xref: /xnu-8796.141.3/osfmk/kdp/ml/arm/kdp_machdep.c (revision 1b191cb58250d0705d8a51287127505aa4bc0789)
1 /*
2  * Copyright (c) 2000-2016 Apple Inc. All rights reserved.
3  *
4  * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5  *
6  * This file contains Original Code and/or Modifications of Original Code
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8  * Version 2.0 (the 'License'). You may not use this file except in
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15  * Please obtain a copy of the License at
16  * http://www.opensource.apple.com/apsl/ and read it before using this file.
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27  */
28 
29 #include <mach/mach_types.h>
30 #include <mach/exception_types.h>
31 #include <arm/exception.h>
32 #include <arm/pmap.h>
33 #include <arm64/proc_reg.h>
34 #include <arm/thread.h>
35 #include <arm/trap.h>
36 #include <arm/cpu_data_internal.h>
37 #include <kdp/kdp_internal.h>
38 #include <kern/debug.h>
39 #include <IOKit/IOPlatformExpert.h>
40 #include <libkern/OSAtomic.h>
41 #include <vm/vm_map.h>
42 #include <arm/misc_protos.h>
43 
44 #if defined(HAS_APPLE_PAC)
45 #include <ptrauth.h>
46 #endif
47 
48 #define KDP_TEST_HARNESS 0
49 #if KDP_TEST_HARNESS
50 #define dprintf(x) kprintf x
51 #else
52 #define dprintf(x) do {} while (0)
53 #endif
54 
55 void            halt_all_cpus(boolean_t);
56 void kdp_call(void);
57 int kdp_getc(void);
58 int machine_trace_thread(thread_t thread,
59     char * tracepos,
60     char * tracebound,
61     int nframes,
62     uint32_t * thread_trace_flags);
63 int machine_trace_thread64(thread_t thread,
64     char * tracepos,
65     char * tracebound,
66     int nframes,
67     uint32_t * thread_trace_flags);
68 
69 void kdp_trap(unsigned int, struct arm_saved_state * saved_state);
70 
71 extern bool machine_trace_thread_validate_kva(vm_offset_t addr);
72 
73 #if CONFIG_KDP_INTERACTIVE_DEBUGGING
74 void
kdp_exception(unsigned char * pkt,int * len,unsigned short * remote_port,unsigned int exception,unsigned int code,unsigned int subcode)75 kdp_exception(
76 	unsigned char * pkt, int * len, unsigned short * remote_port, unsigned int exception, unsigned int code, unsigned int subcode)
77 {
78 	struct {
79 		kdp_exception_t pkt;
80 		kdp_exc_info_t exc;
81 	} aligned_pkt;
82 
83 	kdp_exception_t * rq = (kdp_exception_t *)&aligned_pkt;
84 
85 	bcopy((char *)pkt, (char *)rq, sizeof(*rq));
86 	rq->hdr.request = KDP_EXCEPTION;
87 	rq->hdr.is_reply = 0;
88 	rq->hdr.seq = kdp.exception_seq;
89 	rq->hdr.key = 0;
90 	rq->hdr.len = sizeof(*rq) + sizeof(kdp_exc_info_t);
91 
92 	rq->n_exc_info = 1;
93 	rq->exc_info[0].cpu = 0;
94 	rq->exc_info[0].exception = exception;
95 	rq->exc_info[0].code = code;
96 	rq->exc_info[0].subcode = subcode;
97 
98 	rq->hdr.len += rq->n_exc_info * sizeof(kdp_exc_info_t);
99 
100 	bcopy((char *)rq, (char *)pkt, rq->hdr.len);
101 
102 	kdp.exception_ack_needed = TRUE;
103 
104 	*remote_port = kdp.exception_port;
105 	*len = rq->hdr.len;
106 }
107 
108 boolean_t
kdp_exception_ack(unsigned char * pkt,int len)109 kdp_exception_ack(unsigned char * pkt, int len)
110 {
111 	kdp_exception_ack_t aligned_pkt;
112 	kdp_exception_ack_t * rq = (kdp_exception_ack_t *)&aligned_pkt;
113 
114 	if ((unsigned)len < sizeof(*rq)) {
115 		return FALSE;
116 	}
117 
118 	bcopy((char *)pkt, (char *)rq, sizeof(*rq));
119 
120 	if (!rq->hdr.is_reply || rq->hdr.request != KDP_EXCEPTION) {
121 		return FALSE;
122 	}
123 
124 	dprintf(("kdp_exception_ack seq %x %x\n", rq->hdr.seq, kdp.exception_seq));
125 
126 	if (rq->hdr.seq == kdp.exception_seq) {
127 		kdp.exception_ack_needed = FALSE;
128 		kdp.exception_seq++;
129 	}
130 	return TRUE;
131 }
132 
133 static void
kdp_getintegerstate(char * out_state)134 kdp_getintegerstate(char * out_state)
135 {
136 #if defined(__arm64__)
137 	struct arm_thread_state64 thread_state64;
138 	arm_saved_state_t *saved_state;
139 
140 	saved_state = kdp.saved_state;
141 	assert(is_saved_state64(saved_state));
142 
143 	bzero((char *) &thread_state64, sizeof(struct arm_thread_state64));
144 
145 	saved_state_to_thread_state64(saved_state, &thread_state64);
146 
147 	bcopy((char *) &thread_state64, (char *) out_state, sizeof(struct arm_thread_state64));
148 #else
149 #error Unknown architecture.
150 #endif
151 }
152 
153 kdp_error_t
kdp_machine_read_regs(__unused unsigned int cpu,unsigned int flavor,char * data,int * size)154 kdp_machine_read_regs(__unused unsigned int cpu, unsigned int flavor, char * data, int * size)
155 {
156 	switch (flavor) {
157 #if defined(__arm64__)
158 	case ARM_THREAD_STATE64:
159 		dprintf(("kdp_readregs THREAD_STATE64\n"));
160 		kdp_getintegerstate(data);
161 		*size = ARM_THREAD_STATE64_COUNT * sizeof(int);
162 		return KDPERR_NO_ERROR;
163 #endif
164 
165 	case ARM_VFP_STATE:
166 		dprintf(("kdp_readregs THREAD_FPSTATE\n"));
167 		bzero((char *) data, sizeof(struct arm_vfp_state));
168 		*size = ARM_VFP_STATE_COUNT * sizeof(int);
169 		return KDPERR_NO_ERROR;
170 
171 	default:
172 		dprintf(("kdp_readregs bad flavor %d\n"));
173 		return KDPERR_BADFLAVOR;
174 	}
175 }
176 
177 static void
kdp_setintegerstate(char * state_in)178 kdp_setintegerstate(char * state_in)
179 {
180 #if defined(__arm64__)
181 	struct arm_thread_state64 thread_state64;
182 	struct arm_saved_state *saved_state;
183 
184 	bcopy((char *) state_in, (char *) &thread_state64, sizeof(struct arm_thread_state64));
185 	saved_state = kdp.saved_state;
186 	assert(is_saved_state64(saved_state));
187 
188 	thread_state64_to_saved_state(&thread_state64, saved_state);
189 	set_saved_state_cpsr(saved_state, thread_state64.cpsr); /* override CPSR sanitization */
190 #else
191 #error Unknown architecture.
192 #endif
193 }
194 
195 kdp_error_t
kdp_machine_write_regs(__unused unsigned int cpu,unsigned int flavor,char * data,__unused int * size)196 kdp_machine_write_regs(__unused unsigned int cpu, unsigned int flavor, char * data, __unused int * size)
197 {
198 	switch (flavor) {
199 #if defined(__arm64__)
200 	case ARM_THREAD_STATE64:
201 		dprintf(("kdp_writeregs THREAD_STATE64\n"));
202 		kdp_setintegerstate(data);
203 		return KDPERR_NO_ERROR;
204 #endif
205 
206 	case ARM_VFP_STATE:
207 		dprintf(("kdp_writeregs THREAD_FPSTATE\n"));
208 		return KDPERR_NO_ERROR;
209 
210 	default:
211 		dprintf(("kdp_writeregs bad flavor %d\n"));
212 		return KDPERR_BADFLAVOR;
213 	}
214 }
215 
216 void
kdp_machine_hostinfo(kdp_hostinfo_t * hostinfo)217 kdp_machine_hostinfo(kdp_hostinfo_t * hostinfo)
218 {
219 	hostinfo->cpus_mask = 1;
220 	hostinfo->cpu_type = slot_type(0);
221 	hostinfo->cpu_subtype = slot_subtype(0);
222 }
223 
224 __attribute__((noreturn))
225 void
kdp_panic(const char * fmt,...)226 kdp_panic(const char * fmt, ...)
227 {
228 #pragma clang diagnostic push
229 #pragma clang diagnostic ignored "-Wformat-nonliteral"
230 	char kdp_fmt[256];
231 	va_list args;
232 
233 	va_start(args, fmt);
234 	(void) snprintf(kdp_fmt, sizeof(kdp_fmt), "kdp panic: %s", fmt);
235 	vprintf(kdp_fmt, args);
236 	va_end(args);
237 
238 	while (1) {
239 	}
240 	;
241 #pragma clang diagnostic pop
242 }
243 
244 int
kdp_intr_disbl(void)245 kdp_intr_disbl(void)
246 {
247 	return splhigh();
248 }
249 
250 void
kdp_intr_enbl(int s)251 kdp_intr_enbl(int s)
252 {
253 	splx(s);
254 }
255 
256 void
kdp_us_spin(int usec)257 kdp_us_spin(int usec)
258 {
259 	delay(usec / 100);
260 }
261 
262 void
kdp_call(void)263 kdp_call(void)
264 {
265 	Debugger("inline call to debugger(machine_startup)");
266 }
267 
268 int
kdp_getc(void)269 kdp_getc(void)
270 {
271 	return console_try_read_char();
272 }
273 
274 void
kdp_machine_get_breakinsn(uint8_t * bytes,uint32_t * size)275 kdp_machine_get_breakinsn(uint8_t * bytes, uint32_t * size)
276 {
277 	*(uint32_t *)bytes = GDB_TRAP_INSTR1;
278 	*size = sizeof(uint32_t);
279 }
280 
281 void
kdp_sync_cache(void)282 kdp_sync_cache(void)
283 {
284 }
285 
286 int
kdp_machine_ioport_read(kdp_readioport_req_t * rq,caddr_t data,uint16_t lcpu)287 kdp_machine_ioport_read(kdp_readioport_req_t * rq, caddr_t data, uint16_t lcpu)
288 {
289 #pragma unused(rq, data, lcpu)
290 	return 0;
291 }
292 
293 int
kdp_machine_ioport_write(kdp_writeioport_req_t * rq,caddr_t data,uint16_t lcpu)294 kdp_machine_ioport_write(kdp_writeioport_req_t * rq, caddr_t data, uint16_t lcpu)
295 {
296 #pragma unused(rq, data, lcpu)
297 	return 0;
298 }
299 
300 int
kdp_machine_msr64_read(kdp_readmsr64_req_t * rq,caddr_t data,uint16_t lcpu)301 kdp_machine_msr64_read(kdp_readmsr64_req_t *rq, caddr_t data, uint16_t lcpu)
302 {
303 #pragma unused(rq, data, lcpu)
304 	return 0;
305 }
306 
307 int
kdp_machine_msr64_write(kdp_writemsr64_req_t * rq,caddr_t data,uint16_t lcpu)308 kdp_machine_msr64_write(kdp_writemsr64_req_t *rq, caddr_t data, uint16_t lcpu)
309 {
310 #pragma unused(rq, data, lcpu)
311 	return 0;
312 }
313 #endif /* CONFIG_KDP_INTERACTIVE_DEBUGGING */
314 
315 void
kdp_trap(unsigned int exception,struct arm_saved_state * saved_state)316 kdp_trap(unsigned int exception, struct arm_saved_state * saved_state)
317 {
318 	handle_debugger_trap(exception, 0, 0, saved_state);
319 
320 #if defined(__arm64__)
321 	assert(is_saved_state64(saved_state));
322 
323 	uint32_t instr = *((uint32_t *)get_saved_state_pc(saved_state));
324 
325 	/*
326 	 * As long as we are using the arm32 trap encoding to handling
327 	 * traps to the debugger, we should identify both variants and
328 	 * increment for both of them.
329 	 */
330 	if ((instr == GDB_TRAP_INSTR1) || (instr == GDB_TRAP_INSTR2)) {
331 		add_saved_state_pc(saved_state, 4);
332 	}
333 #else
334 #error Unknown architecture.
335 #endif
336 }
337 
338 #define ARM32_LR_OFFSET 4
339 #define ARM64_LR_OFFSET 8
340 
341 /*
342  * Since sizeof (struct thread_snapshot) % 4 == 2
343  * make sure the compiler does not try to use word-aligned
344  * access to this data, which can result in alignment faults
345  * that can't be emulated in KDP context.
346  */
347 typedef uint32_t uint32_align2_t __attribute__((aligned(2)));
348 
349 /*
350  * @function _was_in_userspace
351  *
352  * @abstract Unused function used to indicate that a CPU was in userspace
353  * before it was IPI'd to enter the Debugger context.
354  *
355  * @discussion This function should never actually be called.
356  */
357 void __attribute__((__noreturn__))
_was_in_userspace(void)358 _was_in_userspace(void)
359 {
360 	panic("%s: should not have been invoked.", __FUNCTION__);
361 }
362 
363 int
machine_trace_thread64(thread_t thread,char * tracepos,char * tracebound,int nframes,uint32_t * thread_trace_flags)364 machine_trace_thread64(thread_t thread,
365     char * tracepos,
366     char * tracebound,
367     int nframes,
368     uint32_t * thread_trace_flags)
369 {
370 #if defined(__arm64__)
371 
372 	uint64_t * tracebuf = (uint64_t *)tracepos;
373 	vm_size_t framesize = sizeof(uint64_t);
374 
375 	vm_offset_t stacklimit        = 0;
376 	vm_offset_t stacklimit_bottom = 0;
377 	int framecount                = 0;
378 	vm_offset_t pc                = 0;
379 	vm_offset_t fp                = 0;
380 	vm_offset_t sp                = 0;
381 	vm_offset_t prevfp            = 0;
382 	uint64_t prevlr               = 0;
383 	vm_offset_t kern_virt_addr    = 0;
384 
385 	nframes = (tracebound > tracepos) ? MIN(nframes, (int)((tracebound - tracepos) / framesize)) : 0;
386 	if (!nframes) {
387 		return 0;
388 	}
389 	framecount = 0;
390 
391 	struct arm_saved_state *state = thread->machine.kpcb;
392 	if (state != NULL) {
393 		fp = state->ss_64.fp;
394 
395 		prevlr = state->ss_64.lr;
396 		pc = state->ss_64.pc;
397 		sp = state->ss_64.sp;
398 	} else {
399 		/* kstackptr may not always be there, so recompute it */
400 		arm_kernel_saved_state_t *kstate = &thread_get_kernel_state(thread)->machine.ss;
401 
402 		fp = kstate->fp;
403 		prevlr = kstate->lr;
404 		pc = kstate->pc_was_in_userspace ? (register_t)ptrauth_strip((void *)&_was_in_userspace, ptrauth_key_function_pointer) : 0;
405 		sp = kstate->sp;
406 	}
407 
408 	stacklimit = VM_MAX_KERNEL_ADDRESS;
409 	stacklimit_bottom = VM_MIN_KERNEL_ADDRESS;
410 
411 	if (!prevlr && !fp && !sp && !pc) {
412 		return 0;
413 	}
414 
415 	prevlr = VM_KERNEL_UNSLIDE(prevlr);
416 
417 	for (; framecount < nframes; framecount++) {
418 		*tracebuf++ = prevlr;
419 
420 		/* Invalid frame */
421 		if (!fp) {
422 			break;
423 		}
424 		/*
425 		 * Unaligned frame; given that the stack register must always be
426 		 * 16-byte aligned, we are assured 8-byte alignment of the saved
427 		 * frame pointer and link register.
428 		 */
429 		if (fp & 0x0000007) {
430 			break;
431 		}
432 		/* Frame is out of range, maybe a user FP while doing kernel BT */
433 		if (fp > stacklimit) {
434 			break;
435 		}
436 		if (fp < stacklimit_bottom) {
437 			break;
438 		}
439 		/* Stack grows downward */
440 		if (fp < prevfp) {
441 			bool switched_stacks = false;
442 
443 			/*
444 			 * As a special case, sometimes we are backtracing out of an interrupt
445 			 * handler, and the stack jumps downward because of the memory allocation
446 			 * pattern during early boot due to KASLR.
447 			 */
448 			int cpu;
449 			int max_cpu = ml_get_max_cpu_number();
450 
451 			for (cpu = 0; cpu <= max_cpu; cpu++) {
452 				cpu_data_t      *target_cpu_datap;
453 
454 				target_cpu_datap = (cpu_data_t *)CpuDataEntries[cpu].cpu_data_vaddr;
455 				if (target_cpu_datap == (cpu_data_t *)NULL) {
456 					continue;
457 				}
458 
459 				if (prevfp >= (target_cpu_datap->intstack_top - INTSTACK_SIZE) && prevfp < target_cpu_datap->intstack_top) {
460 					switched_stacks = true;
461 					break;
462 				}
463 #if defined(__arm64__)
464 				if (prevfp >= (target_cpu_datap->excepstack_top - EXCEPSTACK_SIZE) && prevfp < target_cpu_datap->excepstack_top) {
465 					switched_stacks = true;
466 					break;
467 				}
468 #endif
469 			}
470 
471 			/**
472 			 * The stack could be "growing upwards" because this frame is
473 			 * stitching two different stacks together. There can be more than
474 			 * one non-XNU stack so if both frames are in non-XNU stacks but it
475 			 * looks like the stack is growing upward, then assume that we've
476 			 * switched from one non-XNU stack to another.
477 			 */
478 			if ((ml_addr_in_non_xnu_stack(prevfp) != ml_addr_in_non_xnu_stack(fp)) ||
479 			    (ml_addr_in_non_xnu_stack(prevfp) && ml_addr_in_non_xnu_stack(fp))) {
480 				switched_stacks = true;
481 			}
482 
483 			if (!switched_stacks) {
484 				/* Corrupt frame pointer? */
485 				break;
486 			}
487 		}
488 
489 		/* Assume there's a saved link register, and read it */
490 		kern_virt_addr = fp + ARM64_LR_OFFSET;
491 		bool ok = machine_trace_thread_validate_kva(kern_virt_addr);
492 		if (!ok) {
493 			if (thread_trace_flags != NULL) {
494 				*thread_trace_flags |= kThreadTruncatedBT;
495 			}
496 
497 			break;
498 		}
499 
500 		prevlr = *(uint64_t *)kern_virt_addr;
501 #if defined(HAS_APPLE_PAC)
502 		/* return addresses on stack signed by arm64e ABI */
503 		prevlr = (uint64_t) ptrauth_strip((void *)prevlr, ptrauth_key_return_address);
504 #endif
505 		prevlr = VM_KERNEL_UNSLIDE(prevlr);
506 
507 		prevfp = fp;
508 		/* Next frame */
509 		kern_virt_addr = fp;
510 		ok = machine_trace_thread_validate_kva(kern_virt_addr);
511 		if (!ok) {
512 			if (thread_trace_flags != NULL) {
513 				*thread_trace_flags |= kThreadTruncatedBT;
514 			}
515 			fp = 0;
516 			break;
517 		}
518 
519 		fp = *(uint64_t *)kern_virt_addr;
520 	}
521 	return (int)(((char *)tracebuf) - tracepos);
522 #else
523 #error Unknown architecture.
524 #endif
525 }
526 
527 void
kdp_ml_enter_debugger(void)528 kdp_ml_enter_debugger(void)
529 {
530 	__asm__ volatile (".long 0xe7ffdefe");
531 }
532