]>
Commit | Line | Data |
---|---|---|
66b43ecb | 1 | #!/bin/sh -u |
104c1213 JM |
2 | |
3 | # Architecture commands for GDB, the GNU debugger. | |
181c1381 | 4 | # Copyright 1998, 1999, 2000, 2001, 2002 Free Software Foundation, Inc. |
104c1213 JM |
5 | # |
6 | # This file is part of GDB. | |
7 | # | |
8 | # This program is free software; you can redistribute it and/or modify | |
9 | # it under the terms of the GNU General Public License as published by | |
10 | # the Free Software Foundation; either version 2 of the License, or | |
11 | # (at your option) any later version. | |
12 | # | |
13 | # This program is distributed in the hope that it will be useful, | |
14 | # but WITHOUT ANY WARRANTY; without even the implied warranty of | |
15 | # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
16 | # GNU General Public License for more details. | |
17 | # | |
18 | # You should have received a copy of the GNU General Public License | |
19 | # along with this program; if not, write to the Free Software | |
20 | # Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. | |
21 | ||
d8864532 AC |
22 | # Make certain that the script is running in an internationalized |
23 | # environment. | |
24 | LANG=c ; export LANG | |
1bd316f0 | 25 | LC_ALL=c ; export LC_ALL |
d8864532 AC |
26 | |
27 | ||
59233f88 AC |
28 | compare_new () |
29 | { | |
30 | file=$1 | |
66b43ecb | 31 | if test ! -r ${file} |
59233f88 AC |
32 | then |
33 | echo "${file} missing? cp new-${file} ${file}" 1>&2 | |
50248794 | 34 | elif diff -u ${file} new-${file} |
59233f88 AC |
35 | then |
36 | echo "${file} unchanged" 1>&2 | |
37 | else | |
38 | echo "${file} has changed? cp new-${file} ${file}" 1>&2 | |
39 | fi | |
40 | } | |
41 | ||
42 | ||
43 | # Format of the input table | |
0b8f9e4d | 44 | read="class level macro returntype function formal actual attrib staticdefault predefault postdefault invalid_p fmt print print_p description" |
c0e8c252 AC |
45 | |
46 | do_read () | |
47 | { | |
34620563 AC |
48 | comment="" |
49 | class="" | |
50 | while read line | |
51 | do | |
52 | if test "${line}" = "" | |
53 | then | |
54 | continue | |
55 | elif test "${line}" = "#" -a "${comment}" = "" | |
f0d4cc9e | 56 | then |
34620563 AC |
57 | continue |
58 | elif expr "${line}" : "#" > /dev/null | |
f0d4cc9e | 59 | then |
34620563 AC |
60 | comment="${comment} |
61 | ${line}" | |
f0d4cc9e | 62 | else |
3d9a5942 AC |
63 | |
64 | # The semantics of IFS varies between different SH's. Some | |
65 | # treat ``::' as three fields while some treat it as just too. | |
66 | # Work around this by eliminating ``::'' .... | |
67 | line="`echo "${line}" | sed -e 's/::/: :/g' -e 's/::/: :/g'`" | |
68 | ||
69 | OFS="${IFS}" ; IFS="[:]" | |
34620563 AC |
70 | eval read ${read} <<EOF |
71 | ${line} | |
72 | EOF | |
73 | IFS="${OFS}" | |
74 | ||
3d9a5942 AC |
75 | # .... and then going back through each field and strip out those |
76 | # that ended up with just that space character. | |
77 | for r in ${read} | |
78 | do | |
79 | if eval test \"\${${r}}\" = \"\ \" | |
80 | then | |
81 | eval ${r}="" | |
82 | fi | |
83 | done | |
84 | ||
50248794 AC |
85 | case "${level}" in |
86 | 1 ) gt_level=">= GDB_MULTI_ARCH_PARTIAL" ;; | |
87 | 2 ) gt_level="> GDB_MULTI_ARCH_PARTIAL" ;; | |
88 | "" ) ;; | |
89 | * ) error "Error: bad level for ${function}" 1>&2 ; kill $$ ; exit 1 ;; | |
90 | esac | |
91 | ||
a72293e2 AC |
92 | case "${class}" in |
93 | m ) staticdefault="${predefault}" ;; | |
94 | M ) staticdefault="0" ;; | |
95 | * ) test "${staticdefault}" || staticdefault=0 ;; | |
96 | esac | |
34620563 AC |
97 | # NOT YET: Breaks BELIEVE_PCC_PROMOTION and confuses non- |
98 | # multi-arch defaults. | |
99 | # test "${predefault}" || predefault=0 | |
06b25f14 AC |
100 | |
101 | # come up with a format, use a few guesses for variables | |
102 | case ":${class}:${fmt}:${print}:" in | |
103 | :[vV]::: ) | |
104 | if [ "${returntype}" = int ] | |
105 | then | |
106 | fmt="%d" | |
107 | print="${macro}" | |
108 | elif [ "${returntype}" = long ] | |
109 | then | |
110 | fmt="%ld" | |
111 | print="${macro}" | |
112 | fi | |
113 | ;; | |
114 | esac | |
34620563 AC |
115 | test "${fmt}" || fmt="%ld" |
116 | test "${print}" || print="(long) ${macro}" | |
06b25f14 | 117 | |
34620563 AC |
118 | case "${invalid_p}" in |
119 | 0 ) valid_p=1 ;; | |
120 | "" ) | |
72e74a21 | 121 | if [ -n "${predefault}" ] |
34620563 AC |
122 | then |
123 | #invalid_p="gdbarch->${function} == ${predefault}" | |
124 | valid_p="gdbarch->${function} != ${predefault}" | |
125 | else | |
126 | #invalid_p="gdbarch->${function} == 0" | |
127 | valid_p="gdbarch->${function} != 0" | |
128 | fi | |
129 | ;; | |
130 | * ) valid_p="!(${invalid_p})" | |
131 | esac | |
132 | ||
133 | # PREDEFAULT is a valid fallback definition of MEMBER when | |
134 | # multi-arch is not enabled. This ensures that the | |
135 | # default value, when multi-arch is the same as the | |
136 | # default value when not multi-arch. POSTDEFAULT is | |
137 | # always a valid definition of MEMBER as this again | |
138 | # ensures consistency. | |
139 | ||
72e74a21 | 140 | if [ -n "${postdefault}" ] |
34620563 AC |
141 | then |
142 | fallbackdefault="${postdefault}" | |
72e74a21 | 143 | elif [ -n "${predefault}" ] |
34620563 AC |
144 | then |
145 | fallbackdefault="${predefault}" | |
146 | else | |
73d3c16e | 147 | fallbackdefault="0" |
34620563 AC |
148 | fi |
149 | ||
150 | #NOT YET: See gdbarch.log for basic verification of | |
151 | # database | |
152 | ||
153 | break | |
f0d4cc9e | 154 | fi |
34620563 | 155 | done |
72e74a21 | 156 | if [ -n "${class}" ] |
34620563 AC |
157 | then |
158 | true | |
c0e8c252 AC |
159 | else |
160 | false | |
161 | fi | |
162 | } | |
163 | ||
104c1213 | 164 | |
f0d4cc9e AC |
165 | fallback_default_p () |
166 | { | |
72e74a21 JB |
167 | [ -n "${postdefault}" -a "x${invalid_p}" != "x0" ] \ |
168 | || [ -n "${predefault}" -a "x${invalid_p}" = "x0" ] | |
f0d4cc9e AC |
169 | } |
170 | ||
171 | class_is_variable_p () | |
172 | { | |
4a5c6a1d AC |
173 | case "${class}" in |
174 | *v* | *V* ) true ;; | |
175 | * ) false ;; | |
176 | esac | |
f0d4cc9e AC |
177 | } |
178 | ||
179 | class_is_function_p () | |
180 | { | |
4a5c6a1d AC |
181 | case "${class}" in |
182 | *f* | *F* | *m* | *M* ) true ;; | |
183 | * ) false ;; | |
184 | esac | |
185 | } | |
186 | ||
187 | class_is_multiarch_p () | |
188 | { | |
189 | case "${class}" in | |
190 | *m* | *M* ) true ;; | |
191 | * ) false ;; | |
192 | esac | |
f0d4cc9e AC |
193 | } |
194 | ||
195 | class_is_predicate_p () | |
196 | { | |
4a5c6a1d AC |
197 | case "${class}" in |
198 | *F* | *V* | *M* ) true ;; | |
199 | * ) false ;; | |
200 | esac | |
f0d4cc9e AC |
201 | } |
202 | ||
203 | class_is_info_p () | |
204 | { | |
4a5c6a1d AC |
205 | case "${class}" in |
206 | *i* ) true ;; | |
207 | * ) false ;; | |
208 | esac | |
f0d4cc9e AC |
209 | } |
210 | ||
211 | ||
cff3e48b JM |
212 | # dump out/verify the doco |
213 | for field in ${read} | |
214 | do | |
215 | case ${field} in | |
216 | ||
217 | class ) : ;; | |
c4093a6a | 218 | |
c0e8c252 AC |
219 | # # -> line disable |
220 | # f -> function | |
221 | # hiding a function | |
2ada493a AC |
222 | # F -> function + predicate |
223 | # hiding a function + predicate to test function validity | |
c0e8c252 AC |
224 | # v -> variable |
225 | # hiding a variable | |
2ada493a AC |
226 | # V -> variable + predicate |
227 | # hiding a variable + predicate to test variables validity | |
c0e8c252 AC |
228 | # i -> set from info |
229 | # hiding something from the ``struct info'' object | |
4a5c6a1d AC |
230 | # m -> multi-arch function |
231 | # hiding a multi-arch function (parameterised with the architecture) | |
232 | # M -> multi-arch function + predicate | |
233 | # hiding a multi-arch function + predicate to test function validity | |
cff3e48b JM |
234 | |
235 | level ) : ;; | |
236 | ||
c0e8c252 AC |
237 | # See GDB_MULTI_ARCH description. Having GDB_MULTI_ARCH >= |
238 | # LEVEL is a predicate on checking that a given method is | |
239 | # initialized (using INVALID_P). | |
cff3e48b JM |
240 | |
241 | macro ) : ;; | |
242 | ||
c0e8c252 | 243 | # The name of the MACRO that this method is to be accessed by. |
cff3e48b JM |
244 | |
245 | returntype ) : ;; | |
246 | ||
c0e8c252 | 247 | # For functions, the return type; for variables, the data type |
cff3e48b JM |
248 | |
249 | function ) : ;; | |
250 | ||
c0e8c252 AC |
251 | # For functions, the member function name; for variables, the |
252 | # variable name. Member function names are always prefixed with | |
253 | # ``gdbarch_'' for name-space purity. | |
cff3e48b JM |
254 | |
255 | formal ) : ;; | |
256 | ||
c0e8c252 AC |
257 | # The formal argument list. It is assumed that the formal |
258 | # argument list includes the actual name of each list element. | |
259 | # A function with no arguments shall have ``void'' as the | |
260 | # formal argument list. | |
cff3e48b JM |
261 | |
262 | actual ) : ;; | |
263 | ||
c0e8c252 AC |
264 | # The list of actual arguments. The arguments specified shall |
265 | # match the FORMAL list given above. Functions with out | |
266 | # arguments leave this blank. | |
cff3e48b JM |
267 | |
268 | attrib ) : ;; | |
269 | ||
c0e8c252 AC |
270 | # Any GCC attributes that should be attached to the function |
271 | # declaration. At present this field is unused. | |
cff3e48b | 272 | |
0b8f9e4d | 273 | staticdefault ) : ;; |
c0e8c252 AC |
274 | |
275 | # To help with the GDB startup a static gdbarch object is | |
0b8f9e4d AC |
276 | # created. STATICDEFAULT is the value to insert into that |
277 | # static gdbarch object. Since this a static object only | |
278 | # simple expressions can be used. | |
cff3e48b | 279 | |
0b8f9e4d | 280 | # If STATICDEFAULT is empty, zero is used. |
c0e8c252 | 281 | |
0b8f9e4d | 282 | predefault ) : ;; |
cff3e48b | 283 | |
10312cc4 AC |
284 | # An initial value to assign to MEMBER of the freshly |
285 | # malloc()ed gdbarch object. After initialization, the | |
286 | # freshly malloc()ed object is passed to the target | |
287 | # architecture code for further updates. | |
cff3e48b | 288 | |
0b8f9e4d AC |
289 | # If PREDEFAULT is empty, zero is used. |
290 | ||
10312cc4 AC |
291 | # A non-empty PREDEFAULT, an empty POSTDEFAULT and a zero |
292 | # INVALID_P are specified, PREDEFAULT will be used as the | |
293 | # default for the non- multi-arch target. | |
294 | ||
295 | # A zero PREDEFAULT function will force the fallback to call | |
296 | # internal_error(). | |
f0d4cc9e AC |
297 | |
298 | # Variable declarations can refer to ``gdbarch'' which will | |
299 | # contain the current architecture. Care should be taken. | |
0b8f9e4d AC |
300 | |
301 | postdefault ) : ;; | |
302 | ||
303 | # A value to assign to MEMBER of the new gdbarch object should | |
10312cc4 AC |
304 | # the target architecture code fail to change the PREDEFAULT |
305 | # value. | |
0b8f9e4d AC |
306 | |
307 | # If POSTDEFAULT is empty, no post update is performed. | |
308 | ||
309 | # If both INVALID_P and POSTDEFAULT are non-empty then | |
310 | # INVALID_P will be used to determine if MEMBER should be | |
311 | # changed to POSTDEFAULT. | |
312 | ||
10312cc4 AC |
313 | # If a non-empty POSTDEFAULT and a zero INVALID_P are |
314 | # specified, POSTDEFAULT will be used as the default for the | |
315 | # non- multi-arch target (regardless of the value of | |
316 | # PREDEFAULT). | |
317 | ||
f0d4cc9e AC |
318 | # You cannot specify both a zero INVALID_P and a POSTDEFAULT. |
319 | ||
320 | # Variable declarations can refer to ``gdbarch'' which will | |
321 | # contain the current architecture. Care should be taken. | |
cff3e48b | 322 | |
c4093a6a | 323 | invalid_p ) : ;; |
cff3e48b | 324 | |
0b8f9e4d | 325 | # A predicate equation that validates MEMBER. Non-zero is |
c0e8c252 | 326 | # returned if the code creating the new architecture failed to |
0b8f9e4d AC |
327 | # initialize MEMBER or the initialized the member is invalid. |
328 | # If POSTDEFAULT is non-empty then MEMBER will be updated to | |
329 | # that value. If POSTDEFAULT is empty then internal_error() | |
330 | # is called. | |
331 | ||
332 | # If INVALID_P is empty, a check that MEMBER is no longer | |
333 | # equal to PREDEFAULT is used. | |
334 | ||
f0d4cc9e AC |
335 | # The expression ``0'' disables the INVALID_P check making |
336 | # PREDEFAULT a legitimate value. | |
0b8f9e4d AC |
337 | |
338 | # See also PREDEFAULT and POSTDEFAULT. | |
cff3e48b JM |
339 | |
340 | fmt ) : ;; | |
341 | ||
c0e8c252 AC |
342 | # printf style format string that can be used to print out the |
343 | # MEMBER. Sometimes "%s" is useful. For functions, this is | |
344 | # ignored and the function address is printed. | |
345 | ||
0b8f9e4d | 346 | # If FMT is empty, ``%ld'' is used. |
cff3e48b JM |
347 | |
348 | print ) : ;; | |
349 | ||
c0e8c252 AC |
350 | # An optional equation that casts MEMBER to a value suitable |
351 | # for formatting by FMT. | |
352 | ||
0b8f9e4d | 353 | # If PRINT is empty, ``(long)'' is used. |
cff3e48b JM |
354 | |
355 | print_p ) : ;; | |
356 | ||
c0e8c252 AC |
357 | # An optional indicator for any predicte to wrap around the |
358 | # print member code. | |
359 | ||
4b9b3959 | 360 | # () -> Call a custom function to do the dump. |
c0e8c252 AC |
361 | # exp -> Wrap print up in ``if (${print_p}) ... |
362 | # ``'' -> No predicate | |
cff3e48b | 363 | |
0b8f9e4d AC |
364 | # If PRINT_P is empty, ``1'' is always used. |
365 | ||
cff3e48b JM |
366 | description ) : ;; |
367 | ||
0b8f9e4d | 368 | # Currently unused. |
cff3e48b | 369 | |
50248794 AC |
370 | *) |
371 | echo "Bad field ${field}" | |
372 | exit 1;; | |
cff3e48b JM |
373 | esac |
374 | done | |
375 | ||
cff3e48b | 376 | |
104c1213 JM |
377 | function_list () |
378 | { | |
cff3e48b | 379 | # See below (DOCO) for description of each field |
34620563 | 380 | cat <<EOF |
0b8f9e4d | 381 | i:2:TARGET_ARCHITECTURE:const struct bfd_arch_info *:bfd_arch_info::::&bfd_default_arch_struct::::%s:TARGET_ARCHITECTURE->printable_name:TARGET_ARCHITECTURE != NULL |
104c1213 | 382 | # |
d7449b42 | 383 | i:2:TARGET_BYTE_ORDER:int:byte_order::::BFD_ENDIAN_BIG |
66b43ecb AC |
384 | # Number of bits in a char or unsigned char for the target machine. |
385 | # Just like CHAR_BIT in <limits.h> but describes the target machine. | |
386 | # v::TARGET_CHAR_BIT:int:char_bit::::8 * sizeof (char):8::0: | |
387 | # | |
388 | # Number of bits in a short or unsigned short for the target machine. | |
389 | v::TARGET_SHORT_BIT:int:short_bit::::8 * sizeof (short):2*TARGET_CHAR_BIT::0 | |
390 | # Number of bits in an int or unsigned int for the target machine. | |
391 | v::TARGET_INT_BIT:int:int_bit::::8 * sizeof (int):4*TARGET_CHAR_BIT::0 | |
392 | # Number of bits in a long or unsigned long for the target machine. | |
393 | v::TARGET_LONG_BIT:int:long_bit::::8 * sizeof (long):4*TARGET_CHAR_BIT::0 | |
394 | # Number of bits in a long long or unsigned long long for the target | |
395 | # machine. | |
396 | v::TARGET_LONG_LONG_BIT:int:long_long_bit::::8 * sizeof (LONGEST):2*TARGET_LONG_BIT::0 | |
397 | # Number of bits in a float for the target machine. | |
398 | v::TARGET_FLOAT_BIT:int:float_bit::::8 * sizeof (float):4*TARGET_CHAR_BIT::0 | |
399 | # Number of bits in a double for the target machine. | |
400 | v::TARGET_DOUBLE_BIT:int:double_bit::::8 * sizeof (double):8*TARGET_CHAR_BIT::0 | |
401 | # Number of bits in a long double for the target machine. | |
17ef5d92 | 402 | v::TARGET_LONG_DOUBLE_BIT:int:long_double_bit::::8 * sizeof (long double):8*TARGET_CHAR_BIT::0 |
52204a0b DT |
403 | # For most targets, a pointer on the target and its representation as an |
404 | # address in GDB have the same size and "look the same". For such a | |
405 | # target, you need only set TARGET_PTR_BIT / ptr_bit and TARGET_ADDR_BIT | |
406 | # / addr_bit will be set from it. | |
407 | # | |
408 | # If TARGET_PTR_BIT and TARGET_ADDR_BIT are different, you'll probably | |
409 | # also need to set POINTER_TO_ADDRESS and ADDRESS_TO_POINTER as well. | |
410 | # | |
411 | # ptr_bit is the size of a pointer on the target | |
66b43ecb | 412 | v::TARGET_PTR_BIT:int:ptr_bit::::8 * sizeof (void*):TARGET_INT_BIT::0 |
52204a0b DT |
413 | # addr_bit is the size of a target address as represented in gdb |
414 | v::TARGET_ADDR_BIT:int:addr_bit::::8 * sizeof (void*):0:TARGET_PTR_BIT: | |
66b43ecb AC |
415 | # Number of bits in a BFD_VMA for the target object file format. |
416 | v::TARGET_BFD_VMA_BIT:int:bfd_vma_bit::::8 * sizeof (void*):TARGET_ARCHITECTURE->bits_per_address::0 | |
104c1213 | 417 | # |
4e409299 | 418 | # One if \`char' acts like \`signed char', zero if \`unsigned char'. |
2c283bc4 | 419 | v::TARGET_CHAR_SIGNED:int:char_signed::::1:-1:1:::: |
4e409299 | 420 | # |
39f77062 KB |
421 | f::TARGET_READ_PC:CORE_ADDR:read_pc:ptid_t ptid:ptid::0:generic_target_read_pc::0 |
422 | f::TARGET_WRITE_PC:void:write_pc:CORE_ADDR val, ptid_t ptid:val, ptid::0:generic_target_write_pc::0 | |
be8dfb87 | 423 | f::TARGET_READ_FP:CORE_ADDR:read_fp:void:::0:generic_target_read_fp::0 |
be8dfb87 AC |
424 | f::TARGET_READ_SP:CORE_ADDR:read_sp:void:::0:generic_target_read_sp::0 |
425 | f::TARGET_WRITE_SP:void:write_sp:CORE_ADDR val:val::0:generic_target_write_sp::0 | |
39d4ef09 AC |
426 | # Function for getting target's idea of a frame pointer. FIXME: GDB's |
427 | # whole scheme for dealing with "frames" and "frame pointers" needs a | |
428 | # serious shakedown. | |
429 | f::TARGET_VIRTUAL_FRAME_POINTER:void:virtual_frame_pointer:CORE_ADDR pc, int *frame_regnum, LONGEST *frame_offset:pc, frame_regnum, frame_offset::0:legacy_virtual_frame_pointer::0 | |
66b43ecb | 430 | # |
61a0eb5b AC |
431 | M:::void:register_read:int regnum, char *buf:regnum, buf: |
432 | M:::void:register_write:int regnum, char *buf:regnum, buf: | |
433 | # | |
104c1213 | 434 | v:2:NUM_REGS:int:num_regs::::0:-1 |
0aba1244 EZ |
435 | # This macro gives the number of pseudo-registers that live in the |
436 | # register namespace but do not get fetched or stored on the target. | |
3d9a5942 AC |
437 | # These pseudo-registers may be aliases for other registers, |
438 | # combinations of other registers, or they may be computed by GDB. | |
0aba1244 | 439 | v:2:NUM_PSEUDO_REGS:int:num_pseudo_regs::::0:0::0::: |
c2169756 AC |
440 | |
441 | # GDB's standard (or well known) register numbers. These can map onto | |
442 | # a real register or a pseudo (computed) register or not be defined at | |
1200cd6e AC |
443 | # all (-1). |
444 | v:2:SP_REGNUM:int:sp_regnum::::-1:-1::0 | |
445 | v:2:FP_REGNUM:int:fp_regnum::::-1:-1::0 | |
446 | v:2:PC_REGNUM:int:pc_regnum::::-1:-1::0 | |
c2169756 | 447 | v:2:PS_REGNUM:int:ps_regnum::::-1:-1::0 |
0b8f9e4d AC |
448 | v:2:FP0_REGNUM:int:fp0_regnum::::0:-1::0 |
449 | v:2:NPC_REGNUM:int:npc_regnum::::0:-1::0 | |
450 | v:2:NNPC_REGNUM:int:nnpc_regnum::::0:-1::0 | |
88c72b7d AC |
451 | # Convert stab register number (from \`r\' declaration) to a gdb REGNUM. |
452 | f:2:STAB_REG_TO_REGNUM:int:stab_reg_to_regnum:int stab_regnr:stab_regnr:::no_op_reg_to_regnum::0 | |
453 | # Provide a default mapping from a ecoff register number to a gdb REGNUM. | |
454 | f:2:ECOFF_REG_TO_REGNUM:int:ecoff_reg_to_regnum:int ecoff_regnr:ecoff_regnr:::no_op_reg_to_regnum::0 | |
455 | # Provide a default mapping from a DWARF register number to a gdb REGNUM. | |
456 | f:2:DWARF_REG_TO_REGNUM:int:dwarf_reg_to_regnum:int dwarf_regnr:dwarf_regnr:::no_op_reg_to_regnum::0 | |
457 | # Convert from an sdb register number to an internal gdb register number. | |
458 | # This should be defined in tm.h, if REGISTER_NAMES is not set up | |
459 | # to map one to one onto the sdb register numbers. | |
460 | f:2:SDB_REG_TO_REGNUM:int:sdb_reg_to_regnum:int sdb_regnr:sdb_regnr:::no_op_reg_to_regnum::0 | |
461 | f:2:DWARF2_REG_TO_REGNUM:int:dwarf2_reg_to_regnum:int dwarf2_regnr:dwarf2_regnr:::no_op_reg_to_regnum::0 | |
0b8f9e4d | 462 | f:2:REGISTER_NAME:char *:register_name:int regnr:regnr:::legacy_register_name::0 |
104c1213 JM |
463 | v:2:REGISTER_SIZE:int:register_size::::0:-1 |
464 | v:2:REGISTER_BYTES:int:register_bytes::::0:-1 | |
465 | f:2:REGISTER_BYTE:int:register_byte:int reg_nr:reg_nr::0:0 | |
46cd78fb | 466 | f:2:REGISTER_RAW_SIZE:int:register_raw_size:int reg_nr:reg_nr::generic_register_raw_size:0 |
104c1213 | 467 | v:2:MAX_REGISTER_RAW_SIZE:int:max_register_raw_size::::0:-1 |
ce29138a | 468 | f:2:REGISTER_VIRTUAL_SIZE:int:register_virtual_size:int reg_nr:reg_nr::generic_register_virtual_size:0 |
104c1213 JM |
469 | v:2:MAX_REGISTER_VIRTUAL_SIZE:int:max_register_virtual_size::::0:-1 |
470 | f:2:REGISTER_VIRTUAL_TYPE:struct type *:register_virtual_type:int reg_nr:reg_nr::0:0 | |
666e11c5 | 471 | f:2:DO_REGISTERS_INFO:void:do_registers_info:int reg_nr, int fpregs:reg_nr, fpregs:::do_registers_info::0 |
5e74b15c | 472 | f:2:PRINT_FLOAT_INFO:void:print_float_info:void::::default_print_float_info::0 |
7c7651b2 AC |
473 | # MAP a GDB RAW register number onto a simulator register number. See |
474 | # also include/...-sim.h. | |
475 | f:2:REGISTER_SIM_REGNO:int:register_sim_regno:int reg_nr:reg_nr:::default_register_sim_regno::0 | |
2649061d | 476 | F:2:REGISTER_BYTES_OK:int:register_bytes_ok:long nr_bytes:nr_bytes::0:0 |
01fb7433 AC |
477 | f:2:CANNOT_FETCH_REGISTER:int:cannot_fetch_register:int regnum:regnum:::cannot_register_not::0 |
478 | f:2:CANNOT_STORE_REGISTER:int:cannot_store_register:int regnum:regnum:::cannot_register_not::0 | |
9df628e0 RE |
479 | # setjmp/longjmp support. |
480 | F:2:GET_LONGJMP_TARGET:int:get_longjmp_target:CORE_ADDR *pc:pc::0:0 | |
104c1213 | 481 | # |
028c194b AC |
482 | # Non multi-arch DUMMY_FRAMES are a mess (multi-arch ones are not that |
483 | # much better but at least they are vaguely consistent). The headers | |
484 | # and body contain convoluted #if/#else sequences for determine how | |
485 | # things should be compiled. Instead of trying to mimic that | |
486 | # behaviour here (and hence entrench it further) gdbarch simply | |
487 | # reqires that these methods be set up from the word go. This also | |
488 | # avoids any potential problems with moving beyond multi-arch partial. | |
104c1213 | 489 | v:1:USE_GENERIC_DUMMY_FRAMES:int:use_generic_dummy_frames::::0:-1 |
a985cd41 | 490 | v:1:CALL_DUMMY_LOCATION:int:call_dummy_location::::0:0 |
0b8f9e4d AC |
491 | f:2:CALL_DUMMY_ADDRESS:CORE_ADDR:call_dummy_address:void:::0:0::gdbarch->call_dummy_location == AT_ENTRY_POINT && gdbarch->call_dummy_address == 0 |
492 | v:2:CALL_DUMMY_START_OFFSET:CORE_ADDR:call_dummy_start_offset::::0:-1:::0x%08lx | |
83e6b173 | 493 | v:2:CALL_DUMMY_BREAKPOINT_OFFSET:CORE_ADDR:call_dummy_breakpoint_offset::::0:-1::gdbarch->call_dummy_breakpoint_offset_p && gdbarch->call_dummy_breakpoint_offset == -1:0x%08lx::CALL_DUMMY_BREAKPOINT_OFFSET_P |
104c1213 | 494 | v:1:CALL_DUMMY_BREAKPOINT_OFFSET_P:int:call_dummy_breakpoint_offset_p::::0:-1 |
0b8f9e4d | 495 | v:2:CALL_DUMMY_LENGTH:int:call_dummy_length::::0:-1:::::CALL_DUMMY_LOCATION == BEFORE_TEXT_END || CALL_DUMMY_LOCATION == AFTER_TEXT_END |
a4a7d16f | 496 | f:1:PC_IN_CALL_DUMMY:int:pc_in_call_dummy:CORE_ADDR pc, CORE_ADDR sp, CORE_ADDR frame_address:pc, sp, frame_address::0:0 |
104c1213 | 497 | v:1:CALL_DUMMY_P:int:call_dummy_p::::0:-1 |
0b8f9e4d AC |
498 | v:2:CALL_DUMMY_WORDS:LONGEST *:call_dummy_words::::0:legacy_call_dummy_words::0:0x%08lx |
499 | v:2:SIZEOF_CALL_DUMMY_WORDS:int:sizeof_call_dummy_words::::0:legacy_sizeof_call_dummy_words::0:0x%08lx | |
500 | v:1:CALL_DUMMY_STACK_ADJUST_P:int:call_dummy_stack_adjust_p::::0:-1:::0x%08lx | |
501 | v:2:CALL_DUMMY_STACK_ADJUST:int:call_dummy_stack_adjust::::0:::gdbarch->call_dummy_stack_adjust_p && gdbarch->call_dummy_stack_adjust == 0:0x%08lx::CALL_DUMMY_STACK_ADJUST_P | |
502 | f:2:FIX_CALL_DUMMY:void:fix_call_dummy:char *dummy, CORE_ADDR pc, CORE_ADDR fun, int nargs, struct value **args, struct type *type, int gcc_p:dummy, pc, fun, nargs, args, type, gcc_p:::0 | |
10312cc4 | 503 | f:2:INIT_FRAME_PC_FIRST:void:init_frame_pc_first:int fromleaf, struct frame_info *prev:fromleaf, prev:::init_frame_pc_noop::0 |
7824d2f2 | 504 | f:2:INIT_FRAME_PC:void:init_frame_pc:int fromleaf, struct frame_info *prev:fromleaf, prev:::init_frame_pc_default::0 |
104c1213 | 505 | # |
f0d4cc9e AC |
506 | v:2:BELIEVE_PCC_PROMOTION:int:believe_pcc_promotion::::::: |
507 | v:2:BELIEVE_PCC_PROMOTION_TYPE:int:believe_pcc_promotion_type::::::: | |
0b8f9e4d | 508 | f:2:COERCE_FLOAT_TO_DOUBLE:int:coerce_float_to_double:struct type *formal, struct type *actual:formal, actual:::default_coerce_float_to_double::0 |
028c194b AC |
509 | # GET_SAVED_REGISTER is like DUMMY_FRAMES. It is at level one as the |
510 | # old code has strange #ifdef interaction. So far no one has found | |
511 | # that default_get_saved_register() is the default they are after. | |
104c1213 JM |
512 | f:1:GET_SAVED_REGISTER:void:get_saved_register:char *raw_buffer, int *optimized, CORE_ADDR *addrp, struct frame_info *frame, int regnum, enum lval_type *lval:raw_buffer, optimized, addrp, frame, regnum, lval::generic_get_saved_register:0 |
513 | # | |
6e6d6484 | 514 | f:2:REGISTER_CONVERTIBLE:int:register_convertible:int nr:nr:::generic_register_convertible_not::0 |
0b8f9e4d AC |
515 | f:2:REGISTER_CONVERT_TO_VIRTUAL:void:register_convert_to_virtual:int regnum, struct type *type, char *from, char *to:regnum, type, from, to:::0::0 |
516 | f:2:REGISTER_CONVERT_TO_RAW:void:register_convert_to_raw:struct type *type, int regnum, char *from, char *to:type, regnum, from, to:::0::0 | |
34620563 AC |
517 | # This function is called when the value of a pseudo-register needs to |
518 | # be updated. Typically it will be defined on a per-architecture | |
519 | # basis. | |
31e9866e | 520 | F:2:FETCH_PSEUDO_REGISTER:void:fetch_pseudo_register:int regnum:regnum: |
34620563 AC |
521 | # This function is called when the value of a pseudo-register needs to |
522 | # be set or stored. Typically it will be defined on a | |
523 | # per-architecture basis. | |
31e9866e | 524 | F:2:STORE_PSEUDO_REGISTER:void:store_pseudo_register:int regnum:regnum: |
104c1213 | 525 | # |
ac2e2ef7 AC |
526 | f:2:POINTER_TO_ADDRESS:CORE_ADDR:pointer_to_address:struct type *type, void *buf:type, buf:::unsigned_pointer_to_address::0 |
527 | f:2:ADDRESS_TO_POINTER:void:address_to_pointer:struct type *type, void *buf, CORE_ADDR addr:type, buf, addr:::unsigned_address_to_pointer::0 | |
fc0c74b1 | 528 | F:2:INTEGER_TO_ADDRESS:CORE_ADDR:integer_to_address:struct type *type, void *buf:type, buf |
4478b372 | 529 | # |
0b8f9e4d | 530 | f:2:RETURN_VALUE_ON_STACK:int:return_value_on_stack:struct type *type:type:::generic_return_value_on_stack_not::0 |
104c1213 | 531 | f:2:EXTRACT_RETURN_VALUE:void:extract_return_value:struct type *type, char *regbuf, char *valbuf:type, regbuf, valbuf::0:0 |
6e6d6484 | 532 | f:2:PUSH_ARGUMENTS:CORE_ADDR:push_arguments:int nargs, struct value **args, CORE_ADDR sp, int struct_return, CORE_ADDR struct_addr:nargs, args, sp, struct_return, struct_addr:::default_push_arguments::0 |
c0e8c252 | 533 | f:2:PUSH_DUMMY_FRAME:void:push_dummy_frame:void:-:::0 |
c30e0066 | 534 | F:2:PUSH_RETURN_ADDRESS:CORE_ADDR:push_return_address:CORE_ADDR pc, CORE_ADDR sp:pc, sp:::0 |
c0e8c252 | 535 | f:2:POP_FRAME:void:pop_frame:void:-:::0 |
104c1213 | 536 | # |
c0e8c252 AC |
537 | f:2:STORE_STRUCT_RETURN:void:store_struct_return:CORE_ADDR addr, CORE_ADDR sp:addr, sp:::0 |
538 | f:2:STORE_RETURN_VALUE:void:store_return_value:struct type *type, char *valbuf:type, valbuf:::0 | |
d6dd581e | 539 | F:2:EXTRACT_STRUCT_VALUE_ADDRESS:CORE_ADDR:extract_struct_value_address:char *regbuf:regbuf:::0 |
56f12751 | 540 | f:2:USE_STRUCT_CONVENTION:int:use_struct_convention:int gcc_p, struct type *value_type:gcc_p, value_type:::generic_use_struct_convention::0 |
104c1213 JM |
541 | # |
542 | f:2:FRAME_INIT_SAVED_REGS:void:frame_init_saved_regs:struct frame_info *frame:frame::0:0 | |
5fdff426 | 543 | F:2:INIT_EXTRA_FRAME_INFO:void:init_extra_frame_info:int fromleaf, struct frame_info *frame:fromleaf, frame:::0 |
104c1213 JM |
544 | # |
545 | f:2:SKIP_PROLOGUE:CORE_ADDR:skip_prologue:CORE_ADDR ip:ip::0:0 | |
0b8f9e4d | 546 | f:2:PROLOGUE_FRAMELESS_P:int:prologue_frameless_p:CORE_ADDR ip:ip::0:generic_prologue_frameless_p::0 |
104c1213 | 547 | f:2:INNER_THAN:int:inner_than:CORE_ADDR lhs, CORE_ADDR rhs:lhs, rhs::0:0 |
f4f9705a | 548 | f:2:BREAKPOINT_FROM_PC:const unsigned char *:breakpoint_from_pc:CORE_ADDR *pcptr, int *lenptr:pcptr, lenptr:::legacy_breakpoint_from_pc::0 |
0b8f9e4d AC |
549 | f:2:MEMORY_INSERT_BREAKPOINT:int:memory_insert_breakpoint:CORE_ADDR addr, char *contents_cache:addr, contents_cache::0:default_memory_insert_breakpoint::0 |
550 | f:2:MEMORY_REMOVE_BREAKPOINT:int:memory_remove_breakpoint:CORE_ADDR addr, char *contents_cache:addr, contents_cache::0:default_memory_remove_breakpoint::0 | |
104c1213 | 551 | v:2:DECR_PC_AFTER_BREAK:CORE_ADDR:decr_pc_after_break::::0:-1 |
e02bc4cc | 552 | f::PREPARE_TO_PROCEED:int:prepare_to_proceed:int select_it:select_it::0:default_prepare_to_proceed::0 |
104c1213 JM |
553 | v:2:FUNCTION_START_OFFSET:CORE_ADDR:function_start_offset::::0:-1 |
554 | # | |
0b8f9e4d | 555 | f:2:REMOTE_TRANSLATE_XFER_ADDRESS:void:remote_translate_xfer_address:CORE_ADDR gdb_addr, int gdb_len, CORE_ADDR *rem_addr, int *rem_len:gdb_addr, gdb_len, rem_addr, rem_len:::generic_remote_translate_xfer_address::0 |
104c1213 JM |
556 | # |
557 | v:2:FRAME_ARGS_SKIP:CORE_ADDR:frame_args_skip::::0:-1 | |
0b8f9e4d | 558 | f:2:FRAMELESS_FUNCTION_INVOCATION:int:frameless_function_invocation:struct frame_info *fi:fi:::generic_frameless_function_invocation_not::0 |
104c1213 | 559 | f:2:FRAME_CHAIN:CORE_ADDR:frame_chain:struct frame_info *frame:frame::0:0 |
7f55af32 AC |
560 | # Define a default FRAME_CHAIN_VALID, in the form that is suitable for |
561 | # most targets. If FRAME_CHAIN_VALID returns zero it means that the | |
562 | # given frame is the outermost one and has no caller. | |
563 | # | |
564 | # XXXX - both default and alternate frame_chain_valid functions are | |
565 | # deprecated. New code should use dummy frames and one of the generic | |
566 | # functions. | |
567 | f:2:FRAME_CHAIN_VALID:int:frame_chain_valid:CORE_ADDR chain, struct frame_info *thisframe:chain, thisframe:::func_frame_chain_valid::0 | |
104c1213 JM |
568 | f:2:FRAME_SAVED_PC:CORE_ADDR:frame_saved_pc:struct frame_info *fi:fi::0:0 |
569 | f:2:FRAME_ARGS_ADDRESS:CORE_ADDR:frame_args_address:struct frame_info *fi:fi::0:0 | |
570 | f:2:FRAME_LOCALS_ADDRESS:CORE_ADDR:frame_locals_address:struct frame_info *fi:fi::0:0 | |
571 | f:2:SAVED_PC_AFTER_CALL:CORE_ADDR:saved_pc_after_call:struct frame_info *frame:frame::0:0 | |
572 | f:2:FRAME_NUM_ARGS:int:frame_num_args:struct frame_info *frame:frame::0:0 | |
573 | # | |
2ada493a | 574 | F:2:STACK_ALIGN:CORE_ADDR:stack_align:CORE_ADDR sp:sp::0:0 |
6acf50cd | 575 | v:2:EXTRA_STACK_ALIGNMENT_NEEDED:int:extra_stack_alignment_needed::::0:1::0::: |
d03e67c9 | 576 | F:2:REG_STRUCT_HAS_ADDR:int:reg_struct_has_addr:int gcc_p, struct type *type:gcc_p, type::0:0 |
d1e3cf49 | 577 | F:2:SAVE_DUMMY_FRAME_TOS:void:save_dummy_frame_tos:CORE_ADDR sp:sp::0:0 |
58d5518e | 578 | v:2:PARM_BOUNDARY:int:parm_boundary |
f0d4cc9e AC |
579 | # |
580 | v:2:TARGET_FLOAT_FORMAT:const struct floatformat *:float_format::::::default_float_format (gdbarch) | |
581 | v:2:TARGET_DOUBLE_FORMAT:const struct floatformat *:double_format::::::default_double_format (gdbarch) | |
2fa5c1e0 | 582 | v:2:TARGET_LONG_DOUBLE_FORMAT:const struct floatformat *:long_double_format::::::default_double_format (gdbarch) |
875e1767 AC |
583 | f:2:CONVERT_FROM_FUNC_PTR_ADDR:CORE_ADDR:convert_from_func_ptr_addr:CORE_ADDR addr:addr:::core_addr_identity::0 |
584 | # On some machines there are bits in addresses which are not really | |
585 | # part of the address, but are used by the kernel, the hardware, etc. | |
586 | # for special purposes. ADDR_BITS_REMOVE takes out any such bits so | |
587 | # we get a "real" address such as one would find in a symbol table. | |
588 | # This is used only for addresses of instructions, and even then I'm | |
589 | # not sure it's used in all contexts. It exists to deal with there | |
590 | # being a few stray bits in the PC which would mislead us, not as some | |
591 | # sort of generic thing to handle alignment or segmentation (it's | |
592 | # possible it should be in TARGET_READ_PC instead). | |
593 | f:2:ADDR_BITS_REMOVE:CORE_ADDR:addr_bits_remove:CORE_ADDR addr:addr:::core_addr_identity::0 | |
181c1381 RE |
594 | # It is not at all clear why SMASH_TEXT_ADDRESS is not folded into |
595 | # ADDR_BITS_REMOVE. | |
596 | f:2:SMASH_TEXT_ADDRESS:CORE_ADDR:smash_text_address:CORE_ADDR addr:addr:::core_addr_identity::0 | |
64c4637f AC |
597 | # FIXME/cagney/2001-01-18: This should be split in two. A target method that indicates if |
598 | # the target needs software single step. An ISA method to implement it. | |
599 | # | |
600 | # FIXME/cagney/2001-01-18: This should be replaced with something that inserts breakpoints | |
601 | # using the breakpoint system instead of blatting memory directly (as with rs6000). | |
602 | # | |
603 | # FIXME/cagney/2001-01-18: The logic is backwards. It should be asking if the target can | |
604 | # single step. If not, then implement single step using breakpoints. | |
605 | F:2:SOFTWARE_SINGLE_STEP:void:software_single_step:enum target_signal sig, int insert_breakpoints_p:sig, insert_breakpoints_p::0:0 | |
2bf0cb65 | 606 | f:2:TARGET_PRINT_INSN:int:print_insn:bfd_vma vma, disassemble_info *info:vma, info:::legacy_print_insn::0 |
bdcd319a | 607 | f:2:SKIP_TRAMPOLINE_CODE:CORE_ADDR:skip_trampoline_code:CORE_ADDR pc:pc:::generic_skip_trampoline_code::0 |
68e9cc94 CV |
608 | # For SVR4 shared libraries, each call goes through a small piece of |
609 | # trampoline code in the ".plt" section. IN_SOLIB_CALL_TRAMPOLINE evaluates | |
610 | # to nonzero if we are current stopped in one of these. | |
611 | f:2:IN_SOLIB_CALL_TRAMPOLINE:int:in_solib_call_trampoline:CORE_ADDR pc, char *name:pc, name:::generic_in_solib_call_trampoline::0 | |
d7bd68ca AC |
612 | # Sigtramp is a routine that the kernel calls (which then calls the |
613 | # signal handler). On most machines it is a library routine that is | |
614 | # linked into the executable. | |
615 | # | |
616 | # This macro, given a program counter value and the name of the | |
617 | # function in which that PC resides (which can be null if the name is | |
618 | # not known), returns nonzero if the PC and name show that we are in | |
619 | # sigtramp. | |
620 | # | |
621 | # On most machines just see if the name is sigtramp (and if we have | |
622 | # no name, assume we are not in sigtramp). | |
623 | # | |
624 | # FIXME: cagney/2002-04-21: The function find_pc_partial_function | |
625 | # calls find_pc_sect_partial_function() which calls PC_IN_SIGTRAMP. | |
626 | # This means PC_IN_SIGTRAMP function can't be implemented by doing its | |
627 | # own local NAME lookup. | |
628 | # | |
629 | # FIXME: cagney/2002-04-21: PC_IN_SIGTRAMP is something of a mess. | |
630 | # Some code also depends on SIGTRAMP_START and SIGTRAMP_END but other | |
631 | # does not. | |
632 | f:2:PC_IN_SIGTRAMP:int:pc_in_sigtramp:CORE_ADDR pc, char *name:pc, name:::legacy_pc_in_sigtramp::0 | |
c12260ac CV |
633 | # A target might have problems with watchpoints as soon as the stack |
634 | # frame of the current function has been destroyed. This mostly happens | |
635 | # as the first action in a funtion's epilogue. in_function_epilogue_p() | |
636 | # is defined to return a non-zero value if either the given addr is one | |
637 | # instruction after the stack destroying instruction up to the trailing | |
638 | # return instruction or if we can figure out that the stack frame has | |
639 | # already been invalidated regardless of the value of addr. Targets | |
640 | # which don't suffer from that problem could just let this functionality | |
641 | # untouched. | |
642 | m:::int:in_function_epilogue_p:CORE_ADDR addr:addr::0:generic_in_function_epilogue_p::0 | |
552c04a7 TT |
643 | # Given a vector of command-line arguments, return a newly allocated |
644 | # string which, when passed to the create_inferior function, will be | |
645 | # parsed (on Unix systems, by the shell) to yield the same vector. | |
646 | # This function should call error() if the argument vector is not | |
647 | # representable for this target or if this target does not support | |
648 | # command-line arguments. | |
649 | # ARGC is the number of elements in the vector. | |
650 | # ARGV is an array of strings, one per argument. | |
651 | m::CONSTRUCT_INFERIOR_ARGUMENTS:char *:construct_inferior_arguments:int argc, char **argv:argc, argv:::construct_inferior_arguments::0 | |
b6af0555 | 652 | F:2:DWARF2_BUILD_FRAME_INFO:void:dwarf2_build_frame_info:struct objfile *objfile:objfile:::0 |
a2cf933a EZ |
653 | f:2:ELF_MAKE_MSYMBOL_SPECIAL:void:elf_make_msymbol_special:asymbol *sym, struct minimal_symbol *msym:sym, msym:::default_elf_make_msymbol_special::0 |
654 | f:2:COFF_MAKE_MSYMBOL_SPECIAL:void:coff_make_msymbol_special:int val, struct minimal_symbol *msym:val, msym:::default_coff_make_msymbol_special::0 | |
104c1213 | 655 | EOF |
104c1213 JM |
656 | } |
657 | ||
0b8f9e4d AC |
658 | # |
659 | # The .log file | |
660 | # | |
661 | exec > new-gdbarch.log | |
34620563 | 662 | function_list | while do_read |
0b8f9e4d AC |
663 | do |
664 | cat <<EOF | |
104c1213 JM |
665 | ${class} ${macro}(${actual}) |
666 | ${returntype} ${function} ($formal)${attrib} | |
104c1213 | 667 | EOF |
3d9a5942 AC |
668 | for r in ${read} |
669 | do | |
670 | eval echo \"\ \ \ \ ${r}=\${${r}}\" | |
671 | done | |
672 | # #fallbackdefault=${fallbackdefault} | |
673 | # #valid_p=${valid_p} | |
674 | #EOF | |
f0d4cc9e | 675 | if class_is_predicate_p && fallback_default_p |
0b8f9e4d | 676 | then |
66b43ecb | 677 | echo "Error: predicate function ${macro} can not have a non- multi-arch default" 1>&2 |
0b8f9e4d AC |
678 | kill $$ |
679 | exit 1 | |
680 | fi | |
72e74a21 | 681 | if [ "x${invalid_p}" = "x0" -a -n "${postdefault}" ] |
f0d4cc9e AC |
682 | then |
683 | echo "Error: postdefault is useless when invalid_p=0" 1>&2 | |
684 | kill $$ | |
685 | exit 1 | |
686 | fi | |
a72293e2 AC |
687 | if class_is_multiarch_p |
688 | then | |
689 | if class_is_predicate_p ; then : | |
690 | elif test "x${predefault}" = "x" | |
691 | then | |
692 | echo "Error: pure multi-arch function must have a predefault" 1>&2 | |
693 | kill $$ | |
694 | exit 1 | |
695 | fi | |
696 | fi | |
3d9a5942 | 697 | echo "" |
0b8f9e4d AC |
698 | done |
699 | ||
700 | exec 1>&2 | |
701 | compare_new gdbarch.log | |
702 | ||
104c1213 JM |
703 | |
704 | copyright () | |
705 | { | |
706 | cat <<EOF | |
59233f88 AC |
707 | /* *INDENT-OFF* */ /* THIS FILE IS GENERATED */ |
708 | ||
104c1213 | 709 | /* Dynamic architecture support for GDB, the GNU debugger. |
181c1381 | 710 | Copyright 1998, 1999, 2000, 2001, 2002 Free Software Foundation, Inc. |
104c1213 JM |
711 | |
712 | This file is part of GDB. | |
713 | ||
714 | This program is free software; you can redistribute it and/or modify | |
715 | it under the terms of the GNU General Public License as published by | |
716 | the Free Software Foundation; either version 2 of the License, or | |
717 | (at your option) any later version. | |
718 | ||
719 | This program is distributed in the hope that it will be useful, | |
720 | but WITHOUT ANY WARRANTY; without even the implied warranty of | |
721 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
722 | GNU General Public License for more details. | |
723 | ||
724 | You should have received a copy of the GNU General Public License | |
725 | along with this program; if not, write to the Free Software | |
726 | Foundation, Inc., 59 Temple Place - Suite 330, | |
727 | Boston, MA 02111-1307, USA. */ | |
728 | ||
104c1213 JM |
729 | /* This file was created with the aid of \`\`gdbarch.sh''. |
730 | ||
52204a0b | 731 | The Bourne shell script \`\`gdbarch.sh'' creates the files |
104c1213 JM |
732 | \`\`new-gdbarch.c'' and \`\`new-gdbarch.h and then compares them |
733 | against the existing \`\`gdbarch.[hc]''. Any differences found | |
734 | being reported. | |
735 | ||
736 | If editing this file, please also run gdbarch.sh and merge any | |
52204a0b | 737 | changes into that script. Conversely, when making sweeping changes |
104c1213 JM |
738 | to this file, modifying gdbarch.sh and using its output may prove |
739 | easier. */ | |
740 | ||
741 | EOF | |
742 | } | |
743 | ||
744 | # | |
745 | # The .h file | |
746 | # | |
747 | ||
748 | exec > new-gdbarch.h | |
749 | copyright | |
750 | cat <<EOF | |
751 | #ifndef GDBARCH_H | |
752 | #define GDBARCH_H | |
753 | ||
2bf0cb65 | 754 | #include "dis-asm.h" /* Get defs for disassemble_info, which unfortunately is a typedef. */ |
fd0407d6 | 755 | #if !GDB_MULTI_ARCH |
67a2b77e | 756 | /* Pull in function declarations refered to, indirectly, via macros. */ |
fd0407d6 | 757 | #include "value.h" /* For default_coerce_float_to_double which is referenced by a macro. */ |
67a2b77e | 758 | #include "inferior.h" /* For unsigned_address_to_pointer(). */ |
fd0407d6 | 759 | #endif |
2bf0cb65 | 760 | |
104c1213 JM |
761 | struct frame_info; |
762 | struct value; | |
b6af0555 | 763 | struct objfile; |
a2cf933a | 764 | struct minimal_symbol; |
104c1213 | 765 | |
104c1213 JM |
766 | extern struct gdbarch *current_gdbarch; |
767 | ||
768 | ||
104c1213 JM |
769 | /* If any of the following are defined, the target wasn't correctly |
770 | converted. */ | |
771 | ||
104c1213 JM |
772 | #if GDB_MULTI_ARCH |
773 | #if defined (EXTRA_FRAME_INFO) | |
774 | #error "EXTRA_FRAME_INFO: replaced by struct frame_extra_info" | |
775 | #endif | |
776 | #endif | |
777 | ||
778 | #if GDB_MULTI_ARCH | |
779 | #if defined (FRAME_FIND_SAVED_REGS) | |
780 | #error "FRAME_FIND_SAVED_REGS: replaced by FRAME_INIT_SAVED_REGS" | |
781 | #endif | |
782 | #endif | |
83905903 AC |
783 | |
784 | #if (GDB_MULTI_ARCH >= GDB_MULTI_ARCH_PURE) && defined (GDB_TM_FILE) | |
785 | #error "GDB_TM_FILE: Pure multi-arch targets do not have a tm.h file." | |
786 | #endif | |
104c1213 JM |
787 | EOF |
788 | ||
789 | # function typedef's | |
3d9a5942 AC |
790 | printf "\n" |
791 | printf "\n" | |
792 | printf "/* The following are pre-initialized by GDBARCH. */\n" | |
34620563 | 793 | function_list | while do_read |
104c1213 | 794 | do |
2ada493a AC |
795 | if class_is_info_p |
796 | then | |
3d9a5942 AC |
797 | printf "\n" |
798 | printf "extern ${returntype} gdbarch_${function} (struct gdbarch *gdbarch);\n" | |
799 | printf "/* set_gdbarch_${function}() - not applicable - pre-initialized. */\n" | |
028c194b | 800 | printf "#if (GDB_MULTI_ARCH ${gt_level}) && defined (${macro})\n" |
83905903 AC |
801 | printf "#error \"Non multi-arch definition of ${macro}\"\n" |
802 | printf "#endif\n" | |
3d9a5942 | 803 | printf "#if GDB_MULTI_ARCH\n" |
028c194b | 804 | printf "#if (GDB_MULTI_ARCH ${gt_level}) || !defined (${macro})\n" |
3d9a5942 AC |
805 | printf "#define ${macro} (gdbarch_${function} (current_gdbarch))\n" |
806 | printf "#endif\n" | |
807 | printf "#endif\n" | |
2ada493a | 808 | fi |
104c1213 JM |
809 | done |
810 | ||
811 | # function typedef's | |
3d9a5942 AC |
812 | printf "\n" |
813 | printf "\n" | |
814 | printf "/* The following are initialized by the target dependent code. */\n" | |
34620563 | 815 | function_list | while do_read |
104c1213 | 816 | do |
72e74a21 | 817 | if [ -n "${comment}" ] |
34620563 AC |
818 | then |
819 | echo "${comment}" | sed \ | |
820 | -e '2 s,#,/*,' \ | |
821 | -e '3,$ s,#, ,' \ | |
822 | -e '$ s,$, */,' | |
823 | fi | |
b77be6cf | 824 | if class_is_multiarch_p |
2ada493a | 825 | then |
b77be6cf AC |
826 | if class_is_predicate_p |
827 | then | |
828 | printf "\n" | |
829 | printf "extern int gdbarch_${function}_p (struct gdbarch *gdbarch);\n" | |
830 | fi | |
831 | else | |
832 | if class_is_predicate_p | |
833 | then | |
834 | printf "\n" | |
835 | printf "#if defined (${macro})\n" | |
836 | printf "/* Legacy for systems yet to multi-arch ${macro} */\n" | |
837 | #printf "#if (GDB_MULTI_ARCH <= GDB_MULTI_ARCH_PARTIAL) && defined (${macro})\n" | |
eee30e78 | 838 | printf "#if !defined (${macro}_P)\n" |
b77be6cf AC |
839 | printf "#define ${macro}_P() (1)\n" |
840 | printf "#endif\n" | |
eee30e78 | 841 | printf "#endif\n" |
b77be6cf AC |
842 | printf "\n" |
843 | printf "/* Default predicate for non- multi-arch targets. */\n" | |
844 | printf "#if (!GDB_MULTI_ARCH) && !defined (${macro}_P)\n" | |
845 | printf "#define ${macro}_P() (0)\n" | |
846 | printf "#endif\n" | |
847 | printf "\n" | |
848 | printf "extern int gdbarch_${function}_p (struct gdbarch *gdbarch);\n" | |
028c194b | 849 | printf "#if (GDB_MULTI_ARCH ${gt_level}) && defined (${macro}_P)\n" |
83905903 AC |
850 | printf "#error \"Non multi-arch definition of ${macro}\"\n" |
851 | printf "#endif\n" | |
028c194b | 852 | printf "#if (GDB_MULTI_ARCH ${gt_level}) || !defined (${macro}_P)\n" |
b77be6cf AC |
853 | printf "#define ${macro}_P() (gdbarch_${function}_p (current_gdbarch))\n" |
854 | printf "#endif\n" | |
855 | fi | |
4a5c6a1d | 856 | fi |
2ada493a AC |
857 | if class_is_variable_p |
858 | then | |
f0d4cc9e | 859 | if fallback_default_p || class_is_predicate_p |
33489c5b | 860 | then |
3d9a5942 AC |
861 | printf "\n" |
862 | printf "/* Default (value) for non- multi-arch platforms. */\n" | |
863 | printf "#if (!GDB_MULTI_ARCH) && !defined (${macro})\n" | |
f0d4cc9e AC |
864 | echo "#define ${macro} (${fallbackdefault})" \ |
865 | | sed -e 's/\([^a-z_]\)\(gdbarch[^a-z_]\)/\1current_\2/g' | |
3d9a5942 | 866 | printf "#endif\n" |
33489c5b | 867 | fi |
3d9a5942 AC |
868 | printf "\n" |
869 | printf "extern ${returntype} gdbarch_${function} (struct gdbarch *gdbarch);\n" | |
870 | printf "extern void set_gdbarch_${function} (struct gdbarch *gdbarch, ${returntype} ${function});\n" | |
028c194b | 871 | printf "#if (GDB_MULTI_ARCH ${gt_level}) && defined (${macro})\n" |
83905903 AC |
872 | printf "#error \"Non multi-arch definition of ${macro}\"\n" |
873 | printf "#endif\n" | |
3d9a5942 | 874 | printf "#if GDB_MULTI_ARCH\n" |
028c194b | 875 | printf "#if (GDB_MULTI_ARCH ${gt_level}) || !defined (${macro})\n" |
3d9a5942 AC |
876 | printf "#define ${macro} (gdbarch_${function} (current_gdbarch))\n" |
877 | printf "#endif\n" | |
878 | printf "#endif\n" | |
2ada493a AC |
879 | fi |
880 | if class_is_function_p | |
881 | then | |
b77be6cf AC |
882 | if class_is_multiarch_p ; then : |
883 | elif fallback_default_p || class_is_predicate_p | |
33489c5b | 884 | then |
3d9a5942 AC |
885 | printf "\n" |
886 | printf "/* Default (function) for non- multi-arch platforms. */\n" | |
887 | printf "#if (!GDB_MULTI_ARCH) && !defined (${macro})\n" | |
72e74a21 | 888 | if [ "x${fallbackdefault}" = "x0" ] |
33489c5b | 889 | then |
8e65ff28 | 890 | printf "#define ${macro}(${actual}) (internal_error (__FILE__, __LINE__, \"${macro}\"), 0)\n" |
33489c5b | 891 | else |
f0d4cc9e AC |
892 | # FIXME: Should be passing current_gdbarch through! |
893 | echo "#define ${macro}(${actual}) (${fallbackdefault} (${actual}))" \ | |
894 | | sed -e 's/\([^a-z_]\)\(gdbarch[^a-z_]\)/\1current_\2/g' | |
33489c5b | 895 | fi |
3d9a5942 | 896 | printf "#endif\n" |
33489c5b | 897 | fi |
3d9a5942 | 898 | printf "\n" |
72e74a21 | 899 | if [ "x${formal}" = "xvoid" ] && class_is_multiarch_p |
4a5c6a1d AC |
900 | then |
901 | printf "typedef ${returntype} (gdbarch_${function}_ftype) (struct gdbarch *gdbarch);\n" | |
902 | elif class_is_multiarch_p | |
903 | then | |
904 | printf "typedef ${returntype} (gdbarch_${function}_ftype) (struct gdbarch *gdbarch, ${formal});\n" | |
905 | else | |
906 | printf "typedef ${returntype} (gdbarch_${function}_ftype) (${formal});\n" | |
907 | fi | |
72e74a21 | 908 | if [ "x${formal}" = "xvoid" ] |
104c1213 | 909 | then |
3d9a5942 | 910 | printf "extern ${returntype} gdbarch_${function} (struct gdbarch *gdbarch);\n" |
104c1213 | 911 | else |
3d9a5942 | 912 | printf "extern ${returntype} gdbarch_${function} (struct gdbarch *gdbarch, ${formal});\n" |
104c1213 | 913 | fi |
3d9a5942 | 914 | printf "extern void set_gdbarch_${function} (struct gdbarch *gdbarch, gdbarch_${function}_ftype *${function});\n" |
b77be6cf AC |
915 | if class_is_multiarch_p ; then : |
916 | else | |
028c194b | 917 | printf "#if (GDB_MULTI_ARCH ${gt_level}) && defined (${macro})\n" |
83905903 AC |
918 | printf "#error \"Non multi-arch definition of ${macro}\"\n" |
919 | printf "#endif\n" | |
4a5c6a1d | 920 | printf "#if GDB_MULTI_ARCH\n" |
028c194b | 921 | printf "#if (GDB_MULTI_ARCH ${gt_level}) || !defined (${macro})\n" |
72e74a21 | 922 | if [ "x${actual}" = "x" ] |
4a5c6a1d AC |
923 | then |
924 | printf "#define ${macro}() (gdbarch_${function} (current_gdbarch))\n" | |
72e74a21 | 925 | elif [ "x${actual}" = "x-" ] |
4a5c6a1d AC |
926 | then |
927 | printf "#define ${macro} (gdbarch_${function} (current_gdbarch))\n" | |
928 | else | |
929 | printf "#define ${macro}(${actual}) (gdbarch_${function} (current_gdbarch, ${actual}))\n" | |
930 | fi | |
931 | printf "#endif\n" | |
932 | printf "#endif\n" | |
104c1213 | 933 | fi |
2ada493a | 934 | fi |
104c1213 JM |
935 | done |
936 | ||
937 | # close it off | |
938 | cat <<EOF | |
939 | ||
940 | extern struct gdbarch_tdep *gdbarch_tdep (struct gdbarch *gdbarch); | |
941 | ||
942 | ||
943 | /* Mechanism for co-ordinating the selection of a specific | |
944 | architecture. | |
945 | ||
946 | GDB targets (*-tdep.c) can register an interest in a specific | |
947 | architecture. Other GDB components can register a need to maintain | |
948 | per-architecture data. | |
949 | ||
950 | The mechanisms below ensures that there is only a loose connection | |
951 | between the set-architecture command and the various GDB | |
0fa6923a | 952 | components. Each component can independently register their need |
104c1213 JM |
953 | to maintain architecture specific data with gdbarch. |
954 | ||
955 | Pragmatics: | |
956 | ||
957 | Previously, a single TARGET_ARCHITECTURE_HOOK was provided. It | |
958 | didn't scale. | |
959 | ||
960 | The more traditional mega-struct containing architecture specific | |
961 | data for all the various GDB components was also considered. Since | |
0fa6923a | 962 | GDB is built from a variable number of (fairly independent) |
104c1213 JM |
963 | components it was determined that the global aproach was not |
964 | applicable. */ | |
965 | ||
966 | ||
967 | /* Register a new architectural family with GDB. | |
968 | ||
969 | Register support for the specified ARCHITECTURE with GDB. When | |
970 | gdbarch determines that the specified architecture has been | |
971 | selected, the corresponding INIT function is called. | |
972 | ||
973 | -- | |
974 | ||
975 | The INIT function takes two parameters: INFO which contains the | |
976 | information available to gdbarch about the (possibly new) | |
977 | architecture; ARCHES which is a list of the previously created | |
978 | \`\`struct gdbarch'' for this architecture. | |
979 | ||
0f79675b AC |
980 | The INFO parameter is, as far as possible, be pre-initialized with |
981 | information obtained from INFO.ABFD or the previously selected | |
982 | architecture. | |
983 | ||
984 | The ARCHES parameter is a linked list (sorted most recently used) | |
985 | of all the previously created architures for this architecture | |
986 | family. The (possibly NULL) ARCHES->gdbarch can used to access | |
987 | values from the previously selected architecture for this | |
988 | architecture family. The global \`\`current_gdbarch'' shall not be | |
989 | used. | |
104c1213 JM |
990 | |
991 | The INIT function shall return any of: NULL - indicating that it | |
ec3d358c | 992 | doesn't recognize the selected architecture; an existing \`\`struct |
104c1213 JM |
993 | gdbarch'' from the ARCHES list - indicating that the new |
994 | architecture is just a synonym for an earlier architecture (see | |
995 | gdbarch_list_lookup_by_info()); a newly created \`\`struct gdbarch'' | |
4b9b3959 AC |
996 | - that describes the selected architecture (see gdbarch_alloc()). |
997 | ||
998 | The DUMP_TDEP function shall print out all target specific values. | |
999 | Care should be taken to ensure that the function works in both the | |
1000 | multi-arch and non- multi-arch cases. */ | |
104c1213 JM |
1001 | |
1002 | struct gdbarch_list | |
1003 | { | |
1004 | struct gdbarch *gdbarch; | |
1005 | struct gdbarch_list *next; | |
1006 | }; | |
1007 | ||
1008 | struct gdbarch_info | |
1009 | { | |
104c1213 JM |
1010 | /* Use default: NULL (ZERO). */ |
1011 | const struct bfd_arch_info *bfd_arch_info; | |
1012 | ||
428721aa | 1013 | /* Use default: BFD_ENDIAN_UNKNOWN (NB: is not ZERO). */ |
104c1213 JM |
1014 | int byte_order; |
1015 | ||
1016 | /* Use default: NULL (ZERO). */ | |
1017 | bfd *abfd; | |
1018 | ||
1019 | /* Use default: NULL (ZERO). */ | |
1020 | struct gdbarch_tdep_info *tdep_info; | |
1021 | }; | |
1022 | ||
1023 | typedef struct gdbarch *(gdbarch_init_ftype) (struct gdbarch_info info, struct gdbarch_list *arches); | |
4b9b3959 | 1024 | typedef void (gdbarch_dump_tdep_ftype) (struct gdbarch *gdbarch, struct ui_file *file); |
104c1213 | 1025 | |
4b9b3959 | 1026 | /* DEPRECATED - use gdbarch_register() */ |
104c1213 JM |
1027 | extern void register_gdbarch_init (enum bfd_architecture architecture, gdbarch_init_ftype *); |
1028 | ||
4b9b3959 AC |
1029 | extern void gdbarch_register (enum bfd_architecture architecture, |
1030 | gdbarch_init_ftype *, | |
1031 | gdbarch_dump_tdep_ftype *); | |
1032 | ||
104c1213 | 1033 | |
b4a20239 AC |
1034 | /* Return a freshly allocated, NULL terminated, array of the valid |
1035 | architecture names. Since architectures are registered during the | |
1036 | _initialize phase this function only returns useful information | |
1037 | once initialization has been completed. */ | |
1038 | ||
1039 | extern const char **gdbarch_printable_names (void); | |
1040 | ||
1041 | ||
104c1213 JM |
1042 | /* Helper function. Search the list of ARCHES for a GDBARCH that |
1043 | matches the information provided by INFO. */ | |
1044 | ||
1045 | extern struct gdbarch_list *gdbarch_list_lookup_by_info (struct gdbarch_list *arches, const struct gdbarch_info *info); | |
1046 | ||
1047 | ||
1048 | /* Helper function. Create a preliminary \`\`struct gdbarch''. Perform | |
1049 | basic initialization using values obtained from the INFO andTDEP | |
1050 | parameters. set_gdbarch_*() functions are called to complete the | |
1051 | initialization of the object. */ | |
1052 | ||
1053 | extern struct gdbarch *gdbarch_alloc (const struct gdbarch_info *info, struct gdbarch_tdep *tdep); | |
1054 | ||
1055 | ||
4b9b3959 AC |
1056 | /* Helper function. Free a partially-constructed \`\`struct gdbarch''. |
1057 | It is assumed that the caller freeds the \`\`struct | |
1058 | gdbarch_tdep''. */ | |
1059 | ||
058f20d5 JB |
1060 | extern void gdbarch_free (struct gdbarch *); |
1061 | ||
1062 | ||
b732d07d | 1063 | /* Helper function. Force an update of the current architecture. |
104c1213 | 1064 | |
b732d07d AC |
1065 | The actual architecture selected is determined by INFO, \`\`(gdb) set |
1066 | architecture'' et.al., the existing architecture and BFD's default | |
1067 | architecture. INFO should be initialized to zero and then selected | |
1068 | fields should be updated. | |
104c1213 | 1069 | |
16f33e29 AC |
1070 | Returns non-zero if the update succeeds */ |
1071 | ||
1072 | extern int gdbarch_update_p (struct gdbarch_info info); | |
104c1213 JM |
1073 | |
1074 | ||
1075 | ||
1076 | /* Register per-architecture data-pointer. | |
1077 | ||
1078 | Reserve space for a per-architecture data-pointer. An identifier | |
1079 | for the reserved data-pointer is returned. That identifer should | |
95160752 | 1080 | be saved in a local static variable. |
104c1213 | 1081 | |
95160752 AC |
1082 | The per-architecture data-pointer can be initialized in one of two |
1083 | ways: The value can be set explicitly using a call to | |
1084 | set_gdbarch_data(); the value can be set implicitly using the value | |
1085 | returned by a non-NULL INIT() callback. INIT(), when non-NULL is | |
1086 | called after the basic architecture vector has been created. | |
104c1213 | 1087 | |
95160752 AC |
1088 | When a previously created architecture is re-selected, the |
1089 | per-architecture data-pointer for that previous architecture is | |
1090 | restored. INIT() is not called. | |
1091 | ||
1092 | During initialization, multiple assignments of the data-pointer are | |
1093 | allowed, non-NULL values are deleted by calling FREE(). If the | |
1094 | architecture is deleted using gdbarch_free() all non-NULL data | |
1095 | pointers are also deleted using FREE(). | |
104c1213 JM |
1096 | |
1097 | Multiple registrarants for any architecture are allowed (and | |
1098 | strongly encouraged). */ | |
1099 | ||
95160752 | 1100 | struct gdbarch_data; |
104c1213 | 1101 | |
95160752 AC |
1102 | typedef void *(gdbarch_data_init_ftype) (struct gdbarch *gdbarch); |
1103 | typedef void (gdbarch_data_free_ftype) (struct gdbarch *gdbarch, | |
1104 | void *pointer); | |
1105 | extern struct gdbarch_data *register_gdbarch_data (gdbarch_data_init_ftype *init, | |
1106 | gdbarch_data_free_ftype *free); | |
1107 | extern void set_gdbarch_data (struct gdbarch *gdbarch, | |
1108 | struct gdbarch_data *data, | |
1109 | void *pointer); | |
104c1213 JM |
1110 | |
1111 | extern void *gdbarch_data (struct gdbarch_data*); | |
1112 | ||
1113 | ||
104c1213 JM |
1114 | /* Register per-architecture memory region. |
1115 | ||
1116 | Provide a memory-region swap mechanism. Per-architecture memory | |
1117 | region are created. These memory regions are swapped whenever the | |
1118 | architecture is changed. For a new architecture, the memory region | |
1119 | is initialized with zero (0) and the INIT function is called. | |
1120 | ||
1121 | Memory regions are swapped / initialized in the order that they are | |
1122 | registered. NULL DATA and/or INIT values can be specified. | |
1123 | ||
1124 | New code should use register_gdbarch_data(). */ | |
1125 | ||
1126 | typedef void (gdbarch_swap_ftype) (void); | |
1127 | extern void register_gdbarch_swap (void *data, unsigned long size, gdbarch_swap_ftype *init); | |
e514a9d6 | 1128 | #define REGISTER_GDBARCH_SWAP(VAR) register_gdbarch_swap (&(VAR), sizeof ((VAR)), NULL) |
104c1213 JM |
1129 | |
1130 | ||
1131 | ||
0fa6923a | 1132 | /* The target-system-dependent byte order is dynamic */ |
104c1213 | 1133 | |
104c1213 | 1134 | extern int target_byte_order; |
104c1213 JM |
1135 | #ifndef TARGET_BYTE_ORDER |
1136 | #define TARGET_BYTE_ORDER (target_byte_order + 0) | |
1137 | #endif | |
1138 | ||
1139 | extern int target_byte_order_auto; | |
1140 | #ifndef TARGET_BYTE_ORDER_AUTO | |
1141 | #define TARGET_BYTE_ORDER_AUTO (target_byte_order_auto + 0) | |
1142 | #endif | |
1143 | ||
1144 | ||
1145 | ||
0fa6923a | 1146 | /* The target-system-dependent BFD architecture is dynamic */ |
104c1213 JM |
1147 | |
1148 | extern int target_architecture_auto; | |
1149 | #ifndef TARGET_ARCHITECTURE_AUTO | |
1150 | #define TARGET_ARCHITECTURE_AUTO (target_architecture_auto + 0) | |
1151 | #endif | |
1152 | ||
1153 | extern const struct bfd_arch_info *target_architecture; | |
1154 | #ifndef TARGET_ARCHITECTURE | |
1155 | #define TARGET_ARCHITECTURE (target_architecture + 0) | |
1156 | #endif | |
1157 | ||
104c1213 | 1158 | |
0fa6923a | 1159 | /* The target-system-dependent disassembler is semi-dynamic */ |
104c1213 | 1160 | |
104c1213 | 1161 | extern int dis_asm_read_memory (bfd_vma memaddr, bfd_byte *myaddr, |
ff844c8d | 1162 | unsigned int len, disassemble_info *info); |
104c1213 JM |
1163 | |
1164 | extern void dis_asm_memory_error (int status, bfd_vma memaddr, | |
1165 | disassemble_info *info); | |
1166 | ||
1167 | extern void dis_asm_print_address (bfd_vma addr, | |
1168 | disassemble_info *info); | |
1169 | ||
1170 | extern int (*tm_print_insn) (bfd_vma, disassemble_info*); | |
1171 | extern disassemble_info tm_print_insn_info; | |
104c1213 JM |
1172 | #ifndef TARGET_PRINT_INSN_INFO |
1173 | #define TARGET_PRINT_INSN_INFO (&tm_print_insn_info) | |
1174 | #endif | |
1175 | ||
1176 | ||
1177 | ||
0fa6923a | 1178 | /* Set the dynamic target-system-dependent parameters (architecture, |
104c1213 JM |
1179 | byte-order, ...) using information found in the BFD */ |
1180 | ||
1181 | extern void set_gdbarch_from_file (bfd *); | |
1182 | ||
1183 | ||
e514a9d6 JM |
1184 | /* Initialize the current architecture to the "first" one we find on |
1185 | our list. */ | |
1186 | ||
1187 | extern void initialize_current_architecture (void); | |
1188 | ||
ceaa8edf JB |
1189 | /* For non-multiarched targets, do any initialization of the default |
1190 | gdbarch object necessary after the _initialize_MODULE functions | |
1191 | have run. */ | |
1192 | extern void initialize_non_multiarch (); | |
104c1213 JM |
1193 | |
1194 | /* gdbarch trace variable */ | |
1195 | extern int gdbarch_debug; | |
1196 | ||
4b9b3959 | 1197 | extern void gdbarch_dump (struct gdbarch *gdbarch, struct ui_file *file); |
104c1213 JM |
1198 | |
1199 | #endif | |
1200 | EOF | |
1201 | exec 1>&2 | |
1202 | #../move-if-change new-gdbarch.h gdbarch.h | |
59233f88 | 1203 | compare_new gdbarch.h |
104c1213 JM |
1204 | |
1205 | ||
1206 | # | |
1207 | # C file | |
1208 | # | |
1209 | ||
1210 | exec > new-gdbarch.c | |
1211 | copyright | |
1212 | cat <<EOF | |
1213 | ||
1214 | #include "defs.h" | |
7355ddba | 1215 | #include "arch-utils.h" |
104c1213 JM |
1216 | |
1217 | #if GDB_MULTI_ARCH | |
1218 | #include "gdbcmd.h" | |
1219 | #include "inferior.h" /* enum CALL_DUMMY_LOCATION et.al. */ | |
1220 | #else | |
1221 | /* Just include everything in sight so that the every old definition | |
1222 | of macro is visible. */ | |
1223 | #include "gdb_string.h" | |
1224 | #include <ctype.h> | |
1225 | #include "symtab.h" | |
1226 | #include "frame.h" | |
1227 | #include "inferior.h" | |
1228 | #include "breakpoint.h" | |
0596389c | 1229 | #include "gdb_wait.h" |
104c1213 JM |
1230 | #include "gdbcore.h" |
1231 | #include "gdbcmd.h" | |
1232 | #include "target.h" | |
1233 | #include "gdbthread.h" | |
1234 | #include "annotate.h" | |
1235 | #include "symfile.h" /* for overlay functions */ | |
fd0407d6 | 1236 | #include "value.h" /* For old tm.h/nm.h macros. */ |
104c1213 JM |
1237 | #endif |
1238 | #include "symcat.h" | |
1239 | ||
f0d4cc9e | 1240 | #include "floatformat.h" |
104c1213 | 1241 | |
95160752 | 1242 | #include "gdb_assert.h" |
67c2c32c | 1243 | #include "gdb-events.h" |
95160752 | 1244 | |
104c1213 JM |
1245 | /* Static function declarations */ |
1246 | ||
1247 | static void verify_gdbarch (struct gdbarch *gdbarch); | |
b3cc3077 JB |
1248 | static void alloc_gdbarch_data (struct gdbarch *); |
1249 | static void init_gdbarch_data (struct gdbarch *); | |
95160752 | 1250 | static void free_gdbarch_data (struct gdbarch *); |
104c1213 | 1251 | static void init_gdbarch_swap (struct gdbarch *); |
40af4b0c | 1252 | static void clear_gdbarch_swap (struct gdbarch *); |
104c1213 JM |
1253 | static void swapout_gdbarch_swap (struct gdbarch *); |
1254 | static void swapin_gdbarch_swap (struct gdbarch *); | |
1255 | ||
104c1213 JM |
1256 | /* Non-zero if we want to trace architecture code. */ |
1257 | ||
1258 | #ifndef GDBARCH_DEBUG | |
1259 | #define GDBARCH_DEBUG 0 | |
1260 | #endif | |
1261 | int gdbarch_debug = GDBARCH_DEBUG; | |
1262 | ||
1263 | EOF | |
1264 | ||
1265 | # gdbarch open the gdbarch object | |
3d9a5942 AC |
1266 | printf "\n" |
1267 | printf "/* Maintain the struct gdbarch object */\n" | |
1268 | printf "\n" | |
1269 | printf "struct gdbarch\n" | |
1270 | printf "{\n" | |
1271 | printf " /* basic architectural information */\n" | |
34620563 | 1272 | function_list | while do_read |
104c1213 | 1273 | do |
2ada493a AC |
1274 | if class_is_info_p |
1275 | then | |
3d9a5942 | 1276 | printf " ${returntype} ${function};\n" |
2ada493a | 1277 | fi |
104c1213 | 1278 | done |
3d9a5942 AC |
1279 | printf "\n" |
1280 | printf " /* target specific vector. */\n" | |
1281 | printf " struct gdbarch_tdep *tdep;\n" | |
1282 | printf " gdbarch_dump_tdep_ftype *dump_tdep;\n" | |
1283 | printf "\n" | |
1284 | printf " /* per-architecture data-pointers */\n" | |
95160752 | 1285 | printf " unsigned nr_data;\n" |
3d9a5942 AC |
1286 | printf " void **data;\n" |
1287 | printf "\n" | |
1288 | printf " /* per-architecture swap-regions */\n" | |
1289 | printf " struct gdbarch_swap *swap;\n" | |
1290 | printf "\n" | |
104c1213 JM |
1291 | cat <<EOF |
1292 | /* Multi-arch values. | |
1293 | ||
1294 | When extending this structure you must: | |
1295 | ||
1296 | Add the field below. | |
1297 | ||
1298 | Declare set/get functions and define the corresponding | |
1299 | macro in gdbarch.h. | |
1300 | ||
1301 | gdbarch_alloc(): If zero/NULL is not a suitable default, | |
1302 | initialize the new field. | |
1303 | ||
1304 | verify_gdbarch(): Confirm that the target updated the field | |
1305 | correctly. | |
1306 | ||
7e73cedf | 1307 | gdbarch_dump(): Add a fprintf_unfiltered call so that the new |
104c1213 JM |
1308 | field is dumped out |
1309 | ||
c0e8c252 | 1310 | \`\`startup_gdbarch()'': Append an initial value to the static |
104c1213 JM |
1311 | variable (base values on the host's c-type system). |
1312 | ||
1313 | get_gdbarch(): Implement the set/get functions (probably using | |
1314 | the macro's as shortcuts). | |
1315 | ||
1316 | */ | |
1317 | ||
1318 | EOF | |
34620563 | 1319 | function_list | while do_read |
104c1213 | 1320 | do |
2ada493a AC |
1321 | if class_is_variable_p |
1322 | then | |
3d9a5942 | 1323 | printf " ${returntype} ${function};\n" |
2ada493a AC |
1324 | elif class_is_function_p |
1325 | then | |
3d9a5942 | 1326 | printf " gdbarch_${function}_ftype *${function}${attrib};\n" |
2ada493a | 1327 | fi |
104c1213 | 1328 | done |
3d9a5942 | 1329 | printf "};\n" |
104c1213 JM |
1330 | |
1331 | # A pre-initialized vector | |
3d9a5942 AC |
1332 | printf "\n" |
1333 | printf "\n" | |
104c1213 JM |
1334 | cat <<EOF |
1335 | /* The default architecture uses host values (for want of a better | |
1336 | choice). */ | |
1337 | EOF | |
3d9a5942 AC |
1338 | printf "\n" |
1339 | printf "extern const struct bfd_arch_info bfd_default_arch_struct;\n" | |
1340 | printf "\n" | |
1341 | printf "struct gdbarch startup_gdbarch =\n" | |
1342 | printf "{\n" | |
1343 | printf " /* basic architecture information */\n" | |
4b9b3959 | 1344 | function_list | while do_read |
104c1213 | 1345 | do |
2ada493a AC |
1346 | if class_is_info_p |
1347 | then | |
3d9a5942 | 1348 | printf " ${staticdefault},\n" |
2ada493a | 1349 | fi |
104c1213 JM |
1350 | done |
1351 | cat <<EOF | |
4b9b3959 AC |
1352 | /* target specific vector and its dump routine */ |
1353 | NULL, NULL, | |
104c1213 JM |
1354 | /*per-architecture data-pointers and swap regions */ |
1355 | 0, NULL, NULL, | |
1356 | /* Multi-arch values */ | |
1357 | EOF | |
34620563 | 1358 | function_list | while do_read |
104c1213 | 1359 | do |
2ada493a AC |
1360 | if class_is_function_p || class_is_variable_p |
1361 | then | |
3d9a5942 | 1362 | printf " ${staticdefault},\n" |
2ada493a | 1363 | fi |
104c1213 JM |
1364 | done |
1365 | cat <<EOF | |
c0e8c252 | 1366 | /* startup_gdbarch() */ |
104c1213 | 1367 | }; |
4b9b3959 | 1368 | |
c0e8c252 | 1369 | struct gdbarch *current_gdbarch = &startup_gdbarch; |
ceaa8edf JB |
1370 | |
1371 | /* Do any initialization needed for a non-multiarch configuration | |
1372 | after the _initialize_MODULE functions have been run. */ | |
1373 | void | |
1374 | initialize_non_multiarch () | |
1375 | { | |
1376 | alloc_gdbarch_data (&startup_gdbarch); | |
40af4b0c AC |
1377 | /* Ensure that all swap areas are zeroed so that they again think |
1378 | they are starting from scratch. */ | |
1379 | clear_gdbarch_swap (&startup_gdbarch); | |
6c1e5d11 | 1380 | init_gdbarch_swap (&startup_gdbarch); |
ceaa8edf JB |
1381 | init_gdbarch_data (&startup_gdbarch); |
1382 | } | |
104c1213 JM |
1383 | EOF |
1384 | ||
1385 | # Create a new gdbarch struct | |
3d9a5942 AC |
1386 | printf "\n" |
1387 | printf "\n" | |
104c1213 | 1388 | cat <<EOF |
66b43ecb | 1389 | /* Create a new \`\`struct gdbarch'' based on information provided by |
104c1213 JM |
1390 | \`\`struct gdbarch_info''. */ |
1391 | EOF | |
3d9a5942 | 1392 | printf "\n" |
104c1213 JM |
1393 | cat <<EOF |
1394 | struct gdbarch * | |
1395 | gdbarch_alloc (const struct gdbarch_info *info, | |
1396 | struct gdbarch_tdep *tdep) | |
1397 | { | |
85de9627 AC |
1398 | /* NOTE: The new architecture variable is named \`\`current_gdbarch'' |
1399 | so that macros such as TARGET_DOUBLE_BIT, when expanded, refer to | |
1400 | the current local architecture and not the previous global | |
1401 | architecture. This ensures that the new architectures initial | |
1402 | values are not influenced by the previous architecture. Once | |
1403 | everything is parameterised with gdbarch, this will go away. */ | |
1404 | struct gdbarch *current_gdbarch = XMALLOC (struct gdbarch); | |
1405 | memset (current_gdbarch, 0, sizeof (*current_gdbarch)); | |
1406 | ||
1407 | alloc_gdbarch_data (current_gdbarch); | |
1408 | ||
1409 | current_gdbarch->tdep = tdep; | |
104c1213 | 1410 | EOF |
3d9a5942 | 1411 | printf "\n" |
34620563 | 1412 | function_list | while do_read |
104c1213 | 1413 | do |
2ada493a AC |
1414 | if class_is_info_p |
1415 | then | |
85de9627 | 1416 | printf " current_gdbarch->${function} = info->${function};\n" |
2ada493a | 1417 | fi |
104c1213 | 1418 | done |
3d9a5942 AC |
1419 | printf "\n" |
1420 | printf " /* Force the explicit initialization of these. */\n" | |
34620563 | 1421 | function_list | while do_read |
104c1213 | 1422 | do |
2ada493a AC |
1423 | if class_is_function_p || class_is_variable_p |
1424 | then | |
72e74a21 | 1425 | if [ -n "${predefault}" -a "x${predefault}" != "x0" ] |
104c1213 | 1426 | then |
85de9627 | 1427 | printf " current_gdbarch->${function} = ${predefault};\n" |
104c1213 | 1428 | fi |
2ada493a | 1429 | fi |
104c1213 JM |
1430 | done |
1431 | cat <<EOF | |
1432 | /* gdbarch_alloc() */ | |
1433 | ||
85de9627 | 1434 | return current_gdbarch; |
104c1213 JM |
1435 | } |
1436 | EOF | |
1437 | ||
058f20d5 | 1438 | # Free a gdbarch struct. |
3d9a5942 AC |
1439 | printf "\n" |
1440 | printf "\n" | |
058f20d5 JB |
1441 | cat <<EOF |
1442 | /* Free a gdbarch struct. This should never happen in normal | |
1443 | operation --- once you've created a gdbarch, you keep it around. | |
1444 | However, if an architecture's init function encounters an error | |
1445 | building the structure, it may need to clean up a partially | |
1446 | constructed gdbarch. */ | |
4b9b3959 | 1447 | |
058f20d5 JB |
1448 | void |
1449 | gdbarch_free (struct gdbarch *arch) | |
1450 | { | |
95160752 AC |
1451 | gdb_assert (arch != NULL); |
1452 | free_gdbarch_data (arch); | |
338d7c5c | 1453 | xfree (arch); |
058f20d5 JB |
1454 | } |
1455 | EOF | |
1456 | ||
104c1213 | 1457 | # verify a new architecture |
3d9a5942 AC |
1458 | printf "\n" |
1459 | printf "\n" | |
1460 | printf "/* Ensure that all values in a GDBARCH are reasonable. */\n" | |
1461 | printf "\n" | |
104c1213 JM |
1462 | cat <<EOF |
1463 | static void | |
1464 | verify_gdbarch (struct gdbarch *gdbarch) | |
1465 | { | |
f16a1923 AC |
1466 | struct ui_file *log; |
1467 | struct cleanup *cleanups; | |
1468 | long dummy; | |
1469 | char *buf; | |
104c1213 | 1470 | /* Only perform sanity checks on a multi-arch target. */ |
6166d547 | 1471 | if (!GDB_MULTI_ARCH) |
104c1213 | 1472 | return; |
f16a1923 AC |
1473 | log = mem_fileopen (); |
1474 | cleanups = make_cleanup_ui_file_delete (log); | |
104c1213 | 1475 | /* fundamental */ |
428721aa | 1476 | if (gdbarch->byte_order == BFD_ENDIAN_UNKNOWN) |
f16a1923 | 1477 | fprintf_unfiltered (log, "\n\tbyte-order"); |
104c1213 | 1478 | if (gdbarch->bfd_arch_info == NULL) |
f16a1923 | 1479 | fprintf_unfiltered (log, "\n\tbfd_arch_info"); |
104c1213 JM |
1480 | /* Check those that need to be defined for the given multi-arch level. */ |
1481 | EOF | |
34620563 | 1482 | function_list | while do_read |
104c1213 | 1483 | do |
2ada493a AC |
1484 | if class_is_function_p || class_is_variable_p |
1485 | then | |
72e74a21 | 1486 | if [ "x${invalid_p}" = "x0" ] |
c0e8c252 | 1487 | then |
3d9a5942 | 1488 | printf " /* Skip verify of ${function}, invalid_p == 0 */\n" |
2ada493a AC |
1489 | elif class_is_predicate_p |
1490 | then | |
3d9a5942 | 1491 | printf " /* Skip verify of ${function}, has predicate */\n" |
f0d4cc9e | 1492 | # FIXME: See do_read for potential simplification |
72e74a21 | 1493 | elif [ -n "${invalid_p}" -a -n "${postdefault}" ] |
f0d4cc9e | 1494 | then |
3d9a5942 AC |
1495 | printf " if (${invalid_p})\n" |
1496 | printf " gdbarch->${function} = ${postdefault};\n" | |
72e74a21 | 1497 | elif [ -n "${predefault}" -a -n "${postdefault}" ] |
f0d4cc9e | 1498 | then |
3d9a5942 AC |
1499 | printf " if (gdbarch->${function} == ${predefault})\n" |
1500 | printf " gdbarch->${function} = ${postdefault};\n" | |
72e74a21 | 1501 | elif [ -n "${postdefault}" ] |
f0d4cc9e | 1502 | then |
3d9a5942 AC |
1503 | printf " if (gdbarch->${function} == 0)\n" |
1504 | printf " gdbarch->${function} = ${postdefault};\n" | |
72e74a21 | 1505 | elif [ -n "${invalid_p}" ] |
104c1213 | 1506 | then |
50248794 | 1507 | printf " if ((GDB_MULTI_ARCH ${gt_level})\n" |
3d9a5942 | 1508 | printf " && (${invalid_p}))\n" |
f16a1923 | 1509 | printf " fprintf_unfiltered (log, \"\\\\n\\\\t${function}\");\n" |
72e74a21 | 1510 | elif [ -n "${predefault}" ] |
104c1213 | 1511 | then |
50248794 | 1512 | printf " if ((GDB_MULTI_ARCH ${gt_level})\n" |
3d9a5942 | 1513 | printf " && (gdbarch->${function} == ${predefault}))\n" |
f16a1923 | 1514 | printf " fprintf_unfiltered (log, \"\\\\n\\\\t${function}\");\n" |
104c1213 | 1515 | fi |
2ada493a | 1516 | fi |
104c1213 JM |
1517 | done |
1518 | cat <<EOF | |
f16a1923 AC |
1519 | buf = ui_file_xstrdup (log, &dummy); |
1520 | make_cleanup (xfree, buf); | |
1521 | if (strlen (buf) > 0) | |
1522 | internal_error (__FILE__, __LINE__, | |
1523 | "verify_gdbarch: the following are invalid ...%s", | |
1524 | buf); | |
1525 | do_cleanups (cleanups); | |
104c1213 JM |
1526 | } |
1527 | EOF | |
1528 | ||
1529 | # dump the structure | |
3d9a5942 AC |
1530 | printf "\n" |
1531 | printf "\n" | |
104c1213 | 1532 | cat <<EOF |
4b9b3959 AC |
1533 | /* Print out the details of the current architecture. */ |
1534 | ||
1535 | /* NOTE/WARNING: The parameter is called \`\`current_gdbarch'' so that it | |
1536 | just happens to match the global variable \`\`current_gdbarch''. That | |
1537 | way macros refering to that variable get the local and not the global | |
1538 | version - ulgh. Once everything is parameterised with gdbarch, this | |
1539 | will go away. */ | |
1540 | ||
104c1213 | 1541 | void |
4b9b3959 | 1542 | gdbarch_dump (struct gdbarch *gdbarch, struct ui_file *file) |
104c1213 | 1543 | { |
4b9b3959 AC |
1544 | fprintf_unfiltered (file, |
1545 | "gdbarch_dump: GDB_MULTI_ARCH = %d\\n", | |
1546 | GDB_MULTI_ARCH); | |
104c1213 | 1547 | EOF |
08e45a40 | 1548 | function_list | sort -t: +2 | while do_read |
104c1213 | 1549 | do |
4a5c6a1d | 1550 | # multiarch functions don't have macros. |
08e45a40 AC |
1551 | if class_is_multiarch_p |
1552 | then | |
1553 | printf " if (GDB_MULTI_ARCH)\n" | |
1554 | printf " fprintf_unfiltered (file,\n" | |
1555 | printf " \"gdbarch_dump: ${function} = 0x%%08lx\\\\n\",\n" | |
1556 | printf " (long) current_gdbarch->${function});\n" | |
1557 | continue | |
1558 | fi | |
06b25f14 | 1559 | # Print the macro definition. |
08e45a40 | 1560 | printf "#ifdef ${macro}\n" |
72e74a21 | 1561 | if [ "x${returntype}" = "xvoid" ] |
63e69063 | 1562 | then |
08e45a40 | 1563 | printf "#if GDB_MULTI_ARCH\n" |
3d9a5942 | 1564 | printf " /* Macro might contain \`[{}]' when not multi-arch */\n" |
63e69063 | 1565 | fi |
2ada493a AC |
1566 | if class_is_function_p |
1567 | then | |
3d9a5942 AC |
1568 | printf " fprintf_unfiltered (file,\n" |
1569 | printf " \"gdbarch_dump: %%s # %%s\\\\n\",\n" | |
1570 | printf " \"${macro}(${actual})\",\n" | |
1571 | printf " XSTRING (${macro} (${actual})));\n" | |
2ada493a | 1572 | else |
3d9a5942 AC |
1573 | printf " fprintf_unfiltered (file,\n" |
1574 | printf " \"gdbarch_dump: ${macro} # %%s\\\\n\",\n" | |
1575 | printf " XSTRING (${macro}));\n" | |
4b9b3959 | 1576 | fi |
06b25f14 | 1577 | # Print the architecture vector value |
08e45a40 | 1578 | if [ "x${returntype}" = "xvoid" ] |
4a5c6a1d | 1579 | then |
08e45a40 | 1580 | printf "#endif\n" |
4a5c6a1d | 1581 | fi |
72e74a21 | 1582 | if [ "x${print_p}" = "x()" ] |
4b9b3959 | 1583 | then |
4a5c6a1d | 1584 | printf " gdbarch_dump_${function} (current_gdbarch);\n" |
72e74a21 | 1585 | elif [ "x${print_p}" = "x0" ] |
4b9b3959 | 1586 | then |
4a5c6a1d | 1587 | printf " /* skip print of ${macro}, print_p == 0. */\n" |
72e74a21 | 1588 | elif [ -n "${print_p}" ] |
4b9b3959 | 1589 | then |
4a5c6a1d | 1590 | printf " if (${print_p})\n" |
3d9a5942 AC |
1591 | printf " fprintf_unfiltered (file,\n" |
1592 | printf " \"gdbarch_dump: ${macro} = %s\\\\n\",\n" "${fmt}" | |
1593 | printf " ${print});\n" | |
4b9b3959 AC |
1594 | elif class_is_function_p |
1595 | then | |
3d9a5942 AC |
1596 | printf " if (GDB_MULTI_ARCH)\n" |
1597 | printf " fprintf_unfiltered (file,\n" | |
1598 | printf " \"gdbarch_dump: ${macro} = 0x%%08lx\\\\n\",\n" | |
1599 | printf " (long) current_gdbarch->${function}\n" | |
1600 | printf " /*${macro} ()*/);\n" | |
4b9b3959 | 1601 | else |
3d9a5942 AC |
1602 | printf " fprintf_unfiltered (file,\n" |
1603 | printf " \"gdbarch_dump: ${macro} = %s\\\\n\",\n" "${fmt}" | |
1604 | printf " ${print});\n" | |
2ada493a | 1605 | fi |
3d9a5942 | 1606 | printf "#endif\n" |
104c1213 | 1607 | done |
381323f4 | 1608 | cat <<EOF |
4b9b3959 AC |
1609 | if (current_gdbarch->dump_tdep != NULL) |
1610 | current_gdbarch->dump_tdep (current_gdbarch, file); | |
381323f4 AC |
1611 | } |
1612 | EOF | |
104c1213 JM |
1613 | |
1614 | ||
1615 | # GET/SET | |
3d9a5942 | 1616 | printf "\n" |
104c1213 JM |
1617 | cat <<EOF |
1618 | struct gdbarch_tdep * | |
1619 | gdbarch_tdep (struct gdbarch *gdbarch) | |
1620 | { | |
1621 | if (gdbarch_debug >= 2) | |
3d9a5942 | 1622 | fprintf_unfiltered (gdb_stdlog, "gdbarch_tdep called\\n"); |
104c1213 JM |
1623 | return gdbarch->tdep; |
1624 | } | |
1625 | EOF | |
3d9a5942 | 1626 | printf "\n" |
34620563 | 1627 | function_list | while do_read |
104c1213 | 1628 | do |
2ada493a AC |
1629 | if class_is_predicate_p |
1630 | then | |
3d9a5942 AC |
1631 | printf "\n" |
1632 | printf "int\n" | |
1633 | printf "gdbarch_${function}_p (struct gdbarch *gdbarch)\n" | |
1634 | printf "{\n" | |
8de9bdc4 | 1635 | printf " gdb_assert (gdbarch != NULL);\n" |
72e74a21 | 1636 | if [ -n "${valid_p}" ] |
2ada493a | 1637 | then |
3d9a5942 | 1638 | printf " return ${valid_p};\n" |
2ada493a | 1639 | else |
3d9a5942 | 1640 | printf "#error \"gdbarch_${function}_p: not defined\"\n" |
2ada493a | 1641 | fi |
3d9a5942 | 1642 | printf "}\n" |
2ada493a AC |
1643 | fi |
1644 | if class_is_function_p | |
1645 | then | |
3d9a5942 AC |
1646 | printf "\n" |
1647 | printf "${returntype}\n" | |
72e74a21 | 1648 | if [ "x${formal}" = "xvoid" ] |
104c1213 | 1649 | then |
3d9a5942 | 1650 | printf "gdbarch_${function} (struct gdbarch *gdbarch)\n" |
104c1213 | 1651 | else |
3d9a5942 | 1652 | printf "gdbarch_${function} (struct gdbarch *gdbarch, ${formal})\n" |
104c1213 | 1653 | fi |
3d9a5942 | 1654 | printf "{\n" |
8de9bdc4 | 1655 | printf " gdb_assert (gdbarch != NULL);\n" |
3d9a5942 | 1656 | printf " if (gdbarch->${function} == 0)\n" |
8e65ff28 AC |
1657 | printf " internal_error (__FILE__, __LINE__,\n" |
1658 | printf " \"gdbarch: gdbarch_${function} invalid\");\n" | |
3d9a5942 AC |
1659 | printf " if (gdbarch_debug >= 2)\n" |
1660 | printf " fprintf_unfiltered (gdb_stdlog, \"gdbarch_${function} called\\\\n\");\n" | |
72e74a21 | 1661 | if [ "x${actual}" = "x-" -o "x${actual}" = "x" ] |
4a5c6a1d AC |
1662 | then |
1663 | if class_is_multiarch_p | |
1664 | then | |
1665 | params="gdbarch" | |
1666 | else | |
1667 | params="" | |
1668 | fi | |
1669 | else | |
1670 | if class_is_multiarch_p | |
1671 | then | |
1672 | params="gdbarch, ${actual}" | |
1673 | else | |
1674 | params="${actual}" | |
1675 | fi | |
1676 | fi | |
72e74a21 | 1677 | if [ "x${returntype}" = "xvoid" ] |
104c1213 | 1678 | then |
4a5c6a1d | 1679 | printf " gdbarch->${function} (${params});\n" |
104c1213 | 1680 | else |
4a5c6a1d | 1681 | printf " return gdbarch->${function} (${params});\n" |
104c1213 | 1682 | fi |
3d9a5942 AC |
1683 | printf "}\n" |
1684 | printf "\n" | |
1685 | printf "void\n" | |
1686 | printf "set_gdbarch_${function} (struct gdbarch *gdbarch,\n" | |
1687 | printf " `echo ${function} | sed -e 's/./ /g'` gdbarch_${function}_ftype ${function})\n" | |
1688 | printf "{\n" | |
1689 | printf " gdbarch->${function} = ${function};\n" | |
1690 | printf "}\n" | |
2ada493a AC |
1691 | elif class_is_variable_p |
1692 | then | |
3d9a5942 AC |
1693 | printf "\n" |
1694 | printf "${returntype}\n" | |
1695 | printf "gdbarch_${function} (struct gdbarch *gdbarch)\n" | |
1696 | printf "{\n" | |
8de9bdc4 | 1697 | printf " gdb_assert (gdbarch != NULL);\n" |
72e74a21 | 1698 | if [ "x${invalid_p}" = "x0" ] |
c0e8c252 | 1699 | then |
3d9a5942 | 1700 | printf " /* Skip verify of ${function}, invalid_p == 0 */\n" |
72e74a21 | 1701 | elif [ -n "${invalid_p}" ] |
104c1213 | 1702 | then |
3d9a5942 | 1703 | printf " if (${invalid_p})\n" |
8e65ff28 AC |
1704 | printf " internal_error (__FILE__, __LINE__,\n" |
1705 | printf " \"gdbarch: gdbarch_${function} invalid\");\n" | |
72e74a21 | 1706 | elif [ -n "${predefault}" ] |
104c1213 | 1707 | then |
3d9a5942 | 1708 | printf " if (gdbarch->${function} == ${predefault})\n" |
8e65ff28 AC |
1709 | printf " internal_error (__FILE__, __LINE__,\n" |
1710 | printf " \"gdbarch: gdbarch_${function} invalid\");\n" | |
104c1213 | 1711 | fi |
3d9a5942 AC |
1712 | printf " if (gdbarch_debug >= 2)\n" |
1713 | printf " fprintf_unfiltered (gdb_stdlog, \"gdbarch_${function} called\\\\n\");\n" | |
1714 | printf " return gdbarch->${function};\n" | |
1715 | printf "}\n" | |
1716 | printf "\n" | |
1717 | printf "void\n" | |
1718 | printf "set_gdbarch_${function} (struct gdbarch *gdbarch,\n" | |
1719 | printf " `echo ${function} | sed -e 's/./ /g'` ${returntype} ${function})\n" | |
1720 | printf "{\n" | |
1721 | printf " gdbarch->${function} = ${function};\n" | |
1722 | printf "}\n" | |
2ada493a AC |
1723 | elif class_is_info_p |
1724 | then | |
3d9a5942 AC |
1725 | printf "\n" |
1726 | printf "${returntype}\n" | |
1727 | printf "gdbarch_${function} (struct gdbarch *gdbarch)\n" | |
1728 | printf "{\n" | |
8de9bdc4 | 1729 | printf " gdb_assert (gdbarch != NULL);\n" |
3d9a5942 AC |
1730 | printf " if (gdbarch_debug >= 2)\n" |
1731 | printf " fprintf_unfiltered (gdb_stdlog, \"gdbarch_${function} called\\\\n\");\n" | |
1732 | printf " return gdbarch->${function};\n" | |
1733 | printf "}\n" | |
2ada493a | 1734 | fi |
104c1213 JM |
1735 | done |
1736 | ||
1737 | # All the trailing guff | |
1738 | cat <<EOF | |
1739 | ||
1740 | ||
f44c642f | 1741 | /* Keep a registry of per-architecture data-pointers required by GDB |
104c1213 JM |
1742 | modules. */ |
1743 | ||
1744 | struct gdbarch_data | |
1745 | { | |
95160752 AC |
1746 | unsigned index; |
1747 | gdbarch_data_init_ftype *init; | |
1748 | gdbarch_data_free_ftype *free; | |
104c1213 JM |
1749 | }; |
1750 | ||
1751 | struct gdbarch_data_registration | |
1752 | { | |
104c1213 JM |
1753 | struct gdbarch_data *data; |
1754 | struct gdbarch_data_registration *next; | |
1755 | }; | |
1756 | ||
f44c642f | 1757 | struct gdbarch_data_registry |
104c1213 | 1758 | { |
95160752 | 1759 | unsigned nr; |
104c1213 JM |
1760 | struct gdbarch_data_registration *registrations; |
1761 | }; | |
1762 | ||
f44c642f | 1763 | struct gdbarch_data_registry gdbarch_data_registry = |
104c1213 JM |
1764 | { |
1765 | 0, NULL, | |
1766 | }; | |
1767 | ||
1768 | struct gdbarch_data * | |
95160752 AC |
1769 | register_gdbarch_data (gdbarch_data_init_ftype *init, |
1770 | gdbarch_data_free_ftype *free) | |
104c1213 JM |
1771 | { |
1772 | struct gdbarch_data_registration **curr; | |
f44c642f | 1773 | for (curr = &gdbarch_data_registry.registrations; |
104c1213 JM |
1774 | (*curr) != NULL; |
1775 | curr = &(*curr)->next); | |
1776 | (*curr) = XMALLOC (struct gdbarch_data_registration); | |
1777 | (*curr)->next = NULL; | |
104c1213 | 1778 | (*curr)->data = XMALLOC (struct gdbarch_data); |
f44c642f | 1779 | (*curr)->data->index = gdbarch_data_registry.nr++; |
95160752 AC |
1780 | (*curr)->data->init = init; |
1781 | (*curr)->data->free = free; | |
104c1213 JM |
1782 | return (*curr)->data; |
1783 | } | |
1784 | ||
1785 | ||
b3cc3077 | 1786 | /* Walk through all the registered users initializing each in turn. */ |
104c1213 JM |
1787 | |
1788 | static void | |
b3cc3077 | 1789 | init_gdbarch_data (struct gdbarch *gdbarch) |
104c1213 | 1790 | { |
b3cc3077 JB |
1791 | struct gdbarch_data_registration *rego; |
1792 | for (rego = gdbarch_data_registry.registrations; | |
1793 | rego != NULL; | |
1794 | rego = rego->next) | |
104c1213 | 1795 | { |
b3cc3077 JB |
1796 | struct gdbarch_data *data = rego->data; |
1797 | gdb_assert (data->index < gdbarch->nr_data); | |
1798 | if (data->init != NULL) | |
95160752 | 1799 | { |
b3cc3077 JB |
1800 | void *pointer = data->init (gdbarch); |
1801 | set_gdbarch_data (gdbarch, data, pointer); | |
95160752 AC |
1802 | } |
1803 | } | |
1804 | } | |
1805 | ||
b3cc3077 | 1806 | /* Create/delete the gdbarch data vector. */ |
95160752 AC |
1807 | |
1808 | static void | |
b3cc3077 | 1809 | alloc_gdbarch_data (struct gdbarch *gdbarch) |
95160752 | 1810 | { |
b3cc3077 JB |
1811 | gdb_assert (gdbarch->data == NULL); |
1812 | gdbarch->nr_data = gdbarch_data_registry.nr; | |
1813 | gdbarch->data = xcalloc (gdbarch->nr_data, sizeof (void*)); | |
1814 | } | |
3c875b6f | 1815 | |
b3cc3077 JB |
1816 | static void |
1817 | free_gdbarch_data (struct gdbarch *gdbarch) | |
1818 | { | |
1819 | struct gdbarch_data_registration *rego; | |
1820 | gdb_assert (gdbarch->data != NULL); | |
1821 | for (rego = gdbarch_data_registry.registrations; | |
1822 | rego != NULL; | |
1823 | rego = rego->next) | |
95160752 | 1824 | { |
b3cc3077 JB |
1825 | struct gdbarch_data *data = rego->data; |
1826 | gdb_assert (data->index < gdbarch->nr_data); | |
1827 | if (data->free != NULL && gdbarch->data[data->index] != NULL) | |
95160752 | 1828 | { |
b3cc3077 JB |
1829 | data->free (gdbarch, gdbarch->data[data->index]); |
1830 | gdbarch->data[data->index] = NULL; | |
95160752 | 1831 | } |
104c1213 | 1832 | } |
b3cc3077 JB |
1833 | xfree (gdbarch->data); |
1834 | gdbarch->data = NULL; | |
104c1213 JM |
1835 | } |
1836 | ||
1837 | ||
b3cc3077 JB |
1838 | /* Initialize the current value of thee specified per-architecture |
1839 | data-pointer. */ | |
1840 | ||
95160752 AC |
1841 | void |
1842 | set_gdbarch_data (struct gdbarch *gdbarch, | |
1843 | struct gdbarch_data *data, | |
1844 | void *pointer) | |
1845 | { | |
1846 | gdb_assert (data->index < gdbarch->nr_data); | |
1847 | if (data->free != NULL && gdbarch->data[data->index] != NULL) | |
1848 | data->free (gdbarch, gdbarch->data[data->index]); | |
1849 | gdbarch->data[data->index] = pointer; | |
1850 | } | |
1851 | ||
104c1213 JM |
1852 | /* Return the current value of the specified per-architecture |
1853 | data-pointer. */ | |
1854 | ||
1855 | void * | |
34620563 | 1856 | gdbarch_data (struct gdbarch_data *data) |
104c1213 | 1857 | { |
95160752 | 1858 | gdb_assert (data->index < current_gdbarch->nr_data); |
104c1213 JM |
1859 | return current_gdbarch->data[data->index]; |
1860 | } | |
1861 | ||
1862 | ||
1863 | ||
f44c642f | 1864 | /* Keep a registry of swapped data required by GDB modules. */ |
104c1213 JM |
1865 | |
1866 | struct gdbarch_swap | |
1867 | { | |
1868 | void *swap; | |
1869 | struct gdbarch_swap_registration *source; | |
1870 | struct gdbarch_swap *next; | |
1871 | }; | |
1872 | ||
1873 | struct gdbarch_swap_registration | |
1874 | { | |
1875 | void *data; | |
1876 | unsigned long sizeof_data; | |
1877 | gdbarch_swap_ftype *init; | |
1878 | struct gdbarch_swap_registration *next; | |
1879 | }; | |
1880 | ||
f44c642f | 1881 | struct gdbarch_swap_registry |
104c1213 JM |
1882 | { |
1883 | int nr; | |
1884 | struct gdbarch_swap_registration *registrations; | |
1885 | }; | |
1886 | ||
f44c642f | 1887 | struct gdbarch_swap_registry gdbarch_swap_registry = |
104c1213 JM |
1888 | { |
1889 | 0, NULL, | |
1890 | }; | |
1891 | ||
1892 | void | |
1893 | register_gdbarch_swap (void *data, | |
1894 | unsigned long sizeof_data, | |
1895 | gdbarch_swap_ftype *init) | |
1896 | { | |
1897 | struct gdbarch_swap_registration **rego; | |
f44c642f | 1898 | for (rego = &gdbarch_swap_registry.registrations; |
104c1213 JM |
1899 | (*rego) != NULL; |
1900 | rego = &(*rego)->next); | |
1901 | (*rego) = XMALLOC (struct gdbarch_swap_registration); | |
1902 | (*rego)->next = NULL; | |
1903 | (*rego)->init = init; | |
1904 | (*rego)->data = data; | |
1905 | (*rego)->sizeof_data = sizeof_data; | |
1906 | } | |
1907 | ||
40af4b0c AC |
1908 | static void |
1909 | clear_gdbarch_swap (struct gdbarch *gdbarch) | |
1910 | { | |
1911 | struct gdbarch_swap *curr; | |
1912 | for (curr = gdbarch->swap; | |
1913 | curr != NULL; | |
1914 | curr = curr->next) | |
1915 | { | |
1916 | memset (curr->source->data, 0, curr->source->sizeof_data); | |
1917 | } | |
1918 | } | |
104c1213 JM |
1919 | |
1920 | static void | |
1921 | init_gdbarch_swap (struct gdbarch *gdbarch) | |
1922 | { | |
1923 | struct gdbarch_swap_registration *rego; | |
1924 | struct gdbarch_swap **curr = &gdbarch->swap; | |
f44c642f | 1925 | for (rego = gdbarch_swap_registry.registrations; |
104c1213 JM |
1926 | rego != NULL; |
1927 | rego = rego->next) | |
1928 | { | |
1929 | if (rego->data != NULL) | |
1930 | { | |
1931 | (*curr) = XMALLOC (struct gdbarch_swap); | |
1932 | (*curr)->source = rego; | |
1933 | (*curr)->swap = xmalloc (rego->sizeof_data); | |
1934 | (*curr)->next = NULL; | |
104c1213 JM |
1935 | curr = &(*curr)->next; |
1936 | } | |
1937 | if (rego->init != NULL) | |
1938 | rego->init (); | |
1939 | } | |
1940 | } | |
1941 | ||
1942 | static void | |
1943 | swapout_gdbarch_swap (struct gdbarch *gdbarch) | |
1944 | { | |
1945 | struct gdbarch_swap *curr; | |
1946 | for (curr = gdbarch->swap; | |
1947 | curr != NULL; | |
1948 | curr = curr->next) | |
1949 | memcpy (curr->swap, curr->source->data, curr->source->sizeof_data); | |
1950 | } | |
1951 | ||
1952 | static void | |
1953 | swapin_gdbarch_swap (struct gdbarch *gdbarch) | |
1954 | { | |
1955 | struct gdbarch_swap *curr; | |
1956 | for (curr = gdbarch->swap; | |
1957 | curr != NULL; | |
1958 | curr = curr->next) | |
1959 | memcpy (curr->source->data, curr->swap, curr->source->sizeof_data); | |
1960 | } | |
1961 | ||
1962 | ||
f44c642f | 1963 | /* Keep a registry of the architectures known by GDB. */ |
104c1213 | 1964 | |
4b9b3959 | 1965 | struct gdbarch_registration |
104c1213 JM |
1966 | { |
1967 | enum bfd_architecture bfd_architecture; | |
1968 | gdbarch_init_ftype *init; | |
4b9b3959 | 1969 | gdbarch_dump_tdep_ftype *dump_tdep; |
104c1213 | 1970 | struct gdbarch_list *arches; |
4b9b3959 | 1971 | struct gdbarch_registration *next; |
104c1213 JM |
1972 | }; |
1973 | ||
f44c642f | 1974 | static struct gdbarch_registration *gdbarch_registry = NULL; |
104c1213 | 1975 | |
b4a20239 AC |
1976 | static void |
1977 | append_name (const char ***buf, int *nr, const char *name) | |
1978 | { | |
1979 | *buf = xrealloc (*buf, sizeof (char**) * (*nr + 1)); | |
1980 | (*buf)[*nr] = name; | |
1981 | *nr += 1; | |
1982 | } | |
1983 | ||
1984 | const char ** | |
1985 | gdbarch_printable_names (void) | |
1986 | { | |
1987 | if (GDB_MULTI_ARCH) | |
1988 | { | |
1989 | /* Accumulate a list of names based on the registed list of | |
1990 | architectures. */ | |
1991 | enum bfd_architecture a; | |
1992 | int nr_arches = 0; | |
1993 | const char **arches = NULL; | |
4b9b3959 | 1994 | struct gdbarch_registration *rego; |
f44c642f | 1995 | for (rego = gdbarch_registry; |
b4a20239 AC |
1996 | rego != NULL; |
1997 | rego = rego->next) | |
1998 | { | |
1999 | const struct bfd_arch_info *ap; | |
2000 | ap = bfd_lookup_arch (rego->bfd_architecture, 0); | |
2001 | if (ap == NULL) | |
8e65ff28 AC |
2002 | internal_error (__FILE__, __LINE__, |
2003 | "gdbarch_architecture_names: multi-arch unknown"); | |
b4a20239 AC |
2004 | do |
2005 | { | |
2006 | append_name (&arches, &nr_arches, ap->printable_name); | |
2007 | ap = ap->next; | |
2008 | } | |
2009 | while (ap != NULL); | |
2010 | } | |
2011 | append_name (&arches, &nr_arches, NULL); | |
2012 | return arches; | |
2013 | } | |
2014 | else | |
2015 | /* Just return all the architectures that BFD knows. Assume that | |
2016 | the legacy architecture framework supports them. */ | |
2017 | return bfd_arch_list (); | |
2018 | } | |
2019 | ||
2020 | ||
104c1213 | 2021 | void |
4b9b3959 AC |
2022 | gdbarch_register (enum bfd_architecture bfd_architecture, |
2023 | gdbarch_init_ftype *init, | |
2024 | gdbarch_dump_tdep_ftype *dump_tdep) | |
104c1213 | 2025 | { |
4b9b3959 | 2026 | struct gdbarch_registration **curr; |
104c1213 | 2027 | const struct bfd_arch_info *bfd_arch_info; |
ec3d358c | 2028 | /* Check that BFD recognizes this architecture */ |
104c1213 JM |
2029 | bfd_arch_info = bfd_lookup_arch (bfd_architecture, 0); |
2030 | if (bfd_arch_info == NULL) | |
2031 | { | |
8e65ff28 AC |
2032 | internal_error (__FILE__, __LINE__, |
2033 | "gdbarch: Attempt to register unknown architecture (%d)", | |
2034 | bfd_architecture); | |
104c1213 JM |
2035 | } |
2036 | /* Check that we haven't seen this architecture before */ | |
f44c642f | 2037 | for (curr = &gdbarch_registry; |
104c1213 JM |
2038 | (*curr) != NULL; |
2039 | curr = &(*curr)->next) | |
2040 | { | |
2041 | if (bfd_architecture == (*curr)->bfd_architecture) | |
8e65ff28 AC |
2042 | internal_error (__FILE__, __LINE__, |
2043 | "gdbarch: Duplicate registraration of architecture (%s)", | |
2044 | bfd_arch_info->printable_name); | |
104c1213 JM |
2045 | } |
2046 | /* log it */ | |
2047 | if (gdbarch_debug) | |
2048 | fprintf_unfiltered (gdb_stdlog, "register_gdbarch_init (%s, 0x%08lx)\n", | |
2049 | bfd_arch_info->printable_name, | |
2050 | (long) init); | |
2051 | /* Append it */ | |
4b9b3959 | 2052 | (*curr) = XMALLOC (struct gdbarch_registration); |
104c1213 JM |
2053 | (*curr)->bfd_architecture = bfd_architecture; |
2054 | (*curr)->init = init; | |
4b9b3959 | 2055 | (*curr)->dump_tdep = dump_tdep; |
104c1213 JM |
2056 | (*curr)->arches = NULL; |
2057 | (*curr)->next = NULL; | |
8e1a459b C |
2058 | /* When non- multi-arch, install whatever target dump routine we've |
2059 | been provided - hopefully that routine has been written correctly | |
4b9b3959 AC |
2060 | and works regardless of multi-arch. */ |
2061 | if (!GDB_MULTI_ARCH && dump_tdep != NULL | |
2062 | && startup_gdbarch.dump_tdep == NULL) | |
2063 | startup_gdbarch.dump_tdep = dump_tdep; | |
2064 | } | |
2065 | ||
2066 | void | |
2067 | register_gdbarch_init (enum bfd_architecture bfd_architecture, | |
2068 | gdbarch_init_ftype *init) | |
2069 | { | |
2070 | gdbarch_register (bfd_architecture, init, NULL); | |
104c1213 | 2071 | } |
104c1213 JM |
2072 | |
2073 | ||
2074 | /* Look for an architecture using gdbarch_info. Base search on only | |
2075 | BFD_ARCH_INFO and BYTE_ORDER. */ | |
2076 | ||
2077 | struct gdbarch_list * | |
2078 | gdbarch_list_lookup_by_info (struct gdbarch_list *arches, | |
2079 | const struct gdbarch_info *info) | |
2080 | { | |
2081 | for (; arches != NULL; arches = arches->next) | |
2082 | { | |
2083 | if (info->bfd_arch_info != arches->gdbarch->bfd_arch_info) | |
2084 | continue; | |
2085 | if (info->byte_order != arches->gdbarch->byte_order) | |
2086 | continue; | |
2087 | return arches; | |
2088 | } | |
2089 | return NULL; | |
2090 | } | |
2091 | ||
2092 | ||
2093 | /* Update the current architecture. Return ZERO if the update request | |
2094 | failed. */ | |
2095 | ||
2096 | int | |
16f33e29 | 2097 | gdbarch_update_p (struct gdbarch_info info) |
104c1213 JM |
2098 | { |
2099 | struct gdbarch *new_gdbarch; | |
40af4b0c | 2100 | struct gdbarch *old_gdbarch; |
4b9b3959 | 2101 | struct gdbarch_registration *rego; |
104c1213 | 2102 | |
b732d07d AC |
2103 | /* Fill in missing parts of the INFO struct using a number of |
2104 | sources: \`\`set ...''; INFOabfd supplied; existing target. */ | |
2105 | ||
2106 | /* \`\`(gdb) set architecture ...'' */ | |
2107 | if (info.bfd_arch_info == NULL | |
2108 | && !TARGET_ARCHITECTURE_AUTO) | |
2109 | info.bfd_arch_info = TARGET_ARCHITECTURE; | |
2110 | if (info.bfd_arch_info == NULL | |
2111 | && info.abfd != NULL | |
2112 | && bfd_get_arch (info.abfd) != bfd_arch_unknown | |
2113 | && bfd_get_arch (info.abfd) != bfd_arch_obscure) | |
2114 | info.bfd_arch_info = bfd_get_arch_info (info.abfd); | |
104c1213 | 2115 | if (info.bfd_arch_info == NULL) |
b732d07d AC |
2116 | info.bfd_arch_info = TARGET_ARCHITECTURE; |
2117 | ||
2118 | /* \`\`(gdb) set byte-order ...'' */ | |
428721aa | 2119 | if (info.byte_order == BFD_ENDIAN_UNKNOWN |
b732d07d AC |
2120 | && !TARGET_BYTE_ORDER_AUTO) |
2121 | info.byte_order = TARGET_BYTE_ORDER; | |
2122 | /* From the INFO struct. */ | |
428721aa | 2123 | if (info.byte_order == BFD_ENDIAN_UNKNOWN |
b732d07d | 2124 | && info.abfd != NULL) |
d7449b42 | 2125 | info.byte_order = (bfd_big_endian (info.abfd) ? BFD_ENDIAN_BIG |
778eb05e | 2126 | : bfd_little_endian (info.abfd) ? BFD_ENDIAN_LITTLE |
428721aa | 2127 | : BFD_ENDIAN_UNKNOWN); |
b732d07d | 2128 | /* From the current target. */ |
428721aa | 2129 | if (info.byte_order == BFD_ENDIAN_UNKNOWN) |
b732d07d | 2130 | info.byte_order = TARGET_BYTE_ORDER; |
104c1213 | 2131 | |
b732d07d AC |
2132 | /* Must have found some sort of architecture. */ |
2133 | gdb_assert (info.bfd_arch_info != NULL); | |
104c1213 JM |
2134 | |
2135 | if (gdbarch_debug) | |
2136 | { | |
2137 | fprintf_unfiltered (gdb_stdlog, | |
b732d07d | 2138 | "gdbarch_update: info.bfd_arch_info %s\n", |
104c1213 JM |
2139 | (info.bfd_arch_info != NULL |
2140 | ? info.bfd_arch_info->printable_name | |
2141 | : "(null)")); | |
2142 | fprintf_unfiltered (gdb_stdlog, | |
b732d07d | 2143 | "gdbarch_update: info.byte_order %d (%s)\n", |
104c1213 | 2144 | info.byte_order, |
d7449b42 | 2145 | (info.byte_order == BFD_ENDIAN_BIG ? "big" |
778eb05e | 2146 | : info.byte_order == BFD_ENDIAN_LITTLE ? "little" |
104c1213 JM |
2147 | : "default")); |
2148 | fprintf_unfiltered (gdb_stdlog, | |
b732d07d | 2149 | "gdbarch_update: info.abfd 0x%lx\n", |
104c1213 JM |
2150 | (long) info.abfd); |
2151 | fprintf_unfiltered (gdb_stdlog, | |
b732d07d | 2152 | "gdbarch_update: info.tdep_info 0x%lx\n", |
104c1213 JM |
2153 | (long) info.tdep_info); |
2154 | } | |
2155 | ||
b732d07d AC |
2156 | /* Find the target that knows about this architecture. */ |
2157 | for (rego = gdbarch_registry; | |
2158 | rego != NULL; | |
2159 | rego = rego->next) | |
2160 | if (rego->bfd_architecture == info.bfd_arch_info->arch) | |
2161 | break; | |
2162 | if (rego == NULL) | |
2163 | { | |
2164 | if (gdbarch_debug) | |
2165 | fprintf_unfiltered (gdb_stdlog, "gdbarch_update: No matching architecture\\n"); | |
2166 | return 0; | |
2167 | } | |
2168 | ||
40af4b0c AC |
2169 | /* Swap the data belonging to the old target out setting the |
2170 | installed data to zero. This stops the ->init() function trying | |
2171 | to refer to the previous architecture's global data structures. */ | |
2172 | swapout_gdbarch_swap (current_gdbarch); | |
2173 | clear_gdbarch_swap (current_gdbarch); | |
2174 | ||
2175 | /* Save the previously selected architecture, setting the global to | |
2176 | NULL. This stops ->init() trying to use the previous | |
2177 | architecture's configuration. The previous architecture may not | |
2178 | even be of the same architecture family. The most recent | |
2179 | architecture of the same family is found at the head of the | |
2180 | rego->arches list. */ | |
2181 | old_gdbarch = current_gdbarch; | |
2182 | current_gdbarch = NULL; | |
2183 | ||
104c1213 JM |
2184 | /* Ask the target for a replacement architecture. */ |
2185 | new_gdbarch = rego->init (info, rego->arches); | |
2186 | ||
40af4b0c AC |
2187 | /* Did the target like it? No. Reject the change and revert to the |
2188 | old architecture. */ | |
104c1213 JM |
2189 | if (new_gdbarch == NULL) |
2190 | { | |
2191 | if (gdbarch_debug) | |
3d9a5942 | 2192 | fprintf_unfiltered (gdb_stdlog, "gdbarch_update: Target rejected architecture\\n"); |
40af4b0c AC |
2193 | swapin_gdbarch_swap (old_gdbarch); |
2194 | current_gdbarch = old_gdbarch; | |
104c1213 JM |
2195 | return 0; |
2196 | } | |
2197 | ||
40af4b0c AC |
2198 | /* Did the architecture change? No. Oops, put the old architecture |
2199 | back. */ | |
2200 | if (old_gdbarch == new_gdbarch) | |
104c1213 JM |
2201 | { |
2202 | if (gdbarch_debug) | |
3d9a5942 | 2203 | fprintf_unfiltered (gdb_stdlog, "gdbarch_update: Architecture 0x%08lx (%s) unchanged\\n", |
104c1213 JM |
2204 | (long) new_gdbarch, |
2205 | new_gdbarch->bfd_arch_info->printable_name); | |
40af4b0c AC |
2206 | swapin_gdbarch_swap (old_gdbarch); |
2207 | current_gdbarch = old_gdbarch; | |
104c1213 JM |
2208 | return 1; |
2209 | } | |
2210 | ||
0f79675b AC |
2211 | /* Is this a pre-existing architecture? Yes. Move it to the front |
2212 | of the list of architectures (keeping the list sorted Most | |
2213 | Recently Used) and then copy it in. */ | |
2214 | { | |
2215 | struct gdbarch_list **list; | |
2216 | for (list = ®o->arches; | |
2217 | (*list) != NULL; | |
2218 | list = &(*list)->next) | |
2219 | { | |
2220 | if ((*list)->gdbarch == new_gdbarch) | |
2221 | { | |
2222 | struct gdbarch_list *this; | |
2223 | if (gdbarch_debug) | |
2224 | fprintf_unfiltered (gdb_stdlog, | |
2225 | "gdbarch_update: Previous architecture 0x%08lx (%s) selected\n", | |
2226 | (long) new_gdbarch, | |
2227 | new_gdbarch->bfd_arch_info->printable_name); | |
2228 | /* Unlink this. */ | |
2229 | this = (*list); | |
2230 | (*list) = this->next; | |
2231 | /* Insert in the front. */ | |
2232 | this->next = rego->arches; | |
2233 | rego->arches = this; | |
2234 | /* Copy the new architecture in. */ | |
2235 | current_gdbarch = new_gdbarch; | |
2236 | swapin_gdbarch_swap (new_gdbarch); | |
2237 | architecture_changed_event (); | |
2238 | return 1; | |
2239 | } | |
2240 | } | |
2241 | } | |
2242 | ||
2243 | /* Prepend this new architecture to the architecture list (keep the | |
2244 | list sorted Most Recently Used). */ | |
2245 | { | |
2246 | struct gdbarch_list *this = XMALLOC (struct gdbarch_list); | |
2247 | this->next = rego->arches; | |
2248 | this->gdbarch = new_gdbarch; | |
2249 | rego->arches = this; | |
2250 | } | |
104c1213 JM |
2251 | |
2252 | /* Switch to this new architecture. Dump it out. */ | |
2253 | current_gdbarch = new_gdbarch; | |
2254 | if (gdbarch_debug) | |
2255 | { | |
2256 | fprintf_unfiltered (gdb_stdlog, | |
3d9a5942 | 2257 | "gdbarch_update: New architecture 0x%08lx (%s) selected\\n", |
104c1213 JM |
2258 | (long) new_gdbarch, |
2259 | new_gdbarch->bfd_arch_info->printable_name); | |
104c1213 JM |
2260 | } |
2261 | ||
4b9b3959 AC |
2262 | /* Check that the newly installed architecture is valid. Plug in |
2263 | any post init values. */ | |
2264 | new_gdbarch->dump_tdep = rego->dump_tdep; | |
104c1213 JM |
2265 | verify_gdbarch (new_gdbarch); |
2266 | ||
cf17c188 AC |
2267 | /* Initialize the per-architecture memory (swap) areas. |
2268 | CURRENT_GDBARCH must be update before these modules are | |
2269 | called. */ | |
2270 | init_gdbarch_swap (new_gdbarch); | |
2271 | ||
2272 | /* Initialize the per-architecture data-pointer of all parties that | |
2273 | registered an interest in this architecture. CURRENT_GDBARCH | |
2274 | must be updated before these modules are called. */ | |
b3cc3077 | 2275 | init_gdbarch_data (new_gdbarch); |
67c2c32c KS |
2276 | architecture_changed_event (); |
2277 | ||
4b9b3959 AC |
2278 | if (gdbarch_debug) |
2279 | gdbarch_dump (current_gdbarch, gdb_stdlog); | |
2280 | ||
104c1213 JM |
2281 | return 1; |
2282 | } | |
2283 | ||
2284 | ||
104c1213 JM |
2285 | /* Disassembler */ |
2286 | ||
2287 | /* Pointer to the target-dependent disassembly function. */ | |
2288 | int (*tm_print_insn) (bfd_vma, disassemble_info *); | |
2289 | disassemble_info tm_print_insn_info; | |
2290 | ||
2291 | ||
104c1213 | 2292 | extern void _initialize_gdbarch (void); |
b4a20239 | 2293 | |
104c1213 | 2294 | void |
34620563 | 2295 | _initialize_gdbarch (void) |
104c1213 | 2296 | { |
59233f88 AC |
2297 | struct cmd_list_element *c; |
2298 | ||
104c1213 JM |
2299 | INIT_DISASSEMBLE_INFO_NO_ARCH (tm_print_insn_info, gdb_stdout, (fprintf_ftype)fprintf_filtered); |
2300 | tm_print_insn_info.flavour = bfd_target_unknown_flavour; | |
2301 | tm_print_insn_info.read_memory_func = dis_asm_read_memory; | |
2302 | tm_print_insn_info.memory_error_func = dis_asm_memory_error; | |
2303 | tm_print_insn_info.print_address_func = dis_asm_print_address; | |
2304 | ||
59233f88 | 2305 | add_show_from_set (add_set_cmd ("arch", |
104c1213 JM |
2306 | class_maintenance, |
2307 | var_zinteger, | |
2308 | (char *)&gdbarch_debug, | |
3d9a5942 | 2309 | "Set architecture debugging.\\n\\ |
59233f88 AC |
2310 | When non-zero, architecture debugging is enabled.", &setdebuglist), |
2311 | &showdebuglist); | |
2312 | c = add_set_cmd ("archdebug", | |
2313 | class_maintenance, | |
2314 | var_zinteger, | |
2315 | (char *)&gdbarch_debug, | |
3d9a5942 | 2316 | "Set architecture debugging.\\n\\ |
59233f88 AC |
2317 | When non-zero, architecture debugging is enabled.", &setlist); |
2318 | ||
2319 | deprecate_cmd (c, "set debug arch"); | |
2320 | deprecate_cmd (add_show_from_set (c, &showlist), "show debug arch"); | |
104c1213 JM |
2321 | } |
2322 | EOF | |
2323 | ||
2324 | # close things off | |
2325 | exec 1>&2 | |
2326 | #../move-if-change new-gdbarch.c gdbarch.c | |
59233f88 | 2327 | compare_new gdbarch.c |