PR binutils/14444
[deliverable/binutils-gdb.git] / gdb / infcall.c
CommitLineData
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1/* Perform an inferior function call, for GDB, the GNU debugger.
2
0b302171 3 Copyright (C) 1986-2012 Free Software Foundation, Inc.
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4
5 This file is part of GDB.
6
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
a9762ec7 9 the Free Software Foundation; either version 3 of the License, or
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10 (at your option) any later version.
11
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.
16
17 You should have received a copy of the GNU General Public License
a9762ec7 18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
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19
20#include "defs.h"
21#include "breakpoint.h"
573cda03 22#include "tracepoint.h"
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23#include "target.h"
24#include "regcache.h"
25#include "inferior.h"
26#include "gdb_assert.h"
27#include "block.h"
28#include "gdbcore.h"
29#include "language.h"
9ab9195f 30#include "objfiles.h"
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31#include "gdbcmd.h"
32#include "command.h"
33#include "gdb_string.h"
b9362cc7 34#include "infcall.h"
96860204 35#include "dummy-frame.h"
a93c0eb6 36#include "ada-lang.h"
347bddb7 37#include "gdbthread.h"
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38#include "exceptions.h"
39
40/* If we can't find a function's name from its address,
41 we print this instead. */
42#define RAW_FUNCTION_ADDRESS_FORMAT "at 0x%s"
43#define RAW_FUNCTION_ADDRESS_SIZE (sizeof (RAW_FUNCTION_ADDRESS_FORMAT) \
44 + 2 * sizeof (CORE_ADDR))
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45
46/* NOTE: cagney/2003-04-16: What's the future of this code?
47
48 GDB needs an asynchronous expression evaluator, that means an
49 asynchronous inferior function call implementation, and that in
50 turn means restructuring the code so that it is event driven. */
51
52/* How you should pass arguments to a function depends on whether it
53 was defined in K&R style or prototype style. If you define a
54 function using the K&R syntax that takes a `float' argument, then
55 callers must pass that argument as a `double'. If you define the
56 function using the prototype syntax, then you must pass the
57 argument as a `float', with no promotion.
58
59 Unfortunately, on certain older platforms, the debug info doesn't
60 indicate reliably how each function was defined. A function type's
61 TYPE_FLAG_PROTOTYPED flag may be clear, even if the function was
62 defined in prototype style. When calling a function whose
63 TYPE_FLAG_PROTOTYPED flag is clear, GDB consults this flag to
64 decide what to do.
65
66 For modern targets, it is proper to assume that, if the prototype
67 flag is clear, that can be trusted: `float' arguments should be
68 promoted to `double'. For some older targets, if the prototype
69 flag is clear, that doesn't tell us anything. The default is to
70 trust the debug information; the user can override this behavior
71 with "set coerce-float-to-double 0". */
72
73static int coerce_float_to_double_p = 1;
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AC
74static void
75show_coerce_float_to_double_p (struct ui_file *file, int from_tty,
76 struct cmd_list_element *c, const char *value)
77{
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MS
78 fprintf_filtered (file,
79 _("Coercion of floats to doubles "
80 "when calling functions is %s.\n"),
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81 value);
82}
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83
84/* This boolean tells what gdb should do if a signal is received while
85 in a function called from gdb (call dummy). If set, gdb unwinds
86 the stack and restore the context to what as it was before the
87 call.
88
1777feb0 89 The default is to stop in the frame where the signal was received. */
04714b91 90
ef61f180 91static int unwind_on_signal_p = 0;
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92static void
93show_unwind_on_signal_p (struct ui_file *file, int from_tty,
94 struct cmd_list_element *c, const char *value)
95{
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96 fprintf_filtered (file,
97 _("Unwinding of stack if a signal is "
98 "received while in a call dummy is %s.\n"),
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99 value);
100}
101
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102/* This boolean tells what gdb should do if a std::terminate call is
103 made while in a function called from gdb (call dummy).
104 As the confines of a single dummy stack prohibit out-of-frame
105 handlers from handling a raised exception, and as out-of-frame
106 handlers are common in C++, this can lead to no handler being found
107 by the unwinder, and a std::terminate call. This is a false positive.
108 If set, gdb unwinds the stack and restores the context to what it
109 was before the call.
110
111 The default is to unwind the frame if a std::terminate call is
112 made. */
113
114static int unwind_on_terminating_exception_p = 1;
115
116static void
117show_unwind_on_terminating_exception_p (struct ui_file *file, int from_tty,
118 struct cmd_list_element *c,
119 const char *value)
120
121{
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122 fprintf_filtered (file,
123 _("Unwind stack if a C++ exception is "
124 "unhandled while in a call dummy is %s.\n"),
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125 value);
126}
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127
128/* Perform the standard coercions that are specified
a93c0eb6 129 for arguments to be passed to C or Ada functions.
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130
131 If PARAM_TYPE is non-NULL, it is the expected parameter type.
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132 IS_PROTOTYPED is non-zero if the function declaration is prototyped.
133 SP is the stack pointer were additional data can be pushed (updating
134 its value as needed). */
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135
136static struct value *
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137value_arg_coerce (struct gdbarch *gdbarch, struct value *arg,
138 struct type *param_type, int is_prototyped, CORE_ADDR *sp)
04714b91 139{
7788af6d 140 const struct builtin_type *builtin = builtin_type (gdbarch);
df407dfe 141 struct type *arg_type = check_typedef (value_type (arg));
52f0bd74 142 struct type *type
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143 = param_type ? check_typedef (param_type) : arg_type;
144
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145 /* Perform any Ada-specific coercion first. */
146 if (current_language->la_language == language_ada)
40bc484c 147 arg = ada_convert_actual (arg, type);
a93c0eb6 148
63092375
DJ
149 /* Force the value to the target if we will need its address. At
150 this point, we could allocate arguments on the stack instead of
151 calling malloc if we knew that their addresses would not be
152 saved by the called function. */
153 arg = value_coerce_to_target (arg);
154
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155 switch (TYPE_CODE (type))
156 {
157 case TYPE_CODE_REF:
fb933624
DJ
158 {
159 struct value *new_value;
160
161 if (TYPE_CODE (arg_type) == TYPE_CODE_REF)
b1af9e97 162 return value_cast_pointers (type, arg, 0);
fb933624
DJ
163
164 /* Cast the value to the reference's target type, and then
165 convert it back to a reference. This will issue an error
166 if the value was not previously in memory - in some cases
167 we should clearly be allowing this, but how? */
168 new_value = value_cast (TYPE_TARGET_TYPE (type), arg);
169 new_value = value_ref (new_value);
170 return new_value;
171 }
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172 case TYPE_CODE_INT:
173 case TYPE_CODE_CHAR:
174 case TYPE_CODE_BOOL:
175 case TYPE_CODE_ENUM:
176 /* If we don't have a prototype, coerce to integer type if necessary. */
177 if (!is_prototyped)
178 {
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UW
179 if (TYPE_LENGTH (type) < TYPE_LENGTH (builtin->builtin_int))
180 type = builtin->builtin_int;
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181 }
182 /* Currently all target ABIs require at least the width of an integer
183 type for an argument. We may have to conditionalize the following
184 type coercion for future targets. */
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185 if (TYPE_LENGTH (type) < TYPE_LENGTH (builtin->builtin_int))
186 type = builtin->builtin_int;
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187 break;
188 case TYPE_CODE_FLT:
189 if (!is_prototyped && coerce_float_to_double_p)
190 {
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191 if (TYPE_LENGTH (type) < TYPE_LENGTH (builtin->builtin_double))
192 type = builtin->builtin_double;
193 else if (TYPE_LENGTH (type) > TYPE_LENGTH (builtin->builtin_double))
194 type = builtin->builtin_long_double;
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195 }
196 break;
197 case TYPE_CODE_FUNC:
198 type = lookup_pointer_type (type);
199 break;
200 case TYPE_CODE_ARRAY:
201 /* Arrays are coerced to pointers to their first element, unless
202 they are vectors, in which case we want to leave them alone,
203 because they are passed by value. */
204 if (current_language->c_style_arrays)
205 if (!TYPE_VECTOR (type))
206 type = lookup_pointer_type (TYPE_TARGET_TYPE (type));
207 break;
208 case TYPE_CODE_UNDEF:
209 case TYPE_CODE_PTR:
210 case TYPE_CODE_STRUCT:
211 case TYPE_CODE_UNION:
212 case TYPE_CODE_VOID:
213 case TYPE_CODE_SET:
214 case TYPE_CODE_RANGE:
215 case TYPE_CODE_STRING:
216 case TYPE_CODE_BITSTRING:
217 case TYPE_CODE_ERROR:
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218 case TYPE_CODE_MEMBERPTR:
219 case TYPE_CODE_METHODPTR:
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220 case TYPE_CODE_METHOD:
221 case TYPE_CODE_COMPLEX:
222 default:
223 break;
224 }
225
226 return value_cast (type, arg);
227}
228
07be84bf
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229/* Return the return type of a function with its first instruction exactly at
230 the PC address. Return NULL otherwise. */
231
232static struct type *
233find_function_return_type (CORE_ADDR pc)
234{
235 struct symbol *sym = find_pc_function (pc);
236
237 if (sym != NULL && BLOCK_START (SYMBOL_BLOCK_VALUE (sym)) == pc
238 && SYMBOL_TYPE (sym) != NULL)
239 return TYPE_TARGET_TYPE (SYMBOL_TYPE (sym));
240
241 return NULL;
242}
243
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244/* Determine a function's address and its return type from its value.
245 Calls error() if the function is not valid for calling. */
246
a9fa03de 247CORE_ADDR
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248find_function_addr (struct value *function, struct type **retval_type)
249{
df407dfe 250 struct type *ftype = check_typedef (value_type (function));
50810684 251 struct gdbarch *gdbarch = get_type_arch (ftype);
7788af6d 252 struct type *value_type = NULL;
09b58708
JK
253 /* Initialize it just to avoid a GCC false warning. */
254 CORE_ADDR funaddr = 0;
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255
256 /* If it's a member function, just look at the function
257 part of it. */
258
259 /* Determine address to call. */
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260 if (TYPE_CODE (ftype) == TYPE_CODE_FUNC
261 || TYPE_CODE (ftype) == TYPE_CODE_METHOD)
262 funaddr = value_address (function);
263 else if (TYPE_CODE (ftype) == TYPE_CODE_PTR)
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264 {
265 funaddr = value_as_address (function);
266 ftype = check_typedef (TYPE_TARGET_TYPE (ftype));
267 if (TYPE_CODE (ftype) == TYPE_CODE_FUNC
268 || TYPE_CODE (ftype) == TYPE_CODE_METHOD)
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269 funaddr = gdbarch_convert_from_func_ptr_addr (gdbarch, funaddr,
270 &current_target);
04714b91 271 }
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272 if (TYPE_CODE (ftype) == TYPE_CODE_FUNC
273 || TYPE_CODE (ftype) == TYPE_CODE_METHOD)
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274 {
275 value_type = TYPE_TARGET_TYPE (ftype);
276
277 if (TYPE_GNU_IFUNC (ftype))
278 {
279 funaddr = gnu_ifunc_resolve_addr (gdbarch, funaddr);
280
281 /* Skip querying the function symbol if no RETVAL_TYPE has been
282 asked for. */
283 if (retval_type)
284 value_type = find_function_return_type (funaddr);
285 }
286 }
300f8e10 287 else if (TYPE_CODE (ftype) == TYPE_CODE_INT)
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288 {
289 /* Handle the case of functions lacking debugging info.
1777feb0 290 Their values are characters since their addresses are char. */
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291 if (TYPE_LENGTH (ftype) == 1)
292 funaddr = value_as_address (value_addr (function));
293 else
2bbe3cc1
DJ
294 {
295 /* Handle function descriptors lacking debug info. */
296 int found_descriptor = 0;
abbb1732 297
87bc73ea 298 funaddr = 0; /* pacify "gcc -Werror" */
2bbe3cc1
DJ
299 if (VALUE_LVAL (function) == lval_memory)
300 {
301 CORE_ADDR nfunaddr;
abbb1732 302
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DJ
303 funaddr = value_as_address (value_addr (function));
304 nfunaddr = funaddr;
50810684 305 funaddr = gdbarch_convert_from_func_ptr_addr (gdbarch, funaddr,
2bbe3cc1
DJ
306 &current_target);
307 if (funaddr != nfunaddr)
308 found_descriptor = 1;
309 }
310 if (!found_descriptor)
311 /* Handle integer used as address of a function. */
312 funaddr = (CORE_ADDR) value_as_long (function);
313 }
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314 }
315 else
8a3fe4f8 316 error (_("Invalid data type for function to be called."));
04714b91 317
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RC
318 if (retval_type != NULL)
319 *retval_type = value_type;
50810684 320 return funaddr + gdbarch_deprecated_function_start_offset (gdbarch);
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321}
322
d3712828
AC
323/* For CALL_DUMMY_ON_STACK, push a breakpoint sequence that the called
324 function returns to. */
7043d8dc
AC
325
326static CORE_ADDR
327push_dummy_code (struct gdbarch *gdbarch,
82585c72 328 CORE_ADDR sp, CORE_ADDR funaddr,
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AC
329 struct value **args, int nargs,
330 struct type *value_type,
e4fd649a
UW
331 CORE_ADDR *real_pc, CORE_ADDR *bp_addr,
332 struct regcache *regcache)
7043d8dc 333{
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MK
334 gdb_assert (gdbarch_push_dummy_code_p (gdbarch));
335
336 return gdbarch_push_dummy_code (gdbarch, sp, funaddr,
337 args, nargs, value_type, real_pc, bp_addr,
338 regcache);
7043d8dc
AC
339}
340
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341/* Fetch the name of the function at FUNADDR.
342 This is used in printing an error message for call_function_by_hand.
343 BUF is used to print FUNADDR in hex if the function name cannot be
344 determined. It must be large enough to hold formatted result of
345 RAW_FUNCTION_ADDRESS_FORMAT. */
346
347static const char *
348get_function_name (CORE_ADDR funaddr, char *buf, int buf_size)
349{
350 {
351 struct symbol *symbol = find_pc_function (funaddr);
abbb1732 352
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DE
353 if (symbol)
354 return SYMBOL_PRINT_NAME (symbol);
355 }
356
357 {
358 /* Try the minimal symbols. */
359 struct minimal_symbol *msymbol = lookup_minimal_symbol_by_pc (funaddr);
abbb1732 360
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DE
361 if (msymbol)
362 return SYMBOL_PRINT_NAME (msymbol);
363 }
364
365 {
366 char *tmp = xstrprintf (_(RAW_FUNCTION_ADDRESS_FORMAT),
367 hex_string (funaddr));
abbb1732 368
b89667eb
DE
369 gdb_assert (strlen (tmp) + 1 <= buf_size);
370 strcpy (buf, tmp);
371 xfree (tmp);
372 return buf;
373 }
374}
375
376/* Subroutine of call_function_by_hand to simplify it.
377 Start up the inferior and wait for it to stop.
378 Return the exception if there's an error, or an exception with
379 reason >= 0 if there's no error.
380
381 This is done inside a TRY_CATCH so the caller needn't worry about
382 thrown errors. The caller should rethrow if there's an error. */
383
384static struct gdb_exception
385run_inferior_call (struct thread_info *call_thread, CORE_ADDR real_pc)
386{
387 volatile struct gdb_exception e;
16c381f0 388 int saved_in_infcall = call_thread->control.in_infcall;
b89667eb 389 ptid_t call_thread_ptid = call_thread->ptid;
b89667eb 390
16c381f0 391 call_thread->control.in_infcall = 1;
c5a4d20b 392
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DE
393 clear_proceed_status ();
394
395 disable_watchpoints_before_interactive_call_start ();
16c381f0 396
1777feb0 397 /* We want stop_registers, please... */
16c381f0 398 call_thread->control.proceed_to_finish = 1;
b89667eb 399
b89667eb 400 TRY_CATCH (e, RETURN_MASK_ALL)
3dd5b83d 401 {
a493e3e2 402 proceed (real_pc, GDB_SIGNAL_0, 0);
3dd5b83d
PA
403
404 /* Inferior function calls are always synchronous, even if the
405 target supports asynchronous execution. Do here what
406 `proceed' itself does in sync mode. */
407 if (target_can_async_p () && is_running (inferior_ptid))
408 {
409 wait_for_inferior ();
410 normal_stop ();
411 }
412 }
b89667eb 413
c5a4d20b
PA
414 /* At this point the current thread may have changed. Refresh
415 CALL_THREAD as it could be invalid if its thread has exited. */
e09875d4 416 call_thread = find_thread_ptid (call_thread_ptid);
b89667eb 417
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DE
418 enable_watchpoints_after_interactive_call_stop ();
419
420 /* Call breakpoint_auto_delete on the current contents of the bpstat
421 of inferior call thread.
422 If all error()s out of proceed ended up calling normal_stop
423 (and perhaps they should; it already does in the special case
424 of error out of resume()), then we wouldn't need this. */
425 if (e.reason < 0)
426 {
c5a4d20b 427 if (call_thread != NULL)
16c381f0 428 breakpoint_auto_delete (call_thread->control.stop_bpstat);
b89667eb
DE
429 }
430
c5a4d20b 431 if (call_thread != NULL)
16c381f0 432 call_thread->control.in_infcall = saved_in_infcall;
c5a4d20b 433
b89667eb
DE
434 return e;
435}
436
aa7d318d
TT
437/* A cleanup function that calls delete_std_terminate_breakpoint. */
438static void
439cleanup_delete_std_terminate_breakpoint (void *ignore)
440{
441 delete_std_terminate_breakpoint ();
442}
443
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444/* All this stuff with a dummy frame may seem unnecessarily complicated
445 (why not just save registers in GDB?). The purpose of pushing a dummy
446 frame which looks just like a real frame is so that if you call a
447 function and then hit a breakpoint (get a signal, etc), "backtrace"
448 will look right. Whether the backtrace needs to actually show the
449 stack at the time the inferior function was called is debatable, but
450 it certainly needs to not display garbage. So if you are contemplating
451 making dummy frames be different from normal frames, consider that. */
452
453/* Perform a function call in the inferior.
454 ARGS is a vector of values of arguments (NARGS of them).
455 FUNCTION is a value, the function to be called.
456 Returns a value representing what the function returned.
457 May fail to return, if a breakpoint or signal is hit
458 during the execution of the function.
459
1777feb0 460 ARGS is modified to contain coerced values. */
04714b91
AC
461
462struct value *
463call_function_by_hand (struct value *function, int nargs, struct value **args)
464{
52f0bd74 465 CORE_ADDR sp;
41f1b697 466 struct type *values_type, *target_values_type;
18648a37 467 unsigned char struct_return = 0, hidden_first_param_p = 0;
04714b91 468 CORE_ADDR struct_addr = 0;
16c381f0 469 struct infcall_control_state *inf_status;
04714b91 470 struct cleanup *inf_status_cleanup;
16c381f0 471 struct infcall_suspend_state *caller_state;
04714b91 472 CORE_ADDR funaddr;
04714b91 473 CORE_ADDR real_pc;
df407dfe 474 struct type *ftype = check_typedef (value_type (function));
d585e13a 475 CORE_ADDR bp_addr;
96860204 476 struct frame_id dummy_id;
41f1b697 477 struct cleanup *args_cleanup;
0b9dfe2b
MD
478 struct frame_info *frame;
479 struct gdbarch *gdbarch;
aa7d318d 480 struct cleanup *terminate_bp_cleanup;
b89667eb
DE
481 ptid_t call_thread_ptid;
482 struct gdb_exception e;
b89667eb 483 char name_buf[RAW_FUNCTION_ADDRESS_SIZE];
04714b91 484
4c850810
DJ
485 if (TYPE_CODE (ftype) == TYPE_CODE_PTR)
486 ftype = check_typedef (TYPE_TARGET_TYPE (ftype));
487
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AC
488 if (!target_has_execution)
489 noprocess ();
490
573cda03
SS
491 if (get_traceframe_number () >= 0)
492 error (_("May not call functions while looking at trace frames."));
493
949dc678 494 if (execution_direction == EXEC_REVERSE)
c2949be0 495 error (_("Cannot call functions in reverse mode."));
949dc678 496
0b9dfe2b
MD
497 frame = get_current_frame ();
498 gdbarch = get_frame_arch (frame);
499
500 if (!gdbarch_push_dummy_call_p (gdbarch))
2e74121d 501 error (_("This target does not support function calls."));
a86c5fc9 502
b89667eb
DE
503 /* A cleanup for the inferior status.
504 This is only needed while we're preparing the inferior function call. */
16c381f0
JK
505 inf_status = save_infcall_control_state ();
506 inf_status_cleanup
507 = make_cleanup_restore_infcall_control_state (inf_status);
04714b91 508
b89667eb
DE
509 /* Save the caller's registers and other state associated with the
510 inferior itself so that they can be restored once the
96860204
AC
511 callee returns. To allow nested calls the registers are (further
512 down) pushed onto a dummy frame stack. Include a cleanup (which
513 is tossed once the regcache has been pushed). */
16c381f0
JK
514 caller_state = save_infcall_suspend_state ();
515 make_cleanup_restore_infcall_suspend_state (caller_state);
04714b91 516
04714b91 517 /* Ensure that the initial SP is correctly aligned. */
ebc7896c 518 {
0b9dfe2b 519 CORE_ADDR old_sp = get_frame_sp (frame);
abbb1732 520
0b9dfe2b 521 if (gdbarch_frame_align_p (gdbarch))
ebc7896c 522 {
0b9dfe2b 523 sp = gdbarch_frame_align (gdbarch, old_sp);
8b148df9
AC
524 /* NOTE: cagney/2003-08-13: Skip the "red zone". For some
525 ABIs, a function can use memory beyond the inner most stack
526 address. AMD64 called that region the "red zone". Skip at
527 least the "red zone" size before allocating any space on
528 the stack. */
0b9dfe2b
MD
529 if (gdbarch_inner_than (gdbarch, 1, 2))
530 sp -= gdbarch_frame_red_zone_size (gdbarch);
8b148df9 531 else
0b9dfe2b 532 sp += gdbarch_frame_red_zone_size (gdbarch);
8b148df9 533 /* Still aligned? */
0b9dfe2b 534 gdb_assert (sp == gdbarch_frame_align (gdbarch, sp));
ebc7896c
AC
535 /* NOTE: cagney/2002-09-18:
536
537 On a RISC architecture, a void parameterless generic dummy
538 frame (i.e., no parameters, no result) typically does not
539 need to push anything the stack and hence can leave SP and
c48a845b 540 FP. Similarly, a frameless (possibly leaf) function does
ebc7896c
AC
541 not push anything on the stack and, hence, that too can
542 leave FP and SP unchanged. As a consequence, a sequence of
543 void parameterless generic dummy frame calls to frameless
544 functions will create a sequence of effectively identical
545 frames (SP, FP and TOS and PC the same). This, not
546 suprisingly, results in what appears to be a stack in an
547 infinite loop --- when GDB tries to find a generic dummy
548 frame on the internal dummy frame stack, it will always
549 find the first one.
550
551 To avoid this problem, the code below always grows the
552 stack. That way, two dummy frames can never be identical.
553 It does burn a few bytes of stack but that is a small price
554 to pay :-). */
ebc7896c
AC
555 if (sp == old_sp)
556 {
0b9dfe2b 557 if (gdbarch_inner_than (gdbarch, 1, 2))
ebc7896c 558 /* Stack grows down. */
0b9dfe2b 559 sp = gdbarch_frame_align (gdbarch, old_sp - 1);
ebc7896c
AC
560 else
561 /* Stack grows up. */
0b9dfe2b 562 sp = gdbarch_frame_align (gdbarch, old_sp + 1);
ebc7896c 563 }
0e095b7e
JK
564 /* SP may have underflown address zero here from OLD_SP. Memory access
565 functions will probably fail in such case but that is a target's
566 problem. */
ebc7896c
AC
567 }
568 else
a59fe496
AC
569 /* FIXME: cagney/2002-09-18: Hey, you loose!
570
8b148df9
AC
571 Who knows how badly aligned the SP is!
572
573 If the generic dummy frame ends up empty (because nothing is
574 pushed) GDB won't be able to correctly perform back traces.
575 If a target is having trouble with backtraces, first thing to
1777feb0 576 do is add FRAME_ALIGN() to the architecture vector. If that
669fac23 577 fails, try dummy_id().
8b148df9
AC
578
579 If the ABI specifies a "Red Zone" (see the doco) the code
580 below will quietly trash it. */
ebc7896c
AC
581 sp = old_sp;
582 }
04714b91 583
df407dfe 584 funaddr = find_function_addr (function, &values_type);
7788af6d
UW
585 if (!values_type)
586 values_type = builtin_type (gdbarch)->builtin_int;
587
df407dfe 588 CHECK_TYPEDEF (values_type);
04714b91 589
41f1b697
DJ
590 /* Are we returning a value using a structure return (passing a
591 hidden argument pointing to storage) or a normal value return?
592 There are two cases: language-mandated structure return and
593 target ABI structure return. The variable STRUCT_RETURN only
594 describes the latter. The language version is handled by passing
595 the return location as the first parameter to the function,
596 even preceding "this". This is different from the target
597 ABI version, which is target-specific; for instance, on ia64
598 the first argument is passed in out0 but the hidden structure
599 return pointer would normally be passed in r8. */
600
18648a37 601 if (gdbarch_return_in_first_hidden_param_p (gdbarch, values_type))
41f1b697 602 {
18648a37 603 hidden_first_param_p = 1;
04714b91 604
41f1b697
DJ
605 /* Tell the target specific argument pushing routine not to
606 expect a value. */
48319d1f 607 target_values_type = builtin_type (gdbarch)->builtin_void;
41f1b697
DJ
608 }
609 else
610 {
6a3a010b 611 struct_return = using_struct_return (gdbarch, function, values_type);
41f1b697
DJ
612 target_values_type = values_type;
613 }
04714b91 614
7043d8dc
AC
615 /* Determine the location of the breakpoint (and possibly other
616 stuff) that the called function will return to. The SPARC, for a
617 function returning a structure or union, needs to make space for
618 not just the breakpoint but also an extra word containing the
619 size (?) of the structure being passed. */
620
0b9dfe2b 621 switch (gdbarch_call_dummy_location (gdbarch))
04714b91
AC
622 {
623 case ON_STACK:
a14dd77e
JK
624 {
625 const gdb_byte *bp_bytes;
626 CORE_ADDR bp_addr_as_address;
627 int bp_size;
628
629 /* Be careful BP_ADDR is in inferior PC encoding while
630 BP_ADDR_AS_ADDRESS is a plain memory address. */
631
632 sp = push_dummy_code (gdbarch, sp, funaddr, args, nargs,
633 target_values_type, &real_pc, &bp_addr,
634 get_current_regcache ());
635
636 /* Write a legitimate instruction at the point where the infcall
637 breakpoint is going to be inserted. While this instruction
638 is never going to be executed, a user investigating the
639 memory from GDB would see this instruction instead of random
640 uninitialized bytes. We chose the breakpoint instruction
641 as it may look as the most logical one to the user and also
642 valgrind 3.7.0 needs it for proper vgdb inferior calls.
643
644 If software breakpoints are unsupported for this target we
645 leave the user visible memory content uninitialized. */
646
647 bp_addr_as_address = bp_addr;
648 bp_bytes = gdbarch_breakpoint_from_pc (gdbarch, &bp_addr_as_address,
649 &bp_size);
650 if (bp_bytes != NULL)
651 write_memory (bp_addr_as_address, bp_bytes, bp_size);
652 }
7043d8dc 653 break;
5931a2fa
JK
654 case AT_ENTRY_POINT:
655 {
656 CORE_ADDR dummy_addr;
657
658 real_pc = funaddr;
659 dummy_addr = entry_point_address ();
a14dd77e 660
5931a2fa 661 /* A call dummy always consists of just a single breakpoint, so
a14dd77e
JK
662 its address is the same as the address of the dummy.
663
664 The actual breakpoint is inserted separatly so there is no need to
665 write that out. */
5931a2fa
JK
666 bp_addr = dummy_addr;
667 break;
668 }
04714b91 669 default:
e2e0b3e5 670 internal_error (__FILE__, __LINE__, _("bad switch"));
04714b91
AC
671 }
672
04714b91 673 if (nargs < TYPE_NFIELDS (ftype))
2e74121d 674 error (_("Too few arguments in function call."));
04714b91 675
ebc7896c
AC
676 {
677 int i;
abbb1732 678
ebc7896c
AC
679 for (i = nargs - 1; i >= 0; i--)
680 {
681 int prototyped;
682 struct type *param_type;
683
684 /* FIXME drow/2002-05-31: Should just always mark methods as
685 prototyped. Can we respect TYPE_VARARGS? Probably not. */
686 if (TYPE_CODE (ftype) == TYPE_CODE_METHOD)
687 prototyped = 1;
688 else if (i < TYPE_NFIELDS (ftype))
689 prototyped = TYPE_PROTOTYPED (ftype);
690 else
691 prototyped = 0;
692
693 if (i < TYPE_NFIELDS (ftype))
694 param_type = TYPE_FIELD_TYPE (ftype, i);
695 else
696 param_type = NULL;
41f1b697 697
7788af6d
UW
698 args[i] = value_arg_coerce (gdbarch, args[i],
699 param_type, prototyped, &sp);
ebc7896c 700
41f1b697
DJ
701 if (param_type != NULL && language_pass_by_reference (param_type))
702 args[i] = value_addr (args[i]);
ebc7896c
AC
703 }
704 }
04714b91 705
04714b91
AC
706 /* Reserve space for the return structure to be written on the
707 stack, if necessary. Make certain that the value is correctly
1777feb0 708 aligned. */
04714b91 709
18648a37 710 if (struct_return || hidden_first_param_p)
04714b91 711 {
df407dfe 712 int len = TYPE_LENGTH (values_type);
abbb1732 713
0b9dfe2b 714 if (gdbarch_inner_than (gdbarch, 1, 2))
04714b91
AC
715 {
716 /* Stack grows downward. Align STRUCT_ADDR and SP after
717 making space for the return value. */
718 sp -= len;
0b9dfe2b
MD
719 if (gdbarch_frame_align_p (gdbarch))
720 sp = gdbarch_frame_align (gdbarch, sp);
04714b91
AC
721 struct_addr = sp;
722 }
723 else
724 {
725 /* Stack grows upward. Align the frame, allocate space, and
1777feb0 726 then again, re-align the frame??? */
0b9dfe2b
MD
727 if (gdbarch_frame_align_p (gdbarch))
728 sp = gdbarch_frame_align (gdbarch, sp);
04714b91
AC
729 struct_addr = sp;
730 sp += len;
0b9dfe2b
MD
731 if (gdbarch_frame_align_p (gdbarch))
732 sp = gdbarch_frame_align (gdbarch, sp);
04714b91
AC
733 }
734 }
735
18648a37 736 if (hidden_first_param_p)
41f1b697
DJ
737 {
738 struct value **new_args;
739
740 /* Add the new argument to the front of the argument list. */
741 new_args = xmalloc (sizeof (struct value *) * (nargs + 1));
742 new_args[0] = value_from_pointer (lookup_pointer_type (values_type),
743 struct_addr);
744 memcpy (&new_args[1], &args[0], sizeof (struct value *) * nargs);
745 args = new_args;
746 nargs++;
747 args_cleanup = make_cleanup (xfree, args);
748 }
749 else
750 args_cleanup = make_cleanup (null_cleanup, NULL);
751
04714b91
AC
752 /* Create the dummy stack frame. Pass in the call dummy address as,
753 presumably, the ABI code knows where, in the call dummy, the
754 return address should be pointed. */
0b9dfe2b
MD
755 sp = gdbarch_push_dummy_call (gdbarch, function, get_current_regcache (),
756 bp_addr, nargs, args,
594f7785 757 sp, struct_return, struct_addr);
04714b91 758
41f1b697
DJ
759 do_cleanups (args_cleanup);
760
96860204
AC
761 /* Set up a frame ID for the dummy frame so we can pass it to
762 set_momentary_breakpoint. We need to give the breakpoint a frame
763 ID so that the breakpoint code can correctly re-identify the
764 dummy breakpoint. */
8241eaa6 765 /* Sanity. The exact same SP value is returned by PUSH_DUMMY_CALL,
669fac23 766 saved as the dummy-frame TOS, and used by dummy_id to form
8241eaa6 767 the frame ID's stack address. */
96860204 768 dummy_id = frame_id_build (sp, bp_addr);
04714b91 769
74cfe982
AC
770 /* Create a momentary breakpoint at the return address of the
771 inferior. That way it breaks when it returns. */
04714b91 772
74cfe982 773 {
e2e4d78b 774 struct breakpoint *bpt, *longjmp_b;
74cfe982 775 struct symtab_and_line sal;
abbb1732 776
74cfe982 777 init_sal (&sal); /* initialize to zeroes */
6c95b8df 778 sal.pspace = current_program_space;
74cfe982
AC
779 sal.pc = bp_addr;
780 sal.section = find_pc_overlay (sal.pc);
8241eaa6
AC
781 /* Sanity. The exact same SP value is returned by
782 PUSH_DUMMY_CALL, saved as the dummy-frame TOS, and used by
669fac23 783 dummy_id to form the frame ID's stack address. */
a6d9a66e 784 bpt = set_momentary_breakpoint (gdbarch, sal, dummy_id, bp_call_dummy);
c70a6932
JK
785
786 /* set_momentary_breakpoint invalidates FRAME. */
787 frame = NULL;
788
74cfe982 789 bpt->disposition = disp_del;
e2e4d78b
JK
790 gdb_assert (bpt->related_breakpoint == bpt);
791
792 longjmp_b = set_longjmp_breakpoint_for_call_dummy ();
793 if (longjmp_b)
794 {
795 /* Link BPT into the chain of LONGJMP_B. */
796 bpt->related_breakpoint = longjmp_b;
797 while (longjmp_b->related_breakpoint != bpt->related_breakpoint)
798 longjmp_b = longjmp_b->related_breakpoint;
799 longjmp_b->related_breakpoint = bpt;
800 }
74cfe982 801 }
04714b91 802
7cd1089b
PM
803 /* Create a breakpoint in std::terminate.
804 If a C++ exception is raised in the dummy-frame, and the
805 exception handler is (normally, and expected to be) out-of-frame,
806 the default C++ handler will (wrongly) be called in an inferior
807 function call. This is wrong, as an exception can be normally
808 and legally handled out-of-frame. The confines of the dummy frame
809 prevent the unwinder from finding the correct handler (or any
810 handler, unless it is in-frame). The default handler calls
811 std::terminate. This will kill the inferior. Assert that
812 terminate should never be called in an inferior function
813 call. Place a momentary breakpoint in the std::terminate function
814 and if triggered in the call, rewind. */
815 if (unwind_on_terminating_exception_p)
aa7d318d 816 set_std_terminate_breakpoint ();
7cd1089b 817
96860204
AC
818 /* Everything's ready, push all the info needed to restore the
819 caller (and identify the dummy-frame) onto the dummy-frame
820 stack. */
b89667eb
DE
821 dummy_frame_push (caller_state, &dummy_id);
822
823 /* Discard both inf_status and caller_state cleanups.
824 From this point on we explicitly restore the associated state
825 or discard it. */
826 discard_cleanups (inf_status_cleanup);
96860204 827
7cd1089b 828 /* Register a clean-up for unwind_on_terminating_exception_breakpoint. */
aa7d318d
TT
829 terminate_bp_cleanup = make_cleanup (cleanup_delete_std_terminate_breakpoint,
830 NULL);
7cd1089b 831
96860204
AC
832 /* - SNIP - SNIP - SNIP - SNIP - SNIP - SNIP - SNIP - SNIP - SNIP -
833 If you're looking to implement asynchronous dummy-frames, then
834 just below is the place to chop this function in two.. */
835
b89667eb
DE
836 /* TP is invalid after run_inferior_call returns, so enclose this
837 in a block so that it's only in scope during the time it's valid. */
74cfe982 838 {
32400beb 839 struct thread_info *tp = inferior_thread ();
74cfe982 840
b89667eb
DE
841 /* Save this thread's ptid, we need it later but the thread
842 may have exited. */
843 call_thread_ptid = tp->ptid;
74cfe982 844
b89667eb 845 /* Run the inferior until it stops. */
f5871ec0 846
b89667eb 847 e = run_inferior_call (tp, real_pc);
52557533 848 }
04714b91 849
b89667eb
DE
850 /* Rethrow an error if we got one trying to run the inferior. */
851
852 if (e.reason < 0)
853 {
854 const char *name = get_function_name (funaddr,
855 name_buf, sizeof (name_buf));
856
16c381f0 857 discard_infcall_control_state (inf_status);
b89667eb
DE
858
859 /* We could discard the dummy frame here if the program exited,
860 but it will get garbage collected the next time the program is
861 run anyway. */
862
863 switch (e.reason)
864 {
865 case RETURN_ERROR:
ac74f770
MS
866 throw_error (e.error, _("%s\n\
867An error occurred while in a function called from GDB.\n\
868Evaluation of the expression containing the function\n\
869(%s) will be abandoned.\n\
870When the function is done executing, GDB will silently stop."),
b89667eb
DE
871 e.message, name);
872 case RETURN_QUIT:
873 default:
874 throw_exception (e);
875 }
876 }
877
878 /* If the program has exited, or we stopped at a different thread,
879 exit and inform the user. */
880
de04a248
DE
881 if (! target_has_execution)
882 {
b89667eb
DE
883 const char *name = get_function_name (funaddr,
884 name_buf, sizeof (name_buf));
885
886 /* If we try to restore the inferior status,
de04a248 887 we'll crash as the inferior is no longer running. */
16c381f0 888 discard_infcall_control_state (inf_status);
b89667eb
DE
889
890 /* We could discard the dummy frame here given that the program exited,
891 but it will get garbage collected the next time the program is
892 run anyway. */
893
3e43a32a
MS
894 error (_("The program being debugged exited while in a function "
895 "called from GDB.\n"
896 "Evaluation of the expression containing the function\n"
897 "(%s) will be abandoned."),
b89667eb
DE
898 name);
899 }
900
901 if (! ptid_equal (call_thread_ptid, inferior_ptid))
902 {
903 const char *name = get_function_name (funaddr,
904 name_buf, sizeof (name_buf));
905
906 /* We've switched threads. This can happen if another thread gets a
907 signal or breakpoint while our thread was running.
908 There's no point in restoring the inferior status,
909 we're in a different thread. */
16c381f0 910 discard_infcall_control_state (inf_status);
b89667eb
DE
911 /* Keep the dummy frame record, if the user switches back to the
912 thread with the hand-call, we'll need it. */
913 if (stopped_by_random_signal)
ac74f770
MS
914 error (_("\
915The program received a signal in another thread while\n\
916making a function call from GDB.\n\
917Evaluation of the expression containing the function\n\
918(%s) will be abandoned.\n\
919When the function is done executing, GDB will silently stop."),
b89667eb
DE
920 name);
921 else
ac74f770
MS
922 error (_("\
923The program stopped in another thread while making a function call from GDB.\n\
924Evaluation of the expression containing the function\n\
925(%s) will be abandoned.\n\
926When the function is done executing, GDB will silently stop."),
b89667eb 927 name);
de04a248
DE
928 }
929
aa7d318d 930 if (stopped_by_random_signal || stop_stack_dummy != STOP_STACK_DUMMY)
52557533 931 {
b89667eb
DE
932 const char *name = get_function_name (funaddr,
933 name_buf, sizeof (name_buf));
934
52557533
AC
935 if (stopped_by_random_signal)
936 {
937 /* We stopped inside the FUNCTION because of a random
938 signal. Further execution of the FUNCTION is not
1777feb0 939 allowed. */
04714b91 940
52557533
AC
941 if (unwind_on_signal_p)
942 {
1777feb0 943 /* The user wants the context restored. */
52557533
AC
944
945 /* We must get back to the frame we were before the
b89667eb
DE
946 dummy call. */
947 dummy_frame_pop (dummy_id);
948
949 /* We also need to restore inferior status to that before the
950 dummy call. */
16c381f0 951 restore_infcall_control_state (inf_status);
04714b91 952
52557533
AC
953 /* FIXME: Insert a bunch of wrap_here; name can be very
954 long if it's a C++ name with arguments and stuff. */
ac74f770
MS
955 error (_("\
956The program being debugged was signaled while in a function called from GDB.\n\
957GDB has restored the context to what it was before the call.\n\
958To change this behavior use \"set unwindonsignal off\".\n\
959Evaluation of the expression containing the function\n\
960(%s) will be abandoned."),
52557533
AC
961 name);
962 }
963 else
964 {
965 /* The user wants to stay in the frame where we stopped
b89667eb
DE
966 (default).
967 Discard inferior status, we're not at the same point
968 we started at. */
16c381f0 969 discard_infcall_control_state (inf_status);
b89667eb 970
52557533
AC
971 /* FIXME: Insert a bunch of wrap_here; name can be very
972 long if it's a C++ name with arguments and stuff. */
ac74f770
MS
973 error (_("\
974The program being debugged was signaled while in a function called from GDB.\n\
975GDB remains in the frame where the signal was received.\n\
976To change this behavior use \"set unwindonsignal on\".\n\
977Evaluation of the expression containing the function\n\
978(%s) will be abandoned.\n\
979When the function is done executing, GDB will silently stop."),
52557533
AC
980 name);
981 }
982 }
04714b91 983
aa7d318d 984 if (stop_stack_dummy == STOP_STD_TERMINATE)
52557533 985 {
aa7d318d
TT
986 /* We must get back to the frame we were before the dummy
987 call. */
988 dummy_frame_pop (dummy_id);
7cd1089b 989
aa7d318d
TT
990 /* We also need to restore inferior status to that before
991 the dummy call. */
16c381f0 992 restore_infcall_control_state (inf_status);
aa7d318d 993
ac74f770
MS
994 error (_("\
995The program being debugged entered a std::terminate call, most likely\n\
996caused by an unhandled C++ exception. GDB blocked this call in order\n\
997to prevent the program from being terminated, and has restored the\n\
998context to its original state before the call.\n\
999To change this behaviour use \"set unwind-on-terminating-exception off\".\n\
1000Evaluation of the expression containing the function (%s)\n\
1001will be abandoned."),
aa7d318d
TT
1002 name);
1003 }
1004 else if (stop_stack_dummy == STOP_NONE)
1005 {
1006
b89667eb
DE
1007 /* We hit a breakpoint inside the FUNCTION.
1008 Keep the dummy frame, the user may want to examine its state.
1009 Discard inferior status, we're not at the same point
1010 we started at. */
16c381f0 1011 discard_infcall_control_state (inf_status);
b89667eb 1012
52557533
AC
1013 /* The following error message used to say "The expression
1014 which contained the function call has been discarded."
1015 It is a hard concept to explain in a few words. Ideally,
1016 GDB would be able to resume evaluation of the expression
1017 when the function finally is done executing. Perhaps
1018 someday this will be implemented (it would not be easy). */
1019 /* FIXME: Insert a bunch of wrap_here; name can be very long if it's
1020 a C++ name with arguments and stuff. */
ac74f770
MS
1021 error (_("\
1022The program being debugged stopped while in a function called from GDB.\n\
1023Evaluation of the expression containing the function\n\
1024(%s) will be abandoned.\n\
1025When the function is done executing, GDB will silently stop."),
b89667eb 1026 name);
52557533
AC
1027 }
1028
1029 /* The above code errors out, so ... */
e2e0b3e5 1030 internal_error (__FILE__, __LINE__, _("... should not be here"));
52557533 1031 }
04714b91 1032
aa7d318d 1033 do_cleanups (terminate_bp_cleanup);
2f2da8f6 1034
b89667eb
DE
1035 /* If we get here the called FUNCTION ran to completion,
1036 and the dummy frame has already been popped. */
74cfe982 1037
44e5158b 1038 {
d37346f0
DJ
1039 struct address_space *aspace = get_regcache_aspace (stop_registers);
1040 struct regcache *retbuf = regcache_xmalloc (gdbarch, aspace);
b89667eb 1041 struct cleanup *retbuf_cleanup = make_cleanup_regcache_xfree (retbuf);
1a4d7a36
MK
1042 struct value *retval = NULL;
1043
b89667eb
DE
1044 regcache_cpy_no_passthrough (retbuf, stop_registers);
1045
1046 /* Inferior call is successful. Restore the inferior status.
1047 At this stage, leave the RETBUF alone. */
16c381f0 1048 restore_infcall_control_state (inf_status);
b89667eb
DE
1049
1050 /* Figure out the value returned by the function. */
81b4675a 1051 retval = allocate_value (values_type);
b89667eb 1052
18648a37 1053 if (hidden_first_param_p)
81b4675a
UW
1054 read_value_memory (retval, 0, 1, struct_addr,
1055 value_contents_raw (retval),
1056 TYPE_LENGTH (values_type));
1057 else if (TYPE_CODE (target_values_type) != TYPE_CODE_VOID)
44e5158b 1058 {
1a4d7a36
MK
1059 /* If the function returns void, don't bother fetching the
1060 return value. */
6a3a010b
MR
1061 switch (gdbarch_return_value (gdbarch, function, target_values_type,
1062 NULL, NULL, NULL))
1a4d7a36
MK
1063 {
1064 case RETURN_VALUE_REGISTER_CONVENTION:
1065 case RETURN_VALUE_ABI_RETURNS_ADDRESS:
1066 case RETURN_VALUE_ABI_PRESERVES_ADDRESS:
6a3a010b 1067 gdbarch_return_value (gdbarch, function, values_type,
c055b101 1068 retbuf, value_contents_raw (retval), NULL);
1a4d7a36
MK
1069 break;
1070 case RETURN_VALUE_STRUCT_CONVENTION:
81b4675a
UW
1071 read_value_memory (retval, 0, 1, struct_addr,
1072 value_contents_raw (retval),
1073 TYPE_LENGTH (values_type));
1a4d7a36
MK
1074 break;
1075 }
1076 }
1077
44e5158b 1078 do_cleanups (retbuf_cleanup);
1a4d7a36 1079
b89667eb 1080 gdb_assert (retval);
44e5158b
AC
1081 return retval;
1082 }
04714b91 1083}
1a4d7a36 1084\f
04714b91 1085
1a4d7a36 1086/* Provide a prototype to silence -Wmissing-prototypes. */
04714b91
AC
1087void _initialize_infcall (void);
1088
1089void
1090_initialize_infcall (void)
1091{
1092 add_setshow_boolean_cmd ("coerce-float-to-double", class_obscure,
7915a72c
AC
1093 &coerce_float_to_double_p, _("\
1094Set coercion of floats to doubles when calling functions."), _("\
1095Show coercion of floats to doubles when calling functions"), _("\
04714b91
AC
1096Variables of type float should generally be converted to doubles before\n\
1097calling an unprototyped function, and left alone when calling a prototyped\n\
1098function. However, some older debug info formats do not provide enough\n\
1099information to determine that a function is prototyped. If this flag is\n\
1100set, GDB will perform the conversion for a function it considers\n\
1101unprototyped.\n\
7915a72c 1102The default is to perform the conversion.\n"),
2c5b56ce 1103 NULL,
920d2a44 1104 show_coerce_float_to_double_p,
2c5b56ce 1105 &setlist, &showlist);
04714b91
AC
1106
1107 add_setshow_boolean_cmd ("unwindonsignal", no_class,
7915a72c
AC
1108 &unwind_on_signal_p, _("\
1109Set unwinding of stack if a signal is received while in a call dummy."), _("\
1110Show unwinding of stack if a signal is received while in a call dummy."), _("\
04714b91
AC
1111The unwindonsignal lets the user determine what gdb should do if a signal\n\
1112is received while in a function called from gdb (call dummy). If set, gdb\n\
1113unwinds the stack and restore the context to what as it was before the call.\n\
7915a72c 1114The default is to stop in the frame where the signal was received."),
2c5b56ce 1115 NULL,
920d2a44 1116 show_unwind_on_signal_p,
2c5b56ce 1117 &setlist, &showlist);
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1118
1119 add_setshow_boolean_cmd ("unwind-on-terminating-exception", no_class,
1120 &unwind_on_terminating_exception_p, _("\
1121Set unwinding of stack if std::terminate is called while in call dummy."), _("\
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1122Show unwinding of stack if std::terminate() is called while in a call dummy."),
1123 _("\
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1124The unwind on terminating exception flag lets the user determine\n\
1125what gdb should do if a std::terminate() call is made from the\n\
1126default exception handler. If set, gdb unwinds the stack and restores\n\
1127the context to what it was before the call. If unset, gdb allows the\n\
1128std::terminate call to proceed.\n\
1129The default is to unwind the frame."),
1130 NULL,
1131 show_unwind_on_terminating_exception_p,
1132 &setlist, &showlist);
1133
04714b91 1134}
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