xref: /openbsd-src/gnu/usr.bin/binutils/include/dis-asm.h (revision 007c2a4539b8b8aaa95c5e73e77620090abe113b)
12159047fSniklas /* Interface between the opcode library and its callers.
2b55d4692Sfgsch 
3*007c2a45Smiod    Copyright 2001, 2002, 2003 Free Software Foundation, Inc.
4b55d4692Sfgsch 
5b55d4692Sfgsch    This program is free software; you can redistribute it and/or modify
6b55d4692Sfgsch    it under the terms of the GNU General Public License as published by
7b55d4692Sfgsch    the Free Software Foundation; either version 2, or (at your option)
8b55d4692Sfgsch    any later version.
9b55d4692Sfgsch 
10b55d4692Sfgsch    This program is distributed in the hope that it will be useful,
11b55d4692Sfgsch    but WITHOUT ANY WARRANTY; without even the implied warranty of
12b55d4692Sfgsch    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13b55d4692Sfgsch    GNU General Public License for more details.
14b55d4692Sfgsch 
15b55d4692Sfgsch    You should have received a copy of the GNU General Public License
16b55d4692Sfgsch    along with this program; if not, write to the Free Software
17b55d4692Sfgsch    Foundation, Inc., 59 Temple Place - Suite 330,
18b55d4692Sfgsch    Boston, MA 02111-1307, USA.
19b55d4692Sfgsch 
202159047fSniklas    Written by Cygnus Support, 1993.
212159047fSniklas 
222159047fSniklas    The opcode library (libopcodes.a) provides instruction decoders for
232159047fSniklas    a large variety of instruction sets, callable with an identical
242159047fSniklas    interface, for making instruction-processing programs more independent
252159047fSniklas    of the instruction set being processed.  */
262159047fSniklas 
272159047fSniklas #ifndef DIS_ASM_H
282159047fSniklas #define DIS_ASM_H
292159047fSniklas 
30b305b0f1Sespie #ifdef __cplusplus
31b305b0f1Sespie extern "C" {
32b305b0f1Sespie #endif
33b305b0f1Sespie 
342159047fSniklas #include <stdio.h>
352159047fSniklas #include "bfd.h"
362159047fSniklas 
37*007c2a45Smiod typedef int (*fprintf_ftype) (void *, const char*, ...);
382159047fSniklas 
392159047fSniklas enum dis_insn_type {
402159047fSniklas   dis_noninsn,			/* Not a valid instruction */
412159047fSniklas   dis_nonbranch,		/* Not a branch instruction */
422159047fSniklas   dis_branch,			/* Unconditional branch */
432159047fSniklas   dis_condbranch,		/* Conditional branch */
442159047fSniklas   dis_jsr,			/* Jump to subroutine */
452159047fSniklas   dis_condjsr,			/* Conditional jump to subroutine */
462159047fSniklas   dis_dref,			/* Data reference instruction */
472159047fSniklas   dis_dref2			/* Two data references in instruction */
482159047fSniklas };
492159047fSniklas 
502159047fSniklas /* This struct is passed into the instruction decoding routine,
512159047fSniklas    and is passed back out into each callback.  The various fields are used
522159047fSniklas    for conveying information from your main routine into your callbacks,
532159047fSniklas    for passing information into the instruction decoders (such as the
542159047fSniklas    addresses of the callback functions), or for passing information
552159047fSniklas    back from the instruction decoders to their callers.
562159047fSniklas 
572159047fSniklas    It must be initialized before it is first passed; this can be done
582159047fSniklas    by hand, or using one of the initialization macros below.  */
592159047fSniklas 
602159047fSniklas typedef struct disassemble_info {
612159047fSniklas   fprintf_ftype fprintf_func;
62*007c2a45Smiod   void *stream;
63*007c2a45Smiod   void *application_data;
642159047fSniklas 
65c88b1d6cSniklas   /* Target description.  We could replace this with a pointer to the bfd,
66c88b1d6cSniklas      but that would require one.  There currently isn't any such requirement
67c88b1d6cSniklas      so to avoid introducing one we record these explicitly.  */
680c6d0228Sniklas   /* The bfd_flavour.  This can be bfd_target_unknown_flavour.  */
690c6d0228Sniklas   enum bfd_flavour flavour;
70c88b1d6cSniklas   /* The bfd_arch value.  */
71c88b1d6cSniklas   enum bfd_architecture arch;
72c88b1d6cSniklas   /* The bfd_mach value.  */
73c88b1d6cSniklas   unsigned long mach;
74c88b1d6cSniklas   /* Endianness (for bi-endian cpus).  Mono-endian cpus can ignore this.  */
75c88b1d6cSniklas   enum bfd_endian endian;
76c074d1c9Sdrahn   /* An arch/mach-specific bitmask of selected instruction subsets, mainly
77c074d1c9Sdrahn      for processors with run-time-switchable instruction sets.  The default,
78c074d1c9Sdrahn      zero, means that there is no constraint.  CGEN-based opcodes ports
79c074d1c9Sdrahn      may use ISA_foo masks.  */
80c074d1c9Sdrahn   unsigned long insn_sets;
81b305b0f1Sespie 
82b55d4692Sfgsch   /* Some targets need information about the current section to accurately
83b55d4692Sfgsch      display insns.  If this is NULL, the target disassembler function
84b55d4692Sfgsch      will have to make its best guess.  */
85b55d4692Sfgsch   asection *section;
86b55d4692Sfgsch 
87b305b0f1Sespie   /* An array of pointers to symbols either at the location being disassembled
88b305b0f1Sespie      or at the start of the function being disassembled.  The array is sorted
89b305b0f1Sespie      so that the first symbol is intended to be the one used.  The others are
90b305b0f1Sespie      present for any misc. purposes.  This is not set reliably, but if it is
91b305b0f1Sespie      not NULL, it is correct.  */
92b305b0f1Sespie   asymbol **symbols;
93b305b0f1Sespie   /* Number of symbols in array.  */
94b305b0f1Sespie   int num_symbols;
95c88b1d6cSniklas 
96c88b1d6cSniklas   /* For use by the disassembler.
97c88b1d6cSniklas      The top 16 bits are reserved for public use (and are documented here).
98c88b1d6cSniklas      The bottom 16 bits are for the internal use of the disassembler.  */
99c88b1d6cSniklas   unsigned long flags;
100b305b0f1Sespie #define INSN_HAS_RELOC	0x80000000
101*007c2a45Smiod   void *private_data;
1022159047fSniklas 
1032159047fSniklas   /* Function used to get bytes to disassemble.  MEMADDR is the
1042159047fSniklas      address of the stuff to be disassembled, MYADDR is the address to
1052159047fSniklas      put the bytes in, and LENGTH is the number of bytes to read.
1062159047fSniklas      INFO is a pointer to this struct.
1072159047fSniklas      Returns an errno value or 0 for success.  */
1082159047fSniklas   int (*read_memory_func)
109*007c2a45Smiod     (bfd_vma memaddr, bfd_byte *myaddr, unsigned int length,
110*007c2a45Smiod      struct disassemble_info *info);
1112159047fSniklas 
1122159047fSniklas   /* Function which should be called if we get an error that we can't
1132159047fSniklas      recover from.  STATUS is the errno value from read_memory_func and
1142159047fSniklas      MEMADDR is the address that we were trying to read.  INFO is a
1152159047fSniklas      pointer to this struct.  */
1162159047fSniklas   void (*memory_error_func)
117*007c2a45Smiod     (int status, bfd_vma memaddr, struct disassemble_info *info);
1182159047fSniklas 
1192159047fSniklas   /* Function called to print ADDR.  */
1202159047fSniklas   void (*print_address_func)
121*007c2a45Smiod     (bfd_vma addr, struct disassemble_info *info);
1222159047fSniklas 
123b305b0f1Sespie   /* Function called to determine if there is a symbol at the given ADDR.
124b305b0f1Sespie      If there is, the function returns 1, otherwise it returns 0.
125b305b0f1Sespie      This is used by ports which support an overlay manager where
126b305b0f1Sespie      the overlay number is held in the top part of an address.  In
127b305b0f1Sespie      some circumstances we want to include the overlay number in the
128b305b0f1Sespie      address, (normally because there is a symbol associated with
129b305b0f1Sespie      that address), but sometimes we want to mask out the overlay bits.  */
130b305b0f1Sespie   int (* symbol_at_address_func)
131*007c2a45Smiod     (bfd_vma addr, struct disassemble_info * info);
132*007c2a45Smiod 
133*007c2a45Smiod   /* Function called to check if a SYMBOL is can be displayed to the user.
134*007c2a45Smiod      This is used by some ports that want to hide special symbols when
135*007c2a45Smiod      displaying debugging outout.  */
136*007c2a45Smiod   bfd_boolean (* symbol_is_valid)
137*007c2a45Smiod     (asymbol *, struct disassemble_info * info);
138b305b0f1Sespie 
1392159047fSniklas   /* These are for buffer_read_memory.  */
1402159047fSniklas   bfd_byte *buffer;
1412159047fSniklas   bfd_vma buffer_vma;
142b305b0f1Sespie   unsigned int buffer_length;
1432159047fSniklas 
144e93f7393Sniklas   /* This variable may be set by the instruction decoder.  It suggests
145e93f7393Sniklas       the number of bytes objdump should display on a single line.  If
146e93f7393Sniklas       the instruction decoder sets this, it should always set it to
147e93f7393Sniklas       the same value in order to get reasonable looking output.  */
148e93f7393Sniklas   int bytes_per_line;
149e93f7393Sniklas 
150*007c2a45Smiod   /* The next two variables control the way objdump displays the raw data.  */
151b305b0f1Sespie   /* For example, if bytes_per_line is 8 and bytes_per_chunk is 4, the */
152b305b0f1Sespie   /* output will look like this:
153b305b0f1Sespie      00:   00000000 00000000
154b305b0f1Sespie      with the chunks displayed according to "display_endian". */
155b305b0f1Sespie   int bytes_per_chunk;
156b305b0f1Sespie   enum bfd_endian display_endian;
157b305b0f1Sespie 
158b305b0f1Sespie   /* Number of octets per incremented target address
159c074d1c9Sdrahn      Normally one, but some DSPs have byte sizes of 16 or 32 bits.  */
160b305b0f1Sespie   unsigned int octets_per_byte;
161b305b0f1Sespie 
1622159047fSniklas   /* Results from instruction decoders.  Not all decoders yet support
1632159047fSniklas      this information.  This info is set each time an instruction is
1642159047fSniklas      decoded, and is only valid for the last such instruction.
1652159047fSniklas 
1662159047fSniklas      To determine whether this decoder supports this information, set
1672159047fSniklas      insn_info_valid to 0, decode an instruction, then check it.  */
1682159047fSniklas 
1692159047fSniklas   char insn_info_valid;		/* Branch info has been set. */
1702159047fSniklas   char branch_delay_insns;	/* How many sequential insn's will run before
1712159047fSniklas 				   a branch takes effect.  (0 = normal) */
1722159047fSniklas   char data_size;		/* Size of data reference in insn, in bytes */
1732159047fSniklas   enum dis_insn_type insn_type;	/* Type of instruction */
1742159047fSniklas   bfd_vma target;		/* Target address of branch or dref, if known;
1752159047fSniklas 				   zero if unknown.  */
1762159047fSniklas   bfd_vma target2;		/* Second target address for dref2 */
1772159047fSniklas 
178b305b0f1Sespie   /* Command line options specific to the target disassembler.  */
179b305b0f1Sespie   char * disassembler_options;
180b305b0f1Sespie 
1812159047fSniklas } disassemble_info;
1822159047fSniklas 
1832159047fSniklas 
1842159047fSniklas /* Standard disassemblers.  Disassemble one instruction at the given
185c074d1c9Sdrahn    target address.  Return number of octets processed.  */
186*007c2a45Smiod typedef int (*disassembler_ftype) (bfd_vma, disassemble_info *);
1872159047fSniklas 
188*007c2a45Smiod extern int print_insn_big_mips		(bfd_vma, disassemble_info *);
189*007c2a45Smiod extern int print_insn_little_mips	(bfd_vma, disassemble_info *);
190*007c2a45Smiod extern int print_insn_i386		(bfd_vma, disassemble_info *);
191*007c2a45Smiod extern int print_insn_i386_att		(bfd_vma, disassemble_info *);
192*007c2a45Smiod extern int print_insn_i386_intel	(bfd_vma, disassemble_info *);
193*007c2a45Smiod extern int print_insn_ia64		(bfd_vma, disassemble_info *);
194*007c2a45Smiod extern int print_insn_i370		(bfd_vma, disassemble_info *);
195*007c2a45Smiod extern int print_insn_m68hc11		(bfd_vma, disassemble_info *);
196*007c2a45Smiod extern int print_insn_m68hc12		(bfd_vma, disassemble_info *);
197*007c2a45Smiod extern int print_insn_m68k		(bfd_vma, disassemble_info *);
198*007c2a45Smiod extern int print_insn_z8001		(bfd_vma, disassemble_info *);
199*007c2a45Smiod extern int print_insn_z8002		(bfd_vma, disassemble_info *);
200*007c2a45Smiod extern int print_insn_h8300		(bfd_vma, disassemble_info *);
201*007c2a45Smiod extern int print_insn_h8300h		(bfd_vma, disassemble_info *);
202*007c2a45Smiod extern int print_insn_h8300s		(bfd_vma, disassemble_info *);
203*007c2a45Smiod extern int print_insn_h8500		(bfd_vma, disassemble_info *);
204*007c2a45Smiod extern int print_insn_alpha		(bfd_vma, disassemble_info *);
205*007c2a45Smiod extern int print_insn_big_arm		(bfd_vma, disassemble_info *);
206*007c2a45Smiod extern int print_insn_little_arm	(bfd_vma, disassemble_info *);
207*007c2a45Smiod extern int print_insn_sparc		(bfd_vma, disassemble_info *);
208*007c2a45Smiod extern int print_insn_big_a29k		(bfd_vma, disassemble_info *);
209*007c2a45Smiod extern int print_insn_little_a29k	(bfd_vma, disassemble_info *);
210*007c2a45Smiod extern int print_insn_avr		(bfd_vma, disassemble_info *);
211*007c2a45Smiod extern int print_insn_d10v		(bfd_vma, disassemble_info *);
212*007c2a45Smiod extern int print_insn_d30v		(bfd_vma, disassemble_info *);
213*007c2a45Smiod extern int print_insn_dlx 		(bfd_vma, disassemble_info *);
214*007c2a45Smiod extern int print_insn_fr30		(bfd_vma, disassemble_info *);
215*007c2a45Smiod extern int print_insn_hppa		(bfd_vma, disassemble_info *);
216*007c2a45Smiod extern int print_insn_i860		(bfd_vma, disassemble_info *);
217*007c2a45Smiod extern int print_insn_i960		(bfd_vma, disassemble_info *);
218*007c2a45Smiod extern int print_insn_ip2k		(bfd_vma, disassemble_info *);
219*007c2a45Smiod extern int print_insn_m32r		(bfd_vma, disassemble_info *);
220*007c2a45Smiod extern int print_insn_m88k		(bfd_vma, disassemble_info *);
221*007c2a45Smiod extern int print_insn_mcore		(bfd_vma, disassemble_info *);
222*007c2a45Smiod extern int print_insn_mmix		(bfd_vma, disassemble_info *);
223*007c2a45Smiod extern int print_insn_mn10200		(bfd_vma, disassemble_info *);
224*007c2a45Smiod extern int print_insn_mn10300		(bfd_vma, disassemble_info *);
225*007c2a45Smiod extern int print_insn_msp430		(bfd_vma, disassemble_info *);
226*007c2a45Smiod extern int print_insn_ns32k		(bfd_vma, disassemble_info *);
227*007c2a45Smiod extern int print_insn_openrisc		(bfd_vma, disassemble_info *);
228*007c2a45Smiod extern int print_insn_big_or32		(bfd_vma, disassemble_info *);
229*007c2a45Smiod extern int print_insn_little_or32	(bfd_vma, disassemble_info *);
230*007c2a45Smiod extern int print_insn_pdp11		(bfd_vma, disassemble_info *);
231*007c2a45Smiod extern int print_insn_pj		(bfd_vma, disassemble_info *);
232*007c2a45Smiod extern int print_insn_big_powerpc	(bfd_vma, disassemble_info *);
233*007c2a45Smiod extern int print_insn_little_powerpc	(bfd_vma, disassemble_info *);
234*007c2a45Smiod extern int print_insn_rs6000		(bfd_vma, disassemble_info *);
235*007c2a45Smiod extern int print_insn_s390		(bfd_vma, disassemble_info *);
236*007c2a45Smiod extern int print_insn_sh		(bfd_vma, disassemble_info *);
237*007c2a45Smiod extern int print_insn_tic30		(bfd_vma, disassemble_info *);
238*007c2a45Smiod extern int print_insn_tic4x		(bfd_vma, disassemble_info *);
239*007c2a45Smiod extern int print_insn_tic54x		(bfd_vma, disassemble_info *);
240*007c2a45Smiod extern int print_insn_tic80		(bfd_vma, disassemble_info *);
241*007c2a45Smiod extern int print_insn_v850		(bfd_vma, disassemble_info *);
242*007c2a45Smiod extern int print_insn_vax		(bfd_vma, disassemble_info *);
243*007c2a45Smiod extern int print_insn_w65		(bfd_vma, disassemble_info *);
244*007c2a45Smiod extern int print_insn_xstormy16		(bfd_vma, disassemble_info *);
245*007c2a45Smiod extern int print_insn_xtensa		(bfd_vma, disassemble_info *);
246*007c2a45Smiod extern int print_insn_sh64		(bfd_vma, disassemble_info *);
247*007c2a45Smiod extern int print_insn_sh64x_media	(bfd_vma, disassemble_info *);
248*007c2a45Smiod extern int print_insn_frv		(bfd_vma, disassemble_info *);
249*007c2a45Smiod extern int print_insn_iq2000		(bfd_vma, disassemble_info *);
250b305b0f1Sespie 
251*007c2a45Smiod extern disassembler_ftype arc_get_disassembler (void *);
252*007c2a45Smiod extern disassembler_ftype cris_get_disassembler (bfd *);
253c074d1c9Sdrahn 
254*007c2a45Smiod extern void print_mips_disassembler_options (FILE *);
255*007c2a45Smiod extern void print_ppc_disassembler_options (FILE *);
256*007c2a45Smiod extern void print_arm_disassembler_options (FILE *);
257*007c2a45Smiod extern void parse_arm_disassembler_option (char *);
258*007c2a45Smiod extern int get_arm_regname_num_options (void);
259*007c2a45Smiod extern int set_arm_regname_option (int);
260*007c2a45Smiod extern int get_arm_regnames (int, const char **, const char **, const char ***);
261*007c2a45Smiod extern bfd_boolean arm_symbol_is_valid (asymbol *, struct disassemble_info *);
2622159047fSniklas 
2632159047fSniklas /* Fetch the disassembler for a given BFD, if that support is available.  */
264*007c2a45Smiod extern disassembler_ftype disassembler (bfd *);
265*007c2a45Smiod 
266*007c2a45Smiod /* Amend the disassemble_info structure as necessary for the target architecture.
267*007c2a45Smiod    Should only be called after initialising the info->arch field.  */
268*007c2a45Smiod extern void disassemble_init_for_target (struct disassemble_info * info);
2692159047fSniklas 
270b305b0f1Sespie /* Document any target specific options available from the disassembler.  */
271*007c2a45Smiod extern void disassembler_usage (FILE *);
272b305b0f1Sespie 
2732159047fSniklas 
2742159047fSniklas /* This block of definitions is for particular callers who read instructions
2752159047fSniklas    into a buffer before calling the instruction decoder.  */
2762159047fSniklas 
2772159047fSniklas /* Here is a function which callers may wish to use for read_memory_func.
2782159047fSniklas    It gets bytes from a buffer.  */
2792159047fSniklas extern int buffer_read_memory
280*007c2a45Smiod   (bfd_vma, bfd_byte *, unsigned int, struct disassemble_info *);
2812159047fSniklas 
2822159047fSniklas /* This function goes with buffer_read_memory.
2832159047fSniklas    It prints a message using info->fprintf_func and info->stream.  */
284*007c2a45Smiod extern void perror_memory (int, bfd_vma, struct disassemble_info *);
2852159047fSniklas 
2862159047fSniklas 
2872159047fSniklas /* Just print the address in hex.  This is included for completeness even
2882159047fSniklas    though both GDB and objdump provide their own (to print symbolic
2892159047fSniklas    addresses).  */
2902159047fSniklas extern void generic_print_address
291*007c2a45Smiod   (bfd_vma, struct disassemble_info *);
2922159047fSniklas 
293b305b0f1Sespie /* Always true.  */
294b305b0f1Sespie extern int generic_symbol_at_address
295*007c2a45Smiod   (bfd_vma, struct disassemble_info *);
296*007c2a45Smiod 
297*007c2a45Smiod /* Also always true.  */
298*007c2a45Smiod extern bfd_boolean generic_symbol_is_valid
299*007c2a45Smiod   (asymbol *, struct disassemble_info *);
300b305b0f1Sespie 
301a80fa30cSkettenis /* Method to initialize a disassemble_info struct.  This should be
302a80fa30cSkettenis    called by all applications creating such a struct.  */
303*007c2a45Smiod extern void init_disassemble_info (struct disassemble_info *info, void *stream,
304*007c2a45Smiod 				   fprintf_ftype fprintf_func);
305a80fa30cSkettenis 
306a80fa30cSkettenis /* For compatibility with existing code.  */
307c88b1d6cSniklas #define INIT_DISASSEMBLE_INFO(INFO, STREAM, FPRINTF_FUNC) \
308a80fa30cSkettenis   init_disassemble_info (&(INFO), (STREAM), (fprintf_ftype) (FPRINTF_FUNC))
3090c6d0228Sniklas #define INIT_DISASSEMBLE_INFO_NO_ARCH(INFO, STREAM, FPRINTF_FUNC) \
310a80fa30cSkettenis   init_disassemble_info (&(INFO), (STREAM), (fprintf_ftype) (FPRINTF_FUNC))
311a80fa30cSkettenis 
3122159047fSniklas 
313b305b0f1Sespie #ifdef __cplusplus
314c074d1c9Sdrahn }
315b305b0f1Sespie #endif
316b305b0f1Sespie 
3172159047fSniklas #endif /* ! defined (DIS_ASM_H) */
318