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Saleem Abdulrasool17552662015-04-24 19:39:17 +00001//===-------------------------- DwarfInstructions.hpp ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is dual licensed under the MIT and the University of Illinois Open
6// Source Licenses. See LICENSE.TXT for details.
7//
8//
Ed Maste4c43c3d2016-07-19 17:15:50 +00009// Processor specific interpretation of DWARF unwind info.
Saleem Abdulrasool17552662015-04-24 19:39:17 +000010//
11//===----------------------------------------------------------------------===//
12
13#ifndef __DWARF_INSTRUCTIONS_HPP__
14#define __DWARF_INSTRUCTIONS_HPP__
15
16#include <stdint.h>
17#include <stdio.h>
18#include <stdlib.h>
19
20#include "dwarf2.h"
Saleem Abdulrasool17552662015-04-24 19:39:17 +000021#include "Registers.hpp"
22#include "DwarfParser.hpp"
23#include "config.h"
24
25
26namespace libunwind {
27
28
Ed Maste4c43c3d2016-07-19 17:15:50 +000029/// DwarfInstructions maps abtract DWARF unwind instructions to a particular
Saleem Abdulrasool17552662015-04-24 19:39:17 +000030/// architecture
31template <typename A, typename R>
32class DwarfInstructions {
33public:
34 typedef typename A::pint_t pint_t;
35 typedef typename A::sint_t sint_t;
36
37 static int stepWithDwarf(A &addressSpace, pint_t pc, pint_t fdeStart,
38 R &registers);
39
40private:
41
42 enum {
43 DW_X86_64_RET_ADDR = 16
44 };
45
46 enum {
47 DW_X86_RET_ADDR = 8
48 };
49
50 typedef typename CFI_Parser<A>::RegisterLocation RegisterLocation;
51 typedef typename CFI_Parser<A>::PrologInfo PrologInfo;
52 typedef typename CFI_Parser<A>::FDE_Info FDE_Info;
53 typedef typename CFI_Parser<A>::CIE_Info CIE_Info;
54
55 static pint_t evaluateExpression(pint_t expression, A &addressSpace,
56 const R &registers,
57 pint_t initialStackValue);
58 static pint_t getSavedRegister(A &addressSpace, const R &registers,
59 pint_t cfa, const RegisterLocation &savedReg);
60 static double getSavedFloatRegister(A &addressSpace, const R &registers,
61 pint_t cfa, const RegisterLocation &savedReg);
62 static v128 getSavedVectorRegister(A &addressSpace, const R &registers,
63 pint_t cfa, const RegisterLocation &savedReg);
64
65 static pint_t getCFA(A &addressSpace, const PrologInfo &prolog,
66 const R &registers) {
67 if (prolog.cfaRegister != 0)
68 return (pint_t)((sint_t)registers.getRegister((int)prolog.cfaRegister) +
69 prolog.cfaRegisterOffset);
70 if (prolog.cfaExpression != 0)
71 return evaluateExpression((pint_t)prolog.cfaExpression, addressSpace,
72 registers, 0);
73 assert(0 && "getCFA(): unknown location");
74 __builtin_unreachable();
75 }
76};
77
78
79template <typename A, typename R>
80typename A::pint_t DwarfInstructions<A, R>::getSavedRegister(
81 A &addressSpace, const R &registers, pint_t cfa,
82 const RegisterLocation &savedReg) {
83 switch (savedReg.location) {
84 case CFI_Parser<A>::kRegisterInCFA:
John Baldwin1a6e6be2018-02-27 21:24:02 +000085 return addressSpace.getRegister(cfa + (pint_t)savedReg.value);
Saleem Abdulrasool17552662015-04-24 19:39:17 +000086
87 case CFI_Parser<A>::kRegisterAtExpression:
John Baldwin1a6e6be2018-02-27 21:24:02 +000088 return addressSpace.getRegister(
Saleem Abdulrasool17552662015-04-24 19:39:17 +000089 evaluateExpression((pint_t)savedReg.value, addressSpace,
90 registers, cfa));
91
92 case CFI_Parser<A>::kRegisterIsExpression:
93 return evaluateExpression((pint_t)savedReg.value, addressSpace,
94 registers, cfa);
95
96 case CFI_Parser<A>::kRegisterInRegister:
97 return registers.getRegister((int)savedReg.value);
98
99 case CFI_Parser<A>::kRegisterUnused:
100 case CFI_Parser<A>::kRegisterOffsetFromCFA:
101 // FIX ME
102 break;
103 }
104 _LIBUNWIND_ABORT("unsupported restore location for register");
105}
106
107template <typename A, typename R>
108double DwarfInstructions<A, R>::getSavedFloatRegister(
109 A &addressSpace, const R &registers, pint_t cfa,
110 const RegisterLocation &savedReg) {
111 switch (savedReg.location) {
112 case CFI_Parser<A>::kRegisterInCFA:
113 return addressSpace.getDouble(cfa + (pint_t)savedReg.value);
114
115 case CFI_Parser<A>::kRegisterAtExpression:
116 return addressSpace.getDouble(
117 evaluateExpression((pint_t)savedReg.value, addressSpace,
118 registers, cfa));
119
120 case CFI_Parser<A>::kRegisterIsExpression:
121 case CFI_Parser<A>::kRegisterUnused:
122 case CFI_Parser<A>::kRegisterOffsetFromCFA:
123 case CFI_Parser<A>::kRegisterInRegister:
124 // FIX ME
125 break;
126 }
127 _LIBUNWIND_ABORT("unsupported restore location for float register");
128}
129
130template <typename A, typename R>
131v128 DwarfInstructions<A, R>::getSavedVectorRegister(
132 A &addressSpace, const R &registers, pint_t cfa,
133 const RegisterLocation &savedReg) {
134 switch (savedReg.location) {
135 case CFI_Parser<A>::kRegisterInCFA:
136 return addressSpace.getVector(cfa + (pint_t)savedReg.value);
137
138 case CFI_Parser<A>::kRegisterAtExpression:
139 return addressSpace.getVector(
140 evaluateExpression((pint_t)savedReg.value, addressSpace,
141 registers, cfa));
142
143 case CFI_Parser<A>::kRegisterIsExpression:
144 case CFI_Parser<A>::kRegisterUnused:
145 case CFI_Parser<A>::kRegisterOffsetFromCFA:
146 case CFI_Parser<A>::kRegisterInRegister:
147 // FIX ME
148 break;
149 }
150 _LIBUNWIND_ABORT("unsupported restore location for vector register");
151}
152
153template <typename A, typename R>
154int DwarfInstructions<A, R>::stepWithDwarf(A &addressSpace, pint_t pc,
155 pint_t fdeStart, R &registers) {
156 FDE_Info fdeInfo;
157 CIE_Info cieInfo;
158 if (CFI_Parser<A>::decodeFDE(addressSpace, fdeStart, &fdeInfo,
159 &cieInfo) == NULL) {
160 PrologInfo prolog;
161 if (CFI_Parser<A>::parseFDEInstructions(addressSpace, fdeInfo, cieInfo, pc,
Daniel Cederman9f2f07a2019-01-14 10:15:20 +0000162 R::getArch(), &prolog)) {
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000163 // get pointer to cfa (architecture specific)
164 pint_t cfa = getCFA(addressSpace, prolog, registers);
165
Ed Maste4c43c3d2016-07-19 17:15:50 +0000166 // restore registers that DWARF says were saved
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000167 R newRegisters = registers;
168 pint_t returnAddress = 0;
169 const int lastReg = R::lastDwarfRegNum();
Martin Storsjof10f3c92017-10-27 07:59:01 +0000170 assert(static_cast<int>(CFI_Parser<A>::kMaxRegisterNumber) >= lastReg &&
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000171 "register range too large");
Ed Mastec14579b2015-08-13 13:45:45 +0000172 assert(lastReg >= (int)cieInfo.returnAddressRegister &&
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000173 "register range does not contain return address register");
174 for (int i = 0; i <= lastReg; ++i) {
Logan Chien0112edf2015-05-30 14:00:39 +0000175 if (prolog.savedRegisters[i].location !=
176 CFI_Parser<A>::kRegisterUnused) {
177 if (registers.validFloatRegister(i))
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000178 newRegisters.setFloatRegister(
179 i, getSavedFloatRegister(addressSpace, registers, cfa,
180 prolog.savedRegisters[i]));
181 else if (registers.validVectorRegister(i))
182 newRegisters.setVectorRegister(
183 i, getSavedVectorRegister(addressSpace, registers, cfa,
184 prolog.savedRegisters[i]));
185 else if (i == (int)cieInfo.returnAddressRegister)
186 returnAddress = getSavedRegister(addressSpace, registers, cfa,
187 prolog.savedRegisters[i]);
188 else if (registers.validRegister(i))
189 newRegisters.setRegister(
190 i, getSavedRegister(addressSpace, registers, cfa,
191 prolog.savedRegisters[i]));
192 else
193 return UNW_EBADREG;
194 }
195 }
196
197 // By definition, the CFA is the stack pointer at the call site, so
198 // restoring SP means setting it to CFA.
199 newRegisters.setSP(cfa);
200
Luke Cheeseman4d8e4312018-12-14 11:30:12 +0000201#if defined(_LIBUNWIND_TARGET_AARCH64)
202 // If the target is aarch64 then the return address may have been signed
203 // using the v8.3 pointer authentication extensions. The original
204 // return address needs to be authenticated before the return address is
205 // restored. autia1716 is used instead of autia as autia1716 assembles
206 // to a NOP on pre-v8.3a architectures.
Daniel Cederman9f2f07a2019-01-14 10:15:20 +0000207 if ((R::getArch() == REGISTERS_ARM64) &&
208 prolog.savedRegisters[UNW_ARM64_RA_SIGN_STATE].value) {
Luke Cheeseman4d8e4312018-12-14 11:30:12 +0000209#if !defined(_LIBUNWIND_IS_NATIVE_ONLY)
210 return UNW_ECROSSRASIGNING;
211#else
212 register unsigned long long x17 __asm("x17") = returnAddress;
213 register unsigned long long x16 __asm("x16") = cfa;
214
Luke Cheesemancba83c32018-12-17 11:43:24 +0000215 // These are the autia1716/autib1716 instructions. The hint instructions
216 // are used here as gcc does not assemble autia1716/autib1716 for pre
217 // armv8.3a targets.
218 if (cieInfo.addressesSignedWithBKey)
219 asm("hint 0xe" : "+r"(x17) : "r"(x16)); // autib1716
220 else
221 asm("hint 0xc" : "+r"(x17) : "r"(x16)); // autia1716
Luke Cheeseman4d8e4312018-12-14 11:30:12 +0000222 returnAddress = x17;
223#endif
224 }
225#endif
226
Daniel Cederman9f2f07a2019-01-14 10:15:20 +0000227#if defined(_LIBUNWIND_TARGET_SPARC)
228 if (R::getArch() == REGISTERS_SPARC) {
229 // Skip call site instruction and delay slot
230 returnAddress += 8;
231 // Skip unimp instruction if function returns a struct
232 if ((addressSpace.get32(returnAddress) & 0xC1C00000) == 0)
233 returnAddress += 4;
234 }
235#endif
236
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000237 // Return address is address after call site instruction, so setting IP to
238 // that does simualates a return.
239 newRegisters.setIP(returnAddress);
240
241 // Simulate the step by replacing the register set with the new ones.
242 registers = newRegisters;
243
244 return UNW_STEP_SUCCESS;
245 }
246 }
247 return UNW_EBADFRAME;
248}
249
250template <typename A, typename R>
251typename A::pint_t
252DwarfInstructions<A, R>::evaluateExpression(pint_t expression, A &addressSpace,
253 const R &registers,
254 pint_t initialStackValue) {
255 const bool log = false;
256 pint_t p = expression;
257 pint_t expressionEnd = expression + 20; // temp, until len read
258 pint_t length = (pint_t)addressSpace.getULEB128(p, expressionEnd);
259 expressionEnd = p + length;
260 if (log)
261 fprintf(stderr, "evaluateExpression(): length=%" PRIu64 "\n",
262 (uint64_t)length);
263 pint_t stack[100];
264 pint_t *sp = stack;
265 *(++sp) = initialStackValue;
266
267 while (p < expressionEnd) {
268 if (log) {
269 for (pint_t *t = sp; t > stack; --t) {
270 fprintf(stderr, "sp[] = 0x%" PRIx64 "\n", (uint64_t)(*t));
271 }
272 }
273 uint8_t opcode = addressSpace.get8(p++);
274 sint_t svalue, svalue2;
275 pint_t value;
276 uint32_t reg;
277 switch (opcode) {
278 case DW_OP_addr:
279 // push immediate address sized value
280 value = addressSpace.getP(p);
281 p += sizeof(pint_t);
282 *(++sp) = value;
283 if (log)
284 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
285 break;
286
287 case DW_OP_deref:
288 // pop stack, dereference, push result
289 value = *sp--;
290 *(++sp) = addressSpace.getP(value);
291 if (log)
292 fprintf(stderr, "dereference 0x%" PRIx64 "\n", (uint64_t)value);
293 break;
294
295 case DW_OP_const1u:
296 // push immediate 1 byte value
297 value = addressSpace.get8(p);
298 p += 1;
299 *(++sp) = value;
300 if (log)
301 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
302 break;
303
304 case DW_OP_const1s:
305 // push immediate 1 byte signed value
306 svalue = (int8_t) addressSpace.get8(p);
307 p += 1;
308 *(++sp) = (pint_t)svalue;
309 if (log)
310 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)svalue);
311 break;
312
313 case DW_OP_const2u:
314 // push immediate 2 byte value
315 value = addressSpace.get16(p);
316 p += 2;
317 *(++sp) = value;
318 if (log)
319 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
320 break;
321
322 case DW_OP_const2s:
323 // push immediate 2 byte signed value
324 svalue = (int16_t) addressSpace.get16(p);
325 p += 2;
326 *(++sp) = (pint_t)svalue;
327 if (log)
328 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)svalue);
329 break;
330
331 case DW_OP_const4u:
332 // push immediate 4 byte value
333 value = addressSpace.get32(p);
334 p += 4;
335 *(++sp) = value;
336 if (log)
337 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
338 break;
339
340 case DW_OP_const4s:
341 // push immediate 4 byte signed value
342 svalue = (int32_t)addressSpace.get32(p);
343 p += 4;
344 *(++sp) = (pint_t)svalue;
345 if (log)
346 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)svalue);
347 break;
348
349 case DW_OP_const8u:
350 // push immediate 8 byte value
351 value = (pint_t)addressSpace.get64(p);
352 p += 8;
353 *(++sp) = value;
354 if (log)
355 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
356 break;
357
358 case DW_OP_const8s:
359 // push immediate 8 byte signed value
360 value = (pint_t)addressSpace.get64(p);
361 p += 8;
362 *(++sp) = value;
363 if (log)
364 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
365 break;
366
367 case DW_OP_constu:
368 // push immediate ULEB128 value
369 value = (pint_t)addressSpace.getULEB128(p, expressionEnd);
370 *(++sp) = value;
371 if (log)
372 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)value);
373 break;
374
375 case DW_OP_consts:
376 // push immediate SLEB128 value
377 svalue = (sint_t)addressSpace.getSLEB128(p, expressionEnd);
378 *(++sp) = (pint_t)svalue;
379 if (log)
380 fprintf(stderr, "push 0x%" PRIx64 "\n", (uint64_t)svalue);
381 break;
382
383 case DW_OP_dup:
384 // push top of stack
385 value = *sp;
386 *(++sp) = value;
387 if (log)
388 fprintf(stderr, "duplicate top of stack\n");
389 break;
390
391 case DW_OP_drop:
392 // pop
393 --sp;
394 if (log)
395 fprintf(stderr, "pop top of stack\n");
396 break;
397
398 case DW_OP_over:
399 // dup second
400 value = sp[-1];
401 *(++sp) = value;
402 if (log)
403 fprintf(stderr, "duplicate second in stack\n");
404 break;
405
406 case DW_OP_pick:
407 // pick from
408 reg = addressSpace.get8(p);
409 p += 1;
410 value = sp[-reg];
411 *(++sp) = value;
412 if (log)
413 fprintf(stderr, "duplicate %d in stack\n", reg);
414 break;
415
416 case DW_OP_swap:
417 // swap top two
418 value = sp[0];
419 sp[0] = sp[-1];
420 sp[-1] = value;
421 if (log)
422 fprintf(stderr, "swap top of stack\n");
423 break;
424
425 case DW_OP_rot:
426 // rotate top three
427 value = sp[0];
428 sp[0] = sp[-1];
429 sp[-1] = sp[-2];
430 sp[-2] = value;
431 if (log)
432 fprintf(stderr, "rotate top three of stack\n");
433 break;
434
435 case DW_OP_xderef:
436 // pop stack, dereference, push result
437 value = *sp--;
438 *sp = *((pint_t*)value);
439 if (log)
440 fprintf(stderr, "x-dereference 0x%" PRIx64 "\n", (uint64_t)value);
441 break;
442
443 case DW_OP_abs:
444 svalue = (sint_t)*sp;
445 if (svalue < 0)
446 *sp = (pint_t)(-svalue);
447 if (log)
448 fprintf(stderr, "abs\n");
449 break;
450
451 case DW_OP_and:
452 value = *sp--;
453 *sp &= value;
454 if (log)
455 fprintf(stderr, "and\n");
456 break;
457
458 case DW_OP_div:
459 svalue = (sint_t)(*sp--);
460 svalue2 = (sint_t)*sp;
461 *sp = (pint_t)(svalue2 / svalue);
462 if (log)
463 fprintf(stderr, "div\n");
464 break;
465
466 case DW_OP_minus:
467 value = *sp--;
468 *sp = *sp - value;
469 if (log)
470 fprintf(stderr, "minus\n");
471 break;
472
473 case DW_OP_mod:
474 svalue = (sint_t)(*sp--);
475 svalue2 = (sint_t)*sp;
476 *sp = (pint_t)(svalue2 % svalue);
477 if (log)
478 fprintf(stderr, "module\n");
479 break;
480
481 case DW_OP_mul:
482 svalue = (sint_t)(*sp--);
483 svalue2 = (sint_t)*sp;
484 *sp = (pint_t)(svalue2 * svalue);
485 if (log)
486 fprintf(stderr, "mul\n");
487 break;
488
489 case DW_OP_neg:
490 *sp = 0 - *sp;
491 if (log)
492 fprintf(stderr, "neg\n");
493 break;
494
495 case DW_OP_not:
496 svalue = (sint_t)(*sp);
497 *sp = (pint_t)(~svalue);
498 if (log)
499 fprintf(stderr, "not\n");
500 break;
501
502 case DW_OP_or:
503 value = *sp--;
504 *sp |= value;
505 if (log)
506 fprintf(stderr, "or\n");
507 break;
508
509 case DW_OP_plus:
510 value = *sp--;
511 *sp += value;
512 if (log)
513 fprintf(stderr, "plus\n");
514 break;
515
516 case DW_OP_plus_uconst:
517 // pop stack, add uelb128 constant, push result
Saleem Abdulrasool92acbf12017-03-08 16:03:27 +0000518 *sp += static_cast<pint_t>(addressSpace.getULEB128(p, expressionEnd));
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000519 if (log)
520 fprintf(stderr, "add constant\n");
521 break;
522
523 case DW_OP_shl:
524 value = *sp--;
525 *sp = *sp << value;
526 if (log)
527 fprintf(stderr, "shift left\n");
528 break;
529
530 case DW_OP_shr:
531 value = *sp--;
532 *sp = *sp >> value;
533 if (log)
534 fprintf(stderr, "shift left\n");
535 break;
536
537 case DW_OP_shra:
538 value = *sp--;
539 svalue = (sint_t)*sp;
540 *sp = (pint_t)(svalue >> value);
541 if (log)
542 fprintf(stderr, "shift left arithmetric\n");
543 break;
544
545 case DW_OP_xor:
546 value = *sp--;
547 *sp ^= value;
548 if (log)
549 fprintf(stderr, "xor\n");
550 break;
551
552 case DW_OP_skip:
553 svalue = (int16_t) addressSpace.get16(p);
554 p += 2;
555 p = (pint_t)((sint_t)p + svalue);
556 if (log)
557 fprintf(stderr, "skip %" PRIu64 "\n", (uint64_t)svalue);
558 break;
559
560 case DW_OP_bra:
561 svalue = (int16_t) addressSpace.get16(p);
562 p += 2;
563 if (*sp--)
564 p = (pint_t)((sint_t)p + svalue);
565 if (log)
566 fprintf(stderr, "bra %" PRIu64 "\n", (uint64_t)svalue);
567 break;
568
569 case DW_OP_eq:
570 value = *sp--;
571 *sp = (*sp == value);
572 if (log)
573 fprintf(stderr, "eq\n");
574 break;
575
576 case DW_OP_ge:
577 value = *sp--;
578 *sp = (*sp >= value);
579 if (log)
580 fprintf(stderr, "ge\n");
581 break;
582
583 case DW_OP_gt:
584 value = *sp--;
585 *sp = (*sp > value);
586 if (log)
587 fprintf(stderr, "gt\n");
588 break;
589
590 case DW_OP_le:
591 value = *sp--;
592 *sp = (*sp <= value);
593 if (log)
594 fprintf(stderr, "le\n");
595 break;
596
597 case DW_OP_lt:
598 value = *sp--;
599 *sp = (*sp < value);
600 if (log)
601 fprintf(stderr, "lt\n");
602 break;
603
604 case DW_OP_ne:
605 value = *sp--;
606 *sp = (*sp != value);
607 if (log)
608 fprintf(stderr, "ne\n");
609 break;
610
611 case DW_OP_lit0:
612 case DW_OP_lit1:
613 case DW_OP_lit2:
614 case DW_OP_lit3:
615 case DW_OP_lit4:
616 case DW_OP_lit5:
617 case DW_OP_lit6:
618 case DW_OP_lit7:
619 case DW_OP_lit8:
620 case DW_OP_lit9:
621 case DW_OP_lit10:
622 case DW_OP_lit11:
623 case DW_OP_lit12:
624 case DW_OP_lit13:
625 case DW_OP_lit14:
626 case DW_OP_lit15:
627 case DW_OP_lit16:
628 case DW_OP_lit17:
629 case DW_OP_lit18:
630 case DW_OP_lit19:
631 case DW_OP_lit20:
632 case DW_OP_lit21:
633 case DW_OP_lit22:
634 case DW_OP_lit23:
635 case DW_OP_lit24:
636 case DW_OP_lit25:
637 case DW_OP_lit26:
638 case DW_OP_lit27:
639 case DW_OP_lit28:
640 case DW_OP_lit29:
641 case DW_OP_lit30:
642 case DW_OP_lit31:
643 value = static_cast<pint_t>(opcode - DW_OP_lit0);
644 *(++sp) = value;
645 if (log)
646 fprintf(stderr, "push literal 0x%" PRIx64 "\n", (uint64_t)value);
647 break;
648
649 case DW_OP_reg0:
650 case DW_OP_reg1:
651 case DW_OP_reg2:
652 case DW_OP_reg3:
653 case DW_OP_reg4:
654 case DW_OP_reg5:
655 case DW_OP_reg6:
656 case DW_OP_reg7:
657 case DW_OP_reg8:
658 case DW_OP_reg9:
659 case DW_OP_reg10:
660 case DW_OP_reg11:
661 case DW_OP_reg12:
662 case DW_OP_reg13:
663 case DW_OP_reg14:
664 case DW_OP_reg15:
665 case DW_OP_reg16:
666 case DW_OP_reg17:
667 case DW_OP_reg18:
668 case DW_OP_reg19:
669 case DW_OP_reg20:
670 case DW_OP_reg21:
671 case DW_OP_reg22:
672 case DW_OP_reg23:
673 case DW_OP_reg24:
674 case DW_OP_reg25:
675 case DW_OP_reg26:
676 case DW_OP_reg27:
677 case DW_OP_reg28:
678 case DW_OP_reg29:
679 case DW_OP_reg30:
680 case DW_OP_reg31:
681 reg = static_cast<uint32_t>(opcode - DW_OP_reg0);
682 *(++sp) = registers.getRegister((int)reg);
683 if (log)
684 fprintf(stderr, "push reg %d\n", reg);
685 break;
686
687 case DW_OP_regx:
688 reg = static_cast<uint32_t>(addressSpace.getULEB128(p, expressionEnd));
689 *(++sp) = registers.getRegister((int)reg);
690 if (log)
691 fprintf(stderr, "push reg %d + 0x%" PRIx64 "\n", reg, (uint64_t)svalue);
692 break;
693
694 case DW_OP_breg0:
695 case DW_OP_breg1:
696 case DW_OP_breg2:
697 case DW_OP_breg3:
698 case DW_OP_breg4:
699 case DW_OP_breg5:
700 case DW_OP_breg6:
701 case DW_OP_breg7:
702 case DW_OP_breg8:
703 case DW_OP_breg9:
704 case DW_OP_breg10:
705 case DW_OP_breg11:
706 case DW_OP_breg12:
707 case DW_OP_breg13:
708 case DW_OP_breg14:
709 case DW_OP_breg15:
710 case DW_OP_breg16:
711 case DW_OP_breg17:
712 case DW_OP_breg18:
713 case DW_OP_breg19:
714 case DW_OP_breg20:
715 case DW_OP_breg21:
716 case DW_OP_breg22:
717 case DW_OP_breg23:
718 case DW_OP_breg24:
719 case DW_OP_breg25:
720 case DW_OP_breg26:
721 case DW_OP_breg27:
722 case DW_OP_breg28:
723 case DW_OP_breg29:
724 case DW_OP_breg30:
725 case DW_OP_breg31:
726 reg = static_cast<uint32_t>(opcode - DW_OP_breg0);
727 svalue = (sint_t)addressSpace.getSLEB128(p, expressionEnd);
728 svalue += static_cast<sint_t>(registers.getRegister((int)reg));
729 *(++sp) = (pint_t)(svalue);
730 if (log)
731 fprintf(stderr, "push reg %d + 0x%" PRIx64 "\n", reg, (uint64_t)svalue);
732 break;
733
734 case DW_OP_bregx:
735 reg = static_cast<uint32_t>(addressSpace.getULEB128(p, expressionEnd));
736 svalue = (sint_t)addressSpace.getSLEB128(p, expressionEnd);
737 svalue += static_cast<sint_t>(registers.getRegister((int)reg));
738 *(++sp) = (pint_t)(svalue);
739 if (log)
740 fprintf(stderr, "push reg %d + 0x%" PRIx64 "\n", reg, (uint64_t)svalue);
741 break;
742
743 case DW_OP_fbreg:
744 _LIBUNWIND_ABORT("DW_OP_fbreg not implemented");
745 break;
746
747 case DW_OP_piece:
748 _LIBUNWIND_ABORT("DW_OP_piece not implemented");
749 break;
750
751 case DW_OP_deref_size:
752 // pop stack, dereference, push result
753 value = *sp--;
754 switch (addressSpace.get8(p++)) {
755 case 1:
756 value = addressSpace.get8(value);
757 break;
758 case 2:
759 value = addressSpace.get16(value);
760 break;
761 case 4:
762 value = addressSpace.get32(value);
763 break;
764 case 8:
765 value = (pint_t)addressSpace.get64(value);
766 break;
767 default:
768 _LIBUNWIND_ABORT("DW_OP_deref_size with bad size");
769 }
770 *(++sp) = value;
771 if (log)
772 fprintf(stderr, "sized dereference 0x%" PRIx64 "\n", (uint64_t)value);
773 break;
774
775 case DW_OP_xderef_size:
776 case DW_OP_nop:
777 case DW_OP_push_object_addres:
778 case DW_OP_call2:
779 case DW_OP_call4:
780 case DW_OP_call_ref:
781 default:
Ed Maste4c43c3d2016-07-19 17:15:50 +0000782 _LIBUNWIND_ABORT("DWARF opcode not implemented");
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000783 }
784
785 }
786 if (log)
787 fprintf(stderr, "expression evaluates to 0x%" PRIx64 "\n", (uint64_t)*sp);
788 return *sp;
789}
790
791
792
793} // namespace libunwind
794
795#endif // __DWARF_INSTRUCTIONS_HPP__