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Lawrence Tang2800cd82022-07-05 16:08:20 +01001/**
2 * Describes functions for converting ARM CPER sections from binary and JSON format
3 * into an intermediate format.
4 *
5 * Author: Lawrence.Tang@arm.com
6 **/
7
8#include <stdio.h>
9#include "json.h"
Lawrence Tangd7e8ca32022-07-07 10:25:53 +010010#include "b64.h"
Lawrence Tang2800cd82022-07-05 16:08:20 +010011#include "../edk/Cper.h"
12#include "../cper-utils.h"
13#include "cper-section-arm.h"
14
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010015//Private pre-definitions.
Lawrence Tang7f21db62022-07-06 11:09:39 +010016json_object* cper_arm_error_info_to_ir(EFI_ARM_ERROR_INFORMATION_ENTRY* error_info);
17json_object* cper_arm_processor_context_to_ir(EFI_ARM_CONTEXT_INFORMATION_HEADER* header, void** cur_pos);
18json_object* cper_arm_cache_tlb_error_to_ir(EFI_ARM_CACHE_ERROR_STRUCTURE* cache_tlb_error, EFI_ARM_ERROR_INFORMATION_ENTRY* error_info);
19json_object* cper_arm_bus_error_to_ir(EFI_ARM_BUS_ERROR_STRUCTURE* bus_error);
20json_object* cper_arm_misc_register_array_to_ir(EFI_ARM_MISC_CONTEXT_REGISTER* misc_register);
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010021
Lawrence Tang2800cd82022-07-05 16:08:20 +010022//Converts the given processor-generic CPER section into JSON IR.
23json_object* cper_section_arm_to_ir(void* section, EFI_ERROR_SECTION_DESCRIPTOR* descriptor)
24{
Lawrence Tang7f21db62022-07-06 11:09:39 +010025 EFI_ARM_ERROR_RECORD* record = (EFI_ARM_ERROR_RECORD*)section;
Lawrence Tang2800cd82022-07-05 16:08:20 +010026 json_object* section_ir = json_object_new_object();
27
28 //Validation bits.
Lawrence Tang7f21db62022-07-06 11:09:39 +010029 json_object* validation = bitfield_to_ir(record->ValidFields, 4, ARM_ERROR_VALID_BITFIELD_NAMES);
Lawrence Tang2800cd82022-07-05 16:08:20 +010030 json_object_object_add(section_ir, "validationBits", validation);
31
32 //Number of error info and context info structures, and length.
33 json_object_object_add(section_ir, "errorInfoNum", json_object_new_int(record->ErrInfoNum));
34 json_object_object_add(section_ir, "contextInfoNum", json_object_new_int(record->ContextInfoNum));
35 json_object_object_add(section_ir, "sectionLength", json_object_new_int(record->SectionLength));
36
37 //Error affinity.
38 json_object* error_affinity = json_object_new_object();
39 json_object_object_add(error_affinity, "value", json_object_new_int(record->ErrorAffinityLevel));
40 json_object_object_add(error_affinity, "type",
41 json_object_new_string(record->ErrorAffinityLevel < 4 ? "Vendor Defined" : "Reserved"));
42 json_object_object_add(section_ir, "errorAffinity", error_affinity);
43
44 //Processor ID (MPIDR_EL1) and chip ID (MIDR_EL1).
45 json_object_object_add(section_ir, "mpidrEl1", json_object_new_uint64(record->MPIDR_EL1));
46 json_object_object_add(section_ir, "midrEl1", json_object_new_uint64(record->MIDR_EL1));
47
48 //Whether the processor is running, and the state of it if so.
49 json_object_object_add(section_ir, "running", json_object_new_boolean(record->RunningState));
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010050 if (record->RunningState >> 31)
Lawrence Tang2800cd82022-07-05 16:08:20 +010051 {
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010052 //Bit 32 of running state is on, so PSCI state information is included.
Lawrence Tang27217392022-07-07 11:55:39 +010053 //This can't be made human readable, as it is unknown whether this will be the pre-PSCI 1.0 format
54 //or the newer Extended StateID format.
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010055 json_object_object_add(section_ir, "psciState", json_object_new_int(record->PsciState));
Lawrence Tang2800cd82022-07-05 16:08:20 +010056 }
57
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010058 //Processor error structures.
59 json_object* error_info_array = json_object_new_array();
Lawrence Tang7f21db62022-07-06 11:09:39 +010060 EFI_ARM_ERROR_INFORMATION_ENTRY* cur_error = (EFI_ARM_ERROR_INFORMATION_ENTRY*)(record + 1);
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010061 for (int i=0; i<record->ErrInfoNum; i++)
62 {
Lawrence Tang7f21db62022-07-06 11:09:39 +010063 json_object_array_add(error_info_array, cper_arm_error_info_to_ir(cur_error));
64 cur_error++;
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010065 }
Lawrence Tang7f21db62022-07-06 11:09:39 +010066 json_object_object_add(section_ir, "errorInfo", error_info_array);
67
68 //Processor context structures.
69 //The current position is moved within the processing, as it is a dynamic size structure.
70 void* cur_pos = (void*)cur_error;
71 EFI_ARM_CONTEXT_INFORMATION_HEADER* header = (EFI_ARM_CONTEXT_INFORMATION_HEADER*)cur_error;
72 json_object* processor_context = cper_arm_processor_context_to_ir(header, &cur_pos);
73
74 //Is there any vendor-specific information following?
75 if (cur_pos < section + record->SectionLength)
76 {
Lawrence Tangd7e8ca32022-07-07 10:25:53 +010077 json_object* vendor_specific = json_object_new_object();
78 char* encoded = b64_encode((unsigned char*)cur_pos, section + record->SectionLength - cur_pos);
79 json_object_object_add(vendor_specific, "data", json_object_new_string(encoded));
80 free(encoded);
81
82 json_object_object_add(section_ir, "vendorSpecificInfo", vendor_specific);
Lawrence Tang7f21db62022-07-06 11:09:39 +010083 }
84
Lawrence Tang2800cd82022-07-05 16:08:20 +010085 return section_ir;
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010086}
87
88//Converts a single ARM Process Error Information structure into JSON IR.
Lawrence Tang7f21db62022-07-06 11:09:39 +010089json_object* cper_arm_error_info_to_ir(EFI_ARM_ERROR_INFORMATION_ENTRY* error_info)
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010090{
91 json_object* error_info_ir = json_object_new_object();
92
93 //Version, length.
94 json_object_object_add(error_info_ir, "version", json_object_new_int(error_info->Version));
Lawrence Tang7f21db62022-07-06 11:09:39 +010095 json_object_object_add(error_info_ir, "length", json_object_new_int(error_info->Length));
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010096
97 //Validation bitfield.
Lawrence Tang7f21db62022-07-06 11:09:39 +010098 json_object* validation = bitfield_to_ir(error_info->ValidationBits, 5, ARM_ERROR_INFO_ENTRY_VALID_BITFIELD_NAMES);
Lawrence Tang3d0e4f22022-07-05 17:17:41 +010099 json_object_object_add(error_info_ir, "validationBits", validation);
100
101 //The type of error information in this log.
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100102 json_object* error_type = integer_to_readable_pair(error_info->Type, 4,
Lawrence Tang7f21db62022-07-06 11:09:39 +0100103 ARM_ERROR_INFO_ENTRY_INFO_TYPES_KEYS,
104 ARM_ERROR_INFO_ENTRY_INFO_TYPES_VALUES,
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100105 "Unknown (Reserved)");
106 json_object_object_add(error_info_ir, "errorType", error_type);
107
108 //Multiple error count.
Lawrence Tang22a467c2022-07-05 17:21:06 +0100109 json_object* multiple_error = json_object_new_object();
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100110 json_object_object_add(multiple_error, "value", json_object_new_int(error_info->MultipleError));
111 json_object_object_add(multiple_error, "type",
112 json_object_new_string(error_info->MultipleError < 1 ? "Single Error" : "Multiple Errors"));
113 json_object_object_add(error_info_ir, "multipleError", multiple_error);
114
115 //Flags.
Lawrence Tang7f21db62022-07-06 11:09:39 +0100116 json_object* flags = bitfield_to_ir(error_info->Flags, 4, ARM_ERROR_INFO_ENTRY_FLAGS_NAMES);
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100117 json_object_object_add(error_info_ir, "flags", flags);
118
119 //Error information, split by type.
120 json_object* error_subinfo = NULL;
121 switch (error_info->Type)
122 {
123 case 0: //Cache
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100124 case 1: //TLB
Lawrence Tang7f21db62022-07-06 11:09:39 +0100125 error_subinfo = cper_arm_cache_tlb_error_to_ir((EFI_ARM_CACHE_ERROR_STRUCTURE*)&error_info->ErrorInformation, error_info);
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100126 break;
127 case 2: //Bus
Lawrence Tang7f21db62022-07-06 11:09:39 +0100128 error_subinfo = cper_arm_bus_error_to_ir((EFI_ARM_BUS_ERROR_STRUCTURE*)&error_info->ErrorInformation);
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100129 break;
130 }
131 json_object_object_add(error_info_ir, "errorInformation", error_subinfo);
132
Lawrence Tangb98ec662022-07-06 16:50:21 +0100133 //Virtual fault address, physical fault address.
134 json_object_object_add(error_info_ir, "virtualFaultAddress", json_object_new_uint64(error_info->VirtualFaultAddress));
135 json_object_object_add(error_info_ir, "physicalFaultAddress", json_object_new_uint64(error_info->PhysicalFaultAddress));
136
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100137 return error_info_ir;
138}
139
Lawrence Tang7f21db62022-07-06 11:09:39 +0100140//Converts a single ARM cache/TLB error information structure into JSON IR format.
141json_object* cper_arm_cache_tlb_error_to_ir(EFI_ARM_CACHE_ERROR_STRUCTURE* cache_tlb_error, EFI_ARM_ERROR_INFORMATION_ENTRY* error_info)
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100142{
Lawrence Tang7f21db62022-07-06 11:09:39 +0100143 json_object* cache_tlb_error_ir = json_object_new_object();
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100144
Lawrence Tang7f21db62022-07-06 11:09:39 +0100145 //Validation bitfield.
146 json_object* validation = bitfield_to_ir(cache_tlb_error->ValidationBits, 7, ARM_CACHE_TLB_ERROR_VALID_BITFIELD_NAMES);
147 json_object_object_add(cache_tlb_error_ir, "validationBits", validation);
148
149 //Transaction type.
150 json_object* transaction_type = integer_to_readable_pair(cache_tlb_error->TransactionType, 3,
151 ARM_ERROR_TRANSACTION_TYPES_KEYS,
152 ARM_ERROR_TRANSACTION_TYPES_VALUES,
153 "Unknown (Reserved)");
154 json_object_object_add(cache_tlb_error_ir, "transactionType", transaction_type);
155
156 //Operation.
Lawrence Tang7f21db62022-07-06 11:09:39 +0100157 json_object* operation;
158 if (error_info->Type == 0)
159 {
160 //Cache operation.
161 operation = integer_to_readable_pair(cache_tlb_error->Operation, 11,
162 ARM_CACHE_BUS_OPERATION_TYPES_KEYS,
163 ARM_CACHE_BUS_OPERATION_TYPES_VALUES,
164 "Unknown (Reserved)");
165 }
166 else
167 {
168 //TLB operation.
169 operation = integer_to_readable_pair(cache_tlb_error->Operation, 9,
170 ARM_TLB_OPERATION_TYPES_KEYS,
171 ARM_TLB_OPERATION_TYPES_VALUES,
172 "Unknown (Reserved)");
173 }
174 json_object_object_add(cache_tlb_error_ir, "operation", operation);
175
176 //Miscellaneous remaining fields.
177 json_object_object_add(cache_tlb_error_ir, "level", json_object_new_int(cache_tlb_error->Level));
178 json_object_object_add(cache_tlb_error_ir, "processorContextCorrupt", json_object_new_boolean(cache_tlb_error->ProcessorContextCorrupt));
179 json_object_object_add(cache_tlb_error_ir, "corrected", json_object_new_boolean(cache_tlb_error->Corrected));
180 json_object_object_add(cache_tlb_error_ir, "precisePC", json_object_new_boolean(cache_tlb_error->PrecisePC));
181 json_object_object_add(cache_tlb_error_ir, "restartablePC", json_object_new_boolean(cache_tlb_error->RestartablePC));
182 return cache_tlb_error_ir;
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100183}
184
185//Converts a single ARM bus error information structure into JSON IR format.
Lawrence Tang7f21db62022-07-06 11:09:39 +0100186json_object* cper_arm_bus_error_to_ir(EFI_ARM_BUS_ERROR_STRUCTURE* bus_error)
Lawrence Tang3d0e4f22022-07-05 17:17:41 +0100187{
Lawrence Tang7f21db62022-07-06 11:09:39 +0100188 json_object* bus_error_ir = json_object_new_object();
189
190 //Validation bits.
191 json_object* validation = bitfield_to_ir(bus_error->ValidationBits, 7, ARM_BUS_ERROR_VALID_BITFIELD_NAMES);
192 json_object_object_add(bus_error_ir, "validationBits", validation);
193
194 //Transaction type.
195 json_object* transaction_type = integer_to_readable_pair(bus_error->TransactionType, 3,
196 ARM_ERROR_TRANSACTION_TYPES_KEYS,
197 ARM_ERROR_TRANSACTION_TYPES_VALUES,
198 "Unknown (Reserved)");
199 json_object_object_add(bus_error_ir, "transactionType", transaction_type);
200
201 //Operation.
202 json_object* operation = integer_to_readable_pair(bus_error->Operation, 7,
203 ARM_CACHE_BUS_OPERATION_TYPES_KEYS,
204 ARM_CACHE_BUS_OPERATION_TYPES_VALUES,
205 "Unknown (Reserved)");
206 json_object_object_add(bus_error_ir, "operation", operation);
207
208 //Affinity level of bus error, + miscellaneous fields.
209 json_object_object_add(bus_error_ir, "level", json_object_new_int(bus_error->Level));
210 json_object_object_add(bus_error_ir, "processorContextCorrupt", json_object_new_boolean(bus_error->ProcessorContextCorrupt));
211 json_object_object_add(bus_error_ir, "corrected", json_object_new_boolean(bus_error->Corrected));
212 json_object_object_add(bus_error_ir, "precisePC", json_object_new_boolean(bus_error->PrecisePC));
213 json_object_object_add(bus_error_ir, "restartablePC", json_object_new_boolean(bus_error->RestartablePC));
214 json_object_object_add(bus_error_ir, "timedOut", json_object_new_boolean(bus_error->TimeOut));
215
216 //Participation type.
217 json_object* participation_type = integer_to_readable_pair(bus_error->ParticipationType, 4,
218 ARM_BUS_PARTICIPATION_TYPES_KEYS,
219 ARM_BUS_PARTICIPATION_TYPES_VALUES,
220 "Unknown");
221 json_object_object_add(bus_error_ir, "participationType", participation_type);
222
223 //Address space.
224 json_object* address_space = integer_to_readable_pair(bus_error->AddressSpace, 3,
225 ARM_BUS_ADDRESS_SPACE_TYPES_KEYS,
226 ARM_BUS_ADDRESS_SPACE_TYPES_VALUES,
227 "Unknown");
228 json_object_object_add(bus_error_ir, "addressSpace", address_space);
229
230 //Memory access attributes.
231 //todo: find the specification of these in the ARM ARM
232 //...
233
234 //Access Mode
235 json_object* access_mode = json_object_new_object();
236 json_object_object_add(access_mode, "value", json_object_new_int(bus_error->AccessMode));
237 json_object_object_add(access_mode, "name", json_object_new_string(bus_error->AccessMode == 0 ? "Secure" : "Normal"));
238 json_object_object_add(bus_error_ir, "accessMode", access_mode);
239
240 return bus_error_ir;
241}
242
243//Converts a single ARM processor context block into JSON IR.
244json_object* cper_arm_processor_context_to_ir(EFI_ARM_CONTEXT_INFORMATION_HEADER* header, void** cur_pos)
245{
246 json_object* context_ir = json_object_new_object();
247
248 //Add the context type.
249 json_object* context_type = integer_to_readable_pair(header->RegisterContextType, 9,
250 ARM_PROCESSOR_INFO_REGISTER_CONTEXT_TYPES_KEYS,
251 ARM_PROCESSOR_INFO_REGISTER_CONTEXT_TYPES_VALUES,
252 "Unknown (Reserved)");
253 json_object_object_add(context_ir, "registerContextType", context_type);
254
255 //Register array size (bytes).
256 json_object_object_add(context_ir, "registerArraySize", json_object_new_uint64(header->RegisterArraySize));
257
258 //The register array itself.
259 *cur_pos = (void*)(header + 1);
260 json_object* register_array = NULL;
261 switch (header->RegisterContextType)
262 {
263 case EFI_ARM_CONTEXT_TYPE_AARCH32_GPR:
264 register_array = uniform_struct_to_ir((UINT32*)cur_pos,
265 sizeof(EFI_ARM_V8_AARCH32_GPR) / sizeof(UINT32), ARM_AARCH32_GPR_NAMES);
266 break;
267 case EFI_ARM_CONTEXT_TYPE_AARCH32_EL1:
268 register_array = uniform_struct_to_ir((UINT32*)cur_pos,
269 sizeof(EFI_ARM_AARCH32_EL1_CONTEXT_REGISTERS) / sizeof(UINT32), ARM_AARCH32_EL1_REGISTER_NAMES);
270 break;
271 case EFI_ARM_CONTEXT_TYPE_AARCH32_EL2:
272 register_array = uniform_struct_to_ir((UINT32*)cur_pos,
273 sizeof(EFI_ARM_AARCH32_EL2_CONTEXT_REGISTERS) / sizeof(UINT32), ARM_AARCH32_EL2_REGISTER_NAMES);
274 break;
275 case EFI_ARM_CONTEXT_TYPE_AARCH32_SECURE:
276 register_array = uniform_struct_to_ir((UINT32*)cur_pos,
277 sizeof(EFI_ARM_AARCH32_SECURE_CONTEXT_REGISTERS) / sizeof(UINT32), ARM_AARCH32_SECURE_REGISTER_NAMES);
278 break;
279 case EFI_ARM_CONTEXT_TYPE_AARCH64_GPR:
280 register_array = uniform_struct64_to_ir((UINT64*)cur_pos,
281 sizeof(EFI_ARM_V8_AARCH64_GPR) / sizeof(UINT64), ARM_AARCH64_GPR_NAMES);
282 break;
283 case EFI_ARM_CONTEXT_TYPE_AARCH64_EL1:
284 register_array = uniform_struct64_to_ir((UINT64*)cur_pos,
285 sizeof(EFI_ARM_AARCH64_EL1_CONTEXT_REGISTERS) / sizeof(UINT64), ARM_AARCH64_EL1_REGISTER_NAMES);
286 break;
287 case EFI_ARM_CONTEXT_TYPE_AARCH64_EL2:
288 register_array = uniform_struct64_to_ir((UINT64*)cur_pos,
289 sizeof(EFI_ARM_AARCH64_EL2_CONTEXT_REGISTERS) / sizeof(UINT64), ARM_AARCH64_EL2_REGISTER_NAMES);
290 break;
291 case EFI_ARM_CONTEXT_TYPE_AARCH64_EL3:
292 register_array = uniform_struct64_to_ir((UINT64*)cur_pos,
293 sizeof(EFI_ARM_AARCH64_EL3_CONTEXT_REGISTERS) / sizeof(UINT64), ARM_AARCH64_EL3_REGISTER_NAMES);
294 break;
295 case EFI_ARM_CONTEXT_TYPE_MISC:
296 register_array = cper_arm_misc_register_array_to_ir((EFI_ARM_MISC_CONTEXT_REGISTER*)cur_pos);
297 break;
298 default:
Lawrence Tangd7e8ca32022-07-07 10:25:53 +0100299 //Unknown register array type, add as base64 data instead.
Lawrence Tang7f21db62022-07-06 11:09:39 +0100300 register_array = json_object_new_object();
Lawrence Tangd7e8ca32022-07-07 10:25:53 +0100301 char* encoded = b64_encode((unsigned char*)cur_pos, header->RegisterArraySize);
302 json_object_object_add(register_array, "data", json_object_new_string(encoded));
303 free(encoded);
Lawrence Tang7f21db62022-07-06 11:09:39 +0100304 break;
305 }
306
307 //Set the current position to after the processor context structure.
308 *cur_pos = (UINT8*)(*cur_pos) + header->RegisterArraySize;
309
310 return context_ir;
311}
312
313//Converts a single CPER ARM miscellaneous register array to JSON IR format.
314json_object* cper_arm_misc_register_array_to_ir(EFI_ARM_MISC_CONTEXT_REGISTER* misc_register)
315{
316 json_object* register_array = json_object_new_object();
317 json_object* mrs_encoding = json_object_new_object();
318 json_object_object_add(mrs_encoding, "op2", json_object_new_int(misc_register->MrsOp2));
319 json_object_object_add(mrs_encoding, "crm", json_object_new_int(misc_register->MrsOp2));
320 json_object_object_add(mrs_encoding, "crn", json_object_new_int(misc_register->MrsOp2));
321 json_object_object_add(mrs_encoding, "op1", json_object_new_int(misc_register->MrsOp2));
322 json_object_object_add(mrs_encoding, "o0", json_object_new_int(misc_register->MrsOp2));
323 json_object_object_add(register_array, "mrsEncoding", mrs_encoding);
324 json_object_object_add(register_array, "value", json_object_new_uint64(misc_register->Value));
325
326 return register_array;
Lawrence Tang2800cd82022-07-05 16:08:20 +0100327}