* hppa-hpux-tdep.c: New file.
[deliverable/binutils-gdb.git] / gdb / ns32k-tdep.c
CommitLineData
93d5585d 1/* Target dependent code for the NS32000, for GDB.
af137673
JT
2 Copyright 1986, 1988, 1991, 1992, 1994, 1995, 1998, 1999, 2000, 2001,
3 2002 Free Software Foundation, Inc.
c906108c 4
c5aa993b 5 This file is part of GDB.
c906108c 6
c5aa993b
JM
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
c906108c 11
c5aa993b
JM
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
c906108c 16
c5aa993b
JM
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
c906108c
SS
21
22#include "defs.h"
f6427ade 23#include "frame.h"
93d5585d 24#include "gdbtypes.h"
381bab78 25#include "gdbcore.h"
93d5585d
JT
26#include "inferior.h"
27#include "regcache.h"
28#include "target.h"
29
30#include "arch-utils.h"
31
32#include "ns32k-tdep.h"
9bbe19fb 33#include "gdb_string.h"
381bab78
AC
34
35static int sign_extend (int value, int bits);
78f9d765
JT
36static CORE_ADDR ns32k_get_enter_addr (CORE_ADDR);
37static int ns32k_localcount (CORE_ADDR enter_pc);
7bcc927b 38static void flip_bytes (void *, int);
c906108c 39
fa88f677 40static const char *
af137673 41ns32k_register_name_32082 (int regno)
c906108c 42{
af137673
JT
43 static char *register_names[] =
44 {
45 "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
46 "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7",
47 "sp", "fp", "pc", "ps",
48 "l0", "l1", "l2", "l3", "xx",
49 };
50
51 if (regno < 0)
52 return NULL;
53 if (regno >= sizeof (register_names) / sizeof (*register_names))
54 return NULL;
55
56 return (register_names[regno]);
57}
58
fa88f677 59static const char *
af137673
JT
60ns32k_register_name_32382 (int regno)
61{
62 static char *register_names[] =
63 {
64 "r0", "r1", "r2", "r3", "r4", "r5", "r6", "r7",
65 "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7",
66 "sp", "fp", "pc", "ps",
67 "fsr",
68 "l0", "l1", "l2", "l3", "l4", "l5", "l6", "l7", "xx",
69 };
70
71 if (regno < 0)
72 return NULL;
73 if (regno >= sizeof (register_names) / sizeof (*register_names))
74 return NULL;
75
76 return (register_names[regno]);
c906108c 77}
b83266a0 78
93d5585d 79static int
f2c762e0
JT
80ns32k_register_byte_32082 (int regno)
81{
93d5585d
JT
82 if (regno >= NS32K_LP0_REGNUM)
83 return (NS32K_LP0_REGNUM * 4) + ((regno - NS32K_LP0_REGNUM) * 8);
f2c762e0
JT
84
85 return (regno * 4);
86}
87
93d5585d 88static int
f2c762e0
JT
89ns32k_register_byte_32382 (int regno)
90{
91 /* This is a bit yuk. The even numbered double precision floating
92 point long registers occupy the same space as the even:odd numbered
93 single precision floating point registers, but the extra 32381 FPU
94 registers are at the end. Doing it this way is compatible for both
95 32081 and 32381 equipped machines. */
96
93d5585d
JT
97 return ((regno < NS32K_LP0_REGNUM ? regno
98 : (regno - NS32K_LP0_REGNUM) & 1 ? regno - 1
99 : (regno - NS32K_LP0_REGNUM + FP0_REGNUM)) * 4);
f2c762e0
JT
100}
101
93d5585d 102static int
f2c762e0
JT
103ns32k_register_raw_size (int regno)
104{
105 /* All registers are 4 bytes, except for the doubled floating
106 registers. */
107
93d5585d 108 return ((regno >= NS32K_LP0_REGNUM) ? 8 : 4);
f2c762e0
JT
109}
110
93d5585d 111static int
f2c762e0
JT
112ns32k_register_virtual_size (int regno)
113{
93d5585d 114 return ((regno >= NS32K_LP0_REGNUM) ? 8 : 4);
f2c762e0
JT
115}
116
93d5585d 117static struct type *
f2c762e0
JT
118ns32k_register_virtual_type (int regno)
119{
120 if (regno < FP0_REGNUM)
121 return (builtin_type_int);
122
123 if (regno < FP0_REGNUM + 8)
124 return (builtin_type_float);
125
93d5585d 126 if (regno < NS32K_LP0_REGNUM)
f2c762e0
JT
127 return (builtin_type_int);
128
129 return (builtin_type_double);
130}
131
efb2c70e
JT
132/* Immediately after a function call, return the saved PC. Can't
133 always go through the frames for this because on some systems,
134 the new frame is not set up until the new function executes some
135 instructions. */
136
93d5585d 137static CORE_ADDR
efb2c70e
JT
138ns32k_saved_pc_after_call (struct frame_info *frame)
139{
140 return (read_memory_integer (read_register (SP_REGNUM), 4));
141}
142
b83266a0
SS
143/* Advance PC across any function entry prologue instructions
144 to reach some "real" code. */
145
93d5585d 146static CORE_ADDR
fba45db2 147umax_skip_prologue (CORE_ADDR pc)
b83266a0
SS
148{
149 register unsigned char op = read_memory_integer (pc, 1);
150 if (op == 0x82)
151 {
c5aa993b 152 op = read_memory_integer (pc + 2, 1);
b83266a0
SS
153 if ((op & 0x80) == 0)
154 pc += 3;
155 else if ((op & 0xc0) == 0x80)
156 pc += 4;
157 else
158 pc += 6;
c5aa993b 159 }
b83266a0
SS
160 return pc;
161}
78f9d765 162\f
93d5585d 163static const unsigned char *
78f9d765
JT
164ns32k_breakpoint_from_pc (CORE_ADDR *pcp, int *lenp)
165{
166 static const unsigned char breakpoint_insn[] = { 0xf2 };
167
168 *lenp = sizeof (breakpoint_insn);
169 return breakpoint_insn;
170}
b83266a0 171
cce74817
JM
172/* Return number of args passed to a frame.
173 Can return -1, meaning no way to tell.
174 Encore's C compiler often reuses same area on stack for args,
175 so this will often not work properly. If the arg names
176 are known, it's likely most of them will be printed. */
bb19ff3b 177
93d5585d 178static int
fba45db2 179umax_frame_num_args (struct frame_info *fi)
392a587b
JM
180{
181 int numargs;
182 CORE_ADDR pc;
183 CORE_ADDR enter_addr;
184 unsigned int insn;
185 unsigned int addr_mode;
186 int width;
187
188 numargs = -1;
189 enter_addr = ns32k_get_enter_addr ((fi)->pc);
190 if (enter_addr > 0)
191 {
192 pc = ((enter_addr == 1)
193 ? SAVED_PC_AFTER_CALL (fi)
194 : FRAME_SAVED_PC (fi));
c5aa993b 195 insn = read_memory_integer (pc, 2);
392a587b
JM
196 addr_mode = (insn >> 11) & 0x1f;
197 insn = insn & 0x7ff;
198 if ((insn & 0x7fc) == 0x57c
c5aa993b 199 && addr_mode == 0x14) /* immediate */
392a587b 200 {
c5aa993b 201 if (insn == 0x57c) /* adjspb */
392a587b 202 width = 1;
c5aa993b 203 else if (insn == 0x57d) /* adjspw */
392a587b 204 width = 2;
c5aa993b 205 else if (insn == 0x57f) /* adjspd */
392a587b 206 width = 4;
381bab78
AC
207 else
208 internal_error (__FILE__, __LINE__, "bad else");
c5aa993b 209 numargs = read_memory_integer (pc + 2, width);
392a587b
JM
210 if (width > 1)
211 flip_bytes (&numargs, width);
c5aa993b 212 numargs = -sign_extend (numargs, width * 8) / 4;
392a587b
JM
213 }
214 }
215 return numargs;
216}
b83266a0 217
381bab78 218static int
fba45db2 219sign_extend (int value, int bits)
c906108c
SS
220{
221 value = value & ((1 << bits) - 1);
c5aa993b 222 return (value & (1 << (bits - 1))
c906108c
SS
223 ? value | (~((1 << bits) - 1))
224 : value);
225}
226
7bcc927b 227static void
381bab78 228flip_bytes (void *p, int count)
c906108c
SS
229{
230 char tmp;
381bab78 231 char *ptr = 0;
c906108c
SS
232
233 while (count > 0)
234 {
235 tmp = *ptr;
c5aa993b
JM
236 ptr[0] = ptr[count - 1];
237 ptr[count - 1] = tmp;
c906108c
SS
238 ptr++;
239 count -= 2;
240 }
241}
242
78f9d765
JT
243/* Return the number of locals in the current frame given a
244 pc pointing to the enter instruction. This is used by
245 ns32k_frame_init_saved_regs. */
c906108c 246
78f9d765 247static int
fba45db2 248ns32k_localcount (CORE_ADDR enter_pc)
c906108c
SS
249{
250 unsigned char localtype;
251 int localcount;
252
c5aa993b 253 localtype = read_memory_integer (enter_pc + 2, 1);
c906108c
SS
254 if ((localtype & 0x80) == 0)
255 localcount = localtype;
256 else if ((localtype & 0xc0) == 0x80)
257 localcount = (((localtype & 0x3f) << 8)
c5aa993b 258 | (read_memory_integer (enter_pc + 3, 1) & 0xff));
c906108c
SS
259 else
260 localcount = (((localtype & 0x3f) << 24)
c5aa993b
JM
261 | ((read_memory_integer (enter_pc + 3, 1) & 0xff) << 16)
262 | ((read_memory_integer (enter_pc + 4, 1) & 0xff) << 8)
263 | (read_memory_integer (enter_pc + 5, 1) & 0xff));
c906108c
SS
264 return localcount;
265}
266
267
268/* Nonzero if instruction at PC is a return instruction. */
269
270static int
fba45db2 271ns32k_about_to_return (CORE_ADDR pc)
c906108c
SS
272{
273 return (read_memory_integer (pc, 1) == 0x12);
274}
275
78f9d765
JT
276/* Get the address of the enter opcode for this function, if it is active.
277 Returns positive address > 1 if pc is between enter/exit,
278 1 if pc before enter or after exit, 0 otherwise. */
279static CORE_ADDR
fba45db2 280ns32k_get_enter_addr (CORE_ADDR pc)
c906108c
SS
281{
282 CORE_ADDR enter_addr;
283 unsigned char op;
284
285 if (pc == 0)
286 return 0;
287
288 if (ns32k_about_to_return (pc))
c5aa993b 289 return 1; /* after exit */
c906108c
SS
290
291 enter_addr = get_pc_function_start (pc);
292
c5aa993b
JM
293 if (pc == enter_addr)
294 return 1; /* before enter */
c906108c
SS
295
296 op = read_memory_integer (enter_addr, 1);
297
298 if (op != 0x82)
c5aa993b 299 return 0; /* function has no enter/exit */
c906108c 300
c5aa993b 301 return enter_addr; /* pc is between enter and exit */
c906108c 302}
af137673 303
93d5585d 304static CORE_ADDR
78f9d765
JT
305ns32k_frame_chain (struct frame_info *frame)
306{
307 /* In the case of the NS32000 series, the frame's nominal address is the
308 FP value, and that address is saved at the previous FP value as a
309 4-byte word. */
310
311 if (inside_entry_file (frame->pc))
312 return 0;
313
314 return (read_memory_integer (frame->frame, 4));
315}
316
f407986f
AC
317
318static CORE_ADDR
319ns32k_sigtramp_saved_pc (struct frame_info *frame)
320{
321 CORE_ADDR sigcontext_addr;
322 char *buf;
323 int ptrbytes = TYPE_LENGTH (builtin_type_void_func_ptr);
324 int sigcontext_offs = (2 * TARGET_INT_BIT) / TARGET_CHAR_BIT;
325
326 buf = alloca (ptrbytes);
327 /* Get sigcontext address, it is the third parameter on the stack. */
328 if (frame->next)
329 sigcontext_addr = read_memory_typed_address
330 (FRAME_ARGS_ADDRESS (frame->next) + FRAME_ARGS_SKIP + sigcontext_offs,
331 builtin_type_void_data_ptr);
332 else
333 sigcontext_addr = read_memory_typed_address
334 (read_register (SP_REGNUM) + sigcontext_offs, builtin_type_void_data_ptr);
335
336 /* Don't cause a memory_error when accessing sigcontext in case the stack
337 layout has changed or the stack is corrupt. */
338 target_read_memory (sigcontext_addr + SIGCONTEXT_PC_OFFSET, buf, ptrbytes);
339 return extract_typed_address (buf, builtin_type_void_func_ptr);
340}
341
93d5585d 342static CORE_ADDR
78f9d765
JT
343ns32k_frame_saved_pc (struct frame_info *frame)
344{
5a203e44 345 if ((get_frame_type (frame) == SIGTRAMP_FRAME))
f407986f 346 return (ns32k_sigtramp_saved_pc (frame)); /* XXXJRT */
78f9d765
JT
347
348 return (read_memory_integer (frame->frame + 4, 4));
349}
350
93d5585d 351static CORE_ADDR
78f9d765
JT
352ns32k_frame_args_address (struct frame_info *frame)
353{
354 if (ns32k_get_enter_addr (frame->pc) > 1)
355 return (frame->frame);
356
357 return (read_register (SP_REGNUM) - 4);
358}
359
93d5585d 360static CORE_ADDR
78f9d765
JT
361ns32k_frame_locals_address (struct frame_info *frame)
362{
363 return (frame->frame);
364}
365
366/* Code to initialize the addresses of the saved registers of frame described
367 by FRAME_INFO. This includes special registers such as pc and fp saved in
368 special ways in the stack frame. sp is even more special: the address we
369 return for it IS the sp for the next frame. */
370
93d5585d 371static void
78f9d765
JT
372ns32k_frame_init_saved_regs (struct frame_info *frame)
373{
374 int regmask, regnum;
375 int localcount;
376 CORE_ADDR enter_addr, next_addr;
377
378 if (frame->saved_regs)
379 return;
380
381 frame_saved_regs_zalloc (frame);
382
383 enter_addr = ns32k_get_enter_addr (frame->pc);
384 if (enter_addr > 1)
385 {
386 regmask = read_memory_integer (enter_addr + 1, 1) & 0xff;
387 localcount = ns32k_localcount (enter_addr);
388 next_addr = frame->frame + localcount;
389
390 for (regnum = 0; regnum < 8; regnum++)
391 {
392 if (regmask & (1 << regnum))
393 frame->saved_regs[regnum] = next_addr -= 4;
394 }
395
396 frame->saved_regs[SP_REGNUM] = frame->frame + 4;
397 frame->saved_regs[PC_REGNUM] = frame->frame + 4;
398 frame->saved_regs[FP_REGNUM] = read_memory_integer (frame->frame, 4);
399 }
400 else if (enter_addr == 1)
401 {
402 CORE_ADDR sp = read_register (SP_REGNUM);
403 frame->saved_regs[PC_REGNUM] = sp;
404 frame->saved_regs[SP_REGNUM] = sp + 4;
405 }
406}
407
93d5585d 408static void
78f9d765
JT
409ns32k_push_dummy_frame (void)
410{
411 CORE_ADDR sp = read_register (SP_REGNUM);
412 int regnum;
413
414 sp = push_word (sp, read_register (PC_REGNUM));
415 sp = push_word (sp, read_register (FP_REGNUM));
416 write_register (FP_REGNUM, sp);
417
418 for (regnum = 0; regnum < 8; regnum++)
419 sp = push_word (sp, read_register (regnum));
420
421 write_register (SP_REGNUM, sp);
422}
423
93d5585d 424static void
78f9d765
JT
425ns32k_pop_frame (void)
426{
427 struct frame_info *frame = get_current_frame ();
428 CORE_ADDR fp;
429 int regnum;
430
431 fp = frame->frame;
432 FRAME_INIT_SAVED_REGS (frame);
433
434 for (regnum = 0; regnum < 8; regnum++)
435 if (frame->saved_regs[regnum])
436 write_register (regnum,
437 read_memory_integer (frame->saved_regs[regnum], 4));
438
439 write_register (FP_REGNUM, read_memory_integer (fp, 4));
440 write_register (PC_REGNUM, read_memory_integer (fp + 4, 4));
441 write_register (SP_REGNUM, fp + 8);
442 flush_cached_frames ();
443}
7bcc927b
JT
444\f
445/* The NS32000 call dummy sequence:
446
447 enter 0xff,0 82 ff 00
448 jsr @0x00010203 7f ae c0 01 02 03
449 adjspd 0x69696969 7f a5 01 02 03 04
450 bpt f2
451
452 It is 16 bytes long. */
453
93d5585d 454static LONGEST ns32k_call_dummy_words[] =
7bcc927b
JT
455{
456 0x7f00ff82,
457 0x0201c0ae,
458 0x01a57f03,
459 0xf2040302
460};
93d5585d 461static int sizeof_ns32k_call_dummy_words = sizeof (ns32k_call_dummy_words);
7bcc927b
JT
462
463#define NS32K_CALL_DUMMY_ADDR 5
464#define NS32K_CALL_DUMMY_NARGS 11
78f9d765 465
93d5585d 466static void
7bcc927b
JT
467ns32k_fix_call_dummy (char *dummy, CORE_ADDR pc, CORE_ADDR fun, int nargs,
468 struct value **args, struct type *type, int gcc_p)
469{
470 int flipped;
471
472 flipped = fun | 0xc0000000;
473 flip_bytes (&flipped, 4);
474 store_unsigned_integer (dummy + NS32K_CALL_DUMMY_ADDR, 4, flipped);
475
476 flipped = - nargs * 4;
477 flip_bytes (&flipped, 4);
478 store_unsigned_integer (dummy + NS32K_CALL_DUMMY_NARGS, 4, flipped);
479}
480\f
93d5585d 481static void
efb2c70e
JT
482ns32k_store_struct_return (CORE_ADDR addr, CORE_ADDR sp)
483{
484 /* On this machine, this is a no-op (Encore Umax didn't use GCC). */
485}
486
93d5585d 487static void
efb2c70e
JT
488ns32k_extract_return_value (struct type *valtype, char *regbuf, char *valbuf)
489{
490 memcpy (valbuf,
491 regbuf + REGISTER_BYTE (TYPE_CODE (valtype) == TYPE_CODE_FLT ?
492 FP0_REGNUM : 0), TYPE_LENGTH (valtype));
493}
494
93d5585d 495static void
efb2c70e
JT
496ns32k_store_return_value (struct type *valtype, char *valbuf)
497{
73937e03
AC
498 deprecated_write_register_bytes (TYPE_CODE (valtype) == TYPE_CODE_FLT
499 ? FP0_REGNUM : 0, valbuf,
500 TYPE_LENGTH (valtype));
efb2c70e
JT
501}
502
93d5585d 503static CORE_ADDR
efb2c70e
JT
504ns32k_extract_struct_value_address (char *regbuf)
505{
506 return (extract_address (regbuf + REGISTER_BYTE (0), REGISTER_RAW_SIZE (0)));
507}
508\f
93d5585d
JT
509void
510ns32k_gdbarch_init_32082 (struct gdbarch *gdbarch)
511{
512 set_gdbarch_num_regs (gdbarch, NS32K_NUM_REGS_32082);
513
514 set_gdbarch_register_name (gdbarch, ns32k_register_name_32082);
515 set_gdbarch_register_bytes (gdbarch, NS32K_REGISTER_BYTES_32082);
516 set_gdbarch_register_byte (gdbarch, ns32k_register_byte_32082);
517}
518
519void
520ns32k_gdbarch_init_32382 (struct gdbarch *gdbarch)
521{
522 set_gdbarch_num_regs (gdbarch, NS32K_NUM_REGS_32382);
523
524 set_gdbarch_register_name (gdbarch, ns32k_register_name_32382);
525 set_gdbarch_register_bytes (gdbarch, NS32K_REGISTER_BYTES_32382);
526 set_gdbarch_register_byte (gdbarch, ns32k_register_byte_32382);
527}
528
529/* Initialize the current architecture based on INFO. If possible, re-use an
530 architecture from ARCHES, which is a list of architectures already created
531 during this debugging session.
532
533 Called e.g. at program startup, when reading a core file, and when reading
534 a binary file. */
535
536static struct gdbarch *
537ns32k_gdbarch_init (struct gdbarch_info info, struct gdbarch_list *arches)
538{
539 struct gdbarch_tdep *tdep;
540 struct gdbarch *gdbarch;
541 enum gdb_osabi osabi = GDB_OSABI_UNKNOWN;
542
543 /* Try to determine the OS ABI of the object we are loading. */
544 if (info.abfd != NULL)
545 {
546 osabi = gdbarch_lookup_osabi (info.abfd);
547 }
548
549 /* Find a candidate among extant architectures. */
550 for (arches = gdbarch_list_lookup_by_info (arches, &info);
551 arches != NULL;
552 arches = gdbarch_list_lookup_by_info (arches->next, &info))
553 {
554 /* Make sure the OS ABI selection matches. */
555 tdep = gdbarch_tdep (arches->gdbarch);
556 if (tdep && tdep->osabi == osabi)
557 return arches->gdbarch;
558 }
559
560 tdep = xmalloc (sizeof (struct gdbarch_tdep));
561 gdbarch = gdbarch_alloc (&info, tdep);
562
a5afb99f
AC
563 /* NOTE: cagney/2002-12-06: This can be deleted when this arch is
564 ready to unwind the PC first (see frame.c:get_prev_frame()). */
565 set_gdbarch_deprecated_init_frame_pc (gdbarch, init_frame_pc_default);
566
93d5585d
JT
567 tdep->osabi = osabi;
568
569 /* Register info */
570 ns32k_gdbarch_init_32082 (gdbarch);
571 set_gdbarch_num_regs (gdbarch, NS32K_SP_REGNUM);
572 set_gdbarch_num_regs (gdbarch, NS32K_FP_REGNUM);
573 set_gdbarch_num_regs (gdbarch, NS32K_PC_REGNUM);
574 set_gdbarch_num_regs (gdbarch, NS32K_PS_REGNUM);
575
576 set_gdbarch_register_size (gdbarch, NS32K_REGISTER_SIZE);
577 set_gdbarch_register_raw_size (gdbarch, ns32k_register_raw_size);
578 set_gdbarch_max_register_raw_size (gdbarch, NS32K_MAX_REGISTER_RAW_SIZE);
579 set_gdbarch_register_virtual_size (gdbarch, ns32k_register_virtual_size);
580 set_gdbarch_max_register_virtual_size (gdbarch,
581 NS32K_MAX_REGISTER_VIRTUAL_SIZE);
582 set_gdbarch_register_virtual_type (gdbarch, ns32k_register_virtual_type);
583
584 /* Frame and stack info */
585 set_gdbarch_skip_prologue (gdbarch, umax_skip_prologue);
586 set_gdbarch_saved_pc_after_call (gdbarch, ns32k_saved_pc_after_call);
587
588 set_gdbarch_frame_num_args (gdbarch, umax_frame_num_args);
589 set_gdbarch_frameless_function_invocation (gdbarch,
590 generic_frameless_function_invocation_not);
591
592 set_gdbarch_frame_chain (gdbarch, ns32k_frame_chain);
593 set_gdbarch_frame_chain_valid (gdbarch, func_frame_chain_valid);
594 set_gdbarch_frame_saved_pc (gdbarch, ns32k_frame_saved_pc);
595
596 set_gdbarch_frame_args_address (gdbarch, ns32k_frame_args_address);
597 set_gdbarch_frame_locals_address (gdbarch, ns32k_frame_locals_address);
598
599 set_gdbarch_frame_init_saved_regs (gdbarch, ns32k_frame_init_saved_regs);
600
601 set_gdbarch_frame_args_skip (gdbarch, 8);
602
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603 set_gdbarch_inner_than (gdbarch, core_addr_lessthan);
604
605 /* Return value info */
606 set_gdbarch_store_struct_return (gdbarch, ns32k_store_struct_return);
26e9b323 607 set_gdbarch_deprecated_extract_return_value (gdbarch, ns32k_extract_return_value);
ebba8386 608 set_gdbarch_deprecated_store_return_value (gdbarch, ns32k_store_return_value);
26e9b323 609 set_gdbarch_deprecated_extract_struct_value_address (gdbarch,
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610 ns32k_extract_struct_value_address);
611
612 /* Call dummy info */
613 set_gdbarch_push_dummy_frame (gdbarch, ns32k_push_dummy_frame);
614 set_gdbarch_pop_frame (gdbarch, ns32k_pop_frame);
615 set_gdbarch_call_dummy_location (gdbarch, ON_STACK);
616 set_gdbarch_call_dummy_p (gdbarch, 1);
617 set_gdbarch_call_dummy_words (gdbarch, ns32k_call_dummy_words);
618 set_gdbarch_sizeof_call_dummy_words (gdbarch, sizeof_ns32k_call_dummy_words);
619 set_gdbarch_fix_call_dummy (gdbarch, ns32k_fix_call_dummy);
620 set_gdbarch_call_dummy_start_offset (gdbarch, 3);
621 set_gdbarch_call_dummy_breakpoint_offset_p (gdbarch, 0);
07555a72 622 set_gdbarch_deprecated_use_generic_dummy_frames (gdbarch, 0);
ae45cd16 623 set_gdbarch_deprecated_pc_in_call_dummy (gdbarch, deprecated_pc_in_call_dummy_on_stack);
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624 set_gdbarch_call_dummy_stack_adjust_p (gdbarch, 0);
625
626 /* Breakpoint info */
627 set_gdbarch_decr_pc_after_break (gdbarch, 0);
628 set_gdbarch_breakpoint_from_pc (gdbarch, ns32k_breakpoint_from_pc);
629
630 /* Misc info */
631 set_gdbarch_function_start_offset (gdbarch, 0);
632
633 /* Hook in OS ABI-specific overrides, if they have been registered. */
634 gdbarch_init_osabi (info, gdbarch, osabi);
635
636 return (gdbarch);
637}
638
639static void
640ns32k_dump_tdep (struct gdbarch *current_gdbarch, struct ui_file *file)
641{
642 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
643
644 if (tdep == NULL)
645 return;
646
647 fprintf_unfiltered (file, "ns32k_dump_tdep: OS ABI = %s\n",
648 gdbarch_osabi_name (tdep->osabi));
649}
650
efb2c70e 651void
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652_initialize_ns32k_tdep (void)
653{
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654 gdbarch_register (bfd_arch_ns32k, ns32k_gdbarch_init, ns32k_dump_tdep);
655
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656 tm_print_insn = print_insn_ns32k;
657}
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