blob: 3ea352e6eb71a50e888b2c010b0585a405866d2a [file] [log] [blame]
Ricardo Quesadac2cf3942021-07-16 16:49:04 -07001/* SPDX-License-Identifier: BSD-3-Clause */
2
3#include "eventlog.h"
4
5#include <inttypes.h>
6#include <stdarg.h>
7#include <stdlib.h>
8#include <time.h>
9
10#include <commonlib/console/post_codes.h>
11#include <commonlib/bsd/elog.h>
12#include <vb2_api.h>
13
Ricardo Quesada49a96a92021-08-16 11:25:52 -070014#include "common.h"
Ricardo Quesadac2cf3942021-07-16 16:49:04 -070015#include "valstr.h"
16
17#define PATH_PCI_BUS_SHIFT 8
18#define PATH_PCI_BUS_MASK 0xff
19#define PATH_PCI_DEV_SHIFT 3
20#define PATH_PCI_DEV_MASK 0x1f
21#define PATH_PCI_FN_SHIFT 0
22#define PATH_PCI_FN_MASK 0x03
23#define PATH_I2C_MODE10BIT_SHIFT 8
24#define PATH_I2C_MODE10BIT_MASK 0xff
25#define PATH_I2C_ADDRESS_MASK 0xff
26
27/* When true, then the separator is not printed */
28static int eventlog_printf_ignore_separator_once = 1;
29
30static void eventlog_printf(const char *format, ...)
31{
32 va_list args;
33
34 // Separator for each field
35 if (eventlog_printf_ignore_separator_once)
36 eventlog_printf_ignore_separator_once = 0;
37 else
38 fprintf(stdout, " | ");
39
40 va_start(args, format);
41 vfprintf(stdout, format, args);
42 va_end(args);
43}
44
45/*
46 * eventlog_print_timestamp - forms the key-value pair for event timestamp
47 *
48 * @entry: the smbios log entry to get the data information
49 *
50 * Forms the key-value description pair for the event timestamp.
51 */
52static void eventlog_print_timestamp(const struct event_header *event)
53{
54 const char *tm_format = "%y-%m-%d%t%H:%M:%S";
55 char tm_string[40];
56 struct tm tm;
57 time_t time;
58
59 memset(&tm, 0, sizeof(tm));
60
61 /* Time is in "hexa". Convert it to decimal, and then convert it to "tm" struct */
62 snprintf(tm_string, sizeof(tm_string), "%02x-%02x-%02x %02x:%02x:%02x", event->year,
63 event->month, event->day, event->hour, event->minute, event->second);
64
65 if (strptime(tm_string, tm_format, &tm) == NULL) {
66 /* Backup in case string could not be parsed. Timezone not included */
67 eventlog_printf("%02d%02x-%02x-%02x %02x:%02x:%02x",
68 (event->year > 0x80 && event->year < 0x99) ? 19 : 20,
69 event->year, event->month, event->day, event->hour,
70 event->minute, event->second);
71 return;
72 }
73
74 /* Set DST flag to -1 to indicate "not available" and let
75 * system determine if DST is on based on date */
76 tm.tm_isdst = -1;
77
78 time = mktime(&tm);
79 time += tm.tm_gmtoff; /* force adjust for timezone */
80
81 strftime(tm_string, sizeof(tm_string), "%Y-%m-%d %H:%M:%S", localtime(&time));
82
83 eventlog_printf("%s", tm_string);
84}
85
86
87/*
88 * eventlog_print_type - print the type of the entry
89 *
90 * @entry: the smbios log entry to get type information
91 *
92 */
93static void eventlog_print_type(const struct event_header *event)
94{
95 const char *type;
96 static const struct valstr elog_event_types[] = {
97 /* SMBIOS Event Log types, SMBIOSv2.4 section 3.3.16.1 */
98 {ELOG_TYPE_UNDEFINED_EVENT, "Reserved"},
99 {ELOG_TYPE_SINGLE_BIT_ECC_MEM_ERR, "Single-bit ECC memory error"},
100 {ELOG_TYPE_MULTI_BIT_ECC_MEM_ERR, "Multi-bit ECC memory error"},
101 {ELOG_TYPE_MEM_PARITY_ERR, "Parity memory error"},
102 {ELOG_TYPE_BUS_TIMEOUT, "Bus timeout"},
103 {ELOG_TYPE_IO_CHECK, "I/O channel check"},
104 {ELOG_TYPE_SW_NMI, "Software NMI"},
105 {ELOG_TYPE_POST_MEM_RESIZE, "POST memory resize"},
106 {ELOG_TYPE_POST_ERR, "POST error"},
107 {ELOG_TYPE_PCI_PERR, "PCI parity error"},
108 {ELOG_TYPE_PCI_SERR, "PCI system error"},
109 {ELOG_TYPE_CPU_FAIL, "CPU failure"},
110 {ELOG_TYPE_EISA_TIMEOUT, "EISA failsafe timer timeout"},
111 {ELOG_TYPE_CORRECTABLE_MEMLOG_DIS, "Correctable memory log disabled"},
112 {ELOG_TYPE_LOG_DISABLED, "Logging disabled, too many errors"},
113 {ELOG_TYPE_UNDEFINED_EVENT2, "Reserved"},
114 {ELOG_TYPE_SYS_LIMIT_EXCEED, "System limit exceeded"},
115 {ELOG_TYPE_ASYNC_HW_TIMER_EXPIRED, "Hardware watchdog reset"},
116 {ELOG_TYPE_SYS_CONFIG_INFO, "System configuration information"},
117 {ELOG_TYPE_HDD_INFO, "Hard-disk information"},
118 {ELOG_TYPE_SYS_RECONFIG, "System reconfigured"},
119 {ELOG_TYPE_CPU_ERROR, "Uncorrectable CPU-complex error"},
120 {ELOG_TYPE_LOG_CLEAR, "Log area cleared"},
121 {ELOG_TYPE_BOOT, "System boot"},
122
123 /* Extended events defined by OEMs */
124 {ELOG_TYPE_OS_EVENT, "Kernel Event"},
125 {ELOG_TYPE_OS_BOOT, "OS Boot"},
126 {ELOG_TYPE_EC_EVENT, "EC Event"},
127 {ELOG_TYPE_POWER_FAIL, "Power Fail"},
128 {ELOG_TYPE_SUS_POWER_FAIL, "SUS Power Fail"},
129 {ELOG_TYPE_PWROK_FAIL, "PWROK Fail"},
130 {ELOG_TYPE_SYS_PWROK_FAIL, "SYS PWROK Fail"},
131 {ELOG_TYPE_POWER_ON, "Power On"},
132 {ELOG_TYPE_POWER_BUTTON, "Power Button"},
133 {ELOG_TYPE_POWER_BUTTON_OVERRIDE, "Power Button Override"},
134 {ELOG_TYPE_RESET_BUTTON, "Reset Button"},
135 {ELOG_TYPE_SYSTEM_RESET, "System Reset"},
136 {ELOG_TYPE_RTC_RESET, "RTC Reset"},
137 {ELOG_TYPE_TCO_RESET, "TCO Reset"},
138 {ELOG_TYPE_ACPI_ENTER, "ACPI Enter"},
139 {ELOG_TYPE_ACPI_WAKE, "ACPI Wake"},
140 {ELOG_TYPE_ACPI_DEEP_WAKE, "ACPI Wake"},
141 {ELOG_TYPE_S0IX_ENTER, "S0ix Enter"},
142 {ELOG_TYPE_S0IX_EXIT, "S0ix Exit"},
143 {ELOG_TYPE_WAKE_SOURCE, "Wake Source"},
144 {ELOG_TYPE_CROS_DEVELOPER_MODE, "Chrome OS Developer Mode"},
145 {ELOG_TYPE_CROS_RECOVERY_MODE, "Chrome OS Recovery Mode"},
146 {ELOG_TYPE_MANAGEMENT_ENGINE, "Management Engine"},
147 {ELOG_TYPE_MANAGEMENT_ENGINE_EXT, "Management Engine Extra"},
148 {ELOG_TYPE_LAST_POST_CODE, "Last post code in previous boot"},
149 {ELOG_TYPE_POST_EXTRA, "Extra info from previous boot"},
150 {ELOG_TYPE_EC_SHUTDOWN, "EC Shutdown"},
151 {ELOG_TYPE_SLEEP, "Sleep"},
152 {ELOG_TYPE_WAKE, "Wake"},
153 {ELOG_TYPE_FW_WAKE, "FW Wake"},
154 {ELOG_TYPE_MEM_CACHE_UPDATE, "Memory Cache Update"},
155 {ELOG_TYPE_THERM_TRIP, "CPU Thermal Trip"},
156 {ELOG_TYPE_CR50_UPDATE, "cr50 Update Reset"},
157 {ELOG_TYPE_CR50_NEED_RESET, "cr50 Reset Required"},
158 {ELOG_TYPE_EC_DEVICE_EVENT, "EC Device"},
159 {ELOG_TYPE_EXTENDED_EVENT, "Extended Event"},
160
161 {ELOG_TYPE_EOL, "End of log"},
162 };
163
164 /* Passing NULL as default, because we want to print the event->type if it fails */
165 type = val2str_default(event->type, elog_event_types, NULL);
166
167 if (type == NULL) {
168 /* Indicate unknown type in value pair */
169 eventlog_printf("Unknown");
170 eventlog_printf("0x%02x", event->type);
171 return;
172 }
173
174 eventlog_printf("%s", type);
175}
176
177/*
178 * CMOS Extra log format:
179 * [31:24] = Extra Log Type
180 * [23:0] = Extra Log Data
181 *
182 * If Extra Log Type is 0x01 then Data is Device Path
183 * [23:16] = Device Type
184 * [15:0] = Encoded Device Path
185 */
186static int eventlog_print_post_extra(uint32_t extra)
187{
188 static const struct valstr path_type_values[] = {
189 {ELOG_DEV_PATH_TYPE_NONE, "None"},
190 {ELOG_DEV_PATH_TYPE_ROOT, "Root"},
191 {ELOG_DEV_PATH_TYPE_PCI, "PCI"},
192 {ELOG_DEV_PATH_TYPE_PNP, "PNP"},
193 {ELOG_DEV_PATH_TYPE_I2C, "I2C"},
194 {ELOG_DEV_PATH_TYPE_APIC, "APIC"},
195 {ELOG_DEV_PATH_TYPE_DOMAIN, "DOMAIN"},
196 {ELOG_DEV_PATH_TYPE_CPU_CLUSTER, "CPU Cluster"},
197 {ELOG_DEV_PATH_TYPE_CPU, "CPU"},
198 {ELOG_DEV_PATH_TYPE_CPU_BUS, "CPU Bus"},
199 {ELOG_DEV_PATH_TYPE_IOAPIC, "IO-APIC"},
200 {0, NULL},
201 };
202 const uint8_t type = (extra >> 16) & 0xff;
203
204 /* Currently only know how to print device path */
205 if ((extra >> 24) != ELOG_TYPE_POST_EXTRA_PATH) {
206 eventlog_printf("0x%08x", extra);
207 return 0;
208 }
209
210 eventlog_printf("%s", val2str(type, path_type_values));
211
212 /* Handle different device path types */
213 switch (type) {
214 case ELOG_DEV_PATH_TYPE_PCI:
215 eventlog_printf("%02x:%02x.%1x",
216 (extra >> PATH_PCI_BUS_SHIFT) & PATH_PCI_BUS_MASK,
217 (extra >> PATH_PCI_DEV_SHIFT) & PATH_PCI_DEV_MASK,
218 (extra >> PATH_PCI_FN_SHIFT) & PATH_PCI_FN_MASK);
219 break;
220 case ELOG_DEV_PATH_TYPE_PNP:
221 case ELOG_DEV_PATH_TYPE_I2C:
222 eventlog_printf("%02x:%02x",
223 (extra >> PATH_I2C_MODE10BIT_SHIFT) & PATH_I2C_MODE10BIT_MASK,
224 extra & PATH_I2C_ADDRESS_MASK);
225 break;
226 case ELOG_DEV_PATH_TYPE_APIC:
227 case ELOG_DEV_PATH_TYPE_DOMAIN:
228 case ELOG_DEV_PATH_TYPE_CPU_CLUSTER:
229 case ELOG_DEV_PATH_TYPE_CPU:
230 case ELOG_DEV_PATH_TYPE_CPU_BUS:
231 case ELOG_DEV_PATH_TYPE_IOAPIC:
232 eventlog_printf("0x%04x", extra & 0xffff);
233 break;
234 }
235
236 return 0;
237}
238
239/*
240 * eventlog_print_data - print the data associated with the entry
241 *
242 * @event: the smbios log entry to get the data information
243 *
244 * Returns 0 on failure, 1 on success.
245 */
246static int eventlog_print_data(const struct event_header *event)
247{
248 static const struct valstr os_events[] = {
249 {ELOG_OS_EVENT_CLEAN, "Clean Shutdown"},
250 {ELOG_OS_EVENT_NMIWDT, "NMI Watchdog"},
251 {ELOG_OS_EVENT_PANIC, "Panic"},
252 {ELOG_OS_EVENT_OOPS, "Oops"},
253 {ELOG_OS_EVENT_DIE, "Die"},
254 {ELOG_OS_EVENT_MCE, "MCE"},
255 {ELOG_OS_EVENT_SOFTWDT, "Software Watchdog"},
256 {ELOG_OS_EVENT_MBE, "Multi-bit Error"},
257 {ELOG_OS_EVENT_TRIPLE, "Triple Fault"},
258 {ELOG_OS_EVENT_THERMAL, "Critical Thermal Threshold"},
259 {0, NULL},
260 };
261 static const struct valstr wake_source_types[] = {
262 {ELOG_WAKE_SOURCE_PCIE, "PCI Express"},
263 {ELOG_WAKE_SOURCE_PME, "PCI PME"},
264 {ELOG_WAKE_SOURCE_PME_INTERNAL, "Internal PME"},
265 {ELOG_WAKE_SOURCE_RTC, "RTC Alarm"},
266 {ELOG_WAKE_SOURCE_GPE, "GPE #"},
267 {ELOG_WAKE_SOURCE_SMBUS, "SMBALERT"},
268 {ELOG_WAKE_SOURCE_PWRBTN, "Power Button"},
269 {ELOG_WAKE_SOURCE_PME_HDA, "PME - HDA"},
270 {ELOG_WAKE_SOURCE_PME_GBE, "PME - GBE"},
271 {ELOG_WAKE_SOURCE_PME_EMMC, "PME - EMMC"},
272 {ELOG_WAKE_SOURCE_PME_SDCARD, "PME - SDCARD"},
273 {ELOG_WAKE_SOURCE_PME_PCIE1, "PME - PCIE1"},
274 {ELOG_WAKE_SOURCE_PME_PCIE2, "PME - PCIE2"},
275 {ELOG_WAKE_SOURCE_PME_PCIE3, "PME - PCIE3"},
276 {ELOG_WAKE_SOURCE_PME_PCIE4, "PME - PCIE4"},
277 {ELOG_WAKE_SOURCE_PME_PCIE5, "PME - PCIE5"},
278 {ELOG_WAKE_SOURCE_PME_PCIE6, "PME - PCIE6"},
279 {ELOG_WAKE_SOURCE_PME_PCIE7, "PME - PCIE7"},
280 {ELOG_WAKE_SOURCE_PME_PCIE8, "PME - PCIE8"},
281 {ELOG_WAKE_SOURCE_PME_PCIE9, "PME - PCIE9"},
282 {ELOG_WAKE_SOURCE_PME_PCIE10, "PME - PCIE10"},
283 {ELOG_WAKE_SOURCE_PME_PCIE11, "PME - PCIE11"},
284 {ELOG_WAKE_SOURCE_PME_PCIE12, "PME - PCIE12"},
285 {ELOG_WAKE_SOURCE_PME_SATA, "PME - SATA"},
286 {ELOG_WAKE_SOURCE_PME_CSE, "PME - CSE"},
287 {ELOG_WAKE_SOURCE_PME_CSE2, "PME - CSE2"},
288 {ELOG_WAKE_SOURCE_PME_CSE3, "PME - CSE"},
289 {ELOG_WAKE_SOURCE_PME_XHCI, "PME - XHCI"},
290 {ELOG_WAKE_SOURCE_PME_XDCI, "PME - XDCI"},
291 {ELOG_WAKE_SOURCE_PME_XHCI_USB_2, "PME - XHCI (USB 2.0 port)"},
292 {ELOG_WAKE_SOURCE_PME_XHCI_USB_3, "PME - XHCI (USB 3.0 port)"},
293 {ELOG_WAKE_SOURCE_PME_WIFI, "PME - WIFI"},
294 {ELOG_WAKE_SOURCE_PME_PCIE13, "PME - PCIE13"},
295 {ELOG_WAKE_SOURCE_PME_PCIE14, "PME - PCIE14"},
296 {ELOG_WAKE_SOURCE_PME_PCIE15, "PME - PCIE15"},
297 {ELOG_WAKE_SOURCE_PME_PCIE16, "PME - PCIE16"},
298 {ELOG_WAKE_SOURCE_PME_PCIE17, "PME - PCIE17"},
299 {ELOG_WAKE_SOURCE_PME_PCIE18, "PME - PCIE18"},
300 {ELOG_WAKE_SOURCE_PME_PCIE19, "PME - PCIE19"},
301 {ELOG_WAKE_SOURCE_PME_PCIE20, "PME - PCIE20"},
302 {ELOG_WAKE_SOURCE_PME_PCIE21, "PME - PCIE21"},
303 {ELOG_WAKE_SOURCE_PME_PCIE22, "PME - PCIE22"},
304 {ELOG_WAKE_SOURCE_PME_PCIE23, "PME - PCIE23"},
305 {ELOG_WAKE_SOURCE_PME_PCIE24, "PME - PCIE24"},
306 {ELOG_WAKE_SOURCE_GPIO, " GPIO #"},
307 {ELOG_WAKE_SOURCE_PME_TBT, "PME - Thunderbolt"},
308 {ELOG_WAKE_SOURCE_PME_TCSS_XHCI, "PME - TCSS XHCI"},
309 {ELOG_WAKE_SOURCE_PME_TCSS_XHCI, "PME - TCSS XDCI"},
310 {ELOG_WAKE_SOURCE_PME_TCSS_XHCI, "PME - TCSS DMA"},
311 {0, NULL},
312 };
313 static const struct valstr ec_event_types[] = {
314 {EC_EVENT_LID_CLOSED, "Lid Closed"},
315 {EC_EVENT_LID_OPEN, "Lid Open"},
316 {EC_EVENT_POWER_BUTTON, "Power Button"},
317 {EC_EVENT_AC_CONNECTED, "AC Connected"},
318 {EC_EVENT_AC_DISCONNECTED, "AC Disconnected"},
319 {EC_EVENT_BATTERY_LOW, "Battery Low"},
320 {EC_EVENT_BATTERY_CRITICAL, "Battery Critical"},
321 {EC_EVENT_BATTERY, "Battery"},
322 {EC_EVENT_THERMAL_THRESHOLD, "Thermal Threshold"},
323 {EC_EVENT_DEVICE_EVENT, "Device Event"},
324 {EC_EVENT_THERMAL, "Thermal"},
325 {EC_EVENT_USB_CHARGER, "USB Charger"},
326 {EC_EVENT_KEY_PRESSED, "Key Pressed"},
327 {EC_EVENT_INTERFACE_READY, "Host Interface Ready"},
328 {EC_EVENT_KEYBOARD_RECOVERY, "Keyboard Recovery"},
329 {EC_EVENT_THERMAL_SHUTDOWN, "Thermal Shutdown in previous boot"},
330 {EC_EVENT_BATTERY_SHUTDOWN, "Battery Shutdown in previous boot"},
331 {EC_EVENT_THROTTLE_START, "Throttle Requested"},
332 {EC_EVENT_THROTTLE_STOP, "Throttle Request Removed"},
333 {EC_EVENT_HANG_DETECT, "Host Event Hang"},
334 {EC_EVENT_HANG_REBOOT, "Host Event Hang Reboot"},
335 {EC_EVENT_PD_MCU, "PD MCU Request"},
336 {EC_EVENT_BATTERY_STATUS, "Battery Status Request"},
337 {EC_EVENT_PANIC, "Panic Reset in previous boot"},
338 {EC_EVENT_KEYBOARD_FASTBOOT, "Keyboard Fastboot Recovery"},
339 {EC_EVENT_RTC, "RTC"},
340 {EC_EVENT_MKBP, "MKBP"},
341 {EC_EVENT_USB_MUX, "USB MUX change"},
342 {EC_EVENT_MODE_CHANGE, "Mode change"},
343 {EC_EVENT_KEYBOARD_RECOVERY_HWREINIT,
344 "Keyboard Recovery Forced Hardware Reinit"},
345 {EC_EVENT_EXTENDED, "Extended EC events"},
346 {0, NULL},
347 };
348 static const struct valstr ec_device_event_types[] = {
349 {ELOG_EC_DEVICE_EVENT_TRACKPAD, "Trackpad"},
350 {ELOG_EC_DEVICE_EVENT_DSP, "DSP"},
351 {ELOG_EC_DEVICE_EVENT_WIFI, "WiFi"},
352 {0, NULL},
353 };
354
355 static const struct valstr cros_recovery_reasons[] = {
356 {VB2_RECOVERY_LEGACY, "Legacy Utility"},
357 {VB2_RECOVERY_RO_MANUAL, "Recovery Button Pressed"},
358 {VB2_RECOVERY_RO_INVALID_RW, "RW Failed Signature Check"},
359 {VB2_RECOVERY_DEPRECATED_RO_S3_RESUME, "S3 Resume Failed"},
360 {VB2_RECOVERY_DEPRECATED_RO_TPM_ERROR, "TPM Error in RO Firmware"},
361 {VB2_RECOVERY_RO_SHARED_DATA, "Shared Data Error in RO Firmware"},
362 {VB2_RECOVERY_DEPRECATED_RO_TEST_S3, "Test Error from S3 Resume()"},
363 {VB2_RECOVERY_DEPRECATED_RO_TEST_LF, "Test Error from LoadFirmware()"},
364 {VB2_RECOVERY_DEPRECATED_RO_TEST_LFS, "Test Error from LoadFirmwareSetup()"},
365 {VB2_RECOVERY_DEPRECATED_RW_NOT_DONE, "RW firmware check not done"},
366 {VB2_RECOVERY_DEPRECATED_RW_DEV_FLAG_MISMATCH,
367 "RW firmware developer flag mismatch"},
368 {VB2_RECOVERY_DEPRECATED_RW_REC_FLAG_MISMATCH,
369 "RW firmware recovery flash mismatch"},
370 {VB2_RECOVERY_FW_KEYBLOCK, "RW firmware unable to verify keyblock"},
371 {VB2_RECOVERY_FW_KEY_ROLLBACK, "RW firmware key version rollback detected"},
372 {VB2_RECOVERY_DEPRECATED_RW_DATA_KEY_PARSE,
373 "RW firmware unable to parse data key"},
374 {VB2_RECOVERY_FW_PREAMBLE, "RW firmware unable to verify preamble"},
375 {VB2_RECOVERY_FW_ROLLBACK, "RW firmware version rollback detected"},
376 {VB2_RECOVERY_DEPRECATED_FW_HEADER_VALID, "RW firmware header is valid"},
377 {VB2_RECOVERY_DEPRECATED_FW_GET_FW_BODY,
378 "RW firmware unable to get firmware body"},
379 {VB2_RECOVERY_DEPRECATED_FW_HASH_WRONG_SIZE, "RW firmware hash is wrong size"},
380 {VB2_RECOVERY_FW_BODY, "RW firmware unable to verify firmware body"},
381 {VB2_RECOVERY_DEPRECATED_FW_VALID, "RW firmware is valid"},
382 {VB2_RECOVERY_DEPRECATED_FW_NO_RO_NORMAL,
383 "RW firmware read-only normal path is not supported"},
384 {VB2_RECOVERY_RO_FIRMWARE, "Firmware Boot Failure"},
385 {VB2_RECOVERY_RO_TPM_REBOOT, "Recovery Mode TPM Reboot"},
386 {VB2_RECOVERY_EC_SOFTWARE_SYNC, "EC Software Sync Error"},
387 {VB2_RECOVERY_EC_UNKNOWN_IMAGE, "Unable to determine active EC image"},
388 {VB2_RECOVERY_DEPRECATED_EC_HASH,
389 "EC software sync error obtaining EC image hash"},
390 {VB2_RECOVERY_DEPRECATED_EC_EXPECTED_IMAGE,
391 "EC software sync error obtaining expected EC image from BIOS"},
392 {VB2_RECOVERY_EC_UPDATE, "EC software sync error updating EC"},
393 {VB2_RECOVERY_EC_JUMP_RW, "EC software sync unable to jump to EC-RW"},
394 {VB2_RECOVERY_EC_PROTECT, "EC software sync protection error"},
395 {VB2_RECOVERY_EC_EXPECTED_HASH,
396 "EC software sync error obtaining expected EC hash from BIOS"},
397 {VB2_RECOVERY_DEPRECATED_EC_HASH_MISMATCH,
398 "EC software sync error comparing expected EC hash and image"},
399 {VB2_RECOVERY_SECDATA_FIRMWARE_INIT, "Secure NVRAM (TPM) initialization error"},
400 {VB2_RECOVERY_GBB_HEADER, "Error parsing GBB header"},
401 {VB2_RECOVERY_TPM_CLEAR_OWNER, "Error trying to clear TPM owner"},
402 {VB2_RECOVERY_DEV_SWITCH, "Error reading or updating developer switch"},
403 {VB2_RECOVERY_FW_SLOT, "Error selecting RW firmware slot"},
404 {VB2_RECOVERY_AUXFW_UPDATE, "Error updating AUX firmware"},
405 {VB2_RECOVERY_INTEL_CSE_LITE_SKU, "Intel CSE Lite SKU fimrware failure"},
406 {VB2_RECOVERY_RO_UNSPECIFIED, "Unknown Error in RO Firmware"},
407 {VB2_RECOVERY_DEPRECATED_RW_DEV_SCREEN, "User Requested from Developer Screen"},
408 {VB2_RECOVERY_DEPRECATED_RW_NO_OS, "No OS Kernel Detected"},
409 {VB2_RECOVERY_RW_INVALID_OS, "OS kernel or rootfs failed signature check"},
410 {VB2_RECOVERY_DEPRECATED_RW_TPM_ERROR, "TPM Error in RW Firmware"},
411 {VB2_RECOVERY_DEPRECATED_RW_DEV_MISMATCH, "RW Dev Firmware but not Dev Mode"},
412 {VB2_RECOVERY_RW_SHARED_DATA, "Shared Data Error in RW Firmware"},
413 {VB2_RECOVERY_DEPRECATED_RW_TEST_LK, "Test Error from LoadKernel()"},
414 {VB2_RECOVERY_DEPRECATED_RW_NO_DISK, "No Bootable Disk Found"},
415 {VB2_RECOVERY_TPM_E_FAIL, "TPM_E_FAIL or TPM_E_FAILEDSELFTEST"},
416 {VB2_RECOVERY_RO_TPM_S_ERROR, "TPM setup error in read-only firmware"},
417 {VB2_RECOVERY_RO_TPM_W_ERROR, "TPM write error in read-only firmware"},
418 {VB2_RECOVERY_RO_TPM_L_ERROR, "TPM lock error in read-only firmware"},
419 {VB2_RECOVERY_RO_TPM_U_ERROR, "TPM update error in read-only firmware"},
420 {VB2_RECOVERY_RW_TPM_R_ERROR, "TPM read error in rewritable firmware"},
421 {VB2_RECOVERY_RW_TPM_W_ERROR, "TPM write error in rewritable firmware"},
422 {VB2_RECOVERY_RW_TPM_L_ERROR, "TPM lock error in rewritable firmware"},
423 {VB2_RECOVERY_EC_HASH_FAILED, "EC software sync unable to get EC image hash"},
424 {VB2_RECOVERY_EC_HASH_SIZE, "EC software sync invalid image hash size"},
425 {VB2_RECOVERY_LK_UNSPECIFIED, "Unspecified error while trying to load kernel"},
426 {VB2_RECOVERY_RW_NO_DISK, "No bootable storage device in system"},
427 {VB2_RECOVERY_RW_NO_KERNEL, "No bootable kernel found on disk"},
428 {VB2_RECOVERY_DEPRECATED_RW_BCB_ERROR, "BCB partition error on disk"},
429 {VB2_RECOVERY_SECDATA_KERNEL_INIT,
430 "Kernel secure NVRAM (TPM) initialization error"},
431 {VB2_RECOVERY_DEPRECATED_FW_FASTBOOT, "Fastboot-mode requested in firmware"},
432 {VB2_RECOVERY_RO_TPM_REC_HASH_L_ERROR,
433 "Recovery hash space lock error in RO firmware"},
434 {VB2_RECOVERY_TPM_DISABLE_FAILED,
435 "Failed to disable TPM before running untrusted code"},
436 {VB2_RECOVERY_ALTFW_HASH_MISMATCH,
437 "Verification of alternative firmware payload failed"},
438 {VB2_RECOVERY_SECDATA_FWMP_INIT, "FWMP secure data initialization failed"},
439 {VB2_RECOVERY_CR50_BOOT_MODE, "Failed to get boot mode from TPM/Cr50"},
440 {VB2_RECOVERY_ESCAPE_NO_BOOT,
441 "Attempt to escape from NO_BOOT mode was detected"},
442 {VB2_RECOVERY_RW_UNSPECIFIED, "Unspecified/unknown error in RW firmware"},
443 {VB2_RECOVERY_DEPRECATED_KE_DM_VERITY, "DM-verity error"},
444 {VB2_RECOVERY_DEPRECATED_KE_UNSPECIFIED, "Unspecified/unknown error in kernel"},
445 {VB2_RECOVERY_US_TEST, "Recovery mode test from user-mode"},
446 {VB2_RECOVERY_DEPRECATED_BCB_USER_MODE, "User-mode requested recovery via BCB"},
447 {VB2_RECOVERY_DEPRECATED_US_FASTBOOT, "User-mode requested fastboot mode"},
448 {VB2_RECOVERY_TRAIN_AND_REBOOT,
449 "User requested recovery for training memory and rebooting"},
450 {VB2_RECOVERY_US_UNSPECIFIED, "Unknown Error in User Mode"},
451 {0, NULL},
452 };
453 static const struct valstr me_path_types[] = {
454 {ELOG_ME_PATH_NORMAL, "Normal"},
455 {ELOG_ME_PATH_NORMAL, "S3 Wake"},
456 {ELOG_ME_PATH_ERROR, "Error"},
457 {ELOG_ME_PATH_RECOVERY, "Recovery"},
458 {ELOG_ME_PATH_DISABLED, "Disabled"},
459 {ELOG_ME_PATH_FW_UPDATE, "Firmware Update"},
460 {0, NULL},
461 };
462 static const struct valstr coreboot_post_codes[] = {
463 {POST_RESET_VECTOR_CORRECT, "Reset Vector Correct"},
464 {POST_ENTER_PROTECTED_MODE, "Enter Protected Mode"},
465 {POST_PREPARE_RAMSTAGE, "Prepare RAM stage"},
466 {POST_ENTRY_C_START, "RAM stage Start"},
467 {POST_MEM_PREINIT_PREP_START, "Preparing memory init params"},
468 {POST_MEM_PREINIT_PREP_END, "Memory init param preparation complete"},
469 {POST_CONSOLE_READY, "Console is ready"},
470 {POST_CONSOLE_BOOT_MSG, "Console Boot Message"},
471 {POST_ENABLING_CACHE, "Before Enabling Cache"},
472 {POST_PRE_HARDWAREMAIN, "Before Hardware Main"},
473 {POST_ENTRY_HARDWAREMAIN, "First call in Hardware Main"},
474 {POST_BS_PRE_DEVICE, "Before Device Probe"},
475 {POST_BS_DEV_INIT_CHIPS, "Initialize Chips"},
476 {POST_BS_DEV_ENUMERATE, "Device Enumerate"},
477 {POST_BS_DEV_RESOURCES, "Device Resource Allocation"},
478 {POST_BS_DEV_ENABLE, "Device Enable"},
479 {POST_BS_DEV_INIT, "Device Initialize"},
480 {POST_BS_POST_DEVICE, "After Device Probe"},
481 {POST_BS_OS_RESUME_CHECK, "OS Resume Check"},
482 {POST_BS_OS_RESUME, "OS Resume"},
483 {POST_BS_WRITE_TABLES, "Write Tables"},
484 {POST_BS_PAYLOAD_LOAD, "Load Payload"},
485 {POST_BS_PAYLOAD_BOOT, "Boot Payload"},
486 {POST_FSP_NOTIFY_BEFORE_END_OF_FIRMWARE, "FSP Notify Before End of Firmware"},
487 {POST_FSP_NOTIFY_AFTER_END_OF_FIRMWARE, "FSP Notify After End of Firmware"},
488 {POST_FSP_TEMP_RAM_INIT, "FSP-T Enter"},
489 {POST_FSP_TEMP_RAM_EXIT, "FSP-T Exit"},
490 {POST_FSP_MEMORY_INIT, "FSP-M Enter"},
491 {POST_FSP_SILICON_INIT, "FSP-S Enter"},
492 {POST_FSP_NOTIFY_BEFORE_ENUMERATE, "FSP Notify Before Enumerate"},
493 {POST_FSP_NOTIFY_BEFORE_FINALIZE, "FSP Notify Before Finalize"},
494 {POST_OS_ENTER_PTS, "ACPI _PTS Method"},
495 {POST_OS_ENTER_WAKE, "ACPI _WAK Method"},
496 {POST_FSP_MEMORY_EXIT, "FSP-M Exit"},
497 {POST_FSP_SILICON_EXIT, "FSP-S Exit"},
498 {POST_FSP_MULTI_PHASE_SI_INIT_ENTRY, "FSP-S Init Enter"},
499 {POST_FSP_MULTI_PHASE_SI_INIT_EXIT, "FPS-S Init Exit"},
500 {POST_FSP_NOTIFY_AFTER_ENUMERATE, "FSP Notify After Enumerate"},
501 {POST_FSP_NOTIFY_AFTER_FINALIZE, "FSP Notify After Finalize"},
502 {POST_INVALID_ROM, "Invalid ROM"},
503 {POST_INVALID_CBFS, "Invalid CBFS"},
504 {POST_INVALID_VENDOR_BINARY, "Invalid Vendor Binary"},
505 {POST_RAM_FAILURE, "RAM Failure"},
506 {POST_HW_INIT_FAILURE, "Hardware Init Failure"},
507 {POST_VIDEO_FAILURE, "Video Failure"},
508 {POST_TPM_FAILURE, "TPM Failure"},
509 {POST_DEAD_CODE, "Dead Code"},
510 {POST_RESUME_FAILURE, "Resume Failure"},
511 {POST_JUMPING_TO_PAYLOAD, "Before Jump to Payload"},
512 {POST_ENTER_ELF_BOOT, "Before ELF Boot"},
513 {POST_OS_RESUME, "Before OS Resume"},
514 {POST_OS_BOOT, "Before OS Boot"},
515 {POST_DIE, "coreboot Dead"},
516 {0, NULL},
517 };
518 static const struct valstr mem_cache_slots[] = {
519 {ELOG_MEM_CACHE_UPDATE_SLOT_NORMAL, "Normal"},
520 {ELOG_MEM_CACHE_UPDATE_SLOT_RECOVERY, "Recovery"},
521 {ELOG_MEM_CACHE_UPDATE_SLOT_VARIABLE, "Variable"},
522 {0, NULL},
523 };
524 static const struct valstr mem_cache_statuses[] = {
525 {ELOG_MEM_CACHE_UPDATE_STATUS_SUCCESS, "Success"},
526 {ELOG_MEM_CACHE_UPDATE_STATUS_FAIL, "Fail"},
527 {0, NULL},
528 };
529
530 static const struct valstr extended_event_subtypes[] = {
531 {ELOG_SLEEP_PENDING_PM1_WAKE, "S3 failed due to pending wake event, PM1"},
532 {ELOG_SLEEP_PENDING_GPE0_WAKE, "S3 failed due to pending wake event, GPE0"},
533 {0, NULL},
534 };
535
536 switch (event->type) {
537 case ELOG_TYPE_LOG_CLEAR: {
538 const uint16_t *bytes = event_get_data(event);
539 eventlog_printf("%u", *bytes);
540 break;
541 }
542
543 case ELOG_TYPE_BOOT: {
544 const uint32_t *count = event_get_data(event);
545 eventlog_printf("%u", *count);
546 break;
547 }
548 case ELOG_TYPE_LAST_POST_CODE: {
549 const uint16_t *code = event_get_data(event);
550 eventlog_printf("0x%02x", *code);
551 eventlog_printf("%s", val2str(*code, coreboot_post_codes));
552 break;
553 }
554 case ELOG_TYPE_POST_EXTRA: {
555 const uint32_t *extra = event_get_data(event);
556 eventlog_print_post_extra(*extra);
557 break;
558 }
559 case ELOG_TYPE_OS_EVENT: {
560 const uint32_t *osevent = event_get_data(event);
561 eventlog_printf("%s", val2str(*osevent, os_events));
562 break;
563 }
564 case ELOG_TYPE_ACPI_ENTER:
565 case ELOG_TYPE_ACPI_WAKE: {
566 const uint8_t *state = event_get_data(event);
567 eventlog_printf("S%u", *state);
568 break;
569 }
570 case ELOG_TYPE_ACPI_DEEP_WAKE: {
571 const uint8_t *state = event_get_data(event);
572 eventlog_printf("Deep S%u", *state);
573 break;
574 }
575 case ELOG_TYPE_WAKE_SOURCE: {
576 const struct elog_event_data_wake *wake_source;
577 wake_source = event_get_data(event);
578 eventlog_printf("%s", val2str(wake_source->source, wake_source_types));
579 eventlog_printf("%u", wake_source->instance);
580 break;
581 }
582 case ELOG_TYPE_EC_EVENT: {
583 const uint8_t *ec_event = event_get_data(event);
584 eventlog_printf("%s", val2str(*ec_event, ec_event_types));
585 break;
586 }
587 case ELOG_TYPE_EC_DEVICE_EVENT: {
588 const uint8_t *dev_event = event_get_data(event);
589 eventlog_printf("%s", val2str(*dev_event, ec_device_event_types));
590 break;
591 }
592 case ELOG_TYPE_CROS_RECOVERY_MODE: {
593 const uint8_t *reason = event_get_data(event);
594 eventlog_printf("%s", val2str(*reason, cros_recovery_reasons));
595 eventlog_printf("0x%02x", *reason);
596 break;
597 }
598 case ELOG_TYPE_MANAGEMENT_ENGINE: {
599 const uint8_t *path = event_get_data(event);
600 eventlog_printf("%s", val2str(*path, me_path_types));
601 break;
602 }
603 case ELOG_TYPE_MEM_CACHE_UPDATE: {
604 const struct elog_event_mem_cache_update *update;
605 update = event_get_data(event);
606 eventlog_printf("%s", val2str(update->slot, mem_cache_slots));
607 eventlog_printf("%s", val2str(update->status, mem_cache_statuses));
608 break;
609 }
610 case ELOG_TYPE_EXTENDED_EVENT: {
611 const struct elog_event_extended_event *ext_event;
612 ext_event = event_get_data(event);
613 eventlog_printf("%s", val2str(ext_event->event_type, extended_event_subtypes));
614 eventlog_printf("0x%X", ext_event->event_complement);
615 break;
616 }
617 default:
618 break;
619 }
620
621 return 0;
622}
623
624void eventlog_print_event(const struct event_header *event, int count)
625{
626 /* Ignore the printf separator at the beginning and end of each line */
627 eventlog_printf_ignore_separator_once = 1;
628
629 eventlog_printf("%d", count);
630 eventlog_print_timestamp(event);
631 eventlog_print_type(event);
632 eventlog_print_data(event);
633
634 /* End of line, after printing each event */
635 eventlog_printf_ignore_separator_once = 1;
636 eventlog_printf("\n");
637}
Ricardo Quesada49a96a92021-08-16 11:25:52 -0700638
639/*
640 * Initializes the eventlog header with the given type and data,
641 * and calculates the checksum.
642 * buffer_get() points to the event to be initialized.
643 * On success it returns 1, otherwise 0.
644 */
645int eventlog_init_event(const struct buffer *buf, uint8_t type,
646 const void *data, int data_size)
647{
648 struct event_header *event;
649 time_t secs = time(NULL);
650 struct tm tm;
651
652 /* Must have at least size for data + checksum byte */
653 if (buffer_size(buf) < (size_t)data_size + 1)
654 return 0;
655
656 event = buffer_get(buf);
657
658 event->type = type;
659 gmtime_r(&secs, &tm);
Ricardo Quesada1427f122021-09-22 20:08:35 -0700660 /* Month should be +1, since gmtime uses 0 as first month */
Ricardo Quesada49a96a92021-08-16 11:25:52 -0700661 elog_fill_timestamp(event, tm.tm_sec, tm.tm_min, tm.tm_hour,
Ricardo Quesada1427f122021-09-22 20:08:35 -0700662 tm.tm_mday, tm.tm_mon + 1, tm.tm_year);
Ricardo Quesada49a96a92021-08-16 11:25:52 -0700663
664 if (data && data_size) {
665 uint32_t *ptr = (uint32_t *)&event[1];
666 memcpy(ptr, data, data_size);
667 }
668
669 /* Header + data + checksum */
670 event->length = sizeof(*event) + data_size + 1;
671
672 /* Zero the checksum byte and then compute checksum */
673 elog_update_checksum(event, 0);
674 elog_update_checksum(event, -(elog_checksum_event(event)));
675
676 return 1;
677}