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1c79356b | 1 | /* |
39037602 | 2 | * Copyright (c) 2000-2016 Apple Inc. All rights reserved. |
1c79356b | 3 | * |
2d21ac55 | 4 | * @APPLE_OSREFERENCE_LICENSE_HEADER_START@ |
0a7de745 | 5 | * |
2d21ac55 A |
6 | * This file contains Original Code and/or Modifications of Original Code |
7 | * as defined in and that are subject to the Apple Public Source License | |
8 | * Version 2.0 (the 'License'). You may not use this file except in | |
9 | * compliance with the License. The rights granted to you under the License | |
10 | * may not be used to create, or enable the creation or redistribution of, | |
11 | * unlawful or unlicensed copies of an Apple operating system, or to | |
12 | * circumvent, violate, or enable the circumvention or violation of, any | |
13 | * terms of an Apple operating system software license agreement. | |
0a7de745 | 14 | * |
2d21ac55 A |
15 | * Please obtain a copy of the License at |
16 | * http://www.opensource.apple.com/apsl/ and read it before using this file. | |
0a7de745 | 17 | * |
2d21ac55 A |
18 | * The Original Code and all software distributed under the License are |
19 | * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER | |
8f6c56a5 A |
20 | * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES, |
21 | * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY, | |
2d21ac55 A |
22 | * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT. |
23 | * Please see the License for the specific language governing rights and | |
24 | * limitations under the License. | |
0a7de745 | 25 | * |
2d21ac55 | 26 | * @APPLE_OSREFERENCE_LICENSE_HEADER_END@ |
1c79356b A |
27 | */ |
28 | /* | |
29 | * @OSF_COPYRIGHT@ | |
30 | */ | |
0a7de745 | 31 | /* |
1c79356b A |
32 | * Mach Operating System |
33 | * Copyright (c) 1991,1990,1989, 1988 Carnegie Mellon University | |
34 | * All Rights Reserved. | |
0a7de745 | 35 | * |
1c79356b A |
36 | * Permission to use, copy, modify and distribute this software and its |
37 | * documentation is hereby granted, provided that both the copyright | |
38 | * notice and this permission notice appear in all copies of the | |
39 | * software, derivative works or modified versions, and any portions | |
40 | * thereof, and that both notices appear in supporting documentation. | |
0a7de745 | 41 | * |
1c79356b A |
42 | * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS" |
43 | * CONDITION. CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR | |
44 | * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE. | |
0a7de745 | 45 | * |
1c79356b | 46 | * Carnegie Mellon requests users of this software to return to |
0a7de745 | 47 | * |
1c79356b A |
48 | * Software Distribution Coordinator or Software.Distribution@CS.CMU.EDU |
49 | * School of Computer Science | |
50 | * Carnegie Mellon University | |
51 | * Pittsburgh PA 15213-3890 | |
0a7de745 | 52 | * |
1c79356b A |
53 | * any improvements or extensions that they make and grant Carnegie Mellon |
54 | * the rights to redistribute these changes. | |
55 | */ | |
56 | ||
57 | /* | |
58 | */ | |
59 | ||
60 | /* | |
61 | * File: model_dep.c | |
62 | * Author: Avadis Tevanian, Jr., Michael Wayne Young | |
63 | * | |
64 | * Copyright (C) 1986, Avadis Tevanian, Jr., Michael Wayne Young | |
65 | * | |
66 | * Basic initialization for I386 - ISA bus machines. | |
67 | */ | |
68 | ||
1c79356b | 69 | |
5ba3f43e A |
70 | #define __APPLE_API_PRIVATE 1 |
71 | #define __APPLE_API_UNSTABLE 1 | |
72 | #include <kern/debug.h> | |
73 | ||
1c79356b A |
74 | #include <mach/i386/vm_param.h> |
75 | ||
76 | #include <string.h> | |
77 | #include <mach/vm_param.h> | |
78 | #include <mach/vm_prot.h> | |
79 | #include <mach/machine.h> | |
80 | #include <mach/time_value.h> | |
04b8595b | 81 | #include <sys/kdebug.h> |
1c79356b A |
82 | #include <kern/spl.h> |
83 | #include <kern/assert.h> | |
0a7de745 | 84 | #include <kern/lock_group.h> |
1c79356b A |
85 | #include <kern/misc_protos.h> |
86 | #include <kern/startup.h> | |
87 | #include <kern/clock.h> | |
1c79356b | 88 | #include <kern/cpu_data.h> |
91447636 | 89 | #include <kern/machine.h> |
b0d623f7 A |
90 | #include <i386/postcode.h> |
91 | #include <i386/mp_desc.h> | |
92 | #include <i386/misc_protos.h> | |
93 | #include <i386/thread.h> | |
94 | #include <i386/trap.h> | |
95 | #include <i386/machine_routines.h> | |
0a7de745 | 96 | #include <i386/mp.h> /* mp_rendezvous_break_lock */ |
b0d623f7 | 97 | #include <i386/cpuid.h> |
1c79356b | 98 | #include <i386/fpu.h> |
6d2010ae A |
99 | #include <i386/machine_cpu.h> |
100 | #include <i386/pmap.h> | |
101 | #if CONFIG_MTRR | |
91447636 | 102 | #include <i386/mtrr.h> |
6d2010ae A |
103 | #endif |
104 | #include <i386/ucode.h> | |
0c530ab8 | 105 | #include <i386/pmCPU.h> |
fe8ab488 A |
106 | #include <i386/panic_hooks.h> |
107 | ||
0c530ab8 | 108 | #include <architecture/i386/pio.h> /* inb() */ |
55e303ae | 109 | #include <pexpert/i386/boot.h> |
1c79356b | 110 | |
04b8595b | 111 | #include <kdp/kdp_dyld.h> |
39037602 | 112 | #include <kdp/kdp_core.h> |
0c530ab8 A |
113 | #include <vm/pmap.h> |
114 | #include <vm/vm_map.h> | |
115 | #include <vm/vm_kern.h> | |
116 | ||
cb323159 | 117 | #include <IOKit/IOBSD.h> |
9bccf70c | 118 | #include <IOKit/IOPlatformExpert.h> |
0c530ab8 A |
119 | #include <IOKit/IOHibernatePrivate.h> |
120 | ||
121 | #include <pexpert/i386/efi.h> | |
122 | ||
123 | #include <kern/thread.h> | |
316670eb | 124 | #include <kern/sched.h> |
0c530ab8 A |
125 | #include <mach-o/loader.h> |
126 | #include <mach-o/nlist.h> | |
9bccf70c | 127 | |
b0d623f7 | 128 | #include <libkern/kernel_mach_header.h> |
6d2010ae | 129 | #include <libkern/OSKextLibPrivate.h> |
d9a64523 | 130 | #include <libkern/crc.h> |
3e170ce0 | 131 | |
0a7de745 A |
132 | #if DEBUG || DEVELOPMENT |
133 | #define DPRINTF(x...) kprintf(x) | |
7ddcb079 | 134 | #else |
6d2010ae | 135 | #define DPRINTF(x...) |
7ddcb079 | 136 | #endif |
91447636 | 137 | |
5c9f4661 A |
138 | #ifndef ROUNDUP |
139 | #define ROUNDUP(a, b) (((a) + ((b) - 1)) & (~((b) - 1))) | |
140 | #endif | |
141 | ||
142 | #ifndef ROUNDDOWN | |
0a7de745 | 143 | #define ROUNDDOWN(x, y) (((x)/(y))*(y)) |
5c9f4661 A |
144 | #endif |
145 | ||
55e303ae | 146 | static void machine_conf(void); |
04b8595b | 147 | void panic_print_symbol_name(vm_address_t search); |
5ba3f43e | 148 | void RecordPanicStackshot(void); |
1c79356b | 149 | |
5c9f4661 | 150 | typedef enum paniclog_flush_type { |
0a7de745 A |
151 | kPaniclogFlushBase = 1,/* Flush the initial log and paniclog header */ |
152 | kPaniclogFlushStackshot = 2,/* Flush only the stackshot data, then flush the header */ | |
153 | kPaniclogFlushOtherLog = 3/* Flush the other log, then flush the header */ | |
5c9f4661 A |
154 | } paniclog_flush_type_t; |
155 | ||
156 | void paniclog_flush_internal(paniclog_flush_type_t variant); | |
157 | ||
0a7de745 A |
158 | extern const char version[]; |
159 | extern char osversion[]; | |
160 | extern int max_unsafe_quanta; | |
161 | extern int max_poll_quanta; | |
162 | extern unsigned int panic_is_inited; | |
91447636 | 163 | |
0a7de745 | 164 | extern int proc_pid(void *p); |
04b8595b A |
165 | |
166 | /* Definitions for frame pointers */ | |
167 | #define FP_ALIGNMENT_MASK ((uint32_t)(0x3)) | |
168 | #define FP_LR_OFFSET ((uint32_t)4) | |
169 | #define FP_LR_OFFSET64 ((uint32_t)8) | |
170 | #define FP_MAX_NUM_TO_EVALUATE (50) | |
171 | ||
0c530ab8 | 172 | volatile int pbtcpu = -1; |
0a7de745 | 173 | hw_lock_data_t pbtlock; /* backtrace print lock */ |
0c530ab8 A |
174 | uint32_t pbtcnt = 0; |
175 | ||
6d2010ae A |
176 | volatile int panic_double_fault_cpu = -1; |
177 | ||
0a7de745 | 178 | #define PRINT_ARGS_FROM_STACK_FRAME 0 |
b0d623f7 | 179 | |
0c530ab8 | 180 | typedef struct _cframe_t { |
0a7de745 A |
181 | struct _cframe_t *prev; |
182 | uintptr_t caller; | |
b0d623f7 | 183 | #if PRINT_ARGS_FROM_STACK_FRAME |
0a7de745 | 184 | unsigned args[0]; |
b0d623f7 | 185 | #endif |
0c530ab8 A |
186 | } cframe_t; |
187 | ||
2d21ac55 | 188 | static unsigned panic_io_port; |
0a7de745 | 189 | static unsigned commit_paniclog_to_nvram; |
5ba3f43e A |
190 | boolean_t coprocessor_paniclog_flush = FALSE; |
191 | ||
5ba3f43e A |
192 | struct kcdata_descriptor kc_panic_data; |
193 | static boolean_t begun_panic_stackshot = FALSE; | |
0a7de745 | 194 | extern kern_return_t do_stackshot(void *); |
cc8bc92a | 195 | |
0a7de745 A |
196 | extern void kdp_snapshot_preflight(int pid, void *tracebuf, |
197 | uint32_t tracebuf_size, uint32_t flags, | |
198 | kcdata_descriptor_t data_p, | |
199 | boolean_t enable_faulting); | |
200 | extern int kdp_stack_snapshot_bytes_traced(void); | |
0c530ab8 | 201 | |
cc8bc92a | 202 | vm_offset_t panic_stackshot_buf = 0; |
cb323159 | 203 | size_t panic_stackshot_buf_len = 0; |
c910b4d9 | 204 | |
cb323159 | 205 | size_t panic_stackshot_len = 0; |
04b8595b A |
206 | /* |
207 | * Backtrace a single frame. | |
208 | */ | |
209 | void | |
210 | print_one_backtrace(pmap_t pmap, vm_offset_t topfp, const char *cur_marker, | |
0a7de745 | 211 | boolean_t is_64_bit) |
04b8595b | 212 | { |
0a7de745 A |
213 | int i = 0; |
214 | addr64_t lr; | |
215 | addr64_t fp; | |
216 | addr64_t fp_for_ppn; | |
217 | ppnum_t ppn; | |
218 | boolean_t dump_kernel_stack; | |
04b8595b A |
219 | |
220 | fp = topfp; | |
221 | fp_for_ppn = 0; | |
222 | ppn = (ppnum_t)NULL; | |
223 | ||
0a7de745 | 224 | if (fp >= VM_MIN_KERNEL_ADDRESS) { |
04b8595b | 225 | dump_kernel_stack = TRUE; |
0a7de745 | 226 | } else { |
04b8595b | 227 | dump_kernel_stack = FALSE; |
0a7de745 | 228 | } |
04b8595b A |
229 | |
230 | do { | |
0a7de745 | 231 | if ((fp == 0) || ((fp & FP_ALIGNMENT_MASK) != 0)) { |
04b8595b | 232 | break; |
0a7de745 A |
233 | } |
234 | if (dump_kernel_stack && ((fp < VM_MIN_KERNEL_ADDRESS) || (fp > VM_MAX_KERNEL_ADDRESS))) { | |
04b8595b | 235 | break; |
0a7de745 A |
236 | } |
237 | if ((!dump_kernel_stack) && (fp >= VM_MIN_KERNEL_ADDRESS)) { | |
04b8595b | 238 | break; |
0a7de745 A |
239 | } |
240 | ||
241 | /* Check to see if current address will result in a different | |
242 | * ppn than previously computed (to avoid recomputation) via | |
243 | * (addr) ^ fp_for_ppn) >> PAGE_SHIFT) */ | |
04b8595b A |
244 | |
245 | if ((((fp + FP_LR_OFFSET) ^ fp_for_ppn) >> PAGE_SHIFT) != 0x0U) { | |
246 | ppn = pmap_find_phys(pmap, fp + FP_LR_OFFSET); | |
247 | fp_for_ppn = fp + (is_64_bit ? FP_LR_OFFSET64 : FP_LR_OFFSET); | |
248 | } | |
249 | if (ppn != (ppnum_t)NULL) { | |
250 | if (is_64_bit) { | |
251 | lr = ml_phys_read_double_64(((((vm_offset_t)ppn) << PAGE_SHIFT)) | ((fp + FP_LR_OFFSET64) & PAGE_MASK)); | |
252 | } else { | |
253 | lr = ml_phys_read_word(((((vm_offset_t)ppn) << PAGE_SHIFT)) | ((fp + FP_LR_OFFSET) & PAGE_MASK)); | |
254 | } | |
255 | } else { | |
256 | if (is_64_bit) { | |
5ba3f43e | 257 | paniclog_append_noflush("%s\t Could not read LR from frame at 0x%016llx\n", cur_marker, fp + FP_LR_OFFSET64); |
04b8595b | 258 | } else { |
5ba3f43e | 259 | paniclog_append_noflush("%s\t Could not read LR from frame at 0x%08x\n", cur_marker, (uint32_t)(fp + FP_LR_OFFSET)); |
04b8595b A |
260 | } |
261 | break; | |
262 | } | |
263 | if (((fp ^ fp_for_ppn) >> PAGE_SHIFT) != 0x0U) { | |
264 | ppn = pmap_find_phys(pmap, fp); | |
265 | fp_for_ppn = fp; | |
266 | } | |
267 | if (ppn != (ppnum_t)NULL) { | |
268 | if (is_64_bit) { | |
269 | fp = ml_phys_read_double_64(((((vm_offset_t)ppn) << PAGE_SHIFT)) | (fp & PAGE_MASK)); | |
270 | } else { | |
271 | fp = ml_phys_read_word(((((vm_offset_t)ppn) << PAGE_SHIFT)) | (fp & PAGE_MASK)); | |
272 | } | |
273 | } else { | |
274 | if (is_64_bit) { | |
5ba3f43e | 275 | paniclog_append_noflush("%s\t Could not read FP from frame at 0x%016llx\n", cur_marker, fp); |
04b8595b | 276 | } else { |
5ba3f43e | 277 | paniclog_append_noflush("%s\t Could not read FP from frame at 0x%08x\n", cur_marker, (uint32_t)fp); |
04b8595b A |
278 | } |
279 | break; | |
280 | } | |
281 | ||
5ba3f43e A |
282 | if (is_64_bit) { |
283 | paniclog_append_noflush("%s\t0x%016llx\n", cur_marker, lr); | |
284 | } else { | |
285 | paniclog_append_noflush("%s\t0x%08x\n", cur_marker, (uint32_t)lr); | |
04b8595b A |
286 | } |
287 | } while ((++i < FP_MAX_NUM_TO_EVALUATE) && (fp != topfp)); | |
288 | } | |
1c79356b | 289 | void |
2d21ac55 | 290 | machine_startup(void) |
1c79356b | 291 | { |
0a7de745 | 292 | int boot_arg; |
1c79356b | 293 | |
55e303ae | 294 | #if 0 |
0a7de745 A |
295 | if (PE_get_hotkey( kPEControlKey )) { |
296 | halt_in_debugger = halt_in_debugger ? 0 : 1; | |
297 | } | |
1c79356b A |
298 | #endif |
299 | ||
0a7de745 | 300 | if (!PE_parse_boot_argn("nvram_paniclog", &commit_paniclog_to_nvram, sizeof(commit_paniclog_to_nvram))) { |
2d21ac55 | 301 | commit_paniclog_to_nvram = 1; |
0a7de745 | 302 | } |
2d21ac55 A |
303 | |
304 | /* | |
305 | * Entering the debugger will put the CPUs into a "safe" | |
306 | * power mode. | |
307 | */ | |
0a7de745 A |
308 | if (PE_parse_boot_argn("pmsafe_debug", &boot_arg, sizeof(boot_arg))) { |
309 | pmsafe_debug = boot_arg; | |
310 | } | |
2d21ac55 | 311 | |
0a7de745 | 312 | hw_lock_init(&pbtlock); /* initialize print backtrace lock */ |
1c79356b | 313 | |
0a7de745 | 314 | if (PE_parse_boot_argn("preempt", &boot_arg, sizeof(boot_arg))) { |
55e303ae | 315 | default_preemption_rate = boot_arg; |
1c79356b | 316 | } |
0a7de745 | 317 | if (PE_parse_boot_argn("unsafe", &boot_arg, sizeof(boot_arg))) { |
55e303ae A |
318 | max_unsafe_quanta = boot_arg; |
319 | } | |
0a7de745 | 320 | if (PE_parse_boot_argn("poll", &boot_arg, sizeof(boot_arg))) { |
55e303ae A |
321 | max_poll_quanta = boot_arg; |
322 | } | |
0a7de745 | 323 | if (PE_parse_boot_argn("yield", &boot_arg, sizeof(boot_arg))) { |
55e303ae A |
324 | sched_poll_yield_shift = boot_arg; |
325 | } | |
0c530ab8 A |
326 | /* The I/O port to issue a read from, in the event of a panic. Useful for |
327 | * triggering logic analyzers. | |
328 | */ | |
0a7de745 | 329 | if (PE_parse_boot_argn("panic_io_port", &boot_arg, sizeof(boot_arg))) { |
0c530ab8 A |
330 | /*I/O ports range from 0 through 0xFFFF */ |
331 | panic_io_port = boot_arg & 0xffff; | |
332 | } | |
333 | ||
55e303ae A |
334 | machine_conf(); |
335 | ||
fe8ab488 A |
336 | panic_hooks_init(); |
337 | ||
1c79356b A |
338 | /* |
339 | * Start the system. | |
340 | */ | |
91447636 A |
341 | kernel_bootstrap(); |
342 | /*NOTREACHED*/ | |
1c79356b A |
343 | } |
344 | ||
55e303ae A |
345 | |
346 | static void | |
347 | machine_conf(void) | |
1c79356b | 348 | { |
b0d623f7 | 349 | machine_info.memory_size = (typeof(machine_info.memory_size))mem_size; |
1c79356b A |
350 | } |
351 | ||
0c530ab8 A |
352 | extern void *gPEEFIRuntimeServices; |
353 | extern void *gPEEFISystemTable; | |
354 | ||
0c530ab8 A |
355 | static void |
356 | efi_set_tables_64(EFI_SYSTEM_TABLE_64 * system_table) | |
357 | { | |
0a7de745 A |
358 | EFI_RUNTIME_SERVICES_64 *runtime; |
359 | uint32_t hdr_cksum; | |
360 | uint32_t cksum; | |
361 | ||
362 | DPRINTF("Processing 64-bit EFI tables at %p\n", system_table); | |
363 | do { | |
364 | DPRINTF("Header:\n"); | |
365 | DPRINTF(" Signature: 0x%016llx\n", system_table->Hdr.Signature); | |
366 | DPRINTF(" Revision: 0x%08x\n", system_table->Hdr.Revision); | |
367 | DPRINTF(" HeaderSize: 0x%08x\n", system_table->Hdr.HeaderSize); | |
368 | DPRINTF(" CRC32: 0x%08x\n", system_table->Hdr.CRC32); | |
369 | DPRINTF("RuntimeServices: 0x%016llx\n", system_table->RuntimeServices); | |
370 | if (system_table->Hdr.Signature != EFI_SYSTEM_TABLE_SIGNATURE) { | |
371 | kprintf("Bad EFI system table signature\n"); | |
372 | break; | |
373 | } | |
374 | // Verify signature of the system table | |
375 | hdr_cksum = system_table->Hdr.CRC32; | |
376 | system_table->Hdr.CRC32 = 0; | |
377 | cksum = crc32(0L, system_table, system_table->Hdr.HeaderSize); | |
378 | ||
379 | DPRINTF("System table calculated CRC32 = 0x%x, header = 0x%x\n", cksum, hdr_cksum); | |
380 | system_table->Hdr.CRC32 = hdr_cksum; | |
381 | if (cksum != hdr_cksum) { | |
382 | kprintf("Bad EFI system table checksum\n"); | |
383 | break; | |
384 | } | |
385 | ||
386 | gPEEFISystemTable = system_table; | |
387 | ||
388 | if (system_table->RuntimeServices == 0) { | |
389 | kprintf("No runtime table present\n"); | |
390 | break; | |
391 | } | |
392 | DPRINTF("RuntimeServices table at 0x%qx\n", system_table->RuntimeServices); | |
393 | // 64-bit virtual address is OK for 64-bit EFI and 64/32-bit kernel. | |
394 | runtime = (EFI_RUNTIME_SERVICES_64 *) (uintptr_t)system_table->RuntimeServices; | |
395 | DPRINTF("Checking runtime services table %p\n", runtime); | |
396 | if (runtime->Hdr.Signature != EFI_RUNTIME_SERVICES_SIGNATURE) { | |
397 | kprintf("Bad EFI runtime table signature\n"); | |
398 | break; | |
399 | } | |
400 | ||
401 | // Verify signature of runtime services table | |
402 | hdr_cksum = runtime->Hdr.CRC32; | |
403 | runtime->Hdr.CRC32 = 0; | |
404 | cksum = crc32(0L, runtime, runtime->Hdr.HeaderSize); | |
405 | ||
406 | DPRINTF("Runtime table calculated CRC32 = 0x%x, header = 0x%x\n", cksum, hdr_cksum); | |
407 | runtime->Hdr.CRC32 = hdr_cksum; | |
408 | if (cksum != hdr_cksum) { | |
409 | kprintf("Bad EFI runtime table checksum\n"); | |
410 | break; | |
411 | } | |
0c530ab8 | 412 | |
0a7de745 A |
413 | gPEEFIRuntimeServices = runtime; |
414 | }while (FALSE); | |
0c530ab8 A |
415 | } |
416 | ||
417 | static void | |
b0d623f7 | 418 | efi_set_tables_32(EFI_SYSTEM_TABLE_32 * system_table) |
0c530ab8 | 419 | { |
0a7de745 A |
420 | EFI_RUNTIME_SERVICES_32 *runtime; |
421 | uint32_t hdr_cksum; | |
422 | uint32_t cksum; | |
423 | ||
424 | DPRINTF("Processing 32-bit EFI tables at %p\n", system_table); | |
425 | do { | |
426 | DPRINTF("Header:\n"); | |
427 | DPRINTF(" Signature: 0x%016llx\n", system_table->Hdr.Signature); | |
428 | DPRINTF(" Revision: 0x%08x\n", system_table->Hdr.Revision); | |
429 | DPRINTF(" HeaderSize: 0x%08x\n", system_table->Hdr.HeaderSize); | |
430 | DPRINTF(" CRC32: 0x%08x\n", system_table->Hdr.CRC32); | |
431 | DPRINTF("RuntimeServices: 0x%08x\n", system_table->RuntimeServices); | |
432 | if (system_table->Hdr.Signature != EFI_SYSTEM_TABLE_SIGNATURE) { | |
433 | kprintf("Bad EFI system table signature\n"); | |
434 | break; | |
435 | } | |
436 | // Verify signature of the system table | |
437 | hdr_cksum = system_table->Hdr.CRC32; | |
438 | system_table->Hdr.CRC32 = 0; | |
439 | DPRINTF("System table at %p HeaderSize 0x%x\n", system_table, system_table->Hdr.HeaderSize); | |
440 | cksum = crc32(0L, system_table, system_table->Hdr.HeaderSize); | |
441 | ||
442 | DPRINTF("System table calculated CRC32 = 0x%x, header = 0x%x\n", cksum, hdr_cksum); | |
443 | system_table->Hdr.CRC32 = hdr_cksum; | |
444 | if (cksum != hdr_cksum) { | |
445 | kprintf("Bad EFI system table checksum\n"); | |
446 | break; | |
447 | } | |
448 | ||
449 | gPEEFISystemTable = system_table; | |
450 | ||
451 | if (system_table->RuntimeServices == 0) { | |
452 | kprintf("No runtime table present\n"); | |
453 | break; | |
454 | } | |
455 | DPRINTF("RuntimeServices table at 0x%x\n", system_table->RuntimeServices); | |
456 | // 32-bit virtual address is OK for 32-bit EFI and 32-bit kernel. | |
457 | // For a 64-bit kernel, booter provides a virtual address mod 4G | |
458 | runtime = (EFI_RUNTIME_SERVICES_32 *) | |
459 | (system_table->RuntimeServices | VM_MIN_KERNEL_ADDRESS); | |
460 | DPRINTF("Runtime table addressed at %p\n", runtime); | |
461 | if (runtime->Hdr.Signature != EFI_RUNTIME_SERVICES_SIGNATURE) { | |
462 | kprintf("Bad EFI runtime table signature\n"); | |
463 | break; | |
464 | } | |
465 | ||
466 | // Verify signature of runtime services table | |
467 | hdr_cksum = runtime->Hdr.CRC32; | |
468 | runtime->Hdr.CRC32 = 0; | |
469 | cksum = crc32(0L, runtime, runtime->Hdr.HeaderSize); | |
0c530ab8 | 470 | |
0a7de745 A |
471 | DPRINTF("Runtime table calculated CRC32 = 0x%x, header = 0x%x\n", cksum, hdr_cksum); |
472 | runtime->Hdr.CRC32 = hdr_cksum; | |
473 | if (cksum != hdr_cksum) { | |
474 | kprintf("Bad EFI runtime table checksum\n"); | |
475 | break; | |
476 | } | |
477 | ||
478 | DPRINTF("Runtime functions\n"); | |
479 | DPRINTF(" GetTime : 0x%x\n", runtime->GetTime); | |
480 | DPRINTF(" SetTime : 0x%x\n", runtime->SetTime); | |
481 | DPRINTF(" GetWakeupTime : 0x%x\n", runtime->GetWakeupTime); | |
482 | DPRINTF(" SetWakeupTime : 0x%x\n", runtime->SetWakeupTime); | |
483 | DPRINTF(" SetVirtualAddressMap : 0x%x\n", runtime->SetVirtualAddressMap); | |
484 | DPRINTF(" ConvertPointer : 0x%x\n", runtime->ConvertPointer); | |
485 | DPRINTF(" GetVariable : 0x%x\n", runtime->GetVariable); | |
486 | DPRINTF(" GetNextVariableName : 0x%x\n", runtime->GetNextVariableName); | |
487 | DPRINTF(" SetVariable : 0x%x\n", runtime->SetVariable); | |
488 | DPRINTF(" GetNextHighMonotonicCount: 0x%x\n", runtime->GetNextHighMonotonicCount); | |
489 | DPRINTF(" ResetSystem : 0x%x\n", runtime->ResetSystem); | |
490 | ||
491 | gPEEFIRuntimeServices = runtime; | |
492 | }while (FALSE); | |
0c530ab8 A |
493 | } |
494 | ||
495 | ||
496 | /* Map in EFI runtime areas. */ | |
497 | static void | |
498 | efi_init(void) | |
499 | { | |
0a7de745 A |
500 | boot_args *args = (boot_args *)PE_state.bootArgs; |
501 | ||
502 | kprintf("Initializing EFI runtime services\n"); | |
503 | ||
504 | do{ | |
505 | vm_offset_t vm_size, vm_addr; | |
506 | vm_map_offset_t phys_addr; | |
507 | EfiMemoryRange *mptr; | |
508 | unsigned int msize, mcount; | |
509 | unsigned int i; | |
510 | ||
511 | msize = args->MemoryMapDescriptorSize; | |
512 | mcount = args->MemoryMapSize / msize; | |
513 | ||
514 | DPRINTF("efi_init() kernel base: 0x%x size: 0x%x\n", | |
515 | args->kaddr, args->ksize); | |
516 | DPRINTF(" efiSystemTable physical: 0x%x virtual: %p\n", | |
517 | args->efiSystemTable, | |
518 | (void *) ml_static_ptovirt(args->efiSystemTable)); | |
519 | DPRINTF(" efiRuntimeServicesPageStart: 0x%x\n", | |
520 | args->efiRuntimeServicesPageStart); | |
521 | DPRINTF(" efiRuntimeServicesPageCount: 0x%x\n", | |
522 | args->efiRuntimeServicesPageCount); | |
523 | DPRINTF(" efiRuntimeServicesVirtualPageStart: 0x%016llx\n", | |
524 | args->efiRuntimeServicesVirtualPageStart); | |
525 | mptr = (EfiMemoryRange *)ml_static_ptovirt(args->MemoryMap); | |
526 | for (i = 0; i < mcount; i++, mptr = (EfiMemoryRange *)(((vm_offset_t)mptr) + msize)) { | |
527 | if (((mptr->Attribute & EFI_MEMORY_RUNTIME) == EFI_MEMORY_RUNTIME)) { | |
528 | vm_size = (vm_offset_t)i386_ptob((uint32_t)mptr->NumberOfPages); | |
529 | vm_addr = (vm_offset_t) mptr->VirtualStart; | |
530 | /* For K64 on EFI32, shadow-map into high KVA */ | |
531 | if (vm_addr < VM_MIN_KERNEL_ADDRESS) { | |
532 | vm_addr |= VM_MIN_KERNEL_ADDRESS; | |
533 | } | |
534 | phys_addr = (vm_map_offset_t) mptr->PhysicalStart; | |
535 | DPRINTF(" Type: %x phys: %p EFIv: %p kv: %p size: %p\n", | |
536 | mptr->Type, | |
537 | (void *) (uintptr_t) phys_addr, | |
538 | (void *) (uintptr_t) mptr->VirtualStart, | |
539 | (void *) vm_addr, | |
540 | (void *) vm_size); | |
541 | pmap_map_bd(vm_addr, phys_addr, phys_addr + round_page(vm_size), | |
542 | (mptr->Type == kEfiRuntimeServicesCode) ? VM_PROT_READ | VM_PROT_EXECUTE : VM_PROT_READ | VM_PROT_WRITE, | |
543 | (mptr->Type == EfiMemoryMappedIO) ? VM_WIMG_IO : VM_WIMG_USE_DEFAULT); | |
544 | } | |
545 | } | |
0c530ab8 | 546 | |
0a7de745 A |
547 | if (args->Version != kBootArgsVersion2) { |
548 | panic("Incompatible boot args version %d revision %d\n", args->Version, args->Revision); | |
549 | } | |
0c530ab8 | 550 | |
0a7de745 A |
551 | DPRINTF("Boot args version %d revision %d mode %d\n", args->Version, args->Revision, args->efiMode); |
552 | if (args->efiMode == kBootArgsEfiMode64) { | |
553 | efi_set_tables_64((EFI_SYSTEM_TABLE_64 *) ml_static_ptovirt(args->efiSystemTable)); | |
554 | } else { | |
555 | efi_set_tables_32((EFI_SYSTEM_TABLE_32 *) ml_static_ptovirt(args->efiSystemTable)); | |
556 | } | |
557 | }while (FALSE); | |
0c530ab8 | 558 | |
0a7de745 | 559 | return; |
0c530ab8 A |
560 | } |
561 | ||
0a7de745 | 562 | /* Returns TRUE if a page belongs to the EFI Runtime Services (code or data) */ |
5ba3f43e | 563 | boolean_t |
0a7de745 | 564 | efi_valid_page(ppnum_t ppn) |
5ba3f43e | 565 | { |
0a7de745 A |
566 | boot_args *args = (boot_args *)PE_state.bootArgs; |
567 | ppnum_t pstart = args->efiRuntimeServicesPageStart; | |
568 | ppnum_t pend = pstart + args->efiRuntimeServicesPageCount; | |
5ba3f43e | 569 | |
0a7de745 | 570 | return pstart <= ppn && ppn < pend; |
5ba3f43e A |
571 | } |
572 | ||
0c530ab8 A |
573 | /* Remap EFI runtime areas. */ |
574 | void | |
575 | hibernate_newruntime_map(void * map, vm_size_t map_size, uint32_t system_table_offset) | |
576 | { | |
0a7de745 A |
577 | boot_args *args = (boot_args *)PE_state.bootArgs; |
578 | ||
579 | kprintf("Reinitializing EFI runtime services\n"); | |
580 | ||
581 | do{ | |
582 | vm_offset_t vm_size, vm_addr; | |
583 | vm_map_offset_t phys_addr; | |
584 | EfiMemoryRange *mptr; | |
585 | unsigned int msize, mcount; | |
586 | unsigned int i; | |
587 | ||
588 | gPEEFISystemTable = 0; | |
589 | gPEEFIRuntimeServices = 0; | |
590 | ||
591 | system_table_offset += ptoa_32(args->efiRuntimeServicesPageStart); | |
592 | ||
593 | kprintf("Old system table 0x%x, new 0x%x\n", | |
594 | (uint32_t)args->efiSystemTable, system_table_offset); | |
595 | ||
596 | args->efiSystemTable = system_table_offset; | |
597 | ||
598 | kprintf("Old map:\n"); | |
599 | msize = args->MemoryMapDescriptorSize; | |
600 | mcount = args->MemoryMapSize / msize; | |
601 | mptr = (EfiMemoryRange *)ml_static_ptovirt(args->MemoryMap); | |
602 | for (i = 0; i < mcount; i++, mptr = (EfiMemoryRange *)(((vm_offset_t)mptr) + msize)) { | |
603 | if ((mptr->Attribute & EFI_MEMORY_RUNTIME) == EFI_MEMORY_RUNTIME) { | |
604 | vm_size = (vm_offset_t)i386_ptob((uint32_t)mptr->NumberOfPages); | |
605 | vm_addr = (vm_offset_t) mptr->VirtualStart; | |
606 | /* K64 on EFI32 */ | |
607 | if (vm_addr < VM_MIN_KERNEL_ADDRESS) { | |
608 | vm_addr |= VM_MIN_KERNEL_ADDRESS; | |
609 | } | |
610 | phys_addr = (vm_map_offset_t) mptr->PhysicalStart; | |
0c530ab8 | 611 | |
0a7de745 A |
612 | kprintf("mapping[%u] %qx @ %lx, %llu\n", mptr->Type, phys_addr, (unsigned long)vm_addr, mptr->NumberOfPages); |
613 | } | |
614 | } | |
0c530ab8 | 615 | |
0a7de745 A |
616 | pmap_remove(kernel_pmap, i386_ptob(args->efiRuntimeServicesPageStart), |
617 | i386_ptob(args->efiRuntimeServicesPageStart + args->efiRuntimeServicesPageCount)); | |
618 | ||
619 | kprintf("New map:\n"); | |
620 | msize = args->MemoryMapDescriptorSize; | |
621 | mcount = (unsigned int)(map_size / msize); | |
622 | mptr = map; | |
623 | for (i = 0; i < mcount; i++, mptr = (EfiMemoryRange *)(((vm_offset_t)mptr) + msize)) { | |
624 | if ((mptr->Attribute & EFI_MEMORY_RUNTIME) == EFI_MEMORY_RUNTIME) { | |
625 | vm_size = (vm_offset_t)i386_ptob((uint32_t)mptr->NumberOfPages); | |
626 | vm_addr = (vm_offset_t) mptr->VirtualStart; | |
627 | if (vm_addr < VM_MIN_KERNEL_ADDRESS) { | |
628 | vm_addr |= VM_MIN_KERNEL_ADDRESS; | |
629 | } | |
630 | phys_addr = (vm_map_offset_t) mptr->PhysicalStart; | |
0c530ab8 | 631 | |
0a7de745 | 632 | kprintf("mapping[%u] %qx @ %lx, %llu\n", mptr->Type, phys_addr, (unsigned long)vm_addr, mptr->NumberOfPages); |
0c530ab8 | 633 | |
0a7de745 A |
634 | pmap_map(vm_addr, phys_addr, phys_addr + round_page(vm_size), |
635 | (mptr->Type == kEfiRuntimeServicesCode) ? VM_PROT_READ | VM_PROT_EXECUTE : VM_PROT_READ | VM_PROT_WRITE, | |
636 | (mptr->Type == EfiMemoryMappedIO) ? VM_WIMG_IO : VM_WIMG_USE_DEFAULT); | |
637 | } | |
638 | } | |
0c530ab8 | 639 | |
0a7de745 A |
640 | if (args->Version != kBootArgsVersion2) { |
641 | panic("Incompatible boot args version %d revision %d\n", args->Version, args->Revision); | |
642 | } | |
0c530ab8 | 643 | |
0a7de745 A |
644 | kprintf("Boot args version %d revision %d mode %d\n", args->Version, args->Revision, args->efiMode); |
645 | if (args->efiMode == kBootArgsEfiMode64) { | |
646 | efi_set_tables_64((EFI_SYSTEM_TABLE_64 *) ml_static_ptovirt(args->efiSystemTable)); | |
647 | } else { | |
648 | efi_set_tables_32((EFI_SYSTEM_TABLE_32 *) ml_static_ptovirt(args->efiSystemTable)); | |
649 | } | |
650 | }while (FALSE); | |
0c530ab8 | 651 | |
0a7de745 | 652 | kprintf("Done reinitializing EFI runtime services\n"); |
0c530ab8 | 653 | |
0a7de745 | 654 | return; |
0c530ab8 A |
655 | } |
656 | ||
1c79356b A |
657 | /* |
658 | * Find devices. The system is alive. | |
659 | */ | |
660 | void | |
661 | machine_init(void) | |
662 | { | |
316670eb A |
663 | /* Now with VM up, switch to dynamically allocated cpu data */ |
664 | cpu_data_realloc(); | |
316670eb | 665 | |
0a7de745 A |
666 | /* Ensure panic buffer is initialized. */ |
667 | debug_log_init(); | |
0c530ab8 | 668 | |
1c79356b A |
669 | /* |
670 | * Display CPU identification | |
671 | */ | |
0c530ab8 A |
672 | cpuid_cpu_display("CPU identification"); |
673 | cpuid_feature_display("CPU features"); | |
674 | cpuid_extfeature_display("CPU extended features"); | |
1c79356b | 675 | |
0a7de745 A |
676 | /* |
677 | * Initialize EFI runtime services. | |
678 | */ | |
679 | efi_init(); | |
55e303ae | 680 | |
55e303ae | 681 | smp_init(); |
1c79356b A |
682 | |
683 | /* | |
684 | * Set up to use floating point. | |
685 | */ | |
686 | init_fpu(); | |
687 | ||
1c79356b A |
688 | /* |
689 | * Configure clock devices. | |
690 | */ | |
691 | clock_config(); | |
91447636 | 692 | |
6d2010ae | 693 | #if CONFIG_MTRR |
91447636 A |
694 | /* |
695 | * Initialize MTRR from boot processor. | |
696 | */ | |
697 | mtrr_init(); | |
698 | ||
699 | /* | |
700 | * Set up PAT for boot processor. | |
701 | */ | |
702 | pat_init(); | |
6d2010ae | 703 | #endif |
91447636 A |
704 | |
705 | /* | |
b0d623f7 | 706 | * Free lowmem pages and complete other setup |
91447636 | 707 | */ |
b0d623f7 | 708 | pmap_lowmem_finalize(); |
1c79356b A |
709 | } |
710 | ||
711 | /* | |
712 | * Halt a cpu. | |
713 | */ | |
714 | void | |
715 | halt_cpu(void) | |
716 | { | |
717 | halt_all_cpus(FALSE); | |
718 | } | |
719 | ||
720 | int reset_mem_on_reboot = 1; | |
721 | ||
722 | /* | |
723 | * Halt the system or reboot. | |
724 | */ | |
39037602 | 725 | __attribute__((noreturn)) |
1c79356b | 726 | void |
9bccf70c | 727 | halt_all_cpus(boolean_t reboot) |
1c79356b | 728 | { |
55e303ae | 729 | if (reboot) { |
55e303ae A |
730 | printf("MACH Reboot\n"); |
731 | PEHaltRestart( kPERestartCPU ); | |
732 | } else { | |
733 | printf("CPU halted\n"); | |
734 | PEHaltRestart( kPEHaltCPU ); | |
1c79356b | 735 | } |
0a7de745 A |
736 | while (1) { |
737 | ; | |
738 | } | |
1c79356b A |
739 | } |
740 | ||
0a7de745 | 741 | |
0c530ab8 A |
742 | /* Issue an I/O port read if one has been requested - this is an event logic |
743 | * analyzers can use as a trigger point. | |
744 | */ | |
745 | ||
746 | void | |
0a7de745 A |
747 | panic_io_port_read(void) |
748 | { | |
749 | if (panic_io_port) { | |
0c530ab8 | 750 | (void)inb(panic_io_port); |
0a7de745 | 751 | } |
0c530ab8 A |
752 | } |
753 | ||
754 | /* For use with the MP rendezvous mechanism | |
755 | */ | |
756 | ||
6d2010ae A |
757 | uint64_t panic_restart_timeout = ~(0ULL); |
758 | ||
13f56ec4 A |
759 | #define PANIC_RESTART_TIMEOUT (3ULL * NSEC_PER_SEC) |
760 | ||
cc8bc92a A |
761 | /* |
762 | * We should always return from this function with the other log offset | |
763 | * set in the panic_info structure. | |
764 | */ | |
5ba3f43e A |
765 | void |
766 | RecordPanicStackshot() | |
767 | { | |
cb323159 A |
768 | int err = 0; |
769 | size_t bytes_traced = 0, bytes_used = 0, bytes_remaining = 0; | |
cc8bc92a A |
770 | char *stackshot_begin_loc = NULL; |
771 | ||
772 | /* Don't re-enter this code if we panic here */ | |
5ba3f43e | 773 | if (begun_panic_stackshot) { |
cc8bc92a A |
774 | if (panic_info->mph_other_log_offset == 0) { |
775 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
776 | } | |
13f56ec4 | 777 | return; |
6d2010ae | 778 | } |
5ba3f43e | 779 | begun_panic_stackshot = TRUE; |
13f56ec4 | 780 | |
cc8bc92a A |
781 | /* The panic log length should have been set before we came to capture a stackshot */ |
782 | if (panic_info->mph_panic_log_len == 0) { | |
783 | kdb_printf("Found zero length panic log, skipping capturing panic stackshot\n"); | |
784 | if (panic_info->mph_other_log_offset == 0) { | |
785 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
786 | } | |
787 | return; | |
788 | } | |
789 | ||
cb323159 A |
790 | if (stackshot_active()) { |
791 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_FAILED_NESTED; | |
cc8bc92a | 792 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); |
cb323159 | 793 | kdb_printf("Panicked during stackshot, skipping panic stackshot\n"); |
cc8bc92a A |
794 | return; |
795 | } | |
796 | ||
cb323159 A |
797 | /* Try to capture an in memory panic_stackshot */ |
798 | if (extended_debug_log_enabled) { | |
799 | /* On coprocessor systems we write this into the extended debug log */ | |
800 | stackshot_begin_loc = debug_buf_ptr; | |
801 | bytes_remaining = debug_buf_size - (unsigned int)((uintptr_t)stackshot_begin_loc - (uintptr_t)debug_buf_base); | |
802 | } else if (panic_stackshot_buf != 0) { | |
803 | /* On other systems we use the panic stackshot_buf */ | |
804 | stackshot_begin_loc = (char *) panic_stackshot_buf; | |
805 | bytes_remaining = panic_stackshot_buf_len; | |
806 | } else { | |
807 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
5ba3f43e A |
808 | return; |
809 | } | |
13f56ec4 | 810 | |
cb323159 A |
811 | |
812 | err = kcdata_memory_static_init(&kc_panic_data, (mach_vm_address_t)stackshot_begin_loc, | |
813 | KCDATA_BUFFER_BEGIN_STACKSHOT, (unsigned int) bytes_remaining, KCFLAG_USE_MEMCOPY); | |
5ba3f43e | 814 | if (err != KERN_SUCCESS) { |
cb323159 A |
815 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_FAILED_ERROR; |
816 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
817 | kdb_printf("Failed to initialize kcdata buffer for in-memory panic stackshot, skipping ...\n"); | |
5ba3f43e A |
818 | return; |
819 | } | |
1c79356b | 820 | |
cb323159 A |
821 | uint32_t stackshot_flags = (STACKSHOT_SAVE_KEXT_LOADINFO | STACKSHOT_SAVE_LOADINFO | STACKSHOT_KCDATA_FORMAT | |
822 | STACKSHOT_ENABLE_BT_FAULTING | STACKSHOT_ENABLE_UUID_FAULTING | STACKSHOT_FROM_PANIC | | |
823 | STACKSHOT_NO_IO_STATS | STACKSHOT_THREAD_WAITINFO); | |
824 | #if DEVELOPMENT | |
825 | /* | |
826 | * Include the shared cache layout in panic stackshots on DEVELOPMENT kernels so that we can symbolicate | |
827 | * panic stackshots from corefiles. | |
828 | */ | |
829 | stackshot_flags |= STACKSHOT_COLLECT_SHAREDCACHE_LAYOUT; | |
830 | #endif | |
831 | ||
832 | kdp_snapshot_preflight(-1, (void *) stackshot_begin_loc, (uint32_t) bytes_remaining, stackshot_flags, &kc_panic_data, 0); | |
5ba3f43e A |
833 | err = do_stackshot(NULL); |
834 | bytes_traced = (int) kdp_stack_snapshot_bytes_traced(); | |
cb323159 A |
835 | bytes_used = (int) kcdata_memory_get_used_bytes(&kc_panic_data); |
836 | ||
837 | if ((err != KERN_SUCCESS) && (bytes_used > 0)) { | |
838 | /* | |
839 | * We ran out of space while trying to capture a stackshot, try again without user frames. | |
840 | * It's not safe to log from here (in case we're writing in the middle of the debug buffer on coprocessor systems) | |
841 | * but append a flag to the panic flags. | |
842 | */ | |
843 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_KERNEL_ONLY; | |
844 | panic_stackshot_reset_state(); | |
845 | ||
846 | /* Erase the stackshot data (this region is pre-populated with the NULL character) */ | |
847 | memset(stackshot_begin_loc, '\0', bytes_used); | |
848 | ||
849 | err = kcdata_memory_static_init(&kc_panic_data, (mach_vm_address_t)stackshot_begin_loc, | |
850 | KCDATA_BUFFER_BEGIN_STACKSHOT, (unsigned int) bytes_remaining, KCFLAG_USE_MEMCOPY); | |
851 | if (err != KERN_SUCCESS) { | |
852 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_FAILED_ERROR; | |
853 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
854 | kdb_printf("Failed to re-initialize kcdata buffer for kernel only in-memory panic stackshot, skipping ...\n"); | |
855 | return; | |
856 | } | |
857 | ||
858 | stackshot_flags = (STACKSHOT_SAVE_KEXT_LOADINFO | STACKSHOT_KCDATA_FORMAT | STACKSHOT_FROM_PANIC | | |
859 | STACKSHOT_NO_IO_STATS | STACKSHOT_THREAD_WAITINFO | STACKSHOT_ACTIVE_KERNEL_THREADS_ONLY); | |
860 | #if DEVELOPMENT | |
861 | /* | |
862 | * Include the shared cache layout in panic stackshots on DEVELOPMENT kernels so that we can symbolicate | |
863 | * panic stackshots from corefiles. | |
864 | */ | |
865 | stackshot_flags |= STACKSHOT_COLLECT_SHAREDCACHE_LAYOUT; | |
866 | #endif | |
867 | ||
868 | kdp_snapshot_preflight(-1, (void *) stackshot_begin_loc, (uint32_t) bytes_remaining, stackshot_flags, &kc_panic_data, 0); | |
869 | err = do_stackshot(NULL); | |
870 | bytes_traced = (int) kdp_stack_snapshot_bytes_traced(); | |
871 | bytes_used = (int) kcdata_memory_get_used_bytes(&kc_panic_data); | |
872 | } | |
873 | ||
874 | if (err == KERN_SUCCESS) { | |
875 | if (extended_debug_log_enabled) { | |
876 | debug_buf_ptr += bytes_traced; | |
877 | } | |
878 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_SUCCEEDED; | |
879 | panic_info->mph_stackshot_offset = PE_get_offset_into_panic_region(stackshot_begin_loc); | |
880 | panic_info->mph_stackshot_len = (uint32_t) bytes_traced; | |
881 | ||
882 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
883 | kdb_printf("\n** In Memory Panic Stackshot Succeeded ** Bytes Traced %zu **\n", bytes_traced); | |
884 | ||
885 | /* Used by the code that writes the buffer to disk */ | |
886 | panic_stackshot_buf = (vm_offset_t) stackshot_begin_loc; | |
5ba3f43e | 887 | panic_stackshot_len = bytes_traced; |
cb323159 A |
888 | |
889 | if (!extended_debug_log_enabled && (gIOPolledCoreFileMode == kIOPolledCoreFileModeStackshot)) { | |
890 | /* System configured to write panic stackshot to disk */ | |
891 | kern_dump(KERN_DUMP_STACKSHOT_DISK); | |
892 | } | |
5ba3f43e | 893 | } else { |
5ba3f43e | 894 | if (bytes_used > 0) { |
cb323159 A |
895 | /* Erase the stackshot data (this region is pre-populated with the NULL character) */ |
896 | memset(stackshot_begin_loc, '\0', bytes_used); | |
897 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_FAILED_INCOMPLETE; | |
898 | ||
899 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
900 | kdb_printf("\n** In Memory Panic Stackshot Incomplete ** Bytes Filled %zu ** Err %d\n", bytes_used, err); | |
5ba3f43e | 901 | } else { |
cb323159 A |
902 | bzero(stackshot_begin_loc, bytes_used); |
903 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_STACKSHOT_FAILED_ERROR; | |
904 | ||
905 | panic_info->mph_other_log_offset = PE_get_offset_into_panic_region(debug_buf_ptr); | |
906 | kdb_printf("\n** In Memory Panic Stackshot Failed ** Bytes Traced %zu, err %d\n", bytes_traced, err); | |
5ba3f43e | 907 | } |
39037602 | 908 | } |
cc8bc92a | 909 | |
5ba3f43e | 910 | return; |
316670eb A |
911 | } |
912 | ||
1c79356b | 913 | void |
5ba3f43e | 914 | SavePanicInfo( |
d9a64523 | 915 | __unused const char *message, void *panic_data, uint64_t panic_options) |
1c79356b | 916 | { |
d9a64523 A |
917 | void *stackptr = NULL; |
918 | thread_t thread_to_trace = (thread_t) panic_data; | |
919 | cframe_t synthetic_stack_frame = { }; | |
920 | char *debugger_msg = NULL; | |
6d2010ae | 921 | int cn = cpu_number(); |
39037602 | 922 | |
0c530ab8 | 923 | /* |
5ba3f43e A |
924 | * Issue an I/O port read if one has been requested - this is an event logic |
925 | * analyzers can use as a trigger point. | |
0c530ab8 | 926 | */ |
5ba3f43e | 927 | panic_io_port_read(); |
0c530ab8 | 928 | |
d9a64523 A |
929 | /* Obtain frame pointer for stack to trace */ |
930 | if (panic_options & DEBUGGER_INTERNAL_OPTION_THREAD_BACKTRACE) { | |
931 | if (!mp_kdp_all_cpus_halted()) { | |
932 | debugger_msg = "Backtracing panicked thread because failed to halt all CPUs\n"; | |
933 | } else if (thread_to_trace == THREAD_NULL) { | |
934 | debugger_msg = "Backtracing panicked thread because no thread pointer provided\n"; | |
935 | } else if (kvtophys((vm_offset_t)thread_to_trace) == 0ULL) { | |
936 | debugger_msg = "Backtracing panicked thread because unable to access specified thread\n"; | |
937 | } else if (thread_to_trace->kernel_stack == 0) { | |
938 | debugger_msg = "Backtracing panicked thread because kernel_stack is NULL for specified thread\n"; | |
939 | } else if (kvtophys(STACK_IKS(thread_to_trace->kernel_stack) == 0ULL)) { | |
940 | debugger_msg = "Backtracing panicked thread because unable to access kernel_stack for specified thread\n"; | |
941 | } else { | |
942 | debugger_msg = "Backtracing specified thread\n"; | |
943 | /* We construct a synthetic stack frame so we can include the current instruction pointer */ | |
944 | synthetic_stack_frame.prev = (cframe_t *)STACK_IKS(thread_to_trace->kernel_stack)->k_rbp; | |
945 | synthetic_stack_frame.caller = (uintptr_t) STACK_IKS(thread_to_trace->kernel_stack)->k_rip; | |
946 | stackptr = (void *) &synthetic_stack_frame; | |
947 | } | |
948 | } | |
949 | ||
950 | if (stackptr == NULL) { | |
0a7de745 | 951 | __asm__ volatile ("movq %%rbp, %0" : "=m" (stackptr)); |
d9a64523 | 952 | } |
0c530ab8 | 953 | |
cc8bc92a | 954 | /* Print backtrace - callee is internally synchronized */ |
5ba3f43e A |
955 | if (panic_options & DEBUGGER_OPTION_INITPROC_PANIC) { |
956 | /* Special handling of launchd died panics */ | |
957 | print_launchd_info(); | |
958 | } else { | |
d9a64523 | 959 | panic_i386_backtrace(stackptr, ((panic_double_fault_cpu == cn) ? 80: 48), debugger_msg, FALSE, NULL); |
5ba3f43e | 960 | } |
0c530ab8 | 961 | |
5ba3f43e A |
962 | if (panic_options & DEBUGGER_OPTION_COPROC_INITIATED_PANIC) { |
963 | panic_info->mph_panic_flags |= MACOS_PANIC_HEADER_FLAG_COPROC_INITIATED_PANIC; | |
964 | } | |
0c530ab8 | 965 | |
cc8bc92a A |
966 | if (PE_get_offset_into_panic_region(debug_buf_ptr) < panic_info->mph_panic_log_offset) { |
967 | kdb_printf("Invalid panic log offset found (not properly initialized?): debug_buf_ptr : 0x%p, panic_info: 0x%p mph_panic_log_offset: 0x%x\n", | |
0a7de745 | 968 | debug_buf_ptr, panic_info, panic_info->mph_panic_log_offset); |
cc8bc92a A |
969 | panic_info->mph_panic_log_len = 0; |
970 | } else { | |
971 | panic_info->mph_panic_log_len = PE_get_offset_into_panic_region(debug_buf_ptr) - panic_info->mph_panic_log_offset; | |
972 | } | |
973 | ||
974 | /* Flush the panic log */ | |
5c9f4661 | 975 | paniclog_flush_internal(kPaniclogFlushBase); |
0c530ab8 | 976 | |
5ba3f43e A |
977 | /* Try to take a panic stackshot */ |
978 | RecordPanicStackshot(); | |
cc8bc92a A |
979 | |
980 | /* | |
981 | * Flush the panic log again with the stackshot or any relevant logging | |
982 | * from when we tried to capture it. | |
983 | */ | |
cb323159 | 984 | paniclog_flush_internal(kPaniclogFlushStackshot); |
5ba3f43e | 985 | } |
6d2010ae | 986 | |
0a7de745 A |
987 | void |
988 | paniclog_flush_internal(paniclog_flush_type_t variant) | |
5ba3f43e | 989 | { |
cc8bc92a A |
990 | /* Update the other log offset if we've opened the other log */ |
991 | if (panic_info->mph_other_log_offset != 0) { | |
992 | panic_info->mph_other_log_len = PE_get_offset_into_panic_region(debug_buf_ptr) - panic_info->mph_other_log_offset; | |
993 | } | |
2d21ac55 | 994 | |
5ba3f43e | 995 | /* |
cc8bc92a | 996 | * If we've detected that we're on a co-processor system, we flush the panic log via the kPEPanicSync |
5ba3f43e A |
997 | * panic callbacks, otherwise we flush via nvram (unless that has been disabled). |
998 | */ | |
999 | if (coprocessor_paniclog_flush) { | |
5c9f4661 A |
1000 | uint32_t overall_buffer_size = debug_buf_size; |
1001 | uint32_t size_to_flush = 0, offset_to_flush = 0; | |
cc8bc92a A |
1002 | if (extended_debug_log_enabled) { |
1003 | /* | |
1004 | * debug_buf_size for the extended log does not include the length of the header. | |
1005 | * There may be some extra data at the end of the 'basic' log that wouldn't get flushed | |
1006 | * for the non-extended case (this is a concession we make to not shrink the paniclog data | |
1007 | * for non-coprocessor systems that only use the basic log). | |
1008 | */ | |
5c9f4661 | 1009 | overall_buffer_size = debug_buf_size + sizeof(struct macos_panic_header); |
cc8bc92a A |
1010 | } |
1011 | ||
5c9f4661 A |
1012 | /* Update the CRC */ |
1013 | panic_info->mph_crc = crc32(0L, &panic_info->mph_version, (overall_buffer_size - offsetof(struct macos_panic_header, mph_version))); | |
1014 | ||
1015 | if (variant == kPaniclogFlushBase) { | |
1016 | /* Flush the header and base panic log. */ | |
1017 | kprintf("Flushing base panic log\n"); | |
1018 | size_to_flush = ROUNDUP((panic_info->mph_panic_log_offset + panic_info->mph_panic_log_len), PANIC_FLUSH_BOUNDARY); | |
1019 | offset_to_flush = 0; | |
1020 | PESavePanicInfoAction(panic_info, offset_to_flush, size_to_flush); | |
1021 | } else if ((variant == kPaniclogFlushStackshot) || (variant == kPaniclogFlushOtherLog)) { | |
1022 | if (variant == kPaniclogFlushStackshot) { | |
1023 | /* | |
1024 | * We flush the stackshot before flushing the updated header because the stackshot | |
1025 | * can take a while to flush. We want the paniclog header to be as consistent as possible even | |
1026 | * if the stackshot isn't flushed completely. Flush starting from the end of the panic log. | |
1027 | */ | |
1028 | kprintf("Flushing panic log stackshot\n"); | |
1029 | offset_to_flush = ROUNDDOWN((panic_info->mph_panic_log_offset + panic_info->mph_panic_log_len), PANIC_FLUSH_BOUNDARY); | |
1030 | size_to_flush = ROUNDUP((panic_info->mph_stackshot_len + (panic_info->mph_stackshot_offset - offset_to_flush)), PANIC_FLUSH_BOUNDARY); | |
1031 | PESavePanicInfoAction(panic_info, offset_to_flush, size_to_flush); | |
1032 | } | |
5ba3f43e | 1033 | |
5c9f4661 A |
1034 | /* Flush the other log -- everything after the stackshot */ |
1035 | kprintf("Flushing panic 'other' log\n"); | |
1036 | offset_to_flush = ROUNDDOWN((panic_info->mph_stackshot_offset + panic_info->mph_stackshot_len), PANIC_FLUSH_BOUNDARY); | |
1037 | size_to_flush = ROUNDUP((panic_info->mph_other_log_len + (panic_info->mph_other_log_offset - offset_to_flush)), PANIC_FLUSH_BOUNDARY); | |
1038 | PESavePanicInfoAction(panic_info, offset_to_flush, size_to_flush); | |
1039 | ||
1040 | /* Flush the header -- everything before the paniclog */ | |
1041 | kprintf("Flushing panic log header\n"); | |
1042 | size_to_flush = ROUNDUP(panic_info->mph_panic_log_offset, PANIC_FLUSH_BOUNDARY); | |
1043 | offset_to_flush = 0; | |
1044 | PESavePanicInfoAction(panic_info, offset_to_flush, size_to_flush); | |
1045 | } | |
cc8bc92a | 1046 | } else if (commit_paniclog_to_nvram) { |
5ba3f43e A |
1047 | assert(debug_buf_size != 0); |
1048 | unsigned int bufpos; | |
5c9f4661 | 1049 | unsigned long pi_size = 0; |
5ba3f43e A |
1050 | uintptr_t cr0; |
1051 | ||
1052 | debug_putc(0); | |
1053 | ||
5ba3f43e A |
1054 | /* |
1055 | * Now call the compressor | |
1056 | * XXX Consider using the WKdm compressor in the | |
1057 | * future, rather than just packing - would need to | |
1058 | * be co-ordinated with crashreporter, which decodes | |
1059 | * this post-restart. The compressor should be | |
1060 | * capable of in-place compression. | |
1061 | * | |
1062 | * Don't include the macOS panic header (for co-processor systems only) | |
1063 | */ | |
1064 | bufpos = packA(debug_buf_base, (unsigned int) (debug_buf_ptr - debug_buf_base), | |
0a7de745 | 1065 | debug_buf_size); |
5ba3f43e A |
1066 | /* |
1067 | * If compression was successful, use the compressed length | |
1068 | */ | |
1069 | pi_size = bufpos ? bufpos : (unsigned) (debug_buf_ptr - debug_buf_base); | |
b7266188 | 1070 | |
5ba3f43e A |
1071 | /* |
1072 | * The following sequence is a workaround for: | |
1073 | * <rdar://problem/5915669> SnowLeopard10A67: AppleEFINVRAM should not invoke | |
1074 | * any routines that use floating point (MMX in this case) when saving panic | |
1075 | * logs to nvram/flash. | |
1076 | */ | |
1077 | cr0 = get_cr0(); | |
1078 | clear_ts(); | |
1079 | ||
1080 | /* | |
1081 | * Save panic log to non-volatile store | |
1082 | * Panic info handler must truncate data that is | |
1083 | * too long for this platform. | |
1084 | * This call must save data synchronously, | |
1085 | * since we can subsequently halt the system. | |
1086 | */ | |
1087 | kprintf("Attempting to commit panic log to NVRAM\n"); | |
1088 | pi_size = PESavePanicInfo((unsigned char *)debug_buf_base, | |
0a7de745 | 1089 | (uint32_t)pi_size ); |
5ba3f43e A |
1090 | set_cr0(cr0); |
1091 | ||
1092 | /* | |
1093 | * Uncompress in-place, to permit examination of | |
1094 | * the panic log by debuggers. | |
1095 | */ | |
1096 | if (bufpos) { | |
1097 | unpackA(debug_buf_base, bufpos); | |
0c530ab8 | 1098 | } |
5ba3f43e | 1099 | } |
1c79356b A |
1100 | } |
1101 | ||
5c9f4661 A |
1102 | void |
1103 | paniclog_flush() | |
1104 | { | |
1105 | /* Called outside of this file to update logging appended to the "other" log */ | |
1106 | paniclog_flush_internal(kPaniclogFlushOtherLog); | |
1107 | return; | |
1108 | } | |
1109 | ||
1c79356b | 1110 | char * |
91447636 | 1111 | machine_boot_info(char *buf, __unused vm_size_t size) |
1c79356b | 1112 | { |
0a7de745 | 1113 | *buf = '\0'; |
1c79356b A |
1114 | return buf; |
1115 | } | |
1116 | ||
0c530ab8 A |
1117 | /* Routines for address - symbol translation. Not called unless the "keepsyms" |
1118 | * boot-arg is supplied. | |
1119 | */ | |
1120 | ||
1121 | static int | |
6d2010ae | 1122 | panic_print_macho_symbol_name(kernel_mach_header_t *mh, vm_address_t search, const char *module_name) |
0c530ab8 | 1123 | { |
0a7de745 A |
1124 | kernel_nlist_t *sym = NULL; |
1125 | struct load_command *cmd; | |
1126 | kernel_segment_command_t *orig_ts = NULL, *orig_le = NULL; | |
1127 | struct symtab_command *orig_st = NULL; | |
1128 | unsigned int i; | |
1129 | char *strings, *bestsym = NULL; | |
1130 | vm_address_t bestaddr = 0, diff, curdiff; | |
1131 | ||
1132 | /* Assume that if it's loaded and linked into the kernel, it's a valid Mach-O */ | |
1133 | ||
1134 | cmd = (struct load_command *) &mh[1]; | |
1135 | for (i = 0; i < mh->ncmds; i++) { | |
1136 | if (cmd->cmd == LC_SEGMENT_KERNEL) { | |
1137 | kernel_segment_command_t *orig_sg = (kernel_segment_command_t *) cmd; | |
1138 | ||
1139 | if (strncmp(SEG_TEXT, orig_sg->segname, | |
1140 | sizeof(orig_sg->segname)) == 0) { | |
1141 | orig_ts = orig_sg; | |
1142 | } else if (strncmp(SEG_LINKEDIT, orig_sg->segname, | |
1143 | sizeof(orig_sg->segname)) == 0) { | |
1144 | orig_le = orig_sg; | |
1145 | } else if (strncmp("", orig_sg->segname, | |
1146 | sizeof(orig_sg->segname)) == 0) { | |
1147 | orig_ts = orig_sg; /* pre-Lion i386 kexts have a single unnamed segment */ | |
1148 | } | |
1149 | } else if (cmd->cmd == LC_SYMTAB) { | |
1150 | orig_st = (struct symtab_command *) cmd; | |
1151 | } | |
1152 | ||
1153 | cmd = (struct load_command *) ((uintptr_t) cmd + cmd->cmdsize); | |
1154 | } | |
1155 | ||
1156 | if ((orig_ts == NULL) || (orig_st == NULL) || (orig_le == NULL)) { | |
1157 | return 0; | |
1158 | } | |
1159 | ||
1160 | if ((search < orig_ts->vmaddr) || | |
1161 | (search >= orig_ts->vmaddr + orig_ts->vmsize)) { | |
1162 | /* search out of range for this mach header */ | |
1163 | return 0; | |
1164 | } | |
1165 | ||
1166 | sym = (kernel_nlist_t *)(uintptr_t)(orig_le->vmaddr + orig_st->symoff - orig_le->fileoff); | |
1167 | strings = (char *)(uintptr_t)(orig_le->vmaddr + orig_st->stroff - orig_le->fileoff); | |
1168 | diff = search; | |
1169 | ||
1170 | for (i = 0; i < orig_st->nsyms; i++) { | |
1171 | if (sym[i].n_type & N_STAB) { | |
1172 | continue; | |
1173 | } | |
1174 | ||
1175 | if (sym[i].n_value <= search) { | |
1176 | curdiff = search - (vm_address_t)sym[i].n_value; | |
1177 | if (curdiff < diff) { | |
1178 | diff = curdiff; | |
1179 | bestaddr = sym[i].n_value; | |
1180 | bestsym = strings + sym[i].n_un.n_strx; | |
1181 | } | |
1182 | } | |
1183 | } | |
1184 | ||
1185 | if (bestsym != NULL) { | |
1186 | if (diff != 0) { | |
1187 | paniclog_append_noflush("%s : %s + 0x%lx", module_name, bestsym, (unsigned long)diff); | |
1188 | } else { | |
1189 | paniclog_append_noflush("%s : %s", module_name, bestsym); | |
1190 | } | |
1191 | return 1; | |
1192 | } | |
1193 | return 0; | |
0c530ab8 A |
1194 | } |
1195 | ||
1196 | extern kmod_info_t * kmod; /* the list of modules */ | |
1197 | ||
1198 | static void | |
1199 | panic_print_kmod_symbol_name(vm_address_t search) | |
1200 | { | |
0a7de745 A |
1201 | u_int i; |
1202 | ||
1203 | if (gLoadedKextSummaries == NULL) { | |
1204 | return; | |
1205 | } | |
1206 | for (i = 0; i < gLoadedKextSummaries->numSummaries; ++i) { | |
1207 | OSKextLoadedKextSummary *summary = gLoadedKextSummaries->summaries + i; | |
1208 | ||
1209 | if ((search >= summary->address) && | |
1210 | (search < (summary->address + summary->size))) { | |
1211 | kernel_mach_header_t *header = (kernel_mach_header_t *)(uintptr_t) summary->address; | |
1212 | if (panic_print_macho_symbol_name(header, search, summary->name) == 0) { | |
1213 | paniclog_append_noflush("%s + %llu", summary->name, (unsigned long)search - summary->address); | |
1214 | } | |
1215 | break; | |
1216 | } | |
1217 | } | |
0c530ab8 A |
1218 | } |
1219 | ||
04b8595b | 1220 | void |
0c530ab8 A |
1221 | panic_print_symbol_name(vm_address_t search) |
1222 | { | |
0a7de745 A |
1223 | /* try searching in the kernel */ |
1224 | if (panic_print_macho_symbol_name(&_mh_execute_header, search, "mach_kernel") == 0) { | |
1225 | /* that failed, now try to search for the right kext */ | |
1226 | panic_print_kmod_symbol_name(search); | |
1227 | } | |
0c530ab8 A |
1228 | } |
1229 | ||
1230 | /* Generate a backtrace, given a frame pointer - this routine | |
1231 | * should walk the stack safely. The trace is appended to the panic log | |
1232 | * and conditionally, to the console. If the trace contains kernel module | |
1233 | * addresses, display the module name, load address and dependencies. | |
1234 | */ | |
1235 | ||
1236 | #define DUMPFRAMES 32 | |
1237 | #define PBT_TIMEOUT_CYCLES (5 * 1000 * 1000 * 1000ULL) | |
1238 | void | |
935ed37a | 1239 | panic_i386_backtrace(void *_frame, int nframes, const char *msg, boolean_t regdump, x86_saved_state_t *regs) |
0c530ab8 | 1240 | { |
0a7de745 | 1241 | cframe_t *frame = (cframe_t *)_frame; |
0c530ab8 | 1242 | vm_offset_t raddrs[DUMPFRAMES]; |
935ed37a | 1243 | vm_offset_t PC = 0; |
0c530ab8 A |
1244 | int frame_index; |
1245 | volatile uint32_t *ppbtcnt = &pbtcnt; | |
1246 | uint64_t bt_tsc_timeout; | |
1247 | boolean_t keepsyms = FALSE; | |
6d2010ae | 1248 | int cn = cpu_number(); |
3e170ce0 | 1249 | boolean_t old_doprnt_hide_pointers = doprnt_hide_pointers; |
0c530ab8 | 1250 | |
0a7de745 | 1251 | if (pbtcpu != cn) { |
cb323159 | 1252 | os_atomic_inc(&pbtcnt, relaxed); |
0c530ab8 A |
1253 | /* Spin on print backtrace lock, which serializes output |
1254 | * Continue anyway if a timeout occurs. | |
1255 | */ | |
0a7de745 | 1256 | hw_lock_to(&pbtlock, ~0U, LCK_GRP_NULL); |
6d2010ae | 1257 | pbtcpu = cn; |
0c530ab8 A |
1258 | } |
1259 | ||
3e170ce0 A |
1260 | if (__improbable(doprnt_hide_pointers == TRUE)) { |
1261 | /* If we're called directly, the Debugger() function will not be called, | |
1262 | * so we need to reset the value in here. */ | |
1263 | doprnt_hide_pointers = FALSE; | |
1264 | } | |
1265 | ||
fe8ab488 A |
1266 | panic_check_hook(); |
1267 | ||
0a7de745 | 1268 | PE_parse_boot_argn("keepsyms", &keepsyms, sizeof(keepsyms)); |
0c530ab8 | 1269 | |
935ed37a | 1270 | if (msg != NULL) { |
5ba3f43e | 1271 | paniclog_append_noflush("%s", msg); |
935ed37a A |
1272 | } |
1273 | ||
1274 | if ((regdump == TRUE) && (regs != NULL)) { | |
0a7de745 | 1275 | x86_saved_state64_t *ss64p = saved_state64(regs); |
5ba3f43e | 1276 | paniclog_append_noflush( |
0a7de745 A |
1277 | "RAX: 0x%016llx, RBX: 0x%016llx, RCX: 0x%016llx, RDX: 0x%016llx\n" |
1278 | "RSP: 0x%016llx, RBP: 0x%016llx, RSI: 0x%016llx, RDI: 0x%016llx\n" | |
1279 | "R8: 0x%016llx, R9: 0x%016llx, R10: 0x%016llx, R11: 0x%016llx\n" | |
1280 | "R12: 0x%016llx, R13: 0x%016llx, R14: 0x%016llx, R15: 0x%016llx\n" | |
1281 | "RFL: 0x%016llx, RIP: 0x%016llx, CS: 0x%016llx, SS: 0x%016llx\n", | |
1282 | ss64p->rax, ss64p->rbx, ss64p->rcx, ss64p->rdx, | |
1283 | ss64p->isf.rsp, ss64p->rbp, ss64p->rsi, ss64p->rdi, | |
1284 | ss64p->r8, ss64p->r9, ss64p->r10, ss64p->r11, | |
1285 | ss64p->r12, ss64p->r13, ss64p->r14, ss64p->r15, | |
1286 | ss64p->isf.rflags, ss64p->isf.rip, ss64p->isf.cs, | |
1287 | ss64p->isf.ss); | |
b0d623f7 | 1288 | PC = ss64p->isf.rip; |
935ed37a A |
1289 | } |
1290 | ||
5ba3f43e | 1291 | paniclog_append_noflush("Backtrace (CPU %d), " |
b0d623f7 | 1292 | #if PRINT_ARGS_FROM_STACK_FRAME |
0a7de745 | 1293 | "Frame : Return Address (4 potential args on stack)\n", cn); |
b0d623f7 | 1294 | #else |
0a7de745 | 1295 | "Frame : Return Address\n", cn); |
b0d623f7 | 1296 | #endif |
0c530ab8 A |
1297 | |
1298 | for (frame_index = 0; frame_index < nframes; frame_index++) { | |
1299 | vm_offset_t curframep = (vm_offset_t) frame; | |
1300 | ||
0a7de745 | 1301 | if (!curframep) { |
0c530ab8 | 1302 | break; |
0a7de745 | 1303 | } |
0c530ab8 A |
1304 | |
1305 | if (curframep & 0x3) { | |
5ba3f43e | 1306 | paniclog_append_noflush("Unaligned frame\n"); |
0c530ab8 A |
1307 | goto invalid; |
1308 | } | |
1309 | ||
1310 | if (!kvtophys(curframep) || | |
6d2010ae | 1311 | !kvtophys(curframep + sizeof(cframe_t) - 1)) { |
5ba3f43e | 1312 | paniclog_append_noflush("No mapping exists for frame pointer\n"); |
0c530ab8 A |
1313 | goto invalid; |
1314 | } | |
1315 | ||
5ba3f43e | 1316 | paniclog_append_noflush("%p : 0x%lx ", frame, frame->caller); |
0a7de745 | 1317 | if (frame_index < DUMPFRAMES) { |
0c530ab8 | 1318 | raddrs[frame_index] = frame->caller; |
0a7de745 | 1319 | } |
0c530ab8 | 1320 | |
b0d623f7 | 1321 | #if PRINT_ARGS_FROM_STACK_FRAME |
0a7de745 | 1322 | if (kvtophys((vm_offset_t)&(frame->args[3]))) { |
5ba3f43e | 1323 | paniclog_append_noflush("(0x%x 0x%x 0x%x 0x%x) ", |
0c530ab8 A |
1324 | frame->args[0], frame->args[1], |
1325 | frame->args[2], frame->args[3]); | |
0a7de745 | 1326 | } |
b0d623f7 | 1327 | #endif |
0c530ab8 A |
1328 | |
1329 | /* Display address-symbol translation only if the "keepsyms" | |
1330 | * boot-arg is suppplied, since we unload LINKEDIT otherwise. | |
1331 | * This routine is potentially unsafe; also, function | |
1332 | * boundary identification is unreliable after a strip -x. | |
1333 | */ | |
0a7de745 | 1334 | if (keepsyms) { |
0c530ab8 | 1335 | panic_print_symbol_name((vm_address_t)frame->caller); |
0a7de745 A |
1336 | } |
1337 | ||
5ba3f43e | 1338 | paniclog_append_noflush("\n"); |
b0d623f7 | 1339 | |
0c530ab8 A |
1340 | frame = frame->prev; |
1341 | } | |
1342 | ||
0a7de745 | 1343 | if (frame_index >= nframes) { |
5ba3f43e | 1344 | paniclog_append_noflush("\tBacktrace continues...\n"); |
0a7de745 | 1345 | } |
0c530ab8 A |
1346 | |
1347 | goto out; | |
1348 | ||
1349 | invalid: | |
0a7de745 | 1350 | paniclog_append_noflush("Backtrace terminated-invalid frame pointer %p\n", frame); |
0c530ab8 A |
1351 | out: |
1352 | ||
1353 | /* Identify kernel modules in the backtrace and display their | |
1354 | * load addresses and dependencies. This routine should walk | |
1355 | * the kmod list safely. | |
1356 | */ | |
0a7de745 | 1357 | if (frame_index) { |
b0d623f7 | 1358 | kmod_panic_dump((vm_offset_t *)&raddrs[0], frame_index); |
0a7de745 | 1359 | } |
0c530ab8 | 1360 | |
0a7de745 | 1361 | if (PC != 0) { |
b0d623f7 | 1362 | kmod_panic_dump(&PC, 1); |
0a7de745 | 1363 | } |
935ed37a | 1364 | |
d190cdc3 | 1365 | panic_display_system_configuration(FALSE); |
c910b4d9 | 1366 | |
3e170ce0 A |
1367 | doprnt_hide_pointers = old_doprnt_hide_pointers; |
1368 | ||
0c530ab8 A |
1369 | /* Release print backtrace lock, to permit other callers in the |
1370 | * event of panics on multiple processors. | |
1371 | */ | |
1372 | hw_lock_unlock(&pbtlock); | |
cb323159 | 1373 | os_atomic_dec(&pbtcnt, relaxed); |
0c530ab8 A |
1374 | /* Wait for other processors to complete output |
1375 | * Timeout and continue after PBT_TIMEOUT_CYCLES. | |
1376 | */ | |
1377 | bt_tsc_timeout = rdtsc64() + PBT_TIMEOUT_CYCLES; | |
0a7de745 A |
1378 | while (*ppbtcnt && (rdtsc64() < bt_tsc_timeout)) { |
1379 | ; | |
1380 | } | |
0c530ab8 | 1381 | } |
04b8595b A |
1382 | |
1383 | static boolean_t | |
1384 | debug_copyin(pmap_t p, uint64_t uaddr, void *dest, size_t size) | |
1385 | { | |
0a7de745 A |
1386 | size_t rem = size; |
1387 | char *kvaddr = dest; | |
1388 | ||
1389 | while (rem) { | |
1390 | ppnum_t upn = pmap_find_phys(p, uaddr); | |
1391 | uint64_t phys_src = ptoa_64(upn) | (uaddr & PAGE_MASK); | |
1392 | uint64_t phys_dest = kvtophys((vm_offset_t)kvaddr); | |
1393 | uint64_t src_rem = PAGE_SIZE - (phys_src & PAGE_MASK); | |
1394 | uint64_t dst_rem = PAGE_SIZE - (phys_dest & PAGE_MASK); | |
1395 | size_t cur_size = (uint32_t) MIN(src_rem, dst_rem); | |
1396 | cur_size = MIN(cur_size, rem); | |
1397 | ||
1398 | if (upn && pmap_valid_page(upn) && phys_dest) { | |
1399 | bcopy_phys(phys_src, phys_dest, cur_size); | |
1400 | } else { | |
1401 | break; | |
1402 | } | |
1403 | uaddr += cur_size; | |
1404 | kvaddr += cur_size; | |
1405 | rem -= cur_size; | |
1406 | } | |
1407 | return rem == 0; | |
04b8595b A |
1408 | } |
1409 | ||
1410 | void | |
1411 | print_threads_registers(thread_t thread) | |
1412 | { | |
1413 | x86_saved_state_t *savestate; | |
0a7de745 | 1414 | |
04b8595b | 1415 | savestate = get_user_regs(thread); |
5ba3f43e | 1416 | paniclog_append_noflush( |
04b8595b | 1417 | "\nRAX: 0x%016llx, RBX: 0x%016llx, RCX: 0x%016llx, RDX: 0x%016llx\n" |
0a7de745 A |
1418 | "RSP: 0x%016llx, RBP: 0x%016llx, RSI: 0x%016llx, RDI: 0x%016llx\n" |
1419 | "R8: 0x%016llx, R9: 0x%016llx, R10: 0x%016llx, R11: 0x%016llx\n" | |
04b8595b A |
1420 | "R12: 0x%016llx, R13: 0x%016llx, R14: 0x%016llx, R15: 0x%016llx\n" |
1421 | "RFL: 0x%016llx, RIP: 0x%016llx, CS: 0x%016llx, SS: 0x%016llx\n\n", | |
1422 | savestate->ss_64.rax, savestate->ss_64.rbx, savestate->ss_64.rcx, savestate->ss_64.rdx, | |
1423 | savestate->ss_64.isf.rsp, savestate->ss_64.rbp, savestate->ss_64.rsi, savestate->ss_64.rdi, | |
0a7de745 | 1424 | savestate->ss_64.r8, savestate->ss_64.r9, savestate->ss_64.r10, savestate->ss_64.r11, |
04b8595b A |
1425 | savestate->ss_64.r12, savestate->ss_64.r13, savestate->ss_64.r14, savestate->ss_64.r15, |
1426 | savestate->ss_64.isf.rflags, savestate->ss_64.isf.rip, savestate->ss_64.isf.cs, | |
1427 | savestate->ss_64.isf.ss); | |
1428 | } | |
1429 | ||
1430 | void | |
1431 | print_tasks_user_threads(task_t task) | |
1432 | { | |
0a7de745 | 1433 | thread_t thread = current_thread(); |
04b8595b | 1434 | x86_saved_state_t *savestate; |
0a7de745 A |
1435 | pmap_t pmap = 0; |
1436 | uint64_t rbp; | |
1437 | const char *cur_marker = 0; | |
04b8595b | 1438 | int j; |
04b8595b | 1439 | |
0a7de745 A |
1440 | for (j = 0, thread = (thread_t) queue_first(&task->threads); j < task->thread_count; |
1441 | ++j, thread = (thread_t) queue_next(&thread->task_threads)) { | |
5ba3f43e | 1442 | paniclog_append_noflush("Thread %d: %p\n", j, thread); |
04b8595b A |
1443 | pmap = get_task_pmap(task); |
1444 | savestate = get_user_regs(thread); | |
1445 | rbp = savestate->ss_64.rbp; | |
5ba3f43e A |
1446 | paniclog_append_noflush("\t0x%016llx\n", savestate->ss_64.isf.rip); |
1447 | print_one_backtrace(pmap, (vm_offset_t)rbp, cur_marker, TRUE); | |
1448 | paniclog_append_noflush("\n"); | |
39037602 | 1449 | } |
04b8595b A |
1450 | } |
1451 | ||
3e170ce0 A |
1452 | void |
1453 | print_thread_num_that_crashed(task_t task) | |
1454 | { | |
0a7de745 A |
1455 | thread_t c_thread = current_thread(); |
1456 | thread_t thread; | |
3e170ce0 | 1457 | int j; |
3e170ce0 | 1458 | |
0a7de745 A |
1459 | for (j = 0, thread = (thread_t) queue_first(&task->threads); j < task->thread_count; |
1460 | ++j, thread = (thread_t) queue_next(&thread->task_threads)) { | |
3e170ce0 | 1461 | if (c_thread == thread) { |
5ba3f43e | 1462 | paniclog_append_noflush("\nThread %d crashed\n", j); |
3e170ce0 A |
1463 | break; |
1464 | } | |
1465 | } | |
1466 | } | |
1467 | ||
04b8595b A |
1468 | #define PANICLOG_UUID_BUF_SIZE 256 |
1469 | ||
0a7de745 A |
1470 | void |
1471 | print_uuid_info(task_t task) | |
04b8595b | 1472 | { |
0a7de745 A |
1473 | uint32_t uuid_info_count = 0; |
1474 | mach_vm_address_t uuid_info_addr = 0; | |
1475 | boolean_t have_map = (task->map != NULL) && (ml_validate_nofault((vm_offset_t)(task->map), sizeof(struct _vm_map))); | |
1476 | boolean_t have_pmap = have_map && (task->map->pmap != NULL) && (ml_validate_nofault((vm_offset_t)(task->map->pmap), sizeof(struct pmap))); | |
1477 | int task_pid = pid_from_task(task); | |
1478 | char uuidbuf[PANICLOG_UUID_BUF_SIZE] = {0}; | |
1479 | char *uuidbufptr = uuidbuf; | |
1480 | uint32_t k; | |
04b8595b A |
1481 | |
1482 | if (have_pmap && task->active && task_pid > 0) { | |
1483 | /* Read dyld_all_image_infos struct from task memory to get UUID array count & location */ | |
1484 | struct user64_dyld_all_image_infos task_image_infos; | |
1485 | if (debug_copyin(task->map->pmap, task->all_image_info_addr, | |
0a7de745 | 1486 | &task_image_infos, sizeof(struct user64_dyld_all_image_infos))) { |
04b8595b A |
1487 | uuid_info_count = (uint32_t)task_image_infos.uuidArrayCount; |
1488 | uuid_info_addr = task_image_infos.uuidArray; | |
1489 | } | |
1490 | ||
1491 | /* If we get a NULL uuid_info_addr (which can happen when we catch dyld | |
1492 | * in the middle of updating this data structure), we zero the | |
1493 | * uuid_info_count so that we won't even try to save load info for this task | |
1494 | */ | |
1495 | if (!uuid_info_addr) { | |
1496 | uuid_info_count = 0; | |
1497 | } | |
1498 | } | |
1499 | ||
1500 | if (task_pid > 0 && uuid_info_count > 0) { | |
1501 | uint32_t uuid_info_size = sizeof(struct user64_dyld_uuid_info); | |
1502 | uint32_t uuid_array_size = uuid_info_count * uuid_info_size; | |
1503 | uint32_t uuid_copy_size = 0; | |
1504 | uint32_t uuid_image_count = 0; | |
1505 | char *current_uuid_buffer = NULL; | |
1506 | /* Copy in the UUID info array. It may be nonresident, in which case just fix up nloadinfos to 0 */ | |
0a7de745 | 1507 | |
5ba3f43e | 1508 | paniclog_append_noflush("\nuuid info:\n"); |
04b8595b A |
1509 | while (uuid_array_size) { |
1510 | if (uuid_array_size <= PANICLOG_UUID_BUF_SIZE) { | |
1511 | uuid_copy_size = uuid_array_size; | |
0a7de745 | 1512 | uuid_image_count = uuid_array_size / uuid_info_size; |
04b8595b | 1513 | } else { |
0a7de745 | 1514 | uuid_image_count = PANICLOG_UUID_BUF_SIZE / uuid_info_size; |
04b8595b A |
1515 | uuid_copy_size = uuid_image_count * uuid_info_size; |
1516 | } | |
1517 | if (have_pmap && !debug_copyin(task->map->pmap, uuid_info_addr, uuidbufptr, | |
0a7de745 | 1518 | uuid_copy_size)) { |
5ba3f43e | 1519 | paniclog_append_noflush("Error!! Failed to copy UUID info for task %p pid %d\n", task, task_pid); |
04b8595b A |
1520 | uuid_image_count = 0; |
1521 | break; | |
1522 | } | |
1523 | ||
1524 | if (uuid_image_count > 0) { | |
1525 | current_uuid_buffer = uuidbufptr; | |
1526 | for (k = 0; k < uuid_image_count; k++) { | |
5ba3f43e | 1527 | paniclog_append_noflush(" %#llx", *(uint64_t *)current_uuid_buffer); |
04b8595b A |
1528 | current_uuid_buffer += sizeof(uint64_t); |
1529 | uint8_t *uuid = (uint8_t *)current_uuid_buffer; | |
5ba3f43e | 1530 | paniclog_append_noflush("\tuuid = <%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x>\n", |
0a7de745 A |
1531 | uuid[0], uuid[1], uuid[2], uuid[3], uuid[4], uuid[5], uuid[6], uuid[7], uuid[8], |
1532 | uuid[9], uuid[10], uuid[11], uuid[12], uuid[13], uuid[14], uuid[15]); | |
04b8595b A |
1533 | current_uuid_buffer += 16; |
1534 | } | |
1535 | bzero(&uuidbuf, sizeof(uuidbuf)); | |
1536 | } | |
1537 | uuid_info_addr += uuid_copy_size; | |
1538 | uuid_array_size -= uuid_copy_size; | |
1539 | } | |
1540 | } | |
1541 | } | |
1542 | ||
0a7de745 A |
1543 | void |
1544 | print_launchd_info(void) | |
04b8595b | 1545 | { |
0a7de745 A |
1546 | task_t task = current_task(); |
1547 | thread_t thread = current_thread(); | |
1548 | volatile uint32_t *ppbtcnt = &pbtcnt; | |
1549 | uint64_t bt_tsc_timeout; | |
1550 | int cn = cpu_number(); | |
04b8595b | 1551 | |
0a7de745 | 1552 | if (pbtcpu != cn) { |
cb323159 | 1553 | os_atomic_inc(&pbtcnt, relaxed); |
04b8595b A |
1554 | /* Spin on print backtrace lock, which serializes output |
1555 | * Continue anyway if a timeout occurs. | |
1556 | */ | |
0a7de745 | 1557 | hw_lock_to(&pbtlock, ~0U, LCK_GRP_NULL); |
04b8595b A |
1558 | pbtcpu = cn; |
1559 | } | |
0a7de745 | 1560 | |
04b8595b | 1561 | print_uuid_info(task); |
3e170ce0 | 1562 | print_thread_num_that_crashed(task); |
04b8595b A |
1563 | print_threads_registers(thread); |
1564 | print_tasks_user_threads(task); | |
d190cdc3 A |
1565 | |
1566 | panic_display_system_configuration(TRUE); | |
0a7de745 | 1567 | |
04b8595b A |
1568 | /* Release print backtrace lock, to permit other callers in the |
1569 | * event of panics on multiple processors. | |
1570 | */ | |
1571 | hw_lock_unlock(&pbtlock); | |
cb323159 | 1572 | os_atomic_dec(&pbtcnt, relaxed); |
04b8595b A |
1573 | /* Wait for other processors to complete output |
1574 | * Timeout and continue after PBT_TIMEOUT_CYCLES. | |
1575 | */ | |
1576 | bt_tsc_timeout = rdtsc64() + PBT_TIMEOUT_CYCLES; | |
0a7de745 A |
1577 | while (*ppbtcnt && (rdtsc64() < bt_tsc_timeout)) { |
1578 | ; | |
1579 | } | |
04b8595b | 1580 | } |