1 #include "libpldm/entity.h"
2 #include "libpldm/state_set.h"
3 
4 #include "common/types.hpp"
5 #include "pldm_cmd_helper.hpp"
6 
7 #include <cstddef>
8 #include <map>
9 
10 #ifdef OEM_IBM
11 #include "oem/ibm/oem_ibm_state_set.hpp"
12 #endif
13 
14 using namespace pldm::utils;
15 
16 namespace pldmtool
17 {
18 
19 namespace platform
20 {
21 
22 namespace
23 {
24 
25 using namespace pldmtool::helper;
26 
27 static const std::map<uint8_t, std::string> sensorPresState{
28     {PLDM_SENSOR_UNKNOWN, "Sensor Unknown"},
29     {PLDM_SENSOR_NORMAL, "Sensor Normal"},
30     {PLDM_SENSOR_WARNING, "Sensor Warning"},
31     {PLDM_SENSOR_CRITICAL, "Sensor Critical"},
32     {PLDM_SENSOR_FATAL, "Sensor Fatal"},
33     {PLDM_SENSOR_LOWERWARNING, "Sensor Lower Warning"},
34     {PLDM_SENSOR_LOWERCRITICAL, "Sensor Lower Critical"},
35     {PLDM_SENSOR_LOWERFATAL, "Sensor Lower Fatal"},
36     {PLDM_SENSOR_UPPERWARNING, "Sensor Upper Warning"},
37     {PLDM_SENSOR_UPPERCRITICAL, "Sensor Upper Critical"},
38     {PLDM_SENSOR_UPPERFATAL, "Sensor Upper Fatal"}};
39 
40 static const std::map<uint8_t, std::string> sensorOpState{
41     {PLDM_SENSOR_ENABLED, "Sensor Enabled"},
42     {PLDM_SENSOR_DISABLED, "Sensor Disabled"},
43     {PLDM_SENSOR_UNAVAILABLE, "Sensor Unavailable"},
44     {PLDM_SENSOR_STATUSUNKOWN, "Sensor Status Unknown"},
45     {PLDM_SENSOR_FAILED, "Sensor Failed"},
46     {PLDM_SENSOR_INITIALIZING, "Sensor Sensor Intializing"},
47     {PLDM_SENSOR_SHUTTINGDOWN, "Sensor Shutting down"},
48     {PLDM_SENSOR_INTEST, "Sensor Intest"}};
49 
50 std::vector<std::unique_ptr<CommandInterface>> commands;
51 
52 } // namespace
53 
54 using ordered_json = nlohmann::ordered_json;
55 
56 class GetPDR : public CommandInterface
57 {
58   public:
59     ~GetPDR() = default;
60     GetPDR() = delete;
61     GetPDR(const GetPDR&) = delete;
62     GetPDR(GetPDR&&) = default;
63     GetPDR& operator=(const GetPDR&) = delete;
64     GetPDR& operator=(GetPDR&&) = default;
65 
66     using CommandInterface::CommandInterface;
67 
68     explicit GetPDR(const char* type, const char* name, CLI::App* app) :
69         CommandInterface(type, name, app)
70     {
71         auto pdrOptionGroup = app->add_option_group(
72             "Required Option",
73             "Retrieve individual PDR, all PDRs, or PDRs of a requested type");
74         pdrOptionGroup->add_option(
75             "-d,--data", recordHandle,
76             "retrieve individual PDRs from a PDR Repository\n"
77             "eg: The recordHandle value for the PDR to be retrieved and 0 "
78             "means get first PDR in the repository.");
79         pdrRecType = "";
80         pdrOptionGroup->add_option("-t, --type", pdrRecType,
81                                    "retrieve all PDRs of the requested type\n"
82                                    "supported types:\n"
83                                    "[terminusLocator, stateSensor, "
84                                    "numericEffecter, stateEffecter, "
85                                    "EntityAssociation, fruRecord, ... ]");
86         allPDRs = false;
87         pdrOptionGroup->add_flag("-a, --all", allPDRs,
88                                  "retrieve all PDRs from a PDR repository");
89         pdrOptionGroup->require_option(1);
90     }
91 
92     void exec() override
93     {
94         if (allPDRs || !pdrRecType.empty())
95         {
96             if (!pdrRecType.empty())
97             {
98                 std::transform(pdrRecType.begin(), pdrRecType.end(),
99                                pdrRecType.begin(), tolower);
100             }
101 
102             // start the array
103             std::cout << "[\n";
104 
105             // Retrieve all PDR records starting from the first
106             recordHandle = 0;
107             uint32_t prevRecordHandle = 0;
108             std::map<uint32_t, uint32_t> recordsSeen;
109             do
110             {
111                 CommandInterface::exec();
112                 // recordHandle is updated to nextRecord when
113                 // CommandInterface::exec() is successful.
114                 // In case of any error, return.
115                 if (recordHandle == prevRecordHandle)
116                 {
117                     return;
118                 }
119 
120                 // check for circular references.
121                 auto result =
122                     recordsSeen.emplace(recordHandle, prevRecordHandle);
123                 if (!result.second)
124                 {
125                     std::cerr
126                         << "Record handle " << recordHandle
127                         << " has multiple references: " << result.first->second
128                         << ", " << prevRecordHandle << "\n";
129                     return;
130                 }
131                 prevRecordHandle = recordHandle;
132 
133                 if (recordHandle != 0)
134                 {
135                     // close the array
136                     std::cout << ",";
137                 }
138             } while (recordHandle != 0);
139 
140             // close the array
141             std::cout << "]\n";
142         }
143         else
144         {
145             CommandInterface::exec();
146         }
147     }
148 
149     std::pair<int, std::vector<uint8_t>> createRequestMsg() override
150     {
151         std::vector<uint8_t> requestMsg(sizeof(pldm_msg_hdr) +
152                                         PLDM_GET_PDR_REQ_BYTES);
153         auto request = reinterpret_cast<pldm_msg*>(requestMsg.data());
154 
155         auto rc =
156             encode_get_pdr_req(instanceId, recordHandle, 0, PLDM_GET_FIRSTPART,
157                                UINT16_MAX, 0, request, PLDM_GET_PDR_REQ_BYTES);
158         return {rc, requestMsg};
159     }
160 
161     void parseResponseMsg(pldm_msg* responsePtr, size_t payloadLength) override
162     {
163         uint8_t completionCode = 0;
164         uint8_t recordData[UINT16_MAX] = {0};
165         uint32_t nextRecordHndl = 0;
166         uint32_t nextDataTransferHndl = 0;
167         uint8_t transferFlag = 0;
168         uint16_t respCnt = 0;
169         uint8_t transferCRC = 0;
170 
171         auto rc = decode_get_pdr_resp(
172             responsePtr, payloadLength, &completionCode, &nextRecordHndl,
173             &nextDataTransferHndl, &transferFlag, &respCnt, recordData,
174             sizeof(recordData), &transferCRC);
175 
176         if (rc != PLDM_SUCCESS || completionCode != PLDM_SUCCESS)
177         {
178             std::cerr << "Response Message Error: "
179                       << "rc=" << rc << ",cc=" << (int)completionCode
180                       << std::endl;
181             return;
182         }
183 
184         printPDRMsg(nextRecordHndl, respCnt, recordData);
185         recordHandle = nextRecordHndl;
186     }
187 
188   private:
189     const std::map<pldm::pdr::EntityType, std::string> entityType = {
190         {PLDM_ENTITY_UNSPECIFIED, "Unspecified"},
191         {PLDM_ENTITY_OTHER, "Other"},
192         {PLDM_ENTITY_NETWORK, "Network"},
193         {PLDM_ENTITY_GROUP, "Group"},
194         {PLDM_ENTITY_REMOTE_MGMT_COMM_DEVICE,
195          "Remote Management Communication Device"},
196         {PLDM_ENTITY_EXTERNAL_ENVIRONMENT, "External Environment"},
197         {PLDM_ENTITY_COMM_CHANNEL, " Communication Channel"},
198         {PLDM_ENTITY_TERMINUS, "PLDM Terminus"},
199         {PLDM_ENTITY_PLATFORM_EVENT_LOG, " Platform Event Log"},
200         {PLDM_ENTITY_KEYPAD, "keypad"},
201         {PLDM_ENTITY_SWITCH, "Switch"},
202         {PLDM_ENTITY_PUSHBUTTON, "Pushbutton"},
203         {PLDM_ENTITY_DISPLAY, "Display"},
204         {PLDM_ENTITY_INDICATOR, "Indicator"},
205         {PLDM_ENTITY_SYS_MGMT_SW, "System Management Software"},
206         {PLDM_ENTITY_SYS_FIRMWARE, "System Firmware"},
207         {PLDM_ENTITY_OPERATING_SYS, "Operating System"},
208         {PLDM_ENTITY_VIRTUAL_MACHINE_MANAGER, "Virtual Machine Manager"},
209         {PLDM_ENTITY_OS_LOADER, "OS Loader"},
210         {PLDM_ENTITY_DEVICE_DRIVER, "Device Driver"},
211         {PLDM_ENTITY_MGMT_CONTROLLER_FW, "Management Controller Firmware"},
212         {PLDM_ENTITY_SYSTEM_CHASSIS, "System chassis (main enclosure)"},
213         {PLDM_ENTITY_SUB_CHASSIS, "Sub-chassis"},
214         {PLDM_ENTITY_DISK_DRIVE_BAY, "Disk Drive Bay"},
215         {PLDM_ENTITY_PERIPHERAL_BAY, "Peripheral Bay"},
216         {PLDM_ENTITY_DEVICE_BAY, "Device bay"},
217         {PLDM_ENTITY_DOOR, "Door"},
218         {PLDM_ENTITY_ACCESS_PANEL, "Access Panel"},
219         {PLDM_ENTITY_COVER, "Cover"},
220         {PLDM_ENTITY_BOARD, "Board"},
221         {PLDM_ENTITY_CARD, "Card"},
222         {PLDM_ENTITY_MODULE, "Module"},
223         {PLDM_ENTITY_SYS_MGMT_MODULE, "System management module"},
224         {PLDM_ENTITY_SYS_BOARD, "System Board"},
225         {PLDM_ENTITY_MEMORY_BOARD, "Memory Board"},
226         {PLDM_ENTITY_MEMORY_MODULE, "Memory Module"},
227         {PLDM_ENTITY_PROC_MODULE, "Processor Module"},
228         {PLDM_ENTITY_ADD_IN_CARD, "Add-in Card"},
229         {PLDM_ENTITY_CHASSIS_FRONT_PANEL_BOARD,
230          "Chassis front panel board(control panel)"},
231         {PLDM_ENTITY_BACK_PANEL_BOARD, "Back panel board"},
232         {PLDM_ENTITY_POWER_MGMT, "Power management board"},
233         {PLDM_ENTITY_POWER_SYS_BOARD, "Power system board"},
234         {PLDM_ENTITY_DRIVE_BACKPLANE, "Drive backplane"},
235         {PLDM_ENTITY_SYS_INTERNAL_EXPANSION_BOARD,
236          "System internal expansion board"},
237         {PLDM_ENTITY_OTHER_SYS_BOARD, "Other system board"},
238         {PLDM_ENTITY_CHASSIS_BACK_PANEL_BOARD, "Chassis back panel board"},
239         {PLDM_ENTITY_PROCESSING_BLADE, "Processing blade"},
240         {PLDM_ENTITY_CONNECTIVITY_SWITCH, "Connectivity switch"},
241         {PLDM_ENTITY_PROC_MEMORY_MODULE, "Processor/Memory Module"},
242         {PLDM_ENTITY_IO_MODULE, "I/O Module"},
243         {PLDM_ENTITY_PROC_IO_MODULE, "Processor I/O Module"},
244         {PLDM_ENTITY_COOLING_DEVICE, "Cooling device"},
245         {PLDM_ENTITY_COOLING_SUBSYSTEM, "Cooling subsystem"},
246         {PLDM_ENTITY_COOLING_UNIT, "Cooling Unit"},
247         {PLDM_ENTITY_FAN, "Fan"},
248         {PLDM_ENTITY_PELTIER_COOLING_DEVICE, "Peltier Cooling Device"},
249         {PLDM_ENTITY_LIQUID_COOLING_DEVICE, "Liquid Cooling Device"},
250         {PLDM_ENTITY_LIQUID_COOLING_SUBSYSTEM, "Liquid Colling Subsystem"},
251         {PLDM_ENTITY_OTHER_STORAGE_DEVICE, "Other Storage Device"},
252         {PLDM_ENTITY_FLOPPY_DRIVE, "Floppy Drive"},
253         {PLDM_ENTITY_FIXED_DISK_HARD_DRIVE, "Hard Drive"},
254         {PLDM_ENTITY_CD_DRIVE, "CD Drive"},
255         {PLDM_ENTITY_CD_DVD_DRIVE, "CD/DVD Drive"},
256         {PLDM_ENTITY_OTHER_SILICON_STORAGE_DEVICE,
257          "Other Silicon Storage Device"},
258         {PLDM_ENTITY_SOLID_STATE_SRIVE, "Solid State Drive"},
259         {PLDM_ENTITY_POWER_SUPPLY, "Power supply"},
260         {PLDM_ENTITY_BATTERY, "Battery"},
261         {PLDM_ENTITY_SUPER_CAPACITOR, "Super Capacitor"},
262         {PLDM_ENTITY_POWER_CONVERTER, "Power Converter"},
263         {PLDM_ENTITY_DC_DC_CONVERTER, "DC-DC Converter"},
264         {PLDM_ENTITY_AC_MAINS_POWER_SUPPLY, "AC mains power supply"},
265         {PLDM_ENTITY_DC_MAINS_POWER_SUPPLY, "DC mains power supply"},
266         {PLDM_ENTITY_PROC, "Processor"},
267         {PLDM_ENTITY_CHIPSET_COMPONENT, "Chipset Component"},
268         {PLDM_ENTITY_MGMT_CONTROLLER, "Management Controller"},
269         {PLDM_ENTITY_PERIPHERAL_CONTROLLER, "Peripheral Controller"},
270         {PLDM_ENTITY_SEEPROM, "SEEPROM"},
271         {PLDM_ENTITY_NVRAM_CHIP, "NVRAM Chip"},
272         {PLDM_ENTITY_FLASH_MEMORY_CHIP, "FLASH Memory chip"},
273         {PLDM_ENTITY_MEMORY_CHIP, "Memory Chip"},
274         {PLDM_ENTITY_MEMORY_CONTROLLER, "Memory Controller"},
275         {PLDM_ENTITY_NETWORK_CONTROLLER, "Network Controller"},
276         {PLDM_ENTITY_IO_CONTROLLER, "I/O Controller"},
277         {PLDM_ENTITY_SOUTH_BRIDGE, "South Bridge"},
278         {PLDM_ENTITY_REAL_TIME_CLOCK, "Real Time Clock (RTC)"},
279         {PLDM_ENTITY_FPGA_CPLD_DEVICE, "FPGA/CPLD Configurable Logic Device"},
280         {PLDM_ENTITY_OTHER_BUS, "Other Bus"},
281         {PLDM_ENTITY_SYS_BUS, "System Bus"},
282         {PLDM_ENTITY_I2C_BUS, "I2C Bus"},
283         {PLDM_ENTITY_SMBUS_BUS, "SMBus Bus"},
284         {PLDM_ENTITY_SPI_BUS, "SPI Bus"},
285         {PLDM_ENTITY_PCI_BUS, "PCI Bus"},
286         {PLDM_ENTITY_PCI_EXPRESS_BUS, "PCI Express Bus"},
287         {PLDM_ENTITY_PECI_BUS, "PECI Bus"},
288         {PLDM_ENTITY_LPC_BUS, "LPC Bus"},
289         {PLDM_ENTITY_USB_BUS, "USB Bus"},
290         {PLDM_ENTITY_FIREWIRE_BUS, "FireWire Bus"},
291         {PLDM_ENTITY_SCSI_BUS, "SCSI Bus"},
292         {PLDM_ENTITY_SATA_SAS_BUS, "SATA/SAS Bus"},
293         {PLDM_ENTITY_PROC_FRONT_SIDE_BUS, "Processor/Front-side Bus"},
294         {PLDM_ENTITY_INTER_PROC_BUS, "Inter-processor Bus"},
295         {PLDM_ENTITY_CONNECTOR, "Connector"},
296         {PLDM_ENTITY_SLOT, "Slot"},
297         {PLDM_ENTITY_CABLE, "Cable(electrical or optical)"},
298         {PLDM_ENTITY_INTERCONNECT, "Interconnect"},
299         {PLDM_ENTITY_PLUG, "Plug"},
300         {PLDM_ENTITY_SOCKET, "Socket"},
301         {PLDM_ENTITY_SYSTEM_LOGICAL, "System (Logical)"},
302     };
303 
304     const std::map<uint16_t, std::string> stateSet = {
305         {PLDM_STATE_SET_HEALTH_STATE, "Health State"},
306         {PLDM_STATE_SET_AVAILABILITY, "Availability"},
307         {PLDM_STATE_SET_PREDICTIVE_CONDITION, "Predictive Condition"},
308         {PLDM_STATE_SET_REDUNDANCY_STATUS, "Redundancy Status"},
309         {PLDM_STATE_SET_HEALTH_REDUNDANCY_TREND, "Health/Redundancy Trend"},
310         {PLDM_STATE_SET_GROUP_RESOURCE_LEVEL, "Group Resource Level"},
311         {PLDM_STATE_SET_REDUNDANCY_ENTITY_ROLE, "Redundancy Entity Role"},
312         {PLDM_STATE_SET_OPERATIONAL_STATUS, "Operational Status"},
313         {PLDM_STATE_SET_OPERATIONAL_STRESS_STATUS, "Operational Stress Status"},
314         {PLDM_STATE_SET_OPERATIONAL_FAULT_STATUS, "Operational Fault Status"},
315         {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS,
316          "Operational Running Status"},
317         {PLDM_STATE_SET_OPERATIONAL_CONNECTION_STATUS,
318          "Operational Connection Status"},
319         {PLDM_STATE_SET_PRESENCE, "Presence"},
320         {PLDM_STATE_SET_PERFORMANCE, "Performance"},
321         {PLDM_STATE_SET_CONFIGURATION_STATE, "Configuration State"},
322         {PLDM_STATE_SET_CHANGED_CONFIGURATION, "Changed Configuration"},
323         {PLDM_STATE_SET_IDENTIFY_STATE, "Identify State"},
324         {PLDM_STATE_SET_VERSION, "Version"},
325         {PLDM_STATE_SET_ALARM_STATE, "Alarm State"},
326         {PLDM_STATE_SET_DEVICE_INITIALIZATION, "Device Initialization"},
327         {PLDM_STATE_SET_THERMAL_TRIP, "Thermal Trip"},
328         {PLDM_STATE_SET_HEARTBEAT, "Heartbeat"},
329         {PLDM_STATE_SET_LINK_STATE, "Link State"},
330         {PLDM_STATE_SET_SMOKE_STATE, "Smoke State"},
331         {PLDM_STATE_SET_HUMIDITY_STATE, "Humidity State"},
332         {PLDM_STATE_SET_DOOR_STATE, "Door State"},
333         {PLDM_STATE_SET_SWITCH_STATE, "Switch State"},
334         {PLDM_STATE_SET_LOCK_STATE, "Lock State"},
335         {PLDM_STATE_SET_PHYSICAL_SECURITY, "Physical Security"},
336         {PLDM_STATE_SET_DOCK_AUTHORIZATION, "Dock Authorization"},
337         {PLDM_STATE_SET_HW_SECURITY, "Hardware Security"},
338         {PLDM_STATE_SET_PHYSICAL_COMM_CONNECTION,
339          "Physical Communication Connection"},
340         {PLDM_STATE_SET_COMM_LEASH_STATUS, "Communication Leash Status"},
341         {PLDM_STATE_SET_FOREIGN_NW_DETECTION_STATUS,
342          "Foreign Network Detection Status"},
343         {PLDM_STATE_SET_PASSWORD_PROTECTED_ACCESS_SECURITY,
344          "Password-Protected Access Security"},
345         {PLDM_STATE_SET_SECURITY_ACCESS_PRIVILEGE_LEVEL,
346          "Security Access –PrivilegeLevel"},
347         {PLDM_STATE_SET_SESSION_AUDIT, "PLDM Session Audit"},
348         {PLDM_STATE_SET_SW_TERMINATION_STATUS, "Software Termination Status"},
349         {PLDM_STATE_SET_STORAGE_MEDIA_ACTIVITY, "Storage Media Activity"},
350         {PLDM_STATE_SET_BOOT_RESTART_CAUSE, "Boot/Restart Cause"},
351         {PLDM_STATE_SET_BOOT_RESTART_REQUEST, "Boot/Restart Request"},
352         {PLDM_STATE_SET_ENTITY_BOOT_STATUS, "Entity Boot Status"},
353         {PLDM_STATE_SET_BOOT_ERROR_STATUS, "Boot ErrorStatus"},
354         {PLDM_STATE_SET_BOOT_PROGRESS, "Boot Progress"},
355         {PLDM_STATE_SET_SYS_FIRMWARE_HANG, "System Firmware Hang"},
356         {PLDM_STATE_SET_POST_ERRORS, "POST Errors"},
357         {PLDM_STATE_SET_LOG_FILL_STATUS, "Log Fill Status"},
358         {PLDM_STATE_SET_LOG_FILTER_STATUS, "Log Filter Status"},
359         {PLDM_STATE_SET_LOG_TIMESTAMP_CHANGE, "Log Timestamp Change"},
360         {PLDM_STATE_SET_INTERRUPT_REQUESTED, "Interrupt Requested"},
361         {PLDM_STATE_SET_INTERRUPT_RECEIVED, "Interrupt Received"},
362         {PLDM_STATE_SET_DIAGNOSTIC_INTERRUPT_REQUESTED,
363          "Diagnostic Interrupt Requested"},
364         {PLDM_STATE_SET_DIAGNOSTIC_INTERRUPT_RECEIVED,
365          "Diagnostic Interrupt Received"},
366         {PLDM_STATE_SET_IO_CHANNEL_CHECK_NMI_REQUESTED,
367          "I/O Channel Check NMI Requested"},
368         {PLDM_STATE_SET_IO_CHANNEL_CHECK_NMI_RECEIVED,
369          "I/O Channel Check NMI Received"},
370         {PLDM_STATE_SET_FATAL_NMI_REQUESTED, "Fatal NMI Requested"},
371         {PLDM_STATE_SET_FATAL_NMI_RECEIVED, "Fatal NMI Received"},
372         {PLDM_STATE_SET_SOFTWARE_NMI_REQUESTED, "Software NMI Requested"},
373         {PLDM_STATE_SET_SOFTWARE_NMI_RECEIVED, "Software NMI Received"},
374         {PLDM_STATE_SET_SMI_REQUESTED, "SMI Requested"},
375         {PLDM_STATE_SET_SMI_RECEIVED, "SMI Received"},
376         {PLDM_STATE_SET_PCI_PERR_REQUESTED, "PCI PERR Requested"},
377         {PLDM_STATE_SET_PCI_PERR_RECEIVED, "PCI PERR Received"},
378         {PLDM_STATE_SET_PCI_SERR_REQUESTED, "PCI SERR Requested "},
379         {PLDM_STATE_SET_PCI_SERR_RECEIVED, "PCI SERR Received"},
380         {PLDM_STATE_SET_BUS_ERROR_STATUS, "Bus Error Status"},
381         {PLDM_STATE_SET_WATCHDOG_STATUS, "Watchdog Status"},
382         {PLDM_STATE_SET_POWER_SUPPLY_STATE, "Power Supply State"},
383         {PLDM_STATE_SET_DEVICE_POWER_STATE, "Device Power State"},
384         {PLDM_STATE_SET_ACPI_POWER_STATE, "ACPI Power State"},
385         {PLDM_STATE_SET_BACKUP_POWER_SOURCE, "Backup Power Source"},
386         {PLDM_STATE_SET_SYSTEM_POWER_STATE, "System Power State "},
387         {PLDM_STATE_SET_BATTERY_ACTIVITY, "Battery Activity"},
388         {PLDM_STATE_SET_BATTERY_STATE, "Battery State"},
389         {PLDM_STATE_SET_PROC_POWER_STATE, "Processor Power State"},
390         {PLDM_STATE_SET_POWER_PERFORMANCE_STATE, "Power-Performance State"},
391         {PLDM_STATE_SET_PROC_ERROR_STATUS, "Processor Error Status"},
392         {PLDM_STATE_SET_BIST_FAILURE_STATUS, "BIST FailureStatus"},
393         {PLDM_STATE_SET_IBIST_FAILURE_STATUS, "IBIST FailureStatus"},
394         {PLDM_STATE_SET_PROC_HANG_IN_POST, "Processor Hang in POST"},
395         {PLDM_STATE_SET_PROC_STARTUP_FAILURE, "Processor Startup Failure"},
396         {PLDM_STATE_SET_UNCORRECTABLE_CPU_ERROR, "Uncorrectable CPU Error"},
397         {PLDM_STATE_SET_MACHINE_CHECK_ERROR, "Machine Check Error"},
398         {PLDM_STATE_SET_CORRECTED_MACHINE_CHECK, "Corrected Machine Check"},
399         {PLDM_STATE_SET_CACHE_STATUS, "Cache Status"},
400         {PLDM_STATE_SET_MEMORY_ERROR_STATUS, "Memory Error Status"},
401         {PLDM_STATE_SET_REDUNDANT_MEMORY_ACTIVITY_STATUS,
402          "Redundant Memory Activity Status"},
403         {PLDM_STATE_SET_ERROR_DETECTION_STATUS, "Error Detection Status"},
404         {PLDM_STATE_SET_STUCK_BIT_STATUS, "Stuck Bit Status"},
405         {PLDM_STATE_SET_SCRUB_STATUS, "Scrub Status"},
406         {PLDM_STATE_SET_SLOT_OCCUPANCY, "Slot Occupancy"},
407         {PLDM_STATE_SET_SLOT_STATE, "Slot State"},
408     };
409 
410     const std::array<std::string_view, 4> sensorInit = {
411         "noInit", "useInitPDR", "enableSensor", "disableSensor"};
412 
413     const std::array<std::string_view, 4> effecterInit = {
414         "noInit", "useInitPDR", "enableEffecter", "disableEffecter"};
415 
416     const std::map<uint8_t, std::string> pdrType = {
417         {PLDM_TERMINUS_LOCATOR_PDR, "Terminus Locator PDR"},
418         {PLDM_NUMERIC_SENSOR_PDR, "Numeric Sensor PDR"},
419         {PLDM_NUMERIC_SENSOR_INITIALIZATION_PDR,
420          "Numeric Sensor Initialization PDR"},
421         {PLDM_STATE_SENSOR_PDR, "State Sensor PDR"},
422         {PLDM_STATE_SENSOR_INITIALIZATION_PDR,
423          "State Sensor Initialization PDR"},
424         {PLDM_SENSOR_AUXILIARY_NAMES_PDR, "Sensor Auxiliary Names PDR"},
425         {PLDM_OEM_UNIT_PDR, "OEM Unit PDR"},
426         {PLDM_OEM_STATE_SET_PDR, "OEM State Set PDR"},
427         {PLDM_NUMERIC_EFFECTER_PDR, "Numeric Effecter PDR"},
428         {PLDM_NUMERIC_EFFECTER_INITIALIZATION_PDR,
429          "Numeric Effecter Initialization PDR"},
430         {PLDM_STATE_EFFECTER_PDR, "State Effecter PDR"},
431         {PLDM_STATE_EFFECTER_INITIALIZATION_PDR,
432          "State Effecter Initialization PDR"},
433         {PLDM_EFFECTER_AUXILIARY_NAMES_PDR, "Effecter Auxiliary Names PDR"},
434         {PLDM_EFFECTER_OEM_SEMANTIC_PDR, "Effecter OEM Semantic PDR"},
435         {PLDM_PDR_ENTITY_ASSOCIATION, "Entity Association PDR"},
436         {PLDM_ENTITY_AUXILIARY_NAMES_PDR, "Entity Auxiliary Names PDR"},
437         {PLDM_OEM_ENTITY_ID_PDR, "OEM Entity ID PDR"},
438         {PLDM_INTERRUPT_ASSOCIATION_PDR, "Interrupt Association PDR"},
439         {PLDM_EVENT_LOG_PDR, "PLDM Event Log PDR"},
440         {PLDM_PDR_FRU_RECORD_SET, "FRU Record Set PDR"},
441         {PLDM_OEM_DEVICE_PDR, "OEM Device PDR"},
442         {PLDM_OEM_PDR, "OEM PDR"},
443     };
444 
445     static inline const std::map<uint8_t, std::string> setThermalTrip{
446         {PLDM_STATE_SET_THERMAL_TRIP_STATUS_NORMAL, "Normal"},
447         {PLDM_STATE_SET_THERMAL_TRIP_STATUS_THERMAL_TRIP, "Thermal Trip"}};
448 
449     static inline const std::map<uint8_t, std::string> setIdentifyState{
450         {PLDM_STATE_SET_IDENTIFY_STATE_UNASSERTED, "Identify State Unasserted"},
451         {PLDM_STATE_SET_IDENTIFY_STATE_ASSERTED, "Identify State Asserted"}};
452 
453     static inline const std::map<uint8_t, std::string> setBootProgressState{
454         {PLDM_STATE_SET_BOOT_PROG_STATE_NOT_ACTIVE, "Boot Not Active"},
455         {PLDM_STATE_SET_BOOT_PROG_STATE_COMPLETED, "Boot Completed"},
456         {PLDM_STATE_SET_BOOT_PROG_STATE_MEM_INITIALIZATION,
457          "Memory Initialization"},
458         {PLDM_STATE_SET_BOOT_PROG_STATE_SEC_PROC_INITIALIZATION,
459          "Secondary Processor(s) Initialization"},
460         {PLDM_STATE_SET_BOOT_PROG_STATE_PCI_RESORUCE_CONFIG,
461          "PCI Resource Configuration"},
462         {PLDM_STATE_SET_BOOT_PROG_STATE_STARTING_OP_SYS,
463          "Starting Operating System"},
464         {PLDM_STATE_SET_BOOT_PROG_STATE_BASE_BOARD_INITIALIZATION,
465          "Baseboard Initialization"},
466         {PLDM_STATE_SET_BOOT_PROG_STATE_PRIMARY_PROC_INITIALIZATION,
467          "Primary Processor Initialization"}};
468 
469     static inline const std::map<uint8_t, std::string> setOpFaultStatus{
470         {PLDM_STATE_SET_OPERATIONAL_FAULT_STATUS_NORMAL, "Normal"},
471         {PLDM_STATE_SET_OPERATIONAL_FAULT_STATUS_STRESSED, "Stressed"}};
472 
473     static inline const std::map<uint8_t, std::string> setSysPowerState{
474         {PLDM_STATE_SET_SYS_POWER_STATE_OFF_SOFT_GRACEFUL,
475          "Off-Soft Graceful"}};
476 
477     static inline const std::map<uint8_t, std::string> setSWTerminationStatus{
478         {PLDM_SW_TERM_GRACEFUL_RESTART_REQUESTED,
479          "Graceful Restart Requested"}};
480 
481     static inline const std::map<uint8_t, std::string> setAvailability{
482         {PLDM_STATE_SET_AVAILABILITY_REBOOTING, "Rebooting"}};
483 
484     static inline const std::map<uint8_t, std::string> setHealthState{
485         {PLDM_STATE_SET_HEALTH_STATE_NORMAL, "Normal"},
486         {PLDM_STATE_SET_HEALTH_STATE_NON_CRITICAL, "Non-Critical"},
487         {PLDM_STATE_SET_HEALTH_STATE_CRITICAL, "Critical"},
488         {PLDM_STATE_SET_HEALTH_STATE_FATAL, "Fatal"},
489         {PLDM_STATE_SET_HEALTH_STATE_UPPER_NON_CRITICAL, "Upper Non-Critical"},
490         {PLDM_STATE_SET_HEALTH_STATE_LOWER_NON_CRITICAL, "Lower Non-Critical"},
491         {PLDM_STATE_SET_HEALTH_STATE_UPPER_CRITICAL, "Upper Critical"},
492         {PLDM_STATE_SET_HEALTH_STATE_LOWER_CRITICAL, "Lower Critical"},
493         {PLDM_STATE_SET_HEALTH_STATE_UPPER_FATAL, "Upper Fatal"},
494         {PLDM_STATE_SET_HEALTH_STATE_LOWER_FATAL, "Lower Fatal"}};
495 
496     static inline const std::map<uint8_t, std::string>
497         setOperationalRunningState{
498             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS_STARTING, "Starting"},
499             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS_STOPPING, "Stopping"},
500             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS_STOPPED, "Stopped"},
501             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS_IN_SERVICE,
502              "In Service"},
503             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS_ABORTED, "Aborted"},
504             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS_DORMANT, "Dormant"}};
505 
506     static inline const std::map<uint16_t, const std::map<uint8_t, std::string>>
507         populatePStateMaps{
508             {PLDM_STATE_SET_THERMAL_TRIP, setThermalTrip},
509             {PLDM_STATE_SET_IDENTIFY_STATE, setIdentifyState},
510             {PLDM_STATE_SET_BOOT_PROGRESS, setBootProgressState},
511             {PLDM_STATE_SET_OPERATIONAL_FAULT_STATUS, setOpFaultStatus},
512             {PLDM_STATE_SET_SYSTEM_POWER_STATE, setSysPowerState},
513             {PLDM_STATE_SET_SW_TERMINATION_STATUS, setSWTerminationStatus},
514             {PLDM_STATE_SET_AVAILABILITY, setAvailability},
515             {PLDM_STATE_SET_HEALTH_STATE, setHealthState},
516             {PLDM_STATE_SET_OPERATIONAL_RUNNING_STATUS,
517              setOperationalRunningState},
518         };
519 
520     const std::map<std::string, uint8_t> strToPdrType = {
521         {"terminuslocator", PLDM_TERMINUS_LOCATOR_PDR},
522         {"statesensor", PLDM_STATE_SENSOR_PDR},
523         {"numericeffecter", PLDM_NUMERIC_EFFECTER_PDR},
524         {"stateeffecter", PLDM_STATE_EFFECTER_PDR},
525         {"entityassociation", PLDM_PDR_ENTITY_ASSOCIATION},
526         {"frurecord", PLDM_PDR_FRU_RECORD_SET},
527         // Add other types
528     };
529 
530     bool isLogicalBitSet(const uint16_t entity_type)
531     {
532         return entity_type & 0x8000;
533     }
534 
535     uint16_t getEntityTypeForLogicalEntity(const uint16_t logical_entity_type)
536     {
537         return logical_entity_type & 0x7FFF;
538     }
539 
540     std::string getEntityName(pldm::pdr::EntityType type)
541     {
542         uint16_t entityNumber = type;
543         std::string entityName = "[Physical] ";
544 
545         if (isLogicalBitSet(type))
546         {
547             entityName = "[Logical] ";
548             entityNumber = getEntityTypeForLogicalEntity(type);
549         }
550 
551         try
552         {
553             return entityName + entityType.at(entityNumber);
554         }
555         catch (const std::out_of_range& e)
556         {
557             auto OemString =
558                 std::to_string(static_cast<unsigned>(entityNumber));
559             if (type >= PLDM_OEM_ENTITY_TYPE_START &&
560                 type <= PLDM_OEM_ENTITY_TYPE_END)
561             {
562 #ifdef OEM_IBM
563                 if (OemIBMEntityType.contains(entityNumber))
564                 {
565                     return entityName + OemIBMEntityType.at(entityNumber) +
566                            "(OEM)";
567                 }
568 #endif
569                 return entityName + OemString + "(OEM)";
570             }
571             return OemString;
572         }
573     }
574 
575     std::string getStateSetName(uint16_t id)
576     {
577         auto typeString = std::to_string(id);
578         try
579         {
580             return stateSet.at(id) + "(" + typeString + ")";
581         }
582         catch (const std::out_of_range& e)
583         {
584             return typeString;
585         }
586     }
587 
588     std::vector<std::string>
589         getStateSetPossibleStateNames(uint16_t stateId,
590                                       const std::vector<uint8_t>& value)
591     {
592         std::vector<std::string> data{};
593         std::map<uint8_t, std::string> stateNameMaps;
594 
595         for (auto& s : value)
596         {
597             std::map<uint8_t, std::string> stateNameMaps;
598             auto pstr = std::to_string(s);
599 
600 #ifdef OEM_IBM
601             if (stateId >= PLDM_OEM_STATE_SET_START &&
602                 stateId <= PLDM_OEM_STATE_SET_END)
603             {
604                 if (populateOemIBMStateMaps.contains(stateId))
605                 {
606                     const std::map<uint8_t, std::string> stateNames =
607                         populateOemIBMStateMaps.at(stateId);
608                     stateNameMaps.insert(stateNames.begin(), stateNames.end());
609                 }
610             }
611 #endif
612             if (populatePStateMaps.contains(stateId))
613             {
614                 const std::map<uint8_t, std::string> stateNames =
615                     populatePStateMaps.at(stateId);
616                 stateNameMaps.insert(stateNames.begin(), stateNames.end());
617             }
618             if (stateNameMaps.contains(s))
619             {
620                 data.push_back(stateNameMaps.at(s) + "(" + pstr + ")");
621             }
622             else
623             {
624                 data.push_back(pstr);
625             }
626         }
627         return data;
628     }
629 
630     std::string getPDRType(uint8_t type)
631     {
632         auto typeString = std::to_string(type);
633         try
634         {
635             return pdrType.at(type);
636         }
637         catch (const std::out_of_range& e)
638         {
639             return typeString;
640         }
641     }
642 
643     void printCommonPDRHeader(const pldm_pdr_hdr* hdr, ordered_json& output)
644     {
645         output["recordHandle"] = hdr->record_handle;
646         output["PDRHeaderVersion"] = unsigned(hdr->version);
647         output["PDRType"] = getPDRType(hdr->type);
648         output["recordChangeNumber"] = hdr->record_change_num;
649         output["dataLength"] = hdr->length;
650     }
651 
652     std::vector<uint8_t> printPossibleStates(uint8_t possibleStatesSize,
653                                              const bitfield8_t* states)
654     {
655         uint8_t possibleStatesPos{};
656         std::vector<uint8_t> data{};
657         auto printStates = [&possibleStatesPos, &data](const bitfield8_t& val) {
658             std::stringstream pstates;
659             for (int i = 0; i < CHAR_BIT; i++)
660             {
661                 if (val.byte & (1 << i))
662                 {
663                     pstates << (possibleStatesPos * CHAR_BIT + i);
664                     data.push_back(
665                         static_cast<uint8_t>(std::stoi(pstates.str())));
666                     pstates.str("");
667                 }
668             }
669             possibleStatesPos++;
670         };
671         std::for_each(states, states + possibleStatesSize, printStates);
672         return data;
673     }
674 
675     void printStateSensorPDR(const uint8_t* data, ordered_json& output)
676     {
677         auto pdr = reinterpret_cast<const pldm_state_sensor_pdr*>(data);
678         output["PLDMTerminusHandle"] = pdr->terminus_handle;
679         output["sensorID"] = pdr->sensor_id;
680         output["entityType"] = getEntityName(pdr->entity_type);
681         output["entityInstanceNumber"] = pdr->entity_instance;
682         output["containerID"] = pdr->container_id;
683         output["sensorInit"] = sensorInit[pdr->sensor_init];
684         output["sensorAuxiliaryNamesPDR"] =
685             (pdr->sensor_auxiliary_names_pdr ? true : false);
686         output["compositeSensorCount"] = unsigned(pdr->composite_sensor_count);
687 
688         auto statesPtr = pdr->possible_states;
689         auto compCount = pdr->composite_sensor_count;
690 
691         while (compCount--)
692         {
693             auto state = reinterpret_cast<const state_sensor_possible_states*>(
694                 statesPtr);
695             output.emplace(("stateSetID[" + std::to_string(compCount) + "]"),
696                            getStateSetName(state->state_set_id));
697             output.emplace(
698                 ("possibleStatesSize[" + std::to_string(compCount) + "]"),
699                 state->possible_states_size);
700             output.emplace(
701                 ("possibleStates[" + std::to_string(compCount) + "]"),
702                 getStateSetPossibleStateNames(
703                     state->state_set_id,
704                     printPossibleStates(state->possible_states_size,
705                                         state->states)));
706 
707             if (compCount)
708             {
709                 statesPtr += sizeof(state_sensor_possible_states) +
710                              state->possible_states_size - 1;
711             }
712         }
713     }
714 
715     void printPDRFruRecordSet(uint8_t* data, ordered_json& output)
716     {
717         if (data == NULL)
718         {
719             return;
720         }
721 
722         data += sizeof(pldm_pdr_hdr);
723         pldm_pdr_fru_record_set* pdr =
724             reinterpret_cast<pldm_pdr_fru_record_set*>(data);
725         if (!pdr)
726         {
727             std::cerr << "Failed to get the FRU record set PDR" << std::endl;
728             return;
729         }
730 
731         output["PLDMTerminusHandle"] = unsigned(pdr->terminus_handle);
732         output["FRURecordSetIdentifier"] = unsigned(pdr->fru_rsi);
733         output["entityType"] = getEntityName(pdr->entity_type);
734         output["entityInstanceNumber"] = unsigned(pdr->entity_instance_num);
735         output["containerID"] = unsigned(pdr->container_id);
736     }
737 
738     void printPDREntityAssociation(uint8_t* data, ordered_json& output)
739     {
740         const std::map<uint8_t, const char*> assocationType = {
741             {PLDM_ENTITY_ASSOCIAION_PHYSICAL, "Physical"},
742             {PLDM_ENTITY_ASSOCIAION_LOGICAL, "Logical"},
743         };
744 
745         if (data == NULL)
746         {
747             return;
748         }
749 
750         data += sizeof(pldm_pdr_hdr);
751         pldm_pdr_entity_association* pdr =
752             reinterpret_cast<pldm_pdr_entity_association*>(data);
753         if (!pdr)
754         {
755             std::cerr << "Failed to get the PDR eneity association"
756                       << std::endl;
757             return;
758         }
759 
760         output["containerID"] = int(pdr->container_id);
761         if (assocationType.contains(pdr->association_type))
762         {
763             output["associationType"] =
764                 assocationType.at(pdr->association_type);
765         }
766         else
767         {
768             std::cout << "Get associationType failed.\n";
769         }
770         output["containerEntityType"] =
771             getEntityName(pdr->container.entity_type);
772         output["containerEntityInstanceNumber"] =
773             int(pdr->container.entity_instance_num);
774         output["containerEntityContainerID"] =
775             int(pdr->container.entity_container_id);
776         output["containedEntityCount"] =
777             static_cast<unsigned>(pdr->num_children);
778 
779         auto child = reinterpret_cast<pldm_entity*>(&pdr->children[0]);
780         for (int i = 0; i < pdr->num_children; ++i)
781         {
782             output.emplace("containedEntityType[" + std::to_string(i + 1) + "]",
783                            getEntityName(child->entity_type));
784             output.emplace("containedEntityInstanceNumber[" +
785                                std::to_string(i + 1) + "]",
786                            unsigned(child->entity_instance_num));
787             output.emplace("containedEntityContainerID[" +
788                                std::to_string(i + 1) + "]",
789                            unsigned(child->entity_container_id));
790 
791             ++child;
792         }
793     }
794 
795     void printNumericEffecterPDR(uint8_t* data, ordered_json& output)
796     {
797         struct pldm_numeric_effecter_value_pdr* pdr =
798             (struct pldm_numeric_effecter_value_pdr*)data;
799         if (!pdr)
800         {
801             std::cerr << "Failed to get numeric effecter PDR" << std::endl;
802             return;
803         }
804 
805         output["PLDMTerminusHandle"] = int(pdr->terminus_handle);
806         output["effecterID"] = int(pdr->effecter_id);
807         output["entityType"] = int(pdr->entity_type);
808         output["entityInstanceNumber"] = int(pdr->entity_instance);
809         output["containerID"] = int(pdr->container_id);
810         output["effecterSemanticID"] = int(pdr->effecter_semantic_id);
811         output["effecterInit"] = unsigned(pdr->effecter_init);
812         output["effecterAuxiliaryNames"] =
813             (unsigned(pdr->effecter_auxiliary_names) ? true : false);
814         output["baseUnit"] = unsigned(pdr->base_unit);
815         output["unitModifier"] = unsigned(pdr->unit_modifier);
816         output["rateUnit"] = unsigned(pdr->rate_unit);
817         output["baseOEMUnitHandle"] = unsigned(pdr->base_oem_unit_handle);
818         output["auxUnit"] = unsigned(pdr->aux_unit);
819         output["auxUnitModifier"] = unsigned(pdr->aux_unit_modifier);
820         output["auxrateUnit"] = unsigned(pdr->aux_rate_unit);
821         output["auxOEMUnitHandle"] = unsigned(pdr->aux_oem_unit_handle);
822         output["isLinear"] = (unsigned(pdr->is_linear) ? true : false);
823         output["effecterDataSize"] = unsigned(pdr->effecter_data_size);
824         output["resolution"] = unsigned(pdr->resolution);
825         output["offset"] = unsigned(pdr->offset);
826         output["accuracy"] = unsigned(pdr->accuracy);
827         output["plusTolerance"] = unsigned(pdr->plus_tolerance);
828         output["minusTolerance"] = unsigned(pdr->minus_tolerance);
829         output["stateTransitionInterval"] =
830             unsigned(pdr->state_transition_interval);
831         output["TransitionInterval"] = unsigned(pdr->transition_interval);
832 
833         switch (pdr->effecter_data_size)
834         {
835             case PLDM_EFFECTER_DATA_SIZE_UINT8:
836                 output["maxSettable"] = unsigned(pdr->max_set_table.value_u8);
837                 output["minSettable"] = unsigned(pdr->min_set_table.value_u8);
838                 break;
839             case PLDM_EFFECTER_DATA_SIZE_SINT8:
840                 output["maxSettable"] = unsigned(pdr->max_set_table.value_s8);
841                 output["minSettable"] = unsigned(pdr->min_set_table.value_s8);
842                 break;
843             case PLDM_EFFECTER_DATA_SIZE_UINT16:
844                 output["maxSettable"] = unsigned(pdr->max_set_table.value_u16);
845                 output["minSettable"] = unsigned(pdr->min_set_table.value_u16);
846                 break;
847             case PLDM_EFFECTER_DATA_SIZE_SINT16:
848                 output["maxSettable"] = unsigned(pdr->max_set_table.value_s16);
849                 output["minSettable"] = unsigned(pdr->min_set_table.value_s16);
850                 break;
851             case PLDM_EFFECTER_DATA_SIZE_UINT32:
852                 output["maxSettable"] = unsigned(pdr->max_set_table.value_u32);
853                 output["minSettable"] = unsigned(pdr->min_set_table.value_u32);
854                 break;
855             case PLDM_EFFECTER_DATA_SIZE_SINT32:
856                 output["maxSettable"] = unsigned(pdr->max_set_table.value_s32);
857                 output["minSettable"] = unsigned(pdr->min_set_table.value_s32);
858                 break;
859             default:
860                 break;
861         }
862 
863         output["rangeFieldFormat"] = unsigned(pdr->range_field_format);
864         output["rangeFieldSupport"] = unsigned(pdr->range_field_support.byte);
865 
866         switch (pdr->range_field_format)
867         {
868             case PLDM_RANGE_FIELD_FORMAT_UINT8:
869                 output["nominalValue"] = unsigned(pdr->nominal_value.value_u8);
870                 output["normalMax"] = unsigned(pdr->normal_max.value_u8);
871                 output["normalMin"] = unsigned(pdr->normal_min.value_u8);
872                 output["ratedMax"] = unsigned(pdr->rated_max.value_u8);
873                 output["ratedMin"] = unsigned(pdr->rated_min.value_u8);
874                 break;
875             case PLDM_RANGE_FIELD_FORMAT_SINT8:
876                 output["nominalValue"] = unsigned(pdr->nominal_value.value_s8);
877                 output["normalMax"] = unsigned(pdr->normal_max.value_s8);
878                 output["normalMin"] = unsigned(pdr->normal_min.value_s8);
879                 output["ratedMax"] = unsigned(pdr->rated_max.value_s8);
880                 output["ratedMin"] = unsigned(pdr->rated_min.value_s8);
881                 break;
882             case PLDM_RANGE_FIELD_FORMAT_UINT16:
883                 output["nominalValue"] = unsigned(pdr->nominal_value.value_u16);
884                 output["normalMax"] = unsigned(pdr->normal_max.value_u16);
885                 output["normalMin"] = unsigned(pdr->normal_min.value_u16);
886                 output["ratedMax"] = unsigned(pdr->rated_max.value_u16);
887                 output["ratedMin"] = unsigned(pdr->rated_min.value_u16);
888                 break;
889             case PLDM_RANGE_FIELD_FORMAT_SINT16:
890                 output["nominalValue"] = unsigned(pdr->nominal_value.value_s16);
891                 output["normalMax"] = unsigned(pdr->normal_max.value_s16);
892                 output["normalMin"] = unsigned(pdr->normal_min.value_s16);
893                 output["ratedMax"] = unsigned(pdr->rated_max.value_s16);
894                 output["ratedMin"] = unsigned(pdr->rated_min.value_s16);
895                 break;
896             case PLDM_RANGE_FIELD_FORMAT_UINT32:
897                 output["nominalValue"] = unsigned(pdr->nominal_value.value_u32);
898                 output["normalMax"] = unsigned(pdr->normal_max.value_u32);
899                 output["normalMin"] = unsigned(pdr->normal_min.value_u32);
900                 output["ratedMax"] = unsigned(pdr->rated_max.value_u32);
901                 output["ratedMin"] = unsigned(pdr->rated_min.value_u32);
902                 break;
903             case PLDM_RANGE_FIELD_FORMAT_SINT32:
904                 output["nominalValue"] = unsigned(pdr->nominal_value.value_s32);
905                 output["normalMax"] = unsigned(pdr->normal_max.value_s32);
906                 output["normalMin"] = unsigned(pdr->normal_min.value_s32);
907                 output["ratedMax"] = unsigned(pdr->rated_max.value_s32);
908                 output["ratedMin"] = unsigned(pdr->rated_min.value_s32);
909                 break;
910             case PLDM_RANGE_FIELD_FORMAT_REAL32:
911                 output["nominalValue"] = unsigned(pdr->nominal_value.value_f32);
912                 output["normalMax"] = unsigned(pdr->normal_max.value_f32);
913                 output["normalMin"] = unsigned(pdr->normal_min.value_f32);
914                 output["ratedMax"] = unsigned(pdr->rated_max.value_f32);
915                 output["ratedMin"] = unsigned(pdr->rated_min.value_f32);
916                 break;
917             default:
918                 break;
919         }
920     }
921 
922     void printStateEffecterPDR(const uint8_t* data, ordered_json& output)
923     {
924         auto pdr = reinterpret_cast<const pldm_state_effecter_pdr*>(data);
925 
926         output["PLDMTerminusHandle"] = pdr->terminus_handle;
927         output["effecterID"] = pdr->effecter_id;
928         output["entityType"] = getEntityName(pdr->entity_type);
929         output["entityInstanceNumber"] = pdr->entity_instance;
930         output["containerID"] = pdr->container_id;
931         output["effecterSemanticID"] = pdr->effecter_semantic_id;
932         output["effecterInit"] = effecterInit[pdr->effecter_init];
933         output["effecterDescriptionPDR"] =
934             (pdr->has_description_pdr ? true : false);
935         output["compositeEffecterCount"] =
936             unsigned(pdr->composite_effecter_count);
937 
938         auto statesPtr = pdr->possible_states;
939         auto compEffCount = pdr->composite_effecter_count;
940 
941         while (compEffCount--)
942         {
943             auto state =
944                 reinterpret_cast<const state_effecter_possible_states*>(
945                     statesPtr);
946             output.emplace(("stateSetID[" + std::to_string(compEffCount) + "]"),
947                            getStateSetName(state->state_set_id));
948             output.emplace(
949                 ("possibleStatesSize[" + std::to_string(compEffCount) + "]"),
950                 state->possible_states_size);
951             output.emplace(
952                 ("possibleStates[" + std::to_string(compEffCount) + "]"),
953                 getStateSetPossibleStateNames(
954                     state->state_set_id,
955                     printPossibleStates(state->possible_states_size,
956                                         state->states)));
957 
958             if (compEffCount)
959             {
960                 statesPtr += sizeof(state_effecter_possible_states) +
961                              state->possible_states_size - 1;
962             }
963         }
964     }
965 
966     void printTerminusLocatorPDR(const uint8_t* data, ordered_json& output)
967     {
968         const std::array<std::string_view, 4> terminusLocatorType = {
969             "UID", "MCTP_EID", "SMBusRelative", "systemSoftware"};
970 
971         auto pdr = reinterpret_cast<const pldm_terminus_locator_pdr*>(data);
972 
973         output["PLDMTerminusHandle"] = pdr->terminus_handle;
974         output["validity"] = (pdr->validity ? "valid" : "notValid");
975         output["TID"] = unsigned(pdr->tid);
976         output["containerID"] = pdr->container_id;
977         output["terminusLocatorType"] =
978             terminusLocatorType[pdr->terminus_locator_type];
979         output["terminusLocatorValueSize"] =
980             unsigned(pdr->terminus_locator_value_size);
981 
982         if (pdr->terminus_locator_type == PLDM_TERMINUS_LOCATOR_TYPE_MCTP_EID)
983         {
984             auto locatorValue =
985                 reinterpret_cast<const pldm_terminus_locator_type_mctp_eid*>(
986                     pdr->terminus_locator_value);
987             output["EID"] = unsigned(locatorValue->eid);
988         }
989     }
990 
991     void printPDRMsg(uint32_t& nextRecordHndl, const uint16_t respCnt,
992                      uint8_t* data)
993     {
994         if (data == NULL)
995         {
996             std::cerr << "Failed to get PDR message" << std::endl;
997             return;
998         }
999 
1000         ordered_json output;
1001         output["nextRecordHandle"] = nextRecordHndl;
1002         output["responseCount"] = respCnt;
1003 
1004         struct pldm_pdr_hdr* pdr = (struct pldm_pdr_hdr*)data;
1005         if (!pdr)
1006         {
1007             return;
1008         }
1009 
1010         if (!pdrRecType.empty())
1011         {
1012             // Need to return if the requested PDR type
1013             // is not supported
1014             if (!strToPdrType.contains(pdrRecType))
1015             {
1016                 std::cerr << "PDR type '" << pdrRecType
1017                           << "' is not supported or invalid\n";
1018                 // PDR type not supported, setting next record handle to 0
1019                 // to avoid looping through all PDR records
1020                 nextRecordHndl = 0;
1021                 return;
1022             }
1023 
1024             // Do not print PDR record if the current record
1025             // PDR type does not match with requested type
1026             if (pdr->type != strToPdrType.at(pdrRecType))
1027             {
1028                 return;
1029             }
1030         }
1031 
1032         printCommonPDRHeader(pdr, output);
1033 
1034         switch (pdr->type)
1035         {
1036             case PLDM_TERMINUS_LOCATOR_PDR:
1037                 printTerminusLocatorPDR(data, output);
1038                 break;
1039             case PLDM_STATE_SENSOR_PDR:
1040                 printStateSensorPDR(data, output);
1041                 break;
1042             case PLDM_NUMERIC_EFFECTER_PDR:
1043                 printNumericEffecterPDR(data, output);
1044                 break;
1045             case PLDM_STATE_EFFECTER_PDR:
1046                 printStateEffecterPDR(data, output);
1047                 break;
1048             case PLDM_PDR_ENTITY_ASSOCIATION:
1049                 printPDREntityAssociation(data, output);
1050                 break;
1051             case PLDM_PDR_FRU_RECORD_SET:
1052                 printPDRFruRecordSet(data, output);
1053                 break;
1054             default:
1055                 break;
1056         }
1057         pldmtool::helper::DisplayInJson(output);
1058     }
1059 
1060   private:
1061     uint32_t recordHandle;
1062     bool allPDRs;
1063     std::string pdrRecType;
1064 };
1065 
1066 class SetStateEffecter : public CommandInterface
1067 {
1068   public:
1069     ~SetStateEffecter() = default;
1070     SetStateEffecter() = delete;
1071     SetStateEffecter(const SetStateEffecter&) = delete;
1072     SetStateEffecter(SetStateEffecter&&) = default;
1073     SetStateEffecter& operator=(const SetStateEffecter&) = delete;
1074     SetStateEffecter& operator=(SetStateEffecter&&) = default;
1075 
1076     // compositeEffecterCount(value: 0x01 to 0x08) * stateField(2)
1077     static constexpr auto maxEffecterDataSize = 16;
1078 
1079     // compositeEffecterCount(value: 0x01 to 0x08)
1080     static constexpr auto minEffecterCount = 1;
1081     static constexpr auto maxEffecterCount = 8;
1082     explicit SetStateEffecter(const char* type, const char* name,
1083                               CLI::App* app) :
1084         CommandInterface(type, name, app)
1085     {
1086         app->add_option(
1087                "-i, --id", effecterId,
1088                "A handle that is used to identify and access the effecter")
1089             ->required();
1090         app->add_option("-c, --count", effecterCount,
1091                         "The number of individual sets of effecter information")
1092             ->required();
1093         app->add_option(
1094                "-d,--data", effecterData,
1095                "Set effecter state data\n"
1096                "eg: requestSet0 effecterState0 noChange1 dummyState1 ...")
1097             ->required();
1098     }
1099 
1100     std::pair<int, std::vector<uint8_t>> createRequestMsg() override
1101     {
1102         std::vector<uint8_t> requestMsg(
1103             sizeof(pldm_msg_hdr) + PLDM_SET_STATE_EFFECTER_STATES_REQ_BYTES);
1104         auto request = reinterpret_cast<pldm_msg*>(requestMsg.data());
1105 
1106         if (effecterCount > maxEffecterCount ||
1107             effecterCount < minEffecterCount)
1108         {
1109             std::cerr << "Request Message Error: effecterCount size "
1110                       << effecterCount << "is invalid\n";
1111             auto rc = PLDM_ERROR_INVALID_DATA;
1112             return {rc, requestMsg};
1113         }
1114 
1115         if (effecterData.size() > maxEffecterDataSize)
1116         {
1117             std::cerr << "Request Message Error: effecterData size "
1118                       << effecterData.size() << "is invalid\n";
1119             auto rc = PLDM_ERROR_INVALID_DATA;
1120             return {rc, requestMsg};
1121         }
1122 
1123         auto stateField = parseEffecterData(effecterData, effecterCount);
1124         if (!stateField)
1125         {
1126             std::cerr << "Failed to parse effecter data, effecterCount size "
1127                       << effecterCount << "\n";
1128             auto rc = PLDM_ERROR_INVALID_DATA;
1129             return {rc, requestMsg};
1130         }
1131 
1132         auto rc = encode_set_state_effecter_states_req(
1133             instanceId, effecterId, effecterCount, stateField->data(), request);
1134         return {rc, requestMsg};
1135     }
1136 
1137     void parseResponseMsg(pldm_msg* responsePtr, size_t payloadLength) override
1138     {
1139         uint8_t completionCode = 0;
1140         auto rc = decode_set_state_effecter_states_resp(
1141             responsePtr, payloadLength, &completionCode);
1142 
1143         if (rc != PLDM_SUCCESS || completionCode != PLDM_SUCCESS)
1144         {
1145             std::cerr << "Response Message Error: "
1146                       << "rc=" << rc << ",cc=" << (int)completionCode << "\n";
1147             return;
1148         }
1149 
1150         ordered_json data;
1151         data["Response"] = "SUCCESS";
1152         pldmtool::helper::DisplayInJson(data);
1153     }
1154 
1155   private:
1156     uint16_t effecterId;
1157     uint8_t effecterCount;
1158     std::vector<uint8_t> effecterData;
1159 };
1160 
1161 class SetNumericEffecterValue : public CommandInterface
1162 {
1163   public:
1164     ~SetNumericEffecterValue() = default;
1165     SetNumericEffecterValue() = delete;
1166     SetNumericEffecterValue(const SetNumericEffecterValue&) = delete;
1167     SetNumericEffecterValue(SetNumericEffecterValue&&) = default;
1168     SetNumericEffecterValue& operator=(const SetNumericEffecterValue&) = delete;
1169     SetNumericEffecterValue& operator=(SetNumericEffecterValue&&) = default;
1170 
1171     explicit SetNumericEffecterValue(const char* type, const char* name,
1172                                      CLI::App* app) :
1173         CommandInterface(type, name, app)
1174     {
1175         app->add_option(
1176                "-i, --id", effecterId,
1177                "A handle that is used to identify and access the effecter")
1178             ->required();
1179         app->add_option("-s, --size", effecterDataSize,
1180                         "The bit width and format of the setting value for the "
1181                         "effecter. enum value: {uint8, sint8, uint16, sint16, "
1182                         "uint32, sint32}\n")
1183             ->required();
1184         app->add_option("-d,--data", maxEffecterValue,
1185                         "The setting value of numeric effecter being "
1186                         "requested\n")
1187             ->required();
1188     }
1189 
1190     std::pair<int, std::vector<uint8_t>> createRequestMsg() override
1191     {
1192         std::vector<uint8_t> requestMsg(
1193             sizeof(pldm_msg_hdr) +
1194             PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 3);
1195 
1196         uint8_t* effecterValue = (uint8_t*)&maxEffecterValue;
1197 
1198         auto request = reinterpret_cast<pldm_msg*>(requestMsg.data());
1199         size_t payload_length = PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES;
1200 
1201         if (effecterDataSize == PLDM_EFFECTER_DATA_SIZE_UINT16 ||
1202             effecterDataSize == PLDM_EFFECTER_DATA_SIZE_SINT16)
1203         {
1204             payload_length = PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 1;
1205         }
1206         if (effecterDataSize == PLDM_EFFECTER_DATA_SIZE_UINT32 ||
1207             effecterDataSize == PLDM_EFFECTER_DATA_SIZE_SINT32)
1208         {
1209             payload_length = PLDM_SET_NUMERIC_EFFECTER_VALUE_MIN_REQ_BYTES + 3;
1210         }
1211         auto rc = encode_set_numeric_effecter_value_req(
1212             0, effecterId, effecterDataSize, effecterValue, request,
1213             payload_length);
1214 
1215         return {rc, requestMsg};
1216     }
1217 
1218     void parseResponseMsg(pldm_msg* responsePtr, size_t payloadLength) override
1219     {
1220         uint8_t completionCode = 0;
1221         auto rc = decode_set_numeric_effecter_value_resp(
1222             responsePtr, payloadLength, &completionCode);
1223 
1224         if (rc != PLDM_SUCCESS || completionCode != PLDM_SUCCESS)
1225         {
1226             std::cerr << "Response Message Error: "
1227                       << "rc=" << rc << ",cc=" << (int)completionCode
1228                       << std::endl;
1229             return;
1230         }
1231 
1232         ordered_json data;
1233         data["Response"] = "SUCCESS";
1234         pldmtool::helper::DisplayInJson(data);
1235     }
1236 
1237   private:
1238     uint16_t effecterId;
1239     uint8_t effecterDataSize;
1240     uint64_t maxEffecterValue;
1241 };
1242 
1243 class GetStateSensorReadings : public CommandInterface
1244 {
1245   public:
1246     ~GetStateSensorReadings() = default;
1247     GetStateSensorReadings() = delete;
1248     GetStateSensorReadings(const GetStateSensorReadings&) = delete;
1249     GetStateSensorReadings(GetStateSensorReadings&&) = default;
1250     GetStateSensorReadings& operator=(const GetStateSensorReadings&) = delete;
1251     GetStateSensorReadings& operator=(GetStateSensorReadings&&) = default;
1252 
1253     explicit GetStateSensorReadings(const char* type, const char* name,
1254                                     CLI::App* app) :
1255         CommandInterface(type, name, app)
1256     {
1257         app->add_option(
1258                "-i, --sensor_id", sensorId,
1259                "Sensor ID that is used to identify and access the sensor")
1260             ->required();
1261         app->add_option("-r, --rearm", sensorRearm,
1262                         "Each bit location in this field corresponds to a "
1263                         "particular sensor")
1264             ->required();
1265     }
1266 
1267     std::pair<int, std::vector<uint8_t>> createRequestMsg() override
1268     {
1269         std::vector<uint8_t> requestMsg(
1270             sizeof(pldm_msg_hdr) + PLDM_GET_STATE_SENSOR_READINGS_REQ_BYTES);
1271         auto request = reinterpret_cast<pldm_msg*>(requestMsg.data());
1272 
1273         uint8_t reserved = 0;
1274         bitfield8_t bf;
1275         bf.byte = sensorRearm;
1276         auto rc = encode_get_state_sensor_readings_req(instanceId, sensorId, bf,
1277                                                        reserved, request);
1278 
1279         return {rc, requestMsg};
1280     }
1281 
1282     void parseResponseMsg(pldm_msg* responsePtr, size_t payloadLength) override
1283     {
1284         uint8_t completionCode = 0;
1285         uint8_t compSensorCount = 0;
1286         std::array<get_sensor_state_field, 8> stateField{};
1287         auto rc = decode_get_state_sensor_readings_resp(
1288             responsePtr, payloadLength, &completionCode, &compSensorCount,
1289             stateField.data());
1290 
1291         if (rc != PLDM_SUCCESS || completionCode != PLDM_SUCCESS)
1292         {
1293             std::cerr << "Response Message Error: "
1294                       << "rc=" << rc << ",cc=" << (int)completionCode
1295                       << std::endl;
1296             return;
1297         }
1298         ordered_json output;
1299         output["compositeSensorCount"] = (int)compSensorCount;
1300 
1301         for (size_t i = 0; i < compSensorCount; i++)
1302         {
1303             if (sensorOpState.contains(stateField[i].sensor_op_state))
1304             {
1305                 output.emplace(("sensorOpState[" + std::to_string(i) + "]"),
1306                                sensorOpState.at(stateField[i].sensor_op_state));
1307             }
1308 
1309             if (sensorPresState.contains(stateField[i].present_state))
1310             {
1311                 output.emplace(("presentState[" + std::to_string(i) + "]"),
1312                                sensorPresState.at(stateField[i].present_state));
1313             }
1314 
1315             if (sensorPresState.contains(stateField[i].previous_state))
1316             {
1317                 output.emplace(
1318                     ("previousState[" + std::to_string(i) + "]"),
1319                     sensorPresState.at(stateField[i].previous_state));
1320             }
1321 
1322             if (sensorPresState.contains(stateField[i].event_state))
1323             {
1324                 output.emplace(("eventState[" + std::to_string(i) + "]"),
1325                                sensorPresState.at(stateField[i].event_state));
1326             }
1327         }
1328 
1329         pldmtool::helper::DisplayInJson(output);
1330     }
1331 
1332   private:
1333     uint16_t sensorId;
1334     uint8_t sensorRearm;
1335 };
1336 
1337 void registerCommand(CLI::App& app)
1338 {
1339     auto platform = app.add_subcommand("platform", "platform type command");
1340     platform->require_subcommand(1);
1341 
1342     auto getPDR =
1343         platform->add_subcommand("GetPDR", "get platform descriptor records");
1344     commands.push_back(std::make_unique<GetPDR>("platform", "getPDR", getPDR));
1345 
1346     auto setStateEffecterStates = platform->add_subcommand(
1347         "SetStateEffecterStates", "set effecter states");
1348     commands.push_back(std::make_unique<SetStateEffecter>(
1349         "platform", "setStateEffecterStates", setStateEffecterStates));
1350 
1351     auto setNumericEffecterValue = platform->add_subcommand(
1352         "SetNumericEffecterValue", "set the value for a PLDM Numeric Effecter");
1353     commands.push_back(std::make_unique<SetNumericEffecterValue>(
1354         "platform", "setNumericEffecterValue", setNumericEffecterValue));
1355 
1356     auto getStateSensorReadings = platform->add_subcommand(
1357         "GetStateSensorReadings", "get the state sensor readings");
1358     commands.push_back(std::make_unique<GetStateSensorReadings>(
1359         "platform", "getStateSensorReadings", getStateSensorReadings));
1360 }
1361 
1362 } // namespace platform
1363 } // namespace pldmtool
1364