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252b5132 1/* Interface between the opcode library and its callers.
4f1d9bd8 2
2571583a 3 Copyright (C) 1999-2017 Free Software Foundation, Inc.
d70c5fc7 4
4f1d9bd8
NC
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
e4e42b45 7 the Free Software Foundation; either version 3, or (at your option)
4f1d9bd8
NC
8 any later version.
9
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
14
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the Free Software
e172dbf8
NC
17 Foundation, Inc., 51 Franklin Street - Fifth Floor,
18 Boston, MA 02110-1301, USA.
d70c5fc7 19
252b5132
RH
20 Written by Cygnus Support, 1993.
21
22 The opcode library (libopcodes.a) provides instruction decoders for
23 a large variety of instruction sets, callable with an identical
24 interface, for making instruction-processing programs more independent
25 of the instruction set being processed. */
26
27#ifndef DIS_ASM_H
28#define DIS_ASM_H
29
7d7a6736
ILT
30#ifdef __cplusplus
31extern "C" {
32#endif
33
252b5132
RH
34#include <stdio.h>
35#include "bfd.h"
36
d908c8af 37 typedef int (*fprintf_ftype) (void *, const char*, ...) ATTRIBUTE_FPTR_PRINTF_2;
252b5132 38
1c0d3aa6
NC
39enum dis_insn_type
40{
1316c8b3
NC
41 dis_noninsn, /* Not a valid instruction. */
42 dis_nonbranch, /* Not a branch instruction. */
43 dis_branch, /* Unconditional branch. */
44 dis_condbranch, /* Conditional branch. */
45 dis_jsr, /* Jump to subroutine. */
46 dis_condjsr, /* Conditional jump to subroutine. */
47 dis_dref, /* Data reference instruction. */
48 dis_dref2 /* Two data references in instruction. */
252b5132
RH
49};
50
d70c5fc7 51/* This struct is passed into the instruction decoding routine,
252b5132
RH
52 and is passed back out into each callback. The various fields are used
53 for conveying information from your main routine into your callbacks,
54 for passing information into the instruction decoders (such as the
55 addresses of the callback functions), or for passing information
56 back from the instruction decoders to their callers.
57
58 It must be initialized before it is first passed; this can be done
59 by hand, or using one of the initialization macros below. */
60
1c0d3aa6
NC
61typedef struct disassemble_info
62{
252b5132 63 fprintf_ftype fprintf_func;
8cf3f354
AM
64 void *stream;
65 void *application_data;
252b5132
RH
66
67 /* Target description. We could replace this with a pointer to the bfd,
68 but that would require one. There currently isn't any such requirement
69 so to avoid introducing one we record these explicitly. */
70 /* The bfd_flavour. This can be bfd_target_unknown_flavour. */
71 enum bfd_flavour flavour;
72 /* The bfd_arch value. */
73 enum bfd_architecture arch;
74 /* The bfd_mach value. */
75 unsigned long mach;
76 /* Endianness (for bi-endian cpus). Mono-endian cpus can ignore this. */
77 enum bfd_endian endian;
6a4fe770
SS
78 /* Endianness of code, for mixed-endian situations such as ARM BE8. */
79 enum bfd_endian endian_code;
cadaa522
FCE
80 /* An arch/mach-specific bitmask of selected instruction subsets, mainly
81 for processors with run-time-switchable instruction sets. The default,
82 zero, means that there is no constraint. CGEN-based opcodes ports
83 may use ISA_foo masks. */
16175d96 84 void *insn_sets;
252b5132 85
ca6d9fb3
HPN
86 /* Some targets need information about the current section to accurately
87 display insns. If this is NULL, the target disassembler function
88 will have to make its best guess. */
89 asection *section;
90
252b5132
RH
91 /* An array of pointers to symbols either at the location being disassembled
92 or at the start of the function being disassembled. The array is sorted
93 so that the first symbol is intended to be the one used. The others are
94 present for any misc. purposes. This is not set reliably, but if it is
95 not NULL, it is correct. */
96 asymbol **symbols;
97 /* Number of symbols in array. */
98 int num_symbols;
99
2087ad84
PB
100 /* Symbol table provided for targets that want to look at it. This is
101 used on Arm to find mapping symbols and determine Arm/Thumb code. */
102 asymbol **symtab;
103 int symtab_pos;
104 int symtab_size;
105
252b5132
RH
106 /* For use by the disassembler.
107 The top 16 bits are reserved for public use (and are documented here).
108 The bottom 16 bits are for the internal use of the disassembler. */
109 unsigned long flags;
1316c8b3
NC
110 /* Set if the disassembler has determined that there are one or more
111 relocations associated with the instruction being disassembled. */
112#define INSN_HAS_RELOC (1 << 31)
113 /* Set if the user has requested the disassembly of data as well as code. */
114#define DISASSEMBLE_DATA (1 << 30)
0313a2b8
NC
115 /* Set if the user has specifically set the machine type encoded in the
116 mach field of this structure. */
117#define USER_SPECIFIED_MACHINE_TYPE (1 << 29)
1316c8b3
NC
118
119 /* Use internally by the target specific disassembly code. */
8cf3f354 120 void *private_data;
252b5132
RH
121
122 /* Function used to get bytes to disassemble. MEMADDR is the
123 address of the stuff to be disassembled, MYADDR is the address to
124 put the bytes in, and LENGTH is the number of bytes to read.
125 INFO is a pointer to this struct.
126 Returns an errno value or 0 for success. */
127 int (*read_memory_func)
8cf3f354 128 (bfd_vma memaddr, bfd_byte *myaddr, unsigned int length,
e7f8eadb 129 struct disassemble_info *dinfo);
252b5132
RH
130
131 /* Function which should be called if we get an error that we can't
132 recover from. STATUS is the errno value from read_memory_func and
133 MEMADDR is the address that we were trying to read. INFO is a
134 pointer to this struct. */
135 void (*memory_error_func)
e7f8eadb 136 (int status, bfd_vma memaddr, struct disassemble_info *dinfo);
252b5132
RH
137
138 /* Function called to print ADDR. */
139 void (*print_address_func)
e7f8eadb 140 (bfd_vma addr, struct disassemble_info *dinfo);
252b5132
RH
141
142 /* Function called to determine if there is a symbol at the given ADDR.
143 If there is, the function returns 1, otherwise it returns 0.
144 This is used by ports which support an overlay manager where
145 the overlay number is held in the top part of an address. In
146 some circumstances we want to include the overlay number in the
147 address, (normally because there is a symbol associated with
148 that address), but sometimes we want to mask out the overlay bits. */
149 int (* symbol_at_address_func)
e7f8eadb 150 (bfd_vma addr, struct disassemble_info *dinfo);
252b5132 151
22a398e1
NC
152 /* Function called to check if a SYMBOL is can be displayed to the user.
153 This is used by some ports that want to hide special symbols when
154 displaying debugging outout. */
155 bfd_boolean (* symbol_is_valid)
e7f8eadb 156 (asymbol *, struct disassemble_info *dinfo);
d70c5fc7 157
252b5132
RH
158 /* These are for buffer_read_memory. */
159 bfd_byte *buffer;
160 bfd_vma buffer_vma;
f6af82bd 161 unsigned int buffer_length;
252b5132
RH
162
163 /* This variable may be set by the instruction decoder. It suggests
164 the number of bytes objdump should display on a single line. If
165 the instruction decoder sets this, it should always set it to
166 the same value in order to get reasonable looking output. */
167 int bytes_per_line;
168
22a398e1 169 /* The next two variables control the way objdump displays the raw data. */
252b5132
RH
170 /* For example, if bytes_per_line is 8 and bytes_per_chunk is 4, the */
171 /* output will look like this:
172 00: 00000000 00000000
173 with the chunks displayed according to "display_endian". */
174 int bytes_per_chunk;
175 enum bfd_endian display_endian;
176
d70c5fc7 177 /* Number of octets per incremented target address
3c3bdf30 178 Normally one, but some DSPs have byte sizes of 16 or 32 bits. */
f6af82bd 179 unsigned int octets_per_byte;
940b2b78 180
0bcb06d2
AS
181 /* The number of zeroes we want to see at the end of a section before we
182 start skipping them. */
183 unsigned int skip_zeroes;
184
185 /* The number of zeroes to skip at the end of a section. If the number
186 of zeroes at the end is between SKIP_ZEROES_AT_END and SKIP_ZEROES,
187 they will be disassembled. If there are fewer than
188 SKIP_ZEROES_AT_END, they will be skipped. This is a heuristic
189 attempt to avoid disassembling zeroes inserted by section
190 alignment. */
191 unsigned int skip_zeroes_at_end;
192
d99b6465
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193 /* Whether the disassembler always needs the relocations. */
194 bfd_boolean disassembler_needs_relocs;
195
252b5132
RH
196 /* Results from instruction decoders. Not all decoders yet support
197 this information. This info is set each time an instruction is
198 decoded, and is only valid for the last such instruction.
199
200 To determine whether this decoder supports this information, set
201 insn_info_valid to 0, decode an instruction, then check it. */
202
203 char insn_info_valid; /* Branch info has been set. */
204 char branch_delay_insns; /* How many sequential insn's will run before
205 a branch takes effect. (0 = normal) */
206 char data_size; /* Size of data reference in insn, in bytes */
207 enum dis_insn_type insn_type; /* Type of instruction */
208 bfd_vma target; /* Target address of branch or dref, if known;
209 zero if unknown. */
210 bfd_vma target2; /* Second target address for dref2 */
211
dd92f639
NC
212 /* Command line options specific to the target disassembler. */
213 char * disassembler_options;
214
bdc4de1b
NC
215 /* If non-zero then try not disassemble beyond this address, even if
216 there are values left in the buffer. This address is the address
217 of the nearest symbol forwards from the start of the disassembly,
218 and it is assumed that it lies on the boundary between instructions.
219 If an instruction spans this address then this is an error in the
220 file being disassembled. */
221 bfd_vma stop_vma;
222
252b5132
RH
223} disassemble_info;
224
65b48a81
PB
225/* This struct is used to pass information about valid disassembler options
226 and their descriptions from the target to the generic GDB functions that
227 set and display them. */
228
229typedef struct
230{
231 const char **name;
232 const char **description;
233} disasm_options_t;
234
252b5132
RH
235\f
236/* Standard disassemblers. Disassemble one instruction at the given
19222dc0 237 target address. Return number of octets processed. */
8cf3f354
AM
238typedef int (*disassembler_ftype) (bfd_vma, disassemble_info *);
239
a06ea964 240extern int print_insn_aarch64 (bfd_vma, disassemble_info *);
8cf3f354 241extern int print_insn_alpha (bfd_vma, disassemble_info *);
8cf3f354 242extern int print_insn_avr (bfd_vma, disassemble_info *);
dc603df5 243extern int print_insn_bfin (bfd_vma, disassemble_info *);
1c0d3aa6
NC
244extern int print_insn_big_arm (bfd_vma, disassemble_info *);
245extern int print_insn_big_mips (bfd_vma, disassemble_info *);
36591ba1 246extern int print_insn_big_nios2 (bfd_vma, disassemble_info *);
1c0d3aa6
NC
247extern int print_insn_big_powerpc (bfd_vma, disassemble_info *);
248extern int print_insn_big_score (bfd_vma, disassemble_info *);
3d3d428f 249extern int print_insn_cr16 (bfd_vma, disassemble_info *);
1c0d3aa6 250extern int print_insn_crx (bfd_vma, disassemble_info *);
8cf3f354
AM
251extern int print_insn_d10v (bfd_vma, disassemble_info *);
252extern int print_insn_d30v (bfd_vma, disassemble_info *);
253extern int print_insn_dlx (bfd_vma, disassemble_info *);
cfb8c092 254extern int print_insn_epiphany (bfd_vma, disassemble_info *);
8cf3f354 255extern int print_insn_fr30 (bfd_vma, disassemble_info *);
1c0d3aa6 256extern int print_insn_frv (bfd_vma, disassemble_info *);
3f8107ab 257extern int print_insn_ft32 (bfd_vma, disassemble_info *);
1c0d3aa6
NC
258extern int print_insn_h8300 (bfd_vma, disassemble_info *);
259extern int print_insn_h8300h (bfd_vma, disassemble_info *);
260extern int print_insn_h8300s (bfd_vma, disassemble_info *);
261extern int print_insn_h8500 (bfd_vma, disassemble_info *);
8cf3f354 262extern int print_insn_hppa (bfd_vma, disassemble_info *);
1c0d3aa6
NC
263extern int print_insn_i370 (bfd_vma, disassemble_info *);
264extern int print_insn_i386 (bfd_vma, disassemble_info *);
265extern int print_insn_i386_att (bfd_vma, disassemble_info *);
266extern int print_insn_i386_intel (bfd_vma, disassemble_info *);
8cf3f354
AM
267extern int print_insn_i860 (bfd_vma, disassemble_info *);
268extern int print_insn_i960 (bfd_vma, disassemble_info *);
1c0d3aa6 269extern int print_insn_ia64 (bfd_vma, disassemble_info *);
8cf3f354 270extern int print_insn_ip2k (bfd_vma, disassemble_info *);
1c0d3aa6
NC
271extern int print_insn_iq2000 (bfd_vma, disassemble_info *);
272extern int print_insn_little_arm (bfd_vma, disassemble_info *);
273extern int print_insn_little_mips (bfd_vma, disassemble_info *);
36591ba1 274extern int print_insn_little_nios2 (bfd_vma, disassemble_info *);
1c0d3aa6 275extern int print_insn_little_powerpc (bfd_vma, disassemble_info *);
e23eba97 276extern int print_insn_riscv (bfd_vma, disassemble_info *);
1c0d3aa6 277extern int print_insn_little_score (bfd_vma, disassemble_info *);
84e94c90 278extern int print_insn_lm32 (bfd_vma, disassemble_info *);
1c0d3aa6 279extern int print_insn_m32c (bfd_vma, disassemble_info *);
8cf3f354 280extern int print_insn_m32r (bfd_vma, disassemble_info *);
1c0d3aa6
NC
281extern int print_insn_m68hc11 (bfd_vma, disassemble_info *);
282extern int print_insn_m68hc12 (bfd_vma, disassemble_info *);
6927f982
NC
283extern int print_insn_m9s12x (bfd_vma, disassemble_info *);
284extern int print_insn_m9s12xg (bfd_vma, disassemble_info *);
1c0d3aa6 285extern int print_insn_m68k (bfd_vma, disassemble_info *);
8cf3f354
AM
286extern int print_insn_m88k (bfd_vma, disassemble_info *);
287extern int print_insn_mcore (bfd_vma, disassemble_info *);
d6eafc3e 288extern int print_insn_mep (bfd_vma, disassemble_info *);
a3c62988 289extern int print_insn_metag (bfd_vma, disassemble_info *);
7ba29e2a 290extern int print_insn_microblaze (bfd_vma, disassemble_info *);
8cf3f354
AM
291extern int print_insn_mmix (bfd_vma, disassemble_info *);
292extern int print_insn_mn10200 (bfd_vma, disassemble_info *);
293extern int print_insn_mn10300 (bfd_vma, disassemble_info *);
20135e4c 294extern int print_insn_moxie (bfd_vma, disassemble_info *);
8cf3f354 295extern int print_insn_msp430 (bfd_vma, disassemble_info *);
1c0d3aa6 296extern int print_insn_mt (bfd_vma, disassemble_info *);
35c08157 297extern int print_insn_nds32 (bfd_vma, disassemble_info *);
8cf3f354 298extern int print_insn_ns32k (bfd_vma, disassemble_info *);
73589c9d 299extern int print_insn_or1k (bfd_vma, disassemble_info *);
8cf3f354
AM
300extern int print_insn_pdp11 (bfd_vma, disassemble_info *);
301extern int print_insn_pj (bfd_vma, disassemble_info *);
889294f6 302extern int print_insn_pru (bfd_vma, disassemble_info *);
8cf3f354 303extern int print_insn_rs6000 (bfd_vma, disassemble_info *);
d70c5fc7 304extern int print_insn_s390 (bfd_vma, disassemble_info *);
8cf3f354 305extern int print_insn_sh (bfd_vma, disassemble_info *);
1c0d3aa6
NC
306extern int print_insn_sh64 (bfd_vma, disassemble_info *);
307extern int print_insn_sh64x_media (bfd_vma, disassemble_info *);
308extern int print_insn_sparc (bfd_vma, disassemble_info *);
e9f53129 309extern int print_insn_spu (bfd_vma, disassemble_info *);
8cf3f354
AM
310extern int print_insn_tic30 (bfd_vma, disassemble_info *);
311extern int print_insn_tic4x (bfd_vma, disassemble_info *);
312extern int print_insn_tic54x (bfd_vma, disassemble_info *);
40b36596 313extern int print_insn_tic6x (bfd_vma, disassemble_info *);
8cf3f354 314extern int print_insn_tic80 (bfd_vma, disassemble_info *);
aa137e4d
NC
315extern int print_insn_tilegx (bfd_vma, disassemble_info *);
316extern int print_insn_tilepro (bfd_vma, disassemble_info *);
8cf3f354
AM
317extern int print_insn_v850 (bfd_vma, disassemble_info *);
318extern int print_insn_vax (bfd_vma, disassemble_info *);
1945cfa5 319extern int print_insn_visium (bfd_vma, disassemble_info *);
8cf3f354 320extern int print_insn_w65 (bfd_vma, disassemble_info *);
1c0d3aa6 321extern int print_insn_xc16x (bfd_vma, disassemble_info *);
f6c1a2d5 322extern int print_insn_xgate (bfd_vma, disassemble_info *);
8cf3f354
AM
323extern int print_insn_xstormy16 (bfd_vma, disassemble_info *);
324extern int print_insn_xtensa (bfd_vma, disassemble_info *);
1c0d3aa6
NC
325extern int print_insn_z80 (bfd_vma, disassemble_info *);
326extern int print_insn_z8001 (bfd_vma, disassemble_info *);
327extern int print_insn_z8002 (bfd_vma, disassemble_info *);
c7927a3c 328extern int print_insn_rx (bfd_vma, disassemble_info *);
99c513f6 329extern int print_insn_rl78 (bfd_vma, disassemble_info *);
0952813b
DD
330extern int print_insn_rl78_g10 (bfd_vma, disassemble_info *);
331extern int print_insn_rl78_g13 (bfd_vma, disassemble_info *);
332extern int print_insn_rl78_g14 (bfd_vma, disassemble_info *);
8cf3f354 333
886a2506 334extern disassembler_ftype arc_get_disassembler (bfd *);
8cf3f354 335extern disassembler_ftype cris_get_disassembler (bfd *);
0952813b 336extern disassembler_ftype rl78_get_disassembler (bfd *);
8cf3f354 337
a06ea964 338extern void print_aarch64_disassembler_options (FILE *);
f59a29b9 339extern void print_i386_disassembler_options (FILE *);
8cf3f354
AM
340extern void print_mips_disassembler_options (FILE *);
341extern void print_ppc_disassembler_options (FILE *);
e23eba97 342extern void print_riscv_disassembler_options (FILE *);
8cf3f354 343extern void print_arm_disassembler_options (FILE *);
37fd5ef3 344extern void print_arc_disassembler_options (FILE *);
112b7c50 345extern void print_s390_disassembler_options (FILE *);
a06ea964 346extern bfd_boolean aarch64_symbol_is_valid (asymbol *, struct disassemble_info *);
22a398e1 347extern bfd_boolean arm_symbol_is_valid (asymbol *, struct disassemble_info *);
b240011a 348extern void disassemble_init_powerpc (struct disassemble_info *);
65b48a81
PB
349extern void disassemble_init_s390 (struct disassemble_info *);
350extern const disasm_options_t *disassembler_options_powerpc (void);
351extern const disasm_options_t *disassembler_options_arm (void);
352extern const disasm_options_t *disassembler_options_s390 (void);
dd92f639 353
252b5132 354/* Fetch the disassembler for a given BFD, if that support is available. */
8cf3f354 355extern disassembler_ftype disassembler (bfd *);
252b5132 356
22a398e1
NC
357/* Amend the disassemble_info structure as necessary for the target architecture.
358 Should only be called after initialising the info->arch field. */
e7f8eadb 359extern void disassemble_init_for_target (struct disassemble_info * dinfo);
22a398e1 360
94470b23 361/* Document any target specific options available from the disassembler. */
8cf3f354 362extern void disassembler_usage (FILE *);
94470b23 363
65b48a81
PB
364/* Remove whitespace and consecutive commas. */
365extern char *remove_whitespace_and_extra_commas (char *);
366
367/* Like STRCMP, but treat ',' the same as '\0' so that we match
368 strings like "foobar" against "foobar,xxyyzz,...". */
369extern int disassembler_options_cmp (const char *, const char *);
370
371/* A helper function for FOR_EACH_DISASSEMBLER_OPTION. */
372static inline char *
373next_disassembler_option (char *options)
374{
375 char *opt = strchr (options, ',');
376 if (opt != NULL)
377 opt++;
378 return opt;
379}
380
381/* A macro for iterating over each comma separated option in OPTIONS. */
382#define FOR_EACH_DISASSEMBLER_OPTION(OPT, OPTIONS) \
383 for ((OPT) = (OPTIONS); \
384 (OPT) != NULL; \
385 (OPT) = next_disassembler_option (OPT))
386
252b5132
RH
387\f
388/* This block of definitions is for particular callers who read instructions
389 into a buffer before calling the instruction decoder. */
390
391/* Here is a function which callers may wish to use for read_memory_func.
392 It gets bytes from a buffer. */
393extern int buffer_read_memory
8cf3f354 394 (bfd_vma, bfd_byte *, unsigned int, struct disassemble_info *);
252b5132
RH
395
396/* This function goes with buffer_read_memory.
397 It prints a message using info->fprintf_func and info->stream. */
8cf3f354 398extern void perror_memory (int, bfd_vma, struct disassemble_info *);
252b5132
RH
399
400
401/* Just print the address in hex. This is included for completeness even
402 though both GDB and objdump provide their own (to print symbolic
403 addresses). */
404extern void generic_print_address
8cf3f354 405 (bfd_vma, struct disassemble_info *);
252b5132
RH
406
407/* Always true. */
408extern int generic_symbol_at_address
8cf3f354 409 (bfd_vma, struct disassemble_info *);
252b5132 410
d70c5fc7 411/* Also always true. */
22a398e1
NC
412extern bfd_boolean generic_symbol_is_valid
413 (asymbol *, struct disassemble_info *);
d70c5fc7 414
92c2346c
AC
415/* Method to initialize a disassemble_info struct. This should be
416 called by all applications creating such a struct. */
e7f8eadb 417extern void init_disassemble_info (struct disassemble_info *dinfo, void *stream,
92c2346c 418 fprintf_ftype fprintf_func);
252b5132 419
92c2346c
AC
420/* For compatibility with existing code. */
421#define INIT_DISASSEMBLE_INFO(INFO, STREAM, FPRINTF_FUNC) \
422 init_disassemble_info (&(INFO), (STREAM), (fprintf_ftype) (FPRINTF_FUNC))
252b5132 423#define INIT_DISASSEMBLE_INFO_NO_ARCH(INFO, STREAM, FPRINTF_FUNC) \
92c2346c
AC
424 init_disassemble_info (&(INFO), (STREAM), (fprintf_ftype) (FPRINTF_FUNC))
425
252b5132 426
7d7a6736 427#ifdef __cplusplus
8418f5ff 428}
7d7a6736
ILT
429#endif
430
252b5132 431#endif /* ! defined (DIS_ASM_H) */