* dbxread.c (process_one_symbol): Ignore N_MAIN, N_ENDM for Solaris.
[deliverable/binutils-gdb.git] / gdb / tm-sparc.h
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1/* Parameters for SPARC target machines, for GDB, the GNU debugger.
2 Copyright 1986, 1987, 1989, 1991, 1992 Free Software Foundation, Inc.
dd3b648e 3 Contributed by Michael Tiemann (tiemann@mcc.com)
fbcb5095 4
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5This file is part of GDB.
6
99a7de40 7This program is free software; you can redistribute it and/or modify
dd3b648e 8it under the terms of the GNU General Public License as published by
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9the Free Software Foundation; either version 2 of the License, or
10(at your option) any later version.
dd3b648e 11
99a7de40 12This program is distributed in the hope that it will be useful,
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13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
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18along with this program; if not, write to the Free Software
19Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
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20
21#define TARGET_BYTE_ORDER BIG_ENDIAN
22
23/* Floating point is IEEE compatible. */
24#define IEEE_FLOAT
25
26/* Define this if the C compiler puts an underscore at the front
27 of external names before giving them to the linker. */
28
29#define NAMES_HAVE_UNDERSCORE
30
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31/* When passing a structure to a function, Sun cc passes the address
32 in a register, not the structure itself. It (under SunOS4) creates
33 two symbols, so we get a LOC_ARG saying the address is on the stack
34 (a lie, and a serious one since we don't know which register to
35 use), and a LOC_REGISTER saying that the struct is in a register
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36 (sort of a lie, but fixable with REG_STRUCT_HAS_ADDR). Gcc version
37 two (as of 1.92) behaves like sun cc, but I don't know how we can
38 distinguish between gcc version 1 and gcc version 2.
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39
40 This still doesn't work if the argument is not one passed in a
41 register (i.e. it's the 7th or later argument). */
42#define REG_STRUCT_HAS_ADDR(gcc_p) (!(gcc_p))
43#define STRUCT_ARG_SYM_GARBAGE(gcc_p) (!(gcc_p))
44
45/* If Pcc says that a parameter is a short, it's a short. This is
46 because the parameter does get passed in in a register as an int,
47 but pcc puts it onto the stack frame as a short (not nailing
48 whatever else might be there. I'm not sure that I consider this
49 swift. Sigh.)
50
51 No, don't do this. The problem here is that pcc says that the
52 argument is in the upper half of the word reserved on the stack,
53 but puts it in the lower half. */
54/* #define BELIEVE_PCC_PROMOTION 1 */
55/* OK, I've added code to dbxread.c to deal with this case. */
56#define BELIEVE_PCC_PROMOTION_TYPE
57
58/* Offset from address of function to start of its code.
59 Zero on most machines. */
60
61#define FUNCTION_START_OFFSET 0
62
63/* Advance PC across any function entry prologue instructions
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64 to reach some "real" code. SKIP_PROLOGUE_FRAMELESS_P advances
65 the PC past some of the prologue, but stops as soon as it
66 knows that the function has a frame. Its result is equal
67 to its input PC if the function is frameless, unequal otherwise. */
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68
69#define SKIP_PROLOGUE(pc) \
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70 { pc = skip_prologue (pc, 0); }
71#define SKIP_PROLOGUE_FRAMELESS_P(pc) \
72 { pc = skip_prologue (pc, 1); }
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73extern CORE_ADDR skip_prologue ();
74
75/* Immediately after a function call, return the saved pc.
76 Can't go through the frames for this because on some machines
77 the new frame is not set up until the new function executes
78 some instructions. */
79
80/* On the Sun 4 under SunOS, the compile will leave a fake insn which
81 encodes the structure size being returned. If we detect such
82 a fake insn, step past it. */
83
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84#define PC_ADJUST(pc) sparc_pc_adjust(pc)
85extern CORE_ADDR sparc_pc_adjust();
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86
87#define SAVED_PC_AFTER_CALL(frame) PC_ADJUST (read_register (RP_REGNUM))
88
7d9884b9 89/* Stack grows downward. */
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90
91#define INNER_THAN <
92
93/* Stack has strict alignment. */
94
95#define STACK_ALIGN(ADDR) (((ADDR)+7)&-8)
96
97/* Sequence of bytes for breakpoint instruction. */
98
99#define BREAKPOINT {0x91, 0xd0, 0x20, 0x01}
100
101/* Amount PC must be decremented by after a breakpoint.
102 This is often the number of bytes in BREAKPOINT
103 but not always. */
104
105#define DECR_PC_AFTER_BREAK 0
106
107/* Nonzero if instruction at PC is a return instruction. */
108/* For SPARC, this is either a "jmpl %o7+8,%g0" or "jmpl %i7+8,%g0".
109
110 Note: this does not work for functions returning structures under SunOS. */
111#define ABOUT_TO_RETURN(pc) \
112 ((read_memory_integer (pc, 4)|0x00040000) == 0x81c7e008)
113
114/* Return 1 if P points to an invalid floating point value. */
115
116#define INVALID_FLOAT(p, len) 0 /* Just a first guess; not checked */
117
118/* Say how long (ordinary) registers are. */
119
120#define REGISTER_TYPE long
121
122/* Number of machine registers */
123
124#define NUM_REGS 72
125
126/* Initializer for an array of names of registers.
127 There should be NUM_REGS strings in this initializer. */
128
129#define REGISTER_NAMES \
130{ "g0", "g1", "g2", "g3", "g4", "g5", "g6", "g7", \
131 "o0", "o1", "o2", "o3", "o4", "o5", "sp", "o7", \
132 "l0", "l1", "l2", "l3", "l4", "l5", "l6", "l7", \
133 "i0", "i1", "i2", "i3", "i4", "i5", "fp", "i7", \
134 \
135 "f0", "f1", "f2", "f3", "f4", "f5", "f6", "f7", \
136 "f8", "f9", "f10", "f11", "f12", "f13", "f14", "f15", \
137 "f16", "f17", "f18", "f19", "f20", "f21", "f22", "f23", \
138 "f24", "f25", "f26", "f27", "f28", "f29", "f30", "f31", \
139 \
1304f099 140 "y", "psr", "wim", "tbr", "pc", "npc", "fpsr", "cpsr" }
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141
142/* Register numbers of various important registers.
143 Note that some of these values are "real" register numbers,
144 and correspond to the general registers of the machine,
145 and some are "phony" register numbers which are too large
146 to be actual register numbers as far as the user is concerned
147 but do serve to get the desired values when passed to read_register. */
148
149#define G0_REGNUM 0 /* %g0 */
150#define G1_REGNUM 1 /* %g1 */
151#define O0_REGNUM 8 /* %o0 */
152#define SP_REGNUM 14 /* Contains address of top of stack, \
153 which is also the bottom of the frame. */
154#define RP_REGNUM 15 /* Contains return address value, *before* \
155 any windows get switched. */
156#define O7_REGNUM 15 /* Last local reg not saved on stack frame */
157#define L0_REGNUM 16 /* First local reg that's saved on stack frame
158 rather than in machine registers */
159#define I0_REGNUM 24 /* %i0 */
160#define FP_REGNUM 30 /* Contains address of executing stack frame */
161#define I7_REGNUM 31 /* Last local reg saved on stack frame */
162#define FP0_REGNUM 32 /* Floating point register 0 */
163#define Y_REGNUM 64 /* Temp register for multiplication, etc. */
164#define PS_REGNUM 65 /* Contains processor status */
165#define WIM_REGNUM 66 /* Window Invalid Mask (not really supported) */
166#define TBR_REGNUM 67 /* Trap Base Register (not really supported) */
167#define PC_REGNUM 68 /* Contains program counter */
168#define NPC_REGNUM 69 /* Contains next PC */
169#define FPS_REGNUM 70 /* Floating point status register */
170#define CPS_REGNUM 71 /* Coprocessor status register */
171
172/* Total amount of space needed to store our copies of the machine's
173 register state, the array `registers'. */
174#define REGISTER_BYTES (32*4+32*4+8*4)
175
176/* Index within `registers' of the first byte of the space for
177 register N. */
178/* ?? */
179#define REGISTER_BYTE(N) ((N)*4)
180
181/* The SPARC processor has register windows. */
182
183#define HAVE_REGISTER_WINDOWS
184
185/* Is this register part of the register window system? A yes answer
186 implies that 1) The name of this register will not be the same in
187 other frames, and 2) This register is automatically "saved" (out
188 registers shifting into ins counts) upon subroutine calls and thus
189 there is no need to search more than one stack frame for it. */
190
191#define REGISTER_IN_WINDOW_P(regnum) \
192 ((regnum) >= 8 && (regnum) < 32)
193
194/* Number of bytes of storage in the actual machine representation
195 for register N. */
196
197/* On the SPARC, all regs are 4 bytes. */
198
199#define REGISTER_RAW_SIZE(N) (4)
200
201/* Number of bytes of storage in the program's representation
202 for register N. */
203
204/* On the SPARC, all regs are 4 bytes. */
205
206#define REGISTER_VIRTUAL_SIZE(N) (4)
207
208/* Largest value REGISTER_RAW_SIZE can have. */
209
210#define MAX_REGISTER_RAW_SIZE 8
211
212/* Largest value REGISTER_VIRTUAL_SIZE can have. */
213
214#define MAX_REGISTER_VIRTUAL_SIZE 8
215
216/* Nonzero if register N requires conversion
217 from raw format to virtual format. */
218
219#define REGISTER_CONVERTIBLE(N) (0)
220
221/* Convert data from raw format for register REGNUM
222 to virtual format for register REGNUM. */
223
224#define REGISTER_CONVERT_TO_VIRTUAL(REGNUM,FROM,TO) \
51b57ded 225{ (void) memcpy ((TO), (FROM), 4); }
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226
227/* Convert data from virtual format for register REGNUM
228 to raw format for register REGNUM. */
229
230#define REGISTER_CONVERT_TO_RAW(REGNUM,FROM,TO) \
51b57ded 231{ (void) memcpy ((TO), (FROM), 4); }
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232
233/* Return the GDB type object for the "standard" data type
234 of data in register N. */
235
236#define REGISTER_VIRTUAL_TYPE(N) \
237 ((N) < 32 ? builtin_type_int : (N) < 64 ? builtin_type_float : \
238 builtin_type_int)
239
240/* Writing to %g0 is a noop (not an error or exception or anything like
241 that, however). */
242
243#define CANNOT_STORE_REGISTER(regno) ((regno) == G0_REGNUM)
244
245/* Store the address of the place in which to copy the structure the
246 subroutine will return. This is called from call_function. */
247
248#define STORE_STRUCT_RETURN(ADDR, SP) \
249 { target_write_memory ((SP)+(16*4), (char *)&(ADDR), 4); }
250
251/* Extract from an array REGBUF containing the (raw) register state
252 a function return value of type TYPE, and copy that, in virtual format,
253 into VALBUF. */
254
255#define EXTRACT_RETURN_VALUE(TYPE,REGBUF,VALBUF) \
256 { \
257 if (TYPE_CODE (TYPE) == TYPE_CODE_FLT) \
258 { \
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259 (void) memcpy ((VALBUF), \
260 ((int *)(REGBUF))+FP0_REGNUM, \
261 TYPE_LENGTH(TYPE)); \
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262 } \
263 else \
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264 (void) memcpy ((VALBUF), \
265 (char *)(REGBUF) + 4 * 8 + \
266 (TYPE_LENGTH(TYPE) >= 4 ? 0 : 4 - TYPE_LENGTH(TYPE)), \
267 TYPE_LENGTH(TYPE)); \
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268 }
269
270/* Write into appropriate registers a function return value
271 of type TYPE, given in virtual format. */
272/* On sparc, values are returned in register %o0. */
273#define STORE_RETURN_VALUE(TYPE,VALBUF) \
274 { \
275 if (TYPE_CODE (TYPE) == TYPE_CODE_FLT) \
276 /* Floating-point values are returned in the register pair */ \
277 /* formed by %f0 and %f1 (doubles are, anyway). */ \
278 write_register_bytes (REGISTER_BYTE (FP0_REGNUM), (VALBUF), \
279 TYPE_LENGTH (TYPE)); \
280 else \
281 /* Other values are returned in register %o0. */ \
282 write_register_bytes (REGISTER_BYTE (O0_REGNUM), (VALBUF), \
283 TYPE_LENGTH (TYPE)); \
284 }
285
286/* Extract from an array REGBUF containing the (raw) register state
287 the address in which a function should return its structure value,
288 as a CORE_ADDR (or an expression that can be used as one). */
289
290#define EXTRACT_STRUCT_VALUE_ADDRESS(REGBUF) \
e1ce8aa5 291 (sparc_extract_struct_value_address (REGBUF))
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292
293extern CORE_ADDR
294sparc_extract_struct_value_address PARAMS ((char [REGISTER_BYTES]));
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295
296\f
297/* Describe the pointer in each stack frame to the previous stack frame
298 (its caller). */
299
dd3b648e 300/* FRAME_CHAIN takes a frame's nominal address
5e2e79f8 301 and produces the frame's chain-pointer. */
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302
303/* In the case of the Sun 4, the frame-chain's nominal address
304 is held in the frame pointer register.
305
306 On the Sun4, the frame (in %fp) is %sp for the previous frame.
307 From the previous frame's %sp, we can find the previous frame's
308 %fp: it is in the save area just above the previous frame's %sp.
309
310 If we are setting up an arbitrary frame, we'll need to know where
311 it ends. Hence the following. This part of the frame cache
312 structure should be checked before it is assumed that this frame's
313 bottom is in the stack pointer.
314
315 If there isn't a frame below this one, the bottom of this frame is
316 in the stack pointer.
317
318 If there is a frame below this one, and the frame pointers are
319 identical, it's a leaf frame and the bottoms are the same also.
320
321 Otherwise the bottom of this frame is the top of the next frame. */
322
323#define EXTRA_FRAME_INFO FRAME_ADDR bottom;
a23075bc 324#define INIT_EXTRA_FRAME_INFO(fromleaf, fci) \
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325 (fci)->bottom = \
326 ((fci)->next ? \
327 ((fci)->frame == (fci)->next_frame ? \
328 (fci)->next->bottom : (fci)->next->frame) : \
329 read_register (SP_REGNUM));
330
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331#define FRAME_CHAIN(thisframe) (sparc_frame_chain (thisframe))
332CORE_ADDR sparc_frame_chain ();
dd3b648e 333
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334/* Define other aspects of the stack frame. */
335
336/* A macro that tells us whether the function invocation represented
337 by FI does not have a frame on the stack associated with it. If it
338 does not, FRAMELESS is set to 1, else 0. */
339#define FRAMELESS_FUNCTION_INVOCATION(FI, FRAMELESS) \
340 (FRAMELESS) = frameless_look_for_prologue(FI)
341
342/* Where is the PC for a specific frame */
343
344#define FRAME_SAVED_PC(FRAME) frame_saved_pc (FRAME)
345CORE_ADDR frame_saved_pc ();
346
347/* If the argument is on the stack, it will be here. */
348#define FRAME_ARGS_ADDRESS(fi) ((fi)->frame)
349
350#define FRAME_STRUCT_ARGS_ADDRESS(fi) ((fi)->frame)
351
352#define FRAME_LOCALS_ADDRESS(fi) ((fi)->frame)
353
354/* Set VAL to the number of args passed to frame described by FI.
355 Can set VAL to -1, meaning no way to tell. */
356
357/* We can't tell how many args there are
358 now that the C compiler delays popping them. */
359#define FRAME_NUM_ARGS(val,fi) (val = -1)
360
361/* Return number of bytes at start of arglist that are not really args. */
362
363#define FRAME_ARGS_SKIP 68
364
365/* Put here the code to store, into a struct frame_saved_regs,
366 the addresses of the saved registers of frame described by FRAME_INFO.
367 The actual code is in sparc-tdep.c so we can debug it sanely. */
368
369#define FRAME_FIND_SAVED_REGS(fi, frame_saved_regs) \
370 sparc_frame_find_saved_regs ((fi), &(frame_saved_regs))
371extern void sparc_frame_find_saved_regs ();
372\f
373/* Things needed for making the inferior call functions. */
374/*
375 * First of all, let me give my opinion of what the DUMMY_FRAME
376 * actually looks like.
377 *
378 * | |
379 * | |
380 * + - - - - - - - - - - - - - - - - +<-- fp (level 0)
381 * | |
382 * | |
383 * | |
384 * | |
385 * | Frame of innermost program |
386 * | function |
387 * | |
388 * | |
389 * | |
390 * | |
391 * | |
392 * |---------------------------------|<-- sp (level 0), fp (c)
393 * | |
394 * DUMMY | fp0-31 |
395 * | |
396 * | ------ |<-- fp - 0x80
397 * FRAME | g0-7 |<-- fp - 0xa0
398 * | i0-7 |<-- fp - 0xc0
399 * | other |<-- fp - 0xe0
400 * | ? |
401 * | ? |
402 * |---------------------------------|<-- sp' = fp - 0x140
403 * | |
404 * xcution start | |
405 * sp' + 0x94 -->| CALL_DUMMY (x code) |
406 * | |
407 * | |
408 * |---------------------------------|<-- sp'' = fp - 0x200
409 * | align sp to 8 byte boundary |
410 * | ==> args to fn <== |
411 * Room for | |
412 * i & l's + agg | CALL_DUMMY_STACK_ADJUST = 0x0x44|
413 * |---------------------------------|<-- final sp (variable)
414 * | |
415 * | Where function called will |
416 * | build frame. |
417 * | |
418 * | |
419 *
420 * I understand everything in this picture except what the space
421 * between fp - 0xe0 and fp - 0x140 is used for. Oh, and I don't
422 * understand why there's a large chunk of CALL_DUMMY that never gets
423 * executed (its function is superceeded by PUSH_DUMMY_FRAME; they
424 * are designed to do the same thing).
425 *
426 * PUSH_DUMMY_FRAME saves the registers above sp' and pushes the
427 * register file stack down one.
428 *
429 * call_function then writes CALL_DUMMY, pushes the args onto the
430 * stack, and adjusts the stack pointer.
431 *
432 * run_stack_dummy then starts execution (in the middle of
433 * CALL_DUMMY, as directed by call_function).
434 */
435
436/* Push an empty stack frame, to record the current PC, etc. */
437
438#define PUSH_DUMMY_FRAME sparc_push_dummy_frame ()
439#define POP_FRAME sparc_pop_frame ()
440
441void sparc_push_dummy_frame (), sparc_pop_frame ();
442/* This sequence of words is the instructions
443
444 save %sp,-0x140,%sp
445 std %f30,[%fp-0x08]
446 std %f28,[%fp-0x10]
447 std %f26,[%fp-0x18]
448 std %f24,[%fp-0x20]
449 std %f22,[%fp-0x28]
450 std %f20,[%fp-0x30]
451 std %f18,[%fp-0x38]
452 std %f16,[%fp-0x40]
453 std %f14,[%fp-0x48]
454 std %f12,[%fp-0x50]
455 std %f10,[%fp-0x58]
456 std %f8,[%fp-0x60]
457 std %f6,[%fp-0x68]
458 std %f4,[%fp-0x70]
459 std %f2,[%fp-0x78]
460 std %f0,[%fp-0x80]
461 std %g6,[%fp-0x88]
462 std %g4,[%fp-0x90]
463 std %g2,[%fp-0x98]
464 std %g0,[%fp-0xa0]
465 std %i6,[%fp-0xa8]
466 std %i4,[%fp-0xb0]
467 std %i2,[%fp-0xb8]
468 std %i0,[%fp-0xc0]
469 nop ! stcsr [%fp-0xc4]
470 nop ! stfsr [%fp-0xc8]
471 nop ! wr %npc,[%fp-0xcc]
472 nop ! wr %pc,[%fp-0xd0]
473 rd %tbr,%o0
474 st %o0,[%fp-0xd4]
475 rd %wim,%o1
476 st %o0,[%fp-0xd8]
477 rd %psr,%o0
478 st %o0,[%fp-0xdc]
479 rd %y,%o0
480 st %o0,[%fp-0xe0]
481
482 /..* The arguments are pushed at this point by GDB;
483 no code is needed in the dummy for this.
484 The CALL_DUMMY_START_OFFSET gives the position of
485 the following ld instruction. *../
486
487 ld [%sp+0x58],%o5
488 ld [%sp+0x54],%o4
489 ld [%sp+0x50],%o3
490 ld [%sp+0x4c],%o2
491 ld [%sp+0x48],%o1
492 call 0x00000000
493 ld [%sp+0x44],%o0
494 nop
495 ta 1
496 nop
497
498 note that this is 192 bytes, which is a multiple of 8 (not only 4) bytes.
499 note that the `call' insn is a relative, not an absolute call.
500 note that the `nop' at the end is needed to keep the trap from
501 clobbering things (if NPC pointed to garbage instead).
502
503We actually start executing at the `sethi', since the pushing of the
504registers (as arguments) is done by PUSH_DUMMY_FRAME. If this were
505real code, the arguments for the function called by the CALL would be
506pushed between the list of ST insns and the CALL, and we could allow
507it to execute through. But the arguments have to be pushed by GDB
508after the PUSH_DUMMY_FRAME is done, and we cannot allow these ST
509insns to be performed again, lest the registers saved be taken for
510arguments. */
511
512#define CALL_DUMMY { 0x9de3bee0, 0xfd3fbff8, 0xf93fbff0, 0xf53fbfe8, \
513 0xf13fbfe0, 0xed3fbfd8, 0xe93fbfd0, 0xe53fbfc8, \
514 0xe13fbfc0, 0xdd3fbfb8, 0xd93fbfb0, 0xd53fbfa8, \
515 0xd13fbfa0, 0xcd3fbf98, 0xc93fbf90, 0xc53fbf88, \
516 0xc13fbf80, 0xcc3fbf78, 0xc83fbf70, 0xc43fbf68, \
517 0xc03fbf60, 0xfc3fbf58, 0xf83fbf50, 0xf43fbf48, \
518 0xf03fbf40, 0x01000000, 0x01000000, 0x01000000, \
519 0x01000000, 0x91580000, 0xd027bf50, 0x93500000, \
520 0xd027bf4c, 0x91480000, 0xd027bf48, 0x91400000, \
521 0xd027bf44, 0xda03a058, 0xd803a054, 0xd603a050, \
522 0xd403a04c, 0xd203a048, 0x40000000, 0xd003a044, \
523 0x01000000, 0x91d02001, 0x01000000, 0x01000000}
524
525#define CALL_DUMMY_LENGTH 192
526
527#define CALL_DUMMY_START_OFFSET 148
528
529#define CALL_DUMMY_STACK_ADJUST 68
530
531/* Insert the specified number of args and function address
532 into a call sequence of the above form stored at DUMMYNAME.
533
534 For structs and unions, if the function was compiled with Sun cc,
535 it expects 'unimp' after the call. But gcc doesn't use that
536 (twisted) convention. So leave a nop there for gcc (FIX_CALL_DUMMY
537 can assume it is operating on a pristine CALL_DUMMY, not one that
538 has already been customized for a different function). */
539
540#define FIX_CALL_DUMMY(dummyname, pc, fun, nargs, args, type, gcc_p) \
541{ \
542 *(int *)((char *) dummyname+168) = (0x40000000|((fun-(pc+168))>>2)); \
543 if (!gcc_p \
544 && (TYPE_CODE (type) == TYPE_CODE_STRUCT \
545 || TYPE_CODE (type) == TYPE_CODE_UNION)) \
546 *(int *)((char *) dummyname+176) = (TYPE_LENGTH (type) & 0x1fff); \
547}
548
549\f
550/* Sparc has no reliable single step ptrace call */
551
552#define NO_SINGLE_STEP 1
553extern void single_step ();
554
555/* We need two arguments (in general) to the "info frame" command.
556 Note that the definition of this macro implies that there exists a
5259796b 557 function "setup_arbitrary_frame" in sparc-tdep.c */
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558
559#define FRAME_SPECIFICATION_DYADIC
560
561/* To print every pair of float registers as a double, we use this hook. */
562
563#define PRINT_REGISTER_HOOK(regno) \
564 if (((regno) >= FP0_REGNUM) \
565 && ((regno) < FP0_REGNUM + 32) \
566 && (0 == (regno & 1))) { \
567 char doublereg[8]; /* two float regs */ \
568 if (!read_relative_register_raw_bytes (i , doublereg ) \
569 && !read_relative_register_raw_bytes (i+1, doublereg+4)) { \
570 printf("\t"); \
571 print_floating (doublereg, builtin_type_double, stdout); \
572 } \
573 }
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