]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blame - gdb/dtrace-probe.c
Automatic date update in version.in
[thirdparty/binutils-gdb.git] / gdb / dtrace-probe.c
CommitLineData
d4777acb
JM
1/* DTrace probe support for GDB.
2
e2882c85 3 Copyright (C) 2014-2018 Free Software Foundation, Inc.
d4777acb
JM
4
5 Contributed by Oracle, Inc.
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program. If not, see <http://www.gnu.org/licenses/>. */
21
22#include "defs.h"
23#include "probe.h"
24#include "vec.h"
25#include "elf-bfd.h"
26#include "gdbtypes.h"
27#include "obstack.h"
28#include "objfiles.h"
29#include "complaints.h"
30#include "value.h"
31#include "ax.h"
32#include "ax-gdb.h"
33#include "language.h"
34#include "parser-defs.h"
35#include "inferior.h"
36
37/* The type of the ELF sections where we will find the DOF programs
38 with information about probes. */
39
40#ifndef SHT_SUNW_dof
41# define SHT_SUNW_dof 0x6ffffff4
42#endif
43
d4777acb
JM
44/* The following structure represents a single argument for the
45 probe. */
46
47struct dtrace_probe_arg
48{
9c23b42f
SDJ
49 dtrace_probe_arg (struct type *type_, std::string &&type_str_,
50 expression_up &&expr_)
51 : type (type_), type_str (std::move (type_str_)),
52 expr (std::move (expr_))
53 {}
54
d4777acb
JM
55 /* The type of the probe argument. */
56 struct type *type;
57
58 /* A string describing the type. */
9c23b42f 59 std::string type_str;
d4777acb
JM
60
61 /* The argument converted to an internal GDB expression. */
9c23b42f 62 expression_up expr;
d4777acb
JM
63};
64
d4777acb
JM
65/* The following structure represents an enabler for a probe. */
66
67struct dtrace_probe_enabler
68{
69 /* Program counter where the is-enabled probe is installed. The
70 contents (nops, whatever...) stored at this address are
71 architecture dependent. */
72 CORE_ADDR address;
73};
74
9c23b42f
SDJ
75/* Class that implements the static probe methods for "stap" probes. */
76
77class dtrace_static_probe_ops : public static_probe_ops
78{
79public:
80 /* See probe.h. */
81 bool is_linespec (const char **linespecp) const override;
82
83 /* See probe.h. */
84 void get_probes (std::vector<probe *> *probesp,
85 struct objfile *objfile) const override;
86
87 /* See probe.h. */
88 const char *type_name () const override;
89
90 /* See probe.h. */
91 bool can_enable () const override
92 {
93 return true;
94 }
95
96 /* See probe.h. */
97 std::vector<struct info_probe_column> gen_info_probes_table_header
98 () const override;
99};
100
101/* DTrace static_probe_ops. */
102
103const dtrace_static_probe_ops dtrace_static_probe_ops;
d4777acb
JM
104
105/* The following structure represents a dtrace probe. */
106
9c23b42f 107class dtrace_probe : public probe
d4777acb 108{
9c23b42f
SDJ
109public:
110 /* Constructor for dtrace_probe. */
111 dtrace_probe (std::string &&name_, std::string &&provider_, CORE_ADDR address_,
112 struct gdbarch *arch_,
113 std::vector<struct dtrace_probe_arg> &&args_,
114 std::vector<struct dtrace_probe_enabler> &&enablers_)
115 : probe (std::move (name_), std::move (provider_), address_, arch_),
116 m_args (std::move (args_)),
117 m_enablers (std::move (enablers_)),
118 m_args_expr_built (false)
119 {}
120
121 /* See probe.h. */
122 CORE_ADDR get_relocated_address (struct objfile *objfile) override;
123
124 /* See probe.h. */
125 unsigned get_argument_count (struct frame_info *frame) override;
126
127 /* See probe.h. */
128 bool can_evaluate_arguments () const override;
129
130 /* See probe.h. */
131 struct value *evaluate_argument (unsigned n,
132 struct frame_info *frame) override;
133
134 /* See probe.h. */
135 void compile_to_ax (struct agent_expr *aexpr,
136 struct axs_value *axs_value,
137 unsigned n) override;
138
139 /* See probe.h. */
140 const static_probe_ops *get_static_ops () const override;
141
142 /* See probe.h. */
143 std::vector<const char *> gen_info_probes_table_values () const override;
144
145 /* See probe.h. */
146 void enable () override;
147
148 /* See probe.h. */
149 void disable () override;
150
151 /* Return the Nth argument of the probe. */
152 struct dtrace_probe_arg *get_arg_by_number (unsigned n,
153 struct gdbarch *gdbarch);
154
155 /* Build the GDB internal expressiosn that, once evaluated, will
156 calculate the values of the arguments of the probe. */
157 void build_arg_exprs (struct gdbarch *gdbarch);
158
159 /* Determine whether the probe is "enabled" or "disabled". A
160 disabled probe is a probe in which one or more enablers are
161 disabled. */
162 bool is_enabled () const;
163
164private:
d4777acb 165 /* A probe can have zero or more arguments. */
9c23b42f 166 std::vector<struct dtrace_probe_arg> m_args;
d4777acb
JM
167
168 /* A probe can have zero or more "enablers" associated with it. */
9c23b42f 169 std::vector<struct dtrace_probe_enabler> m_enablers;
d4777acb
JM
170
171 /* Whether the expressions for the arguments have been built. */
9c23b42f 172 bool m_args_expr_built;
d4777acb
JM
173};
174
d4777acb
JM
175/* DOF programs can contain an arbitrary number of sections of 26
176 different types. In order to support DTrace USDT probes we only
177 need to handle a subset of these section types, fortunately. These
178 section types are defined in the following enumeration.
179
180 See linux/dtrace/dof_defines.h for a complete list of section types
181 along with their values. */
182
183enum dtrace_dof_sect_type
184{
185 /* Null section. */
186 DTRACE_DOF_SECT_TYPE_NONE = 0,
187 /* A dof_ecbdesc_t. */
188 DTRACE_DOF_SECT_TYPE_ECBDESC = 3,
189 /* A string table. */
190 DTRACE_DOF_SECT_TYPE_STRTAB = 8,
191 /* A dof_provider_t */
192 DTRACE_DOF_SECT_TYPE_PROVIDER = 15,
193 /* Array of dof_probe_t */
194 DTRACE_DOF_SECT_TYPE_PROBES = 16,
195 /* An array of probe arg mappings. */
196 DTRACE_DOF_SECT_TYPE_PRARGS = 17,
197 /* An array of probe arg offsets. */
198 DTRACE_DOF_SECT_TYPE_PROFFS = 18,
199 /* An array of probe is-enabled offsets. */
200 DTRACE_DOF_SECT_TYPE_PRENOFFS = 26
201};
202
203/* The following collection of data structures map the structure of
204 DOF entities. Again, we only cover the subset of DOF used to
205 implement USDT probes.
206
207 See linux/dtrace/dof.h header for a complete list of data
208 structures. */
209
210/* Offsets to index the dofh_ident[] array defined below. */
211
212enum dtrace_dof_ident
213{
214 /* First byte of the magic number. */
215 DTRACE_DOF_ID_MAG0 = 0,
216 /* Second byte of the magic number. */
217 DTRACE_DOF_ID_MAG1 = 1,
218 /* Third byte of the magic number. */
219 DTRACE_DOF_ID_MAG2 = 2,
220 /* Fourth byte of the magic number. */
221 DTRACE_DOF_ID_MAG3 = 3,
222 /* An enum_dof_encoding value. */
223 DTRACE_DOF_ID_ENCODING = 5
224};
225
226/* Possible values for dofh_ident[DOF_ID_ENCODING]. */
227
228enum dtrace_dof_encoding
229{
230 /* The DOF program is little-endian. */
231 DTRACE_DOF_ENCODE_LSB = 1,
232 /* The DOF program is big-endian. */
233 DTRACE_DOF_ENCODE_MSB = 2
234};
235
236/* A DOF header, which describes the contents of a DOF program: number
237 of sections, size, etc. */
238
239struct dtrace_dof_hdr
240{
241 /* Identification bytes (see above). */
242 uint8_t dofh_ident[16];
243 /* File attribute flags (if any). */
244 uint32_t dofh_flags;
245 /* Size of file header in bytes. */
246 uint32_t dofh_hdrsize;
247 /* Size of section header in bytes. */
248 uint32_t dofh_secsize;
249 /* Number of section headers. */
250 uint32_t dofh_secnum;
251 /* File offset of section headers. */
252 uint64_t dofh_secoff;
253 /* File size of loadable portion. */
254 uint64_t dofh_loadsz;
255 /* File size of entire DOF file. */
256 uint64_t dofh_filesz;
257 /* Reserved for future use. */
258 uint64_t dofh_pad;
259};
260
261/* A DOF section, whose contents depend on its type. The several
262 supported section types are described in the enum
263 dtrace_dof_sect_type above. */
264
265struct dtrace_dof_sect
266{
267 /* Section type (see the define above). */
268 uint32_t dofs_type;
269 /* Section data memory alignment. */
270 uint32_t dofs_align;
271 /* Section flags (if any). */
272 uint32_t dofs_flags;
273 /* Size of section entry (if table). */
274 uint32_t dofs_entsize;
275 /* DOF + offset points to the section data. */
276 uint64_t dofs_offset;
277 /* Size of section data in bytes. */
278 uint64_t dofs_size;
279};
280
281/* A DOF provider, which is the provider of a probe. */
282
283struct dtrace_dof_provider
284{
285 /* Link to a DTRACE_DOF_SECT_TYPE_STRTAB section. */
286 uint32_t dofpv_strtab;
287 /* Link to a DTRACE_DOF_SECT_TYPE_PROBES section. */
288 uint32_t dofpv_probes;
289 /* Link to a DTRACE_DOF_SECT_TYPE_PRARGS section. */
290 uint32_t dofpv_prargs;
291 /* Link to a DTRACE_DOF_SECT_TYPE_PROFFS section. */
292 uint32_t dofpv_proffs;
293 /* Provider name string. */
294 uint32_t dofpv_name;
295 /* Provider attributes. */
296 uint32_t dofpv_provattr;
297 /* Module attributes. */
298 uint32_t dofpv_modattr;
299 /* Function attributes. */
300 uint32_t dofpv_funcattr;
301 /* Name attributes. */
302 uint32_t dofpv_nameattr;
303 /* Args attributes. */
304 uint32_t dofpv_argsattr;
305 /* Link to a DTRACE_DOF_SECT_PRENOFFS section. */
306 uint32_t dofpv_prenoffs;
307};
308
309/* A set of DOF probes and is-enabled probes sharing a base address
310 and several attributes. The particular locations and attributes of
311 each probe are maintained in arrays in several other DOF sections.
312 See the comment in dtrace_process_dof_probe for details on how
313 these attributes are stored. */
314
315struct dtrace_dof_probe
316{
317 /* Probe base address or offset. */
318 uint64_t dofpr_addr;
319 /* Probe function string. */
320 uint32_t dofpr_func;
321 /* Probe name string. */
322 uint32_t dofpr_name;
323 /* Native argument type strings. */
324 uint32_t dofpr_nargv;
325 /* Translated argument type strings. */
326 uint32_t dofpr_xargv;
327 /* Index of first argument mapping. */
328 uint32_t dofpr_argidx;
329 /* Index of first offset entry. */
330 uint32_t dofpr_offidx;
331 /* Native argument count. */
332 uint8_t dofpr_nargc;
333 /* Translated argument count. */
334 uint8_t dofpr_xargc;
335 /* Number of offset entries for probe. */
336 uint16_t dofpr_noffs;
337 /* Index of first is-enabled offset. */
338 uint32_t dofpr_enoffidx;
339 /* Number of is-enabled offsets. */
340 uint16_t dofpr_nenoffs;
341 /* Reserved for future use. */
342 uint16_t dofpr_pad1;
343 /* Reserved for future use. */
344 uint32_t dofpr_pad2;
345};
346
347/* DOF supports two different encodings: MSB (big-endian) and LSB
348 (little-endian). The encoding is itself encoded in the DOF header.
349 The following function returns an unsigned value in the host
350 endianness. */
351
352#define DOF_UINT(dof, field) \
353 extract_unsigned_integer ((gdb_byte *) &(field), \
354 sizeof ((field)), \
355 (((dof)->dofh_ident[DTRACE_DOF_ID_ENCODING] \
356 == DTRACE_DOF_ENCODE_MSB) \
357 ? BFD_ENDIAN_BIG : BFD_ENDIAN_LITTLE))
358
359/* The following macro applies a given byte offset to a DOF (a pointer
360 to a dtrace_dof_hdr structure) and returns the resulting
361 address. */
362
363#define DTRACE_DOF_PTR(dof, offset) (&((char *) (dof))[(offset)])
364
365/* The following macro returns a pointer to the beginning of a given
366 section in a DOF object. The section is referred to by its index
367 in the sections array. */
368
369#define DTRACE_DOF_SECT(dof, idx) \
370 ((struct dtrace_dof_sect *) \
371 DTRACE_DOF_PTR ((dof), \
372 DOF_UINT ((dof), (dof)->dofh_secoff) \
373 + ((idx) * DOF_UINT ((dof), (dof)->dofh_secsize))))
374
375/* Helper function to examine the probe described by the given PROBE
376 and PROVIDER data structures and add it to the PROBESP vector.
377 STRTAB, OFFTAB, EOFFTAB and ARGTAB are pointers to tables in the
378 DOF program containing the attributes for the probe. */
379
380static void
381dtrace_process_dof_probe (struct objfile *objfile,
aaa63a31
SM
382 struct gdbarch *gdbarch,
383 std::vector<probe *> *probesp,
d4777acb
JM
384 struct dtrace_dof_hdr *dof,
385 struct dtrace_dof_probe *probe,
386 struct dtrace_dof_provider *provider,
387 char *strtab, char *offtab, char *eofftab,
388 char *argtab, uint64_t strtab_size)
389{
390 int i, j, num_probes, num_enablers;
d4777acb
JM
391 char *p;
392
393 /* Each probe section can define zero or more probes of two
394 different types:
395
396 - probe->dofpr_noffs regular probes whose program counters are
397 stored in 32bit words starting at probe->dofpr_addr +
398 offtab[probe->dofpr_offidx].
399
400 - probe->dofpr_nenoffs is-enabled probes whose program counters
401 are stored in 32bit words starting at probe->dofpr_addr +
402 eofftab[probe->dofpr_enoffidx].
403
404 However is-enabled probes are not probes per-se, but an
405 optimization hack that is implemented in the kernel in a very
406 similar way than normal probes. This is how we support
407 is-enabled probes on GDB:
408
409 - Our probes are always DTrace regular probes.
410
411 - Our probes can be associated with zero or more "enablers". The
412 list of enablers is built from the is-enabled probes defined in
413 the Probe section.
414
415 - Probes having a non-empty list of enablers can be enabled or
416 disabled using the `enable probe' and `disable probe' commands
417 respectively. The `Enabled' column in the output of `info
418 probes' will read `yes' if the enablers are activated, `no'
419 otherwise.
420
421 - Probes having an empty list of enablers are always enabled.
422 The `Enabled' column in the output of `info probes' will
423 read `always'.
424
425 It follows that if there are DTrace is-enabled probes defined for
426 some provider/name but no DTrace regular probes defined then the
427 GDB user wont be able to enable/disable these conditionals. */
428
429 num_probes = DOF_UINT (dof, probe->dofpr_noffs);
430 if (num_probes == 0)
431 return;
432
433 /* Build the list of enablers for the probes defined in this Probe
434 DOF section. */
9c23b42f 435 std::vector<struct dtrace_probe_enabler> enablers;
d4777acb
JM
436 num_enablers = DOF_UINT (dof, probe->dofpr_nenoffs);
437 for (i = 0; i < num_enablers; i++)
438 {
439 struct dtrace_probe_enabler enabler;
440 uint32_t enabler_offset
441 = ((uint32_t *) eofftab)[DOF_UINT (dof, probe->dofpr_enoffidx) + i];
442
443 enabler.address = DOF_UINT (dof, probe->dofpr_addr)
444 + DOF_UINT (dof, enabler_offset);
9c23b42f 445 enablers.push_back (enabler);
d4777acb
JM
446 }
447
448 for (i = 0; i < num_probes; i++)
449 {
450 uint32_t probe_offset
451 = ((uint32_t *) offtab)[DOF_UINT (dof, probe->dofpr_offidx) + i];
d4777acb
JM
452
453 /* Set the provider and the name of the probe. */
9c23b42f
SDJ
454 const char *probe_provider
455 = strtab + DOF_UINT (dof, provider->dofpv_name);
456 const char *name = strtab + DOF_UINT (dof, probe->dofpr_name);
d4777acb
JM
457
458 /* The probe address. */
9c23b42f 459 CORE_ADDR address
d4777acb
JM
460 = DOF_UINT (dof, probe->dofpr_addr) + DOF_UINT (dof, probe_offset);
461
462 /* Number of arguments in the probe. */
9c23b42f 463 int probe_argc = DOF_UINT (dof, probe->dofpr_nargc);
d4777acb
JM
464
465 /* Store argument type descriptions. A description of the type
466 of the argument is in the (J+1)th null-terminated string
467 starting at 'strtab' + 'probe->dofpr_nargv'. */
9c23b42f 468 std::vector<struct dtrace_probe_arg> args;
d4777acb 469 p = strtab + DOF_UINT (dof, probe->dofpr_nargv);
9c23b42f 470 for (j = 0; j < probe_argc; j++)
d4777acb 471 {
4d01a485 472 expression_up expr;
d4777acb 473
ffdf88ec
SE
474 /* Set arg.expr to ensure all fields in expr are initialized and
475 the compiler will not warn when arg is used. */
9c23b42f 476 std::string type_str (p);
d4777acb
JM
477
478 /* Use strtab_size as a sentinel. */
07809eaf
SM
479 while (*p++ != '\0' && p - strtab < strtab_size)
480 ;
d4777acb
JM
481
482 /* Try to parse a type expression from the type string. If
483 this does not work then we set the type to `long
484 int'. */
9c23b42f 485 struct type *type = builtin_type (gdbarch)->builtin_long;
429e1e81
JB
486
487 TRY
488 {
92469284
SDJ
489 expr = parse_expression_with_language (type_str.c_str (),
490 language_c);
429e1e81
JB
491 }
492 CATCH (ex, RETURN_MASK_ERROR)
493 {
429e1e81
JB
494 }
495 END_CATCH
496
92469284
SDJ
497 if (expr != NULL && expr.get ()->elts[0].opcode == OP_TYPE)
498 type = expr.get ()->elts[1].type;
d4777acb 499
9c23b42f 500 args.emplace_back (type, std::move (type_str), std::move (expr));
d4777acb
JM
501 }
502
9c23b42f
SDJ
503 std::vector<struct dtrace_probe_enabler> enablers_copy = enablers;
504 dtrace_probe *ret = new dtrace_probe (std::string (name),
505 std::string (probe_provider),
506 address, gdbarch,
507 std::move (args),
508 std::move (enablers_copy));
d4777acb
JM
509
510 /* Successfully created probe. */
9c23b42f 511 probesp->push_back (ret);
d4777acb 512 }
d4777acb
JM
513}
514
515/* Helper function to collect the probes described in the DOF program
516 whose header is pointed by DOF and add them to the PROBESP vector.
517 SECT is the ELF section containing the DOF program and OBJFILE is
518 its containing object file. */
519
520static void
521dtrace_process_dof (asection *sect, struct objfile *objfile,
aaa63a31 522 std::vector<probe *> *probesp, struct dtrace_dof_hdr *dof)
d4777acb 523{
d4777acb
JM
524 struct gdbarch *gdbarch = get_objfile_arch (objfile);
525 struct dtrace_dof_sect *section;
526 int i;
527
528 /* The first step is to check for the DOF magic number. If no valid
529 DOF data is found in the section then a complaint is issued to
530 the user and the section skipped. */
531 if (dof->dofh_ident[DTRACE_DOF_ID_MAG0] != 0x7F
532 || dof->dofh_ident[DTRACE_DOF_ID_MAG1] != 'D'
533 || dof->dofh_ident[DTRACE_DOF_ID_MAG2] != 'O'
534 || dof->dofh_ident[DTRACE_DOF_ID_MAG3] != 'F')
535 goto invalid_dof_data;
536
537 /* Make sure the encoding mark is either DTRACE_DOF_ENCODE_LSB or
538 DTRACE_DOF_ENCODE_MSB. */
539 if (dof->dofh_ident[DTRACE_DOF_ID_ENCODING] != DTRACE_DOF_ENCODE_LSB
540 && dof->dofh_ident[DTRACE_DOF_ID_ENCODING] != DTRACE_DOF_ENCODE_MSB)
541 goto invalid_dof_data;
542
543 /* Make sure this DOF is not an enabling DOF, i.e. there are no ECB
544 Description sections. */
545 section = (struct dtrace_dof_sect *) DTRACE_DOF_PTR (dof,
546 DOF_UINT (dof, dof->dofh_secoff));
547 for (i = 0; i < DOF_UINT (dof, dof->dofh_secnum); i++, section++)
548 if (section->dofs_type == DTRACE_DOF_SECT_TYPE_ECBDESC)
549 return;
550
551 /* Iterate over any section of type Provider and extract the probe
552 information from them. If there are no "provider" sections on
553 the DOF then we just return. */
554 section = (struct dtrace_dof_sect *) DTRACE_DOF_PTR (dof,
555 DOF_UINT (dof, dof->dofh_secoff));
556 for (i = 0; i < DOF_UINT (dof, dof->dofh_secnum); i++, section++)
557 if (DOF_UINT (dof, section->dofs_type) == DTRACE_DOF_SECT_TYPE_PROVIDER)
558 {
559 struct dtrace_dof_provider *provider = (struct dtrace_dof_provider *)
560 DTRACE_DOF_PTR (dof, DOF_UINT (dof, section->dofs_offset));
561 struct dtrace_dof_sect *strtab_s
562 = DTRACE_DOF_SECT (dof, DOF_UINT (dof, provider->dofpv_strtab));
563 struct dtrace_dof_sect *probes_s
564 = DTRACE_DOF_SECT (dof, DOF_UINT (dof, provider->dofpv_probes));
565 struct dtrace_dof_sect *args_s
566 = DTRACE_DOF_SECT (dof, DOF_UINT (dof, provider->dofpv_prargs));
567 struct dtrace_dof_sect *offsets_s
568 = DTRACE_DOF_SECT (dof, DOF_UINT (dof, provider->dofpv_proffs));
569 struct dtrace_dof_sect *eoffsets_s
570 = DTRACE_DOF_SECT (dof, DOF_UINT (dof, provider->dofpv_prenoffs));
571 char *strtab = DTRACE_DOF_PTR (dof, DOF_UINT (dof, strtab_s->dofs_offset));
572 char *offtab = DTRACE_DOF_PTR (dof, DOF_UINT (dof, offsets_s->dofs_offset));
573 char *eofftab = DTRACE_DOF_PTR (dof, DOF_UINT (dof, eoffsets_s->dofs_offset));
574 char *argtab = DTRACE_DOF_PTR (dof, DOF_UINT (dof, args_s->dofs_offset));
575 unsigned int entsize = DOF_UINT (dof, probes_s->dofs_entsize);
576 int num_probes;
577
47e9c225
JB
578 if (DOF_UINT (dof, section->dofs_size)
579 < sizeof (struct dtrace_dof_provider))
580 {
581 /* The section is smaller than expected, so do not use it.
582 This has been observed on x86-solaris 10. */
583 goto invalid_dof_data;
584 }
585
d4777acb
JM
586 /* Very, unlikely, but could crash gdb if not handled
587 properly. */
588 if (entsize == 0)
589 goto invalid_dof_data;
590
591 num_probes = DOF_UINT (dof, probes_s->dofs_size) / entsize;
592
593 for (i = 0; i < num_probes; i++)
594 {
595 struct dtrace_dof_probe *probe = (struct dtrace_dof_probe *)
596 DTRACE_DOF_PTR (dof, DOF_UINT (dof, probes_s->dofs_offset)
597 + (i * DOF_UINT (dof, probes_s->dofs_entsize)));
598
599 dtrace_process_dof_probe (objfile,
600 gdbarch, probesp,
601 dof, probe,
602 provider, strtab, offtab, eofftab, argtab,
603 DOF_UINT (dof, strtab_s->dofs_size));
604 }
605 }
606
607 return;
608
609 invalid_dof_data:
b98664d3 610 complaint (_("skipping section '%s' which does not contain valid DOF data."),
d4777acb
JM
611 sect->name);
612}
613
9c23b42f 614/* Implementation of 'build_arg_exprs' method. */
d4777acb 615
9c23b42f
SDJ
616void
617dtrace_probe::build_arg_exprs (struct gdbarch *gdbarch)
d4777acb 618{
9c23b42f
SDJ
619 size_t argc = 0;
620 m_args_expr_built = true;
d4777acb
JM
621
622 /* Iterate over the arguments in the probe and build the
623 corresponding GDB internal expression that will generate the
624 value of the argument when executed at the PC of the probe. */
30649c14 625 for (dtrace_probe_arg &arg : m_args)
d4777acb 626 {
d4777acb
JM
627 /* Initialize the expression buffer in the parser state. The
628 language does not matter, since we are using our own
629 parser. */
e9d9f57e 630 parser_state pstate (10, current_language, gdbarch);
d4777acb
JM
631
632 /* The argument value, which is ABI dependent and casted to
633 `long int'. */
9c23b42f 634 gdbarch_dtrace_parse_probe_argument (gdbarch, &pstate, argc);
d4777acb 635
d4777acb
JM
636 /* Casting to the expected type, but only if the type was
637 recognized at probe load time. Otherwise the argument will
638 be evaluated as the long integer passed to the probe. */
9c23b42f 639 if (arg.type != NULL)
d4777acb
JM
640 {
641 write_exp_elt_opcode (&pstate, UNOP_CAST);
9c23b42f 642 write_exp_elt_type (&pstate, arg.type);
d4777acb
JM
643 write_exp_elt_opcode (&pstate, UNOP_CAST);
644 }
645
e9d9f57e 646 arg.expr = pstate.release ();
9c23b42f
SDJ
647 prefixify_expression (arg.expr.get ());
648 ++argc;
d4777acb
JM
649 }
650}
651
9c23b42f 652/* Implementation of 'get_arg_by_number' method. */
d4777acb 653
9c23b42f
SDJ
654struct dtrace_probe_arg *
655dtrace_probe::get_arg_by_number (unsigned n, struct gdbarch *gdbarch)
d4777acb 656{
9c23b42f
SDJ
657 if (!m_args_expr_built)
658 this->build_arg_exprs (gdbarch);
659
660 if (n > m_args.size ())
661 internal_error (__FILE__, __LINE__,
662 _("Probe '%s' has %d arguments, but GDB is requesting\n"
663 "argument %u. This should not happen. Please\n"
664 "report this bug."),
665 this->get_name ().c_str (),
666 (int) m_args.size (), n);
667
668 return &m_args[n];
d4777acb
JM
669}
670
9c23b42f 671/* Implementation of the probe is_enabled method. */
d4777acb 672
9c23b42f
SDJ
673bool
674dtrace_probe::is_enabled () const
d4777acb 675{
9c23b42f 676 struct gdbarch *gdbarch = this->get_gdbarch ();
d4777acb 677
30649c14 678 for (const dtrace_probe_enabler &enabler : m_enablers)
9c23b42f
SDJ
679 if (!gdbarch_dtrace_probe_is_enabled (gdbarch, enabler.address))
680 return false;
d4777acb 681
9c23b42f 682 return true;
d4777acb
JM
683}
684
685/* Implementation of the get_probe_address method. */
686
9c23b42f
SDJ
687CORE_ADDR
688dtrace_probe::get_relocated_address (struct objfile *objfile)
d4777acb 689{
9c23b42f
SDJ
690 return this->get_address () + ANOFFSET (objfile->section_offsets,
691 SECT_OFF_DATA (objfile));
d4777acb
JM
692}
693
9c23b42f 694/* Implementation of the get_argument_count method. */
d4777acb 695
9c23b42f
SDJ
696unsigned
697dtrace_probe::get_argument_count (struct frame_info *frame)
d4777acb 698{
9c23b42f 699 return m_args.size ();
d4777acb
JM
700}
701
9c23b42f 702/* Implementation of the can_evaluate_arguments method. */
d4777acb 703
9c23b42f
SDJ
704bool
705dtrace_probe::can_evaluate_arguments () const
d4777acb 706{
9c23b42f 707 struct gdbarch *gdbarch = this->get_gdbarch ();
d4777acb 708
d4777acb
JM
709 return gdbarch_dtrace_parse_probe_argument_p (gdbarch);
710}
711
9c23b42f 712/* Implementation of the evaluate_argument method. */
d4777acb 713
9c23b42f
SDJ
714struct value *
715dtrace_probe::evaluate_argument (unsigned n,
716 struct frame_info *frame)
d4777acb 717{
9c23b42f 718 struct gdbarch *gdbarch = this->get_gdbarch ();
d4777acb
JM
719 struct dtrace_probe_arg *arg;
720 int pos = 0;
721
9c23b42f
SDJ
722 arg = this->get_arg_by_number (n, gdbarch);
723 return evaluate_subexp_standard (arg->type, arg->expr.get (), &pos,
724 EVAL_NORMAL);
d4777acb
JM
725}
726
727/* Implementation of the compile_to_ax method. */
728
9c23b42f
SDJ
729void
730dtrace_probe::compile_to_ax (struct agent_expr *expr, struct axs_value *value,
731 unsigned n)
d4777acb 732{
d4777acb
JM
733 struct dtrace_probe_arg *arg;
734 union exp_element *pc;
735
9c23b42f 736 arg = this->get_arg_by_number (n, expr->gdbarch);
d4777acb
JM
737
738 pc = arg->expr->elts;
9c23b42f 739 gen_expr (arg->expr.get (), &pc, expr, value);
d4777acb
JM
740
741 require_rvalue (expr, value);
742 value->type = arg->type;
743}
744
9c23b42f 745/* Implementation of the 'get_static_ops' method. */
d4777acb 746
9c23b42f
SDJ
747const static_probe_ops *
748dtrace_probe::get_static_ops () const
d4777acb 749{
9c23b42f 750 return &dtrace_static_probe_ops;
d4777acb
JM
751}
752
753/* Implementation of the gen_info_probes_table_values method. */
754
9c23b42f
SDJ
755std::vector<const char *>
756dtrace_probe::gen_info_probes_table_values () const
d4777acb 757{
d4777acb
JM
758 const char *val = NULL;
759
9c23b42f 760 if (m_enablers.empty ())
d4777acb 761 val = "always";
9c23b42f 762 else if (!gdbarch_dtrace_probe_is_enabled_p (this->get_gdbarch ()))
d4777acb 763 val = "unknown";
9c23b42f 764 else if (this->is_enabled ())
d4777acb
JM
765 val = "yes";
766 else
767 val = "no";
768
9c23b42f 769 return std::vector<const char *> { val };
d4777acb
JM
770}
771
9c23b42f 772/* Implementation of the enable method. */
d4777acb 773
9c23b42f
SDJ
774void
775dtrace_probe::enable ()
d4777acb 776{
9c23b42f 777 struct gdbarch *gdbarch = this->get_gdbarch ();
d4777acb
JM
778
779 /* Enabling a dtrace probe implies patching the text section of the
780 running process, so make sure the inferior is indeed running. */
d7e15655 781 if (inferior_ptid == null_ptid)
d4777acb
JM
782 error (_("No inferior running"));
783
784 /* Fast path. */
9c23b42f 785 if (this->is_enabled ())
d4777acb
JM
786 return;
787
788 /* Iterate over all defined enabler in the given probe and enable
789 them all using the corresponding gdbarch hook. */
30649c14 790 for (const dtrace_probe_enabler &enabler : m_enablers)
d4777acb 791 if (gdbarch_dtrace_enable_probe_p (gdbarch))
9c23b42f 792 gdbarch_dtrace_enable_probe (gdbarch, enabler.address);
d4777acb
JM
793}
794
795
796/* Implementation of the disable_probe method. */
797
9c23b42f
SDJ
798void
799dtrace_probe::disable ()
d4777acb 800{
9c23b42f 801 struct gdbarch *gdbarch = this->get_gdbarch ();
d4777acb
JM
802
803 /* Disabling a dtrace probe implies patching the text section of the
804 running process, so make sure the inferior is indeed running. */
d7e15655 805 if (inferior_ptid == null_ptid)
d4777acb
JM
806 error (_("No inferior running"));
807
808 /* Fast path. */
9c23b42f 809 if (!this->is_enabled ())
d4777acb
JM
810 return;
811
812 /* Are we trying to disable a probe that does not have any enabler
813 associated? */
9c23b42f
SDJ
814 if (m_enablers.empty ())
815 error (_("Probe %s:%s cannot be disabled: no enablers."),
816 this->get_provider ().c_str (), this->get_name ().c_str ());
d4777acb
JM
817
818 /* Iterate over all defined enabler in the given probe and disable
819 them all using the corresponding gdbarch hook. */
30649c14 820 for (dtrace_probe_enabler &enabler : m_enablers)
d4777acb 821 if (gdbarch_dtrace_disable_probe_p (gdbarch))
9c23b42f 822 gdbarch_dtrace_disable_probe (gdbarch, enabler.address);
d4777acb
JM
823}
824
9c23b42f 825/* Implementation of the is_linespec method. */
d4777acb 826
9c23b42f
SDJ
827bool
828dtrace_static_probe_ops::is_linespec (const char **linespecp) const
d4777acb 829{
9c23b42f
SDJ
830 static const char *const keywords[] = { "-pdtrace", "-probe-dtrace", NULL };
831
832 return probe_is_linespec_by_keyword (linespecp, keywords);
833}
834
835/* Implementation of the get_probes method. */
836
837void
838dtrace_static_probe_ops::get_probes (std::vector<probe *> *probesp,
839 struct objfile *objfile) const
840{
841 bfd *abfd = objfile->obfd;
842 asection *sect = NULL;
843
844 /* Do nothing in case this is a .debug file, instead of the objfile
845 itself. */
846 if (objfile->separate_debug_objfile_backlink != NULL)
847 return;
848
849 /* Iterate over the sections in OBJFILE looking for DTrace
850 information. */
851 for (sect = abfd->sections; sect != NULL; sect = sect->next)
852 {
853 if (elf_section_data (sect)->this_hdr.sh_type == SHT_SUNW_dof)
854 {
855 bfd_byte *dof;
856
857 /* Read the contents of the DOF section and then process it to
858 extract the information of any probe defined into it. */
859 if (!bfd_malloc_and_get_section (abfd, sect, &dof))
b98664d3 860 complaint (_("could not obtain the contents of"
9c23b42f
SDJ
861 "section '%s' in objfile `%s'."),
862 sect->name, abfd->filename);
863
864 dtrace_process_dof (sect, objfile, probesp,
865 (struct dtrace_dof_hdr *) dof);
866 xfree (dof);
867 }
868 }
869}
870
871/* Implementation of the type_name method. */
872
873const char *
874dtrace_static_probe_ops::type_name () const
875{
876 return "dtrace";
877}
878
879/* Implementation of the gen_info_probes_table_header method. */
880
881std::vector<struct info_probe_column>
882dtrace_static_probe_ops::gen_info_probes_table_header () const
883{
884 struct info_probe_column dtrace_probe_column;
885
886 dtrace_probe_column.field_name = "enabled";
887 dtrace_probe_column.print_name = _("Enabled");
888
889 return std::vector<struct info_probe_column> { dtrace_probe_column };
890}
d4777acb
JM
891
892/* Implementation of the `info probes dtrace' command. */
893
894static void
8d97dc1c 895info_probes_dtrace_command (const char *arg, int from_tty)
d4777acb 896{
9c23b42f 897 info_probes_for_spops (arg, from_tty, &dtrace_static_probe_ops);
d4777acb
JM
898}
899
d4777acb
JM
900void
901_initialize_dtrace_probe (void)
902{
9c23b42f 903 all_static_probe_ops.push_back (&dtrace_static_probe_ops);
d4777acb
JM
904
905 add_cmd ("dtrace", class_info, info_probes_dtrace_command,
906 _("\
907Show information about DTrace static probes.\n\
908Usage: info probes dtrace [PROVIDER [NAME [OBJECT]]]\n\
909Each argument is a regular expression, used to select probes.\n\
910PROVIDER matches probe provider names.\n\
911NAME matches the probe names.\n\
912OBJECT matches the executable or shared library name."),
913 info_probes_cmdlist_get ());
914}