1 /* Disassembler code for CRIS.
2 Copyright 2000, 2001, 2002 Free Software Foundation, Inc.
3 Contributed by Axis Communications AB, Lund, Sweden.
4 Written by Hans-Peter Nilsson.
6 This file is part of the GNU binutils and GDB, the GNU debugger.
8 This program is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 2, or (at your option)
13 This program is distributed in the hope that it will be useful, but WITHOUT
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
24 #include "opcode/cris.h"
25 #include "libiberty.h"
27 /* No instruction will be disassembled longer than this. In theory, and
28 in silicon, address prefixes can be cascaded. In practice, cascading
29 is not used by GCC, and not supported by the assembler. */
30 #ifndef MAX_BYTES_PER_CRIS_INSN
31 #define MAX_BYTES_PER_CRIS_INSN 8
34 /* Whether or not to decode prefixes, folding it into the following
35 instruction. FIXME: Make this optional later. */
37 #define PARSE_PREFIX 1
40 /* Sometimes we prefix all registers with this character. */
41 #define REGISTER_PREFIX_CHAR '$'
43 /* Whether or not to trace the following sequence:
48 This is the assembly form of a switch-statement in C.
49 The "sub is optional. If there is none, then X will be zero.
50 X is the value of the first case,
51 Y is the number of cases (including default).
53 This results in case offsets printed on the form:
54 case N: -> case_address
55 where N is an estimation on the corresponding 'case' operand in C,
56 and case_address is where execution of that case continues after the
57 sequence presented above.
59 The old style of output was to print the offsets as instructions,
60 which made it hard to follow "case"-constructs in the disassembly,
61 and caused a lot of annoying warnings about undefined instructions.
63 FIXME: Make this optional later. */
68 /* Value of first element in switch. */
69 static long case_offset
= 0;
71 /* How many more case-offsets to print. */
72 static long case_offset_counter
= 0;
74 /* Number of case offsets. */
75 static long no_of_case_offsets
= 0;
77 /* Candidate for next case_offset. */
78 static long last_immediate
= 0;
80 static int number_of_bits
81 PARAMS ((unsigned int));
82 static char *format_hex
83 PARAMS ((unsigned long, char *));
84 static char *format_dec
85 PARAMS ((long, char *, int));
86 static char *format_reg
87 PARAMS ((int, char *, bfd_boolean
));
88 static int cris_constraint
89 PARAMS ((const char *, unsigned int, unsigned int));
90 static unsigned bytes_to_skip
91 PARAMS ((unsigned int, const struct cris_opcode
*));
92 static char *print_flags
93 PARAMS ((unsigned int, char *));
94 static void print_with_operands
95 PARAMS ((const struct cris_opcode
*, unsigned int, unsigned char *,
96 bfd_vma
, disassemble_info
*, const struct cris_opcode
*,
97 unsigned int, unsigned char *, bfd_boolean
));
98 static const struct cris_spec_reg
*spec_reg_info
99 PARAMS ((unsigned int));
100 static int print_insn_cris_generic
101 PARAMS ((bfd_vma
, disassemble_info
*, bfd_boolean
));
102 static int print_insn_cris_with_register_prefix
103 PARAMS ((bfd_vma
, disassemble_info
*));
104 static int print_insn_cris_without_register_prefix
105 PARAMS ((bfd_vma
, disassemble_info
*));
106 static const struct cris_opcode
*get_opcode_entry
107 PARAMS ((unsigned int, unsigned int));
109 /* Return the descriptor of a special register.
110 FIXME: Depend on a CPU-version specific argument when all machinery
113 static const struct cris_spec_reg
*
118 for (i
= 0; cris_spec_regs
[i
].name
!= NULL
; i
++)
120 if (cris_spec_regs
[i
].number
== sreg
)
121 return &cris_spec_regs
[i
];
127 /* Return the number of bits in the argument. */
135 for (bits
= 0; val
!= 0; val
&= val
- 1)
141 /* Get an entry in the opcode-table. */
143 static const struct cris_opcode
*
144 get_opcode_entry (insn
, prefix_insn
)
146 unsigned int prefix_insn
;
148 /* For non-prefixed insns, we keep a table of pointers, indexed by the
149 insn code. Each entry is initialized when found to be NULL. */
150 static const struct cris_opcode
**opc_table
= NULL
;
152 const struct cris_opcode
*max_matchedp
= NULL
;
153 const struct cris_opcode
**prefix_opc_table
= NULL
;
155 /* We hold a table for each prefix that need to be handled differently. */
156 static const struct cris_opcode
**dip_prefixes
= NULL
;
157 static const struct cris_opcode
**bdapq_m1_prefixes
= NULL
;
158 static const struct cris_opcode
**bdapq_m2_prefixes
= NULL
;
159 static const struct cris_opcode
**bdapq_m4_prefixes
= NULL
;
160 static const struct cris_opcode
**rest_prefixes
= NULL
;
162 /* Allocate and clear the opcode-table. */
163 if (opc_table
== NULL
)
165 opc_table
= xmalloc (65536 * sizeof (opc_table
[0]));
166 memset (opc_table
, 0, 65536 * sizeof (const struct cris_opcode
*));
169 = xmalloc (65536 * sizeof (const struct cris_opcode
**));
170 memset (dip_prefixes
, 0, 65536 * sizeof (dip_prefixes
[0]));
173 = xmalloc (65536 * sizeof (const struct cris_opcode
**));
174 memset (bdapq_m1_prefixes
, 0, 65536 * sizeof (bdapq_m1_prefixes
[0]));
177 = xmalloc (65536 * sizeof (const struct cris_opcode
**));
178 memset (bdapq_m2_prefixes
, 0, 65536 * sizeof (bdapq_m2_prefixes
[0]));
181 = xmalloc (65536 * sizeof (const struct cris_opcode
**));
182 memset (bdapq_m4_prefixes
, 0, 65536 * sizeof (bdapq_m4_prefixes
[0]));
185 = xmalloc (65536 * sizeof (const struct cris_opcode
**));
186 memset (rest_prefixes
, 0, 65536 * sizeof (rest_prefixes
[0]));
189 /* Get the right table if this is a prefix.
190 This code is connected to cris_constraints in that it knows what
191 prefixes play a role in recognition of patterns; the necessary
192 state is reflected by which table is used. If constraints
193 involving match or non-match of prefix insns are changed, then this
194 probably needs changing too. */
195 if (prefix_insn
!= NO_CRIS_PREFIX
)
197 const struct cris_opcode
*popcodep
198 = (opc_table
[prefix_insn
] != NULL
199 ? opc_table
[prefix_insn
]
200 : get_opcode_entry (prefix_insn
, NO_CRIS_PREFIX
));
202 if (popcodep
== NULL
)
205 if (popcodep
->match
== BDAP_QUICK_OPCODE
)
207 /* Since some offsets are recognized with "push" macros, we
208 have to have different tables for them. */
209 int offset
= (prefix_insn
& 255);
217 prefix_opc_table
= bdapq_m4_prefixes
;
221 prefix_opc_table
= bdapq_m2_prefixes
;
225 prefix_opc_table
= bdapq_m1_prefixes
;
229 prefix_opc_table
= rest_prefixes
;
233 else if (popcodep
->match
== DIP_OPCODE
)
234 /* We don't allow postincrement when the prefix is DIP, so use a
235 different table for DIP. */
236 prefix_opc_table
= dip_prefixes
;
238 prefix_opc_table
= rest_prefixes
;
241 if (prefix_insn
!= NO_CRIS_PREFIX
242 && prefix_opc_table
[insn
] != NULL
)
243 max_matchedp
= prefix_opc_table
[insn
];
244 else if (prefix_insn
== NO_CRIS_PREFIX
&& opc_table
[insn
] != NULL
)
245 max_matchedp
= opc_table
[insn
];
248 const struct cris_opcode
*opcodep
;
249 int max_level_of_match
= -1;
251 for (opcodep
= cris_opcodes
;
252 opcodep
->name
!= NULL
;
257 /* We give a double lead for bits matching the template in
258 cris_opcodes. Not even, because then "move p8,r10" would
259 be given 2 bits lead over "clear.d r10". When there's a
260 tie, the first entry in the table wins. This is
261 deliberate, to avoid a more complicated recognition
263 if ((opcodep
->match
& insn
) == opcodep
->match
264 && (opcodep
->lose
& insn
) == 0
266 = cris_constraint (opcodep
->args
,
271 += 2 * number_of_bits (opcodep
->match
273 > max_level_of_match
))
275 max_matchedp
= opcodep
;
276 max_level_of_match
= level_of_match
;
278 /* If there was a full match, never mind looking
280 if (level_of_match
>= 2 * 16)
284 /* Fill in the new entry.
286 If there are changes to the opcode-table involving prefixes, and
287 disassembly then does not work correctly, try removing the
288 else-clause below that fills in the prefix-table. If that
289 helps, you need to change the prefix_opc_table setting above, or
290 something related. */
291 if (prefix_insn
== NO_CRIS_PREFIX
)
292 opc_table
[insn
] = max_matchedp
;
294 prefix_opc_table
[insn
] = max_matchedp
;
300 /* Format number as hex with a leading "0x" into outbuffer. */
303 format_hex (number
, outbuffer
)
304 unsigned long number
;
307 /* Obfuscate to avoid warning on 32-bit host, but properly truncate
308 negative numbers on >32-bit hosts. */
309 if (sizeof (number
) > 4)
310 number
&= (1 << (sizeof (number
) > 4 ? 32 : 1)) - 1;
312 sprintf (outbuffer
, "0x%lx", number
);
314 /* Save this value for the "case" support. */
316 last_immediate
= number
;
318 return outbuffer
+ strlen (outbuffer
);
321 /* Format number as decimal into outbuffer. Parameter signedp says
322 whether the number should be formatted as signed (!= 0) or
326 format_dec (number
, outbuffer
, signedp
)
331 last_immediate
= number
;
332 sprintf (outbuffer
, signedp
? "%ld" : "%lu", number
);
334 return outbuffer
+ strlen (outbuffer
);
337 /* Format the name of the general register regno into outbuffer. */
340 format_reg (regno
, outbuffer_start
, with_reg_prefix
)
342 char *outbuffer_start
;
343 bfd_boolean with_reg_prefix
;
345 char *outbuffer
= outbuffer_start
;
348 *outbuffer
++ = REGISTER_PREFIX_CHAR
;
353 strcpy (outbuffer
, "pc");
357 strcpy (outbuffer
, "sp");
361 sprintf (outbuffer
, "r%d", regno
);
365 return outbuffer_start
+ strlen (outbuffer_start
);
368 /* Return -1 if the constraints of a bitwise-matched instruction say
369 that there is no match. Otherwise return a nonnegative number
370 indicating the confidence in the match (higher is better). */
373 cris_constraint (cs
, insn
, prefix_insn
)
376 unsigned int prefix_insn
;
383 for (s
= cs
; *s
; s
++)
387 /* Do not recognize "pop" if there's a prefix. */
388 if (prefix_insn
!= NO_CRIS_PREFIX
)
393 /* Size modifier for "clear", i.e. special register 0, 4 or 8.
394 Check that it is one of them. Only special register 12 could
395 be mismatched, but checking for matches is more logical than
396 checking for mismatches when there are only a few cases. */
397 tmp
= ((insn
>> 12) & 0xf);
398 if (tmp
!= 0 && tmp
!= 4 && tmp
!= 8)
403 if ((insn
& 0x30) == 0x30)
408 /* A prefix operand without side-effect. */
409 if (prefix_insn
!= NO_CRIS_PREFIX
&& (insn
& 0x400) == 0)
419 /* If this is a prefixed insn with postincrement (side-effect),
420 the prefix must not be DIP. */
421 if (prefix_insn
!= NO_CRIS_PREFIX
)
425 const struct cris_opcode
*prefix_opcodep
426 = get_opcode_entry (prefix_insn
, NO_CRIS_PREFIX
);
428 if (prefix_opcodep
->match
== DIP_OPCODE
)
437 /* If we don't fall through, then the prefix is ok. */
440 /* A "push" prefix. Check for valid "push" size.
441 In case of special register, it may be != 4. */
442 if (prefix_insn
!= NO_CRIS_PREFIX
)
444 /* Match the prefix insn to BDAPQ. */
445 const struct cris_opcode
*prefix_opcodep
446 = get_opcode_entry (prefix_insn
, NO_CRIS_PREFIX
);
448 if (prefix_opcodep
->match
== BDAP_QUICK_OPCODE
)
450 int pushsize
= (prefix_insn
& 255);
457 unsigned int spec_reg
= (insn
>> 12) & 15;
458 const struct cris_spec_reg
*sregp
459 = spec_reg_info (spec_reg
);
461 /* For a special-register, the "prefix size" must
462 match the size of the register. */
463 if (sregp
&& sregp
->reg_size
== (unsigned int) -pushsize
)
466 else if (s
[1] == 'R')
468 if ((insn
& 0x30) == 0x20 && pushsize
== -4)
471 /* FIXME: Should abort here; next constraint letter
472 *must* be 'P' or 'R'. */
478 retval
= (((insn
>> 12) & 15) == (insn
& 15));
487 const struct cris_spec_reg
*sregp
488 = spec_reg_info ((insn
>> 12) & 15);
490 /* Since we match four bits, we will give a value of 4-1 = 3
491 in a match. If there is a corresponding exact match of a
492 special register in another pattern, it will get a value of
493 4, which will be higher. This should be correct in that an
494 exact pattern would match better than a general pattern.
496 Note that there is a reason for not returning zero; the
497 pattern for "clear" is partly matched in the bit-pattern
498 (the two lower bits must be zero), while the bit-pattern
499 for a move from a special register is matched in the
500 register constraint. */
512 if (prefix_insn
!= NO_CRIS_PREFIX
&& ! prefix_ok
)
518 /* Return the length of an instruction. */
521 bytes_to_skip (insn
, matchedp
)
523 const struct cris_opcode
*matchedp
;
525 /* Each insn is a word plus "immediate" operands. */
526 unsigned to_skip
= 2;
527 const char *template = matchedp
->args
;
530 for (s
= template; *s
; s
++)
531 if (*s
== 's' && (insn
& 0x400) && (insn
& 15) == 15)
533 /* Immediate via [pc+], so we have to check the size of the
535 int mode_size
= 1 << ((insn
>> 4) & (*template == 'z' ? 1 : 3));
537 if (matchedp
->imm_oprnd_size
== SIZE_FIX_32
)
539 else if (matchedp
->imm_oprnd_size
== SIZE_SPEC_REG
)
541 const struct cris_spec_reg
*sregp
542 = spec_reg_info ((insn
>> 12) & 15);
544 /* FIXME: Improve error handling; should have been caught
549 /* PC is incremented by two, not one, for a byte. */
550 to_skip
+= (sregp
->reg_size
+ 1) & ~1;
553 to_skip
+= (mode_size
+ 1) & ~1;
561 /* Print condition code flags. */
564 print_flags (insn
, cp
)
568 /* Use the v8 (Etrax 100) flag definitions for disassembly.
569 The differences with v0 (Etrax 1..4) vs. Svinto are:
571 v0 'e' <=> v8 'b'. */
572 static const char fnames
[] = "cvznxibm";
574 unsigned char flagbits
= (((insn
>> 8) & 0xf0) | (insn
& 15));
577 for (i
= 0; i
< 8; i
++)
578 if (flagbits
& (1 << i
))
584 /* Print out an insn with its operands, and update the info->insn_type
585 fields. The prefix_opcodep and the rest hold a prefix insn that is
586 supposed to be output as an address mode. */
589 print_with_operands (opcodep
, insn
, buffer
, addr
, info
, prefix_opcodep
,
590 prefix_insn
, prefix_buffer
, with_reg_prefix
)
591 const struct cris_opcode
*opcodep
;
593 unsigned char *buffer
;
595 disassemble_info
*info
;
597 /* If a prefix insn was before this insn (and is supposed to be
598 output as an address), here is a description of it. */
599 const struct cris_opcode
*prefix_opcodep
;
600 unsigned int prefix_insn
;
601 unsigned char *prefix_buffer
;
602 bfd_boolean with_reg_prefix
;
604 /* Get a buffer of somewhat reasonable size where we store
605 intermediate parts of the insn. */
606 char temp
[sizeof (".d [$r13=$r12-2147483648],$r10") * 2];
608 static const char mode_char
[] = "bwd?";
612 /* Print out the name first thing we do. */
613 (*info
->fprintf_func
) (info
->stream
, "%s", opcodep
->name
);
618 /* Ignore any prefix indicator. */
622 if (*s
== 'm' || *s
== 'M' || *s
== 'z')
626 /* Get the size-letter. */
628 ? (insn
& 0x8000 ? 'd'
629 : insn
& 0x4000 ? 'w' : 'b')
630 : mode_char
[(insn
>> 4) & (*s
== 'z' ? 1 : 3)];
632 /* Ignore the size and the space character that follows. */
636 /* Add a space if this isn't a long-branch, because for those will add
637 the condition part of the name later. */
638 if (opcodep
->match
!= (BRANCH_PC_LOW
+ BRANCH_INCR_HIGH
* 256))
641 /* Fill in the insn-type if deducible from the name (and there's no
643 if (opcodep
->name
[0] == 'j')
645 if (strncmp (opcodep
->name
, "jsr", 3) == 0)
646 /* It's "jsr" or "jsrc". */
647 info
->insn_type
= dis_jsr
;
649 /* Any other jump-type insn is considered a branch. */
650 info
->insn_type
= dis_branch
;
653 /* We might know some more fields right now. */
654 info
->branch_delay_insns
= opcodep
->delayed
;
656 /* Handle operands. */
666 /* Ignore at this point; used at earlier stages to avoid recognition
667 if there's a prefixes at something that in other ways looks like
672 /* This was the prefix that made this a "push". We've already
673 handled it by recognizing it, so signal that the prefix is
674 handled by setting it to NULL. */
675 prefix_opcodep
= NULL
;
680 tp
= format_reg (insn
& 15, tp
, with_reg_prefix
);
684 tp
= format_reg ((insn
>> 12) & 15, tp
, with_reg_prefix
);
690 /* Any "normal" memory operand. */
691 if ((insn
& 0x400) && (insn
& 15) == 15)
693 /* We're looking at [pc+], i.e. we need to output an immediate
694 number, where the size can depend on different things. */
697 = ((*cs
== 'z' && (insn
& 0x20))
698 || opcodep
->match
== BDAP_QUICK_OPCODE
);
701 if (opcodep
->imm_oprnd_size
== SIZE_FIX_32
)
703 else if (opcodep
->imm_oprnd_size
== SIZE_SPEC_REG
)
705 const struct cris_spec_reg
*sregp
706 = spec_reg_info ((insn
>> 12) & 15);
708 /* A NULL return should have been as a non-match earlier,
709 so catch it as an internal error in the error-case
712 /* Whatever non-valid size. */
715 /* PC is always incremented by a multiple of two. */
716 nbytes
= (sregp
->reg_size
+ 1) & ~1;
720 int mode_size
= 1 << ((insn
>> 4) & (*cs
== 'z' ? 1 : 3));
732 if (signedp
&& number
> 127)
737 number
= buffer
[2] + buffer
[3] * 256;
738 if (signedp
&& number
> 32767)
744 = buffer
[2] + buffer
[3] * 256 + buffer
[4] * 65536
745 + buffer
[5] * 0x1000000;
754 if ((*cs
== 'z' && (insn
& 0x20))
755 || (opcodep
->match
== BDAP_QUICK_OPCODE
756 && (nbytes
<= 2 || buffer
[1 + nbytes
] == 0)))
757 tp
= format_dec (number
, tp
, signedp
);
760 unsigned int highbyte
= (number
>> 24) & 0xff;
762 /* Either output this as an address or as a number. If it's
763 a dword with the same high-byte as the address of the
764 insn, assume it's an address, and also if it's a non-zero
765 non-0xff high-byte. If this is a jsr or a jump, then
766 it's definitely an address. */
768 && (highbyte
== ((addr
>> 24) & 0xff)
769 || (highbyte
!= 0 && highbyte
!= 0xff)
770 || info
->insn_type
== dis_branch
771 || info
->insn_type
== dis_jsr
))
773 /* Finish off and output previous formatted bytes. */
777 (*info
->fprintf_func
) (info
->stream
, "%s", temp
);
779 (*info
->print_address_func
) ((bfd_vma
) number
, info
);
781 info
->target
= number
;
784 tp
= format_hex (number
, tp
);
789 /* Not an immediate number. Then this is a (possibly
790 prefixed) memory operand. */
791 if (info
->insn_type
!= dis_nonbranch
)
795 & (opcodep
->args
[0] == 'z' ? 1 : 3));
797 info
->insn_type
= dis_dref
;
798 info
->flags
|= CRIS_DIS_FLAG_MEMREF
;
800 if (opcodep
->imm_oprnd_size
== SIZE_FIX_32
)
802 else if (opcodep
->imm_oprnd_size
== SIZE_SPEC_REG
)
804 const struct cris_spec_reg
*sregp
805 = spec_reg_info ((insn
>> 12) & 15);
807 /* FIXME: Improve error handling; should have been caught
812 size
= sregp
->reg_size
;
817 info
->data_size
= size
;
823 /* We don't match dip with a postincremented field
824 as a side-effect address mode. */
825 && ((insn
& 0x400) == 0
826 || prefix_opcodep
->match
!= DIP_OPCODE
))
830 tp
= format_reg (insn
& 15, tp
, with_reg_prefix
);
835 /* We mainly ignore the prefix format string when the
836 address-mode syntax is output. */
837 switch (prefix_opcodep
->match
)
840 /* It's [r], [r+] or [pc+]. */
841 if ((prefix_insn
& 0x400) && (prefix_insn
& 15) == 15)
843 /* It's [pc+]. This cannot possibly be anything
846 = prefix_buffer
[2] + prefix_buffer
[3] * 256
847 + prefix_buffer
[4] * 65536
848 + prefix_buffer
[5] * 0x1000000;
850 info
->target
= (bfd_vma
) number
;
852 /* Finish off and output previous formatted
857 (*info
->fprintf_func
) (info
->stream
, "%s", temp
);
859 (*info
->print_address_func
) ((bfd_vma
) number
, info
);
863 /* For a memref in an address, we use target2.
864 In this case, target is zero. */
866 |= (CRIS_DIS_FLAG_MEM_TARGET2_IS_REG
867 | CRIS_DIS_FLAG_MEM_TARGET2_MEM
);
869 info
->target2
= prefix_insn
& 15;
872 tp
= format_reg (prefix_insn
& 15, tp
,
874 if (prefix_insn
& 0x400)
880 case BDAP_QUICK_OPCODE
:
884 number
= prefix_buffer
[0];
888 /* Output "reg+num" or, if num < 0, "reg-num". */
889 tp
= format_reg ((prefix_insn
>> 12) & 15, tp
,
893 tp
= format_dec (number
, tp
, 1);
895 info
->flags
|= CRIS_DIS_FLAG_MEM_TARGET_IS_REG
;
896 info
->target
= (prefix_insn
>> 12) & 15;
897 info
->target2
= (bfd_vma
) number
;
902 /* Output "r+R.m". */
903 tp
= format_reg (prefix_insn
& 15, tp
, with_reg_prefix
);
905 tp
= format_reg ((prefix_insn
>> 12) & 15, tp
,
908 *tp
++ = mode_char
[(prefix_insn
>> 4) & 3];
911 |= (CRIS_DIS_FLAG_MEM_TARGET2_IS_REG
912 | CRIS_DIS_FLAG_MEM_TARGET_IS_REG
914 | ((prefix_insn
& 0x8000)
915 ? CRIS_DIS_FLAG_MEM_TARGET2_MULT4
916 : ((prefix_insn
& 0x8000)
917 ? CRIS_DIS_FLAG_MEM_TARGET2_MULT2
: 0)));
919 /* Is it the casejump? It's a "adds.w [pc+r%d.w],pc". */
920 if (insn
== 0xf83f && (prefix_insn
& ~0xf000) == 0x55f)
921 /* Then start interpreting data as offsets. */
922 case_offset_counter
= no_of_case_offsets
;
925 case BDAP_INDIR_OPCODE
:
926 /* Output "r+s.m", or, if "s" is [pc+], "r+s" or
928 tp
= format_reg ((prefix_insn
>> 12) & 15, tp
,
931 if ((prefix_insn
& 0x400) && (prefix_insn
& 15) == 15)
936 /* It's a value. Get its size. */
937 int mode_size
= 1 << ((prefix_insn
>> 4) & 3);
947 number
= prefix_buffer
[2];
953 number
= prefix_buffer
[2] + prefix_buffer
[3] * 256;
960 = prefix_buffer
[2] + prefix_buffer
[3] * 256
961 + prefix_buffer
[4] * 65536
962 + prefix_buffer
[5] * 0x1000000;
971 info
->flags
|= CRIS_DIS_FLAG_MEM_TARGET_IS_REG
;
972 info
->target2
= (bfd_vma
) number
;
974 /* If the size is dword, then assume it's an
978 /* Finish off and output previous formatted
983 (*info
->fprintf_func
) (info
->stream
, "%s", temp
);
985 (*info
->print_address_func
) ((bfd_vma
) number
, info
);
991 tp
= format_dec (number
, tp
, 1);
996 /* Output "r+[R].m" or "r+[R+].m". */
999 tp
= format_reg (prefix_insn
& 15, tp
,
1001 if (prefix_insn
& 0x400)
1005 *tp
++ = mode_char
[(prefix_insn
>> 4) & 3];
1008 |= (CRIS_DIS_FLAG_MEM_TARGET2_IS_REG
1009 | CRIS_DIS_FLAG_MEM_TARGET2_MEM
1010 | CRIS_DIS_FLAG_MEM_TARGET_IS_REG
1012 | (((prefix_insn
>> 4) == 2)
1014 : (((prefix_insn
>> 4) & 3) == 1
1015 ? CRIS_DIS_FLAG_MEM_TARGET2_MEM_WORD
1016 : CRIS_DIS_FLAG_MEM_TARGET2_MEM_BYTE
)));
1021 (*info
->fprintf_func
) (info
->stream
, "?prefix-bug");
1024 /* To mark that the prefix is used, reset it. */
1025 prefix_opcodep
= NULL
;
1029 tp
= format_reg (insn
& 15, tp
, with_reg_prefix
);
1031 info
->flags
|= CRIS_DIS_FLAG_MEM_TARGET_IS_REG
;
1032 info
->target
= insn
& 15;
1042 tp
= format_reg ((insn
>> 12) & 15, tp
, with_reg_prefix
);
1044 *tp
++ = mode_char
[(insn
>> 4) & 3];
1048 tp
= format_dec (insn
& 63, tp
, 0);
1053 int where
= buffer
[2] + buffer
[3] * 256;
1060 if (insn
== BA_PC_INCR_OPCODE
)
1061 info
->insn_type
= dis_branch
;
1063 info
->insn_type
= dis_condbranch
;
1065 info
->target
= (bfd_vma
) where
;
1069 (*info
->fprintf_func
) (info
->stream
, "%s%s ",
1070 temp
, cris_cc_strings
[insn
>> 12]);
1072 (*info
->print_address_func
) ((bfd_vma
) where
, info
);
1077 tp
= format_dec (insn
& 31, tp
, 0);
1081 tp
= format_dec (insn
& 15, tp
, 0);
1086 long offset
= insn
& 0xfe;
1091 if (opcodep
->match
== BA_QUICK_OPCODE
)
1092 info
->insn_type
= dis_branch
;
1094 info
->insn_type
= dis_condbranch
;
1096 info
->target
= (bfd_vma
) (addr
+ 2 + offset
);
1099 (*info
->fprintf_func
) (info
->stream
, "%s", temp
);
1101 (*info
->print_address_func
) ((bfd_vma
) (addr
+ 2 + offset
), info
);
1107 long number
= buffer
[0];
1110 number
= number
- 256;
1112 tp
= format_dec (number
, tp
, 1);
1114 tp
= format_reg ((insn
>> 12) & 15, tp
, with_reg_prefix
);
1119 tp
= print_flags (insn
, tp
);
1123 tp
= format_dec ((insn
& 32) ? (insn
& 31) | ~31 : insn
& 31, tp
, 1);
1128 const struct cris_spec_reg
*sregp
1129 = spec_reg_info ((insn
>> 12) & 15);
1131 if (sregp
->name
== NULL
)
1132 /* Should have been caught as a non-match eariler. */
1136 if (with_reg_prefix
)
1137 *tp
++ = REGISTER_PREFIX_CHAR
;
1138 strcpy (tp
, sregp
->name
);
1153 (*info
->fprintf_func
) (info
->stream
, " (OOPS unused prefix \"%s: %s\")",
1154 prefix_opcodep
->name
, prefix_opcodep
->args
);
1156 (*info
->fprintf_func
) (info
->stream
, "%s", temp
);
1158 /* Get info for matching case-tables, if we don't have any active.
1159 We assume that the last constant seen is used; either in the insn
1160 itself or in a "move.d const,rN, sub.d rN,rM"-like sequence. */
1161 if (TRACE_CASE
&& case_offset_counter
== 0)
1163 if (strncmp (opcodep
->name
, "sub", 3) == 0)
1164 case_offset
= last_immediate
;
1166 /* It could also be an "add", if there are negative case-values. */
1167 else if (strncmp (opcodep
->name
, "add", 3) == 0)
1169 /* The first case is the negated operand to the add. */
1170 case_offset
= -last_immediate
;
1172 /* A bound insn will tell us the number of cases. */
1173 else if (strncmp (opcodep
->name
, "bound", 5) == 0)
1175 no_of_case_offsets
= last_immediate
+ 1;
1177 /* A jump or jsr or branch breaks the chain of insns for a
1178 case-table, so assume default first-case again. */
1179 else if (info
->insn_type
== dis_jsr
1180 || info
->insn_type
== dis_branch
1181 || info
->insn_type
== dis_condbranch
)
1187 /* Print the CRIS instruction at address memaddr on stream. Returns
1188 length of the instruction, in bytes. Prefix register names with `$' if
1192 print_insn_cris_generic (memaddr
, info
, with_reg_prefix
)
1194 disassemble_info
*info
;
1195 bfd_boolean with_reg_prefix
;
1199 const struct cris_opcode
*matchedp
;
1202 /* No instruction will be disassembled as longer than this number of
1203 bytes; stacked prefixes will not be expanded. */
1204 unsigned char buffer
[MAX_BYTES_PER_CRIS_INSN
];
1205 unsigned char *bufp
;
1209 /* There will be an "out of range" error after the last instruction.
1210 Reading pairs of bytes in decreasing number, we hope that we will get
1211 at least the amount that we will consume.
1213 If we can't get any data, or we do not get enough data, we print
1214 the error message. */
1216 for (nbytes
= MAX_BYTES_PER_CRIS_INSN
; nbytes
> 0; nbytes
-= 2)
1218 status
= (*info
->read_memory_func
) (memaddr
, buffer
, nbytes
, info
);
1223 /* If we did not get all we asked for, then clear the rest.
1224 Hopefully this makes a reproducible result in case of errors. */
1225 if (nbytes
!= MAX_BYTES_PER_CRIS_INSN
)
1226 memset (buffer
+ nbytes
, 0, MAX_BYTES_PER_CRIS_INSN
- nbytes
);
1231 /* Set some defaults for the insn info. */
1232 info
->insn_info_valid
= 1;
1233 info
->branch_delay_insns
= 0;
1234 info
->data_size
= 0;
1235 info
->insn_type
= dis_nonbranch
;
1240 /* If we got any data, disassemble it. */
1245 insn
= bufp
[0] + bufp
[1] * 256;
1247 /* If we're in a case-table, don't disassemble the offsets. */
1248 if (TRACE_CASE
&& case_offset_counter
!= 0)
1250 info
->insn_type
= dis_noninsn
;
1253 /* If to print data as offsets, then shortcut here. */
1254 (*info
->fprintf_func
) (info
->stream
, "case %d%s: -> ",
1255 case_offset
+ no_of_case_offsets
1256 - case_offset_counter
,
1257 case_offset_counter
== 1 ? "/default" :
1260 (*info
->print_address_func
) ((bfd_vma
)
1263 - (no_of_case_offsets
1264 - case_offset_counter
)
1266 case_offset_counter
--;
1268 /* The default case start (without a "sub" or "add") must be
1270 if (case_offset_counter
== 0)
1275 /* We're often called to disassemble zeroes. While this is a
1276 valid "bcc .+2" insn, it is also useless enough and enough
1277 of a nuiscance that we will just output "bcc .+2" for it
1278 and signal it as a noninsn. */
1279 (*info
->fprintf_func
) (info
->stream
, "bcc .+2");
1280 info
->insn_type
= dis_noninsn
;
1285 const struct cris_opcode
*prefix_opcodep
= NULL
;
1286 unsigned char *prefix_buffer
= bufp
;
1287 unsigned int prefix_insn
= insn
;
1288 int prefix_size
= 0;
1290 matchedp
= get_opcode_entry (insn
, NO_CRIS_PREFIX
);
1292 /* Check if we're supposed to write out prefixes as address
1293 modes and if this was a prefix. */
1294 if (matchedp
!= NULL
&& PARSE_PREFIX
&& matchedp
->args
[0] == 'p')
1296 /* If it's a prefix, put it into the prefix vars and get the
1298 prefix_size
= bytes_to_skip (prefix_insn
, matchedp
);
1299 prefix_opcodep
= matchedp
;
1301 insn
= bufp
[prefix_size
] + bufp
[prefix_size
+ 1] * 256;
1302 matchedp
= get_opcode_entry (insn
, prefix_insn
);
1304 if (matchedp
!= NULL
)
1306 addr
+= prefix_size
;
1307 bufp
+= prefix_size
;
1308 advance
+= prefix_size
;
1312 /* The "main" insn wasn't valid, at least not when
1313 prefixed. Put back things enough to output the
1314 prefix insn only, as a normal insn. */
1315 matchedp
= prefix_opcodep
;
1317 prefix_opcodep
= NULL
;
1321 if (matchedp
== NULL
)
1323 (*info
->fprintf_func
) (info
->stream
, "??0x%lx", insn
);
1326 info
->insn_type
= dis_noninsn
;
1330 advance
+= bytes_to_skip (insn
, matchedp
);
1332 /* The info_type and assorted fields will be set according
1334 print_with_operands (matchedp
, insn
, bufp
, addr
, info
,
1335 prefix_opcodep
, prefix_insn
,
1336 prefix_buffer
, with_reg_prefix
);
1341 info
->insn_type
= dis_noninsn
;
1343 /* If we read less than MAX_BYTES_PER_CRIS_INSN, i.e. we got an error
1344 status when reading that much, and the insn decoding indicated a
1345 length exceeding what we read, there is an error. */
1346 if (status
!= 0 && (nbytes
== 0 || advance
> nbytes
))
1348 (*info
->memory_error_func
) (status
, memaddr
, info
);
1352 /* Max supported insn size with one folded prefix insn. */
1353 info
->bytes_per_line
= MAX_BYTES_PER_CRIS_INSN
;
1355 /* I would like to set this to a fixed value larger than the actual
1356 number of bytes to print in order to avoid spaces between bytes,
1357 but objdump.c (2.9.1) does not like that, so we print 16-bit
1358 chunks, which is the next choice. */
1359 info
->bytes_per_chunk
= 2;
1361 /* Printing bytes in order of increasing addresses makes sense,
1362 especially on a little-endian target.
1363 This is completely the opposite of what you think; setting this to
1364 BFD_ENDIAN_LITTLE will print bytes in order N..0 rather than the 0..N
1366 info
->display_endian
= BFD_ENDIAN_BIG
;
1371 /* Disassemble, prefixing register names with `$'. */
1374 print_insn_cris_with_register_prefix (vma
, info
)
1376 disassemble_info
*info
;
1378 return print_insn_cris_generic (vma
, info
, TRUE
);
1381 /* Disassemble, no prefixes on register names. */
1384 print_insn_cris_without_register_prefix (vma
, info
)
1386 disassemble_info
*info
;
1388 return print_insn_cris_generic (vma
, info
, FALSE
);
1391 /* Return a disassembler-function that prints registers with a `$' prefix,
1392 or one that prints registers without a prefix. */
1395 cris_get_disassembler (abfd
)
1398 /* If there's no bfd in sight, we return what is valid as input in all
1399 contexts if fed back to the assembler: disassembly *with* register
1401 if (abfd
== NULL
|| bfd_get_symbol_leading_char (abfd
) == 0)
1402 return print_insn_cris_with_register_prefix
;
1404 return print_insn_cris_without_register_prefix
;
1409 * eval: (c-set-style "gnu")
1410 * indent-tabs-mode: t