1 /* tc-h8500.c -- Assemble code for the Hitachi H8/500
2 Copyright 1993, 1994, 1995, 1998, 2000, 2001
3 Free Software Foundation, Inc.
5 This file is part of GAS, the GNU Assembler.
7 GAS is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
12 GAS is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with GAS; see the file COPYING. If not, write to the Free
19 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
22 /* Written By Steve Chamberlain <sac@cygnus.com>. */
29 #define ASSEMBLER_TABLE
30 #include "opcodes/h8500-opc.h"
31 #include "safe-ctype.h"
33 const char comment_chars
[] = "!";
34 const char line_separator_chars
[] = ";";
35 const char line_comment_chars
[] = "!#";
37 /* This table describes all the machine specific pseudo-ops the assembler
38 has to support. The fields are:
39 pseudo-op name without dot
40 function to call to execute this pseudo-op
41 Integer arg to pass to the function
46 const pseudo_typeS md_pseudo_table
[] =
52 {"form", listing_psize
, 0},
53 {"heading", listing_title
, 0},
54 {"import", s_ignore
, 0},
55 {"page", listing_eject
, 0},
56 {"program", s_ignore
, 0},
60 const int md_reloc_size
;
62 const char EXP_CHARS
[] = "eE";
64 /* Chars that mean this number is a floating point constant */
67 const char FLT_CHARS
[] = "rRsSfFdDxXpP";
69 #define C(a,b) ENCODE_RELAX(a,b)
70 #define ENCODE_RELAX(what,length) (((what) << 2) + (length))
72 #define GET_WHAT(x) ((x>>2))
76 #define UNDEF_BYTE_DISP 0
77 #define UNDEF_WORD_DISP 3
89 relax_typeS md_relax_table
[C (END
, 0)] = {
97 { BYTE_F
, BYTE_B
, 2, C (BRANCH
, WORD_DISP
) },
98 { WORD_F
, WORD_B
, 3, 0 },
103 { BYTE_F
, BYTE_B
, 3, C (SCB_F
, WORD_DISP
) },
104 { WORD_F
, WORD_B
, 8, 0 },
109 { BYTE_F
, BYTE_B
, 3, C (SCB_TST
, WORD_DISP
) },
110 { WORD_F
, WORD_B
, 10, 0 },
115 static struct hash_control
*opcode_hash_control
; /* Opcode mnemonics */
118 This function is called once, at assembler startup time. This should
119 set up all the tables, etc. that the MD part of the assembler needs
125 h8500_opcode_info
*opcode
;
126 char prev_buffer
[100];
129 opcode_hash_control
= hash_new ();
132 /* Insert unique names into hash table */
133 for (opcode
= h8500_table
; opcode
->name
; opcode
++)
135 if (idx
!= opcode
->idx
)
137 hash_insert (opcode_hash_control
, opcode
->name
, (char *) opcode
);
143 static int rn
; /* register number used by RN */
144 static int rs
; /* register number used by RS */
145 static int rd
; /* register number used by RD */
146 static int crb
; /* byte size cr */
147 static int crw
; /* word sized cr */
148 static int cr
; /* unknown size cr */
150 static expressionS displacement
;/* displacement expression */
151 static int displacement_size
; /* and size if given */
153 static int immediate_inpage
;
154 static expressionS immediate
; /* immediate expression */
155 static int immediate_size
; /* and size if given */
157 static expressionS absolute
; /* absolute expression */
158 static int absolute_size
; /* and size if given */
170 /* Try to parse a reg name. Return the number of chars consumed. */
173 parse_reg (src
, mode
, reg
)
181 /* Cribbed from get_symbol_end(). */
182 if (!is_name_beginner (*src
) || *src
== '\001')
185 while (is_part_of_name (*end
) || *end
== '\001')
189 if (len
== 2 && src
[0] == 'r')
191 if (src
[1] >= '0' && src
[1] <= '7')
194 *reg
= (src
[1] - '0');
198 if (len
== 2 && src
[0] == 's' && src
[1] == 'p')
204 if (len
== 3 && src
[0] == 'c' && src
[1] == 'c' && src
[2] == 'r')
210 if (len
== 2 && src
[0] == 's' && src
[1] == 'r')
216 if (len
== 2 && src
[0] == 'b' && src
[1] == 'r')
222 if (len
== 2 && src
[0] == 'e' && src
[1] == 'p')
228 if (len
== 2 && src
[0] == 'd' && src
[1] == 'p')
234 if (len
== 2 && src
[0] == 't' && src
[1] == 'p')
240 if (len
== 2 && src
[0] == 'f' && src
[1] == 'p')
250 parse_exp (s
, op
, page
)
258 save
= input_line_pointer
;
263 if (s
[1] == 'p' && s
[2] == 'a' && s
[3] == 'g' && s
[4] == 'e')
268 if (s
[1] == 'h' && s
[2] == 'i' && s
[3] == '1' && s
[4] == '6')
273 else if (s
[1] == 'o' && s
[2] == 'f' && s
[3] == 'f')
280 input_line_pointer
= s
;
283 if (op
->X_op
== O_absent
)
284 as_bad (_("missing operand"));
285 new = input_line_pointer
;
286 input_line_pointer
= save
;
292 exp_signed
, exp_unsigned
, exp_sandu
296 skip_colonthing (sign
, ptr
, exp
, def
, size8
, size16
, size24
)
299 h8500_operand_info
*exp
;
305 ptr
= parse_exp (ptr
, &exp
->exp
, &exp
->page
);
314 else if (ptr
[0] == '1' & ptr
[1] == '6')
319 else if (ptr
[0] == '2' & ptr
[1] == '4')
323 as_bad (_(":24 not valid for this opcode"));
330 as_bad (_("expect :8,:16 or :24"));
336 if (exp
->page
== 'p')
340 else if (exp
->page
== 'h')
346 /* Let's work out the size from the context */
347 int n
= exp
->exp
.X_add_number
;
349 && exp
->exp
.X_op
== O_constant
350 && ((sign
== exp_signed
&& (n
>= -128 && n
<= 127))
351 || (sign
== exp_unsigned
&& (n
>= 0 && (n
<= 255)))
352 || (sign
== exp_sandu
&& (n
>= -128 && (n
<= 255)))))
366 parse_reglist (src
, op
)
368 h8500_operand_info
*op
;
374 int idx
= 1; /* skip ( */
376 while (src
[idx
] && src
[idx
] != ')')
378 int done
= parse_reg (src
+ idx
, &mode
, &rn
);
387 as_bad (_("syntax error in reg list"));
393 done
= parse_reg (src
+ idx
, &mode
, &rm
);
405 as_bad (_("missing final register in range"));
412 op
->exp
.X_add_symbol
= 0;
413 op
->exp
.X_op_symbol
= 0;
414 op
->exp
.X_add_number
= mask
;
415 op
->exp
.X_op
= O_constant
;
416 op
->exp
.X_unsigned
= 1;
422 /* The many forms of operand:
425 @Rn Register indirect
426 @(disp[:size], Rn) Register indirect with displacement
430 #xx[:size] immediate data
435 get_operand (ptr
, op
, ispage
)
437 h8500_operand_info
*op
;
445 if (src
[0] == '(' && src
[1] == 'r')
447 /* This is a register list */
448 *ptr
= src
+ parse_reglist (src
, op
);
452 len
= parse_reg (src
, &op
->type
, &op
->reg
);
466 len
= parse_reg (src
, &mode
, &num
);
469 /* Oops, not a reg after all, must be ordinary exp */
471 /* must be a symbol */
472 *ptr
= skip_colonthing (exp_unsigned
, src
,
473 op
, ABS16
, ABS8
, ABS16
, ABS24
);
487 src
= skip_colonthing (exp_signed
, src
,
488 op
, RNIND_D16
, RNIND_D8
, RNIND_D16
, 0);
492 as_bad (_("expected @(exp, Rn)"));
496 len
= parse_reg (src
, &mode
, &op
->reg
);
497 if (len
== 0 || mode
!= RN
)
499 as_bad (_("expected @(exp, Rn)"));
505 as_bad (_("expected @(exp, Rn)"));
511 len
= parse_reg (src
, &mode
, &num
);
521 as_bad (_("@Rn+ needs word register"));
531 as_bad (_("@Rn needs word register"));
541 /* must be a symbol */
543 skip_colonthing (exp_unsigned
, src
, op
,
544 ispage
? ABS24
: ABS16
, ABS8
, ABS16
, ABS24
);
552 *ptr
= skip_colonthing (exp_sandu
, src
, op
, IMM16
, IMM8
, IMM16
, ABS24
);
557 *ptr
= skip_colonthing (exp_signed
, src
, op
,
558 ispage
? ABS24
: PCREL8
, PCREL8
, PCREL16
, ABS24
);
563 get_operands (info
, args
, operand
)
564 h8500_opcode_info
*info
;
566 h8500_operand_info
*operand
;
580 get_operand (&ptr
, operand
+ 0, info
->name
[0] == 'p');
586 get_operand (&ptr
, operand
+ 0, 0);
589 get_operand (&ptr
, operand
+ 1, 0);
599 /* Passed a pointer to a list of opcodes which use different
600 addressing modes, return the opcode which matches the opcodes
603 int pcrel8
; /* Set when we've seen a pcrel operand */
605 static h8500_opcode_info
*
606 get_specific (opcode
, operands
)
607 h8500_opcode_info
*opcode
;
608 h8500_operand_info
*operands
;
610 h8500_opcode_info
*this_try
= opcode
;
612 unsigned int noperands
= opcode
->nargs
;
614 unsigned int this_index
= opcode
->idx
;
616 while (this_index
== opcode
->idx
&& !found
)
622 /* look at both operands needed by the opcodes and provided by
624 for (i
= 0; i
< noperands
; i
++)
626 h8500_operand_info
*user
= operands
+ i
;
628 switch (this_try
->arg_type
[i
])
631 /* Opcode needs (disp:8,fp) */
632 if (user
->type
== RNIND_D8
&& user
->reg
== 6)
634 displacement
= user
->exp
;
639 if (user
->type
== RNIND_D16
)
641 displacement
= user
->exp
;
647 if (user
->type
== RNIND_D8
)
649 displacement
= user
->exp
;
656 if (user
->type
== this_try
->arg_type
[i
])
658 displacement
= user
->exp
;
665 if (user
->type
== RNDEC
&& user
->reg
== 7)
671 if (user
->type
== RNINC
&& user
->reg
== 7)
677 if (user
->type
== ABS16
)
679 absolute
= user
->exp
;
684 if (user
->type
== ABS8
)
686 absolute
= user
->exp
;
691 if (user
->type
== ABS24
)
693 absolute
= user
->exp
;
699 if ((user
->type
== CRB
|| user
->type
== CR
) && user
->reg
!= 0)
706 if ((user
->type
== CRW
|| user
->type
== CR
) && user
->reg
== 0)
713 if (user
->type
== DISP16
)
715 displacement
= user
->exp
;
720 if (user
->type
== DISP8
)
722 displacement
= user
->exp
;
727 if (user
->type
== RN
&& user
->reg
== 6)
733 if (user
->type
== PCREL16
)
735 displacement
= user
->exp
;
740 if (user
->type
== PCREL8
)
742 displacement
= user
->exp
;
749 if (user
->type
== IMM16
750 || user
->type
== IMM8
)
752 immediate_inpage
= user
->page
;
753 immediate
= user
->exp
;
759 if (user
->type
== IMM8
)
761 immediate_inpage
= user
->page
;
762 immediate
= user
->exp
;
767 if (user
->type
== IMM8
)
769 immediate_inpage
= user
->page
;
770 immediate
= user
->exp
;
775 if (user
->type
== IMM8
776 && user
->exp
.X_op
== O_constant
778 (user
->exp
.X_add_number
== -2
779 || user
->exp
.X_add_number
== -1
780 || user
->exp
.X_add_number
== 1
781 || user
->exp
.X_add_number
== 2))
783 immediate_inpage
= user
->page
;
784 immediate
= user
->exp
;
789 if (user
->type
== RN
)
796 if (user
->type
== RN
)
803 if (user
->type
== RNIND
)
815 if (user
->type
== this_try
->arg_type
[i
])
822 if (user
->type
== RN
&& user
->reg
== 7)
828 printf (_("unhandled %d\n"), this_try
->arg_type
[i
]);
832 /* If we get here this didn't work out */
847 check (operand
, low
, high
)
848 expressionS
*operand
;
852 if (operand
->X_op
!= O_constant
853 || operand
->X_add_number
< low
854 || operand
->X_add_number
> high
)
856 as_bad (_("operand must be absolute in range %d..%d"), low
, high
);
858 return operand
->X_add_number
;
862 insert (output
, index
, exp
, reloc
, pcrel
)
869 fix_new_exp (frag_now
,
870 output
- frag_now
->fr_literal
+ index
,
871 4, /* always say size is 4, but we know better */
878 build_relaxable_instruction (opcode
, operand
)
879 h8500_opcode_info
*opcode
;
880 h8500_operand_info
*operand
;
882 /* All relaxable instructions start life as two bytes but can become
883 three bytes long if a lonely branch and up to 9 bytes if long
889 if (opcode
->bytes
[0].contents
== 0x01)
893 else if (opcode
->bytes
[0].contents
== 0x06
894 || opcode
->bytes
[0].contents
== 0x07)
903 p
= frag_var (rs_machine_dependent
,
904 md_relax_table
[C (type
, WORD_DISP
)].rlx_length
,
905 len
= md_relax_table
[C (type
, BYTE_DISP
)].rlx_length
,
906 C (type
, UNDEF_BYTE_DISP
),
907 displacement
.X_add_symbol
,
908 displacement
.X_add_number
,
911 p
[0] = opcode
->bytes
[0].contents
;
914 p
[1] = opcode
->bytes
[1].contents
| rs
;
918 /* Now we know what sort of opcodes it is, let's build the bytes. */
921 build_bytes (opcode
, operand
)
922 h8500_opcode_info
*opcode
;
923 h8500_operand_info
*operand
;
931 build_relaxable_instruction (opcode
, operand
);
935 char *output
= frag_more (opcode
->length
);
937 memset (output
, 0, opcode
->length
);
938 for (index
= 0; index
< opcode
->length
; index
++)
940 output
[index
] = opcode
->bytes
[index
].contents
;
942 switch (opcode
->bytes
[index
].insert
)
945 printf (_("failed for %d\n"), opcode
->bytes
[index
].insert
);
960 insert (output
, index
, &displacement
, R_H8500_IMM16
, 0);
965 insert (output
, index
, &displacement
, R_H8500_IMM8
, 0);
971 switch (immediate_inpage
)
983 insert (output
, index
, &immediate
, p
, 0);
989 if (immediate_inpage
)
990 insert (output
, index
, &immediate
, R_H8500_HIGH8
, 0);
992 insert (output
, index
, &immediate
, R_H8500_IMM8
, 0);
995 insert (output
, index
, &displacement
, R_H8500_PCREL16
, 1);
999 insert (output
, index
, &displacement
, R_H8500_PCREL8
, 1);
1002 output
[index
] |= check (&immediate
, 0, 15);
1005 output
[index
] |= cr
;
1012 output
[index
] |= crb
;
1016 output
[index
] |= crw
;
1020 insert (output
, index
, &absolute
, R_H8500_IMM24
, 0);
1024 insert (output
, index
, &absolute
, R_H8500_IMM16
, 0);
1028 insert (output
, index
, &absolute
, R_H8500_IMM8
, 0);
1031 switch (immediate
.X_add_number
)
1034 output
[index
] |= 0x5;
1037 output
[index
] |= 0x4;
1052 /* This is the guts of the machine-dependent assembler. STR points to
1053 a machine dependent instruction. This function is supposed to emit
1054 the frags/bytes it assembles to. */
1062 h8500_operand_info operand
[2];
1063 h8500_opcode_info
*opcode
;
1064 h8500_opcode_info
*prev_opcode
;
1069 /* Drop leading whitespace. */
1073 /* Find the op code end. */
1074 for (op_start
= op_end
= str
;
1075 !is_end_of_line
[(unsigned char) *op_end
] && *op_end
!= ' ';
1078 if ( /**op_end != '.'
1082 name
[nlen
++] = *op_end
;
1087 if (op_end
== op_start
)
1088 as_bad (_("can't find opcode "));
1090 opcode
= (h8500_opcode_info
*) hash_find (opcode_hash_control
, name
);
1094 as_bad (_("unknown opcode"));
1098 get_operands (opcode
, op_end
, operand
);
1099 prev_opcode
= opcode
;
1101 opcode
= get_specific (opcode
, operand
);
1105 /* Couldn't find an opcode which matched the operands */
1106 char *where
= frag_more (2);
1110 as_bad (_("invalid operands for opcode"));
1114 build_bytes (opcode
, operand
);
1118 tc_crawl_symbol_chain (headers
)
1119 object_headers
*headers
;
1121 printf (_("call to tc_crawl_symbol_chain \n"));
1125 md_undefined_symbol (name
)
1132 tc_headers_hook (headers
)
1133 object_headers
*headers
;
1135 printf (_("call to tc_headers_hook \n"));
1138 /* Various routines to kill one day. */
1139 /* Equal to MAX_PRECISION in atof-ieee.c. */
1140 #define MAX_LITTLENUMS 6
1142 /* Turn a string in input_line_pointer into a floating point constant
1143 of type type, and store the appropriate bytes in *LITP. The number
1144 of LITTLENUMS emitted is stored in *SIZEP. An error message is
1145 returned, or NULL on OK. */
1148 md_atof (type
, litP
, sizeP
)
1154 LITTLENUM_TYPE words
[MAX_LITTLENUMS
];
1155 LITTLENUM_TYPE
*wordP
;
1187 return _("Bad call to MD_ATOF()");
1189 t
= atof_ieee (input_line_pointer
, type
, words
);
1191 input_line_pointer
= t
;
1193 *sizeP
= prec
* sizeof (LITTLENUM_TYPE
);
1194 for (wordP
= words
; prec
--;)
1196 md_number_to_chars (litP
, (long) (*wordP
++), sizeof (LITTLENUM_TYPE
));
1197 litP
+= sizeof (LITTLENUM_TYPE
);
1202 CONST
char *md_shortopts
= "";
1203 struct option md_longopts
[] = {
1204 {NULL
, no_argument
, NULL
, 0}
1206 size_t md_longopts_size
= sizeof (md_longopts
);
1209 md_parse_option (c
, arg
)
1217 md_show_usage (stream
)
1223 tc_aout_fix_to_chars ()
1225 printf (_("call to tc_aout_fix_to_chars \n"));
1230 wordify_scb (buffer
, disp_size
, inst_size
)
1235 int rn
= buffer
[1] & 0x7;
1239 case 0x0e: /* BSR */
1273 *buffer
++ = 0x26; /* bne + 8 */
1279 *buffer
++ = 0x27; /* bne + 8 */
1284 *buffer
++ = 0xa8 | rn
; /* addq -1,rn */
1286 *buffer
++ = 0x04; /* cmp #0xff:8, rn */
1288 *buffer
++ = 0x70 | rn
;
1289 *buffer
++ = 0x36; /* bne ... */
1294 /* Called after relaxing, change the frags so they know how big they
1298 md_convert_frag (headers
, seg
, fragP
)
1299 object_headers
*headers
;
1305 char *buffer
= fragP
->fr_fix
+ fragP
->fr_literal
;
1307 switch (fragP
->fr_subtype
)
1309 case C (BRANCH
, BYTE_DISP
):
1314 case C (SCB_F
, BYTE_DISP
):
1315 case C (SCB_TST
, BYTE_DISP
):
1320 /* Branches to a known 16 bit displacement. */
1322 /* Turn on the 16bit bit. */
1323 case C (BRANCH
, WORD_DISP
):
1324 case C (SCB_F
, WORD_DISP
):
1325 case C (SCB_TST
, WORD_DISP
):
1326 wordify_scb (buffer
, &disp_size
, &inst_size
);
1329 case C (BRANCH
, UNDEF_WORD_DISP
):
1330 case C (SCB_F
, UNDEF_WORD_DISP
):
1331 case C (SCB_TST
, UNDEF_WORD_DISP
):
1332 /* This tried to be relaxed, but didn't manage it, it now needs
1334 wordify_scb (buffer
, &disp_size
, &inst_size
);
1338 fragP
->fr_fix
+ inst_size
,
1345 fragP
->fr_fix
+= disp_size
+ inst_size
;
1353 /* Get the address of the end of the instruction */
1354 int next_inst
= fragP
->fr_fix
+ fragP
->fr_address
+ disp_size
+ inst_size
;
1355 int targ_addr
= (S_GET_VALUE (fragP
->fr_symbol
) +
1357 int disp
= targ_addr
- next_inst
;
1359 md_number_to_chars (buffer
+ inst_size
, disp
, disp_size
);
1360 fragP
->fr_fix
+= disp_size
+ inst_size
;
1365 md_section_align (seg
, size
)
1369 return ((size
+ (1 << section_alignment
[(int) seg
]) - 1)
1370 & (-1 << section_alignment
[(int) seg
]));
1375 md_apply_fix3 (fixP
, valP
, seg
)
1378 segT seg ATTRIBUTE_UNUSED
;
1380 long val
= * (long *) valP
;
1381 char *buf
= fixP
->fx_where
+ fixP
->fx_frag
->fr_literal
;
1383 if (fixP
->fx_r_type
== 0)
1384 fixP
->fx_r_type
= fixP
->fx_size
== 4 ? R_H8500_IMM32
: R_H8500_IMM16
;
1386 switch (fixP
->fx_r_type
)
1389 case R_H8500_PCREL8
:
1394 case R_H8500_PCREL16
:
1395 *buf
++ = (val
>> 8);
1401 case R_H8500_HIGH16
:
1406 *buf
++ = (val
>> 16);
1407 *buf
++ = (val
>> 8);
1411 *buf
++ = (val
>> 24);
1412 *buf
++ = (val
>> 16);
1413 *buf
++ = (val
>> 8);
1420 if (fixP
->fx_addsy
== NULL
&& fixP
->fx_pcrel
== 0)
1424 /* Called just before address relaxation, return the length
1425 by which a fragment must grow to reach it's destination. */
1428 md_estimate_size_before_relax (fragP
, segment_type
)
1429 register fragS
*fragP
;
1430 register segT segment_type
;
1434 switch (fragP
->fr_subtype
)
1439 case C (BRANCH
, UNDEF_BYTE_DISP
):
1440 case C (SCB_F
, UNDEF_BYTE_DISP
):
1441 case C (SCB_TST
, UNDEF_BYTE_DISP
):
1442 what
= GET_WHAT (fragP
->fr_subtype
);
1443 /* used to be a branch to somewhere which was unknown */
1444 if (S_GET_SEGMENT (fragP
->fr_symbol
) == segment_type
)
1446 /* Got a symbol and it's defined in this segment, become byte
1447 sized - maybe it will fix up. */
1448 fragP
->fr_subtype
= C (what
, BYTE_DISP
);
1452 /* Its got a segment, but its not ours, so it will always be
1454 fragP
->fr_subtype
= C (what
, UNDEF_WORD_DISP
);
1458 case C (BRANCH
, BYTE_DISP
):
1459 case C (BRANCH
, WORD_DISP
):
1460 case C (BRANCH
, UNDEF_WORD_DISP
):
1461 case C (SCB_F
, BYTE_DISP
):
1462 case C (SCB_F
, WORD_DISP
):
1463 case C (SCB_F
, UNDEF_WORD_DISP
):
1464 case C (SCB_TST
, BYTE_DISP
):
1465 case C (SCB_TST
, WORD_DISP
):
1466 case C (SCB_TST
, UNDEF_WORD_DISP
):
1467 /* When relaxing a section for the second time, we don't need to
1468 do anything besides return the current size. */
1472 return md_relax_table
[fragP
->fr_subtype
].rlx_length
;
1475 /* Put number into target byte order. */
1478 md_number_to_chars (ptr
, use
, nbytes
)
1483 number_to_chars_bigendian (ptr
, use
, nbytes
);
1487 md_pcrel_from (fixP
)
1490 return fixP
->fx_size
+ fixP
->fx_where
+ fixP
->fx_frag
->fr_address
;
1494 tc_coff_symbol_emit_hook (ignore
)
1500 tc_coff_fix2rtype (fix_ptr
)
1503 if (fix_ptr
->fx_r_type
== RELOC_32
)
1505 /* cons likes to create reloc32's whatever the size of the reloc..
1507 switch (fix_ptr
->fx_size
)
1510 return R_H8500_IMM16
;
1513 return R_H8500_IMM8
;
1519 return fix_ptr
->fx_r_type
;
1523 tc_reloc_mangle (fix_ptr
, intr
, base
)
1525 struct internal_reloc
*intr
;
1529 symbolS
*symbol_ptr
;
1531 symbol_ptr
= fix_ptr
->fx_addsy
;
1533 /* If this relocation is attached to a symbol then it's ok
1535 if (fix_ptr
->fx_r_type
== RELOC_32
)
1537 /* cons likes to create reloc32's whatever the size of the reloc..
1539 switch (fix_ptr
->fx_size
)
1542 intr
->r_type
= R_IMM16
;
1545 intr
->r_type
= R_IMM8
;
1553 intr
->r_type
= fix_ptr
->fx_r_type
;
1556 intr
->r_vaddr
= fix_ptr
->fx_frag
->fr_address
+ fix_ptr
->fx_where
+ base
;
1557 intr
->r_offset
= fix_ptr
->fx_offset
;
1559 /* Turn the segment of the symbol into an offset. */
1564 dot
= segment_info
[S_GET_SEGMENT (symbol_ptr
)].dot
;
1569 segment_info
[S_GET_SEGMENT (symbol_ptr
)].scnhdr
.s_paddr
;
1571 intr
->r_offset
+= S_GET_VALUE (symbol_ptr
);
1572 intr
->r_symndx
= dot
->sy_number
;
1576 intr
->r_symndx
= symbol_ptr
->sy_number
;
1582 intr
->r_symndx
= -1;
1591 /* Check for :s.w */
1592 if (ISALPHA (ptr
[1]) && ptr
[2] == '.')
1595 if (ISALPHA (ptr
[1]) && !ISALPHA (ptr
[2]))
1601 tc_coff_sizemachdep (frag
)
1604 return md_relax_table
[frag
->fr_subtype
].rlx_length
;