invalid PPR history data length received");
1550                 return ipmi::ccReqDataLenInvalid;
1551             }
1552 
1553             ss << std::hex;
1554             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
1555 
1556             oemData[KEY_PPR][ss.str()][KEY_PPR_INDEX] = pprIndex;
1557 
1558             str = bytesToStr(&req[1], PPR_HST_DATA_LEN);
1559             oemData[KEY_PPR][ss.str()][KEY_PPR_HST_DATA] = str.c_str();
1560             break;
1561         default:
1562             return ipmi::ccParmOutOfRange;
1563             break;
1564     }
1565 
1566     flushOemData();
1567 
1568     return ipmi::ccSuccess;
1569 }
1570 
1571 //----------------------------------------------------------------------
1572 // Get PPR (CMD_OEM_GET_PPR)
1573 //----------------------------------------------------------------------
ipmiOemGetPpr(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)1574 ipmi_ret_t ipmiOemGetPpr(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request,
1575                          ipmi_response_t response, ipmi_data_len_t data_len,
1576                          ipmi_context_t)
1577 {
1578     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1579     uint8_t* res = reinterpret_cast<uint8_t*>(response);
1580     uint8_t pprCnt, pprIndex;
1581     uint8_t selParam = req[0];
1582     std::stringstream ss;
1583     std::string str;
1584 
1585     /* Any failure will return zero length data */
1586     *data_len = 0;
1587 
1588     switch (selParam)
1589     {
1590         case PPR_ACTION:
1591             res[0] = 0;
1592             *data_len = 1;
1593 
1594             if (oemData[KEY_PPR].find(KEY_PPR_ROW_COUNT) !=
1595                 oemData[KEY_PPR].end())
1596             {
1597                 pprCnt = oemData[KEY_PPR][KEY_PPR_ROW_COUNT];
1598                 if (pprCnt != 0)
1599                 {
1600                     if (oemData[KEY_PPR].find(KEY_PPR_ACTION) !=
1601                         oemData[KEY_PPR].end())
1602                     {
1603                         res[0] = oemData[KEY_PPR][KEY_PPR_ACTION];
1604                     }
1605                 }
1606             }
1607             break;
1608         case PPR_ROW_COUNT:
1609             res[0] = 0;
1610             *data_len = 1;
1611             if (oemData[KEY_PPR].find(KEY_PPR_ROW_COUNT) !=
1612                 oemData[KEY_PPR].end())
1613                 res[0] = oemData[KEY_PPR][KEY_PPR_ROW_COUNT];
1614             break;
1615         case PPR_ROW_ADDR:
1616             pprIndex = req[1];
1617             if (pprIndex > 100)
1618                 return ipmi::ccParmOutOfRange;
1619 
1620             ss << std::hex;
1621             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
1622 
1623             if (oemData[KEY_PPR].find(ss.str()) == oemData[KEY_PPR].end())
1624                 return ipmi::ccParmOutOfRange;
1625 
1626             if (oemData[KEY_PPR][ss.str()].find(KEY_PPR_ROW_ADDR) ==
1627                 oemData[KEY_PPR][ss.str()].end())
1628                 return ipmi::ccParmOutOfRange;
1629 
1630             str = oemData[KEY_PPR][ss.str()][KEY_PPR_ROW_ADDR];
1631             *data_len = strToBytes(str, res);
1632             break;
1633         case PPR_HISTORY_DATA:
1634             pprIndex = req[1];
1635             if (pprIndex > 100)
1636                 return ipmi::ccParmOutOfRange;
1637 
1638             ss << std::hex;
1639             ss << std::setw(2) << std::setfill('0') << (int)pprIndex;
1640 
1641             if (oemData[KEY_PPR].find(ss.str()) == oemData[KEY_PPR].end())
1642                 return ipmi::ccParmOutOfRange;
1643 
1644             if (oemData[KEY_PPR][ss.str()].find(KEY_PPR_HST_DATA) ==
1645                 oemData[KEY_PPR][ss.str()].end())
1646                 return ipmi::ccParmOutOfRange;
1647 
1648             str = oemData[KEY_PPR][ss.str()][KEY_PPR_HST_DATA];
1649             *data_len = strToBytes(str, res);
1650             break;
1651         default:
1652             return ipmi::ccParmOutOfRange;
1653             break;
1654     }
1655 
1656     return ipmi::ccSuccess;
1657 }
1658 
1659 //----------------------------------------------------------------------
1660 // Get FRU ID (CMD_OEM_GET_FRU_ID)
1661 //----------------------------------------------------------------------
1662 // BIOS issues this command to retrieve the FRU ID using the bus and slave
1663 // address.  FRU IDs are dynamic based on entity-manager probe orders so
1664 // this allows a look-up based on known data from the host to identify a
1665 // specific FRU.
1666 //
1667 // netfn 0x30, cmd 0x84
1668 //
1669 // Request:
1670 // - Byte 1: bus
1671 // - Byte 2: slave address
1672 //
1673 // Response:
1674 // - Byte 1 - Completion Code
1675 // - Byte 2 - FRU ID
1676 
ipmiOemGetFruId(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)1677 ipmi_ret_t ipmiOemGetFruId(ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request,
1678                            ipmi_response_t response, ipmi_data_len_t data_len,
1679                            ipmi_context_t)
1680 {
1681     uint8_t* req = reinterpret_cast<uint8_t*>(request);
1682     uint8_t* res = reinterpret_cast<uint8_t*>(response);
1683     auto bus = sdbusplus::bus::new_default();
1684 
1685     const uint32_t targetBus = req[0];
1686     const uint32_t targetAddress = req[1];
1687     *data_len = 1;
1688 
1689     const std::string service = "xyz.openbmc_project.FruDevice";
1690     const std::string rootPath = "/xyz/openbmc_project/FruDevice";
1691 
1692     auto method = bus.new_method_call(service.c_str(), "/",
1693                                       "org.freedesktop.DBus.ObjectManager",
1694                                       "GetManagedObjects");
1695 
1696     auto reply = bus.call(method);
1697 
1698     using PropertyValue = std::variant<std::string, uint32_t, int32_t, bool>;
1699 
1700     std::map<sdbusplus::message::object_path,
1701              std::map<std::string, std::map<std::string, PropertyValue>>>
1702         objects;
1703 
1704     reply.read(objects);
1705 
1706     int index = 0;
1707     bool found = false;
1708 
1709     for (const auto& [path, interfaces] : objects)
1710     {
1711         if (path.str.find(rootPath) != 0)
1712             continue;
1713 
1714         auto it = interfaces.find("xyz.openbmc_project.FruDevice");
1715         if (it != interfaces.end())
1716         {
1717             const auto& properties = it->second;
1718 
1719             auto busIt = properties.find("BUS");
1720             auto addrIt = properties.find("ADDRESS");
1721 
1722             if (busIt != properties.end() && addrIt != properties.end())
1723             {
1724                 try
1725                 {
1726                     uint32_t busValue = std::get<uint32_t>(busIt->second);
1727                     uint32_t addrValue = std::get<uint32_t>(addrIt->second);
1728 
1729                     if (busValue == targetBus && addrValue == targetAddress)
1730                     {
1731                         std::cout
1732                             << "Match found at index: " << index << std::endl;
1733                         std::cout << "Path: " << path.str << std::endl;
1734                         res[0] = index;
1735                         found = true;
1736                         break;
1737                     }
1738                 }
1739                 catch (const std::bad_variant_access& e)
1740                 {
1741                     std::cerr << "️Unexpected property type at index " << index
1742                               << std::endl;
1743                     return -1;
1744                 }
1745             }
1746             index++;
1747         }
1748     }
1749 
1750     if (!found)
1751     {
1752         std::cout << "No matching FRU device found for BUS=" << targetBus
1753                   << " and ADDRESS=" << targetAddress << std::endl;
1754         return -1;
1755     }
1756 
1757     return ipmi::ccSuccess;
1758 }
1759 
1760 /* FB OEM QC Commands */
1761 
1762 //----------------------------------------------------------------------
1763 // Set Proc Info (CMD_OEM_Q_SET_PROC_INFO)
1764 //----------------------------------------------------------------------
1765 //"Request:
1766 // Byte 1:3 – Manufacturer ID – XXYYZZ h, LSB first
1767 // Byte 4 – Processor Index, 0 base
1768 // Byte 5 – Parameter Selector
1769 // Byte 6..N – Configuration parameter data (see below for Parameters
1770 // of Processor Information)
1771 // Response:
1772 // Byte 1 – Completion code
1773 //
1774 // Parameter#1: (Processor Product Name)
1775 //
1776 // Byte 1..48 –Product name(ASCII code)
1777 // Ex. Intel(R) Xeon(R) CPU E5-2685 v3 @ 2.60GHz
1778 //
1779 // Param#2: Processor Basic Information
1780 // Byte 1 – Core Number
1781 // Byte 2 – Thread Number (LSB)
1782 // Byte 3 – Thread Number (MSB)
1783 // Byte 4 – Processor frequency in MHz (LSB)
1784 // Byte 5 – Processor frequency in MHz (MSB)
1785 // Byte 6..7 – Revision
1786 //
1787 
ipmiOemQSetProcInfo(ipmi::Context::ptr ctx,uint8_t,uint8_t,uint8_t,uint8_t procIndex,uint8_t paramSel,std::vector<uint8_t> request)1788 ipmi::RspType<> ipmiOemQSetProcInfo(
1789     ipmi::Context::ptr ctx, uint8_t, uint8_t, uint8_t, uint8_t procIndex,
1790     uint8_t paramSel, std::vector<uint8_t> request)
1791 {
1792     uint8_t numParam = sizeof(cpuInfoKey) / sizeof(uint8_t*);
1793     std::stringstream ss;
1794     std::string str;
1795     uint8_t len = request.size();
1796     auto hostId = findHost(ctx->hostIdx);
1797     if (!hostId)
1798     {
1799         phosphor::logging::log<phosphor::logging::level::ERR>(
1800             "Invalid Host Id received");
1801         return ipmi::responseInvalidCommand();
1802     }
1803     std::string procInfo = KEY_Q_PROC_INFO + std::to_string(*hostId);
1804     /* check for requested data params */
1805     if (len < 5 || paramSel < 1 || paramSel >= numParam)
1806     {
1807         phosphor::logging::log<phosphor::logging::level::ERR>(
1808             "Invalid parameter received");
1809         return ipmi::responseParmOutOfRange();
1810     }
1811     ss << std::hex;
1812     ss << std::setw(2) << std::setfill('0') << (int)procIndex;
1813     oemData[procInfo][ss.str()][KEY_PROC_INDEX] = procIndex;
1814     str = bytesToStr(request.data(), len);
1815     oemData[procInfo][ss.str()][cpuInfoKey[paramSel]] = str.c_str();
1816     flushOemData();
1817     return ipmi::responseSuccess();
1818 }
1819 
1820 //----------------------------------------------------------------------
1821 // Get Proc Info (CMD_OEM_Q_GET_PROC_INFO)
1822 //----------------------------------------------------------------------
1823 // Request:
1824 // Byte 1:3 –  Manufacturer ID – XXYYZZ h, LSB first
1825 // Byte 4 – Processor Index, 0 base
1826 // Byte 5 – Parameter Selector
1827 // Response:
1828 // Byte 1 – Completion code
1829 // Byte 2..N – Configuration Parameter Data (see below for Parameters
1830 // of Processor Information)
1831 //
1832 // Parameter#1: (Processor Product Name)
1833 //
1834 // Byte 1..48 –Product name(ASCII code)
1835 // Ex. Intel(R) Xeon(R) CPU E5-2685 v3 @ 2.60GHz
1836 //
1837 // Param#2: Processor Basic Information
1838 // Byte 1 – Core Number
1839 // Byte 2 – Thread Number (LSB)
1840 // Byte 3 – Thread Number (MSB)
1841 // Byte 4 – Processor frequency in MHz (LSB)
1842 // Byte 5 – Processor frequency in MHz (MSB)
1843 // Byte 6..7 – Revision
1844 //
1845 
ipmiOemQGetProcInfo(ipmi::Context::ptr ctx,uint8_t,uint8_t,uint8_t,uint8_t procIndex,uint8_t paramSel)1846 ipmi::RspType<std::vector<uint8_t>> ipmiOemQGetProcInfo(
1847     ipmi::Context::ptr ctx, uint8_t, uint8_t, uint8_t, uint8_t procIndex,
1848     uint8_t paramSel)
1849 {
1850     uint8_t numParam = sizeof(cpuInfoKey) / sizeof(uint8_t*);
1851     std::stringstream ss;
1852     std::string str;
1853     uint8_t res[MAX_BUF];
1854     auto hostId = findHost(ctx->hostIdx);
1855     if (!hostId)
1856     {
1857         phosphor::logging::log<phosphor::logging::level::ERR>(
1858             "Invalid Host Id received");
1859         return ipmi::responseInvalidCommand();
1860     }
1861     std::string procInfo = KEY_Q_PROC_INFO + std::to_string(*hostId);
1862     if (paramSel < 1 || paramSel >= numParam)
1863     {
1864         phosphor::logging::log<phosphor::logging::level::ERR>(
1865             "Invalid parameter received");
1866         return ipmi::responseParmOutOfRange();
1867     }
1868     ss << std::hex;
1869     ss << std::setw(2) << std::setfill('0') << (int)procIndex;
1870     if (oemData[procInfo].find(ss.str()) == oemData[procInfo].end())
1871         return ipmi::responseCommandNotAvailable();
1872     if (oemData[procInfo][ss.str()].find(cpuInfoKey[paramSel]) ==
1873         oemData[procInfo][ss.str()].end())
1874         return ipmi::responseCommandNotAvailable();
1875     str = oemData[procInfo][ss.str()][cpuInfoKey[paramSel]];
1876     int dataLen = strToBytes(str, res);
1877     std::vector<uint8_t> response(&res[0], &res[dataLen]);
1878     return ipmi::responseSuccess(response);
1879 }
1880 
1881 //----------------------------------------------------------------------
1882 // Set Dimm Info (CMD_OEM_Q_SET_DIMM_INFO)
1883 //----------------------------------------------------------------------
1884 // Request:
1885 // Byte 1:3 – Manufacturer ID – XXYYZZh, LSB first
1886 // Byte 4 – DIMM Index, 0 base
1887 // Byte 5 – Parameter Selector
1888 // Byte 6..N – Configuration parameter data (see below for Parameters
1889 // of DIMM Information)
1890 // Response:
1891 // Byte 1 – Completion code
1892 //
1893 // Param#1 (DIMM Location):
1894 // Byte 1 – DIMM Present
1895 // Byte 1 – DIMM Present
1896 // 01h – Present
1897 // FFh – Not Present
1898 // Byte 2 – Node Number, 0 base
1899 // Byte 3 – Channel Number , 0 base
1900 // Byte 4 – DIMM Number , 0 base
1901 //
1902 // Param#2 (DIMM Type):
1903 // Byte 1 – DIMM Type
1904 // Bit [7:6]
1905 // For DDR3
1906 //  00 – Normal Voltage (1.5V)
1907 //  01 – Ultra Low Voltage (1.25V)
1908 //  10 – Low Voltage (1.35V)
1909 //  11 – Reserved
1910 // For DDR4
1911 //  00 – Reserved
1912 //  01 – Reserved
1913 //  10 – Reserved
1914 //  11 – Normal Voltage (1.2V)
1915 // Bit [5:0]
1916 //  0x00 – SDRAM
1917 //  0x01 – DDR-1 RAM
1918 //  0x02 – Rambus
1919 //  0x03 – DDR-2 RAM
1920 //  0x04 – FBDIMM
1921 //  0x05 – DDR-3 RAM
1922 //  0x06 – DDR-4 RAM
1923 //
1924 // Param#3 (DIMM Speed):
1925 // Byte 1..2 – DIMM speed in MHz, LSB
1926 // Byte 3..6 – DIMM size in Mbytes, LSB
1927 //
1928 // Param#4 (Module Part Number):
1929 // Byte 1..20 –Module Part Number (JEDEC Standard No. 21-C)
1930 //
1931 // Param#5 (Module Serial Number):
1932 // Byte 1..4 –Module Serial Number (JEDEC Standard No. 21-C)
1933 //
1934 // Param#6 (Module Manufacturer ID):
1935 // Byte 1 - Module Manufacturer ID, LSB
1936 // Byte 2 - Module Manufacturer ID, MSB
1937 //
ipmiOemQSetDimmInfo(ipmi::Context::ptr ctx,uint8_t,uint8_t,uint8_t,uint8_t dimmIndex,uint8_t paramSel,std::vector<uint8_t> request)1938 ipmi::RspType<> ipmiOemQSetDimmInfo(
1939     ipmi::Context::ptr ctx, uint8_t, uint8_t, uint8_t, uint8_t dimmIndex,
1940     uint8_t paramSel, std::vector<uint8_t> request)
1941 {
1942     uint8_t numParam = sizeof(dimmInfoKey) / sizeof(uint8_t*);
1943     std::stringstream ss;
1944     std::string str;
1945     uint8_t len = request.size();
1946     std::string dimmType;
1947     readDimmType(dimmType, dimmIndex);
1948     auto hostId = findHost(ctx->hostIdx);
1949     if (!hostId)
1950     {
1951         phosphor::logging::log<phosphor::logging::level::ERR>(
1952             "Invalid Host Id received");
1953         return ipmi::responseInvalidCommand();
1954     }
1955 
1956     std::string dimmInfo = KEY_Q_DIMM_INFO + std::to_string(*hostId);
1957 
1958     if (len < 3 || paramSel < 1 || paramSel >= numParam)
1959     {
1960         phosphor::logging::log<phosphor::logging::level::ERR>(
1961             "Invalid parameter received");
1962         return ipmi::responseParmOutOfRange();
1963     }
1964 
1965     ss << std::hex;
1966     ss << (int)dimmIndex;
1967     oemData[dimmInfo][ss.str()][KEY_DIMM_INDEX] = dimmIndex;
1968     oemData[dimmInfo][ss.str()][KEY_DIMM_TYPE] = dimmType;
1969     str = bytesToStr(request.data(), len);
1970     oemData[dimmInfo][ss.str()][dimmInfoKey[paramSel]] = str.c_str();
1971     flushOemData();
1972     return ipmi::responseSuccess();
1973 }
1974 
1975 // Get Dimm Info (CMD_OEM_Q_GET_DIMM_INFO)
1976 //----------------------------------------------------------------------
1977 // Request:
1978 // Byte 1:3 – Manufacturer ID – XXYYZZh, LSB first
1979 // Byte 4 – DIMM Index, 0 base
1980 // Byte 5 – Parameter Selector
1981 // Byte 6..N – Configuration parameter data (see below for Parameters
1982 // of DIMM Information)
1983 // Response:
1984 // Byte 1 – Completion code
1985 // Byte 2..N – Configuration Parameter Data (see Table_1213h Parameters
1986 // of DIMM Information)
1987 //
1988 // Param#1 (DIMM Location):
1989 // Byte 1 – DIMM Present
1990 // Byte 1 – DIMM Present
1991 // 01h – Present
1992 // FFh – Not Present
1993 // Byte 2 – Node Number, 0 base
1994 // Byte 3 – Channel Number , 0 base
1995 // Byte 4 – DIMM Number , 0 base
1996 //
1997 // Param#2 (DIMM Type):
1998 // Byte 1 – DIMM Type
1999 // Bit [7:6]
2000 // For DDR3
2001 //  00 – Normal Voltage (1.5V)
2002 //  01 – Ultra Low Voltage (1.25V)
2003 //  10 – Low Voltage (1.35V)
2004 //  11 – Reserved
2005 // For DDR4
2006 //  00 – Reserved
2007 //  01 – Reserved
2008 //  10 – Reserved
2009 //  11 – Normal Voltage (1.2V)
2010 // Bit [5:0]
2011 //  0x00 – SDRAM
2012 //  0x01 – DDR-1 RAM
2013 //  0x02 – Rambus
2014 //  0x03 – DDR-2 RAM
2015 //  0x04 – FBDIMM
2016 //  0x05 – DDR-3 RAM
2017 //  0x06 – DDR-4 RAM
2018 //
2019 // Param#3 (DIMM Speed):
2020 // Byte 1..2 – DIMM speed in MHz, LSB
2021 // Byte 3..6 – DIMM size in Mbytes, LSB
2022 //
2023 // Param#4 (Module Part Number):
2024 // Byte 1..20 –Module Part Number (JEDEC Standard No. 21-C)
2025 //
2026 // Param#5 (Module Serial Number):
2027 // Byte 1..4 –Module Serial Number (JEDEC Standard No. 21-C)
2028 //
2029 // Param#6 (Module Manufacturer ID):
2030 // Byte 1 - Module Manufacturer ID, LSB
2031 // Byte 2 - Module Manufacturer ID, MSB
2032 //
ipmiOemQGetDimmInfo(ipmi::Context::ptr ctx,uint8_t,uint8_t,uint8_t,uint8_t dimmIndex,uint8_t paramSel)2033 ipmi::RspType<std::vector<uint8_t>> ipmiOemQGetDimmInfo(
2034     ipmi::Context::ptr ctx, uint8_t, uint8_t, uint8_t, uint8_t dimmIndex,
2035     uint8_t paramSel)
2036 {
2037     uint8_t numParam = sizeof(dimmInfoKey) / sizeof(uint8_t*);
2038     uint8_t res[MAX_BUF];
2039     std::stringstream ss;
2040     std::string str;
2041     std::string dimmType;
2042     readDimmType(dimmType, dimmIndex);
2043     auto hostId = findHost(ctx->hostIdx);
2044     if (!hostId)
2045     {
2046         phosphor::logging::log<phosphor::logging::level::ERR>(
2047             "Invalid Host Id received");
2048         return ipmi::responseInvalidCommand();
2049     }
2050     std::string dimmInfo = KEY_Q_DIMM_INFO + std::to_string(*hostId);
2051 
2052     if (paramSel < 1 || paramSel >= numParam)
2053     {
2054         phosphor::logging::log<phosphor::logging::level::ERR>(
2055             "Invalid parameter received");
2056         return ipmi::responseParmOutOfRange();
2057     }
2058     ss << std::hex;
2059     ss << (int)dimmIndex;
2060     oemData[dimmInfo][ss.str()][KEY_DIMM_TYPE] = dimmType;
2061     if (oemData[dimmInfo].find(ss.str()) == oemData[dimmInfo].end())
2062         return ipmi::responseCommandNotAvailable();
2063     if (oemData[dimmInfo][ss.str()].find(dimmInfoKey[paramSel]) ==
2064         oemData[dimmInfo][ss.str()].end())
2065         return ipmi::responseCommandNotAvailable();
2066     str = oemData[dimmInfo][ss.str()][dimmInfoKey[paramSel]];
2067     int data_length = strToBytes(str, res);
2068     std::vector<uint8_t> response(&res[0], &res[data_length]);
2069     return ipmi::responseSuccess(response);
2070 }
2071 
2072 //----------------------------------------------------------------------
2073 // Set Drive Info (CMD_OEM_Q_SET_DRIVE_INFO)
2074 //----------------------------------------------------------------------
2075 // BIOS issue this command to provide HDD information to BMC.
2076 //
2077 // BIOS just can get information by standard ATA / SMART command for
2078 // OB SATA controller.
2079 // BIOS can get
2080 // 1.     Serial Number
2081 // 2.     Model Name
2082 // 3.     HDD FW Version
2083 // 4.     HDD Capacity
2084 // 5.     HDD WWN
2085 //
2086 //  Use Get HDD info Param #5 to know the MAX HDD info index.
2087 //
2088 //  Request:
2089 //  Byte 1:3 – Quanta Manufacturer ID – 001C4Ch, LSB first
2090 //  Byte 4 –
2091 //  [7:4] Reserved
2092 //  [3:0] HDD Controller Type
2093 //     0x00 – BIOS
2094 //     0x01 – Expander
2095 //     0x02 – LSI
2096 //  Byte 5 – HDD Info Index, 0 base
2097 //  Byte 6 – Parameter Selector
2098 //  Byte 7..N – Configuration parameter data (see Table_1415h Parameters of HDD
2099 //  Information)
2100 //
2101 //  Response:
2102 //  Byte 1 – Completion Code
2103 //
2104 //  Param#0 (HDD Location):
2105 //  Byte 1 – Controller
2106 //    [7:3] Device Number
2107 //    [2:0] Function Number
2108 //  For Intel C610 series (Wellsburg)
2109 //    D31:F2 (0xFA) – SATA control 1
2110 //    D31:F5 (0xFD) – SATA control 2
2111 //    D17:F4 (0x8C) – sSata control
2112 //  Byte 2 – Port Number
2113 //  Byte 3 – Location (0xFF: No HDD Present)
2114 //  BIOS default set Byte 3 to 0xFF, if No HDD Present. And then skip send param
2115 //  #1~4, #6,  #7 to BMC (still send param #5) BIOS default set Byte 3 to 0, if
2116 //  the HDD present. BMC or other people who know the HDD location has
2117 //  responsibility for update Location info
2118 //
2119 //  Param#1 (Serial Number):
2120 //  Bytes 1..33: HDD Serial Number
2121 //
2122 //  Param#2 (Model Name):
2123 //  Byte 1..33 – HDD Model Name
2124 //
2125 //  Param#3 (HDD FW Version):
2126 //  Byte 1..17 –HDD FW version
2127 //
2128 //  Param#4 (Capacity):
2129 //  Byte 1..4 –HDD Block Size, LSB
2130 //  Byte 5..12 - HDD Block Number, LSB
2131 //  HDD Capacity = HDD Block size * HDD BLock number  (Unit Byte)
2132 //
2133 //  Param#5 (Max HDD Quantity):
2134 //  Byte 1 - Max HDD Quantity
2135 //  Max supported port numbers in this PCH
2136 //
2137 //  Param#6 (HDD Type)
2138 //  Byte 1 – HDD Type
2139 //  0h – Reserved
2140 //  1h – SAS
2141 //  2h – SATA
2142 //  3h – PCIE SSD (NVME)
2143 //
2144 //  Param#7 (HDD WWN)
2145 //  Data 1...8: HDD World Wide Name, LSB
2146 //
ipmiOemQSetDriveInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t,ipmi_data_len_t data_len,ipmi_context_t)2147 ipmi_ret_t ipmiOemQSetDriveInfo(ipmi_netfn_t, ipmi_cmd_t,
2148                                 ipmi_request_t request, ipmi_response_t,
2149                                 ipmi_data_len_t data_len, ipmi_context_t)
2150 {
2151     qDriveInfo_t* req = reinterpret_cast<qDriveInfo_t*>(request);
2152     uint8_t numParam = sizeof(driveInfoKey) / sizeof(uint8_t*);
2153     uint8_t ctrlType = req->hddCtrlType & 0x0f;
2154     std::stringstream ss;
2155     std::string str;
2156     uint8_t len = *data_len;
2157 
2158     *data_len = 0;
2159 
2160     /* check for requested data params */
2161     if (len < 6 || req->paramSel >= numParam || ctrlType > 2)
2162     {
2163         phosphor::logging::log<phosphor::logging::level::ERR>(
2164             "Invalid parameter received");
2165         return ipmi::ccParmOutOfRange;
2166     }
2167 
2168     len = len - 6; // Get Actual data length
2169 
2170     ss << std::hex;
2171     ss << std::setw(2) << std::setfill('0') << (int)req->hddIndex;
2172     oemData[KEY_Q_DRIVE_INFO][KEY_HDD_CTRL_TYPE] = req->hddCtrlType;
2173     oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()][KEY_HDD_INDEX] =
2174         req->hddIndex;
2175 
2176     str = bytesToStr(req->data, len);
2177     oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()]
2178            [driveInfoKey[req->paramSel]] = str.c_str();
2179     flushOemData();
2180 
2181     return ipmi::ccSuccess;
2182 }
2183 
2184 //----------------------------------------------------------------------
2185 // Get Drive Info (CMD_OEM_Q_GET_DRIVE_INFO)
2186 //----------------------------------------------------------------------
2187 // BMC needs to check HDD presented or not first. If NOT presented, return
2188 // completion code 0xD5.
2189 //
2190 // Request:
2191 // Byte 1:3 – Quanta Manufacturer ID – 001C4Ch, LSB first
2192 // Byte 4 –
2193 //[7:4] Reserved
2194 //[3:0] HDD Controller Type
2195 //   0x00 – BIOS
2196 //   0x01 – Expander
2197 //   0x02 – LSI
2198 // Byte 5 – HDD Index, 0 base
2199 // Byte 6 – Parameter Selector (See Above Set HDD Information)
2200 // Response:
2201 // Byte 1 – Completion Code
2202 //   0xD5 – Not support in current status (HDD Not Present)
2203 // Byte 2..N – Configuration parameter data (see Table_1415h Parameters of HDD
2204 // Information)
2205 //
ipmiOemQGetDriveInfo(ipmi_netfn_t,ipmi_cmd_t,ipmi_request_t request,ipmi_response_t response,ipmi_data_len_t data_len,ipmi_context_t)2206 ipmi_ret_t ipmiOemQGetDriveInfo(
2207     ipmi_netfn_t, ipmi_cmd_t, ipmi_request_t request, ipmi_response_t response,
2208     ipmi_data_len_t data_len, ipmi_context_t)
2209 {
2210     qDriveInfo_t* req = reinterpret_cast<qDriveInfo_t*>(request);
2211     uint8_t numParam = sizeof(driveInfoKey) / sizeof(uint8_t*);
2212     uint8_t* res = reinterpret_cast<uint8_t*>(response);
2213     uint8_t ctrlType = req->hddCtrlType & 0x0f;
2214     std::stringstream ss;
2215     std::string str;
2216 
2217     *data_len = 0;
2218 
2219     /* check for requested data params */
2220     if (req->paramSel >= numParam || ctrlType > 2)
2221     {
2222         phosphor::logging::log<phosphor::logging::level::ERR>(
2223             "Invalid parameter received");
2224         return ipmi::ccParmOutOfRange;
2225     }
2226 
2227     if (oemData[KEY_Q_DRIVE_INFO].find(ctrlTypeKey[ctrlType]) ==
2228         oemData[KEY_Q_DRIVE_INFO].end())
2229         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
2230 
2231     ss << std::hex;
2232     ss << std::setw(2) << std::setfill('0') << (int)req->hddIndex;
2233 
2234     if (oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]].find(ss.str()) ==
2235         oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]].end())
2236         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
2237 
2238     if (oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()].find(
2239             driveInfoKey[req->paramSel]) ==
2240         oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()].end())
2241         return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
2242 
2243     str = oemData[KEY_Q_DRIVE_INFO][ctrlTypeKey[ctrlType]][ss.str()]
2244                  [driveInfoKey[req->paramSel]];
2245     *data_len = strToBytes(str, res);
2246 
2247     return ipmi::ccSuccess;
2248 }
2249 
2250 /* Helper function for sending DCMI commands to ME/BIC and
2251  * getting response back
2252  */
sendDCMICmd(ipmi::Context::ptr ctx,uint8_t cmd,std::vector<uint8_t> & cmdData)2253 ipmi::RspType<std::vector<uint8_t>> sendDCMICmd(
2254     [[maybe_unused]] ipmi::Context::ptr ctx, [[maybe_unused]] uint8_t cmd,
2255     std::vector<uint8_t>& cmdData)
2256 {
2257     std::vector<uint8_t> respData;
2258 
2259 #if BIC_ENABLED
2260 
2261     uint8_t bicAddr = (uint8_t)ctx->hostIdx << 2;
2262 
2263     if (sendBicCmd(ctx->netFn, ctx->cmd, bicAddr, cmdData, respData))
2264     {
2265         return ipmi::responseUnspecifiedError();
2266     }
2267 
2268 #else
2269 
2270     /* Add group id as first byte to request for ME command */
2271     cmdData.insert(cmdData.begin(), groupDCMI);
2272 
2273     if (sendMeCmd(ipmi::netFnGroup, cmd, cmdData, respData))
2274     {
2275         return ipmi::responseUnspecifiedError();
2276     }
2277 
2278     /* Remove group id as first byte as it will be added by IPMID */
2279     respData.erase(respData.begin());
2280 
2281 #endif
2282 
2283     return ipmi::responseSuccess(std::move(respData));
2284 }
2285 
2286 /* DCMI Command handellers. */
2287 
ipmiOemDCMIGetPowerReading(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2288 ipmi::RspType<std::vector<uint8_t>> ipmiOemDCMIGetPowerReading(
2289     ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2290 {
2291     return sendDCMICmd(ctx, ipmi::dcmi::cmdGetPowerReading, reqData);
2292 }
2293 
ipmiOemDCMIGetPowerLimit(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2294 ipmi::RspType<std::vector<uint8_t>> ipmiOemDCMIGetPowerLimit(
2295     ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2296 {
2297     return sendDCMICmd(ctx, ipmi::dcmi::cmdGetPowerLimit, reqData);
2298 }
2299 
ipmiOemDCMISetPowerLimit(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2300 ipmi::RspType<std::vector<uint8_t>> ipmiOemDCMISetPowerLimit(
2301     ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2302 {
2303     return sendDCMICmd(ctx, ipmi::dcmi::cmdSetPowerLimit, reqData);
2304 }
2305 
ipmiOemDCMIApplyPowerLimit(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2306 ipmi::RspType<std::vector<uint8_t>> ipmiOemDCMIApplyPowerLimit(
2307     ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2308 {
2309     return sendDCMICmd(ctx, ipmi::dcmi::cmdActDeactivatePwrLimit, reqData);
2310 }
2311 
2312 // Https Boot related functions
ipmiOemGetHttpsData(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2313 ipmi::RspType<std::vector<uint8_t>> ipmiOemGetHttpsData(
2314     [[maybe_unused]] ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2315 {
2316     if (reqData.size() < sizeof(HttpsDataReq))
2317         return ipmi::responseReqDataLenInvalid();
2318 
2319     const auto* pReq = reinterpret_cast<const HttpsDataReq*>(reqData.data());
2320     std::error_code ec;
2321     auto fileSize = std::filesystem::file_size(certPath, ec);
2322     if (ec)
2323         return ipmi::responseUnspecifiedError();
2324 
2325     if (pReq->offset >= fileSize)
2326         return ipmi::responseInvalidFieldRequest();
2327 
2328     std::ifstream file(certPath, std::ios::binary);
2329     if (!file)
2330         return ipmi::responseUnspecifiedError();
2331 
2332     auto readLen = std::min<uint16_t>(pReq->length, fileSize - pReq->offset);
2333     std::vector<uint8_t> resData(readLen + 1);
2334     resData[0] = readLen;
2335     file.seekg(pReq->offset);
2336     file.read(reinterpret_cast<char*>(resData.data() + 1), readLen);
2337 
2338     return ipmi::responseSuccess(resData);
2339 }
2340 
ipmiOemGetHttpsAttr(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2341 ipmi::RspType<std::vector<uint8_t>> ipmiOemGetHttpsAttr(
2342     [[maybe_unused]] ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2343 {
2344     if (reqData.size() < sizeof(HttpsBootAttr))
2345         return ipmi::responseReqDataLenInvalid();
2346 
2347     std::vector<uint8_t> resData;
2348 
2349     switch (static_cast<HttpsBootAttr>(reqData[0]))
2350     {
2351         case HttpsBootAttr::certSize:
2352         {
2353             std::error_code ec;
2354             auto fileSize = std::filesystem::file_size(certPath, ec);
2355             if (ec || fileSize > std::numeric_limits<uint16_t>::max())
2356                 return ipmi::responseUnspecifiedError();
2357 
2358             uint16_t size = static_cast<uint16_t>(fileSize);
2359             resData.resize(sizeof(uint16_t));
2360             std::memcpy(resData.data(), &size, sizeof(uint16_t));
2361             break;
2362         }
2363         case HttpsBootAttr::certCrc:
2364         {
2365             std::ifstream file(certPath, std::ios::binary);
2366             if (!file)
2367                 return ipmi::responseUnspecifiedError();
2368 
2369             boost::crc_32_type result;
2370             char data[1024];
2371             while (file.read(data, sizeof(data)))
2372                 result.process_bytes(data, file.gcount());
2373             if (file.gcount() > 0)
2374                 result.process_bytes(data, file.gcount());
2375 
2376             uint32_t crc = result.checksum();
2377             resData.resize(sizeof(uint32_t));
2378             std::memcpy(resData.data(), &crc, sizeof(uint32_t));
2379             break;
2380         }
2381         default:
2382             return ipmi::responseInvalidFieldRequest();
2383     }
2384 
2385     return ipmi::responseSuccess(resData);
2386 }
2387 
2388 // OEM Crashdump related functions
setDumpState(CrdState & currState,CrdState newState)2389 static ipmi_ret_t setDumpState(CrdState& currState, CrdState newState)
2390 {
2391     switch (newState)
2392     {
2393         case CrdState::waitData:
2394             if (currState == CrdState::packing)
2395                 return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
2396             break;
2397         case CrdState::packing:
2398             if (currState != CrdState::waitData)
2399                 return CC_PARAM_NOT_SUPP_IN_CURR_STATE;
2400             break;
2401         case CrdState::free:
2402             break;
2403         default:
2404             return ipmi::ccUnspecifiedError;
2405     }
2406     currState = newState;
2407 
2408     return ipmi::ccSuccess;
2409 }
2410 
handleMcaBank(const CrashDumpHdr & hdr,std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2411 static ipmi_ret_t handleMcaBank(const CrashDumpHdr& hdr,
2412                                 std::span<const uint8_t> data,
2413                                 CrdState& currState, std::stringstream& ss)
2414 {
2415     if (data.size() < sizeof(CrdMcaBank))
2416         return ipmi::ccReqDataLenInvalid;
2417 
2418     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2419     if (res)
2420         return res;
2421 
2422     const auto* pBank = reinterpret_cast<const CrdMcaBank*>(data.data());
2423     ss << std::format(" Bank ID : 0x{:02X}, Core ID : 0x{:02X}\n",
2424                       hdr.bankHdr.bankId, hdr.bankHdr.coreId);
2425     ss << std::format(" MCA_CTRL      : 0x{:016X}\n", pBank->mcaCtrl);
2426     ss << std::format(" MCA_STATUS    : 0x{:016X}\n", pBank->mcaSts);
2427     ss << std::format(" MCA_ADDR      : 0x{:016X}\n", pBank->mcaAddr);
2428     ss << std::format(" MCA_MISC0     : 0x{:016X}\n", pBank->mcaMisc0);
2429     ss << std::format(" MCA_CTRL_MASK : 0x{:016X}\n", pBank->mcaCtrlMask);
2430     ss << std::format(" MCA_CONFIG    : 0x{:016X}\n", pBank->mcaConfig);
2431     ss << std::format(" MCA_IPID      : 0x{:016X}\n", pBank->mcaIpid);
2432     ss << std::format(" MCA_SYND      : 0x{:016X}\n", pBank->mcaSynd);
2433     ss << std::format(" MCA_DESTAT    : 0x{:016X}\n", pBank->mcaDestat);
2434     ss << std::format(" MCA_DEADDR    : 0x{:016X}\n", pBank->mcaDeaddr);
2435     ss << std::format(" MCA_MISC1     : 0x{:016X}\n", pBank->mcaMisc1);
2436     ss << "\n";
2437 
2438     return ipmi::ccSuccess;
2439 }
2440 
2441 template <typename T>
handleVirtualBank(std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2442 static ipmi_ret_t handleVirtualBank(std::span<const uint8_t> data,
2443                                     CrdState& currState, std::stringstream& ss)
2444 {
2445     if (data.size() < sizeof(T))
2446         return ipmi::ccReqDataLenInvalid;
2447 
2448     const auto* pBank = reinterpret_cast<const T*>(data.data());
2449 
2450     if (data.size() < sizeof(T) + sizeof(BankCorePair) * pBank->mcaCount)
2451         return ipmi::ccReqDataLenInvalid;
2452 
2453     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2454     if (res)
2455         return res;
2456 
2457     ss << " Virtual Bank\n";
2458     ss << std::format(" S5_RESET_STATUS   : 0x{:08X}\n", pBank->s5ResetSts);
2459     ss << std::format(" PM_BREAKEVENT     : 0x{:08X}\n", pBank->breakevent);
2460     if constexpr (std::is_same_v<T, CrdVirtualBankV3>)
2461     {
2462         ss << std::format(" WARMCOLDRSTSTATUS : 0x{:08X}\n", pBank->rstSts);
2463     }
2464     ss << std::format(" PROCESSOR NUMBER  : 0x{:04X}\n", pBank->procNum);
2465     ss << std::format(" APIC ID           : 0x{:08X}\n", pBank->apicId);
2466     ss << std::format(" EAX               : 0x{:08X}\n", pBank->eax);
2467     ss << std::format(" EBX               : 0x{:08X}\n", pBank->ebx);
2468     ss << std::format(" ECX               : 0x{:08X}\n", pBank->ecx);
2469     ss << std::format(" EDX               : 0x{:08X}\n", pBank->edx);
2470     ss << " VALID LIST        : ";
2471     for (size_t i = 0; i < pBank->mcaCount; i++)
2472     {
2473         ss << std::format("(0x{:02X},0x{:02X}) ", pBank->mcaList[i].bankId,
2474                           pBank->mcaList[i].coreId);
2475     }
2476     ss << "\n\n";
2477 
2478     return ipmi::ccSuccess;
2479 }
2480 
handleCpuWdtBank(std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2481 static ipmi_ret_t handleCpuWdtBank(std::span<const uint8_t> data,
2482                                    CrdState& currState, std::stringstream& ss)
2483 {
2484     if (data.size() < sizeof(CrdCpuWdtBank))
2485         return ipmi::ccReqDataLenInvalid;
2486 
2487     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2488     if (res)
2489         return res;
2490 
2491     const auto* pBank = reinterpret_cast<const CrdCpuWdtBank*>(data.data());
2492     for (size_t i = 0; i < ccmNum; i++)
2493     {
2494         ss << std::format("  [CCM{}]\n", i);
2495         ss << std::format("    HwAssertStsHi      : 0x{:08X}\n",
2496                           pBank->hwAssertStsHi[i]);
2497         ss << std::format("    HwAssertStsLo      : 0x{:08X}\n",
2498                           pBank->hwAssertStsLo[i]);
2499         ss << std::format("    OrigWdtAddrLogHi   : 0x{:08X}\n",
2500                           pBank->origWdtAddrLogHi[i]);
2501         ss << std::format("    OrigWdtAddrLogLo   : 0x{:08X}\n",
2502                           pBank->origWdtAddrLogLo[i]);
2503         ss << std::format("    HwAssertMskHi      : 0x{:08X}\n",
2504                           pBank->hwAssertMskHi[i]);
2505         ss << std::format("    HwAssertMskLo      : 0x{:08X}\n",
2506                           pBank->hwAssertMskLo[i]);
2507         ss << std::format("    OrigWdtAddrLogStat : 0x{:08X}\n",
2508                           pBank->origWdtAddrLogStat[i]);
2509     }
2510     ss << "\n";
2511 
2512     return ipmi::ccSuccess;
2513 }
2514 
2515 template <size_t N>
handleHwAssertBank(const char * name,std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2516 static ipmi_ret_t handleHwAssertBank(const char* name,
2517                                      std::span<const uint8_t> data,
2518                                      CrdState& currState, std::stringstream& ss)
2519 {
2520     if (data.size() < sizeof(CrdHwAssertBank<N>))
2521         return ipmi::ccReqDataLenInvalid;
2522 
2523     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2524     if (res)
2525         return res;
2526 
2527     const CrdHwAssertBank<N>* pBank =
2528         reinterpret_cast<const CrdHwAssertBank<N>*>(data.data());
2529 
2530     for (size_t i = 0; i < N; i++)
2531     {
2532         ss << std::format("  [{}{}]\n", name, i);
2533         ss << std::format("    HwAssertStsHi : 0x{:08X}\n",
2534                           pBank->hwAssertStsHi[i]);
2535         ss << std::format("    HwAssertStsLo : 0x{:08X}\n",
2536                           pBank->hwAssertStsLo[i]);
2537         ss << std::format("    HwAssertMskHi : 0x{:08X}\n",
2538                           pBank->hwAssertMskHi[i]);
2539         ss << std::format("    HwAssertMskLo : 0x{:08X}\n",
2540                           pBank->hwAssertMskLo[i]);
2541     }
2542     ss << "\n";
2543 
2544     return ipmi::ccSuccess;
2545 }
2546 
handlePcieAerBank(std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2547 static ipmi_ret_t handlePcieAerBank(std::span<const uint8_t> data,
2548                                     CrdState& currState, std::stringstream& ss)
2549 {
2550     if (data.size() < sizeof(CrdPcieAerBank))
2551         return ipmi::ccReqDataLenInvalid;
2552 
2553     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2554     if (res)
2555         return res;
2556 
2557     const auto* pBank = reinterpret_cast<const CrdPcieAerBank*>(data.data());
2558     ss << std::format("  [Bus{} Dev{} Fun{}]\n", pBank->bus, pBank->dev,
2559                       pBank->fun);
2560     ss << std::format("    Command                      : 0x{:04X}\n",
2561                       pBank->cmd);
2562     ss << std::format("    Status                       : 0x{:04X}\n",
2563                       pBank->sts);
2564     ss << std::format("    Slot                         : 0x{:04X}\n",
2565                       pBank->slot);
2566     ss << std::format("    Secondary Bus                : 0x{:02X}\n",
2567                       pBank->secondBus);
2568     ss << std::format("    Vendor ID                    : 0x{:04X}\n",
2569                       pBank->vendorId);
2570     ss << std::format("    Device ID                    : 0x{:04X}\n",
2571                       pBank->devId);
2572     ss << std::format("    Class Code                   : 0x{:02X}{:04X}\n",
2573                       pBank->classCodeHi, pBank->classCodeLo);
2574     ss << std::format("    Bridge: Secondary Status     : 0x{:04X}\n",
2575                       pBank->secondSts);
2576     ss << std::format("    Bridge: Control              : 0x{:04X}\n",
2577                       pBank->ctrl);
2578     ss << std::format("    Uncorrectable Error Status   : 0x{:08X}\n",
2579                       pBank->uncorrErrSts);
2580     ss << std::format("    Uncorrectable Error Mask     : 0x{:08X}\n",
2581                       pBank->uncorrErrMsk);
2582     ss << std::format("    Uncorrectable Error Severity : 0x{:08X}\n",
2583                       pBank->uncorrErrSeverity);
2584     ss << std::format("    Correctable Error Status     : 0x{:08X}\n",
2585                       pBank->corrErrSts);
2586     ss << std::format("    Correctable Error Mask       : 0x{:08X}\n",
2587                       pBank->corrErrMsk);
2588     ss << std::format("    Header Log DW0               : 0x{:08X}\n",
2589                       pBank->hdrLogDw0);
2590     ss << std::format("    Header Log DW1               : 0x{:08X}\n",
2591                       pBank->hdrLogDw1);
2592     ss << std::format("    Header Log DW2               : 0x{:08X}\n",
2593                       pBank->hdrLogDw2);
2594     ss << std::format("    Header Log DW3               : 0x{:08X}\n",
2595                       pBank->hdrLogDw3);
2596     ss << std::format("    Root Error Status            : 0x{:08X}\n",
2597                       pBank->rootErrSts);
2598     ss << std::format("    Correctable Error Source ID  : 0x{:04X}\n",
2599                       pBank->corrErrSrcId);
2600     ss << std::format("    Error Source ID              : 0x{:04X}\n",
2601                       pBank->errSrcId);
2602     ss << std::format("    Lane Error Status            : 0x{:08X}\n",
2603                       pBank->laneErrSts);
2604     ss << "\n";
2605 
2606     return ipmi::ccSuccess;
2607 }
2608 
handleWdtRegBank(std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2609 static ipmi_ret_t handleWdtRegBank(std::span<const uint8_t> data,
2610                                    CrdState& currState, std::stringstream& ss)
2611 {
2612     if (data.size() < sizeof(CrdWdtRegBank))
2613         return ipmi::ccReqDataLenInvalid;
2614 
2615     const auto* pBank = reinterpret_cast<const CrdWdtRegBank*>(data.data());
2616     if (data.size() < sizeof(CrdWdtRegBank) + sizeof(uint32_t) * pBank->count)
2617         return ipmi::ccReqDataLenInvalid;
2618 
2619     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2620     if (res)
2621         return res;
2622 
2623     ss << std::format("  [NBIO{}] {}\n", pBank->nbio, pBank->name);
2624     ss << std::format("    Address: 0x{:08X}\n", pBank->addr);
2625     ss << std::format("    Data Count: {}\n", pBank->count);
2626     ss << "    Data:\n";
2627     for (size_t i = 0; i < pBank->count; i++)
2628     {
2629         ss << std::format("      {}: 0x{:08X}\n", i, pBank->data[i]);
2630     }
2631     ss << "\n";
2632 
2633     return ipmi::ccSuccess;
2634 }
2635 
handleCrdHdrBank(std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2636 static ipmi_ret_t handleCrdHdrBank(std::span<const uint8_t> data,
2637                                    CrdState& currState, std::stringstream& ss)
2638 {
2639     if (data.size() < sizeof(CrdHdrBank))
2640         return ipmi::ccReqDataLenInvalid;
2641 
2642     ipmi_ret_t res = setDumpState(currState, CrdState::waitData);
2643     if (res)
2644         return res;
2645 
2646     const auto* pBank = reinterpret_cast<const CrdHdrBank*>(data.data());
2647     ss << " Crashdump Header\n";
2648     ss << std::format(" CPU PPIN      : 0x{:016X}\n", pBank->ppin);
2649     ss << std::format(" UCODE VERSION : 0x{:08X}\n", pBank->ucodeVer);
2650     ss << std::format(" PMIO 80h      : 0x{:08X}\n", pBank->pmio);
2651     ss << std::format(
2652         "    BIT0 - SMN Parity/SMN Timeouts PSP/SMU Parity and ECC/SMN On-Package Link Error : {}\n",
2653         pBank->pmio & 0x1);
2654     ss << std::format("    BIT2 - PSP Parity and ECC : {}\n",
2655                       (pBank->pmio & 0x4) >> 2);
2656     ss << std::format("    BIT3 - SMN Timeouts SMU : {}\n",
2657                       (pBank->pmio & 0x8) >> 3);
2658     ss << std::format("    BIT4 - SMN Off-Package Link Packet Error : {}\n",
2659                       (pBank->pmio & 0x10) >> 4);
2660     ss << "\n";
2661 
2662     return ipmi::ccSuccess;
2663 }
2664 
getFilename(const std::filesystem::path & dir,const std::string & prefix)2665 static std::string getFilename(const std::filesystem::path& dir,
2666                                const std::string& prefix)
2667 {
2668     std::vector<int> indices;
2669     std::regex pattern(prefix + "(\\d+)\\.txt");
2670 
2671     for (const auto& entry : std::filesystem::directory_iterator(dir))
2672     {
2673         std::string filename = entry.path().filename().string();
2674         std::smatch match;
2675         if (std::regex_match(filename, match, pattern))
2676             indices.push_back(std::stoi(match[1]));
2677     }
2678 
2679     std::sort(indices.rbegin(), indices.rend());
2680     while (indices.size() > 2) // keep 3 files, so remove if more than 2
2681     {
2682         std::filesystem::remove(
2683             dir / (prefix + std::to_string(indices.back()) + ".txt"));
2684         indices.pop_back();
2685     }
2686 
2687     int nextIndex = indices.empty() ? 1 : indices.front() + 1;
2688     return prefix + std::to_string(nextIndex) + ".txt";
2689 }
2690 
handleCtrlBank(std::span<const uint8_t> data,CrdState & currState,std::stringstream & ss)2691 static ipmi_ret_t handleCtrlBank(std::span<const uint8_t> data,
2692                                  CrdState& currState, std::stringstream& ss)
2693 {
2694     if (data.empty())
2695         return ipmi::ccReqDataLenInvalid;
2696 
2697     switch (static_cast<CrdCtrl>(data[0]))
2698     {
2699         case CrdCtrl::getState:
2700             break;
2701         case CrdCtrl::finish:
2702         {
2703             ipmi_ret_t res = setDumpState(currState, CrdState::packing);
2704             if (res)
2705                 return res;
2706 
2707             const std::filesystem::path dumpDir = "/var/lib/fb-ipmi-oem";
2708             std::string filename = getFilename(dumpDir, "crashdump_");
2709             std::ofstream outFile(dumpDir / filename);
2710             if (!outFile.is_open())
2711                 return ipmi::ccUnspecifiedError;
2712 
2713             auto now = std::chrono::system_clock::to_time_t(
2714                 std::chrono::system_clock::now());
2715             outFile << "Crash Dump generated at: "
2716                     << std::put_time(std::localtime(&now), "%Y-%m-%d %H:%M:%S")
2717                     << "\n\n";
2718             outFile << ss.str();
2719             outFile.close();
2720             ss.str("");
2721             ss.clear();
2722             setDumpState(currState, CrdState::free);
2723             break;
2724         }
2725         default:
2726             return ccInvalidParam;
2727     }
2728 
2729     return ipmi::ccSuccess;
2730 }
2731 
ipmiOemCrashdump(ipmi::Context::ptr ctx,std::vector<uint8_t> reqData)2732 ipmi::RspType<std::vector<uint8_t>> ipmiOemCrashdump(
2733     [[maybe_unused]] ipmi::Context::ptr ctx, std::vector<uint8_t> reqData)
2734 {
2735     static CrdState dumpState = CrdState::free;
2736     static std::stringstream ss;
2737 
2738     if (reqData.size() < sizeof(CrashDumpHdr))
2739         return ipmi::responseReqDataLenInvalid();
2740 
2741     const auto* pHdr = reinterpret_cast<const CrashDumpHdr*>(reqData.data());
2742     std::span<const uint8_t> bData{reqData.data() + sizeof(CrashDumpHdr),
2743                                    reqData.size() - sizeof(CrashDumpHdr)};
2744     ipmi_ret_t res;
2745 
2746     switch (pHdr->bankHdr.bankType)
2747     {
2748         case BankType::mca:
2749             res = handleMcaBank(*pHdr, bData, dumpState, ss);
2750             break;
2751         case BankType::virt:
2752             if (pHdr->bankHdr.version >= 3)
2753             {
2754                 res = handleVirtualBank<CrdVirtualBankV3>(bData, dumpState, ss);
2755                 break;
2756             }
2757             res = handleVirtualBank<CrdVirtualBankV2>(bData, dumpState, ss);
2758             break;
2759         case BankType::cpuWdt:
2760             res = handleCpuWdtBank(bData, dumpState, ss);
2761             break;
2762         case BankType::tcdx:
2763             res = handleHwAssertBank<tcdxNum>("TCDX", bData, dumpState, ss);
2764             break;
2765         case BankType::cake:
2766             res = handleHwAssertBank<cakeNum>("CAKE", bData, dumpState, ss);
2767             break;
2768         case BankType::pie0:
2769             res = handleHwAssertBank<pie0Num>("PIE", bData, dumpState, ss);
2770             break;
2771         case BankType::iom:
2772             res = handleHwAssertBank<iomNum>("IOM", bData, dumpState, ss);
2773             break;
2774         case BankType::ccix:
2775             res = handleHwAssertBank<ccixNum>("CCIX", bData, dumpState, ss);
2776             break;
2777         case BankType::cs:
2778             res = handleHwAssertBank<csNum>("CS", bData, dumpState, ss);
2779             break;
2780         case BankType::pcieAer:
2781             res = handlePcieAerBank(bData, dumpState, ss);
2782             break;
2783         case BankType::wdtReg:
2784             res = handleWdtRegBank(bData, dumpState, ss);
2785             break;
2786         case BankType::ctrl:
2787             res = handleCtrlBank(bData, dumpState, ss);
2788             if (res == ipmi::ccSuccess &&
2789                 static_cast<CrdCtrl>(bData[0]) == CrdCtrl::getState)
2790             {
2791                 return ipmi::responseSuccess(
2792                     std::vector<uint8_t>{static_cast<uint8_t>(dumpState)});
2793             }
2794             break;
2795         case BankType::crdHdr:
2796             res = handleCrdHdrBank(bData, dumpState, ss);
2797             break;
2798         default:
2799             return ipmi::responseInvalidFieldRequest();
2800     }
2801 
2802     return ipmi::response(res);
2803 }
2804 
registerOEMFunctions(void)2805 static void registerOEMFunctions(void)
2806 {
2807     /* Get OEM data from json file */
2808     std::ifstream file(JSON_OEM_DATA_FILE);
2809     if (file)
2810     {
2811         try
2812         {
2813             file >> oemData;
2814         }
2815         // If parsing fails, initialize oemData as an empty JSON and
2816         // overwrite the file
2817         catch (const nlohmann::json::parse_error& e)
2818         {
2819             lg2::error("Error parsing JSON file: {ERROR}", "ERROR", e);
2820             oemData = nlohmann::json::object();
2821             std::ofstream outFile(JSON_OEM_DATA_FILE, std::ofstream::trunc);
2822             outFile << oemData.dump(4); // Write empty JSON object to the file
2823             outFile.close();
2824         }
2825         file.close();
2826     }
2827     else
2828     {
2829         lg2::info("Failed to open JSON file.");
2830     }
2831 
2832     lg2::info("Registering OEM commands.");
2833 
2834     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_FRAME_INFO,
2835                          NULL, ipmiOemDbgGetFrameInfo,
2836                          PRIVILEGE_USER); // get debug frame info
2837     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ,
2838                          CMD_OEM_USB_DBG_GET_UPDATED_FRAMES, NULL,
2839                          ipmiOemDbgGetUpdFrames,
2840                          PRIVILEGE_USER); // get debug updated frames
2841     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_POST_DESC,
2842                          NULL, ipmiOemDbgGetPostDesc,
2843                          PRIVILEGE_USER); // get debug post description
2844     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_GPIO_DESC,
2845                          NULL, ipmiOemDbgGetGpioDesc,
2846                          PRIVILEGE_USER); // get debug gpio description
2847     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_GET_FRAME_DATA,
2848                          NULL, ipmiOemDbgGetFrameData,
2849                          PRIVILEGE_USER); // get debug frame data
2850     ipmiPrintAndRegister(NETFN_OEM_USB_DBG_REQ, CMD_OEM_USB_DBG_CTRL_PANEL,
2851                          NULL, ipmiOemDbgGetCtrlPanel,
2852                          PRIVILEGE_USER); // get debug control panel
2853     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_DIMM_INFO, NULL,
2854                          ipmiOemSetDimmInfo,
2855                          PRIVILEGE_USER); // Set Dimm Info
2856     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_GET_BOARD_ID, NULL,
2857                          ipmiOemGetBoardID,
2858                          PRIVILEGE_USER); // Get Board ID
2859     ipmi::registerHandler(ipmi::prioOemBase, ipmi::netFnOemOne,
2860                           CMD_OEM_GET_80PORT_RECORD, ipmi::Privilege::User,
2861                           ipmiOemGet80PortRecord); // Get 80 Port Record
2862     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_MACHINE_CONFIG_INFO,
2863                          NULL, ipmiOemSetMachineCfgInfo,
2864                          PRIVILEGE_USER); // Set Machine Config Info
2865     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_POST_START, NULL,
2866                          ipmiOemSetPostStart,
2867                          PRIVILEGE_USER); // Set POST start
2868     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_POST_END, NULL,
2869                          ipmiOemSetPostEnd,
2870                          PRIVILEGE_USER); // Set POST End
2871     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_PPIN_INFO, NULL,
2872                          ipmiOemSetPPINInfo,
2873                          PRIVILEGE_USER); // Set PPIN Info
2874 #if BIC_ENABLED
2875 
2876     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemOne,
2877                           ipmi::cmdSetSystemGuid, ipmi::Privilege::User,
2878                           ipmiOemSetSystemGuid);
2879 #else
2880 
2881     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_SYSTEM_GUID, NULL,
2882                          ipmiOemSetSystemGuid,
2883                          PRIVILEGE_USER); // Set System GUID
2884 #endif
2885     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_ADR_TRIGGER, NULL,
2886                          ipmiOemSetAdrTrigger,
2887                          PRIVILEGE_USER); // Set ADR Trigger
2888     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_BIOS_FLASH_INFO, NULL,
2889                          ipmiOemSetBiosFlashInfo,
2890                          PRIVILEGE_USER); // Set Bios Flash Info
2891     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_SET_PPR, NULL,
2892                          ipmiOemSetPpr,
2893                          PRIVILEGE_USER); // Set PPR
2894     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_GET_PPR, NULL,
2895                          ipmiOemGetPpr,
2896                          PRIVILEGE_USER); // Get PPR
2897     ipmiPrintAndRegister(ipmi::netFnOemOne, CMD_OEM_GET_FRU_ID, NULL,
2898                          ipmiOemGetFruId,
2899                          PRIVILEGE_USER); // Get FRU ID
2900     /* FB OEM QC Commands */
2901     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemFour,
2902                           CMD_OEM_Q_SET_PROC_INFO, ipmi::Privilege::User,
2903                           ipmiOemQSetProcInfo); // Set Proc Info
2904     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemFour,
2905                           CMD_OEM_Q_GET_PROC_INFO, ipmi::Privilege::User,
2906                           ipmiOemQGetProcInfo); // Get Proc Info
2907     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemFour,
2908                           ipmi::cmdSetQDimmInfo, ipmi::Privilege::User,
2909                           ipmiOemQSetDimmInfo); // Set Dimm Info
2910     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemFour,
2911                           ipmi::cmdGetQDimmInfo, ipmi::Privilege::User,
2912                           ipmiOemQGetDimmInfo); // Get Dimm Info
2913     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_SET_DRIVE_INFO, NULL,
2914                          ipmiOemQSetDriveInfo,
2915                          PRIVILEGE_USER); // Set Drive Info
2916     ipmiPrintAndRegister(NETFUN_FB_OEM_QC, CMD_OEM_Q_GET_DRIVE_INFO, NULL,
2917                          ipmiOemQGetDriveInfo,
2918                          PRIVILEGE_USER); // Get Drive Info
2919 
2920     /* FB OEM DCMI Commands as per DCMI spec 1.5 Section 6 */
2921     ipmi::registerGroupHandler(
2922         ipmi::prioOpenBmcBase, groupDCMI, ipmi::dcmi::cmdGetPowerReading,
2923         ipmi::Privilege::User,
2924         ipmiOemDCMIGetPowerReading); // Get Power Reading
2925 
2926     ipmi::registerGroupHandler(
2927         ipmi::prioOpenBmcBase, groupDCMI, ipmi::dcmi::cmdGetPowerLimit,
2928         ipmi::Privilege::User,
2929         ipmiOemDCMIGetPowerLimit); // Get Power Limit
2930 
2931     ipmi::registerGroupHandler(
2932         ipmi::prioOpenBmcBase, groupDCMI, ipmi::dcmi::cmdSetPowerLimit,
2933         ipmi::Privilege::Operator,
2934         ipmiOemDCMISetPowerLimit); // Set Power Limit
2935 
2936     ipmi::registerGroupHandler(
2937         ipmi::prioOpenBmcBase, groupDCMI, ipmi::dcmi::cmdActDeactivatePwrLimit,
2938         ipmi::Privilege::Operator,
2939         ipmiOemDCMIApplyPowerLimit); // Apply Power Limit
2940 
2941     /* FB OEM BOOT ORDER COMMANDS */
2942     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemOne,
2943                           CMD_OEM_GET_BOOT_ORDER, ipmi::Privilege::User,
2944                           ipmiOemGetBootOrder); // Get Boot Order
2945 
2946     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemOne,
2947                           CMD_OEM_SET_BOOT_ORDER, ipmi::Privilege::User,
2948                           ipmiOemSetBootOrder); // Set Boot Order
2949 
2950     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemOne,
2951                           CMD_OEM_GET_HTTPS_BOOT_DATA, ipmi::Privilege::User,
2952                           ipmiOemGetHttpsData);
2953 
2954     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemOne,
2955                           CMD_OEM_GET_HTTPS_BOOT_ATTR, ipmi::Privilege::User,
2956                           ipmiOemGetHttpsAttr);
2957 
2958     ipmi::registerHandler(ipmi::prioOpenBmcBase, ipmi::netFnOemOne,
2959                           CMD_OEM_CRASHDUMP, ipmi::Privilege::User,
2960                           ipmiOemCrashdump);
2961 
2962     return;
2963 }
2964 
2965 } // namespace ipmi
2966