blob: 19316bc598b67cdc9c363df86c89651e5d90ae23 [file] [log] [blame]
Lawrence Tang1b0b00e2022-07-05 10:33:10 +01001/**
Lawrence Tang2800cd82022-07-05 16:08:20 +01002 * Describes high level functions for converting an entire CPER log, and functions for parsing
3 * CPER headers and section descriptions into an intermediate JSON format.
Lawrence Tang1b0b00e2022-07-05 10:33:10 +01004 *
5 * Author: Lawrence.Tang@arm.com
6 **/
7
8#include <stdio.h>
9#include "json.h"
10#include "edk/Cper.h"
11#include "cper-parse.h"
12#include "cper-utils.h"
13#include "sections/cper-section-generic.h"
Lawrence Tang794312c2022-07-05 14:46:10 +010014#include "sections/cper-section-ia32x64.h"
Lawrence Tang2800cd82022-07-05 16:08:20 +010015#include "sections/cper-section-arm.h"
Lawrence Tanga0865e32022-07-06 11:59:52 +010016#include "sections/cper-section-memory.h"
Lawrence Tang4dbe3d72022-07-06 13:51:01 +010017#include "sections/cper-section-pcie.h"
Lawrence Tang214a1542022-07-06 14:11:28 +010018#include "sections/cper-section-pci-bus.h"
Lawrence Tang1b0b00e2022-07-05 10:33:10 +010019
20//Private pre-definitions.
21json_object* cper_header_to_ir(EFI_COMMON_ERROR_RECORD_HEADER* header);
22json_object* cper_section_descriptor_to_ir(EFI_ERROR_SECTION_DESCRIPTOR* section_descriptor);
23json_object* cper_section_to_ir(FILE* handle, EFI_ERROR_SECTION_DESCRIPTOR* descriptor);
24
25//Reads a CPER log file at the given file location, and returns an intermediate
26//JSON representation of this CPER record.
27json_object* cper_to_ir(const char* filename)
28{
29 //Get a handle for the log file.
30 FILE* cper_file = fopen(filename, "r");
31 if (cper_file == NULL) {
32 printf("Could not open CPER record, file handle returned null.");
33 return NULL;
34 }
35
36 //Ensure this is really a CPER log.
37 EFI_COMMON_ERROR_RECORD_HEADER header;
38 fseek(cper_file, 0, SEEK_SET);
39 if (fread(&header, sizeof(EFI_COMMON_ERROR_RECORD_HEADER), 1, cper_file) != 1)
40 {
41 printf("Invalid CPER file: Invalid length (log too short).");
42 return NULL;
43 }
44
45 //Check if the header contains the magic bytes ("CPER").
46 if (header.SignatureStart != EFI_ERROR_RECORD_SIGNATURE_START) {
47 printf("Invalid CPER file: Invalid header (incorrect signature).");
48 return NULL;
49 }
50
51 // //Print struct contents (debug).
52 // fpos_t file_pos;
53 // fgetpos(cper_file, &file_pos);
54 // printf("Stream is at position %d.\n", file_pos);
55 // printf("SignatureStart: %s\n", (char*)&header.SignatureStart);
56 // printf("Revision: %u\n", header.Revision);
57 // printf("SectionCount: %u\n", header.SectionCount);
58 // printf("Severity: %d\n", header.ErrorSeverity);
59 // printf("RecordLength: %d\n", header.RecordLength);
60
61 //Create the header JSON object from the read bytes.
62 json_object* header_ir = cper_header_to_ir(&header);
63
64 //Read the appropriate number of section descriptors & sections, and convert them into IR format.
65 json_object* section_descriptors_ir = json_object_new_array();
66 json_object* sections_ir = json_object_new_array();
67 for (int i=0; i<header.SectionCount; i++)
68 {
69 //Create the section descriptor.
70 EFI_ERROR_SECTION_DESCRIPTOR section_descriptor;
71 if (fread(&section_descriptor, sizeof(EFI_ERROR_SECTION_DESCRIPTOR), 1, cper_file) != 1)
72 {
73 printf("Invalid number of section headers: Header states %d sections, could not read section %d.", header.SectionCount, i+1);
74 return NULL;
75 }
76 json_object_array_add(section_descriptors_ir, cper_section_descriptor_to_ir(&section_descriptor));
77
78 //Read the section itself.
79 json_object_array_add(sections_ir, cper_section_to_ir(cper_file, &section_descriptor));
80 }
81
82 //Add the header, section descriptors, and sections to a parent object.
83 json_object* parent = json_object_new_object();
84 json_object_object_add(parent, "header", header_ir);
85 json_object_object_add(parent, "sectionDescriptors", section_descriptors_ir);
Lawrence Tang2800cd82022-07-05 16:08:20 +010086 json_object_object_add(parent, "sections", sections_ir);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +010087
88 //...
89 return parent;
90}
91
92//Converts a parsed CPER record header into intermediate JSON object format.
93json_object* cper_header_to_ir(EFI_COMMON_ERROR_RECORD_HEADER* header)
94{
95 json_object* header_ir = json_object_new_object();
96
97 //Revision/version information.
98 json_object_object_add(header_ir, "revision", revision_to_ir(header->Revision));
99
100 //Section count.
101 json_object_object_add(header_ir, "sectionCount", json_object_new_int(header->SectionCount));
102
103 //Error severity (with interpreted string version).
104 json_object* error_severity = json_object_new_object();
105 json_object_object_add(error_severity, "code", json_object_new_int(header->ErrorSeverity));
106 json_object_object_add(error_severity, "name", json_object_new_string(severity_to_string(header->ErrorSeverity)));
107 json_object_object_add(header_ir, "severity", error_severity);
108
109 //The validation bits for each section.
Lawrence Tang2800cd82022-07-05 16:08:20 +0100110 json_object* validation_bits = bitfield_to_ir(header->ValidationBits, 3, CPER_HEADER_VALID_BITFIELD_NAMES);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100111 json_object_object_add(header_ir, "validationBits", validation_bits);
112
113 //Total length of the record (including headers) in bytes.
114 json_object_object_add(header_ir, "recordLength", json_object_new_int(header->RecordLength));
115
116 //If a timestamp exists according to validation bits, then add it.
117 if (header->ValidationBits & 0b10)
118 {
119 char timestamp_string[TIMESTAMP_LENGTH];
120 sprintf(timestamp_string, "%02d%02d-%02d-%02dT%02d:%02d:%02d.000",
121 header->TimeStamp.Century,
122 header->TimeStamp.Year,
123 header->TimeStamp.Month,
124 header->TimeStamp.Day,
125 header->TimeStamp.Hours,
126 header->TimeStamp.Minutes,
127 header->TimeStamp.Seconds);
128
129 json_object_object_add(header_ir, "timestamp", json_object_new_string(timestamp_string));
130 json_object_object_add(header_ir, "timestampIsPrecise", json_object_new_boolean(header->TimeStamp.Flag));
131 }
132
133 //If a platform ID exists according to the validation bits, then add it.
134 if (header->ValidationBits & 0b1)
135 {
136 char platform_string[GUID_STRING_LENGTH];
137 guid_to_string(platform_string, &header->PlatformID);
138 json_object_object_add(header_ir, "platformID", json_object_new_string(platform_string));
139 }
140
141 //If a partition ID exists according to the validation bits, then add it.
142 if (header->ValidationBits & 0b100)
143 {
144 char partition_string[GUID_STRING_LENGTH];
145 guid_to_string(partition_string, &header->PartitionID);
146 json_object_object_add(header_ir, "partitionID", json_object_new_string(partition_string));
147 }
148
149 //Creator ID of the header.
150 char creator_string[GUID_STRING_LENGTH];
151 guid_to_string(creator_string, &header->CreatorID);
152 json_object_object_add(header_ir, "creatorID", json_object_new_string(creator_string));
153
154 //Notification type for the header. Some defined types are available.
155 json_object* notification_type = json_object_new_object();
156 char notification_type_string[GUID_STRING_LENGTH];
157 guid_to_string(notification_type_string, &header->NotificationType);
158 json_object_object_add(notification_type, "guid", json_object_new_string(notification_type_string));
159
160 //Add the human readable notification type if possible.
161 char* notification_type_readable = "Unknown";
162 if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeCmcGuid))
163 notification_type_readable = "CMC";
Lawrence Tang794312c2022-07-05 14:46:10 +0100164 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeCpeGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100165 notification_type_readable = "CPE";
Lawrence Tang794312c2022-07-05 14:46:10 +0100166 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeMceGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100167 notification_type_readable = "MCE";
Lawrence Tang794312c2022-07-05 14:46:10 +0100168 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypePcieGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100169 notification_type_readable = "PCIe";
Lawrence Tang794312c2022-07-05 14:46:10 +0100170 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeInitGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100171 notification_type_readable = "INIT";
Lawrence Tang794312c2022-07-05 14:46:10 +0100172 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeNmiGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100173 notification_type_readable = "NMI";
Lawrence Tang794312c2022-07-05 14:46:10 +0100174 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeBootGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100175 notification_type_readable = "Boot";
Lawrence Tang794312c2022-07-05 14:46:10 +0100176 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeDmarGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100177 notification_type_readable = "DMAr";
Lawrence Tang794312c2022-07-05 14:46:10 +0100178 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeSeaGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100179 notification_type_readable = "SEA";
Lawrence Tang794312c2022-07-05 14:46:10 +0100180 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeSeiGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100181 notification_type_readable = "SEI";
Lawrence Tang794312c2022-07-05 14:46:10 +0100182 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypePeiGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100183 notification_type_readable = "PEI";
Lawrence Tang794312c2022-07-05 14:46:10 +0100184 else if (guid_equal(&header->NotificationType, &gEfiEventNotificationTypeCxlGuid))
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100185 notification_type_readable = "CXL Component";
186 json_object_object_add(notification_type, "type", json_object_new_string(notification_type_readable));
187 json_object_object_add(header_ir, "notificationType", notification_type);
188
189 //The record ID for this record, unique on a given system.
190 json_object_object_add(header_ir, "recordID", json_object_new_uint64(header->RecordID));
191
192 //Flag for the record, and a human readable form.
Lawrence Tang3c43f742022-07-05 11:37:17 +0100193 json_object* flags = integer_to_readable_pair(header->Flags,
194 sizeof(CPER_HEADER_FLAG_TYPES_KEYS) / sizeof(int),
195 CPER_HEADER_FLAG_TYPES_KEYS,
196 CPER_HEADER_FLAG_TYPES_VALUES,
197 "Unknown");
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100198 json_object_object_add(header_ir, "flags", flags);
199
200 //Persistence information. Outside the scope of specification, so just a uint32 here.
201 json_object_object_add(header_ir, "persistenceInformation", json_object_new_uint64(header->PersistenceInfo));
202 return header_ir;
203}
204
205//Converts the given EFI section descriptor into JSON IR format.
206json_object* cper_section_descriptor_to_ir(EFI_ERROR_SECTION_DESCRIPTOR* section_descriptor)
207{
208 json_object* section_descriptor_ir = json_object_new_object();
209
210 //The offset of the section from the base of the record header, length.
211 json_object_object_add(section_descriptor_ir, "sectionOffset", json_object_new_int(section_descriptor->SectionOffset));
212 json_object_object_add(section_descriptor_ir, "sectionLength", json_object_new_int(section_descriptor->SectionLength));
213
214 //Revision.
215 json_object_object_add(section_descriptor_ir, "revision", revision_to_ir(section_descriptor->Revision));
216
217 //Validation bits.
218 json_object* validation_bits = json_object_new_object();
219 json_object_object_add(validation_bits, "fruID", json_object_new_boolean(section_descriptor->SecValidMask & 0b1));
220 json_object_object_add(validation_bits, "fruString", json_object_new_boolean((section_descriptor->SecValidMask & 0b10) >> 1));
221 json_object_object_add(section_descriptor_ir, "validationBits", validation_bits);
222
223 //Flag bits.
Lawrence Tang2800cd82022-07-05 16:08:20 +0100224 json_object* flags = bitfield_to_ir(section_descriptor->SectionFlags, 8, CPER_SECTION_DESCRIPTOR_FLAGS_BITFIELD_NAMES);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100225 json_object_object_add(section_descriptor_ir, "flags", flags);
226
227 //Section type (GUID).
228 json_object* section_type = json_object_new_object();
229 char section_type_string[GUID_STRING_LENGTH];
230 guid_to_string(section_type_string, &section_descriptor->SectionType);
231 json_object_object_add(section_type, "data", json_object_new_string(section_type_string));
232
233 //Readable section type, if possible.
234 char* section_type_readable = "Unknown";
235 if (guid_equal(&section_descriptor->SectionType, &gEfiProcessorGenericErrorSectionGuid))
236 section_type_readable = "Processor Generic";
237 if (guid_equal(&section_descriptor->SectionType, &gEfiIa32X64ProcessorErrorSectionGuid))
238 section_type_readable = "IA32/X64";
239 //todo: Why does IPF have an overly long GUID?
240 // if (guid_equal(&section_descriptor->SectionType, &gEfiIpfProcessorErrorSectionGuid))
241 // section_type_readable = "IPF";
242 if (guid_equal(&section_descriptor->SectionType, &gEfiArmProcessorErrorSectionGuid))
243 section_type_readable = "ARM";
244 if (guid_equal(&section_descriptor->SectionType, &gEfiPlatformMemoryErrorSectionGuid))
245 section_type_readable = "Platform Memory";
246 if (guid_equal(&section_descriptor->SectionType, &gEfiPcieErrorSectionGuid))
247 section_type_readable = "PCIe";
248 if (guid_equal(&section_descriptor->SectionType, &gEfiFirmwareErrorSectionGuid))
249 section_type_readable = "Firmware Error Record Reference";
250 if (guid_equal(&section_descriptor->SectionType, &gEfiPciBusErrorSectionGuid))
251 section_type_readable = "PCI/PCI-X Bus";
252 if (guid_equal(&section_descriptor->SectionType, &gEfiPciDevErrorSectionGuid))
253 section_type_readable = "PCI Component/Device";
254 if (guid_equal(&section_descriptor->SectionType, &gEfiDMArGenericErrorSectionGuid))
255 section_type_readable = "DMAr Generic";
256 if (guid_equal(&section_descriptor->SectionType, &gEfiDirectedIoDMArErrorSectionGuid))
257 section_type_readable = "Intel VT for Directed I/O specific DMAr section";
258 if (guid_equal(&section_descriptor->SectionType, &gEfiIommuDMArErrorSectionGuid))
259 section_type_readable = "IOMMU specific DMAr section";
260
261 //todo: How do you determine if this is a CXL component event?
262 // if (guid_equal(&section_descriptor->SectionType, &gEfiProcessorGenericErrorSectionGuid))
263 // section_type_readable = "CXL Component Event";
264
265 json_object_object_add(section_type, "type", json_object_new_string(section_type_readable));
266 json_object_object_add(section_descriptor_ir, "sectionType", section_type);
267
268 //If validation bits indicate it exists, add FRU ID.
269 if (section_descriptor->SecValidMask & 0b1)
270 {
271 char fru_id_string[GUID_STRING_LENGTH];
272 guid_to_string(fru_id_string, &section_descriptor->FruId);
273 json_object_object_add(section_descriptor_ir, "fruID", json_object_new_string(fru_id_string));
274 }
275
276 //If validation bits indicate it exists, add FRU text.
277 if ((section_descriptor->SecValidMask & 0b10) >> 1)
278 json_object_object_add(section_descriptor_ir, "fruText", json_object_new_string(section_descriptor->FruString));
279
280 //Section severity.
281 json_object* section_severity = json_object_new_object();
282 json_object_object_add(section_severity, "code", json_object_new_int(section_descriptor->Severity));
283 json_object_object_add(section_severity, "name", json_object_new_string(severity_to_string(section_descriptor->Severity)));
284 json_object_object_add(section_descriptor_ir, "severity", section_severity);
285
286 return section_descriptor_ir;
287}
288
289
290//Converts the section described by a single given section descriptor.
291json_object* cper_section_to_ir(FILE* handle, EFI_ERROR_SECTION_DESCRIPTOR* descriptor)
292{
293 //Read section as described by the section descriptor.
294 fseek(handle, descriptor->SectionOffset, SEEK_SET);
Lawrence Tang2800cd82022-07-05 16:08:20 +0100295 void* section = calloc(1, descriptor->SectionLength);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100296 if (fread(section, descriptor->SectionLength, 1, handle) != 1)
297 {
298 printf("Section read failed: Could not read %d bytes from global offset %d.",
299 descriptor->SectionLength,
300 descriptor->SectionOffset);
301 }
302
303 json_object* result = NULL;
304 if (guid_equal(&descriptor->SectionType, &gEfiProcessorGenericErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100305 result = cper_section_generic_to_ir(section, descriptor);
306 else if (guid_equal(&descriptor->SectionType, &gEfiIa32X64ProcessorErrorSectionGuid))
307 result = cper_section_ia32x64_to_ir(section, descriptor);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100308 // //todo: Why does IPF have an overly long GUID?
309 // // if (guid_equal(&descriptor->SectionType, &gEfiIpfProcessorErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100310 else if (guid_equal(&descriptor->SectionType, &gEfiArmProcessorErrorSectionGuid))
311 result = cper_section_arm_to_ir(section, descriptor);
Lawrence Tanga0865e32022-07-06 11:59:52 +0100312 else if (guid_equal(&descriptor->SectionType, &gEfiPlatformMemoryErrorSectionGuid))
313 result = cper_section_platform_memory_to_ir(section, descriptor);
Lawrence Tang54da4412022-07-06 13:14:58 +0100314 else if (guid_equal(&descriptor->SectionType, &gEfiPlatformMemoryError2SectionGuid))
315 result = cper_section_platform_memory2_to_ir(section, descriptor);
Lawrence Tang4dbe3d72022-07-06 13:51:01 +0100316 else if (guid_equal(&descriptor->SectionType, &gEfiPcieErrorSectionGuid))
317 result = cper_section_pcie_to_ir(section, descriptor);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100318 // if (guid_equal(&descriptor->SectionType, &gEfiFirmwareErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100319 // result = cper_section_firmware_error_to_ir(section);
Lawrence Tang214a1542022-07-06 14:11:28 +0100320 else if (guid_equal(&descriptor->SectionType, &gEfiPciBusErrorSectionGuid))
321 result = cper_section_pci_bus_to_ir(section, descriptor);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100322 // if (guid_equal(&descriptor->SectionType, &gEfiPciDevErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100323 // result = cper_section_pci_dev_to_ir(section);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100324 // if (guid_equal(&descriptor->SectionType, &gEfiDMArGenericErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100325 // result = cper_section_dmar_generic_to_ir(section);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100326 // if (guid_equal(&descriptor->SectionType, &gEfiDirectedIoDMArErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100327 // result = cper_section_intel_io_dma_to_ir(section);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100328 // if (guid_equal(&descriptor->SectionType, &gEfiIommuDMArErrorSectionGuid))
Lawrence Tang2800cd82022-07-05 16:08:20 +0100329 // result = cper_section_iommu_dma_to_ir(section);
Lawrence Tang1b0b00e2022-07-05 10:33:10 +0100330
331 //Free section memory, return result.
332 free(section);
333 return result;
334}