Fix double-free when creating more than one block in JIT debug info reader
[deliverable/binutils-gdb.git] / gdb / jit.c
CommitLineData
4efc6507
DE
1/* Handle JIT code generation in the inferior for GDB, the GNU Debugger.
2
42a4f53d 3 Copyright (C) 2009-2019 Free Software Foundation, Inc.
4efc6507
DE
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20#include "defs.h"
21
22#include "jit.h"
f997c383 23#include "jit-reader.h"
1825a88d 24#include "block.h"
4efc6507 25#include "breakpoint.h"
a255712f 26#include "command.h"
1825a88d 27#include "dictionary.h"
c9fb1240 28#include "filenames.h"
1825a88d 29#include "frame-unwind.h"
a255712f 30#include "gdbcmd.h"
4efc6507 31#include "gdbcore.h"
03673fc7 32#include "inferior.h"
76727919 33#include "observable.h"
4efc6507 34#include "objfiles.h"
3623dc3a 35#include "regcache.h"
4efc6507
DE
36#include "symfile.h"
37#include "symtab.h"
38#include "target.h"
2d41fa11 39#include "gdbsupport/gdb-dlfcn.h"
53ce3c39 40#include <sys/stat.h>
cbb099e8 41#include "gdb_bfd.h"
6571a381
TT
42#include "readline/tilde.h"
43#include "completer.h"
4efc6507 44
f2aec7f6 45static std::string jit_reader_dir;
b8e0a31c 46
4efc6507
DE
47static const struct objfile_data *jit_objfile_data;
48
49static const char *const jit_break_name = "__jit_debug_register_code";
50
51static const char *const jit_descriptor_name = "__jit_debug_descriptor";
52
e2bd3b15 53static void jit_inferior_init (struct gdbarch *gdbarch);
20aa2c60 54static void jit_inferior_exit_hook (struct inferior *inf);
3b2a0cf2 55
3623dc3a
SD
56/* An unwinder is registered for every gdbarch. This key is used to
57 remember if the unwinder has been registered for a particular
58 gdbarch. */
59
60static struct gdbarch_data *jit_gdbarch_data;
61
a255712f
PP
62/* Non-zero if we want to see trace of jit level stuff. */
63
ccce17b0 64static unsigned int jit_debug = 0;
a255712f
PP
65
66static void
67show_jit_debug (struct ui_file *file, int from_tty,
68 struct cmd_list_element *c, const char *value)
69{
70 fprintf_filtered (file, _("JIT debugging is %s.\n"), value);
71}
72
4efc6507
DE
73struct target_buffer
74{
75 CORE_ADDR base;
a255712f 76 ULONGEST size;
4efc6507
DE
77};
78
405feb71 79/* Opening the file is a no-op. */
4efc6507
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80
81static void *
82mem_bfd_iovec_open (struct bfd *abfd, void *open_closure)
83{
84 return open_closure;
85}
86
87/* Closing the file is just freeing the base/size pair on our side. */
88
89static int
90mem_bfd_iovec_close (struct bfd *abfd, void *stream)
91{
92 xfree (stream);
39ed5604
JK
93
94 /* Zero means success. */
95 return 0;
4efc6507
DE
96}
97
98/* For reading the file, we just need to pass through to target_read_memory and
99 fix up the arguments and return values. */
100
101static file_ptr
102mem_bfd_iovec_pread (struct bfd *abfd, void *stream, void *buf,
3a90f266 103 file_ptr nbytes, file_ptr offset)
4efc6507
DE
104{
105 int err;
106 struct target_buffer *buffer = (struct target_buffer *) stream;
107
108 /* If this read will read all of the file, limit it to just the rest. */
109 if (offset + nbytes > buffer->size)
110 nbytes = buffer->size - offset;
111
112 /* If there are no more bytes left, we've reached EOF. */
113 if (nbytes == 0)
114 return 0;
115
116 err = target_read_memory (buffer->base + offset, (gdb_byte *) buf, nbytes);
117 if (err)
118 return -1;
119
120 return nbytes;
121}
122
123/* For statting the file, we only support the st_size attribute. */
124
125static int
126mem_bfd_iovec_stat (struct bfd *abfd, void *stream, struct stat *sb)
127{
128 struct target_buffer *buffer = (struct target_buffer*) stream;
129
326a5c7e 130 memset (sb, 0, sizeof (struct stat));
4efc6507
DE
131 sb->st_size = buffer->size;
132 return 0;
133}
134
f0bbc364
TT
135/* Open a BFD from the target's memory. */
136
192b62ce 137static gdb_bfd_ref_ptr
f0bbc364
TT
138bfd_open_from_target_memory (CORE_ADDR addr, ULONGEST size, char *target)
139{
8d749320 140 struct target_buffer *buffer = XNEW (struct target_buffer);
f0bbc364
TT
141
142 buffer->base = addr;
143 buffer->size = size;
64c31149
TT
144 return gdb_bfd_openr_iovec ("<in-memory>", target,
145 mem_bfd_iovec_open,
146 buffer,
147 mem_bfd_iovec_pread,
148 mem_bfd_iovec_close,
149 mem_bfd_iovec_stat);
f0bbc364
TT
150}
151
0e8621a0
TT
152struct jit_reader
153{
154 jit_reader (struct gdb_reader_funcs *f, gdb_dlhandle_up &&h)
155 : functions (f), handle (std::move (h))
156 {
157 }
158
159 ~jit_reader ()
160 {
161 functions->destroy (functions);
162 }
163
d6541620 164 DISABLE_COPY_AND_ASSIGN (jit_reader);
0e8621a0
TT
165
166 struct gdb_reader_funcs *functions;
167 gdb_dlhandle_up handle;
168};
169
784c47ee
SD
170/* One reader that has been loaded successfully, and can potentially be used to
171 parse debug info. */
172
0e8621a0 173static struct jit_reader *loaded_jit_reader = NULL;
784c47ee
SD
174
175typedef struct gdb_reader_funcs * (reader_init_fn_type) (void);
176static const char *reader_init_fn_sym = "gdb_init_reader";
177
178/* Try to load FILE_NAME as a JIT debug info reader. */
179
180static struct jit_reader *
181jit_reader_load (const char *file_name)
182{
784c47ee 183 reader_init_fn_type *init_fn;
784c47ee 184 struct gdb_reader_funcs *funcs = NULL;
784c47ee
SD
185
186 if (jit_debug)
187 fprintf_unfiltered (gdb_stdlog, _("Opening shared object %s.\n"),
3a90f266 188 file_name);
0e8621a0 189 gdb_dlhandle_up so = gdb_dlopen (file_name);
784c47ee 190
15cf126c 191 init_fn = (reader_init_fn_type *) gdb_dlsym (so, reader_init_fn_sym);
784c47ee
SD
192 if (!init_fn)
193 error (_("Could not locate initialization function: %s."),
3a90f266 194 reader_init_fn_sym);
784c47ee
SD
195
196 if (gdb_dlsym (so, "plugin_is_GPL_compatible") == NULL)
197 error (_("Reader not GPL compatible."));
198
199 funcs = init_fn ();
200 if (funcs->reader_version != GDB_READER_INTERFACE_VERSION)
201 error (_("Reader version does not match GDB version."));
202
0e8621a0 203 return new jit_reader (funcs, std::move (so));
784c47ee
SD
204}
205
206/* Provides the jit-reader-load command. */
207
208static void
0b39b52e 209jit_reader_load_command (const char *args, int from_tty)
784c47ee 210{
784c47ee
SD
211 if (args == NULL)
212 error (_("No reader name provided."));
7c218e6c 213 gdb::unique_xmalloc_ptr<char> file (tilde_expand (args));
784c47ee
SD
214
215 if (loaded_jit_reader != NULL)
216 error (_("JIT reader already loaded. Run jit-reader-unload first."));
217
7c218e6c 218 if (!IS_ABSOLUTE_PATH (file.get ()))
f2aec7f6 219 file.reset (xstrprintf ("%s%s%s", jit_reader_dir.c_str (), SLASH_STRING,
7c218e6c 220 file.get ()));
784c47ee 221
7c218e6c 222 loaded_jit_reader = jit_reader_load (file.get ());
20aa2c60
PA
223 reinit_frame_cache ();
224 jit_inferior_created_hook ();
784c47ee
SD
225}
226
227/* Provides the jit-reader-unload command. */
228
229static void
0b39b52e 230jit_reader_unload_command (const char *args, int from_tty)
784c47ee
SD
231{
232 if (!loaded_jit_reader)
233 error (_("No JIT reader loaded."));
234
20aa2c60
PA
235 reinit_frame_cache ();
236 jit_inferior_exit_hook (current_inferior ());
784c47ee 237
0e8621a0 238 delete loaded_jit_reader;
784c47ee
SD
239 loaded_jit_reader = NULL;
240}
241
8eacb197 242/* Per-program space structure recording which objfile has the JIT
03bef283 243 symbols. */
03673fc7 244
8eacb197 245struct jit_program_space_data
03673fc7 246{
03bef283
TT
247 /* The objfile. This is NULL if no objfile holds the JIT
248 symbols. */
249
cb60f420 250 struct objfile *objfile = nullptr;
f25c0135 251
8eacb197 252 /* If this program space has __jit_debug_register_code, this is the
f25c0135
TT
253 cached address from the minimal symbol. This is used to detect
254 relocations requiring the breakpoint to be re-created. */
255
cb60f420 256 CORE_ADDR cached_code_address = 0;
f25c0135
TT
257
258 /* This is the JIT event breakpoint, or NULL if it has not been
259 set. */
260
cb60f420 261 struct breakpoint *jit_breakpoint = nullptr;
03bef283
TT
262};
263
cb60f420
TT
264static program_space_key<jit_program_space_data> jit_program_space_key;
265
8eacb197 266/* Per-objfile structure recording the addresses in the program space.
f25c0135
TT
267 This object serves two purposes: for ordinary objfiles, it may
268 cache some symbols related to the JIT interface; and for
269 JIT-created objfiles, it holds some information about the
270 jit_code_entry. */
03bef283
TT
271
272struct jit_objfile_data
273{
274 /* Symbol for __jit_debug_register_code. */
275 struct minimal_symbol *register_code;
276
277 /* Symbol for __jit_debug_descriptor. */
278 struct minimal_symbol *descriptor;
279
f25c0135
TT
280 /* Address of struct jit_code_entry in this objfile. This is only
281 non-zero for objfiles that represent code created by the JIT. */
03bef283 282 CORE_ADDR addr;
03673fc7
PP
283};
284
03bef283
TT
285/* Fetch the jit_objfile_data associated with OBJF. If no data exists
286 yet, make a new structure and attach it. */
287
288static struct jit_objfile_data *
289get_jit_objfile_data (struct objfile *objf)
290{
291 struct jit_objfile_data *objf_data;
292
9a3c8263 293 objf_data = (struct jit_objfile_data *) objfile_data (objf, jit_objfile_data);
03bef283
TT
294 if (objf_data == NULL)
295 {
41bf6aca 296 objf_data = XCNEW (struct jit_objfile_data);
03bef283
TT
297 set_objfile_data (objf, jit_objfile_data, objf_data);
298 }
299
300 return objf_data;
301}
302
b4264740
SD
303/* Remember OBJFILE has been created for struct jit_code_entry located
304 at inferior address ENTRY. */
1825a88d
SD
305
306static void
307add_objfile_entry (struct objfile *objfile, CORE_ADDR entry)
308{
03bef283 309 struct jit_objfile_data *objf_data;
1825a88d 310
03bef283
TT
311 objf_data = get_jit_objfile_data (objfile);
312 objf_data->addr = entry;
1825a88d
SD
313}
314
8eacb197
TT
315/* Return jit_program_space_data for current program space. Allocate
316 if not already present. */
03673fc7 317
8eacb197 318static struct jit_program_space_data *
cb60f420 319get_jit_program_space_data ()
03673fc7 320{
8eacb197 321 struct jit_program_space_data *ps_data;
03673fc7 322
cb60f420 323 ps_data = jit_program_space_key.get (current_program_space);
8eacb197 324 if (ps_data == NULL)
cb60f420 325 ps_data = jit_program_space_key.emplace (current_program_space);
8eacb197 326 return ps_data;
03673fc7
PP
327}
328
1777feb0 329/* Helper function for reading the global JIT descriptor from remote
03bef283 330 memory. Returns 1 if all went well, 0 otherwise. */
4efc6507 331
03bef283 332static int
0756c555 333jit_read_descriptor (struct gdbarch *gdbarch,
03673fc7 334 struct jit_descriptor *descriptor,
8eacb197 335 struct jit_program_space_data *ps_data)
4efc6507
DE
336{
337 int err;
338 struct type *ptr_type;
339 int ptr_size;
340 int desc_size;
341 gdb_byte *desc_buf;
0756c555 342 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
03bef283
TT
343 struct jit_objfile_data *objf_data;
344
8eacb197 345 if (ps_data->objfile == NULL)
03bef283 346 return 0;
8eacb197 347 objf_data = get_jit_objfile_data (ps_data->objfile);
03bef283
TT
348 if (objf_data->descriptor == NULL)
349 return 0;
350
351 if (jit_debug)
352 fprintf_unfiltered (gdb_stdlog,
353 "jit_read_descriptor, descriptor_addr = %s\n",
77e371c0
TT
354 paddress (gdbarch, MSYMBOL_VALUE_ADDRESS (ps_data->objfile,
355 objf_data->descriptor)));
4efc6507
DE
356
357 /* Figure out how big the descriptor is on the remote and how to read it. */
0756c555 358 ptr_type = builtin_type (gdbarch)->builtin_data_ptr;
4efc6507
DE
359 ptr_size = TYPE_LENGTH (ptr_type);
360 desc_size = 8 + 2 * ptr_size; /* Two 32-bit ints and two pointers. */
224c3ddb 361 desc_buf = (gdb_byte *) alloca (desc_size);
4efc6507
DE
362
363 /* Read the descriptor. */
77e371c0
TT
364 err = target_read_memory (MSYMBOL_VALUE_ADDRESS (ps_data->objfile,
365 objf_data->descriptor),
03bef283 366 desc_buf, desc_size);
4efc6507 367 if (err)
03bef283
TT
368 {
369 printf_unfiltered (_("Unable to read JIT descriptor from "
370 "remote memory\n"));
371 return 0;
372 }
4efc6507
DE
373
374 /* Fix the endianness to match the host. */
375 descriptor->version = extract_unsigned_integer (&desc_buf[0], 4, byte_order);
376 descriptor->action_flag =
377 extract_unsigned_integer (&desc_buf[4], 4, byte_order);
378 descriptor->relevant_entry = extract_typed_address (&desc_buf[8], ptr_type);
379 descriptor->first_entry =
380 extract_typed_address (&desc_buf[8 + ptr_size], ptr_type);
03bef283
TT
381
382 return 1;
4efc6507
DE
383}
384
385/* Helper function for reading a JITed code entry from remote memory. */
386
387static void
0756c555
DE
388jit_read_code_entry (struct gdbarch *gdbarch,
389 CORE_ADDR code_addr, struct jit_code_entry *code_entry)
4efc6507 390{
205c306f 391 int err, off;
4efc6507
DE
392 struct type *ptr_type;
393 int ptr_size;
394 int entry_size;
205c306f 395 int align_bytes;
4efc6507 396 gdb_byte *entry_buf;
0756c555 397 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
4efc6507
DE
398
399 /* Figure out how big the entry is on the remote and how to read it. */
0756c555 400 ptr_type = builtin_type (gdbarch)->builtin_data_ptr;
4efc6507 401 ptr_size = TYPE_LENGTH (ptr_type);
227ee7fc 402
e11fb955
TT
403 /* Figure out where the uint64_t value will be. */
404 align_bytes = type_align (builtin_type (gdbarch)->builtin_uint64);
227ee7fc
RH
405 off = 3 * ptr_size;
406 off = (off + (align_bytes - 1)) & ~(align_bytes - 1);
407
408 entry_size = off + 8; /* Three pointers and one 64-bit int. */
224c3ddb 409 entry_buf = (gdb_byte *) alloca (entry_size);
4efc6507
DE
410
411 /* Read the entry. */
412 err = target_read_memory (code_addr, entry_buf, entry_size);
413 if (err)
414 error (_("Unable to read JIT code entry from remote memory!"));
415
416 /* Fix the endianness to match the host. */
0756c555 417 ptr_type = builtin_type (gdbarch)->builtin_data_ptr;
4efc6507
DE
418 code_entry->next_entry = extract_typed_address (&entry_buf[0], ptr_type);
419 code_entry->prev_entry =
420 extract_typed_address (&entry_buf[ptr_size], ptr_type);
421 code_entry->symfile_addr =
422 extract_typed_address (&entry_buf[2 * ptr_size], ptr_type);
423 code_entry->symfile_size =
205c306f 424 extract_unsigned_integer (&entry_buf[off], 8, byte_order);
4efc6507
DE
425}
426
1825a88d
SD
427/* Proxy object for building a block. */
428
429struct gdb_block
430{
431 /* gdb_blocks are linked into a tree structure. Next points to the
432 next node at the same depth as this block and parent to the
433 parent gdb_block. */
434 struct gdb_block *next, *parent;
435
436 /* Points to the "real" block that is being built out of this
437 instance. This block will be added to a blockvector, which will
438 then be added to a symtab. */
439 struct block *real_block;
440
441 /* The first and last code address corresponding to this block. */
442 CORE_ADDR begin, end;
443
444 /* The name of this block (if any). If this is non-NULL, the
445 FUNCTION symbol symbol is set to this value. */
446 const char *name;
447};
448
449/* Proxy object for building a symtab. */
450
451struct gdb_symtab
452{
453 /* The list of blocks in this symtab. These will eventually be
454 converted to real blocks. */
455 struct gdb_block *blocks;
456
457 /* The number of blocks inserted. */
458 int nblocks;
459
460 /* A mapping between line numbers to PC. */
461 struct linetable *linetable;
462
463 /* The source file for this symtab. */
464 const char *file_name;
465 struct gdb_symtab *next;
466};
467
468/* Proxy object for building an object. */
469
470struct gdb_object
471{
472 struct gdb_symtab *symtabs;
473};
474
475/* The type of the `private' data passed around by the callback
476 functions. */
477
478typedef CORE_ADDR jit_dbg_reader_data;
479
480/* The reader calls into this function to read data off the targets
481 address space. */
482
483static enum gdb_status
484jit_target_read_impl (GDB_CORE_ADDR target_mem, void *gdb_buf, int len)
485{
cb0a2700
SM
486 int result = target_read_memory ((CORE_ADDR) target_mem,
487 (gdb_byte *) gdb_buf, len);
1825a88d
SD
488 if (result == 0)
489 return GDB_SUCCESS;
490 else
491 return GDB_FAIL;
492}
493
494/* The reader calls into this function to create a new gdb_object
495 which it can then pass around to the other callbacks. Right now,
496 all that is required is allocating the memory. */
497
498static struct gdb_object *
499jit_object_open_impl (struct gdb_symbol_callbacks *cb)
500{
501 /* CB is not required right now, but sometime in the future we might
502 need a handle to it, and we'd like to do that without breaking
503 the ABI. */
41bf6aca 504 return XCNEW (struct gdb_object);
1825a88d
SD
505}
506
507/* Readers call into this function to open a new gdb_symtab, which,
508 again, is passed around to other callbacks. */
509
510static struct gdb_symtab *
511jit_symtab_open_impl (struct gdb_symbol_callbacks *cb,
3a90f266
SM
512 struct gdb_object *object,
513 const char *file_name)
1825a88d
SD
514{
515 struct gdb_symtab *ret;
516
517 /* CB stays unused. See comment in jit_object_open_impl. */
518
41bf6aca 519 ret = XCNEW (struct gdb_symtab);
1825a88d
SD
520 ret->file_name = file_name ? xstrdup (file_name) : xstrdup ("");
521 ret->next = object->symtabs;
522 object->symtabs = ret;
523 return ret;
524}
525
526/* Returns true if the block corresponding to old should be placed
527 before the block corresponding to new in the final blockvector. */
528
529static int
530compare_block (const struct gdb_block *const old,
3a90f266 531 const struct gdb_block *const newobj)
1825a88d
SD
532{
533 if (old == NULL)
534 return 1;
fe978cb0 535 if (old->begin < newobj->begin)
1825a88d 536 return 1;
fe978cb0 537 else if (old->begin == newobj->begin)
1825a88d 538 {
fe978cb0 539 if (old->end > newobj->end)
3a90f266 540 return 1;
1825a88d 541 else
3a90f266 542 return 0;
1825a88d
SD
543 }
544 else
545 return 0;
546}
547
548/* Called by readers to open a new gdb_block. This function also
549 inserts the new gdb_block in the correct place in the corresponding
550 gdb_symtab. */
551
552static struct gdb_block *
553jit_block_open_impl (struct gdb_symbol_callbacks *cb,
3a90f266
SM
554 struct gdb_symtab *symtab, struct gdb_block *parent,
555 GDB_CORE_ADDR begin, GDB_CORE_ADDR end, const char *name)
1825a88d 556{
41bf6aca 557 struct gdb_block *block = XCNEW (struct gdb_block);
1825a88d
SD
558
559 block->next = symtab->blocks;
560 block->begin = (CORE_ADDR) begin;
561 block->end = (CORE_ADDR) end;
562 block->name = name ? xstrdup (name) : NULL;
563 block->parent = parent;
564
565 /* Ensure that the blocks are inserted in the correct (reverse of
566 the order expected by blockvector). */
567 if (compare_block (symtab->blocks, block))
568 {
569 symtab->blocks = block;
570 }
571 else
572 {
573 struct gdb_block *i = symtab->blocks;
574
575 for (;; i = i->next)
3a90f266
SM
576 {
577 /* Guaranteed to terminate, since compare_block (NULL, _)
578 returns 1. */
579 if (compare_block (i->next, block))
580 {
581 block->next = i->next;
582 i->next = block;
583 break;
584 }
585 }
1825a88d
SD
586 }
587 symtab->nblocks++;
588
589 return block;
590}
591
592/* Readers call this to add a line mapping (from PC to line number) to
593 a gdb_symtab. */
4efc6507
DE
594
595static void
1825a88d 596jit_symtab_line_mapping_add_impl (struct gdb_symbol_callbacks *cb,
3a90f266
SM
597 struct gdb_symtab *stab, int nlines,
598 struct gdb_line_mapping *map)
1825a88d
SD
599{
600 int i;
224c3ddb 601 int alloc_len;
1825a88d
SD
602
603 if (nlines < 1)
604 return;
605
224c3ddb
SM
606 alloc_len = sizeof (struct linetable)
607 + (nlines - 1) * sizeof (struct linetable_entry);
608 stab->linetable = (struct linetable *) xmalloc (alloc_len);
1825a88d
SD
609 stab->linetable->nitems = nlines;
610 for (i = 0; i < nlines; i++)
611 {
612 stab->linetable->item[i].pc = (CORE_ADDR) map[i].pc;
613 stab->linetable->item[i].line = map[i].line;
614 }
615}
616
617/* Called by readers to close a gdb_symtab. Does not need to do
618 anything as of now. */
619
620static void
621jit_symtab_close_impl (struct gdb_symbol_callbacks *cb,
3a90f266 622 struct gdb_symtab *stab)
1825a88d
SD
623{
624 /* Right now nothing needs to be done here. We may need to do some
625 cleanup here in the future (again, without breaking the plugin
626 ABI). */
627}
628
629/* Transform STAB to a proper symtab, and add it it OBJFILE. */
630
631static void
632finalize_symtab (struct gdb_symtab *stab, struct objfile *objfile)
633{
43f3e411 634 struct compunit_symtab *cust;
1825a88d
SD
635 struct gdb_block *gdb_block_iter, *gdb_block_iter_tmp;
636 struct block *block_iter;
241fd515
AM
637 int actual_nblocks, i;
638 size_t blockvector_size;
1825a88d 639 CORE_ADDR begin, end;
346d1dfe 640 struct blockvector *bv;
1825a88d
SD
641
642 actual_nblocks = FIRST_LOCAL_BLOCK + stab->nblocks;
643
43f3e411
DE
644 cust = allocate_compunit_symtab (objfile, stab->file_name);
645 allocate_symtab (cust, stab->file_name);
646 add_compunit_symtab_to_objfile (cust);
647
1825a88d 648 /* JIT compilers compile in memory. */
43f3e411 649 COMPUNIT_DIRNAME (cust) = NULL;
1825a88d
SD
650
651 /* Copy over the linetable entry if one was provided. */
652 if (stab->linetable)
653 {
241fd515
AM
654 size_t size = ((stab->linetable->nitems - 1)
655 * sizeof (struct linetable_entry)
656 + sizeof (struct linetable));
43f3e411 657 SYMTAB_LINETABLE (COMPUNIT_FILETABS (cust))
224c3ddb 658 = (struct linetable *) obstack_alloc (&objfile->objfile_obstack, size);
43f3e411
DE
659 memcpy (SYMTAB_LINETABLE (COMPUNIT_FILETABS (cust)), stab->linetable,
660 size);
1825a88d
SD
661 }
662
663 blockvector_size = (sizeof (struct blockvector)
3a90f266 664 + (actual_nblocks - 1) * sizeof (struct block *));
224c3ddb
SM
665 bv = (struct blockvector *) obstack_alloc (&objfile->objfile_obstack,
666 blockvector_size);
43f3e411 667 COMPUNIT_BLOCKVECTOR (cust) = bv;
1825a88d
SD
668
669 /* (begin, end) will contain the PC range this entire blockvector
670 spans. */
346d1dfe 671 BLOCKVECTOR_MAP (bv) = NULL;
1825a88d
SD
672 begin = stab->blocks->begin;
673 end = stab->blocks->end;
346d1dfe 674 BLOCKVECTOR_NBLOCKS (bv) = actual_nblocks;
1825a88d
SD
675
676 /* First run over all the gdb_block objects, creating a real block
677 object for each. Simultaneously, keep setting the real_block
678 fields. */
679 for (i = (actual_nblocks - 1), gdb_block_iter = stab->blocks;
680 i >= FIRST_LOCAL_BLOCK;
681 i--, gdb_block_iter = gdb_block_iter->next)
682 {
683 struct block *new_block = allocate_block (&objfile->objfile_obstack);
e623cf5d 684 struct symbol *block_name = allocate_symbol (objfile);
2535757a
TT
685 struct type *block_type = arch_type (get_objfile_arch (objfile),
686 TYPE_CODE_VOID,
77b7c781 687 TARGET_CHAR_BIT,
2535757a 688 "void");
1825a88d 689
b026f593
KS
690 BLOCK_MULTIDICT (new_block)
691 = mdict_create_linear (&objfile->objfile_obstack, NULL);
1825a88d
SD
692 /* The address range. */
693 BLOCK_START (new_block) = (CORE_ADDR) gdb_block_iter->begin;
694 BLOCK_END (new_block) = (CORE_ADDR) gdb_block_iter->end;
695
696 /* The name. */
1825a88d 697 SYMBOL_DOMAIN (block_name) = VAR_DOMAIN;
f1e6e072 698 SYMBOL_ACLASS_INDEX (block_name) = LOC_BLOCK;
08be3fe3 699 symbol_set_symtab (block_name, COMPUNIT_FILETABS (cust));
2535757a 700 SYMBOL_TYPE (block_name) = lookup_function_type (block_type);
1825a88d
SD
701 SYMBOL_BLOCK_VALUE (block_name) = new_block;
702
468c0cbb
CB
703 block_name->name = obstack_strdup (&objfile->objfile_obstack,
704 gdb_block_iter->name);
1825a88d
SD
705
706 BLOCK_FUNCTION (new_block) = block_name;
707
346d1dfe 708 BLOCKVECTOR_BLOCK (bv, i) = new_block;
1825a88d 709 if (begin > BLOCK_START (new_block))
3a90f266 710 begin = BLOCK_START (new_block);
1825a88d 711 if (end < BLOCK_END (new_block))
3a90f266 712 end = BLOCK_END (new_block);
1825a88d
SD
713
714 gdb_block_iter->real_block = new_block;
715 }
716
717 /* Now add the special blocks. */
718 block_iter = NULL;
719 for (i = 0; i < FIRST_LOCAL_BLOCK; i++)
720 {
84a146c9
TT
721 struct block *new_block;
722
723 new_block = (i == GLOBAL_BLOCK
724 ? allocate_global_block (&objfile->objfile_obstack)
725 : allocate_block (&objfile->objfile_obstack));
b026f593
KS
726 BLOCK_MULTIDICT (new_block)
727 = mdict_create_linear (&objfile->objfile_obstack, NULL);
1825a88d
SD
728 BLOCK_SUPERBLOCK (new_block) = block_iter;
729 block_iter = new_block;
730
731 BLOCK_START (new_block) = (CORE_ADDR) begin;
732 BLOCK_END (new_block) = (CORE_ADDR) end;
733
346d1dfe 734 BLOCKVECTOR_BLOCK (bv, i) = new_block;
84a146c9
TT
735
736 if (i == GLOBAL_BLOCK)
43f3e411 737 set_block_compunit_symtab (new_block, cust);
1825a88d
SD
738 }
739
740 /* Fill up the superblock fields for the real blocks, using the
741 real_block fields populated earlier. */
742 for (gdb_block_iter = stab->blocks;
743 gdb_block_iter;
744 gdb_block_iter = gdb_block_iter->next)
745 {
746 if (gdb_block_iter->parent != NULL)
db334a01
SD
747 {
748 /* If the plugin specifically mentioned a parent block, we
749 use that. */
750 BLOCK_SUPERBLOCK (gdb_block_iter->real_block) =
751 gdb_block_iter->parent->real_block;
752 }
753 else
754 {
755 /* And if not, we set a default parent block. */
756 BLOCK_SUPERBLOCK (gdb_block_iter->real_block) =
346d1dfe 757 BLOCKVECTOR_BLOCK (bv, STATIC_BLOCK);
db334a01 758 }
1825a88d
SD
759 }
760
761 /* Free memory. */
762 gdb_block_iter = stab->blocks;
763
764 for (gdb_block_iter = stab->blocks, gdb_block_iter_tmp = gdb_block_iter->next;
765 gdb_block_iter;
766 gdb_block_iter = gdb_block_iter_tmp)
767 {
d043f8c8 768 gdb_block_iter_tmp = gdb_block_iter->next;
1825a88d
SD
769 xfree ((void *) gdb_block_iter->name);
770 xfree (gdb_block_iter);
771 }
772 xfree (stab->linetable);
773 xfree ((char *) stab->file_name);
774 xfree (stab);
775}
776
777/* Called when closing a gdb_objfile. Converts OBJ to a proper
778 objfile. */
779
780static void
781jit_object_close_impl (struct gdb_symbol_callbacks *cb,
3a90f266 782 struct gdb_object *obj)
1825a88d
SD
783{
784 struct gdb_symtab *i, *j;
785 struct objfile *objfile;
786 jit_dbg_reader_data *priv_data;
787
9a3c8263 788 priv_data = (jit_dbg_reader_data *) cb->priv_data;
1825a88d 789
bda13cdc
TT
790 objfile = objfile::make (nullptr, "<< JIT compiled code >>",
791 OBJF_NOT_FILENAME);
df6d5441 792 objfile->per_bfd->gdbarch = target_gdbarch ();
1825a88d 793
1825a88d
SD
794 j = NULL;
795 for (i = obj->symtabs; i; i = j)
796 {
797 j = i->next;
798 finalize_symtab (i, objfile);
799 }
800 add_objfile_entry (objfile, *priv_data);
801 xfree (obj);
802}
803
744ab88c 804/* Try to read CODE_ENTRY using the loaded jit reader (if any).
b4264740
SD
805 ENTRY_ADDR is the address of the struct jit_code_entry in the
806 inferior address space. */
1825a88d
SD
807
808static int
744ab88c 809jit_reader_try_read_symtab (struct jit_code_entry *code_entry,
3a90f266 810 CORE_ADDR entry_addr)
1825a88d 811{
1825a88d 812 int status;
1825a88d
SD
813 jit_dbg_reader_data priv_data;
814 struct gdb_reader_funcs *funcs;
1825a88d
SD
815 struct gdb_symbol_callbacks callbacks =
816 {
817 jit_object_open_impl,
818 jit_symtab_open_impl,
819 jit_block_open_impl,
820 jit_symtab_close_impl,
821 jit_object_close_impl,
822
823 jit_symtab_line_mapping_add_impl,
824 jit_target_read_impl,
825
826 &priv_data
827 };
828
744ab88c 829 priv_data = entry_addr;
1825a88d
SD
830
831 if (!loaded_jit_reader)
832 return 0;
833
7190276c 834 gdb::byte_vector gdb_mem (code_entry->symfile_size);
1825a88d
SD
835
836 status = 1;
a70b8144 837 try
492d29ea 838 {
7190276c 839 if (target_read_memory (code_entry->symfile_addr, gdb_mem.data (),
492d29ea
PA
840 code_entry->symfile_size))
841 status = 0;
842 }
230d2906 843 catch (const gdb_exception &e)
492d29ea 844 {
1825a88d 845 status = 0;
492d29ea 846 }
1825a88d
SD
847
848 if (status)
849 {
850 funcs = loaded_jit_reader->functions;
7190276c
SM
851 if (funcs->read (funcs, &callbacks, gdb_mem.data (),
852 code_entry->symfile_size)
3a90f266
SM
853 != GDB_SUCCESS)
854 status = 0;
1825a88d
SD
855 }
856
1825a88d
SD
857 if (jit_debug && status == 0)
858 fprintf_unfiltered (gdb_stdlog,
3a90f266 859 "Could not read symtab using the loaded JIT reader.\n");
1825a88d
SD
860 return status;
861}
862
744ab88c 863/* Try to read CODE_ENTRY using BFD. ENTRY_ADDR is the address of the
b4264740 864 struct jit_code_entry in the inferior address space. */
1825a88d
SD
865
866static void
867jit_bfd_try_read_symtab (struct jit_code_entry *code_entry,
3a90f266
SM
868 CORE_ADDR entry_addr,
869 struct gdbarch *gdbarch)
4efc6507 870{
4efc6507
DE
871 struct bfd_section *sec;
872 struct objfile *objfile;
4efc6507 873 const struct bfd_arch_info *b;
4efc6507 874
a255712f
PP
875 if (jit_debug)
876 fprintf_unfiltered (gdb_stdlog,
38b49e22 877 "jit_bfd_try_read_symtab, symfile_addr = %s, "
a255712f
PP
878 "symfile_size = %s\n",
879 paddress (gdbarch, code_entry->symfile_addr),
880 pulongest (code_entry->symfile_size));
881
192b62ce
TT
882 gdb_bfd_ref_ptr nbfd (bfd_open_from_target_memory (code_entry->symfile_addr,
883 code_entry->symfile_size,
884 gnutarget));
4dfb2365
JK
885 if (nbfd == NULL)
886 {
887 puts_unfiltered (_("Error opening JITed symbol file, ignoring it.\n"));
888 return;
889 }
4efc6507
DE
890
891 /* Check the format. NOTE: This initializes important data that GDB uses!
892 We would segfault later without this line. */
192b62ce 893 if (!bfd_check_format (nbfd.get (), bfd_object))
4efc6507
DE
894 {
895 printf_unfiltered (_("\
896JITed symbol file is not an object file, ignoring it.\n"));
4efc6507
DE
897 return;
898 }
899
900 /* Check bfd arch. */
0756c555 901 b = gdbarch_bfd_arch_info (gdbarch);
192b62ce 902 if (b->compatible (b, bfd_get_arch_info (nbfd.get ())) != b)
4efc6507 903 warning (_("JITed object file architecture %s is not compatible "
3a90f266 904 "with target architecture %s."),
192b62ce
TT
905 bfd_get_arch_info (nbfd.get ())->printable_name,
906 b->printable_name);
4efc6507
DE
907
908 /* Read the section address information out of the symbol file. Since the
909 file is generated by the JIT at runtime, it should all of the absolute
910 addresses that we care about. */
37e136b1 911 section_addr_info sai;
4efc6507 912 for (sec = nbfd->sections; sec != NULL; sec = sec->next)
fd361982 913 if ((bfd_section_flags (sec) & (SEC_ALLOC|SEC_LOAD)) != 0)
4efc6507 914 {
3a90f266
SM
915 /* We assume that these virtual addresses are absolute, and do not
916 treat them as offsets. */
fd361982
AM
917 sai.emplace_back (bfd_section_vma (sec),
918 bfd_section_name (sec),
37e136b1 919 sec->index);
4efc6507
DE
920 }
921
8ac244b4 922 /* This call does not take ownership of SAI. */
192b62ce 923 objfile = symbol_file_add_from_bfd (nbfd.get (),
37e136b1
TT
924 bfd_get_filename (nbfd.get ()), 0,
925 &sai,
40135bb1 926 OBJF_SHARED | OBJF_NOT_FILENAME, NULL);
4efc6507 927
744ab88c 928 add_objfile_entry (objfile, entry_addr);
1825a88d
SD
929}
930
931/* This function registers code associated with a JIT code entry. It uses the
932 pointer and size pair in the entry to read the symbol file from the remote
933 and then calls symbol_file_add_from_local_memory to add it as though it were
934 a symbol file added by the user. */
935
936static void
937jit_register_code (struct gdbarch *gdbarch,
3a90f266 938 CORE_ADDR entry_addr, struct jit_code_entry *code_entry)
1825a88d 939{
974a734b 940 int success;
1825a88d
SD
941
942 if (jit_debug)
943 fprintf_unfiltered (gdb_stdlog,
3a90f266
SM
944 "jit_register_code, symfile_addr = %s, "
945 "symfile_size = %s\n",
946 paddress (gdbarch, code_entry->symfile_addr),
947 pulongest (code_entry->symfile_size));
1825a88d 948
744ab88c 949 success = jit_reader_try_read_symtab (code_entry, entry_addr);
1825a88d
SD
950
951 if (!success)
744ab88c 952 jit_bfd_try_read_symtab (code_entry, entry_addr, gdbarch);
4efc6507
DE
953}
954
4efc6507
DE
955/* Look up the objfile with this code entry address. */
956
957static struct objfile *
958jit_find_objf_with_entry_addr (CORE_ADDR entry_addr)
959{
2030c079 960 for (objfile *objf : current_program_space->objfiles ())
4efc6507 961 {
03bef283
TT
962 struct jit_objfile_data *objf_data;
963
9a3c8263
SM
964 objf_data
965 = (struct jit_objfile_data *) objfile_data (objf, jit_objfile_data);
03bef283 966 if (objf_data != NULL && objf_data->addr == entry_addr)
3a90f266 967 return objf;
4efc6507
DE
968 }
969 return NULL;
970}
971
f25c0135
TT
972/* This is called when a breakpoint is deleted. It updates the
973 inferior's cache, if needed. */
974
975static void
976jit_breakpoint_deleted (struct breakpoint *b)
977{
978 struct bp_location *iter;
979
980 if (b->type != bp_jit_event)
981 return;
982
983 for (iter = b->loc; iter != NULL; iter = iter->next)
8eacb197
TT
984 {
985 struct jit_program_space_data *ps_data;
986
cb60f420 987 ps_data = jit_program_space_key.get (iter->pspace);
8eacb197
TT
988 if (ps_data != NULL && ps_data->jit_breakpoint == iter->owner)
989 {
990 ps_data->cached_code_address = 0;
991 ps_data->jit_breakpoint = NULL;
992 }
993 }
f25c0135
TT
994}
995
03673fc7 996/* (Re-)Initialize the jit breakpoint if necessary.
9bb84c9f 997 Return 0 if the jit breakpoint has been successfully initialized. */
03673fc7
PP
998
999static int
1000jit_breakpoint_re_set_internal (struct gdbarch *gdbarch,
8eacb197 1001 struct jit_program_space_data *ps_data)
03673fc7 1002{
7cbd4a93 1003 struct bound_minimal_symbol reg_symbol;
3b7344d5 1004 struct bound_minimal_symbol desc_symbol;
03bef283 1005 struct jit_objfile_data *objf_data;
f25c0135 1006 CORE_ADDR addr;
03bef283 1007
8eacb197 1008 if (ps_data->objfile == NULL)
f25c0135
TT
1009 {
1010 /* Lookup the registration symbol. If it is missing, then we
1011 assume we are not attached to a JIT. */
64cc34d8 1012 reg_symbol = lookup_bound_minimal_symbol (jit_break_name);
7cbd4a93 1013 if (reg_symbol.minsym == NULL
77e371c0 1014 || BMSYMBOL_VALUE_ADDRESS (reg_symbol) == 0)
f25c0135 1015 return 1;
03bef283 1016
7cbd4a93
TT
1017 desc_symbol = lookup_minimal_symbol (jit_descriptor_name, NULL,
1018 reg_symbol.objfile);
3b7344d5 1019 if (desc_symbol.minsym == NULL
77e371c0 1020 || BMSYMBOL_VALUE_ADDRESS (desc_symbol) == 0)
f25c0135 1021 return 1;
03bef283 1022
7cbd4a93
TT
1023 objf_data = get_jit_objfile_data (reg_symbol.objfile);
1024 objf_data->register_code = reg_symbol.minsym;
3b7344d5 1025 objf_data->descriptor = desc_symbol.minsym;
03bef283 1026
7cbd4a93 1027 ps_data->objfile = reg_symbol.objfile;
f25c0135
TT
1028 }
1029 else
8eacb197 1030 objf_data = get_jit_objfile_data (ps_data->objfile);
03bef283 1031
77e371c0 1032 addr = MSYMBOL_VALUE_ADDRESS (ps_data->objfile, objf_data->register_code);
03bef283 1033
03673fc7
PP
1034 if (jit_debug)
1035 fprintf_unfiltered (gdb_stdlog,
1036 "jit_breakpoint_re_set_internal, "
1037 "breakpoint_addr = %s\n",
f25c0135
TT
1038 paddress (gdbarch, addr));
1039
8eacb197 1040 if (ps_data->cached_code_address == addr)
9bb84c9f 1041 return 0;
f25c0135
TT
1042
1043 /* Delete the old breakpoint. */
8eacb197
TT
1044 if (ps_data->jit_breakpoint != NULL)
1045 delete_breakpoint (ps_data->jit_breakpoint);
03673fc7
PP
1046
1047 /* Put a breakpoint in the registration symbol. */
8eacb197
TT
1048 ps_data->cached_code_address = addr;
1049 ps_data->jit_breakpoint = create_jit_event_breakpoint (gdbarch, addr);
03673fc7
PP
1050
1051 return 0;
1052}
1053
3623dc3a
SD
1054/* The private data passed around in the frame unwind callback
1055 functions. */
1056
1057struct jit_unwind_private
1058{
1059 /* Cached register values. See jit_frame_sniffer to see how this
1060 works. */
c8ec2f33 1061 detached_regcache *regcache;
3623dc3a
SD
1062
1063 /* The frame being unwound. */
1064 struct frame_info *this_frame;
1065};
1066
1067/* Sets the value of a particular register in this frame. */
1068
1069static void
1070jit_unwind_reg_set_impl (struct gdb_unwind_callbacks *cb, int dwarf_regnum,
3a90f266 1071 struct gdb_reg_value *value)
3623dc3a
SD
1072{
1073 struct jit_unwind_private *priv;
1074 int gdb_reg;
1075
9a3c8263 1076 priv = (struct jit_unwind_private *) cb->priv_data;
3623dc3a
SD
1077
1078 gdb_reg = gdbarch_dwarf2_reg_to_regnum (get_frame_arch (priv->this_frame),
3a90f266 1079 dwarf_regnum);
3623dc3a
SD
1080 if (gdb_reg == -1)
1081 {
1082 if (jit_debug)
3a90f266
SM
1083 fprintf_unfiltered (gdb_stdlog,
1084 _("Could not recognize DWARF regnum %d"),
1085 dwarf_regnum);
20aa2c60 1086 value->free (value);
3623dc3a
SD
1087 return;
1088 }
1089
c8ec2f33 1090 priv->regcache->raw_supply (gdb_reg, value->value);
20aa2c60 1091 value->free (value);
3623dc3a
SD
1092}
1093
1094static void
1095reg_value_free_impl (struct gdb_reg_value *value)
1096{
1097 xfree (value);
1098}
1099
1100/* Get the value of register REGNUM in the previous frame. */
1101
1102static struct gdb_reg_value *
1103jit_unwind_reg_get_impl (struct gdb_unwind_callbacks *cb, int regnum)
1104{
1105 struct jit_unwind_private *priv;
1106 struct gdb_reg_value *value;
1107 int gdb_reg, size;
1108 struct gdbarch *frame_arch;
1109
9a3c8263 1110 priv = (struct jit_unwind_private *) cb->priv_data;
3623dc3a
SD
1111 frame_arch = get_frame_arch (priv->this_frame);
1112
1113 gdb_reg = gdbarch_dwarf2_reg_to_regnum (frame_arch, regnum);
1114 size = register_size (frame_arch, gdb_reg);
224c3ddb
SM
1115 value = ((struct gdb_reg_value *)
1116 xmalloc (sizeof (struct gdb_reg_value) + size - 1));
ca9d61b9
JB
1117 value->defined = deprecated_frame_register_read (priv->this_frame, gdb_reg,
1118 value->value);
3623dc3a
SD
1119 value->size = size;
1120 value->free = reg_value_free_impl;
1121 return value;
1122}
1123
1124/* gdb_reg_value has a free function, which must be called on each
1125 saved register value. */
1126
1127static void
1128jit_dealloc_cache (struct frame_info *this_frame, void *cache)
1129{
9a3c8263 1130 struct jit_unwind_private *priv_data = (struct jit_unwind_private *) cache;
3623dc3a 1131
20aa2c60 1132 gdb_assert (priv_data->regcache != NULL);
c0e383c6 1133 delete priv_data->regcache;
3623dc3a
SD
1134 xfree (priv_data);
1135}
1136
1137/* The frame sniffer for the pseudo unwinder.
1138
1139 While this is nominally a frame sniffer, in the case where the JIT
1140 reader actually recognizes the frame, it does a lot more work -- it
1141 unwinds the frame and saves the corresponding register values in
1142 the cache. jit_frame_prev_register simply returns the saved
1143 register values. */
1144
1145static int
1146jit_frame_sniffer (const struct frame_unwind *self,
3a90f266 1147 struct frame_info *this_frame, void **cache)
3623dc3a 1148{
3623dc3a 1149 struct jit_unwind_private *priv_data;
3623dc3a
SD
1150 struct gdb_unwind_callbacks callbacks;
1151 struct gdb_reader_funcs *funcs;
1152
3623dc3a
SD
1153 callbacks.reg_get = jit_unwind_reg_get_impl;
1154 callbacks.reg_set = jit_unwind_reg_set_impl;
1155 callbacks.target_read = jit_target_read_impl;
1156
1157 if (loaded_jit_reader == NULL)
1158 return 0;
1159
1160 funcs = loaded_jit_reader->functions;
1161
1162 gdb_assert (!*cache);
1163
41bf6aca 1164 *cache = XCNEW (struct jit_unwind_private);
9a3c8263 1165 priv_data = (struct jit_unwind_private *) *cache;
c8ec2f33
YQ
1166 /* Take a snapshot of current regcache. */
1167 priv_data->regcache = new detached_regcache (get_frame_arch (this_frame),
1168 true);
3623dc3a
SD
1169 priv_data->this_frame = this_frame;
1170
1171 callbacks.priv_data = priv_data;
1172
1173 /* Try to coax the provided unwinder to unwind the stack */
1174 if (funcs->unwind (funcs, &callbacks) == GDB_SUCCESS)
1175 {
1176 if (jit_debug)
3a90f266
SM
1177 fprintf_unfiltered (gdb_stdlog, _("Successfully unwound frame using "
1178 "JIT reader.\n"));
3623dc3a
SD
1179 return 1;
1180 }
1181 if (jit_debug)
1182 fprintf_unfiltered (gdb_stdlog, _("Could not unwind frame using "
3a90f266 1183 "JIT reader.\n"));
3623dc3a
SD
1184
1185 jit_dealloc_cache (this_frame, *cache);
1186 *cache = NULL;
1187
1188 return 0;
1189}
1190
1191
1192/* The frame_id function for the pseudo unwinder. Relays the call to
1193 the loaded plugin. */
1194
1195static void
1196jit_frame_this_id (struct frame_info *this_frame, void **cache,
3a90f266 1197 struct frame_id *this_id)
3623dc3a 1198{
fe978cb0 1199 struct jit_unwind_private priv;
3623dc3a
SD
1200 struct gdb_frame_id frame_id;
1201 struct gdb_reader_funcs *funcs;
1202 struct gdb_unwind_callbacks callbacks;
1203
20aa2c60 1204 priv.regcache = NULL;
fe978cb0 1205 priv.this_frame = this_frame;
3623dc3a
SD
1206
1207 /* We don't expect the frame_id function to set any registers, so we
1208 set reg_set to NULL. */
1209 callbacks.reg_get = jit_unwind_reg_get_impl;
1210 callbacks.reg_set = NULL;
1211 callbacks.target_read = jit_target_read_impl;
fe978cb0 1212 callbacks.priv_data = &priv;
3623dc3a
SD
1213
1214 gdb_assert (loaded_jit_reader);
1215 funcs = loaded_jit_reader->functions;
1216
1217 frame_id = funcs->get_frame_id (funcs, &callbacks);
1218 *this_id = frame_id_build (frame_id.stack_address, frame_id.code_address);
1219}
1220
1221/* Pseudo unwinder function. Reads the previously fetched value for
1222 the register from the cache. */
1223
1224static struct value *
1225jit_frame_prev_register (struct frame_info *this_frame, void **cache, int reg)
1226{
9a3c8263 1227 struct jit_unwind_private *priv = (struct jit_unwind_private *) *cache;
20aa2c60 1228 struct gdbarch *gdbarch;
3623dc3a
SD
1229
1230 if (priv == NULL)
1231 return frame_unwind_got_optimized (this_frame, reg);
1232
ac7936df 1233 gdbarch = priv->regcache->arch ();
3f5a868b
YQ
1234 gdb_byte *buf = (gdb_byte *) alloca (register_size (gdbarch, reg));
1235 enum register_status status = priv->regcache->cooked_read (reg, buf);
20aa2c60 1236
3f5a868b
YQ
1237 if (status == REG_VALID)
1238 return frame_unwind_got_bytes (this_frame, reg, buf);
3623dc3a 1239 else
3f5a868b 1240 return frame_unwind_got_optimized (this_frame, reg);
3623dc3a
SD
1241}
1242
1243/* Relay everything back to the unwinder registered by the JIT debug
1244 info reader.*/
1245
1246static const struct frame_unwind jit_frame_unwind =
1247{
1248 NORMAL_FRAME,
1249 default_frame_unwind_stop_reason,
1250 jit_frame_this_id,
1251 jit_frame_prev_register,
1252 NULL,
1253 jit_frame_sniffer,
1254 jit_dealloc_cache
1255};
1256
1257
1258/* This is the information that is stored at jit_gdbarch_data for each
1259 architecture. */
1260
1261struct jit_gdbarch_data_type
1262{
1263 /* Has the (pseudo) unwinder been prepended? */
1264 int unwinder_registered;
1265};
1266
1267/* Check GDBARCH and prepend the pseudo JIT unwinder if needed. */
1268
1269static void
1270jit_prepend_unwinder (struct gdbarch *gdbarch)
1271{
1272 struct jit_gdbarch_data_type *data;
1273
9a3c8263
SM
1274 data
1275 = (struct jit_gdbarch_data_type *) gdbarch_data (gdbarch, jit_gdbarch_data);
3623dc3a
SD
1276 if (!data->unwinder_registered)
1277 {
1278 frame_unwind_prepend_unwinder (gdbarch, &jit_frame_unwind);
1279 data->unwinder_registered = 1;
1280 }
1281}
1282
03673fc7 1283/* Register any already created translations. */
0756c555
DE
1284
1285static void
1286jit_inferior_init (struct gdbarch *gdbarch)
4efc6507 1287{
4efc6507
DE
1288 struct jit_descriptor descriptor;
1289 struct jit_code_entry cur_entry;
8eacb197 1290 struct jit_program_space_data *ps_data;
4efc6507 1291 CORE_ADDR cur_entry_addr;
4efc6507 1292
a255712f 1293 if (jit_debug)
03673fc7 1294 fprintf_unfiltered (gdb_stdlog, "jit_inferior_init\n");
a255712f 1295
3623dc3a
SD
1296 jit_prepend_unwinder (gdbarch);
1297
8eacb197
TT
1298 ps_data = get_jit_program_space_data ();
1299 if (jit_breakpoint_re_set_internal (gdbarch, ps_data) != 0)
4efc6507
DE
1300 return;
1301
1777feb0
MS
1302 /* Read the descriptor so we can check the version number and load
1303 any already JITed functions. */
8eacb197 1304 if (!jit_read_descriptor (gdbarch, &descriptor, ps_data))
03bef283 1305 return;
4efc6507
DE
1306
1307 /* Check that the version number agrees with that we support. */
1308 if (descriptor.version != 1)
03bef283
TT
1309 {
1310 printf_unfiltered (_("Unsupported JIT protocol version %ld "
1311 "in descriptor (expected 1)\n"),
1312 (long) descriptor.version);
1313 return;
1314 }
4efc6507 1315
1777feb0
MS
1316 /* If we've attached to a running program, we need to check the descriptor
1317 to register any functions that were already generated. */
4efc6507
DE
1318 for (cur_entry_addr = descriptor.first_entry;
1319 cur_entry_addr != 0;
1320 cur_entry_addr = cur_entry.next_entry)
1321 {
0756c555 1322 jit_read_code_entry (gdbarch, cur_entry_addr, &cur_entry);
4efc6507
DE
1323
1324 /* This hook may be called many times during setup, so make sure we don't
3a90f266 1325 add the same symbol file twice. */
4efc6507 1326 if (jit_find_objf_with_entry_addr (cur_entry_addr) != NULL)
3a90f266 1327 continue;
4efc6507 1328
0756c555 1329 jit_register_code (gdbarch, cur_entry_addr, &cur_entry);
4efc6507
DE
1330 }
1331}
1332
9bb84c9f
YY
1333/* inferior_created observer. */
1334
1335static void
1336jit_inferior_created (struct target_ops *ops, int from_tty)
1337{
1338 jit_inferior_created_hook ();
1339}
1340
0756c555
DE
1341/* Exported routine to call when an inferior has been created. */
1342
1343void
1344jit_inferior_created_hook (void)
1345{
f5656ead 1346 jit_inferior_init (target_gdbarch ());
0756c555
DE
1347}
1348
1349/* Exported routine to call to re-set the jit breakpoints,
1350 e.g. when a program is rerun. */
1351
1352void
1353jit_breakpoint_re_set (void)
1354{
f5656ead 1355 jit_breakpoint_re_set_internal (target_gdbarch (),
8eacb197 1356 get_jit_program_space_data ());
03673fc7
PP
1357}
1358
1777feb0
MS
1359/* This function cleans up any code entries left over when the
1360 inferior exits. We get left over code when the inferior exits
1361 without unregistering its code, for example when it crashes. */
4efc6507
DE
1362
1363static void
a79b8f6e 1364jit_inferior_exit_hook (struct inferior *inf)
4efc6507 1365{
7e955d83 1366 for (objfile *objf : current_program_space->objfiles_safe ())
03bef283 1367 {
9a3c8263
SM
1368 struct jit_objfile_data *objf_data
1369 = (struct jit_objfile_data *) objfile_data (objf, jit_objfile_data);
4efc6507 1370
03bef283 1371 if (objf_data != NULL && objf_data->addr != 0)
268e4f09 1372 objf->unlink ();
03bef283 1373 }
03673fc7
PP
1374}
1375
4efc6507 1376void
0756c555 1377jit_event_handler (struct gdbarch *gdbarch)
4efc6507
DE
1378{
1379 struct jit_descriptor descriptor;
1380 struct jit_code_entry code_entry;
1381 CORE_ADDR entry_addr;
1382 struct objfile *objf;
1383
1384 /* Read the descriptor from remote memory. */
8eacb197
TT
1385 if (!jit_read_descriptor (gdbarch, &descriptor,
1386 get_jit_program_space_data ()))
03bef283 1387 return;
4efc6507
DE
1388 entry_addr = descriptor.relevant_entry;
1389
1777feb0 1390 /* Do the corresponding action. */
4efc6507
DE
1391 switch (descriptor.action_flag)
1392 {
1393 case JIT_NOACTION:
1394 break;
1395 case JIT_REGISTER:
0756c555
DE
1396 jit_read_code_entry (gdbarch, entry_addr, &code_entry);
1397 jit_register_code (gdbarch, entry_addr, &code_entry);
4efc6507
DE
1398 break;
1399 case JIT_UNREGISTER:
1400 objf = jit_find_objf_with_entry_addr (entry_addr);
1401 if (objf == NULL)
1777feb0
MS
1402 printf_unfiltered (_("Unable to find JITed code "
1403 "entry at address: %s\n"),
dfdbc9b4 1404 paddress (gdbarch, entry_addr));
4efc6507 1405 else
3a90f266 1406 objf->unlink ();
4efc6507
DE
1407
1408 break;
1409 default:
1410 error (_("Unknown action_flag value in JIT descriptor!"));
1411 break;
1412 }
1413}
1414
8eacb197 1415/* Called to free the data allocated to the jit_program_space_data slot. */
1825a88d
SD
1416
1417static void
1418free_objfile_data (struct objfile *objfile, void *data)
1419{
9a3c8263 1420 struct jit_objfile_data *objf_data = (struct jit_objfile_data *) data;
03bef283
TT
1421
1422 if (objf_data->register_code != NULL)
1423 {
8eacb197 1424 struct jit_program_space_data *ps_data;
03bef283 1425
cb60f420 1426 ps_data = jit_program_space_key.get (objfile->pspace);
8eacb197 1427 if (ps_data != NULL && ps_data->objfile == objfile)
4a556533
PA
1428 {
1429 ps_data->objfile = NULL;
2cd8cc0b
TT
1430 if (ps_data->jit_breakpoint != NULL)
1431 delete_breakpoint (ps_data->jit_breakpoint);
4a556533
PA
1432 ps_data->cached_code_address = 0;
1433 }
03bef283
TT
1434 }
1435
1825a88d
SD
1436 xfree (data);
1437}
1438
3623dc3a
SD
1439/* Initialize the jit_gdbarch_data slot with an instance of struct
1440 jit_gdbarch_data_type */
1441
1442static void *
1443jit_gdbarch_data_init (struct obstack *obstack)
1444{
8d749320
SM
1445 struct jit_gdbarch_data_type *data =
1446 XOBNEW (obstack, struct jit_gdbarch_data_type);
3623dc3a 1447
3623dc3a 1448 data->unwinder_registered = 0;
8d749320 1449
3623dc3a
SD
1450 return data;
1451}
1452
4efc6507
DE
1453void
1454_initialize_jit (void)
1455{
b8e0a31c 1456 jit_reader_dir = relocate_gdb_directory (JIT_READER_DIR,
3a90f266 1457 JIT_READER_DIR_RELOCATABLE);
ccce17b0
YQ
1458 add_setshow_zuinteger_cmd ("jit", class_maintenance, &jit_debug,
1459 _("Set JIT debugging."),
1460 _("Show JIT debugging."),
1461 _("When non-zero, JIT debugging is enabled."),
1462 NULL,
1463 show_jit_debug,
1464 &setdebuglist, &showdebuglist);
a255712f 1465
76727919
TT
1466 gdb::observers::inferior_created.attach (jit_inferior_created);
1467 gdb::observers::inferior_exit.attach (jit_inferior_exit_hook);
1468 gdb::observers::breakpoint_deleted.attach (jit_breakpoint_deleted);
f25c0135 1469
1825a88d
SD
1470 jit_objfile_data =
1471 register_objfile_data_with_cleanup (NULL, free_objfile_data);
3623dc3a 1472 jit_gdbarch_data = gdbarch_data_register_pre_init (jit_gdbarch_data_init);
784c47ee
SD
1473 if (is_dl_available ())
1474 {
6571a381
TT
1475 struct cmd_list_element *c;
1476
1477 c = add_com ("jit-reader-load", no_class, jit_reader_load_command, _("\
784c47ee
SD
1478Load FILE as debug info reader and unwinder for JIT compiled code.\n\
1479Usage: jit-reader-load FILE\n\
1480Try to load file FILE as a debug info reader (and unwinder) for\n\
1481JIT compiled code. The file is loaded from " JIT_READER_DIR ",\n\
1482relocated relative to the GDB executable if required."));
6571a381
TT
1483 set_cmd_completer (c, filename_completer);
1484
1485 c = add_com ("jit-reader-unload", no_class,
1486 jit_reader_unload_command, _("\
784c47ee 1487Unload the currently loaded JIT debug info reader.\n\
6571a381 1488Usage: jit-reader-unload\n\n\
784c47ee 1489Do \"help jit-reader-load\" for info on loading debug info readers."));
6571a381 1490 set_cmd_completer (c, noop_completer);
784c47ee 1491 }
4efc6507 1492}
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