1 /* tc-s390.c -- Assemble for the S390
2 Copyright (C) 2000-2019 Free Software Foundation, Inc.
3 Contributed by Martin Schwidefsky (schwidefsky@de.ibm.com).
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 3, 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
23 #include "safe-ctype.h"
25 #include "dwarf2dbg.h"
26 #include "dw2gencfi.h"
28 #include "opcode/s390.h"
31 /* The default architecture. */
33 #define DEFAULT_ARCH "s390"
35 static const char *default_arch
= DEFAULT_ARCH
;
36 /* Either 32 or 64, selects file format. */
37 static int s390_arch_size
= 0;
39 /* If no -march option was given default to the highest available CPU.
40 Since with S/390 a newer CPU always supports everything from its
41 predecessors this will accept every valid asm input. */
42 static unsigned int current_cpu
= S390_OPCODE_MAXCPU
- 1;
43 /* All facilities are enabled by default. */
44 static unsigned int current_flags
= S390_INSTR_FLAG_FACILITY_MASK
;
45 /* The mode mask default is picked in init_default_arch depending on
47 static unsigned int current_mode_mask
= 0;
49 /* Set to TRUE if the highgprs flag in the ELF header needs to be set
50 for the output file. */
51 static bfd_boolean set_highgprs_p
= FALSE
;
53 /* Whether to use user friendly register names. Default is TRUE. */
54 #ifndef TARGET_REG_NAMES_P
55 #define TARGET_REG_NAMES_P TRUE
58 static bfd_boolean reg_names_p
= TARGET_REG_NAMES_P
;
60 /* Set to TRUE if we want to warn about zero base/index registers. */
61 static bfd_boolean warn_areg_zero
= FALSE
;
63 /* Generic assembler global variables which must be defined by all
66 const char comment_chars
[] = "#";
68 /* Characters which start a comment at the beginning of a line. */
69 const char line_comment_chars
[] = "#";
71 /* Characters which may be used to separate multiple commands on a
73 const char line_separator_chars
[] = ";";
75 /* Characters which are used to indicate an exponent in a floating
77 const char EXP_CHARS
[] = "eE";
79 /* Characters which mean that a number is a floating point constant,
81 const char FLT_CHARS
[] = "dD";
83 /* The dwarf2 data alignment, adjusted for 32 or 64 bit. */
84 int s390_cie_data_alignment
;
86 /* The target specific pseudo-ops which we support. */
88 /* Define the prototypes for the pseudo-ops */
89 static void s390_byte (int);
90 static void s390_elf_cons (int);
91 static void s390_bss (int);
92 static void s390_insn (int);
93 static void s390_literals (int);
94 static void s390_machine (int);
95 static void s390_machinemode (int);
97 const pseudo_typeS md_pseudo_table
[] =
99 { "align", s_align_bytes
, 0 },
100 /* Pseudo-ops which must be defined. */
101 { "bss", s390_bss
, 0 },
102 { "insn", s390_insn
, 0 },
103 /* Pseudo-ops which must be overridden. */
104 { "byte", s390_byte
, 0 },
105 { "short", s390_elf_cons
, 2 },
106 { "long", s390_elf_cons
, 4 },
107 { "quad", s390_elf_cons
, 8 },
108 { "ltorg", s390_literals
, 0 },
109 { "string", stringer
, 8 + 1 },
110 { "machine", s390_machine
, 0 },
111 { "machinemode", s390_machinemode
, 0 },
115 /* Given NAME, find the register number associated with that name, return
116 the integer value associated with the given name or -1 on failure. */
119 reg_name_search (const char *name
)
123 if (strcasecmp (name
, "lit") == 0)
126 if (strcasecmp (name
, "sp") == 0)
129 if (name
[0] != 'a' && name
[0] != 'c' && name
[0] != 'f'
130 && name
[0] != 'r' && name
[0] != 'v')
133 if (ISDIGIT (name
[1]))
136 if (ISDIGIT (name
[2]))
137 val
= val
* 10 + name
[2] - '0';
140 if ((name
[0] != 'v' && val
> 15) || val
> 31)
148 * Summary of register_name().
150 * in: Input_line_pointer points to 1st char of operand.
152 * out: A expressionS.
153 * The operand may have been a register: in this case, X_op == O_register,
154 * X_add_number is set to the register number, and truth is returned.
155 * Input_line_pointer->(next non-blank) char after operand, or is in its
160 register_name (expressionS
*expressionP
)
167 /* Find the spelling of the operand. */
168 start
= name
= input_line_pointer
;
169 if (name
[0] == '%' && ISALPHA (name
[1]))
170 name
= ++input_line_pointer
;
174 c
= get_symbol_name (&name
);
175 reg_number
= reg_name_search (name
);
177 /* Put back the delimiting char. */
178 (void) restore_line_pointer (c
);
180 /* Look to see if it's in the register table. */
183 expressionP
->X_op
= O_register
;
184 expressionP
->X_add_number
= reg_number
;
186 /* Make the rest nice. */
187 expressionP
->X_add_symbol
= NULL
;
188 expressionP
->X_op_symbol
= NULL
;
192 /* Reset the line as if we had not done anything. */
193 input_line_pointer
= start
;
197 /* Local variables. */
199 /* Opformat hash table. */
200 static struct hash_control
*s390_opformat_hash
;
202 /* Opcode hash table. */
203 static struct hash_control
*s390_opcode_hash
= NULL
;
205 /* Flags to set in the elf header */
206 static flagword s390_flags
= 0;
208 symbolS
*GOT_symbol
; /* Pre-defined "_GLOBAL_OFFSET_TABLE_" */
210 #ifndef WORKING_DOT_WORD
211 int md_short_jump_size
= 4;
212 int md_long_jump_size
= 4;
215 const char *md_shortopts
= "A:m:kVQ:";
216 struct option md_longopts
[] = {
217 {NULL
, no_argument
, NULL
, 0}
219 size_t md_longopts_size
= sizeof (md_longopts
);
221 /* Initialize the default opcode arch and word size from the default
222 architecture name if not specified by an option. */
224 init_default_arch (void)
226 if (strcmp (default_arch
, "s390") == 0)
228 if (s390_arch_size
== 0)
231 else if (strcmp (default_arch
, "s390x") == 0)
233 if (s390_arch_size
== 0)
237 as_fatal (_("Invalid default architecture, broken assembler."));
239 if (current_mode_mask
== 0)
241 /* Default to z/Architecture mode if the CPU supports it. */
242 if (current_cpu
< S390_OPCODE_Z900
)
243 current_mode_mask
= 1 << S390_OPCODE_ESA
;
245 current_mode_mask
= 1 << S390_OPCODE_ZARCH
;
249 /* Called by TARGET_FORMAT. */
251 s390_target_format (void)
253 /* We don't get a chance to initialize anything before we're called,
254 so handle that now. */
255 init_default_arch ();
257 return s390_arch_size
== 64 ? "elf64-s390" : "elf32-s390";
260 /* Map a cpu string ARG as given with -march= or .machine to the respective
261 enum s390_opcode_cpu_val value. If ALLOW_EXTENSIONS is TRUE, the cpu name
262 can be followed by a list of cpu facility flags each beginning with the
263 character '+'. The active cpu flags are returned through *RET_FLAGS.
264 In case of an error, S390_OPCODE_MAXCPU is returned. */
267 s390_parse_cpu (const char * arg
,
268 unsigned int * ret_flags
,
269 bfd_boolean allow_extensions
)
274 unsigned int name_len
;
275 const char * alt_name
;
276 unsigned int alt_name_len
;
278 } cpu_table
[S390_OPCODE_MAXCPU
] =
280 { STRING_COMMA_LEN ("g5"), STRING_COMMA_LEN ("arch3"), 0 },
281 { STRING_COMMA_LEN ("g6"), STRING_COMMA_LEN (""), 0 },
282 { STRING_COMMA_LEN ("z900"), STRING_COMMA_LEN ("arch5"), 0 },
283 { STRING_COMMA_LEN ("z990"), STRING_COMMA_LEN ("arch6"), 0 },
284 { STRING_COMMA_LEN ("z9-109"), STRING_COMMA_LEN (""), 0 },
285 { STRING_COMMA_LEN ("z9-ec"), STRING_COMMA_LEN ("arch7"), 0 },
286 { STRING_COMMA_LEN ("z10"), STRING_COMMA_LEN ("arch8"), 0 },
287 { STRING_COMMA_LEN ("z196"), STRING_COMMA_LEN ("arch9"), 0 },
288 { STRING_COMMA_LEN ("zEC12"), STRING_COMMA_LEN ("arch10"),
289 S390_INSTR_FLAG_HTM
},
290 { STRING_COMMA_LEN ("z13"), STRING_COMMA_LEN ("arch11"),
291 S390_INSTR_FLAG_HTM
| S390_INSTR_FLAG_VX
},
292 { STRING_COMMA_LEN ("z14"), STRING_COMMA_LEN ("arch12"),
293 S390_INSTR_FLAG_HTM
| S390_INSTR_FLAG_VX
},
294 { STRING_COMMA_LEN (""), STRING_COMMA_LEN ("arch13"),
295 S390_INSTR_FLAG_HTM
| S390_INSTR_FLAG_VX
}
304 { "htm", S390_INSTR_FLAG_HTM
, TRUE
},
305 { "nohtm", S390_INSTR_FLAG_HTM
, FALSE
},
306 { "vx", S390_INSTR_FLAG_VX
, TRUE
},
307 { "novx", S390_INSTR_FLAG_VX
, FALSE
}
312 icpu
= S390_OPCODE_MAXCPU
;
313 if (strncmp (arg
, "all", 3) == 0 && (arg
[3] == 0 || arg
[3] == '+'))
315 icpu
= S390_OPCODE_MAXCPU
- 1;
320 for (icpu
= 0; icpu
< S390_OPCODE_MAXCPU
; icpu
++)
322 unsigned int l
, l_alt
;
324 l
= cpu_table
[icpu
].name_len
;
326 if (strncmp (arg
, cpu_table
[icpu
].name
, l
) == 0
327 && (arg
[l
] == 0 || arg
[l
] == '+'))
333 l_alt
= cpu_table
[icpu
].alt_name_len
;
336 && strncmp (arg
, cpu_table
[icpu
].alt_name
, l_alt
) == 0
337 && (arg
[l_alt
] == 0 || arg
[l_alt
] == '+'))
345 if (icpu
== S390_OPCODE_MAXCPU
)
346 return S390_OPCODE_MAXCPU
;
348 ilp_bak
= input_line_pointer
;
349 if (icpu
!= S390_OPCODE_MAXCPU
)
351 input_line_pointer
= (char *) arg
;
352 *ret_flags
= (cpu_table
[icpu
].flags
& S390_INSTR_FLAG_FACILITY_MASK
);
354 while (*input_line_pointer
== '+' && allow_extensions
)
360 input_line_pointer
++;
361 c
= get_symbol_name (&sym
);
362 for (iflag
= 0; iflag
< ARRAY_SIZE (cpu_flags
); iflag
++)
364 if (strcmp (sym
, cpu_flags
[iflag
].name
) == 0)
366 if (cpu_flags
[iflag
].on
)
367 *ret_flags
|= cpu_flags
[iflag
].mask
;
369 *ret_flags
&= ~cpu_flags
[iflag
].mask
;
373 if (iflag
== ARRAY_SIZE (cpu_flags
))
374 as_bad (_("no such machine extension `%s'"), sym
- 1);
375 *input_line_pointer
= c
;
376 if (iflag
== ARRAY_SIZE (cpu_flags
))
383 if (*input_line_pointer
!= 0 && *input_line_pointer
!= '\n')
385 as_bad (_("junk at end of machine string, first unrecognized character"
386 " is `%c'"), *input_line_pointer
);
387 icpu
= S390_OPCODE_MAXCPU
;
389 input_line_pointer
= ilp_bak
;
395 md_parse_option (int c
, const char *arg
)
399 /* -k: Ignore for FreeBSD compatibility. */
403 if (arg
!= NULL
&& strcmp (arg
, "regnames") == 0)
406 else if (arg
!= NULL
&& strcmp (arg
, "no-regnames") == 0)
409 else if (arg
!= NULL
&& strcmp (arg
, "warn-areg-zero") == 0)
410 warn_areg_zero
= TRUE
;
412 else if (arg
!= NULL
&& strcmp (arg
, "31") == 0)
415 else if (arg
!= NULL
&& strcmp (arg
, "64") == 0)
418 else if (arg
!= NULL
&& strcmp (arg
, "esa") == 0)
419 current_mode_mask
= 1 << S390_OPCODE_ESA
;
421 else if (arg
!= NULL
&& strcmp (arg
, "zarch") == 0)
423 if (s390_arch_size
== 32)
424 set_highgprs_p
= TRUE
;
425 current_mode_mask
= 1 << S390_OPCODE_ZARCH
;
428 else if (arg
!= NULL
&& strncmp (arg
, "arch=", 5) == 0)
430 current_cpu
= s390_parse_cpu (arg
+ 5, ¤t_flags
, FALSE
);
431 if (current_cpu
== S390_OPCODE_MAXCPU
)
433 as_bad (_("invalid switch -m%s"), arg
);
440 as_bad (_("invalid switch -m%s"), arg
);
446 /* Option -A is deprecated. Still available for compatibility. */
447 if (arg
!= NULL
&& strcmp (arg
, "esa") == 0)
448 current_cpu
= S390_OPCODE_G5
;
449 else if (arg
!= NULL
&& strcmp (arg
, "esame") == 0)
450 current_cpu
= S390_OPCODE_Z900
;
452 as_bad (_("invalid architecture -A%s"), arg
);
455 /* -V: SVR4 argument to print version ID. */
460 /* -Qy, -Qn: SVR4 arguments controlling whether a .comment section
461 should be emitted or not. FIXME: Not implemented. */
473 md_show_usage (FILE *stream
)
475 fprintf (stream
, _("\
477 -mregnames Allow symbolic names for registers\n\
478 -mwarn-areg-zero Warn about zero base/index registers\n\
479 -mno-regnames Do not allow symbolic names for registers\n\
480 -m31 Set file format to 31 bit format\n\
481 -m64 Set file format to 64 bit format\n"));
482 fprintf (stream
, _("\
483 -V print assembler version number\n\
484 -Qy, -Qn ignored\n"));
487 /* Generate the hash table mapping mnemonics to struct s390_opcode.
488 This table is built at startup and whenever the CPU level is
489 changed using .machine. */
492 s390_setup_opcodes (void)
494 const struct s390_opcode
*op
;
495 const struct s390_opcode
*op_end
;
496 bfd_boolean dup_insn
= FALSE
;
499 if (s390_opcode_hash
!= NULL
)
500 hash_die (s390_opcode_hash
);
502 /* Insert the opcodes into a hash table. */
503 s390_opcode_hash
= hash_new ();
505 op_end
= s390_opcodes
+ s390_num_opcodes
;
506 for (op
= s390_opcodes
; op
< op_end
; op
++)
510 while (op
< op_end
- 1 && strcmp(op
->name
, op
[1].name
) == 0)
512 if (op
->min_cpu
<= current_cpu
&& (op
->modes
& current_mode_mask
))
517 if ((op
->modes
& current_mode_mask
) == 0)
519 else if ((op
->flags
& S390_INSTR_FLAG_FACILITY_MASK
) == 0)
521 /* Opcodes that do not belong to a specific facility are enabled if
522 present in the selected cpu. */
523 use_opcode
= (op
->min_cpu
<= current_cpu
);
529 /* Opcodes of a specific facility are enabled if the facility is
530 enabled. Note: only some facilities are represented as flags. */
531 f
= (op
->flags
& S390_INSTR_FLAG_FACILITY_MASK
);
532 use_opcode
= ((f
& current_flags
) == f
);
536 retval
= hash_insert (s390_opcode_hash
, op
->name
, (void *) op
);
537 if (retval
!= (const char *) NULL
)
539 as_bad (_("Internal assembler error for instruction %s"),
545 while (op
< op_end
- 1 && strcmp (op
->name
, op
[1].name
) == 0)
553 /* This function is called when the assembler starts up. It is called
554 after the options have been parsed and the output file has been
560 const struct s390_opcode
*op
;
561 const struct s390_opcode
*op_end
;
564 /* Give a warning if the combination -m64-bit and -Aesa is used. */
565 if (s390_arch_size
== 64 && current_cpu
< S390_OPCODE_Z900
)
566 as_warn (_("The 64 bit file format is used without esame instructions."));
568 s390_cie_data_alignment
= -s390_arch_size
/ 8;
570 /* Set the ELF flags if desired. */
572 bfd_set_private_flags (stdoutput
, s390_flags
);
574 /* Insert the opcode formats into a hash table. */
575 s390_opformat_hash
= hash_new ();
577 op_end
= s390_opformats
+ s390_num_opformats
;
578 for (op
= s390_opformats
; op
< op_end
; op
++)
580 retval
= hash_insert (s390_opformat_hash
, op
->name
, (void *) op
);
581 if (retval
!= (const char *) NULL
)
582 as_bad (_("Internal assembler error for instruction format %s"),
586 s390_setup_opcodes ();
588 record_alignment (text_section
, 2);
589 record_alignment (data_section
, 2);
590 record_alignment (bss_section
, 2);
593 /* Called after all assembly has been done. */
597 if (s390_arch_size
== 64)
598 bfd_set_arch_mach (stdoutput
, bfd_arch_s390
, bfd_mach_s390_64
);
600 bfd_set_arch_mach (stdoutput
, bfd_arch_s390
, bfd_mach_s390_31
);
603 /* Insert an operand value into an instruction. */
606 s390_insert_operand (unsigned char *insn
,
607 const struct s390_operand
*operand
,
615 if (operand
->flags
& (S390_OPERAND_SIGNED
|S390_OPERAND_PCREL
))
619 max
= ((offsetT
) 1 << (operand
->bits
- 1)) - 1;
620 min
= - ((offsetT
) 1 << (operand
->bits
- 1));
621 /* Halve PCREL operands. */
622 if (operand
->flags
& S390_OPERAND_PCREL
)
624 /* Check for underflow / overflow. */
625 if (val
< min
|| val
> max
)
628 _("operand out of range (%s not between %ld and %ld)");
631 if (operand
->flags
& S390_OPERAND_PCREL
)
637 sprint_value (buf
, val
);
638 if (file
== (char *) NULL
)
639 as_bad (err
, buf
, (int) min
, (int) max
);
641 as_bad_where (file
, line
, err
, buf
, (int) min
, (int) max
);
644 /* val is ok, now restrict it to operand->bits bits. */
645 uval
= (addressT
) val
& ((((addressT
) 1 << (operand
->bits
-1)) << 1) - 1);
646 /* val is restrict, now check for special case. */
647 if (operand
->bits
== 20 && operand
->shift
== 20)
648 uval
= (uval
>> 12) | ((uval
& 0xfff) << 8);
654 max
= (((addressT
) 1 << (operand
->bits
- 1)) << 1) - 1;
656 uval
= (addressT
) val
;
658 /* Vector register operands have an additional bit in the RXB
660 if (operand
->flags
& S390_OPERAND_VR
)
661 max
= (max
<< 1) | 1;
663 /* Length x in an instructions has real length x+1. */
664 if (operand
->flags
& S390_OPERAND_LENGTH
)
666 /* Check for underflow / overflow. */
667 if (uval
< min
|| uval
> max
)
669 if (operand
->flags
& S390_OPERAND_LENGTH
)
676 as_bad_value_out_of_range (_("operand"), uval
, (offsetT
) min
, (offsetT
) max
, file
, line
);
682 if (operand
->flags
& S390_OPERAND_VR
)
684 /* Insert the extra bit into the RXB field. */
685 switch (operand
->shift
)
688 insn
[4] |= (uval
& 0x10) >> 1;
691 insn
[4] |= (uval
& 0x10) >> 2;
694 insn
[4] |= (uval
& 0x10) >> 3;
697 insn
[4] |= (uval
& 0x10) >> 4;
703 if (operand
->flags
& S390_OPERAND_OR1
)
705 if (operand
->flags
& S390_OPERAND_OR2
)
707 if (operand
->flags
& S390_OPERAND_OR8
)
710 /* Duplicate the operand at bit pos 12 to 16. */
711 if (operand
->flags
& S390_OPERAND_CP16
)
713 /* Copy VR operand at bit pos 12 to bit pos 16. */
714 insn
[2] |= uval
<< 4;
715 /* Copy the flag in the RXB field. */
716 insn
[4] |= (insn
[4] & 4) >> 1;
719 /* Insert fragments of the operand byte for byte. */
720 offset
= operand
->shift
+ operand
->bits
;
721 uval
<<= (-offset
) & 7;
722 insn
+= (offset
- 1) / 8;
734 bfd_reloc_code_real_type reloc
;
737 /* Parse tls marker and return the desired relocation. */
738 static bfd_reloc_code_real_type
739 s390_tls_suffix (char **str_p
, expressionS
*exp_p
)
741 static struct map_tls mapping
[] =
743 { "tls_load", 8, BFD_RELOC_390_TLS_LOAD
},
744 { "tls_gdcall", 10, BFD_RELOC_390_TLS_GDCALL
},
745 { "tls_ldcall", 10, BFD_RELOC_390_TLS_LDCALL
},
746 { NULL
, 0, BFD_RELOC_UNUSED
}
756 return BFD_RELOC_UNUSED
;
759 while (ISIDNUM (*str
))
763 return BFD_RELOC_UNUSED
;
765 orig_line
= input_line_pointer
;
766 input_line_pointer
= str
;
768 str
= input_line_pointer
;
769 if (&input_line_pointer
!= str_p
)
770 input_line_pointer
= orig_line
;
772 if (exp_p
->X_op
!= O_symbol
)
773 return BFD_RELOC_UNUSED
;
775 for (ptr
= &mapping
[0]; ptr
->length
> 0; ptr
++)
776 if (len
== ptr
->length
777 && strncasecmp (ident
, ptr
->string
, ptr
->length
) == 0)
779 /* Found a matching tls suffix. */
783 return BFD_RELOC_UNUSED
;
786 /* Structure used to hold suffixes. */
797 ELF_SUFFIX_TLS_GOTIE
,
809 elf_suffix_type suffix
;
813 /* Parse @got/@plt/@gotoff. and return the desired relocation. */
814 static elf_suffix_type
815 s390_elf_suffix (char **str_p
, expressionS
*exp_p
)
817 static struct map_bfd mapping
[] =
819 { "got", 3, ELF_SUFFIX_GOT
},
820 { "got12", 5, ELF_SUFFIX_GOT
},
821 { "plt", 3, ELF_SUFFIX_PLT
},
822 { "gotent", 6, ELF_SUFFIX_GOTENT
},
823 { "gotoff", 6, ELF_SUFFIX_GOTOFF
},
824 { "gotplt", 6, ELF_SUFFIX_GOTPLT
},
825 { "pltoff", 6, ELF_SUFFIX_PLTOFF
},
826 { "tlsgd", 5, ELF_SUFFIX_TLS_GD
},
827 { "gotntpoff", 9, ELF_SUFFIX_TLS_GOTIE
},
828 { "indntpoff", 9, ELF_SUFFIX_TLS_IE
},
829 { "tlsldm", 6, ELF_SUFFIX_TLS_LDM
},
830 { "dtpoff", 6, ELF_SUFFIX_TLS_LDO
},
831 { "ntpoff", 6, ELF_SUFFIX_TLS_LE
},
832 { NULL
, 0, ELF_SUFFIX_NONE
}
841 return ELF_SUFFIX_NONE
;
844 while (ISALNUM (*str
))
848 for (ptr
= &mapping
[0]; ptr
->length
> 0; ptr
++)
849 if (len
== ptr
->length
850 && strncasecmp (ident
, ptr
->string
, ptr
->length
) == 0)
852 if (exp_p
->X_add_number
!= 0)
853 as_warn (_("identifier+constant@%s means identifier@%s+constant"),
854 ptr
->string
, ptr
->string
);
855 /* Now check for identifier@suffix+constant. */
856 if (*str
== '-' || *str
== '+')
858 char *orig_line
= input_line_pointer
;
861 input_line_pointer
= str
;
862 expression (&new_exp
);
864 switch (new_exp
.X_op
)
866 case O_constant
: /* X_add_number (a constant expression). */
867 exp_p
->X_add_number
+= new_exp
.X_add_number
;
868 str
= input_line_pointer
;
870 case O_symbol
: /* X_add_symbol + X_add_number. */
871 /* this case is used for e.g. xyz@PLT+.Label. */
872 exp_p
->X_add_number
+= new_exp
.X_add_number
;
873 exp_p
->X_op_symbol
= new_exp
.X_add_symbol
;
875 str
= input_line_pointer
;
877 case O_uminus
: /* (- X_add_symbol) + X_add_number. */
878 /* this case is used for e.g. xyz@PLT-.Label. */
879 exp_p
->X_add_number
+= new_exp
.X_add_number
;
880 exp_p
->X_op_symbol
= new_exp
.X_add_symbol
;
881 exp_p
->X_op
= O_subtract
;
882 str
= input_line_pointer
;
888 /* If s390_elf_suffix has not been called with
889 &input_line_pointer as first parameter, we have
890 clobbered the input_line_pointer. We have to
892 if (&input_line_pointer
!= str_p
)
893 input_line_pointer
= orig_line
;
899 return BFD_RELOC_UNUSED
;
902 /* Structure used to hold a literal pool entry. */
905 struct s390_lpe
*next
;
907 FLONUM_TYPE floatnum
; /* used if X_op == O_big && X_add_number <= 0 */
908 LITTLENUM_TYPE bignum
[4]; /* used if X_op == O_big && X_add_number > 0 */
910 bfd_reloc_code_real_type reloc
;
914 static struct s390_lpe
*lpe_free_list
= NULL
;
915 static struct s390_lpe
*lpe_list
= NULL
;
916 static struct s390_lpe
*lpe_list_tail
= NULL
;
917 static symbolS
*lp_sym
= NULL
;
918 static int lp_count
= 0;
919 static int lpe_count
= 0;
922 s390_exp_compare (expressionS
*exp1
, expressionS
*exp2
)
924 if (exp1
->X_op
!= exp2
->X_op
)
929 case O_constant
: /* X_add_number must be equal. */
931 return exp1
->X_add_number
== exp2
->X_add_number
;
934 as_bad (_("Can't handle O_big in s390_exp_compare"));
937 case O_symbol
: /* X_add_symbol & X_add_number must be equal. */
942 return (exp1
->X_add_symbol
== exp2
->X_add_symbol
)
943 && (exp1
->X_add_number
== exp2
->X_add_number
);
945 case O_multiply
: /* X_add_symbol,X_op_symbol&X_add_number must be equal. */
950 case O_bit_inclusive_or
:
952 case O_bit_exclusive_or
:
964 return (exp1
->X_add_symbol
== exp2
->X_add_symbol
)
965 && (exp1
->X_op_symbol
== exp2
->X_op_symbol
)
966 && (exp1
->X_add_number
== exp2
->X_add_number
);
972 /* Test for @lit and if it's present make an entry in the literal pool and
973 modify the current expression to be an offset into the literal pool. */
974 static elf_suffix_type
975 s390_lit_suffix (char **str_p
, expressionS
*exp_p
, elf_suffix_type suffix
)
977 bfd_reloc_code_real_type reloc
;
981 struct s390_lpe
*lpe
;
985 return suffix
; /* No modification. */
987 /* We look for a suffix of the form "@lit1", "@lit2", "@lit4" or "@lit8". */
989 while (ISALNUM (*str
))
992 if (len
!= 4 || strncasecmp (ident
, "lit", 3) != 0
993 || (ident
[3]!='1' && ident
[3]!='2' && ident
[3]!='4' && ident
[3]!='8'))
994 return suffix
; /* no modification */
995 nbytes
= ident
[3] - '0';
997 reloc
= BFD_RELOC_UNUSED
;
998 if (suffix
== ELF_SUFFIX_GOT
)
1001 reloc
= BFD_RELOC_390_GOT16
;
1002 else if (nbytes
== 4)
1003 reloc
= BFD_RELOC_32_GOT_PCREL
;
1004 else if (nbytes
== 8)
1005 reloc
= BFD_RELOC_390_GOT64
;
1007 else if (suffix
== ELF_SUFFIX_PLT
)
1010 reloc
= BFD_RELOC_390_PLT32
;
1011 else if (nbytes
== 8)
1012 reloc
= BFD_RELOC_390_PLT64
;
1015 if (suffix
!= ELF_SUFFIX_NONE
&& reloc
== BFD_RELOC_UNUSED
)
1016 as_bad (_("Invalid suffix for literal pool entry"));
1018 /* Search the pool if the new entry is a duplicate. */
1019 if (exp_p
->X_op
== O_big
)
1021 /* Special processing for big numbers. */
1022 for (lpe
= lpe_list
; lpe
!= NULL
; lpe
= lpe
->next
)
1024 if (lpe
->ex
.X_op
== O_big
)
1026 if (exp_p
->X_add_number
<= 0 && lpe
->ex
.X_add_number
<= 0)
1028 if (memcmp (&generic_floating_point_number
, &lpe
->floatnum
,
1029 sizeof (FLONUM_TYPE
)) == 0)
1032 else if (exp_p
->X_add_number
== lpe
->ex
.X_add_number
)
1034 if (memcmp (generic_bignum
, lpe
->bignum
,
1035 sizeof (LITTLENUM_TYPE
)*exp_p
->X_add_number
) == 0)
1043 /* Processing for 'normal' data types. */
1044 for (lpe
= lpe_list
; lpe
!= NULL
; lpe
= lpe
->next
)
1045 if (lpe
->nbytes
== nbytes
&& lpe
->reloc
== reloc
1046 && s390_exp_compare (exp_p
, &lpe
->ex
) != 0)
1052 /* A new literal. */
1053 if (lpe_free_list
!= NULL
)
1055 lpe
= lpe_free_list
;
1056 lpe_free_list
= lpe_free_list
->next
;
1060 lpe
= XNEW (struct s390_lpe
);
1065 if (exp_p
->X_op
== O_big
)
1067 if (exp_p
->X_add_number
<= 0)
1068 lpe
->floatnum
= generic_floating_point_number
;
1069 else if (exp_p
->X_add_number
<= 4)
1070 memcpy (lpe
->bignum
, generic_bignum
,
1071 exp_p
->X_add_number
* sizeof (LITTLENUM_TYPE
));
1073 as_bad (_("Big number is too big"));
1076 lpe
->nbytes
= nbytes
;
1078 /* Literal pool name defined ? */
1081 sprintf (tmp_name
, ".L\001%i", lp_count
);
1082 lp_sym
= symbol_make (tmp_name
);
1085 /* Make name for literal pool entry. */
1086 sprintf (tmp_name
, ".L\001%i\002%i", lp_count
, lpe_count
);
1088 lpe
->sym
= symbol_make (tmp_name
);
1090 /* Add to literal pool list. */
1092 if (lpe_list_tail
!= NULL
)
1094 lpe_list_tail
->next
= lpe
;
1095 lpe_list_tail
= lpe
;
1098 lpe_list
= lpe_list_tail
= lpe
;
1101 /* Now change exp_p to the offset into the literal pool.
1102 That's the expression: .L^Ax^By-.L^Ax */
1103 exp_p
->X_add_symbol
= lpe
->sym
;
1104 exp_p
->X_op_symbol
= lp_sym
;
1105 exp_p
->X_op
= O_subtract
;
1106 exp_p
->X_add_number
= 0;
1110 /* We change the suffix type to ELF_SUFFIX_NONE, because
1111 the difference of two local labels is just a number. */
1112 return ELF_SUFFIX_NONE
;
1115 /* Like normal .long/.short/.word, except support @got, etc.
1116 clobbers input_line_pointer, checks end-of-line. */
1118 s390_elf_cons (int nbytes
/* 1=.byte, 2=.word, 4=.long */)
1121 elf_suffix_type suffix
;
1123 if (is_it_end_of_statement ())
1125 demand_empty_rest_of_line ();
1133 if (exp
.X_op
== O_symbol
1134 && *input_line_pointer
== '@'
1135 && (suffix
= s390_elf_suffix (&input_line_pointer
, &exp
)) != ELF_SUFFIX_NONE
)
1137 bfd_reloc_code_real_type reloc
;
1138 reloc_howto_type
*reloc_howto
;
1144 static bfd_reloc_code_real_type tab2
[] =
1146 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_NONE */
1147 BFD_RELOC_390_GOT16
, /* ELF_SUFFIX_GOT */
1148 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_PLT */
1149 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_GOTENT */
1150 BFD_RELOC_16_GOTOFF
, /* ELF_SUFFIX_GOTOFF */
1151 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_GOTPLT */
1152 BFD_RELOC_390_PLTOFF16
, /* ELF_SUFFIX_PLTOFF */
1153 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_TLS_GD */
1154 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_TLS_GOTIE */
1155 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_TLS_IE */
1156 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_TLS_LDM */
1157 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_TLS_LDO */
1158 BFD_RELOC_UNUSED
/* ELF_SUFFIX_TLS_LE */
1160 reloc
= tab2
[suffix
];
1162 else if (nbytes
== 4)
1164 static bfd_reloc_code_real_type tab4
[] =
1166 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_NONE */
1167 BFD_RELOC_32_GOT_PCREL
, /* ELF_SUFFIX_GOT */
1168 BFD_RELOC_390_PLT32
, /* ELF_SUFFIX_PLT */
1169 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_GOTENT */
1170 BFD_RELOC_32_GOTOFF
, /* ELF_SUFFIX_GOTOFF */
1171 BFD_RELOC_390_GOTPLT32
, /* ELF_SUFFIX_GOTPLT */
1172 BFD_RELOC_390_PLTOFF32
, /* ELF_SUFFIX_PLTOFF */
1173 BFD_RELOC_390_TLS_GD32
, /* ELF_SUFFIX_TLS_GD */
1174 BFD_RELOC_390_TLS_GOTIE32
, /* ELF_SUFFIX_TLS_GOTIE */
1175 BFD_RELOC_390_TLS_IE32
, /* ELF_SUFFIX_TLS_IE */
1176 BFD_RELOC_390_TLS_LDM32
, /* ELF_SUFFIX_TLS_LDM */
1177 BFD_RELOC_390_TLS_LDO32
, /* ELF_SUFFIX_TLS_LDO */
1178 BFD_RELOC_390_TLS_LE32
/* ELF_SUFFIX_TLS_LE */
1180 reloc
= tab4
[suffix
];
1182 else if (nbytes
== 8)
1184 static bfd_reloc_code_real_type tab8
[] =
1186 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_NONE */
1187 BFD_RELOC_390_GOT64
, /* ELF_SUFFIX_GOT */
1188 BFD_RELOC_390_PLT64
, /* ELF_SUFFIX_PLT */
1189 BFD_RELOC_UNUSED
, /* ELF_SUFFIX_GOTENT */
1190 BFD_RELOC_390_GOTOFF64
, /* ELF_SUFFIX_GOTOFF */
1191 BFD_RELOC_390_GOTPLT64
, /* ELF_SUFFIX_GOTPLT */
1192 BFD_RELOC_390_PLTOFF64
, /* ELF_SUFFIX_PLTOFF */
1193 BFD_RELOC_390_TLS_GD64
, /* ELF_SUFFIX_TLS_GD */
1194 BFD_RELOC_390_TLS_GOTIE64
, /* ELF_SUFFIX_TLS_GOTIE */
1195 BFD_RELOC_390_TLS_IE64
, /* ELF_SUFFIX_TLS_IE */
1196 BFD_RELOC_390_TLS_LDM64
, /* ELF_SUFFIX_TLS_LDM */
1197 BFD_RELOC_390_TLS_LDO64
, /* ELF_SUFFIX_TLS_LDO */
1198 BFD_RELOC_390_TLS_LE64
/* ELF_SUFFIX_TLS_LE */
1200 reloc
= tab8
[suffix
];
1203 reloc
= BFD_RELOC_UNUSED
;
1205 if (reloc
!= BFD_RELOC_UNUSED
1206 && (reloc_howto
= bfd_reloc_type_lookup (stdoutput
, reloc
)))
1208 size
= bfd_get_reloc_size (reloc_howto
);
1210 as_bad (ngettext ("%s relocations do not fit in %d byte",
1211 "%s relocations do not fit in %d bytes",
1213 reloc_howto
->name
, nbytes
);
1214 where
= frag_more (nbytes
);
1215 md_number_to_chars (where
, 0, size
);
1216 /* To make fixup_segment do the pc relative conversion the
1217 pcrel parameter on the fix_new_exp call needs to be FALSE. */
1218 fix_new_exp (frag_now
, where
- frag_now
->fr_literal
,
1219 size
, &exp
, FALSE
, reloc
);
1222 as_bad (_("relocation not applicable"));
1225 emit_expr (&exp
, (unsigned int) nbytes
);
1227 while (*input_line_pointer
++ == ',');
1229 input_line_pointer
--; /* Put terminator back into stream. */
1230 demand_empty_rest_of_line ();
1233 /* Return true if all remaining operands in the opcode with
1234 OPCODE_FLAGS can be skipped. */
1236 skip_optargs_p (unsigned int opcode_flags
, const unsigned char *opindex_ptr
)
1238 if ((opcode_flags
& (S390_INSTR_FLAG_OPTPARM
| S390_INSTR_FLAG_OPTPARM2
))
1239 && opindex_ptr
[0] != '\0'
1240 && opindex_ptr
[1] == '\0')
1243 if ((opcode_flags
& S390_INSTR_FLAG_OPTPARM2
)
1244 && opindex_ptr
[0] != '\0'
1245 && opindex_ptr
[1] != '\0'
1246 && opindex_ptr
[2] == '\0')
1251 /* We need to keep a list of fixups. We can't simply generate them as
1252 we go, because that would require us to first create the frag, and
1253 that would screw up references to ``.''. */
1259 bfd_reloc_code_real_type reloc
;
1262 #define MAX_INSN_FIXUPS (4)
1264 /* This routine is called for each instruction to be assembled. */
1267 md_gather_operands (char *str
,
1268 unsigned char *insn
,
1269 const struct s390_opcode
*opcode
)
1271 struct s390_fixup fixups
[MAX_INSN_FIXUPS
];
1272 const struct s390_operand
*operand
;
1273 const unsigned char *opindex_ptr
;
1275 elf_suffix_type suffix
;
1276 bfd_reloc_code_real_type reloc
;
1281 while (ISSPACE (*str
))
1286 /* Gather the operands. */
1288 for (opindex_ptr
= opcode
->operands
; *opindex_ptr
!= 0; opindex_ptr
++)
1292 operand
= s390_operands
+ *opindex_ptr
;
1294 if ((opcode
->flags
& (S390_INSTR_FLAG_OPTPARM
| S390_INSTR_FLAG_OPTPARM2
))
1297 /* Optional parameters might need to be ORed with a
1298 value so calling s390_insert_operand is needed. */
1299 s390_insert_operand (insn
, operand
, 0, NULL
, 0);
1303 if (skip_optional
&& (operand
->flags
& S390_OPERAND_INDEX
))
1305 /* We do an early skip. For D(X,B) constructions the index
1306 register is skipped (X is optional). For D(L,B) the base
1307 register will be the skipped operand, because L is NOT
1313 /* Gather the operand. */
1314 hold
= input_line_pointer
;
1315 input_line_pointer
= str
;
1317 /* Parse the operand. */
1318 if (! register_name (&ex
))
1321 str
= input_line_pointer
;
1322 input_line_pointer
= hold
;
1324 /* Write the operand to the insn. */
1325 if (ex
.X_op
== O_illegal
)
1326 as_bad (_("illegal operand"));
1327 else if (ex
.X_op
== O_absent
)
1329 if (opindex_ptr
[0] == '\0')
1331 as_bad (_("missing operand"));
1333 else if (ex
.X_op
== O_register
|| ex
.X_op
== O_constant
)
1335 s390_lit_suffix (&str
, &ex
, ELF_SUFFIX_NONE
);
1337 if (ex
.X_op
!= O_register
&& ex
.X_op
!= O_constant
)
1339 /* We need to generate a fixup for the
1340 expression returned by s390_lit_suffix. */
1341 if (fc
>= MAX_INSN_FIXUPS
)
1342 as_fatal (_("too many fixups"));
1343 fixups
[fc
].exp
= ex
;
1344 fixups
[fc
].opindex
= *opindex_ptr
;
1345 fixups
[fc
].reloc
= BFD_RELOC_UNUSED
;
1350 if ((operand
->flags
& S390_OPERAND_LENGTH
)
1351 && ex
.X_op
!= O_constant
)
1352 as_fatal (_("invalid length field specified"));
1353 if ((operand
->flags
& S390_OPERAND_INDEX
)
1354 && ex
.X_add_number
== 0
1356 as_warn (_("index register specified but zero"));
1357 if ((operand
->flags
& S390_OPERAND_BASE
)
1358 && ex
.X_add_number
== 0
1360 as_warn (_("base register specified but zero"));
1361 if ((operand
->flags
& S390_OPERAND_GPR
)
1362 && (operand
->flags
& S390_OPERAND_REG_PAIR
)
1363 && (ex
.X_add_number
& 1))
1364 as_fatal (_("odd numbered general purpose register specified as "
1366 if ((operand
->flags
& S390_OPERAND_FPR
)
1367 && (operand
->flags
& S390_OPERAND_REG_PAIR
)
1368 && ex
.X_add_number
!= 0 && ex
.X_add_number
!= 1
1369 && ex
.X_add_number
!= 4 && ex
.X_add_number
!= 5
1370 && ex
.X_add_number
!= 8 && ex
.X_add_number
!= 9
1371 && ex
.X_add_number
!= 12 && ex
.X_add_number
!= 13)
1372 as_fatal (_("invalid floating point register pair. Valid fp "
1373 "register pair operands are 0, 1, 4, 5, 8, 9, "
1375 s390_insert_operand (insn
, operand
, ex
.X_add_number
, NULL
, 0);
1380 suffix
= s390_elf_suffix (&str
, &ex
);
1381 suffix
= s390_lit_suffix (&str
, &ex
, suffix
);
1382 reloc
= BFD_RELOC_UNUSED
;
1384 if (suffix
== ELF_SUFFIX_GOT
)
1386 if ((operand
->flags
& S390_OPERAND_DISP
) &&
1387 (operand
->bits
== 12))
1388 reloc
= BFD_RELOC_390_GOT12
;
1389 else if ((operand
->flags
& S390_OPERAND_DISP
) &&
1390 (operand
->bits
== 20))
1391 reloc
= BFD_RELOC_390_GOT20
;
1392 else if ((operand
->flags
& S390_OPERAND_SIGNED
)
1393 && (operand
->bits
== 16))
1394 reloc
= BFD_RELOC_390_GOT16
;
1395 else if ((operand
->flags
& S390_OPERAND_PCREL
)
1396 && (operand
->bits
== 32))
1397 reloc
= BFD_RELOC_390_GOTENT
;
1399 else if (suffix
== ELF_SUFFIX_PLT
)
1401 if ((operand
->flags
& S390_OPERAND_PCREL
)
1402 && (operand
->bits
== 12))
1403 reloc
= BFD_RELOC_390_PLT12DBL
;
1404 else if ((operand
->flags
& S390_OPERAND_PCREL
)
1405 && (operand
->bits
== 16))
1406 reloc
= BFD_RELOC_390_PLT16DBL
;
1407 else if ((operand
->flags
& S390_OPERAND_PCREL
)
1408 && (operand
->bits
== 24))
1409 reloc
= BFD_RELOC_390_PLT24DBL
;
1410 else if ((operand
->flags
& S390_OPERAND_PCREL
)
1411 && (operand
->bits
== 32))
1412 reloc
= BFD_RELOC_390_PLT32DBL
;
1414 else if (suffix
== ELF_SUFFIX_GOTENT
)
1416 if ((operand
->flags
& S390_OPERAND_PCREL
)
1417 && (operand
->bits
== 32))
1418 reloc
= BFD_RELOC_390_GOTENT
;
1420 else if (suffix
== ELF_SUFFIX_GOTOFF
)
1422 if ((operand
->flags
& S390_OPERAND_SIGNED
)
1423 && (operand
->bits
== 16))
1424 reloc
= BFD_RELOC_16_GOTOFF
;
1426 else if (suffix
== ELF_SUFFIX_PLTOFF
)
1428 if ((operand
->flags
& S390_OPERAND_SIGNED
)
1429 && (operand
->bits
== 16))
1430 reloc
= BFD_RELOC_390_PLTOFF16
;
1432 else if (suffix
== ELF_SUFFIX_GOTPLT
)
1434 if ((operand
->flags
& S390_OPERAND_DISP
)
1435 && (operand
->bits
== 12))
1436 reloc
= BFD_RELOC_390_GOTPLT12
;
1437 else if ((operand
->flags
& S390_OPERAND_SIGNED
)
1438 && (operand
->bits
== 16))
1439 reloc
= BFD_RELOC_390_GOTPLT16
;
1440 else if ((operand
->flags
& S390_OPERAND_PCREL
)
1441 && (operand
->bits
== 32))
1442 reloc
= BFD_RELOC_390_GOTPLTENT
;
1444 else if (suffix
== ELF_SUFFIX_TLS_GOTIE
)
1446 if ((operand
->flags
& S390_OPERAND_DISP
)
1447 && (operand
->bits
== 12))
1448 reloc
= BFD_RELOC_390_TLS_GOTIE12
;
1449 else if ((operand
->flags
& S390_OPERAND_DISP
)
1450 && (operand
->bits
== 20))
1451 reloc
= BFD_RELOC_390_TLS_GOTIE20
;
1453 else if (suffix
== ELF_SUFFIX_TLS_IE
)
1455 if ((operand
->flags
& S390_OPERAND_PCREL
)
1456 && (operand
->bits
== 32))
1457 reloc
= BFD_RELOC_390_TLS_IEENT
;
1460 if (suffix
!= ELF_SUFFIX_NONE
&& reloc
== BFD_RELOC_UNUSED
)
1461 as_bad (_("invalid operand suffix"));
1462 /* We need to generate a fixup of type 'reloc' for this
1464 if (fc
>= MAX_INSN_FIXUPS
)
1465 as_fatal (_("too many fixups"));
1466 fixups
[fc
].exp
= ex
;
1467 fixups
[fc
].opindex
= *opindex_ptr
;
1468 fixups
[fc
].reloc
= reloc
;
1472 /* Check the next character. The call to expression has advanced
1473 str past any whitespace. */
1474 if (operand
->flags
& S390_OPERAND_DISP
)
1476 /* After a displacement a block in parentheses can start. */
1479 /* Check if parenthesized block can be skipped. If the next
1480 operand is neither an optional operand nor a base register
1481 then we have a syntax error. */
1482 operand
= s390_operands
+ *(++opindex_ptr
);
1483 if (!(operand
->flags
& (S390_OPERAND_INDEX
|S390_OPERAND_BASE
)))
1484 as_bad (_("syntax error; missing '(' after displacement"));
1486 /* Ok, skip all operands until S390_OPERAND_BASE. */
1487 while (!(operand
->flags
& S390_OPERAND_BASE
))
1488 operand
= s390_operands
+ *(++opindex_ptr
);
1490 if (*str
== '\0' && skip_optargs_p (opcode
->flags
, &opindex_ptr
[1]))
1493 /* If there is a next operand it must be separated by a comma. */
1494 if (opindex_ptr
[1] != '\0')
1498 while (opindex_ptr
[1] != '\0')
1500 operand
= s390_operands
+ *(++opindex_ptr
);
1501 as_bad (_("syntax error; expected ','"));
1511 /* We found an opening parentheses. */
1513 for (f
= str
; *f
!= '\0'; f
++)
1514 if (*f
== ',' || *f
== ')')
1516 /* If there is no comma until the closing parentheses OR
1517 there is a comma right after the opening parentheses,
1518 we have to skip optional operands. */
1519 if (*f
== ',' && f
== str
)
1521 /* comma directly after '(' ? */
1526 skip_optional
= (*f
!= ',');
1529 else if (operand
->flags
& S390_OPERAND_BASE
)
1531 /* After the base register the parenthesised block ends. */
1533 as_bad (_("syntax error; missing ')' after base register"));
1536 if (*str
== '\0' && skip_optargs_p (opcode
->flags
, &opindex_ptr
[1]))
1539 /* If there is a next operand it must be separated by a comma. */
1540 if (opindex_ptr
[1] != '\0')
1544 while (opindex_ptr
[1] != '\0')
1546 operand
= s390_operands
+ *(++opindex_ptr
);
1547 as_bad (_("syntax error; expected ','"));
1557 /* We can find an 'early' closing parentheses in e.g. D(L) instead
1558 of D(L,B). In this case the base register has to be skipped. */
1561 operand
= s390_operands
+ *(++opindex_ptr
);
1563 if (!(operand
->flags
& S390_OPERAND_BASE
))
1564 as_bad (_("syntax error; ')' not allowed here"));
1568 if (*str
== '\0' && skip_optargs_p (opcode
->flags
, &opindex_ptr
[1]))
1571 /* If there is a next operand it must be separated by a comma. */
1572 if (opindex_ptr
[1] != '\0')
1576 while (opindex_ptr
[1] != '\0')
1578 operand
= s390_operands
+ *(++opindex_ptr
);
1579 as_bad (_("syntax error; expected ','"));
1589 while (ISSPACE (*str
))
1592 /* Check for tls instruction marker. */
1593 reloc
= s390_tls_suffix (&str
, &ex
);
1594 if (reloc
!= BFD_RELOC_UNUSED
)
1596 /* We need to generate a fixup of type 'reloc' for this
1598 if (fc
>= MAX_INSN_FIXUPS
)
1599 as_fatal (_("too many fixups"));
1600 fixups
[fc
].exp
= ex
;
1601 fixups
[fc
].opindex
= -1;
1602 fixups
[fc
].reloc
= reloc
;
1610 if ((linefeed
= strchr (str
, '\n')) != NULL
)
1612 as_bad (_("junk at end of line: `%s'"), str
);
1613 if (linefeed
!= NULL
)
1617 /* Write out the instruction. */
1618 f
= frag_more (opcode
->oplen
);
1619 memcpy (f
, insn
, opcode
->oplen
);
1620 dwarf2_emit_insn (opcode
->oplen
);
1622 /* Create any fixups. At this point we do not use a
1623 bfd_reloc_code_real_type, but instead just use the
1624 BFD_RELOC_UNUSED plus the operand index. This lets us easily
1625 handle fixups for any operand type, although that is admittedly
1626 not a very exciting feature. We pick a BFD reloc type in
1628 for (i
= 0; i
< fc
; i
++)
1631 if (fixups
[i
].opindex
< 0)
1633 /* Create tls instruction marker relocation. */
1634 fix_new_exp (frag_now
, f
- frag_now
->fr_literal
, opcode
->oplen
,
1635 &fixups
[i
].exp
, 0, fixups
[i
].reloc
);
1639 operand
= s390_operands
+ fixups
[i
].opindex
;
1641 if (fixups
[i
].reloc
!= BFD_RELOC_UNUSED
)
1643 reloc_howto_type
*reloc_howto
;
1647 reloc_howto
= bfd_reloc_type_lookup (stdoutput
, fixups
[i
].reloc
);
1651 size
= ((reloc_howto
->bitsize
- 1) / 8) + 1;
1653 if (size
< 1 || size
> 4)
1656 fixP
= fix_new_exp (frag_now
,
1657 f
- frag_now
->fr_literal
+ (operand
->shift
/8),
1658 size
, &fixups
[i
].exp
, reloc_howto
->pc_relative
,
1660 /* Turn off overflow checking in fixup_segment. This is necessary
1661 because fixup_segment will signal an overflow for large 4 byte
1662 quantities for GOT12 relocations. */
1663 if ( fixups
[i
].reloc
== BFD_RELOC_390_GOT12
1664 || fixups
[i
].reloc
== BFD_RELOC_390_GOT20
1665 || fixups
[i
].reloc
== BFD_RELOC_390_GOT16
)
1666 fixP
->fx_no_overflow
= 1;
1668 if (operand
->flags
& S390_OPERAND_PCREL
)
1669 fixP
->fx_pcrel_adjust
= operand
->shift
/ 8;
1672 fix_new_exp (frag_now
, f
- frag_now
->fr_literal
, 4, &fixups
[i
].exp
,
1673 (operand
->flags
& S390_OPERAND_PCREL
) != 0,
1674 ((bfd_reloc_code_real_type
)
1675 (fixups
[i
].opindex
+ (int) BFD_RELOC_UNUSED
)));
1680 /* This routine is called for each instruction to be assembled. */
1683 md_assemble (char *str
)
1685 const struct s390_opcode
*opcode
;
1686 unsigned char insn
[6];
1689 /* Get the opcode. */
1690 for (s
= str
; *s
!= '\0' && ! ISSPACE (*s
); s
++)
1695 /* Look up the opcode in the hash table. */
1696 opcode
= (struct s390_opcode
*) hash_find (s390_opcode_hash
, str
);
1697 if (opcode
== (const struct s390_opcode
*) NULL
)
1699 as_bad (_("Unrecognized opcode: `%s'"), str
);
1702 else if (!(opcode
->modes
& current_mode_mask
))
1704 as_bad (_("Opcode %s not available in this mode"), str
);
1707 memcpy (insn
, opcode
->opcode
, sizeof (insn
));
1708 md_gather_operands (s
, insn
, opcode
);
1711 #ifndef WORKING_DOT_WORD
1712 /* Handle long and short jumps. We don't support these */
1714 md_create_short_jump (ptr
, from_addr
, to_addr
, frag
, to_symbol
)
1716 addressT from_addr
, to_addr
;
1724 md_create_long_jump (ptr
, from_addr
, to_addr
, frag
, to_symbol
)
1726 addressT from_addr
, to_addr
;
1735 s390_bss (int ignore ATTRIBUTE_UNUSED
)
1737 /* We don't support putting frags in the BSS segment, we fake it
1738 by marking in_bss, then looking at s_skip for clues. */
1740 subseg_set (bss_section
, 0);
1741 demand_empty_rest_of_line ();
1744 /* Pseudo-op handling. */
1747 s390_insn (int ignore ATTRIBUTE_UNUSED
)
1750 const struct s390_opcode
*opformat
;
1751 unsigned char insn
[6];
1754 /* Get the opcode format. */
1755 s
= input_line_pointer
;
1756 while (*s
!= '\0' && *s
!= ',' && ! ISSPACE (*s
))
1759 as_bad (_("Invalid .insn format\n"));
1762 /* Look up the opcode in the hash table. */
1763 opformat
= (struct s390_opcode
*)
1764 hash_find (s390_opformat_hash
, input_line_pointer
);
1765 if (opformat
== (const struct s390_opcode
*) NULL
)
1767 as_bad (_("Unrecognized opcode format: `%s'"), input_line_pointer
);
1770 input_line_pointer
= s
;
1772 if (exp
.X_op
== O_constant
)
1774 if ( ( opformat
->oplen
== 6
1775 && (addressT
) exp
.X_add_number
< (1ULL << 48))
1776 || ( opformat
->oplen
== 4
1777 && (addressT
) exp
.X_add_number
< (1ULL << 32))
1778 || ( opformat
->oplen
== 2
1779 && (addressT
) exp
.X_add_number
< (1ULL << 16)))
1780 md_number_to_chars ((char *) insn
, exp
.X_add_number
, opformat
->oplen
);
1782 as_bad (_("Invalid .insn format\n"));
1784 else if (exp
.X_op
== O_big
)
1786 if (exp
.X_add_number
> 0
1787 && opformat
->oplen
== 6
1788 && generic_bignum
[3] == 0)
1790 md_number_to_chars ((char *) insn
, generic_bignum
[2], 2);
1791 md_number_to_chars ((char *) &insn
[2], generic_bignum
[1], 2);
1792 md_number_to_chars ((char *) &insn
[4], generic_bignum
[0], 2);
1795 as_bad (_("Invalid .insn format\n"));
1798 as_bad (_("second operand of .insn not a constant\n"));
1800 if (strcmp (opformat
->name
, "e") != 0 && *input_line_pointer
++ != ',')
1801 as_bad (_("missing comma after insn constant\n"));
1803 if ((s
= strchr (input_line_pointer
, '\n')) != NULL
)
1805 input_line_pointer
= md_gather_operands (input_line_pointer
, insn
,
1809 demand_empty_rest_of_line ();
1812 /* The .byte pseudo-op. This is similar to the normal .byte
1813 pseudo-op, but it can also take a single ASCII string. */
1816 s390_byte (int ignore ATTRIBUTE_UNUSED
)
1818 if (*input_line_pointer
!= '\"')
1824 /* Gather characters. A real double quote is doubled. Unusual
1825 characters are not permitted. */
1826 ++input_line_pointer
;
1831 c
= *input_line_pointer
++;
1835 if (*input_line_pointer
!= '\"')
1837 ++input_line_pointer
;
1840 FRAG_APPEND_1_CHAR (c
);
1843 demand_empty_rest_of_line ();
1846 /* The .ltorg pseudo-op.This emits all literals defined since the last
1847 .ltorg or the invocation of gas. Literals are defined with the
1851 s390_literals (int ignore ATTRIBUTE_UNUSED
)
1853 struct s390_lpe
*lpe
;
1855 if (lp_sym
== NULL
|| lpe_count
== 0)
1856 return; /* Nothing to be done. */
1858 /* Emit symbol for start of literal pool. */
1859 S_SET_SEGMENT (lp_sym
, now_seg
);
1860 S_SET_VALUE (lp_sym
, (valueT
) frag_now_fix ());
1861 symbol_set_frag (lp_sym
, frag_now
);
1866 lpe_list
= lpe_list
->next
;
1867 S_SET_SEGMENT (lpe
->sym
, now_seg
);
1868 S_SET_VALUE (lpe
->sym
, (valueT
) frag_now_fix ());
1869 symbol_set_frag (lpe
->sym
, frag_now
);
1871 /* Emit literal pool entry. */
1872 if (lpe
->reloc
!= BFD_RELOC_UNUSED
)
1874 reloc_howto_type
*reloc_howto
=
1875 bfd_reloc_type_lookup (stdoutput
, lpe
->reloc
);
1876 int size
= bfd_get_reloc_size (reloc_howto
);
1879 if (size
> lpe
->nbytes
)
1880 as_bad (ngettext ("%s relocations do not fit in %d byte",
1881 "%s relocations do not fit in %d bytes",
1883 reloc_howto
->name
, lpe
->nbytes
);
1884 where
= frag_more (lpe
->nbytes
);
1885 md_number_to_chars (where
, 0, size
);
1886 fix_new_exp (frag_now
, where
- frag_now
->fr_literal
,
1887 size
, &lpe
->ex
, reloc_howto
->pc_relative
, lpe
->reloc
);
1891 if (lpe
->ex
.X_op
== O_big
)
1893 if (lpe
->ex
.X_add_number
<= 0)
1894 generic_floating_point_number
= lpe
->floatnum
;
1896 memcpy (generic_bignum
, lpe
->bignum
,
1897 lpe
->ex
.X_add_number
* sizeof (LITTLENUM_TYPE
));
1899 emit_expr (&lpe
->ex
, lpe
->nbytes
);
1902 lpe
->next
= lpe_free_list
;
1903 lpe_free_list
= lpe
;
1905 lpe_list_tail
= NULL
;
1911 #define MAX_HISTORY 100
1913 /* The .machine pseudo op allows to switch to a different CPU level in
1914 the asm listing. The current CPU setting can be stored on a stack
1915 with .machine push and restored with .machine pop. */
1918 s390_machine (int ignore ATTRIBUTE_UNUSED
)
1921 static struct cpu_history
1926 static int curr_hist
;
1930 if (*input_line_pointer
== '"')
1933 cpu_string
= demand_copy_C_string (&len
);
1939 cpu_string
= input_line_pointer
;
1944 c
= get_symbol_name (&str
);
1945 c
= restore_line_pointer (c
);
1947 ++ input_line_pointer
;
1951 c
= *input_line_pointer
;
1952 *input_line_pointer
= 0;
1953 cpu_string
= xstrdup (cpu_string
);
1954 (void) restore_line_pointer (c
);
1957 if (cpu_string
!= NULL
)
1959 unsigned int new_cpu
= current_cpu
;
1960 unsigned int new_flags
= current_flags
;
1962 if (strcmp (cpu_string
, "push") == 0)
1964 if (cpu_history
== NULL
)
1965 cpu_history
= XNEWVEC (struct cpu_history
, MAX_HISTORY
);
1967 if (curr_hist
>= MAX_HISTORY
)
1968 as_bad (_(".machine stack overflow"));
1971 cpu_history
[curr_hist
].cpu
= current_cpu
;
1972 cpu_history
[curr_hist
].flags
= current_flags
;
1976 else if (strcmp (cpu_string
, "pop") == 0)
1979 as_bad (_(".machine stack underflow"));
1983 new_cpu
= cpu_history
[curr_hist
].cpu
;
1984 new_flags
= cpu_history
[curr_hist
].flags
;
1988 new_cpu
= s390_parse_cpu (cpu_string
, &new_flags
, TRUE
);
1990 if (new_cpu
== S390_OPCODE_MAXCPU
)
1991 as_bad (_("invalid machine `%s'"), cpu_string
);
1993 if (new_cpu
!= current_cpu
|| new_flags
!= current_flags
)
1995 current_cpu
= new_cpu
;
1996 current_flags
= new_flags
;
1997 s390_setup_opcodes ();
2001 demand_empty_rest_of_line ();
2004 /* The .machinemode pseudo op allows to switch to a different
2005 architecture mode in the asm listing. The current architecture
2006 mode setting can be stored on a stack with .machinemode push and
2007 restored with .machinemode pop. */
2010 s390_machinemode (int ignore ATTRIBUTE_UNUSED
)
2013 static unsigned int *mode_history
;
2014 static int curr_hist
;
2021 c
= get_symbol_name (&mode_string
);
2022 mode_string
= xstrdup (mode_string
);
2023 (void) restore_line_pointer (c
);
2026 if (mode_string
!= NULL
)
2028 unsigned int old_mode_mask
= current_mode_mask
;
2031 for (p
= mode_string
; *p
!= 0; p
++)
2034 if (strcmp (mode_string
, "push") == 0)
2036 if (mode_history
== NULL
)
2037 mode_history
= XNEWVEC (unsigned int, MAX_HISTORY
);
2039 if (curr_hist
>= MAX_HISTORY
)
2040 as_bad (_(".machinemode stack overflow"));
2042 mode_history
[curr_hist
++] = current_mode_mask
;
2044 else if (strcmp (mode_string
, "pop") == 0)
2047 as_bad (_(".machinemode stack underflow"));
2049 current_mode_mask
= mode_history
[--curr_hist
];
2053 if (strcmp (mode_string
, "esa") == 0)
2054 current_mode_mask
= 1 << S390_OPCODE_ESA
;
2055 else if (strcmp (mode_string
, "zarch") == 0)
2057 if (s390_arch_size
== 32)
2058 set_highgprs_p
= TRUE
;
2059 current_mode_mask
= 1 << S390_OPCODE_ZARCH
;
2061 else if (strcmp (mode_string
, "zarch_nohighgprs") == 0)
2062 current_mode_mask
= 1 << S390_OPCODE_ZARCH
;
2064 as_bad (_("invalid machine mode `%s'"), mode_string
);
2067 if (current_mode_mask
!= old_mode_mask
)
2068 s390_setup_opcodes ();
2071 demand_empty_rest_of_line ();
2077 md_atof (int type
, char *litp
, int *sizep
)
2079 return ieee_md_atof (type
, litp
, sizep
, TRUE
);
2082 /* Align a section (I don't know why this is machine dependent). */
2085 md_section_align (asection
*seg
, valueT addr
)
2087 int align
= bfd_get_section_alignment (stdoutput
, seg
);
2089 return ((addr
+ (1 << align
) - 1) & -(1 << align
));
2092 /* We don't have any form of relaxing. */
2095 md_estimate_size_before_relax (fragS
*fragp ATTRIBUTE_UNUSED
,
2096 asection
*seg ATTRIBUTE_UNUSED
)
2102 /* Convert a machine dependent frag. We never generate these. */
2105 md_convert_frag (bfd
*abfd ATTRIBUTE_UNUSED
,
2106 asection
*sec ATTRIBUTE_UNUSED
,
2107 fragS
*fragp ATTRIBUTE_UNUSED
)
2113 md_undefined_symbol (char *name
)
2115 if (*name
== '_' && *(name
+ 1) == 'G'
2116 && strcmp (name
, "_GLOBAL_OFFSET_TABLE_") == 0)
2120 if (symbol_find (name
))
2121 as_bad (_("GOT already in symbol table"));
2122 GOT_symbol
= symbol_new (name
, undefined_section
,
2123 (valueT
) 0, &zero_address_frag
);
2130 /* Functions concerning relocs. */
2132 /* The location from which a PC relative jump should be calculated,
2133 given a PC relative reloc. */
2136 md_pcrel_from_section (fixS
*fixp
, segT sec ATTRIBUTE_UNUSED
)
2138 return fixp
->fx_frag
->fr_address
+ fixp
->fx_where
;
2141 /* Here we decide which fixups can be adjusted to make them relative to
2142 the beginning of the section instead of the symbol. Basically we need
2143 to make sure that the dynamic relocations are done correctly, so in
2144 some cases we force the original symbol to be used. */
2146 tc_s390_fix_adjustable (fixS
*fixP
)
2148 /* Don't adjust pc-relative references to merge sections. */
2150 && (S_GET_SEGMENT (fixP
->fx_addsy
)->flags
& SEC_MERGE
) != 0)
2153 /* adjust_reloc_syms doesn't know about the GOT. */
2154 if ( fixP
->fx_r_type
== BFD_RELOC_16_GOTOFF
2155 || fixP
->fx_r_type
== BFD_RELOC_32_GOTOFF
2156 || fixP
->fx_r_type
== BFD_RELOC_390_GOTOFF64
2157 || fixP
->fx_r_type
== BFD_RELOC_390_PLTOFF16
2158 || fixP
->fx_r_type
== BFD_RELOC_390_PLTOFF32
2159 || fixP
->fx_r_type
== BFD_RELOC_390_PLTOFF64
2160 || fixP
->fx_r_type
== BFD_RELOC_390_PLT12DBL
2161 || fixP
->fx_r_type
== BFD_RELOC_390_PLT16DBL
2162 || fixP
->fx_r_type
== BFD_RELOC_390_PLT24DBL
2163 || fixP
->fx_r_type
== BFD_RELOC_390_PLT32
2164 || fixP
->fx_r_type
== BFD_RELOC_390_PLT32DBL
2165 || fixP
->fx_r_type
== BFD_RELOC_390_PLT64
2166 || fixP
->fx_r_type
== BFD_RELOC_390_GOT12
2167 || fixP
->fx_r_type
== BFD_RELOC_390_GOT20
2168 || fixP
->fx_r_type
== BFD_RELOC_390_GOT16
2169 || fixP
->fx_r_type
== BFD_RELOC_32_GOT_PCREL
2170 || fixP
->fx_r_type
== BFD_RELOC_390_GOT64
2171 || fixP
->fx_r_type
== BFD_RELOC_390_GOTENT
2172 || fixP
->fx_r_type
== BFD_RELOC_390_GOTPLT12
2173 || fixP
->fx_r_type
== BFD_RELOC_390_GOTPLT16
2174 || fixP
->fx_r_type
== BFD_RELOC_390_GOTPLT20
2175 || fixP
->fx_r_type
== BFD_RELOC_390_GOTPLT32
2176 || fixP
->fx_r_type
== BFD_RELOC_390_GOTPLT64
2177 || fixP
->fx_r_type
== BFD_RELOC_390_GOTPLTENT
2178 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LOAD
2179 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GDCALL
2180 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LDCALL
2181 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GD32
2182 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GD64
2183 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GOTIE12
2184 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GOTIE20
2185 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GOTIE32
2186 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_GOTIE64
2187 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LDM32
2188 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LDM64
2189 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_IE32
2190 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_IE64
2191 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_IEENT
2192 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LE32
2193 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LE64
2194 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LDO32
2195 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_LDO64
2196 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_DTPMOD
2197 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_DTPOFF
2198 || fixP
->fx_r_type
== BFD_RELOC_390_TLS_TPOFF
2199 || fixP
->fx_r_type
== BFD_RELOC_VTABLE_INHERIT
2200 || fixP
->fx_r_type
== BFD_RELOC_VTABLE_ENTRY
)
2205 /* Return true if we must always emit a reloc for a type and false if
2206 there is some hope of resolving it at assembly time. */
2208 tc_s390_force_relocation (struct fix
*fixp
)
2210 /* Ensure we emit a relocation for every reference to the global
2211 offset table or to the procedure link table. */
2212 switch (fixp
->fx_r_type
)
2214 case BFD_RELOC_390_GOT12
:
2215 case BFD_RELOC_390_GOT20
:
2216 case BFD_RELOC_32_GOT_PCREL
:
2217 case BFD_RELOC_32_GOTOFF
:
2218 case BFD_RELOC_390_GOTOFF64
:
2219 case BFD_RELOC_390_PLTOFF16
:
2220 case BFD_RELOC_390_PLTOFF32
:
2221 case BFD_RELOC_390_PLTOFF64
:
2222 case BFD_RELOC_390_GOTPC
:
2223 case BFD_RELOC_390_GOT16
:
2224 case BFD_RELOC_390_GOTPCDBL
:
2225 case BFD_RELOC_390_GOT64
:
2226 case BFD_RELOC_390_GOTENT
:
2227 case BFD_RELOC_390_PLT32
:
2228 case BFD_RELOC_390_PLT12DBL
:
2229 case BFD_RELOC_390_PLT16DBL
:
2230 case BFD_RELOC_390_PLT24DBL
:
2231 case BFD_RELOC_390_PLT32DBL
:
2232 case BFD_RELOC_390_PLT64
:
2233 case BFD_RELOC_390_GOTPLT12
:
2234 case BFD_RELOC_390_GOTPLT16
:
2235 case BFD_RELOC_390_GOTPLT20
:
2236 case BFD_RELOC_390_GOTPLT32
:
2237 case BFD_RELOC_390_GOTPLT64
:
2238 case BFD_RELOC_390_GOTPLTENT
:
2244 return generic_force_reloc (fixp
);
2247 /* Apply a fixup to the object code. This is called for all the
2248 fixups we generated by the call to fix_new_exp, above. In the call
2249 above we used a reloc code which was the largest legal reloc code
2250 plus the operand index. Here we undo that to recover the operand
2251 index. At this point all symbol values should be fully resolved,
2252 and we attempt to completely resolve the reloc. If we can not do
2253 that, we determine the correct reloc code and put it back in the
2257 md_apply_fix (fixS
*fixP
, valueT
*valP
, segT seg ATTRIBUTE_UNUSED
)
2260 valueT value
= *valP
;
2262 where
= fixP
->fx_frag
->fr_literal
+ fixP
->fx_where
;
2264 if (fixP
->fx_subsy
!= NULL
)
2265 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
2266 _("cannot emit relocation %s against subsy symbol %s"),
2267 bfd_get_reloc_code_name (fixP
->fx_r_type
),
2268 S_GET_NAME (fixP
->fx_subsy
));
2270 if (fixP
->fx_addsy
!= NULL
)
2273 value
+= fixP
->fx_frag
->fr_address
+ fixP
->fx_where
;
2278 if ((int) fixP
->fx_r_type
>= (int) BFD_RELOC_UNUSED
)
2280 const struct s390_operand
*operand
;
2283 opindex
= (int) fixP
->fx_r_type
- (int) BFD_RELOC_UNUSED
;
2284 operand
= &s390_operands
[opindex
];
2288 /* Insert the fully resolved operand value. */
2289 s390_insert_operand ((unsigned char *) where
, operand
,
2290 (offsetT
) value
, fixP
->fx_file
, fixP
->fx_line
);
2294 /* Determine a BFD reloc value based on the operand information.
2295 We are only prepared to turn a few of the operands into
2297 fixP
->fx_offset
= value
;
2298 if (operand
->bits
== 12 && operand
->shift
== 20)
2301 fixP
->fx_where
+= 2;
2302 fixP
->fx_r_type
= BFD_RELOC_390_12
;
2304 else if (operand
->bits
== 12 && operand
->shift
== 36)
2307 fixP
->fx_where
+= 4;
2308 fixP
->fx_r_type
= BFD_RELOC_390_12
;
2310 else if (operand
->bits
== 20 && operand
->shift
== 20)
2313 fixP
->fx_where
+= 2;
2314 fixP
->fx_r_type
= BFD_RELOC_390_20
;
2316 else if (operand
->bits
== 8 && operand
->shift
== 8)
2319 fixP
->fx_where
+= 1;
2320 fixP
->fx_r_type
= BFD_RELOC_8
;
2322 else if (operand
->bits
== 12 && operand
->shift
== 12
2323 && (operand
->flags
& S390_OPERAND_PCREL
))
2326 fixP
->fx_where
+= 1;
2327 fixP
->fx_offset
+= 1;
2328 fixP
->fx_pcrel_adjust
= 1;
2329 fixP
->fx_r_type
= BFD_RELOC_390_PC12DBL
;
2331 else if (operand
->bits
== 16 && operand
->shift
== 16)
2334 fixP
->fx_where
+= 2;
2335 if (operand
->flags
& S390_OPERAND_PCREL
)
2337 fixP
->fx_r_type
= BFD_RELOC_390_PC16DBL
;
2338 fixP
->fx_offset
+= 2;
2339 fixP
->fx_pcrel_adjust
= 2;
2342 fixP
->fx_r_type
= BFD_RELOC_16
;
2344 else if (operand
->bits
== 16 && operand
->shift
== 32
2345 && (operand
->flags
& S390_OPERAND_PCREL
))
2348 fixP
->fx_where
+= 4;
2349 fixP
->fx_offset
+= 4;
2350 fixP
->fx_pcrel_adjust
= 4;
2351 fixP
->fx_r_type
= BFD_RELOC_390_PC16DBL
;
2353 else if (operand
->bits
== 24 && operand
->shift
== 24
2354 && (operand
->flags
& S390_OPERAND_PCREL
))
2357 fixP
->fx_where
+= 3;
2358 fixP
->fx_offset
+= 3;
2359 fixP
->fx_pcrel_adjust
= 3;
2360 fixP
->fx_r_type
= BFD_RELOC_390_PC24DBL
;
2362 else if (operand
->bits
== 32 && operand
->shift
== 16
2363 && (operand
->flags
& S390_OPERAND_PCREL
))
2366 fixP
->fx_where
+= 2;
2367 fixP
->fx_offset
+= 2;
2368 fixP
->fx_pcrel_adjust
= 2;
2369 fixP
->fx_r_type
= BFD_RELOC_390_PC32DBL
;
2376 /* Use expr_symbol_where to see if this is an expression
2378 if (expr_symbol_where (fixP
->fx_addsy
, &sfile
, &sline
))
2379 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
2380 _("unresolved expression that must be resolved"));
2382 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
2383 _("unsupported relocation type"));
2390 switch (fixP
->fx_r_type
)
2396 md_number_to_chars (where
, value
, 1);
2398 case BFD_RELOC_390_12
:
2399 case BFD_RELOC_390_GOT12
:
2400 case BFD_RELOC_390_GOTPLT12
:
2401 case BFD_RELOC_390_PC12DBL
:
2402 case BFD_RELOC_390_PLT12DBL
:
2404 value
+= fixP
->fx_pcrel_adjust
;
2413 mop
= bfd_getb16 ((unsigned char *) where
);
2414 mop
|= (unsigned short) (value
& 0xfff);
2415 bfd_putb16 ((bfd_vma
) mop
, (unsigned char *) where
);
2419 case BFD_RELOC_390_20
:
2420 case BFD_RELOC_390_GOT20
:
2421 case BFD_RELOC_390_GOTPLT20
:
2425 mop
= bfd_getb32 ((unsigned char *) where
);
2426 mop
|= (unsigned int) ((value
& 0xfff) << 8 |
2427 (value
& 0xff000) >> 12);
2428 bfd_putb32 ((bfd_vma
) mop
, (unsigned char *) where
);
2433 case BFD_RELOC_GPREL16
:
2434 case BFD_RELOC_16_GOT_PCREL
:
2435 case BFD_RELOC_16_GOTOFF
:
2437 as_bad_where (fixP
->fx_file
, fixP
->fx_line
,
2438 _("cannot emit PC relative %s relocation%s%s"),
2439 bfd_get_reloc_code_name (fixP
->fx_r_type
),
2440 fixP
->fx_addsy
!= NULL
? " against " : "",
2441 (fixP
->fx_addsy
!= NULL
2442 ? S_GET_NAME (fixP
->fx_addsy
)
2445 md_number_to_chars (where
, value
, 2);
2447 case BFD_RELOC_390_GOT16
:
2448 case BFD_RELOC_390_PLTOFF16
:
2449 case BFD_RELOC_390_GOTPLT16
:
2451 md_number_to_chars (where
, value
, 2);
2453 case BFD_RELOC_390_PC16DBL
:
2454 case BFD_RELOC_390_PLT16DBL
:
2455 value
+= fixP
->fx_pcrel_adjust
;
2457 md_number_to_chars (where
, (offsetT
) value
>> 1, 2);
2460 case BFD_RELOC_390_PC24DBL
:
2461 case BFD_RELOC_390_PLT24DBL
:
2462 value
+= fixP
->fx_pcrel_adjust
;
2468 mop
= bfd_getb32 ((unsigned char *) where
- 1);
2469 mop
|= (unsigned int) (value
& 0xffffff);
2470 bfd_putb32 ((bfd_vma
) mop
, (unsigned char *) where
- 1);
2476 fixP
->fx_r_type
= BFD_RELOC_32_PCREL
;
2478 fixP
->fx_r_type
= BFD_RELOC_32
;
2480 md_number_to_chars (where
, value
, 4);
2482 case BFD_RELOC_32_PCREL
:
2483 case BFD_RELOC_32_BASEREL
:
2484 fixP
->fx_r_type
= BFD_RELOC_32_PCREL
;
2486 md_number_to_chars (where
, value
, 4);
2488 case BFD_RELOC_32_GOT_PCREL
:
2489 case BFD_RELOC_390_PLTOFF32
:
2490 case BFD_RELOC_390_PLT32
:
2491 case BFD_RELOC_390_GOTPLT32
:
2493 md_number_to_chars (where
, value
, 4);
2495 case BFD_RELOC_390_PC32DBL
:
2496 case BFD_RELOC_390_PLT32DBL
:
2497 case BFD_RELOC_390_GOTPCDBL
:
2498 case BFD_RELOC_390_GOTENT
:
2499 case BFD_RELOC_390_GOTPLTENT
:
2500 value
+= fixP
->fx_pcrel_adjust
;
2502 md_number_to_chars (where
, (offsetT
) value
>> 1, 4);
2505 case BFD_RELOC_32_GOTOFF
:
2507 md_number_to_chars (where
, value
, sizeof (int));
2510 case BFD_RELOC_390_GOTOFF64
:
2512 md_number_to_chars (where
, value
, 8);
2515 case BFD_RELOC_390_GOT64
:
2516 case BFD_RELOC_390_PLTOFF64
:
2517 case BFD_RELOC_390_PLT64
:
2518 case BFD_RELOC_390_GOTPLT64
:
2520 md_number_to_chars (where
, value
, 8);
2525 fixP
->fx_r_type
= BFD_RELOC_64_PCREL
;
2527 fixP
->fx_r_type
= BFD_RELOC_64
;
2529 md_number_to_chars (where
, value
, 8);
2532 case BFD_RELOC_64_PCREL
:
2533 fixP
->fx_r_type
= BFD_RELOC_64_PCREL
;
2535 md_number_to_chars (where
, value
, 8);
2538 case BFD_RELOC_VTABLE_INHERIT
:
2539 case BFD_RELOC_VTABLE_ENTRY
:
2543 case BFD_RELOC_390_TLS_LOAD
:
2544 case BFD_RELOC_390_TLS_GDCALL
:
2545 case BFD_RELOC_390_TLS_LDCALL
:
2546 case BFD_RELOC_390_TLS_GD32
:
2547 case BFD_RELOC_390_TLS_GD64
:
2548 case BFD_RELOC_390_TLS_GOTIE12
:
2549 case BFD_RELOC_390_TLS_GOTIE20
:
2550 case BFD_RELOC_390_TLS_GOTIE32
:
2551 case BFD_RELOC_390_TLS_GOTIE64
:
2552 case BFD_RELOC_390_TLS_LDM32
:
2553 case BFD_RELOC_390_TLS_LDM64
:
2554 case BFD_RELOC_390_TLS_IE32
:
2555 case BFD_RELOC_390_TLS_IE64
:
2556 case BFD_RELOC_390_TLS_LE32
:
2557 case BFD_RELOC_390_TLS_LE64
:
2558 case BFD_RELOC_390_TLS_LDO32
:
2559 case BFD_RELOC_390_TLS_LDO64
:
2560 case BFD_RELOC_390_TLS_DTPMOD
:
2561 case BFD_RELOC_390_TLS_DTPOFF
:
2562 case BFD_RELOC_390_TLS_TPOFF
:
2563 S_SET_THREAD_LOCAL (fixP
->fx_addsy
);
2564 /* Fully resolved at link time. */
2566 case BFD_RELOC_390_TLS_IEENT
:
2567 /* Fully resolved at link time. */
2568 S_SET_THREAD_LOCAL (fixP
->fx_addsy
);
2574 const char *reloc_name
= bfd_get_reloc_code_name (fixP
->fx_r_type
);
2576 if (reloc_name
!= NULL
)
2577 as_fatal (_("Gas failure, reloc type %s\n"), reloc_name
);
2579 as_fatal (_("Gas failure, reloc type #%i\n"), fixP
->fx_r_type
);
2583 fixP
->fx_offset
= value
;
2587 /* Generate a reloc for a fixup. */
2590 tc_gen_reloc (asection
*seg ATTRIBUTE_UNUSED
, fixS
*fixp
)
2592 bfd_reloc_code_real_type code
;
2595 code
= fixp
->fx_r_type
;
2596 if (GOT_symbol
&& fixp
->fx_addsy
== GOT_symbol
)
2598 if ( (s390_arch_size
== 32 && code
== BFD_RELOC_32_PCREL
)
2599 || (s390_arch_size
== 64 && code
== BFD_RELOC_64_PCREL
))
2600 code
= BFD_RELOC_390_GOTPC
;
2601 if (code
== BFD_RELOC_390_PC32DBL
)
2602 code
= BFD_RELOC_390_GOTPCDBL
;
2605 reloc
= XNEW (arelent
);
2606 reloc
->sym_ptr_ptr
= XNEW (asymbol
*);
2607 *reloc
->sym_ptr_ptr
= symbol_get_bfdsym (fixp
->fx_addsy
);
2608 reloc
->address
= fixp
->fx_frag
->fr_address
+ fixp
->fx_where
;
2609 reloc
->howto
= bfd_reloc_type_lookup (stdoutput
, code
);
2610 if (reloc
->howto
== NULL
)
2612 as_bad_where (fixp
->fx_file
, fixp
->fx_line
,
2613 _("cannot represent relocation type %s"),
2614 bfd_get_reloc_code_name (code
));
2615 /* Set howto to a garbage value so that we can keep going. */
2616 reloc
->howto
= bfd_reloc_type_lookup (stdoutput
, BFD_RELOC_32
);
2617 gas_assert (reloc
->howto
!= NULL
);
2619 reloc
->addend
= fixp
->fx_offset
;
2625 s390_cfi_frame_initial_instructions (void)
2627 cfi_add_CFA_def_cfa (15, s390_arch_size
== 64 ? 160 : 96);
2631 tc_s390_regname_to_dw2regnum (char *regname
)
2635 if (regname
[0] != 'c' && regname
[0] != 'a')
2637 regnum
= reg_name_search (regname
);
2638 if (regname
[0] == 'f' && regnum
!= -1)
2641 else if (strcmp (regname
, "ap") == 0)
2643 else if (strcmp (regname
, "cc") == 0)
2649 s390_elf_final_processing (void)
2652 elf_elfheader (stdoutput
)->e_flags
|= EF_S390_HIGH_GPRS
;