xref: /linux/tools/perf/util/dwarf-aux.c (revision 17e9b4243e76f0a0fe951d30ce990d6081a8b426)
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * dwarf-aux.c : libdw auxiliary interfaces
4  */
5 
6 #include <errno.h>
7 #include <inttypes.h>
8 #include <stdbool.h>
9 #include <stdlib.h>
10 #include "debug.h"
11 #include "dwarf-aux.h"
12 #include "dwarf-regs.h"
13 #include "strbuf.h"
14 #include "string2.h"
15 
16 /**
17  * cu_find_realpath - Find the realpath of the target file
18  * @cu_die: A DIE(dwarf information entry) of CU(compilation Unit)
19  * @fname:  The tail filename of the target file
20  *
21  * Find the real(long) path of @fname in @cu_die.
22  */
23 const char *cu_find_realpath(Dwarf_Die *cu_die, const char *fname)
24 {
25 	Dwarf_Files *files;
26 	size_t nfiles, i;
27 	const char *src = NULL;
28 	int ret;
29 
30 	if (!fname)
31 		return NULL;
32 
33 	ret = dwarf_getsrcfiles(cu_die, &files, &nfiles);
34 	if (ret != 0)
35 		return NULL;
36 
37 	for (i = 0; i < nfiles; i++) {
38 		src = dwarf_filesrc(files, i, NULL, NULL);
39 		if (strtailcmp(src, fname) == 0)
40 			break;
41 	}
42 	if (i == nfiles)
43 		return NULL;
44 	return src;
45 }
46 
47 /**
48  * cu_get_comp_dir - Get the path of compilation directory
49  * @cu_die: a CU DIE
50  *
51  * Get the path of compilation directory of given @cu_die.
52  * Since this depends on DW_AT_comp_dir, older gcc will not
53  * embedded it. In that case, this returns NULL.
54  */
55 const char *cu_get_comp_dir(Dwarf_Die *cu_die)
56 {
57 	Dwarf_Attribute attr;
58 	if (dwarf_attr(cu_die, DW_AT_comp_dir, &attr) == NULL)
59 		return NULL;
60 	return dwarf_formstring(&attr);
61 }
62 
63 /* Unlike dwarf_getsrc_die(), cu_getsrc_die() only returns statement line */
64 static Dwarf_Line *cu_getsrc_die(Dwarf_Die *cu_die, Dwarf_Addr addr)
65 {
66 	Dwarf_Addr laddr;
67 	Dwarf_Lines *lines;
68 	Dwarf_Line *line;
69 	size_t nlines, l, u, n;
70 	bool flag;
71 
72 	if (dwarf_getsrclines(cu_die, &lines, &nlines) != 0 ||
73 	    nlines == 0)
74 		return NULL;
75 
76 	/* Lines are sorted by address, use binary search */
77 	l = 0; u = nlines - 1;
78 	while (l < u) {
79 		n = u - (u - l) / 2;
80 		line = dwarf_onesrcline(lines, n);
81 		if (!line || dwarf_lineaddr(line, &laddr) != 0)
82 			return NULL;
83 		if (addr < laddr)
84 			u = n - 1;
85 		else
86 			l = n;
87 	}
88 	/* Going backward to find the lowest line */
89 	do {
90 		line = dwarf_onesrcline(lines, --l);
91 		if (!line || dwarf_lineaddr(line, &laddr) != 0)
92 			return NULL;
93 	} while (laddr == addr);
94 	l++;
95 	/* Going forward to find the statement line */
96 	do {
97 		line = dwarf_onesrcline(lines, l++);
98 		if (!line || dwarf_lineaddr(line, &laddr) != 0 ||
99 		    dwarf_linebeginstatement(line, &flag) != 0)
100 			return NULL;
101 		if (laddr > addr)
102 			return NULL;
103 	} while (!flag);
104 
105 	return line;
106 }
107 
108 /**
109  * cu_find_lineinfo - Get a line number and file name for given address
110  * @cu_die: a CU DIE
111  * @addr: An address
112  * @fname: a pointer which returns the file name string
113  * @lineno: a pointer which returns the line number
114  *
115  * Find a line number and file name for @addr in @cu_die.
116  */
117 int cu_find_lineinfo(Dwarf_Die *cu_die, Dwarf_Addr addr,
118 		     const char **fname, int *lineno)
119 {
120 	Dwarf_Line *line;
121 	Dwarf_Die die_mem;
122 	Dwarf_Addr faddr;
123 
124 	if (die_find_realfunc(cu_die, addr, &die_mem)
125 	    && die_entrypc(&die_mem, &faddr) == 0 &&
126 	    faddr == addr) {
127 		*fname = die_get_decl_file(&die_mem);
128 		if (dwarf_decl_line(&die_mem, lineno) != 0)
129 			return -ENOENT;
130 		goto out;
131 	}
132 
133 	line = cu_getsrc_die(cu_die, addr);
134 	if (line && dwarf_lineno(line, lineno) == 0) {
135 		*fname = dwarf_linesrc(line, NULL, NULL);
136 		if (!*fname)
137 			/* line number is useless without filename */
138 			*lineno = 0;
139 	}
140 
141 out:
142 	return (*lineno && *fname) ? *lineno : -ENOENT;
143 }
144 
145 static int __die_find_inline_cb(Dwarf_Die *die_mem, void *data);
146 
147 /**
148  * cu_walk_functions_at - Walk on function DIEs at given address
149  * @cu_die: A CU DIE
150  * @addr: An address
151  * @callback: A callback which called with found DIEs
152  * @data: A user data
153  *
154  * Walk on function DIEs at given @addr in @cu_die. Passed DIEs
155  * should be subprogram or inlined-subroutines.
156  */
157 int cu_walk_functions_at(Dwarf_Die *cu_die, Dwarf_Addr addr,
158 		    int (*callback)(Dwarf_Die *, void *), void *data)
159 {
160 	Dwarf_Die die_mem;
161 	Dwarf_Die *sc_die;
162 	int ret = -ENOENT;
163 
164 	/* Inlined function could be recursive. Trace it until fail */
165 	for (sc_die = die_find_realfunc(cu_die, addr, &die_mem);
166 	     sc_die != NULL;
167 	     sc_die = die_find_child(sc_die, __die_find_inline_cb, &addr,
168 				     &die_mem)) {
169 		ret = callback(sc_die, data);
170 		if (ret)
171 			break;
172 	}
173 
174 	return ret;
175 }
176 
177 /**
178  * die_get_linkage_name - Get the linkage name of the object
179  * @dw_die: A DIE of the object
180  *
181  * Get the linkage name attribute of given @dw_die.
182  * For C++ binary, the linkage name will be the mangled symbol.
183  */
184 const char *die_get_linkage_name(Dwarf_Die *dw_die)
185 {
186 	Dwarf_Attribute attr;
187 
188 	if (dwarf_attr_integrate(dw_die, DW_AT_linkage_name, &attr) == NULL)
189 		return NULL;
190 	return dwarf_formstring(&attr);
191 }
192 
193 /**
194  * die_compare_name - Compare diename and tname
195  * @dw_die: a DIE
196  * @tname: a string of target name
197  *
198  * Compare the name of @dw_die and @tname. Return false if @dw_die has no name.
199  */
200 bool die_compare_name(Dwarf_Die *dw_die, const char *tname)
201 {
202 	const char *name;
203 
204 	name = dwarf_diename(dw_die);
205 	return name ? (strcmp(tname, name) == 0) : false;
206 }
207 
208 /**
209  * die_match_name - Match diename/linkage name and glob
210  * @dw_die: a DIE
211  * @glob: a string of target glob pattern
212  *
213  * Glob matching the name of @dw_die and @glob. Return false if matching fail.
214  * This also match linkage name.
215  */
216 bool die_match_name(Dwarf_Die *dw_die, const char *glob)
217 {
218 	const char *name;
219 
220 	name = dwarf_diename(dw_die);
221 	if (name && strglobmatch(name, glob))
222 		return true;
223 	/* fall back to check linkage name */
224 	name = die_get_linkage_name(dw_die);
225 	if (name && strglobmatch(name, glob))
226 		return true;
227 
228 	return false;
229 }
230 
231 /**
232  * die_get_call_lineno - Get callsite line number of inline-function instance
233  * @in_die: a DIE of an inlined function instance
234  *
235  * Get call-site line number of @in_die. This means from where the inline
236  * function is called.
237  */
238 int die_get_call_lineno(Dwarf_Die *in_die)
239 {
240 	Dwarf_Attribute attr;
241 	Dwarf_Word ret;
242 
243 	if (!dwarf_attr(in_die, DW_AT_call_line, &attr))
244 		return -ENOENT;
245 
246 	dwarf_formudata(&attr, &ret);
247 	return (int)ret;
248 }
249 
250 /**
251  * die_get_type - Get type DIE
252  * @vr_die: a DIE of a variable
253  * @die_mem: where to store a type DIE
254  *
255  * Get a DIE of the type of given variable (@vr_die), and store
256  * it to die_mem. Return NULL if fails to get a type DIE.
257  */
258 Dwarf_Die *die_get_type(Dwarf_Die *vr_die, Dwarf_Die *die_mem)
259 {
260 	Dwarf_Attribute attr;
261 
262 	if (dwarf_attr_integrate(vr_die, DW_AT_type, &attr) &&
263 	    dwarf_formref_die(&attr, die_mem))
264 		return die_mem;
265 	else
266 		return NULL;
267 }
268 
269 /* Get a type die, but skip qualifiers */
270 Dwarf_Die *__die_get_real_type(Dwarf_Die *vr_die, Dwarf_Die *die_mem)
271 {
272 	int tag;
273 
274 	do {
275 		vr_die = die_get_type(vr_die, die_mem);
276 		if (!vr_die)
277 			break;
278 		tag = dwarf_tag(vr_die);
279 	} while (tag == DW_TAG_const_type ||
280 		 tag == DW_TAG_restrict_type ||
281 		 tag == DW_TAG_volatile_type ||
282 		 tag == DW_TAG_shared_type);
283 
284 	return vr_die;
285 }
286 
287 /**
288  * die_get_real_type - Get a type die, but skip qualifiers and typedef
289  * @vr_die: a DIE of a variable
290  * @die_mem: where to store a type DIE
291  *
292  * Get a DIE of the type of given variable (@vr_die), and store
293  * it to die_mem. Return NULL if fails to get a type DIE.
294  * If the type is qualifiers (e.g. const) or typedef, this skips it
295  * and tries to find real type (structure or basic types, e.g. int).
296  */
297 Dwarf_Die *die_get_real_type(Dwarf_Die *vr_die, Dwarf_Die *die_mem)
298 {
299 	do {
300 		vr_die = __die_get_real_type(vr_die, die_mem);
301 	} while (vr_die && dwarf_tag(vr_die) == DW_TAG_typedef);
302 
303 	return vr_die;
304 }
305 
306 /**
307  * die_get_pointer_type - Get a pointer/array type die
308  * @type_die: a DIE of a type
309  * @die_mem: where to store a type DIE
310  *
311  * Get a pointer/array type DIE from @type_die. If the type is a typedef or
312  * qualifier (const, volatile, etc.), follow the chain to find the underlying
313  * pointer type.
314  */
315 Dwarf_Die *die_get_pointer_type(Dwarf_Die *type_die, Dwarf_Die *die_mem)
316 {
317 	int tag;
318 
319 	do {
320 		tag = dwarf_tag(type_die);
321 		if (tag == DW_TAG_pointer_type || tag == DW_TAG_array_type)
322 			return type_die;
323 		if (tag != DW_TAG_typedef && tag != DW_TAG_const_type &&
324 		    tag != DW_TAG_restrict_type && tag != DW_TAG_volatile_type &&
325 		    tag != DW_TAG_shared_type)
326 			return NULL;
327 		type_die = die_get_type(type_die, die_mem);
328 	} while (type_die);
329 
330 	return NULL;
331 }
332 
333 /* Get attribute and translate it as a udata */
334 static int die_get_attr_udata(Dwarf_Die *tp_die, unsigned int attr_name,
335 			      Dwarf_Word *result)
336 {
337 	Dwarf_Attribute attr;
338 
339 	if (dwarf_attr_integrate(tp_die, attr_name, &attr) == NULL ||
340 	    dwarf_formudata(&attr, result) != 0)
341 		return -ENOENT;
342 
343 	return 0;
344 }
345 
346 /**
347  * die_is_signed_type - Check whether a type DIE is signed or not
348  * @tp_die: a DIE of a type
349  *
350  * Get the encoding of @tp_die and return true if the encoding
351  * is signed.
352  */
353 bool die_is_signed_type(Dwarf_Die *tp_die)
354 {
355 	Dwarf_Word ret;
356 
357 	if (die_get_attr_udata(tp_die, DW_AT_encoding, &ret))
358 		return false;
359 
360 	return (ret == DW_ATE_signed_char || ret == DW_ATE_signed ||
361 		ret == DW_ATE_signed_fixed);
362 }
363 
364 /**
365  * die_is_func_def - Ensure that this DIE is a subprogram and definition
366  * @dw_die: a DIE
367  *
368  * Ensure that this DIE is a subprogram and NOT a declaration. This
369  * returns true if @dw_die is a function definition.
370  **/
371 bool die_is_func_def(Dwarf_Die *dw_die)
372 {
373 	Dwarf_Attribute attr;
374 	Dwarf_Addr addr = 0;
375 
376 	if (dwarf_tag(dw_die) != DW_TAG_subprogram)
377 		return false;
378 
379 	if (dwarf_attr(dw_die, DW_AT_declaration, &attr))
380 		return false;
381 
382 	/*
383 	 * DW_AT_declaration can be lost from function declaration
384 	 * by gcc's bug #97060.
385 	 * So we need to check this subprogram DIE has DW_AT_inline
386 	 * or an entry address.
387 	 */
388 	if (!dwarf_attr(dw_die, DW_AT_inline, &attr) &&
389 	    die_entrypc(dw_die, &addr) < 0)
390 		return false;
391 
392 	return true;
393 }
394 
395 /**
396  * die_entrypc - Returns entry PC (the lowest address) of a DIE
397  * @dw_die: a DIE
398  * @addr: where to store entry PC
399  *
400  * Since dwarf_entrypc() does not return entry PC if the DIE has only address
401  * range, we have to use this to retrieve the lowest address from the address
402  * range attribute.
403  */
404 int die_entrypc(Dwarf_Die *dw_die, Dwarf_Addr *addr)
405 {
406 	Dwarf_Addr base, end;
407 	Dwarf_Attribute attr;
408 
409 	if (!addr)
410 		return -EINVAL;
411 
412 	if (dwarf_entrypc(dw_die, addr) == 0)
413 		return 0;
414 
415 	/*
416 	 *  Since the dwarf_ranges() will return 0 if there is no
417 	 * DW_AT_ranges attribute, we should check it first.
418 	 */
419 	if (!dwarf_attr(dw_die, DW_AT_ranges, &attr))
420 		return -ENOENT;
421 
422 	return dwarf_ranges(dw_die, 0, &base, addr, &end) < 0 ? -ENOENT : 0;
423 }
424 
425 /**
426  * die_is_func_instance - Ensure that this DIE is an instance of a subprogram
427  * @dw_die: a DIE
428  *
429  * Ensure that this DIE is an instance (which has an entry address).
430  * This returns true if @dw_die is a function instance. If not, the @dw_die
431  * must be a prototype. You can use die_walk_instances() to find actual
432  * instances.
433  **/
434 bool die_is_func_instance(Dwarf_Die *dw_die)
435 {
436 	Dwarf_Addr tmp;
437 	Dwarf_Attribute attr_mem;
438 	int tag = dwarf_tag(dw_die);
439 
440 	if (tag != DW_TAG_subprogram &&
441 	    tag != DW_TAG_inlined_subroutine)
442 		return false;
443 
444 	return dwarf_entrypc(dw_die, &tmp) == 0 ||
445 		dwarf_attr(dw_die, DW_AT_ranges, &attr_mem) != NULL;
446 }
447 
448 /**
449  * die_get_data_member_location - Get the data-member offset
450  * @mb_die: a DIE of a member of a data structure
451  * @offs: The offset of the member in the data structure
452  *
453  * Get the offset of @mb_die in the data structure including @mb_die, and
454  * stores result offset to @offs. If any error occurs this returns errno.
455  */
456 int die_get_data_member_location(Dwarf_Die *mb_die, Dwarf_Word *offs)
457 {
458 	Dwarf_Attribute attr;
459 	Dwarf_Op *expr;
460 	size_t nexpr;
461 	int ret;
462 
463 	if (dwarf_attr_integrate(mb_die, DW_AT_data_member_location, &attr) == NULL)
464 		return -ENOENT;
465 
466 	if (dwarf_formudata(&attr, offs) != 0) {
467 		/* DW_AT_data_member_location should be DW_OP_plus_uconst */
468 		ret = dwarf_getlocation(&attr, &expr, &nexpr);
469 		if (ret < 0 || nexpr == 0)
470 			return -ENOENT;
471 
472 		if (expr[0].atom != DW_OP_plus_uconst || nexpr != 1) {
473 			pr_debug("Unable to get offset:Unexpected OP %x (%zd)\n",
474 				 expr[0].atom, nexpr);
475 			return -ENOTSUP;
476 		}
477 		*offs = (Dwarf_Word)expr[0].number;
478 	}
479 	return 0;
480 }
481 
482 /* Get the call file index number in CU DIE */
483 static int die_get_call_fileno(Dwarf_Die *in_die)
484 {
485 	Dwarf_Word idx;
486 
487 	if (die_get_attr_udata(in_die, DW_AT_call_file, &idx) == 0)
488 		return (int)idx;
489 	else
490 		return -ENOENT;
491 }
492 
493 /* Get the declared file index number in CU DIE */
494 static int die_get_decl_fileno(Dwarf_Die *pdie)
495 {
496 	Dwarf_Word idx;
497 
498 	if (die_get_attr_udata(pdie, DW_AT_decl_file, &idx) == 0)
499 		return (int)idx;
500 	else
501 		return -ENOENT;
502 }
503 
504 /* Return the file name by index */
505 static const char *die_get_file_name(Dwarf_Die *dw_die, int idx)
506 {
507 	Dwarf_Die cu_die;
508 	Dwarf_Files *files;
509 	Dwarf_Attribute attr_mem;
510 
511 	if (idx < 0 || !dwarf_attr_integrate(dw_die, DW_AT_decl_file, &attr_mem) ||
512 	    !dwarf_cu_die(attr_mem.cu, &cu_die, NULL, NULL, NULL, NULL, NULL, NULL) ||
513 	    dwarf_getsrcfiles(&cu_die, &files, NULL) != 0)
514 		return NULL;
515 
516 	return dwarf_filesrc(files, idx, NULL, NULL);
517 }
518 
519 /**
520  * die_get_call_file - Get callsite file name of inlined function instance
521  * @in_die: a DIE of an inlined function instance
522  *
523  * Get call-site file name of @in_die. This means from which file the inline
524  * function is called.
525  */
526 const char *die_get_call_file(Dwarf_Die *in_die)
527 {
528 	return die_get_file_name(in_die, die_get_call_fileno(in_die));
529 }
530 
531 /**
532  * die_get_decl_file - Find the declared file name of this DIE
533  * @dw_die: a DIE for something declared.
534  *
535  * Get declared file name of @dw_die.
536  * NOTE: Since some version of clang DWARF5 implementation incorrectly uses
537  * file index 0 for DW_AT_decl_file, die_get_decl_file() will return NULL for
538  * such cases. Use this function instead.
539  */
540 const char *die_get_decl_file(Dwarf_Die *dw_die)
541 {
542 	return die_get_file_name(dw_die, die_get_decl_fileno(dw_die));
543 }
544 
545 /**
546  * die_find_child - Generic DIE search function in DIE tree
547  * @rt_die: a root DIE
548  * @callback: a callback function
549  * @data: a user data passed to the callback function
550  * @die_mem: a buffer for result DIE
551  *
552  * Trace DIE tree from @rt_die and call @callback for each child DIE.
553  * If @callback returns DIE_FIND_CB_END, this stores the DIE into
554  * @die_mem and returns it. If @callback returns DIE_FIND_CB_CONTINUE,
555  * this continues to trace the tree. Optionally, @callback can return
556  * DIE_FIND_CB_CHILD and DIE_FIND_CB_SIBLING, those means trace only
557  * the children and trace only the siblings respectively.
558  * Returns NULL if @callback can't find any appropriate DIE.
559  */
560 Dwarf_Die *die_find_child(Dwarf_Die *rt_die,
561 			  int (*callback)(Dwarf_Die *, void *),
562 			  void *data, Dwarf_Die *die_mem)
563 {
564 	Dwarf_Die child_die;
565 	int ret;
566 
567 	ret = dwarf_child(rt_die, die_mem);
568 	if (ret != 0)
569 		return NULL;
570 
571 	do {
572 		ret = callback(die_mem, data);
573 		if (ret == DIE_FIND_CB_END)
574 			return die_mem;
575 
576 		if ((ret & DIE_FIND_CB_CHILD) &&
577 		    die_find_child(die_mem, callback, data, &child_die)) {
578 			memcpy(die_mem, &child_die, sizeof(Dwarf_Die));
579 			return die_mem;
580 		}
581 	} while ((ret & DIE_FIND_CB_SIBLING) &&
582 		 dwarf_siblingof(die_mem, die_mem) == 0);
583 
584 	return NULL;
585 }
586 
587 struct __addr_die_search_param {
588 	Dwarf_Addr	addr;
589 	Dwarf_Die	*die_mem;
590 };
591 
592 static int __die_search_func_tail_cb(Dwarf_Die *fn_die, void *data)
593 {
594 	struct __addr_die_search_param *ad = data;
595 	Dwarf_Addr addr = 0;
596 
597 	if (dwarf_tag(fn_die) == DW_TAG_subprogram &&
598 	    !dwarf_highpc(fn_die, &addr) &&
599 	    addr == ad->addr) {
600 		memcpy(ad->die_mem, fn_die, sizeof(Dwarf_Die));
601 		return DWARF_CB_ABORT;
602 	}
603 	return DWARF_CB_OK;
604 }
605 
606 /**
607  * die_find_tailfunc - Search for a non-inlined function with tail call at
608  * given address
609  * @cu_die: a CU DIE which including @addr
610  * @addr: target address
611  * @die_mem: a buffer for result DIE
612  *
613  * Search for a non-inlined function DIE with tail call at @addr. Stores the
614  * DIE to @die_mem and returns it if found. Returns NULL if failed.
615  */
616 Dwarf_Die *die_find_tailfunc(Dwarf_Die *cu_die, Dwarf_Addr addr,
617 				    Dwarf_Die *die_mem)
618 {
619 	struct __addr_die_search_param ad;
620 	ad.addr = addr;
621 	ad.die_mem = die_mem;
622 	/* dwarf_getscopes can't find subprogram. */
623 	if (dwarf_getfuncs(cu_die, __die_search_func_tail_cb, &ad, 0) <= 0)
624 		return NULL;
625 	else
626 		return die_mem;
627 }
628 
629 /* die_find callback for non-inlined function search */
630 static int __die_search_func_cb(Dwarf_Die *fn_die, void *data)
631 {
632 	struct __addr_die_search_param *ad = data;
633 
634 	/*
635 	 * Since a declaration entry doesn't has given pc, this always returns
636 	 * function definition entry.
637 	 */
638 	if (dwarf_tag(fn_die) == DW_TAG_subprogram &&
639 	    dwarf_haspc(fn_die, ad->addr)) {
640 		memcpy(ad->die_mem, fn_die, sizeof(Dwarf_Die));
641 		return DWARF_CB_ABORT;
642 	}
643 	return DWARF_CB_OK;
644 }
645 
646 /**
647  * die_find_realfunc - Search a non-inlined function at given address
648  * @cu_die: a CU DIE which including @addr
649  * @addr: target address
650  * @die_mem: a buffer for result DIE
651  *
652  * Search a non-inlined function DIE which includes @addr. Stores the
653  * DIE to @die_mem and returns it if found. Returns NULL if failed.
654  */
655 Dwarf_Die *die_find_realfunc(Dwarf_Die *cu_die, Dwarf_Addr addr,
656 				    Dwarf_Die *die_mem)
657 {
658 	struct __addr_die_search_param ad;
659 	ad.addr = addr;
660 	ad.die_mem = die_mem;
661 	/* dwarf_getscopes can't find subprogram. */
662 	if (dwarf_getfuncs(cu_die, __die_search_func_cb, &ad, 0) <= 0)
663 		return NULL;
664 	else
665 		return die_mem;
666 }
667 
668 /* die_find callback for inline function search */
669 static int __die_find_inline_cb(Dwarf_Die *die_mem, void *data)
670 {
671 	Dwarf_Addr *addr = data;
672 
673 	if (dwarf_tag(die_mem) == DW_TAG_inlined_subroutine &&
674 	    dwarf_haspc(die_mem, *addr))
675 		return DIE_FIND_CB_END;
676 
677 	return DIE_FIND_CB_CONTINUE;
678 }
679 
680 /**
681  * die_find_top_inlinefunc - Search the top inlined function at given address
682  * @sp_die: a subprogram DIE which including @addr
683  * @addr: target address
684  * @die_mem: a buffer for result DIE
685  *
686  * Search an inlined function DIE which includes @addr. Stores the
687  * DIE to @die_mem and returns it if found. Returns NULL if failed.
688  * Even if several inlined functions are expanded recursively, this
689  * doesn't trace it down, and returns the topmost one.
690  */
691 Dwarf_Die *die_find_top_inlinefunc(Dwarf_Die *sp_die, Dwarf_Addr addr,
692 				   Dwarf_Die *die_mem)
693 {
694 	return die_find_child(sp_die, __die_find_inline_cb, &addr, die_mem);
695 }
696 
697 /**
698  * die_find_inlinefunc - Search an inlined function at given address
699  * @sp_die: a subprogram DIE which including @addr
700  * @addr: target address
701  * @die_mem: a buffer for result DIE
702  *
703  * Search an inlined function DIE which includes @addr. Stores the
704  * DIE to @die_mem and returns it if found. Returns NULL if failed.
705  * If several inlined functions are expanded recursively, this trace
706  * it down and returns deepest one.
707  */
708 Dwarf_Die *die_find_inlinefunc(Dwarf_Die *sp_die, Dwarf_Addr addr,
709 			       Dwarf_Die *die_mem)
710 {
711 	Dwarf_Die tmp_die;
712 
713 	sp_die = die_find_child(sp_die, __die_find_inline_cb, &addr, &tmp_die);
714 	if (!sp_die)
715 		return NULL;
716 
717 	/* Inlined function could be recursive. Trace it until fail */
718 	while (sp_die) {
719 		memcpy(die_mem, sp_die, sizeof(Dwarf_Die));
720 		sp_die = die_find_child(sp_die, __die_find_inline_cb, &addr,
721 					&tmp_die);
722 	}
723 
724 	return die_mem;
725 }
726 
727 static int __die_find_func_rettype_cb(Dwarf_Die *die_mem, void *data)
728 {
729 	const char *func_name;
730 
731 	if (dwarf_tag(die_mem) != DW_TAG_subprogram)
732 		return DIE_FIND_CB_SIBLING;
733 
734 	func_name = dwarf_diename(die_mem);
735 	if (func_name && !strcmp(func_name, data))
736 		return DIE_FIND_CB_END;
737 
738 	return DIE_FIND_CB_SIBLING;
739 }
740 
741 /**
742  * die_find_func_rettype - Search a return type of function
743  * @cu_die: a CU DIE
744  * @name: target function name
745  * @die_mem: a buffer for result DIE
746  *
747  * Search a non-inlined function which matches to @name and stores the
748  * return type of the function to @die_mem and returns it if found.
749  * Returns NULL if failed.  Note that it doesn't needs to find a
750  * definition of the function, so it doesn't match with address.
751  * Most likely, it can find a declaration at the top level.  Thus the
752  * callback function continues to sibling entries only.
753  */
754 Dwarf_Die *die_find_func_rettype(Dwarf_Die *cu_die, const char *name,
755 				 Dwarf_Die *die_mem)
756 {
757 	Dwarf_Die tmp_die;
758 
759 	cu_die = die_find_child(cu_die, __die_find_func_rettype_cb,
760 				(void *)name, &tmp_die);
761 	if (!cu_die)
762 		return NULL;
763 
764 	if (die_get_real_type(&tmp_die, die_mem) == NULL)
765 		return NULL;
766 
767 	return die_mem;
768 }
769 
770 struct __instance_walk_param {
771 	void    *addr;
772 	int	(*callback)(Dwarf_Die *, void *);
773 	void    *data;
774 	int	retval;
775 };
776 
777 static int __die_walk_instances_cb(Dwarf_Die *inst, void *data)
778 {
779 	struct __instance_walk_param *iwp = data;
780 	Dwarf_Attribute attr_mem;
781 	Dwarf_Die origin_mem;
782 	Dwarf_Attribute *attr;
783 	Dwarf_Die *origin;
784 	int tmp;
785 
786 	if (!die_is_func_instance(inst))
787 		return DIE_FIND_CB_CONTINUE;
788 
789 	attr = dwarf_attr(inst, DW_AT_abstract_origin, &attr_mem);
790 	if (attr == NULL)
791 		return DIE_FIND_CB_CONTINUE;
792 
793 	origin = dwarf_formref_die(attr, &origin_mem);
794 	if (origin == NULL || origin->addr != iwp->addr)
795 		return DIE_FIND_CB_CONTINUE;
796 
797 	/* Ignore redundant instances */
798 	if (dwarf_tag(inst) == DW_TAG_inlined_subroutine) {
799 		if (dwarf_decl_line(origin, &tmp) == 0 && die_get_call_lineno(inst) == tmp) {
800 			tmp = die_get_decl_fileno(origin);
801 			if (die_get_call_fileno(inst) == tmp)
802 				return DIE_FIND_CB_CONTINUE;
803 		}
804 	}
805 
806 	iwp->retval = iwp->callback(inst, iwp->data);
807 
808 	return (iwp->retval) ? DIE_FIND_CB_END : DIE_FIND_CB_CONTINUE;
809 }
810 
811 /**
812  * die_walk_instances - Walk on instances of given DIE
813  * @or_die: an abstract original DIE
814  * @callback: a callback function which is called with instance DIE
815  * @data: user data
816  *
817  * Walk on the instances of give @in_die. @in_die must be an inlined function
818  * declaration. This returns the return value of @callback if it returns
819  * non-zero value, or -ENOENT if there is no instance.
820  */
821 int die_walk_instances(Dwarf_Die *or_die, int (*callback)(Dwarf_Die *, void *),
822 		       void *data)
823 {
824 	Dwarf_Die cu_die;
825 	Dwarf_Die die_mem;
826 	struct __instance_walk_param iwp = {
827 		.addr = or_die->addr,
828 		.callback = callback,
829 		.data = data,
830 		.retval = -ENOENT,
831 	};
832 
833 	if (dwarf_diecu(or_die, &cu_die, NULL, NULL) == NULL)
834 		return -ENOENT;
835 
836 	die_find_child(&cu_die, __die_walk_instances_cb, &iwp, &die_mem);
837 
838 	return iwp.retval;
839 }
840 
841 /* Line walker internal parameters */
842 struct __line_walk_param {
843 	bool recursive;
844 	line_walk_callback_t callback;
845 	void *data;
846 	int retval;
847 };
848 
849 static int __die_walk_funclines_cb(Dwarf_Die *in_die, void *data)
850 {
851 	struct __line_walk_param *lw = data;
852 	Dwarf_Addr addr = 0;
853 	const char *fname;
854 	int lineno;
855 
856 	if (dwarf_tag(in_die) == DW_TAG_inlined_subroutine) {
857 		fname = die_get_call_file(in_die);
858 		lineno = die_get_call_lineno(in_die);
859 		if (fname && lineno > 0 && die_entrypc(in_die, &addr) == 0) {
860 			lw->retval = lw->callback(fname, lineno, addr, lw->data);
861 			if (lw->retval != 0)
862 				return DIE_FIND_CB_END;
863 		}
864 		if (!lw->recursive)
865 			return DIE_FIND_CB_SIBLING;
866 	}
867 
868 	if (addr) {
869 		fname = die_get_decl_file(in_die);
870 		if (fname && dwarf_decl_line(in_die, &lineno) == 0) {
871 			lw->retval = lw->callback(fname, lineno, addr, lw->data);
872 			if (lw->retval != 0)
873 				return DIE_FIND_CB_END;
874 		}
875 	}
876 
877 	/* Continue to search nested inlined function call-sites */
878 	return DIE_FIND_CB_CONTINUE;
879 }
880 
881 /* Walk on lines of blocks included in given DIE */
882 static int __die_walk_funclines(Dwarf_Die *sp_die, bool recursive,
883 				line_walk_callback_t callback, void *data)
884 {
885 	struct __line_walk_param lw = {
886 		.recursive = recursive,
887 		.callback = callback,
888 		.data = data,
889 		.retval = 0,
890 	};
891 	Dwarf_Die die_mem;
892 	Dwarf_Addr addr;
893 	const char *fname;
894 	int lineno;
895 
896 	/* Handle function declaration line */
897 	fname = die_get_decl_file(sp_die);
898 	if (fname && dwarf_decl_line(sp_die, &lineno) == 0 &&
899 	    die_entrypc(sp_die, &addr) == 0) {
900 		lw.retval = callback(fname, lineno, addr, data);
901 		if (lw.retval != 0)
902 			goto done;
903 	}
904 	die_find_child(sp_die, __die_walk_funclines_cb, &lw, &die_mem);
905 done:
906 	return lw.retval;
907 }
908 
909 static int __die_walk_culines_cb(Dwarf_Die *sp_die, void *data)
910 {
911 	struct __line_walk_param *lw = data;
912 
913 	/*
914 	 * Since inlined function can include another inlined function in
915 	 * the same file, we need to walk in it recursively.
916 	 */
917 	lw->retval = __die_walk_funclines(sp_die, true, lw->callback, lw->data);
918 	if (lw->retval != 0)
919 		return DWARF_CB_ABORT;
920 
921 	return DWARF_CB_OK;
922 }
923 
924 /**
925  * die_walk_lines - Walk on lines inside given DIE
926  * @rt_die: a root DIE (CU, subprogram or inlined_subroutine)
927  * @callback: callback routine
928  * @data: user data
929  *
930  * Walk on all lines inside given @rt_die and call @callback on each line.
931  * If the @rt_die is a function, walk only on the lines inside the function,
932  * otherwise @rt_die must be a CU DIE.
933  * Note that this walks not only dwarf line list, but also function entries
934  * and inline call-site.
935  */
936 int die_walk_lines(Dwarf_Die *rt_die, line_walk_callback_t callback, void *data)
937 {
938 	Dwarf_Lines *lines;
939 	Dwarf_Line *line;
940 	Dwarf_Addr addr;
941 	const char *fname, *decf = NULL, *inf = NULL;
942 	int lineno, ret = 0;
943 	int decl = 0, inl;
944 	Dwarf_Die die_mem, *cu_die;
945 	size_t nlines, i;
946 	bool flag;
947 
948 	/* Get the CU die */
949 	if (dwarf_tag(rt_die) != DW_TAG_compile_unit) {
950 		cu_die = dwarf_diecu(rt_die, &die_mem, NULL, NULL);
951 		dwarf_decl_line(rt_die, &decl);
952 		decf = die_get_decl_file(rt_die);
953 	} else
954 		cu_die = rt_die;
955 	if (!cu_die) {
956 		pr_debug2("Failed to get CU from given DIE.\n");
957 		return -EINVAL;
958 	}
959 
960 	/* Get lines list in the CU */
961 	if (dwarf_getsrclines(cu_die, &lines, &nlines) != 0) {
962 		pr_debug2("Failed to get source lines on this CU.\n");
963 		return -ENOENT;
964 	}
965 	pr_debug2("Get %zd lines from this CU\n", nlines);
966 
967 	/* Walk on the lines on lines list */
968 	for (i = 0; i < nlines; i++) {
969 		line = dwarf_onesrcline(lines, i);
970 		if (line == NULL ||
971 		    dwarf_lineno(line, &lineno) != 0 ||
972 		    dwarf_lineaddr(line, &addr) != 0) {
973 			pr_debug2("Failed to get line info. "
974 				  "Possible error in debuginfo.\n");
975 			continue;
976 		}
977 		/* Skip end-of-sequence */
978 		if (dwarf_lineendsequence(line, &flag) != 0 || flag)
979 			continue;
980 		/* Skip Non statement line-info */
981 		if (dwarf_linebeginstatement(line, &flag) != 0 || !flag)
982 			continue;
983 		/* Filter lines based on address */
984 		if (rt_die != cu_die) {
985 			/*
986 			 * Address filtering
987 			 * The line is included in given function, and
988 			 * no inline block includes it.
989 			 */
990 			if (!dwarf_haspc(rt_die, addr))
991 				continue;
992 
993 			if (die_find_inlinefunc(rt_die, addr, &die_mem)) {
994 				/* Call-site check */
995 				inf = die_get_call_file(&die_mem);
996 				if ((inf == decf || (inf && decf && !strcmp(inf, decf))) &&
997 				    die_get_call_lineno(&die_mem) == lineno)
998 					goto found;
999 
1000 				if (dwarf_decl_line(&die_mem, &inl) != 0)
1001 					inl = 0;
1002 				if (inl != decl ||
1003 				    decf != die_get_decl_file(&die_mem))
1004 					continue;
1005 			}
1006 		}
1007 found:
1008 		/* Get source line */
1009 		fname = dwarf_linesrc(line, NULL, NULL);
1010 
1011 		ret = callback(fname, lineno, addr, data);
1012 		if (ret != 0)
1013 			return ret;
1014 	}
1015 
1016 	/*
1017 	 * Dwarf lines doesn't include function declarations and inlined
1018 	 * subroutines. We have to check functions list or given function.
1019 	 */
1020 	if (rt_die != cu_die)
1021 		/*
1022 		 * Don't need walk inlined functions recursively, because
1023 		 * inner inlined functions don't have the lines of the
1024 		 * specified function.
1025 		 */
1026 		ret = __die_walk_funclines(rt_die, false, callback, data);
1027 	else {
1028 		struct __line_walk_param param = {
1029 			.callback = callback,
1030 			.data = data,
1031 			.retval = 0,
1032 		};
1033 		if (dwarf_getfuncs(cu_die, __die_walk_culines_cb, &param, 0) < 0)
1034 			ret = -EINVAL;
1035 		else
1036 			ret = param.retval;
1037 	}
1038 
1039 	return ret;
1040 }
1041 
1042 struct __find_variable_param {
1043 	const char *name;
1044 	Dwarf_Addr addr;
1045 };
1046 
1047 static int __die_find_variable_cb(Dwarf_Die *die_mem, void *data)
1048 {
1049 	struct __find_variable_param *fvp = data;
1050 	Dwarf_Attribute attr;
1051 	int tag;
1052 
1053 	tag = dwarf_tag(die_mem);
1054 	if ((tag == DW_TAG_formal_parameter ||
1055 	     tag == DW_TAG_variable) &&
1056 	    die_compare_name(die_mem, fvp->name) &&
1057 	/*
1058 	 * Does the DIE have location information or const value
1059 	 * or external instance?
1060 	 */
1061 	    (dwarf_attr(die_mem, DW_AT_external, &attr) ||
1062 	     dwarf_attr(die_mem, DW_AT_location, &attr) ||
1063 	     dwarf_attr(die_mem, DW_AT_const_value, &attr)))
1064 		return DIE_FIND_CB_END;
1065 	if (dwarf_haspc(die_mem, fvp->addr))
1066 		return DIE_FIND_CB_CONTINUE;
1067 	else
1068 		return DIE_FIND_CB_SIBLING;
1069 }
1070 
1071 /**
1072  * die_find_variable_at - Find a given name variable at given address
1073  * @sp_die: a function DIE
1074  * @name: variable name
1075  * @addr: address
1076  * @die_mem: a buffer for result DIE
1077  *
1078  * Find a variable DIE called @name at @addr in @sp_die.
1079  */
1080 Dwarf_Die *die_find_variable_at(Dwarf_Die *sp_die, const char *name,
1081 				Dwarf_Addr addr, Dwarf_Die *die_mem)
1082 {
1083 	struct __find_variable_param fvp = { .name = name, .addr = addr};
1084 
1085 	return die_find_child(sp_die, __die_find_variable_cb, (void *)&fvp,
1086 			      die_mem);
1087 }
1088 
1089 static int __die_find_member_cb(Dwarf_Die *die_mem, void *data)
1090 {
1091 	const char *name = data;
1092 
1093 	if (dwarf_tag(die_mem) == DW_TAG_member) {
1094 		if (die_compare_name(die_mem, name))
1095 			return DIE_FIND_CB_END;
1096 		else if (!dwarf_diename(die_mem)) {	/* Unnamed structure */
1097 			Dwarf_Die type_die, tmp_die;
1098 			if (die_get_type(die_mem, &type_die) &&
1099 			    die_find_member(&type_die, name, &tmp_die))
1100 				return DIE_FIND_CB_END;
1101 		}
1102 	}
1103 	return DIE_FIND_CB_SIBLING;
1104 }
1105 
1106 /**
1107  * die_find_member - Find a given name member in a data structure
1108  * @st_die: a data structure type DIE
1109  * @name: member name
1110  * @die_mem: a buffer for result DIE
1111  *
1112  * Find a member DIE called @name in @st_die.
1113  */
1114 Dwarf_Die *die_find_member(Dwarf_Die *st_die, const char *name,
1115 			   Dwarf_Die *die_mem)
1116 {
1117 	return die_find_child(st_die, __die_find_member_cb, (void *)name,
1118 			      die_mem);
1119 }
1120 
1121 /**
1122  * die_get_typename_from_type - Get the name of given type DIE
1123  * @type_die: a type DIE
1124  * @buf: a strbuf for result type name
1125  *
1126  * Get the name of @type_die and stores it to @buf. Return 0 if succeeded.
1127  * and Return -ENOENT if failed to find type name.
1128  * Note that the result will stores typedef name if possible, and stores
1129  * "*(function_type)" if the type is a function pointer.
1130  */
1131 int die_get_typename_from_type(Dwarf_Die *type_die, struct strbuf *buf)
1132 {
1133 	int tag, ret;
1134 	const char *tmp = "";
1135 
1136 	tag = dwarf_tag(type_die);
1137 	if (tag == DW_TAG_pointer_type)
1138 		tmp = "*";
1139 	else if (tag == DW_TAG_array_type)
1140 		tmp = "[]";
1141 	else if (tag == DW_TAG_subroutine_type) {
1142 		/* Function pointer */
1143 		return strbuf_add(buf, "(function_type)", 15);
1144 	} else {
1145 		const char *name = dwarf_diename(type_die);
1146 
1147 		if (tag == DW_TAG_union_type)
1148 			tmp = "union ";
1149 		else if (tag == DW_TAG_structure_type)
1150 			tmp = "struct ";
1151 		else if (tag == DW_TAG_enumeration_type)
1152 			tmp = "enum ";
1153 		else if (name == NULL)
1154 			return -ENOENT;
1155 		/* Write a base name */
1156 		return strbuf_addf(buf, "%s%s", tmp, name ?: "");
1157 	}
1158 	ret = die_get_typename(type_die, buf);
1159 	if (ret < 0) {
1160 		/* void pointer has no type attribute */
1161 		if (tag == DW_TAG_pointer_type && ret == -ENOENT)
1162 			return strbuf_addf(buf, "void*");
1163 
1164 		return ret;
1165 	}
1166 	return strbuf_addstr(buf, tmp);
1167 }
1168 
1169 /**
1170  * die_get_typename - Get the name of given variable DIE
1171  * @vr_die: a variable DIE
1172  * @buf: a strbuf for result type name
1173  *
1174  * Get the name of @vr_die and stores it to @buf. Return 0 if succeeded.
1175  * and Return -ENOENT if failed to find type name.
1176  * Note that the result will stores typedef name if possible, and stores
1177  * "*(function_type)" if the type is a function pointer.
1178  */
1179 int die_get_typename(Dwarf_Die *vr_die, struct strbuf *buf)
1180 {
1181 	Dwarf_Die type;
1182 
1183 	if (__die_get_real_type(vr_die, &type) == NULL)
1184 		return -ENOENT;
1185 
1186 	return die_get_typename_from_type(&type, buf);
1187 }
1188 
1189 /**
1190  * die_get_varname - Get the name and type of given variable DIE
1191  * @vr_die: a variable DIE
1192  * @buf: a strbuf for type and variable name
1193  *
1194  * Get the name and type of @vr_die and stores it in @buf as "type\tname".
1195  */
1196 int die_get_varname(Dwarf_Die *vr_die, struct strbuf *buf)
1197 {
1198 	int ret;
1199 
1200 	ret = die_get_typename(vr_die, buf);
1201 	if (ret < 0) {
1202 		pr_debug("Failed to get type, make it unknown.\n");
1203 		ret = strbuf_add(buf, "(unknown_type)", 14);
1204 	}
1205 
1206 	return ret < 0 ? ret : strbuf_addf(buf, "\t%s", dwarf_diename(vr_die));
1207 }
1208 
1209 static int reg_from_dwarf_op(Dwarf_Op *op)
1210 {
1211 	switch (op->atom) {
1212 	case DW_OP_reg0 ... DW_OP_reg31:
1213 		return op->atom - DW_OP_reg0;
1214 	case DW_OP_breg0 ... DW_OP_breg31:
1215 		return op->atom - DW_OP_breg0;
1216 	case DW_OP_regx:
1217 	case DW_OP_bregx:
1218 		return op->number;
1219 	case DW_OP_fbreg:
1220 		return DWARF_REG_FB;
1221 	default:
1222 		break;
1223 	}
1224 	return -1;
1225 }
1226 
1227 static int offset_from_dwarf_op(Dwarf_Op *op)
1228 {
1229 	switch (op->atom) {
1230 	case DW_OP_reg0 ... DW_OP_reg31:
1231 	case DW_OP_regx:
1232 		return 0;
1233 	case DW_OP_breg0 ... DW_OP_breg31:
1234 	case DW_OP_fbreg:
1235 		return op->number;
1236 	case DW_OP_bregx:
1237 		return op->number2;
1238 	default:
1239 		break;
1240 	}
1241 	return -1;
1242 }
1243 
1244 static bool check_allowed_ops(Dwarf_Op *ops, size_t nops)
1245 {
1246 	/* The first op is checked separately */
1247 	ops++;
1248 	nops--;
1249 
1250 	/*
1251 	 * It needs to make sure if the location expression matches to the given
1252 	 * register and offset exactly.  Thus it rejects any complex expressions
1253 	 * and only allows a few of selected operators that doesn't change the
1254 	 * location.
1255 	 */
1256 	while (nops) {
1257 		switch (ops->atom) {
1258 		case DW_OP_stack_value:
1259 		case DW_OP_deref_size:
1260 		case DW_OP_deref:
1261 		case DW_OP_piece:
1262 			break;
1263 		default:
1264 			return false;
1265 		}
1266 		ops++;
1267 		nops--;
1268 	}
1269 	return true;
1270 }
1271 
1272 /**
1273  * die_get_var_innermost_scope - Get innermost scope range of given variable DIE
1274  * @sp_die: a subprogram DIE
1275  * @vr_die: a variable DIE
1276  * @buf: a strbuf for variable byte offset range
1277  *
1278  * Get the innermost scope range of @vr_die and stores it in @buf as
1279  * "@<function_name+[NN-NN,NN-NN]>".
1280  */
1281 static int die_get_var_innermost_scope(Dwarf_Die *sp_die, Dwarf_Die *vr_die,
1282 				struct strbuf *buf)
1283 {
1284 	Dwarf_Die *scopes;
1285 	int count;
1286 	size_t offset = 0;
1287 	Dwarf_Addr base;
1288 	Dwarf_Addr start, end;
1289 	Dwarf_Addr entry;
1290 	int ret;
1291 	bool first = true;
1292 	const char *name;
1293 
1294 	ret = die_entrypc(sp_die, &entry);
1295 	if (ret)
1296 		return ret;
1297 
1298 	name = dwarf_diename(sp_die);
1299 	if (!name)
1300 		return -ENOENT;
1301 
1302 	count = dwarf_getscopes_die(vr_die, &scopes);
1303 
1304 	/* (*SCOPES)[1] is the DIE for the scope containing that scope */
1305 	if (count <= 1) {
1306 		ret = -EINVAL;
1307 		goto out;
1308 	}
1309 
1310 	while ((offset = dwarf_ranges(&scopes[1], offset, &base,
1311 					&start, &end)) > 0) {
1312 		start -= entry;
1313 		end -= entry;
1314 
1315 		if (first) {
1316 			ret = strbuf_addf(buf, "@<%s+[%" PRIu64 "-%" PRIu64,
1317 					  name, start, end);
1318 			first = false;
1319 		} else {
1320 			ret = strbuf_addf(buf, ",%" PRIu64 "-%" PRIu64,
1321 					  start, end);
1322 		}
1323 		if (ret < 0)
1324 			goto out;
1325 	}
1326 
1327 	if (!first)
1328 		ret = strbuf_add(buf, "]>", 2);
1329 
1330 out:
1331 	free(scopes);
1332 	return ret;
1333 }
1334 
1335 /**
1336  * die_get_var_range - Get byte offset range of given variable DIE
1337  * @sp_die: a subprogram DIE
1338  * @vr_die: a variable DIE
1339  * @buf: a strbuf for type and variable name and byte offset range
1340  *
1341  * Get the byte offset range of @vr_die and stores it in @buf as
1342  * "@<function_name+[NN-NN,NN-NN]>".
1343  */
1344 int die_get_var_range(Dwarf_Die *sp_die, Dwarf_Die *vr_die, struct strbuf *buf)
1345 {
1346 	int ret = 0;
1347 	Dwarf_Addr base;
1348 	Dwarf_Addr start, end;
1349 	Dwarf_Addr entry;
1350 	Dwarf_Op *op;
1351 	size_t nops;
1352 	size_t offset = 0;
1353 	Dwarf_Attribute attr;
1354 	bool first = true;
1355 	const char *name;
1356 
1357 	ret = die_entrypc(sp_die, &entry);
1358 	if (ret)
1359 		return ret;
1360 
1361 	name = dwarf_diename(sp_die);
1362 	if (!name)
1363 		return -ENOENT;
1364 
1365 	if (dwarf_attr(vr_die, DW_AT_location, &attr) == NULL)
1366 		return -EINVAL;
1367 
1368 	while ((offset = dwarf_getlocations(&attr, offset, &base,
1369 					&start, &end, &op, &nops)) > 0) {
1370 		if (start == 0) {
1371 			/* Single Location Descriptions */
1372 			ret = die_get_var_innermost_scope(sp_die, vr_die, buf);
1373 			goto out;
1374 		}
1375 
1376 		/* Location Lists */
1377 		start -= entry;
1378 		end -= entry;
1379 		if (first) {
1380 			ret = strbuf_addf(buf, "@<%s+[%" PRIu64 "-%" PRIu64,
1381 					  name, start, end);
1382 			first = false;
1383 		} else {
1384 			ret = strbuf_addf(buf, ",%" PRIu64 "-%" PRIu64,
1385 					  start, end);
1386 		}
1387 		if (ret < 0)
1388 			goto out;
1389 	}
1390 
1391 	if (!first)
1392 		ret = strbuf_add(buf, "]>", 2);
1393 out:
1394 	return ret;
1395 }
1396 
1397 /* Interval parameters for __die_find_var_reg_cb() */
1398 struct find_var_data {
1399 	/* Target instruction address */
1400 	Dwarf_Addr pc;
1401 	/* Target memory address (for global data) */
1402 	Dwarf_Addr addr;
1403 	/* Target register */
1404 	unsigned reg;
1405 	/* Access data type */
1406 	Dwarf_Die type;
1407 	/* Access offset, set for global data */
1408 	int offset;
1409 	/* True if the current register is the frame base */
1410 	bool is_fbreg;
1411 };
1412 
1413 /* Max number of registers DW_OP_regN supports */
1414 #define DWARF_OP_DIRECT_REGS  32
1415 
1416 static bool match_var_offset(Dwarf_Die *die_mem, struct find_var_data *data,
1417 			     s64 addr_offset, s64 addr_type, bool is_pointer)
1418 {
1419 	Dwarf_Word size;
1420 	Dwarf_Die ptr_die;
1421 	Dwarf_Die *ptr_type;
1422 	s64 offset = addr_offset - addr_type;
1423 
1424 	if (offset < 0)
1425 		return false;
1426 
1427 	if (__die_get_real_type(die_mem, &data->type) == NULL)
1428 		return false;
1429 
1430 	ptr_type = die_get_pointer_type(&data->type, &ptr_die);
1431 	if (is_pointer && ptr_type) {
1432 		/* Get the target type of the pointer */
1433 		if (__die_get_real_type(ptr_type, &data->type) == NULL)
1434 			return false;
1435 	}
1436 
1437 	if (offset == 0) {
1438 		/* Update offset relative to the start of the variable */
1439 		data->offset = 0;
1440 		return true;
1441 	}
1442 
1443 	if (dwarf_aggregate_size(&data->type, &size) < 0)
1444 		return false;
1445 
1446 	if ((u64)offset >= size)
1447 		return false;
1448 
1449 	/* Update offset relative to the start of the variable */
1450 	data->offset = offset;
1451 	return true;
1452 }
1453 
1454 /**
1455  * is_breg_access_indirect - Check if breg based access implies type
1456  * dereference
1457  * @ops: DWARF operations array
1458  * @nops: Number of operations in @ops
1459  *
1460  * Returns true if the DWARF expression evaluates to the variable's
1461  * value, so the memory access on that register needs type dereference.
1462  * Returns false if the expression evaluates to the variable's address.
1463  * This is called after check_allowed_ops.
1464  */
1465 static bool is_breg_access_indirect(Dwarf_Op *ops, size_t nops)
1466 {
1467 	/* only the base register */
1468 	if (nops == 1)
1469 		return false;
1470 
1471 	if (nops == 2 && ops[1].atom == DW_OP_stack_value)
1472 		return true;
1473 
1474 	if (nops == 3 && (ops[1].atom == DW_OP_deref ||
1475 		ops[1].atom == DW_OP_deref_size) &&
1476 		ops[2].atom == DW_OP_stack_value)
1477 		return false;
1478 	/* unreachable, OP not supported */
1479 	return false;
1480 }
1481 
1482 /* Only checks direct child DIEs in the given scope. */
1483 static int __die_find_var_reg_cb(Dwarf_Die *die_mem, void *arg)
1484 {
1485 	struct find_var_data *data = arg;
1486 	int tag = dwarf_tag(die_mem);
1487 	ptrdiff_t off = 0;
1488 	Dwarf_Attribute attr;
1489 	Dwarf_Addr base, start, end;
1490 	Dwarf_Op *ops;
1491 	size_t nops;
1492 
1493 	if (tag != DW_TAG_variable && tag != DW_TAG_formal_parameter)
1494 		return DIE_FIND_CB_SIBLING;
1495 
1496 	if (dwarf_attr(die_mem, DW_AT_location, &attr) == NULL)
1497 		return DIE_FIND_CB_SIBLING;
1498 
1499 	while ((off = dwarf_getlocations(&attr, off, &base, &start, &end, &ops, &nops)) > 0) {
1500 		/* Assuming the location list is sorted by address */
1501 		if (end <= data->pc)
1502 			continue;
1503 		if (start > data->pc)
1504 			break;
1505 
1506 		/* Local variables accessed using frame base register */
1507 		if (data->is_fbreg && ops->atom == DW_OP_fbreg &&
1508 		    check_allowed_ops(ops, nops) &&
1509 		    match_var_offset(die_mem, data, data->offset, ops->number,
1510 				     is_breg_access_indirect(ops, nops)))
1511 			return DIE_FIND_CB_END;
1512 
1513 		/* Only match with a simple case */
1514 		if (data->reg < DWARF_OP_DIRECT_REGS) {
1515 			/* pointer variables saved in a register 0 to 31 */
1516 			if (ops->atom == (DW_OP_reg0 + data->reg) &&
1517 			    check_allowed_ops(ops, nops) &&
1518 			    match_var_offset(die_mem, data, data->offset, 0,
1519 					     /*is_pointer=*/true))
1520 				return DIE_FIND_CB_END;
1521 
1522 			/* variables accessed by a register + offset */
1523 			if (ops->atom == (DW_OP_breg0 + data->reg) &&
1524 			    check_allowed_ops(ops, nops) &&
1525 			    match_var_offset(die_mem, data, data->offset, ops->number,
1526 					     is_breg_access_indirect(ops, nops)))
1527 				return DIE_FIND_CB_END;
1528 		} else {
1529 			/* pointer variables saved in a register 32 or above */
1530 			if (ops->atom == DW_OP_regx && ops->number == data->reg &&
1531 			    check_allowed_ops(ops, nops) &&
1532 			    match_var_offset(die_mem, data, data->offset, 0,
1533 					     /*is_pointer=*/true))
1534 				return DIE_FIND_CB_END;
1535 
1536 			/* variables accessed by a register + offset */
1537 			if (ops->atom == DW_OP_bregx && data->reg == ops->number &&
1538 			    check_allowed_ops(ops, nops) &&
1539 			    match_var_offset(die_mem, data, data->offset, ops->number2,
1540 					     is_breg_access_indirect(ops, nops)))
1541 				return DIE_FIND_CB_END;
1542 		}
1543 	}
1544 	return DIE_FIND_CB_SIBLING;
1545 }
1546 
1547 /**
1548  * die_find_variable_by_reg - Find a variable saved in a register
1549  * @sc_die: a scope DIE
1550  * @pc: the program address to find
1551  * @reg: the register number to find
1552  * @poffset: pointer to offset, will be updated for fbreg case
1553  * @is_fbreg: boolean value if the current register is the frame base
1554  * @die_mem: a buffer to save the resulting DIE
1555  *
1556  * Find the variable DIE accessed by the given register.  It'll update the @offset
1557  * when the variable is in the stack.
1558  */
1559 Dwarf_Die *die_find_variable_by_reg(Dwarf_Die *sc_die, Dwarf_Addr pc, int reg,
1560 				    Dwarf_Die *type_die, int *poffset, bool is_fbreg,
1561 				    Dwarf_Die *die_mem)
1562 {
1563 	struct find_var_data data = {
1564 		.pc = pc,
1565 		.reg = reg,
1566 		.offset = *poffset,
1567 		.is_fbreg = is_fbreg,
1568 	};
1569 	Dwarf_Die *result;
1570 
1571 	result = die_find_child(sc_die, __die_find_var_reg_cb, &data, die_mem);
1572 	if (result) {
1573 		*poffset = data.offset;
1574 		*type_die = data.type;
1575 	}
1576 	return result;
1577 }
1578 
1579 /* Only checks direct child DIEs in the given scope */
1580 static int __die_find_var_addr_cb(Dwarf_Die *die_mem, void *arg)
1581 {
1582 	struct find_var_data *data = arg;
1583 	int tag = dwarf_tag(die_mem);
1584 	ptrdiff_t off = 0;
1585 	Dwarf_Attribute attr;
1586 	Dwarf_Addr base, start, end;
1587 	Dwarf_Op *ops;
1588 	size_t nops;
1589 
1590 	if (tag != DW_TAG_variable)
1591 		return DIE_FIND_CB_SIBLING;
1592 
1593 	if (dwarf_attr(die_mem, DW_AT_location, &attr) == NULL)
1594 		return DIE_FIND_CB_SIBLING;
1595 
1596 	while ((off = dwarf_getlocations(&attr, off, &base, &start, &end, &ops, &nops)) > 0) {
1597 		if (ops->atom != DW_OP_addr)
1598 			continue;
1599 
1600 		if (check_allowed_ops(ops, nops) &&
1601 		    match_var_offset(die_mem, data, data->addr, ops->number,
1602 				     /*is_pointer=*/false))
1603 			return DIE_FIND_CB_END;
1604 	}
1605 	return DIE_FIND_CB_SIBLING;
1606 }
1607 
1608 /**
1609  * die_find_variable_by_addr - Find variable located at given address
1610  * @sc_die: a scope DIE
1611  * @addr: the data address to find
1612  * @die_mem: a buffer to save the resulting DIE
1613  * @offset: the offset in the resulting type
1614  *
1615  * Find the variable DIE located at the given address (in PC-relative mode).
1616  * This is usually for global variables.
1617  */
1618 Dwarf_Die *die_find_variable_by_addr(Dwarf_Die *sc_die, Dwarf_Addr addr,
1619 				     Dwarf_Die *die_mem, Dwarf_Die *type_die,
1620 				     int *offset)
1621 {
1622 	struct find_var_data data = {
1623 		.addr = addr,
1624 	};
1625 	Dwarf_Die *result;
1626 
1627 	result = die_find_child(sc_die, __die_find_var_addr_cb, &data, die_mem);
1628 	if (result) {
1629 		*offset = data.offset;
1630 		*type_die = data.type;
1631 	}
1632 	return result;
1633 }
1634 
1635 static int __die_collect_vars_cb(Dwarf_Die *die_mem, void *arg)
1636 {
1637 	struct die_var_type **var_types = arg;
1638 	Dwarf_Die type_die;
1639 	int tag = dwarf_tag(die_mem);
1640 	Dwarf_Attribute attr;
1641 	Dwarf_Addr base, start, end = 0;
1642 	Dwarf_Op *ops;
1643 	size_t nops;
1644 	struct die_var_type *vt;
1645 	ptrdiff_t off;
1646 
1647 	if (tag != DW_TAG_variable && tag != DW_TAG_formal_parameter)
1648 		return DIE_FIND_CB_SIBLING;
1649 
1650 	if (dwarf_attr(die_mem, DW_AT_location, &attr) == NULL)
1651 		return DIE_FIND_CB_SIBLING;
1652 
1653 	if (__die_get_real_type(die_mem, &type_die) == NULL)
1654 		return DIE_FIND_CB_SIBLING;
1655 
1656 	/*
1657 	 * Collect all location entries as variables may have different
1658 	 * locations across different address ranges.
1659 	 */
1660 	off = 0;
1661 	while ((off = dwarf_getlocations(&attr, off, &base, &start, &end, &ops, &nops)) > 0) {
1662 		if (!check_allowed_ops(ops, nops))
1663 			continue;
1664 
1665 		vt = malloc(sizeof(*vt));
1666 		if (vt == NULL)
1667 			return DIE_FIND_CB_END;
1668 
1669 		/* Usually a register holds the value of a variable */
1670 		vt->is_reg_var_addr = false;
1671 
1672 		if (((ops->atom >= DW_OP_breg0 && ops->atom <= DW_OP_breg31) ||
1673 		      ops->atom == DW_OP_bregx || ops->atom == DW_OP_fbreg) &&
1674 		      !is_breg_access_indirect(ops, nops))
1675 			/* The register contains an address of the variable. */
1676 			vt->is_reg_var_addr = true;
1677 
1678 		vt->die_off = dwarf_dieoffset(&type_die);
1679 		vt->addr = start;
1680 		vt->end = end;
1681 		vt->has_range = (end != 0 || start != 0);
1682 		vt->reg = reg_from_dwarf_op(ops);
1683 		vt->offset = offset_from_dwarf_op(ops);
1684 		vt->next = *var_types;
1685 		*var_types = vt;
1686 	}
1687 
1688 	return DIE_FIND_CB_SIBLING;
1689 }
1690 
1691 /**
1692  * die_collect_vars - Save all variables and parameters
1693  * @sc_die: a scope DIE
1694  * @var_types: a pointer to save the resulting list
1695  *
1696  * Save all variables and parameters in the @sc_die and save them to @var_types.
1697  * The @var_types is a singly-linked list containing type and location info.
1698  * Actual type can be retrieved using dwarf_offdie() with 'die_off' later.
1699  *
1700  * Callers should free @var_types.
1701  */
1702 void die_collect_vars(Dwarf_Die *sc_die, struct die_var_type **var_types)
1703 {
1704 	Dwarf_Die die_mem;
1705 
1706 	die_find_child(sc_die, __die_collect_vars_cb, (void *)var_types, &die_mem);
1707 }
1708 
1709 static int __die_collect_global_vars_cb(Dwarf_Die *die_mem, void *arg)
1710 {
1711 	struct die_var_type **var_types = arg;
1712 	Dwarf_Die type_die;
1713 	int tag = dwarf_tag(die_mem);
1714 	Dwarf_Attribute attr;
1715 	Dwarf_Addr base, start, end;
1716 	Dwarf_Op *ops;
1717 	size_t nops;
1718 	struct die_var_type *vt;
1719 
1720 	if (tag != DW_TAG_variable)
1721 		return DIE_FIND_CB_SIBLING;
1722 
1723 	if (dwarf_attr(die_mem, DW_AT_location, &attr) == NULL)
1724 		return DIE_FIND_CB_SIBLING;
1725 
1726 	/* Only collect the location with an absolute address. */
1727 	if (dwarf_getlocations(&attr, 0, &base, &start, &end, &ops, &nops) <= 0)
1728 		return DIE_FIND_CB_SIBLING;
1729 
1730 	if (ops->atom != DW_OP_addr)
1731 		return DIE_FIND_CB_SIBLING;
1732 
1733 	if (!check_allowed_ops(ops, nops))
1734 		return DIE_FIND_CB_SIBLING;
1735 
1736 	if (die_get_real_type(die_mem, &type_die) == NULL)
1737 		return DIE_FIND_CB_SIBLING;
1738 
1739 	vt = malloc(sizeof(*vt));
1740 	if (vt == NULL)
1741 		return DIE_FIND_CB_END;
1742 
1743 	vt->die_off = dwarf_dieoffset(&type_die);
1744 	vt->addr = ops->number;
1745 	vt->end = 0;
1746 	vt->has_range = false;
1747 	vt->reg = -1;
1748 	vt->offset = 0;
1749 	vt->next = *var_types;
1750 	*var_types = vt;
1751 
1752 	return DIE_FIND_CB_SIBLING;
1753 }
1754 
1755 /**
1756  * die_collect_global_vars - Save all global variables
1757  * @cu_die: a CU DIE
1758  * @var_types: a pointer to save the resulting list
1759  *
1760  * Save all global variables in the @cu_die and save them to @var_types.
1761  * The @var_types is a singly-linked list containing type and location info.
1762  * Actual type can be retrieved using dwarf_offdie() with 'die_off' later.
1763  *
1764  * Callers should free @var_types.
1765  */
1766 void die_collect_global_vars(Dwarf_Die *cu_die, struct die_var_type **var_types)
1767 {
1768 	Dwarf_Die die_mem;
1769 
1770 	die_find_child(cu_die, __die_collect_global_vars_cb, (void *)var_types, &die_mem);
1771 }
1772 
1773 /**
1774  * die_get_cfa - Get frame base information
1775  * @dwarf: a Dwarf info
1776  * @pc: program address
1777  * @preg: pointer for saved register
1778  * @poffset: pointer for saved offset
1779  *
1780  * This function gets register and offset for CFA (Canonical Frame Address)
1781  * by searching the CIE/FDE info.  The CFA usually points to the start address
1782  * of the current stack frame and local variables can be located using an offset
1783  * from the CFA.  The @preg and @poffset will be updated if it returns 0.
1784  */
1785 int die_get_cfa(Dwarf *dwarf, u64 pc, int *preg, int *poffset)
1786 {
1787 	Dwarf_CFI *cfi;
1788 	Dwarf_Frame *frame = NULL;
1789 	Dwarf_Op *ops = NULL;
1790 	size_t nops;
1791 
1792 	cfi = dwarf_getcfi(dwarf);
1793 	if (cfi == NULL)
1794 		return -1;
1795 
1796 	if (!dwarf_cfi_addrframe(cfi, pc, &frame) &&
1797 	    !dwarf_frame_cfa(frame, &ops, &nops) &&
1798 	    check_allowed_ops(ops, nops)) {
1799 		*preg = reg_from_dwarf_op(ops);
1800 		*poffset = offset_from_dwarf_op(ops);
1801 		return 0;
1802 	}
1803 	return -1;
1804 }
1805 
1806 /*
1807  * die_has_loclist - Check if DW_AT_location of @vr_die is a location list
1808  * @vr_die: a variable DIE
1809  */
1810 static bool die_has_loclist(Dwarf_Die *vr_die)
1811 {
1812 	Dwarf_Attribute loc;
1813 	int tag = dwarf_tag(vr_die);
1814 
1815 	if (tag != DW_TAG_formal_parameter &&
1816 	    tag != DW_TAG_variable)
1817 		return false;
1818 
1819 	return (dwarf_attr_integrate(vr_die, DW_AT_location, &loc) &&
1820 		dwarf_whatform(&loc) == DW_FORM_sec_offset);
1821 }
1822 
1823 /*
1824  * die_is_optimized_target - Check if target program is compiled with
1825  * optimization
1826  * @cu_die: a CU DIE
1827  *
1828  * For any object in given CU whose DW_AT_location is a location list,
1829  * target program is compiled with optimization. This is applicable to
1830  * clang as well.
1831  */
1832 bool die_is_optimized_target(Dwarf_Die *cu_die)
1833 {
1834 	Dwarf_Die tmp_die;
1835 
1836 	if (die_has_loclist(cu_die))
1837 		return true;
1838 
1839 	if (!dwarf_child(cu_die, &tmp_die) &&
1840 	    die_is_optimized_target(&tmp_die))
1841 		return true;
1842 
1843 	if (!dwarf_siblingof(cu_die, &tmp_die) &&
1844 	    die_is_optimized_target(&tmp_die))
1845 		return true;
1846 
1847 	return false;
1848 }
1849 
1850 /*
1851  * die_search_idx - Search index of given line address
1852  * @lines: Line records of single CU
1853  * @nr_lines: Number of @lines
1854  * @addr: address we are looking for
1855  * @idx: index to be set by this function (return value)
1856  *
1857  * Search for @addr by looping over every lines of CU. If address
1858  * matches, set index of that line in @idx. Note that single source
1859  * line can have multiple line records. i.e. single source line can
1860  * have multiple index.
1861  */
1862 static bool die_search_idx(Dwarf_Lines *lines, unsigned long nr_lines,
1863 			   Dwarf_Addr addr, unsigned long *idx)
1864 {
1865 	unsigned long i;
1866 	Dwarf_Addr tmp;
1867 
1868 	for (i = 0; i < nr_lines; i++) {
1869 		if (dwarf_lineaddr(dwarf_onesrcline(lines, i), &tmp))
1870 			return false;
1871 
1872 		if (tmp == addr) {
1873 			*idx = i;
1874 			return true;
1875 		}
1876 	}
1877 	return false;
1878 }
1879 
1880 /*
1881  * die_get_postprologue_addr - Search next address after function prologue
1882  * @entrypc_idx: entrypc index
1883  * @lines: Line records of single CU
1884  * @nr_lines: Number of @lines
1885  * @hignpc: high PC address of function
1886  * @postprologue_addr: Next address after function prologue (return value)
1887  *
1888  * Look for prologue-end marker. If there is no explicit marker, return
1889  * address of next line record or next source line.
1890  */
1891 static bool die_get_postprologue_addr(unsigned long entrypc_idx,
1892 				      Dwarf_Lines *lines,
1893 				      unsigned long nr_lines,
1894 				      Dwarf_Addr highpc,
1895 				      Dwarf_Addr *postprologue_addr)
1896 {
1897 	unsigned long i;
1898 	int entrypc_lno, lno;
1899 	Dwarf_Line *line;
1900 	Dwarf_Addr addr;
1901 	bool p_end;
1902 
1903 	/* entrypc_lno is actual source line number */
1904 	line = dwarf_onesrcline(lines, entrypc_idx);
1905 	if (dwarf_lineno(line, &entrypc_lno))
1906 		return false;
1907 
1908 	for (i = entrypc_idx; i < nr_lines; i++) {
1909 		line = dwarf_onesrcline(lines, i);
1910 
1911 		if (dwarf_lineaddr(line, &addr) ||
1912 		    dwarf_lineno(line, &lno)    ||
1913 		    dwarf_lineprologueend(line, &p_end))
1914 			return false;
1915 
1916 		/* highpc is exclusive. [entrypc,highpc) */
1917 		if (addr >= highpc)
1918 			break;
1919 
1920 		/* clang supports prologue-end marker */
1921 		if (p_end)
1922 			break;
1923 
1924 		/* Actual next line in source */
1925 		if (lno != entrypc_lno)
1926 			break;
1927 
1928 		/*
1929 		 * Single source line can have multiple line records.
1930 		 * For Example,
1931 		 *     void foo() { printf("hello\n"); }
1932 		 * contains two line records. One points to declaration and
1933 		 * other points to printf() line. Variable 'lno' won't get
1934 		 * incremented in this case but 'i' will.
1935 		 */
1936 		if (i != entrypc_idx)
1937 			break;
1938 	}
1939 
1940 	if (dwarf_lineaddr(line, postprologue_addr) != 0)
1941 		return false;
1942 	if (*postprologue_addr >= highpc) {
1943 		if (dwarf_lineaddr(dwarf_onesrcline(lines, i - 1), postprologue_addr) != 0)
1944 			return false;
1945 	}
1946 
1947 	return true;
1948 }
1949 
1950 /*
1951  * die_skip_prologue - Use next address after prologue as probe location
1952  * @sp_die: a subprogram DIE
1953  * @cu_die: a CU DIE
1954  * @entrypc: entrypc of the function
1955  *
1956  * Function prologue prepares stack and registers before executing function
1957  * logic. When target program is compiled without optimization, function
1958  * parameter information is only valid after prologue. When we probe entrypc
1959  * of the function, and try to record function parameter, it contains
1960  * garbage value.
1961  */
1962 void die_skip_prologue(Dwarf_Die *sp_die, Dwarf_Die *cu_die,
1963 		       Dwarf_Addr *entrypc)
1964 {
1965 	size_t nr_lines = 0;
1966 	unsigned long entrypc_idx = 0;
1967 	Dwarf_Lines *lines = NULL;
1968 	Dwarf_Addr postprologue_addr;
1969 	Dwarf_Addr highpc;
1970 
1971 	if (dwarf_highpc(sp_die, &highpc))
1972 		return;
1973 
1974 	if (dwarf_getsrclines(cu_die, &lines, &nr_lines))
1975 		return;
1976 
1977 	if (!die_search_idx(lines, nr_lines, *entrypc, &entrypc_idx))
1978 		return;
1979 
1980 	if (!die_get_postprologue_addr(entrypc_idx, lines, nr_lines,
1981 				       highpc, &postprologue_addr))
1982 		return;
1983 
1984 	*entrypc = postprologue_addr;
1985 }
1986 
1987 /* Internal parameters for __die_find_scope_cb() */
1988 struct find_scope_data {
1989 	/* Target instruction address */
1990 	Dwarf_Addr pc;
1991 	/* Number of scopes found [output] */
1992 	int nr;
1993 	/* Array of scopes found, 0 for the outermost one. [output] */
1994 	Dwarf_Die *scopes;
1995 };
1996 
1997 static int __die_find_scope_cb(Dwarf_Die *die_mem, void *arg)
1998 {
1999 	struct find_scope_data *data = arg;
2000 	int tag = dwarf_tag(die_mem);
2001 
2002 	if (dwarf_haspc(die_mem, data->pc)) {
2003 		Dwarf_Die *tmp;
2004 
2005 		tmp = realloc(data->scopes, (data->nr + 1) * sizeof(*tmp));
2006 		if (tmp == NULL)
2007 			return DIE_FIND_CB_END;
2008 
2009 		memcpy(tmp + data->nr, die_mem, sizeof(*die_mem));
2010 		data->scopes = tmp;
2011 		data->nr++;
2012 		return DIE_FIND_CB_CHILD;
2013 	}
2014 
2015 	/*
2016 	 * If the DIE doesn't have the PC, we still need to check its children
2017 	 * and siblings if it's a container like a namespace.
2018 	 */
2019 	if (tag == DW_TAG_namespace)
2020 		return DIE_FIND_CB_CONTINUE;
2021 
2022 	return DIE_FIND_CB_SIBLING;
2023 }
2024 
2025 /**
2026  * die_get_scopes - Return a list of scopes including the address
2027  * @cu_die: a compile unit DIE
2028  * @pc: the address to find
2029  * @scopes: the array of DIEs for scopes (result)
2030  *
2031  * This function does the same as the dwarf_getscopes() but doesn't follow
2032  * the origins of inlined functions.  It returns the number of scopes saved
2033  * in the @scopes argument.  The outer scope will be saved first (index 0) and
2034  * the last one is the innermost scope at the @pc.
2035  */
2036 int die_get_scopes(Dwarf_Die *cu_die, Dwarf_Addr pc, Dwarf_Die **scopes)
2037 {
2038 	struct find_scope_data data = {
2039 		.pc = pc,
2040 	};
2041 	Dwarf_Die die_mem;
2042 
2043 	die_find_child(cu_die, __die_find_scope_cb, &data, &die_mem);
2044 
2045 	*scopes = data.scopes;
2046 	return data.nr;
2047 }
2048 
2049 static int __die_find_member_offset_cb(Dwarf_Die *die_mem, void *arg)
2050 {
2051 	Dwarf_Die type_die;
2052 	Dwarf_Word size, loc;
2053 	Dwarf_Word offset = (long)arg;
2054 	int tag = dwarf_tag(die_mem);
2055 
2056 	if (tag != DW_TAG_member)
2057 		return DIE_FIND_CB_SIBLING;
2058 
2059 	/* Unions might not have location */
2060 	if (die_get_data_member_location(die_mem, &loc) < 0) {
2061 		Dwarf_Attribute attr;
2062 
2063 		if (dwarf_attr_integrate(die_mem, DW_AT_data_bit_offset, &attr) &&
2064 		    dwarf_formudata(&attr, &loc) == 0)
2065 			loc /= 8;
2066 		else
2067 			loc = 0;
2068 	}
2069 
2070 	if (offset == loc)
2071 		return DIE_FIND_CB_END;
2072 
2073 	if (die_get_real_type(die_mem, &type_die) == NULL) {
2074 		// TODO: add a pr_debug_dtp() later for this unlikely failure
2075 		return DIE_FIND_CB_SIBLING;
2076 	}
2077 
2078 	if (dwarf_aggregate_size(&type_die, &size) < 0)
2079 		size = 0;
2080 
2081 	if (loc < offset && offset < (loc + size))
2082 		return DIE_FIND_CB_END;
2083 
2084 	return DIE_FIND_CB_SIBLING;
2085 }
2086 
2087 /**
2088  * die_get_member_type - Return type info of struct member
2089  * @type_die: a type DIE
2090  * @offset: offset in the type
2091  * @die_mem: a buffer to save the resulting DIE
2092  *
2093  * This function returns a type of a member in @type_die where it's located at
2094  * @offset if it's a struct.  For now, it just returns the first matching
2095  * member in a union.  For other types, it'd return the given type directly
2096  * if it's within the size of the type or NULL otherwise.
2097  */
2098 Dwarf_Die *die_get_member_type(Dwarf_Die *type_die, int offset,
2099 			       Dwarf_Die *die_mem)
2100 {
2101 	Dwarf_Die *member;
2102 	Dwarf_Die mb_type;
2103 	int tag;
2104 
2105 	tag = dwarf_tag(type_die);
2106 	/* If it's not a compound type, return the type directly */
2107 	if (tag != DW_TAG_structure_type && tag != DW_TAG_union_type) {
2108 		Dwarf_Word size;
2109 
2110 		if (dwarf_aggregate_size(type_die, &size) < 0)
2111 			size = 0;
2112 
2113 		if ((unsigned)offset >= size)
2114 			return NULL;
2115 
2116 		*die_mem = *type_die;
2117 		return die_mem;
2118 	}
2119 
2120 	mb_type = *type_die;
2121 	/* TODO: Handle union types better? */
2122 	while (tag == DW_TAG_structure_type || tag == DW_TAG_union_type) {
2123 		member = die_find_child(&mb_type, __die_find_member_offset_cb,
2124 					(void *)(long)offset, die_mem);
2125 		if (member == NULL)
2126 			return NULL;
2127 
2128 		if (die_get_real_type(member, &mb_type) == NULL)
2129 			return NULL;
2130 
2131 		tag = dwarf_tag(&mb_type);
2132 
2133 		if (tag == DW_TAG_structure_type || tag == DW_TAG_union_type ||
2134 		    tag == DW_TAG_array_type) {
2135 			Dwarf_Word loc;
2136 
2137 			/* Update offset for the start of the member struct */
2138 			if (die_get_data_member_location(member, &loc) == 0)
2139 				offset -= loc;
2140 		}
2141 
2142 		/* Handle array types: resolve to the element type by one level */
2143 		if (tag == DW_TAG_array_type) {
2144 			Dwarf_Word size;
2145 
2146 			if (die_get_real_type(&mb_type, &mb_type) == NULL)
2147 				return NULL;
2148 
2149 			if (dwarf_aggregate_size(&mb_type, &size) < 0)
2150 				return NULL;
2151 
2152 			offset = offset % size;
2153 			tag = dwarf_tag(&mb_type);
2154 		}
2155 	}
2156 	*die_mem = mb_type;
2157 	return die_mem;
2158 }
2159 
2160 /**
2161  * die_deref_ptr_type - Return type info for pointer access
2162  * @ptr_die: a pointer type DIE
2163  * @offset: access offset for the pointer
2164  * @die_mem: a buffer to save the resulting DIE
2165  *
2166  * This function follows the pointer in @ptr_die with given @offset
2167  * and saves the resulting type in @die_mem.  If the pointer points
2168  * a struct type, actual member at the offset would be returned.
2169  */
2170 Dwarf_Die *die_deref_ptr_type(Dwarf_Die *ptr_die, int offset,
2171 			      Dwarf_Die *die_mem)
2172 {
2173 	Dwarf_Die type_die;
2174 
2175 	if (dwarf_tag(ptr_die) != DW_TAG_pointer_type)
2176 		return NULL;
2177 
2178 	if (die_get_real_type(ptr_die, &type_die) == NULL)
2179 		return NULL;
2180 
2181 	return die_get_member_type(&type_die, offset, die_mem);
2182 }
2183