1 /* tc-z8k.c -- Assemble code for the Zilog Z800n
2 Copyright 1992, 1993, 1994, 1995, 1996, 1998, 2000, 2001, 2002, 2003,
3 2005 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, 51 Franklin Street - Fifth Floor, Boston, MA
22 /* Written By Steve Chamberlain <sac@cygnus.com>. */
29 #include "safe-ctype.h"
30 #include "opcodes/z8k-opc.h"
32 const char comment_chars
[] = "!";
33 const char line_comment_chars
[] = "#";
34 const char line_separator_chars
[] = ";";
37 extern int coff_flags
;
39 const int md_reloc_size
;
41 /* This is non-zero if target was set from the command line. */
42 static int z8k_target_from_cmdline
;
50 machine
= bfd_mach_z8001
;
56 machine
= bfd_mach_z8002
;
62 even (int ignore ATTRIBUTE_UNUSED
)
65 record_alignment (now_seg
, 1);
79 sval (int ignore ATTRIBUTE_UNUSED
)
82 if (*input_line_pointer
== '\'')
86 c
= *input_line_pointer
++;
91 c
= (tohex (input_line_pointer
[0]) << 4)
92 | tohex (input_line_pointer
[1]);
93 input_line_pointer
+= 2;
95 FRAG_APPEND_1_CHAR (c
);
96 c
= *input_line_pointer
++;
98 demand_empty_rest_of_line ();
102 /* This table describes all the machine specific pseudo-ops the assembler
103 has to support. The fields are:
104 pseudo-op name without dot
105 function to call to execute this pseudo-op
106 Integer arg to pass to the function
109 const pseudo_typeS md_pseudo_table
[] = {
111 {"data.b" , cons
, 1},
112 {"data.w" , cons
, 2},
113 {"data.l" , cons
, 4},
114 {"form" , listing_psize
, 0},
115 {"heading", listing_title
, 0},
116 {"import" , s_ignore
, 0},
117 {"page" , listing_eject
, 0},
118 {"program", s_ignore
, 0},
119 {"z8001" , s_segm
, 1},
120 {"z8002" , s_segm
, 0},
122 {"segm" , s_segm
, 1},
123 {"unsegm" , s_segm
, 0},
124 {"unseg" , s_segm
, 0},
125 {"name" , s_app_file
, 0},
126 {"global" , s_globl
, 0},
131 {"rsect" , obj_coff_section
, 0},
132 {"sect" , obj_coff_section
, 0},
133 {"block" , s_space
, 0},
138 const char EXP_CHARS
[] = "eE";
140 /* Chars that mean this number is a floating point constant.
143 const char FLT_CHARS
[] = "rRsSfFdDxXpP";
145 /* Opcode mnemonics. */
146 static struct hash_control
*opcode_hash_control
;
151 const opcode_entry_type
*opcode
;
154 opcode_hash_control
= hash_new ();
156 for (opcode
= z8k_table
; opcode
->name
; opcode
++)
158 /* Only enter unique codes into the table. */
159 if (idx
!= opcode
->idx
)
160 hash_insert (opcode_hash_control
, opcode
->name
, (char *) opcode
);
164 /* Default to z8002. */
165 if (! z8k_target_from_cmdline
)
168 /* Insert the pseudo ops, too. */
169 for (idx
= 0; md_pseudo_table
[idx
].poc_name
; idx
++)
171 opcode_entry_type
*fake_opcode
;
172 fake_opcode
= (opcode_entry_type
*) malloc (sizeof (opcode_entry_type
));
173 fake_opcode
->name
= md_pseudo_table
[idx
].poc_name
;
174 fake_opcode
->func
= (void *) (md_pseudo_table
+ idx
);
175 fake_opcode
->opcode
= 250;
176 hash_insert (opcode_hash_control
, fake_opcode
->name
, fake_opcode
);
180 typedef struct z8k_op
{
189 /* Any other register associated with the mode. */
192 /* Any expression. */
196 static expressionS
*da_operand
;
197 static expressionS
*imm_operand
;
202 static int the_flags
;
203 static int the_interrupt
;
206 whatreg (unsigned int *reg
, char *src
)
208 if (ISDIGIT (src
[1]))
210 *reg
= (src
[0] - '0') * 10 + src
[1] - '0';
215 *reg
= (src
[0] - '0');
226 WREG r0,r1,r2,r3,r4,r5,r6,r7,fp,sp
234 /* Try to parse a reg name. Return a pointer to the first character
235 in SRC after the reg name. */
238 parse_reg (char *src
, int *mode
, unsigned int *reg
)
243 /* Check for stack pointer "sp" alias. */
244 if ((src
[0] == 's' || src
[0] == 'S')
245 && (src
[1] == 'p' || src
[1] == 'P')
246 && (src
[2] == 0 || src
[2] == ','))
250 *mode
= CLASS_REG_LONG
;
255 *mode
= CLASS_REG_WORD
;
261 if (src
[0] == 'r' || src
[0] == 'R')
263 if (src
[1] == 'r' || src
[1] == 'R')
265 if (src
[2] < '0' || src
[2] > '9')
266 return res
; /* Assume no register name but a label starting with 'rr'. */
267 *mode
= CLASS_REG_LONG
;
268 res
= whatreg (reg
, src
+ 2);
271 as_bad (_("register rr%d out of range"), regno
);
273 as_bad (_("register rr%d does not exist"), regno
);
275 else if (src
[1] == 'h' || src
[1] == 'H')
277 if (src
[2] < '0' || src
[2] > '9')
278 return res
; /* Assume no register name but a label starting with 'rh'. */
279 *mode
= CLASS_REG_BYTE
;
280 res
= whatreg (reg
, src
+ 2);
283 as_bad (_("register rh%d out of range"), regno
);
285 else if (src
[1] == 'l' || src
[1] == 'L')
287 if (src
[2] < '0' || src
[2] > '9')
288 return res
; /* Assume no register name but a label starting with 'rl'. */
289 *mode
= CLASS_REG_BYTE
;
290 res
= whatreg (reg
, src
+ 2);
293 as_bad (_("register rl%d out of range"), regno
);
296 else if (src
[1] == 'q' || src
[1] == 'Q')
298 if (src
[2] < '0' || src
[2] > '9')
299 return res
; /* Assume no register name but a label starting with 'rq'. */
300 *mode
= CLASS_REG_QUAD
;
301 res
= whatreg (reg
, src
+ 2);
304 as_bad (_("register rq%d out of range"), regno
);
306 as_bad (_("register rq%d does not exist"), regno
);
310 if (src
[1] < '0' || src
[1] > '9')
311 return res
; /* Assume no register name but a label starting with 'r'. */
312 *mode
= CLASS_REG_WORD
;
313 res
= whatreg (reg
, src
+ 1);
316 as_bad (_("register r%d out of range"), regno
);
323 parse_exp (char *s
, expressionS
*op
)
325 char *save
= input_line_pointer
;
328 input_line_pointer
= s
;
330 if (op
->X_op
== O_absent
)
331 as_bad (_("missing operand"));
332 new = input_line_pointer
;
333 input_line_pointer
= save
;
337 /* The many forms of operand:
352 checkfor (char *ptr
, char what
)
357 as_bad (_("expected %c"), what
);
362 /* Make sure the mode supplied is the size of a word. */
365 regword (int mode
, char *string
)
372 as_bad (_("register is wrong size for a word %s"), string
);
376 /* Make sure the mode supplied is the size of an address. */
379 regaddr (int mode
, char *string
)
383 ok
= segmented_mode
? CLASS_REG_LONG
: CLASS_REG_WORD
;
386 as_bad (_("register is wrong size for address %s"), string
);
395 static struct ctrl_names ctrl_table
[] = {
396 { 0x1, "flags" }, /* ldctlb only. */
397 { 0x2, "fcw" }, /* ldctl only. Applies to all remaining control registers. */
409 get_ctrl_operand (char **ptr
, struct z8k_op
*mode
, unsigned int dst ATTRIBUTE_UNUSED
)
417 mode
->mode
= CLASS_CTRL
;
418 for (i
= 0; ctrl_table
[i
].name
; i
++)
420 l
= strlen (ctrl_table
[i
].name
);
421 if (! strncasecmp (ctrl_table
[i
].name
, src
, l
))
423 the_ctrl
= ctrl_table
[i
].value
;
424 if (*(src
+ l
) && *(src
+ l
) != ',')
426 *ptr
= src
+ l
; /* Valid control name found: "consume" it. */
438 static struct flag_names flag_table
[] = {
450 get_flags_operand (char **ptr
, struct z8k_op
*mode
, unsigned int dst ATTRIBUTE_UNUSED
)
460 mode
->mode
= CLASS_FLAGS
;
462 for (j
= 0; j
<= 9; j
++)
467 for (i
= 0; flag_table
[i
].name
; i
++)
469 if (flag_table
[i
].name
[0] == c
)
471 the_flags
= the_flags
| flag_table
[i
].value
;
483 struct interrupt_names
{
488 static struct interrupt_names intr_table
[] = {
497 get_interrupt_operand (char **ptr
, struct z8k_op
*mode
, unsigned int dst ATTRIBUTE_UNUSED
)
505 mode
->mode
= CLASS_IMM
;
510 for (i
= 0; intr_table
[i
].name
; i
++)
512 l
= strlen (intr_table
[i
].name
);
513 if (! strncasecmp (intr_table
[i
].name
, src
, l
))
515 the_interrupt
|= intr_table
[i
].value
;
516 if (*(src
+ l
) && *(src
+ l
) != ',')
520 as_bad (_("unknown interrupt %s"), src
);
521 while (**ptr
&& ! is_end_of_line
[(unsigned char) **ptr
])
522 (*ptr
)++; /* Consume rest of line. */
542 /* No interrupt type specified, opcode won't do anything. */
543 as_warn (_("opcode has no effect"));
552 static struct cc_names table
[] = {
587 get_cc_operand (char **ptr
, struct z8k_op
*mode
, unsigned int dst ATTRIBUTE_UNUSED
)
595 mode
->mode
= CLASS_CC
;
596 for (i
= 0; table
[i
].name
; i
++)
598 l
= strlen (table
[i
].name
);
599 if (! strncasecmp (table
[i
].name
, src
, l
))
601 the_cc
= table
[i
].value
;
602 if (*(src
+ l
) && *(src
+ l
) != ',')
604 *ptr
= src
+ l
; /* Valid cc found: "consume" it. */
608 the_cc
= 0x8; /* Not recognizing the cc defaults to t. (Assuming no cc present.) */
612 get_operand (char **ptr
, struct z8k_op
*mode
, unsigned int dst ATTRIBUTE_UNUSED
)
623 mode
->mode
= CLASS_IMM
;
624 imm_operand
= &(mode
->exp
);
625 src
= parse_exp (src
+ 1, &(mode
->exp
));
627 else if (*src
== '@')
629 mode
->mode
= CLASS_IR
;
630 src
= parse_reg (src
+ 1, &mode
->regsize
, &mode
->reg
);
636 end
= parse_reg (src
, &mode
->mode
, ®n
);
647 end
= parse_reg (src
, &nw
, &nr
);
654 as_bad (_("Missing ) in ra(rb)"));
658 regaddr (mode
->mode
, "ra(rb) ra");
659 mode
->mode
= CLASS_BX
;
669 src
= parse_exp (src
, &(mode
->exp
));
670 src
= checkfor (src
, ')');
671 mode
->mode
= CLASS_BA
;
674 imm_operand
= &(mode
->exp
);
685 /* No initial reg. */
686 src
= parse_exp (src
, &(mode
->exp
));
690 end
= parse_reg (src
, &(mode
->mode
), ®n
);
691 regword (mode
->mode
, "addr(Ra) ra");
692 mode
->mode
= CLASS_X
;
695 da_operand
= &(mode
->exp
);
696 src
= checkfor (end
, ')');
700 /* Just an address. */
701 mode
->mode
= CLASS_DA
;
704 da_operand
= &(mode
->exp
);
712 get_operands (const opcode_entry_type
*opcode
, char *op_end
, op_type
*operand
)
717 switch (opcode
->noperands
)
727 if (opcode
->arg_info
[0] == CLASS_CC
)
729 get_cc_operand (&ptr
, operand
+ 0, 0);
732 if (*ptr
&& ! is_end_of_line
[(unsigned char) *ptr
])
734 as_bad (_("invalid condition code '%s'"), ptr
);
735 while (*ptr
&& ! is_end_of_line
[(unsigned char) *ptr
])
736 ptr
++; /* Consume rest of line. */
739 else if (opcode
->arg_info
[0] == CLASS_FLAGS
)
741 get_flags_operand (&ptr
, operand
+ 0, 0);
744 if (*ptr
&& ! is_end_of_line
[(unsigned char) *ptr
])
746 as_bad (_("invalid flag '%s'"), ptr
);
747 while (*ptr
&& ! is_end_of_line
[(unsigned char) *ptr
])
748 ptr
++; /* Consume rest of line. */
751 else if (opcode
->arg_info
[0] == (CLASS_IMM
+ (ARG_IMM2
)))
752 get_interrupt_operand (&ptr
, operand
+ 0, 0);
754 get_operand (&ptr
, operand
+ 0, 0);
761 if (opcode
->arg_info
[0] == CLASS_CC
)
763 get_cc_operand (&ptr
, operand
+ 0, 0);
766 if (*ptr
!= ',' && strchr (ptr
+ 1, ','))
773 as_bad (_("invalid condition code '%s'"), savptr
);
776 else if (opcode
->arg_info
[0] == CLASS_CTRL
)
778 get_ctrl_operand (&ptr
, operand
+ 0, 0);
783 get_operand (&ptr
, operand
+ 0, 0);
789 get_ctrl_operand (&ptr
, operand
+ 1, 1);
796 get_operand (&ptr
, operand
+ 0, 0);
802 get_operand (&ptr
, operand
+ 1, 1);
806 get_operand (&ptr
, operand
+ 0, 0);
809 get_operand (&ptr
, operand
+ 1, 1);
812 get_operand (&ptr
, operand
+ 2, 2);
816 get_operand (&ptr
, operand
+ 0, 0);
819 get_operand (&ptr
, operand
+ 1, 1);
822 get_operand (&ptr
, operand
+ 2, 2);
825 get_cc_operand (&ptr
, operand
+ 3, 3);
835 /* Passed a pointer to a list of opcodes which use different
836 addressing modes. Return the opcode which matches the opcodes
839 static opcode_entry_type
*
840 get_specific (opcode_entry_type
*opcode
, op_type
*operands
)
842 opcode_entry_type
*this_try
= opcode
;
844 unsigned int noperands
= opcode
->noperands
;
846 int this_index
= opcode
->idx
;
848 while (this_index
== opcode
->idx
&& !found
)
853 for (i
= 0; i
< noperands
; i
++)
855 unsigned int mode
= operands
[i
].mode
;
857 if (((mode
& CLASS_MASK
) == CLASS_IR
) && ((this_try
->arg_info
[i
] & CLASS_MASK
) == CLASS_IRO
))
859 mode
= operands
[i
].mode
= (operands
[i
].mode
& ~CLASS_MASK
) | CLASS_IRO
;
862 if ((mode
& CLASS_MASK
) != (this_try
->arg_info
[i
] & CLASS_MASK
))
864 /* It could be a pc rel operand, if this is a da mode
865 and we like disps, then insert it. */
867 if (mode
== CLASS_DA
&& this_try
->arg_info
[i
] == CLASS_DISP
)
869 /* This is the case. */
870 operands
[i
].mode
= CLASS_DISP
;
872 else if (mode
== CLASS_BA
&& this_try
->arg_info
[i
])
874 /* Can't think of a way to turn what we've been
875 given into something that's OK. */
878 else if (this_try
->arg_info
[i
] & CLASS_PR
)
880 if (mode
== CLASS_REG_LONG
&& segmented_mode
)
884 else if (mode
== CLASS_REG_WORD
&& !segmented_mode
)
894 switch (mode
& CLASS_MASK
)
899 if (operands
[i
].regsize
!= CLASS_REG_WORD
)
900 as_bad (_("invalid indirect register size"));
901 reg
[this_try
->arg_info
[i
] & ARG_MASK
] = operands
[i
].reg
;
904 if ((segmented_mode
&& operands
[i
].regsize
!= CLASS_REG_LONG
)
905 || (!segmented_mode
&& operands
[i
].regsize
!= CLASS_REG_WORD
))
906 as_bad (_("invalid indirect register size"));
907 reg
[this_try
->arg_info
[i
] & ARG_MASK
] = operands
[i
].reg
;
919 reg
[this_try
->arg_info
[i
] & ARG_MASK
] = operands
[i
].reg
;
922 if (this_try
->opcode
== OPC_ldctlb
&& the_ctrl
!= 1)
923 as_bad (_("invalid control register name"));
938 static char buffer
[20];
941 newfix (int ptr
, int type
, int size
, expressionS
*operand
)
945 /* size is in nibbles. */
947 if (operand
->X_add_symbol
948 || operand
->X_op_symbol
949 || operand
->X_add_number
)
958 fix_new_exp (frag_now
,
968 apply_fix (char *ptr
, int type
, expressionS
*operand
, int size
)
970 long n
= operand
->X_add_number
;
972 /* size is in nibbles. */
974 newfix ((ptr
- buffer
) / 2, type
, size
+ 1, operand
);
977 case 8: /* 8 nibbles == 32 bits. */
982 case 4: /* 4 nibbles == 16 bits. */
994 /* Now we know what sort of opcodes it is. Let's build the bytes. */
997 build_bytes (opcode_entry_type
*this_try
, struct z8k_op
*operand ATTRIBUTE_UNUSED
)
999 char *output_ptr
= buffer
;
1002 unsigned int *class_ptr
;
1004 frag_wane (frag_now
);
1007 memset (buffer
, 0, sizeof (buffer
));
1008 class_ptr
= this_try
->byte_info
;
1010 for (nibble
= 0; (c
= *class_ptr
++); nibble
++)
1013 switch (c
& CLASS_MASK
)
1019 /* Direct address, we don't cope with the SS mode right now. */
1022 /* da_operand->X_add_number |= 0x80000000; -- Now set at relocation time. */
1023 output_ptr
= apply_fix (output_ptr
, R_IMM32
, da_operand
, 8);
1027 output_ptr
= apply_fix (output_ptr
, R_IMM16
, da_operand
, 4);
1033 output_ptr
= apply_fix (output_ptr
, R_JR
, da_operand
, 2);
1040 output_ptr
= apply_fix (output_ptr
, R_DISP7
, da_operand
, 2);
1047 output_ptr
= apply_fix (output_ptr
, R_DISP7
, da_operand
, 2);
1048 output_ptr
[-2] = 0x8;
1052 case CLASS_BIT_1OR2
:
1053 *output_ptr
= c
& 0xf;
1056 if (imm_operand
->X_add_number
== 2)
1058 else if (imm_operand
->X_add_number
!= 1)
1059 as_bad (_("immediate must be 1 or 2"));
1062 as_bad (_("immediate 1 or 2 expected"));
1066 *output_ptr
++ = the_cc
;
1069 if (the_ctrl
< 2 || the_ctrl
> 7)
1070 as_bad (_("invalid control register name"));
1071 *output_ptr
++ = the_ctrl
;
1074 if (the_ctrl
< 2 || the_ctrl
> 7)
1075 as_bad (_("invalid control register name"));
1076 *output_ptr
++ = the_ctrl
| 0x8;
1079 *output_ptr
++ = (~the_interrupt
& 0x3);
1082 *output_ptr
++ = (~the_interrupt
& 0x3) | 0x4;
1085 *output_ptr
++ = the_flags
;
1089 *output_ptr
++ = c
& 0xf;
1092 if (reg
[c
& 0xf] == 0)
1093 as_bad (_("can't use R0 here"));
1096 case CLASS_REG_BYTE
:
1097 case CLASS_REG_WORD
:
1098 case CLASS_REG_LONG
:
1099 case CLASS_REG_QUAD
:
1100 /* Insert bit mattern of right reg. */
1101 *output_ptr
++ = reg
[c
& 0xf];
1104 switch (c
& ARG_MASK
)
1107 output_ptr
= apply_fix (output_ptr
, R_CALLR
, da_operand
, 4);
1110 output_ptr
= apply_fix (output_ptr
, R_REL16
, da_operand
, 4);
1113 output_ptr
= apply_fix (output_ptr
, R_IMM16
, da_operand
, 4);
1120 switch (c
& ARG_MASK
)
1123 if (imm_operand
->X_add_number
> 15)
1125 as_bad (_("immediate value out of range"));
1127 imm_operand
->X_add_number
= -imm_operand
->X_add_number
;
1128 output_ptr
= apply_fix (output_ptr
, R_IMM4L
, imm_operand
, 1);
1130 /*case ARG_IMMNMINUS1: not used. */
1132 imm_operand
->X_add_number
--;
1135 if (imm_operand
->X_add_number
> 15)
1137 as_bad (_("immediate value out of range"));
1139 output_ptr
= apply_fix (output_ptr
, R_IMM4L
, imm_operand
, 1);
1142 imm_operand
->X_add_number
= -imm_operand
->X_add_number
;
1145 output_ptr
= apply_fix (output_ptr
, R_IMM8
, imm_operand
, 2);
1148 output_ptr
= apply_fix (output_ptr
, R_IMM16
, imm_operand
, 4);
1151 output_ptr
= apply_fix (output_ptr
, R_IMM32
, imm_operand
, 8);
1160 /* Copy from the nibble buffer into the frag. */
1162 int length
= (output_ptr
- buffer
) / 2;
1164 char *fragp
= frag_more (length
);
1166 while (src
< output_ptr
)
1168 *fragp
= (src
[0] << 4) | src
[1];
1175 /* This is the guts of the machine-dependent assembler. STR points to a
1176 machine dependent instruction. This function is supposed to emit
1177 the frags/bytes it assembles to. */
1180 md_assemble (char *str
)
1185 struct z8k_op operand
[4];
1186 opcode_entry_type
*opcode
;
1188 /* Drop leading whitespace. */
1192 /* Find the op code end. */
1193 for (op_start
= op_end
= str
;
1194 *op_end
!= 0 && *op_end
!= ' ' && ! is_end_of_line
[(unsigned char) *op_end
];
1198 if (op_end
== op_start
)
1200 as_bad (_("can't find opcode "));
1204 *op_end
= 0; /* Zero-terminate op code string for hash_find() call. */
1206 opcode
= (opcode_entry_type
*) hash_find (opcode_hash_control
, op_start
);
1210 as_bad (_("unknown opcode"));
1214 *op_end
= c
; /* Restore original string. */
1216 if (opcode
->opcode
== 250)
1220 char *old
= input_line_pointer
;
1222 /* Was really a pseudo op. */
1224 input_line_pointer
= op_end
;
1228 while (*input_line_pointer
== ' ')
1229 input_line_pointer
++;
1230 p
= (pseudo_typeS
*) (opcode
->func
);
1232 (p
->poc_handler
) (p
->poc_val
);
1233 input_line_pointer
= old
;
1238 char *new_input_line_pointer
;
1240 new_input_line_pointer
= get_operands (opcode
, op_end
, operand
);
1241 if (new_input_line_pointer
)
1243 input_line_pointer
= new_input_line_pointer
;
1244 opcode
= get_specific (opcode
, operand
);
1247 if (new_input_line_pointer
== NULL
|| opcode
== NULL
)
1249 /* Couldn't find an opcode which matched the operands. */
1250 char *where
= frag_more (2);
1255 as_bad (_("Can't find opcode to match operands"));
1259 build_bytes (opcode
, operand
);
1264 tc_crawl_symbol_chain (object_headers
*headers ATTRIBUTE_UNUSED
)
1266 printf (_("call to tc_crawl_symbol_chain \n"));
1269 /* We have no need to default values of symbols. */
1272 md_undefined_symbol (char *name ATTRIBUTE_UNUSED
)
1278 tc_headers_hook (object_headers
*headers ATTRIBUTE_UNUSED
)
1280 printf (_("call to tc_headers_hook \n"));
1283 /* Various routines to kill one day. */
1284 /* Equal to MAX_PRECISION in atof-ieee.c. */
1285 #define MAX_LITTLENUMS 6
1287 /* Turn a string in input_line_pointer into a floating point constant
1288 of type TYPE, and store the appropriate bytes in *LITP. The number
1289 of LITTLENUMS emitted is stored in *SIZEP. An error message is
1290 returned, or NULL on OK. */
1293 md_atof (int type
, char *litP
, int *sizeP
)
1296 LITTLENUM_TYPE words
[MAX_LITTLENUMS
];
1297 LITTLENUM_TYPE
*wordP
;
1328 return _("Bad call to MD_ATOF()");
1330 t
= atof_ieee (input_line_pointer
, type
, words
);
1332 input_line_pointer
= t
;
1334 *sizeP
= prec
* sizeof (LITTLENUM_TYPE
);
1335 for (wordP
= words
; prec
--;)
1337 md_number_to_chars (litP
, (long) (*wordP
++), sizeof (LITTLENUM_TYPE
));
1338 litP
+= sizeof (LITTLENUM_TYPE
);
1343 const char *md_shortopts
= "z:";
1345 struct option md_longopts
[] =
1347 #define OPTION_RELAX (OPTION_MD_BASE)
1348 {"linkrelax", no_argument
, NULL
, OPTION_RELAX
},
1349 {NULL
, no_argument
, NULL
, 0}
1352 size_t md_longopts_size
= sizeof (md_longopts
);
1355 md_parse_option (int c
, char *arg
)
1360 if (!strcmp (arg
, "8001"))
1362 else if (!strcmp (arg
, "8002"))
1366 as_bad (_("invalid architecture -z%s"), arg
);
1369 z8k_target_from_cmdline
= 1;
1384 md_show_usage (FILE *stream
)
1386 fprintf (stream
, _("\
1388 -z8001 generate segmented code\n\
1389 -z8002 generate unsegmented code\n\
1390 -linkrelax create linker relaxable code\n"));
1394 md_convert_frag (object_headers
*headers ATTRIBUTE_UNUSED
,
1395 segT seg ATTRIBUTE_UNUSED
,
1396 fragS
*fragP ATTRIBUTE_UNUSED
)
1398 printf (_("call to md_convert_frag\n"));
1403 md_section_align (segT seg
, valueT size
)
1405 return ((size
+ (1 << section_alignment
[(int) seg
]) - 1)
1406 & (-1 << section_alignment
[(int) seg
]));
1409 /* Attempt to simplify or eliminate a fixup. To indicate that a fixup
1410 has been eliminated, set fix->fx_done. If fix->fx_addsy is non-NULL,
1411 we will have to generate a reloc entry. */
1413 md_apply_fix3 (fixS
*fixP
, valueT
*valP
, segT segment ATTRIBUTE_UNUSED
)
1415 long val
= * (long *) valP
;
1416 char *buf
= fixP
->fx_where
+ fixP
->fx_frag
->fr_literal
;
1418 switch (fixP
->fx_r_type
)
1421 buf
[0] = (buf
[0] & 0xf0) | (val
& 0xf);
1427 fixP
->fx_no_overflow
= 1;
1433 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1434 _("cannot branch to odd address"));
1436 if (val
> 127 || val
< -128)
1437 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1438 _("relative jump out of range"));
1440 fixP
->fx_no_overflow
= 1;
1448 fixP
->fx_no_overflow
= 1;
1454 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1455 _("cannot branch to odd address"));
1457 if (val
> 0 || val
< -127)
1458 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1459 _("relative jump out of range"));
1460 *buf
= (*buf
& 0x80) | (-val
& 0x7f);
1461 fixP
->fx_no_overflow
= 1;
1469 fixP
->fx_no_overflow
= 1;
1475 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1476 _("cannot branch to odd address"));
1477 if (val
> 4096 || val
< -4095)
1478 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1479 _("relative call out of range"));
1481 *buf
= (*buf
& 0xf0) | ((val
>> 8) & 0xf);
1483 *buf
++ = val
& 0xff;
1484 fixP
->fx_no_overflow
= 1;
1494 *buf
++ = (val
>> 8);
1499 *buf
++ = (val
>> 24);
1500 *buf
++ = (val
>> 16);
1501 *buf
++ = (val
>> 8);
1506 val
= val
- fixP
->fx_frag
->fr_address
+ fixP
->fx_where
- fixP
->fx_size
;
1507 if (val
> 32767 || val
< -32768)
1508 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
1509 _("relative address out of range"));
1510 *buf
++ = (val
>> 8);
1512 fixP
->fx_no_overflow
= 1;
1516 md_number_to_chars (buf
, val
, fixP
->fx_size
);
1520 printf(_("md_apply_fix3: unknown r_type 0x%x\n"), fixP
->fx_r_type
);
1524 if (fixP
->fx_addsy
== NULL
&& fixP
->fx_pcrel
== 0)
1529 md_estimate_size_before_relax (fragS
*fragP ATTRIBUTE_UNUSED
,
1530 segT segment_type ATTRIBUTE_UNUSED
)
1532 printf (_("call to md_estimate_size_before_relax\n"));
1536 /* Put number into target byte order. */
1539 md_number_to_chars (char *ptr
, valueT use
, int nbytes
)
1541 number_to_chars_bigendian (ptr
, use
, nbytes
);
1544 /* On the Z8000, a PC-relative offset is relative to the address of the
1545 instruction plus its size. */
1547 md_pcrel_from (fixS
*fixP
)
1549 return fixP
->fx_size
+ fixP
->fx_where
+ fixP
->fx_frag
->fr_address
;
1553 tc_coff_symbol_emit_hook (symbolS
*s ATTRIBUTE_UNUSED
)
1558 tc_reloc_mangle (fixS
*fix_ptr
, struct internal_reloc
*intr
, bfd_vma base
)
1560 symbolS
*symbol_ptr
;
1562 if (fix_ptr
->fx_addsy
1563 && fix_ptr
->fx_subsy
)
1565 symbolS
*add
= fix_ptr
->fx_addsy
;
1566 symbolS
*sub
= fix_ptr
->fx_subsy
;
1568 if (S_GET_SEGMENT (add
) != S_GET_SEGMENT (sub
))
1569 as_bad (_("Can't subtract symbols in different sections %s %s"),
1570 S_GET_NAME (add
), S_GET_NAME (sub
));
1573 int diff
= S_GET_VALUE (add
) - S_GET_VALUE (sub
);
1575 fix_ptr
->fx_addsy
= 0;
1576 fix_ptr
->fx_subsy
= 0;
1577 fix_ptr
->fx_offset
+= diff
;
1580 symbol_ptr
= fix_ptr
->fx_addsy
;
1582 /* If this relocation is attached to a symbol then it's ok
1584 if (fix_ptr
->fx_r_type
== 0)
1586 /* cons likes to create reloc32's whatever the size of the reloc. */
1587 switch (fix_ptr
->fx_size
)
1590 intr
->r_type
= R_IMM16
;
1593 intr
->r_type
= R_IMM8
;
1596 intr
->r_type
= R_IMM32
;
1603 intr
->r_type
= fix_ptr
->fx_r_type
;
1605 intr
->r_vaddr
= fix_ptr
->fx_frag
->fr_address
+ fix_ptr
->fx_where
+ base
;
1606 intr
->r_offset
= fix_ptr
->fx_offset
;
1609 intr
->r_symndx
= symbol_ptr
->sy_number
;
1611 intr
->r_symndx
= -1;