Protoization.
[deliverable/binutils-gdb.git] / gdb / remote-vx.c
1 /* Memory-access and commands for remote VxWorks processes, for GDB.
2 Copyright (C) 1990-95, 1997-98, 1999 Free Software Foundation, Inc.
3 Contributed by Wind River Systems and Cygnus Support.
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
9 the Free Software Foundation; either version 2 of the License, or
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
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. */
21
22 #include "defs.h"
23 #include "frame.h"
24 #include "inferior.h"
25 #include "gdb_wait.h"
26 #include "target.h"
27 #include "gdbcore.h"
28 #include "command.h"
29 #include "symtab.h"
30 #include "complaints.h"
31 #include "gdbcmd.h"
32 #include "bfd.h" /* Required by objfiles.h. */
33 #include "symfile.h" /* Required by objfiles.h. */
34 #include "objfiles.h"
35 #include "gdb-stabs.h"
36
37 #include "gdb_string.h"
38 #include <errno.h>
39 #include <signal.h>
40 #include <fcntl.h>
41 #include <sys/types.h>
42 #include <sys/socket.h>
43 #define malloc bogon_malloc /* Sun claims "char *malloc()" not void * */
44 #define free bogon_free /* Sun claims "int free()" not void */
45 #define realloc bogon_realloc /* Sun claims "char *realloc()", not void * */
46 #include <rpc/rpc.h>
47 #undef malloc
48 #undef free
49 #undef realloc
50 #include <sys/time.h> /* UTek's <rpc/rpc.h> doesn't #incl this */
51 #include <netdb.h>
52 #include "vx-share/ptrace.h"
53 #include "vx-share/xdr_ptrace.h"
54 #include "vx-share/xdr_ld.h"
55 #include "vx-share/xdr_rdb.h"
56 #include "vx-share/dbgRpcLib.h"
57
58 #include <symtab.h>
59
60 /* Maximum number of bytes to transfer in a single
61 PTRACE_{READ,WRITE}DATA request. */
62 #define VX_MEMXFER_MAX 4096
63
64 extern void vx_read_register ();
65 extern void vx_write_register ();
66 extern void symbol_file_command ();
67 extern int stop_soon_quietly; /* for wait_for_inferior */
68
69 static int net_step ();
70 static int net_ptrace_clnt_call (); /* Forward decl */
71 static enum clnt_stat net_clnt_call (); /* Forward decl */
72
73 /* Target ops structure for accessing memory and such over the net */
74
75 static struct target_ops vx_ops;
76
77 /* Target ops structure for accessing VxWorks child processes over the net */
78
79 static struct target_ops vx_run_ops;
80
81 /* Saved name of target host and called function for "info files".
82 Both malloc'd. */
83
84 static char *vx_host;
85 static char *vx_running; /* Called function */
86
87 /* Nonzero means target that is being debugged remotely has a floating
88 point processor. */
89
90 int target_has_fp;
91
92 /* Default error message when the network is forking up. */
93
94 static const char rpcerr[] = "network target debugging: rpc error";
95
96 CLIENT *pClient; /* client used in net debugging */
97 static int ptraceSock = RPC_ANYSOCK;
98
99 enum clnt_stat net_clnt_call ();
100 static void parse_args ();
101
102 static struct timeval rpcTimeout =
103 {10, 0};
104
105 static char *skip_white_space ();
106 static char *find_white_space ();
107
108 /* Tell the VxWorks target system to download a file.
109 The load addresses of the text, data, and bss segments are
110 stored in *pTextAddr, *pDataAddr, and *pBssAddr (respectively).
111 Returns 0 for success, -1 for failure. */
112
113 static int
114 net_load (char *filename, CORE_ADDR *pTextAddr, CORE_ADDR *pDataAddr,
115 CORE_ADDR *pBssAddr)
116 {
117 enum clnt_stat status;
118 struct ldfile ldstruct;
119 struct timeval load_timeout;
120
121 memset ((char *) &ldstruct, '\0', sizeof (ldstruct));
122
123 /* We invoke clnt_call () here directly, instead of through
124 net_clnt_call (), because we need to set a large timeout value.
125 The load on the target side can take quite a while, easily
126 more than 10 seconds. The user can kill this call by typing
127 CTRL-C if there really is a problem with the load.
128
129 Do not change the tv_sec value without checking -- select() imposes
130 a limit of 10**8 on it for no good reason that I can see... */
131
132 load_timeout.tv_sec = 99999999; /* A large number, effectively inf. */
133 load_timeout.tv_usec = 0;
134
135 status = clnt_call (pClient, VX_LOAD, xdr_wrapstring, &filename, xdr_ldfile,
136 &ldstruct, load_timeout);
137
138 if (status == RPC_SUCCESS)
139 {
140 if (*ldstruct.name == 0) /* load failed on VxWorks side */
141 return -1;
142 *pTextAddr = ldstruct.txt_addr;
143 *pDataAddr = ldstruct.data_addr;
144 *pBssAddr = ldstruct.bss_addr;
145 return 0;
146 }
147 else
148 return -1;
149 }
150
151 /* returns 0 if successful, errno if RPC failed or VxWorks complains. */
152
153 static int
154 net_break (int addr, u_long procnum)
155 {
156 enum clnt_stat status;
157 int break_status;
158 Rptrace ptrace_in; /* XXX This is stupid. It doesn't need to be a ptrace
159 structure. How about something smaller? */
160
161 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
162 break_status = 0;
163
164 ptrace_in.addr = addr;
165 ptrace_in.pid = inferior_pid;
166
167 status = net_clnt_call (procnum, xdr_rptrace, &ptrace_in, xdr_int,
168 &break_status);
169
170 if (status != RPC_SUCCESS)
171 return errno;
172
173 if (break_status == -1)
174 return ENOMEM;
175 return break_status; /* probably (FIXME) zero */
176 }
177
178 /* returns 0 if successful, errno otherwise */
179
180 static int
181 vx_insert_breakpoint (int addr)
182 {
183 return net_break (addr, VX_BREAK_ADD);
184 }
185
186 /* returns 0 if successful, errno otherwise */
187
188 static int
189 vx_remove_breakpoint (int addr)
190 {
191 return net_break (addr, VX_BREAK_DELETE);
192 }
193
194 /* Start an inferior process and sets inferior_pid to its pid.
195 EXEC_FILE is the file to run.
196 ALLARGS is a string containing the arguments to the program.
197 ENV is the environment vector to pass.
198 Returns process id. Errors reported with error().
199 On VxWorks, we ignore exec_file. */
200
201 static void
202 vx_create_inferior (char *exec_file, char *args, char **env)
203 {
204 enum clnt_stat status;
205 arg_array passArgs;
206 TASK_START taskStart;
207
208 memset ((char *) &passArgs, '\0', sizeof (passArgs));
209 memset ((char *) &taskStart, '\0', sizeof (taskStart));
210
211 /* parse arguments, put them in passArgs */
212
213 parse_args (args, &passArgs);
214
215 if (passArgs.arg_array_len == 0)
216 error ("You must specify a function name to run, and arguments if any");
217
218 status = net_clnt_call (PROCESS_START, xdr_arg_array, &passArgs,
219 xdr_TASK_START, &taskStart);
220
221 if ((status != RPC_SUCCESS) || (taskStart.status == -1))
222 error ("Can't create process on remote target machine");
223
224 /* Save the name of the running function */
225 vx_running = savestring (passArgs.arg_array_val[0],
226 strlen (passArgs.arg_array_val[0]));
227
228 push_target (&vx_run_ops);
229 inferior_pid = taskStart.pid;
230
231 /* We will get a trace trap after one instruction.
232 Insert breakpoints and continue. */
233
234 init_wait_for_inferior ();
235
236 /* Set up the "saved terminal modes" of the inferior
237 based on what modes we are starting it with. */
238 target_terminal_init ();
239
240 /* Install inferior's terminal modes. */
241 target_terminal_inferior ();
242
243 stop_soon_quietly = 1;
244 wait_for_inferior (); /* Get the task spawn event */
245 stop_soon_quietly = 0;
246
247 /* insert_step_breakpoint (); FIXME, do we need this? */
248 proceed (-1, TARGET_SIGNAL_DEFAULT, 0);
249 }
250
251 /* Fill ARGSTRUCT in argc/argv form with the arguments from the
252 argument string ARGSTRING. */
253
254 static void
255 parse_args (register char *arg_string, arg_array *arg_struct)
256 {
257 register int arg_count = 0; /* number of arguments */
258 register int arg_index = 0;
259 register char *p0;
260
261 memset ((char *) arg_struct, '\0', sizeof (arg_array));
262
263 /* first count how many arguments there are */
264
265 p0 = arg_string;
266 while (*p0 != '\0')
267 {
268 if (*(p0 = skip_white_space (p0)) == '\0')
269 break;
270 p0 = find_white_space (p0);
271 arg_count++;
272 }
273
274 arg_struct->arg_array_len = arg_count;
275 arg_struct->arg_array_val = (char **) xmalloc ((arg_count + 1)
276 * sizeof (char *));
277
278 /* now copy argument strings into arg_struct. */
279
280 while (*(arg_string = skip_white_space (arg_string)))
281 {
282 p0 = find_white_space (arg_string);
283 arg_struct->arg_array_val[arg_index++] = savestring (arg_string,
284 p0 - arg_string);
285 arg_string = p0;
286 }
287
288 arg_struct->arg_array_val[arg_count] = NULL;
289 }
290
291 /* Advance a string pointer across whitespace and return a pointer
292 to the first non-white character. */
293
294 static char *
295 skip_white_space (register char *p)
296 {
297 while (*p == ' ' || *p == '\t')
298 p++;
299 return p;
300 }
301
302 /* Search for the first unquoted whitespace character in a string.
303 Returns a pointer to the character, or to the null terminator
304 if no whitespace is found. */
305
306 static char *
307 find_white_space (register char *p)
308 {
309 register int c;
310
311 while ((c = *p) != ' ' && c != '\t' && c)
312 {
313 if (c == '\'' || c == '"')
314 {
315 while (*++p != c && *p)
316 {
317 if (*p == '\\')
318 p++;
319 }
320 if (!*p)
321 break;
322 }
323 p++;
324 }
325 return p;
326 }
327
328 /* Poll the VxWorks target system for an event related
329 to the debugged task.
330 Returns -1 if remote wait failed, task status otherwise. */
331
332 static int
333 net_wait (RDB_EVENT *pEvent)
334 {
335 int pid;
336 enum clnt_stat status;
337
338 memset ((char *) pEvent, '\0', sizeof (RDB_EVENT));
339
340 pid = inferior_pid;
341 status = net_clnt_call (PROCESS_WAIT, xdr_int, &pid, xdr_RDB_EVENT,
342 pEvent);
343
344 /* return (status == RPC_SUCCESS)? pEvent->status: -1; */
345 if (status == RPC_SUCCESS)
346 return ((pEvent->status) ? 1 : 0);
347 else if (status == RPC_TIMEDOUT)
348 return (1);
349 else
350 return (-1);
351 }
352
353 /* Suspend the remote task.
354 Returns -1 if suspend fails on target system, 0 otherwise. */
355
356 static int
357 net_quit (void)
358 {
359 int pid;
360 int quit_status;
361 enum clnt_stat status;
362
363 quit_status = 0;
364
365 /* don't let rdbTask suspend itself by passing a pid of 0 */
366
367 if ((pid = inferior_pid) == 0)
368 return -1;
369
370 status = net_clnt_call (VX_TASK_SUSPEND, xdr_int, &pid, xdr_int,
371 &quit_status);
372
373 return (status == RPC_SUCCESS) ? quit_status : -1;
374 }
375
376 /* Read a register or registers from the remote system. */
377
378 void
379 net_read_registers (char *reg_buf, int len, u_long procnum)
380 {
381 int status;
382 Rptrace ptrace_in;
383 Ptrace_return ptrace_out;
384 C_bytes out_data;
385 char message[100];
386
387 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
388 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
389
390 /* Initialize RPC input argument structure. */
391
392 ptrace_in.pid = inferior_pid;
393 ptrace_in.info.ttype = NOINFO;
394
395 /* Initialize RPC return value structure. */
396
397 out_data.bytes = reg_buf;
398 out_data.len = len;
399 ptrace_out.info.more_data = (caddr_t) & out_data;
400
401 /* Call RPC; take an error exit if appropriate. */
402
403 status = net_ptrace_clnt_call (procnum, &ptrace_in, &ptrace_out);
404 if (status)
405 error (rpcerr);
406 if (ptrace_out.status == -1)
407 {
408 errno = ptrace_out.errno_num;
409 sprintf (message, "reading %s registers", (procnum == PTRACE_GETREGS)
410 ? "general-purpose"
411 : "floating-point");
412 perror_with_name (message);
413 }
414 }
415
416 /* Write register values to a VxWorks target. REG_BUF points to a buffer
417 containing the raw register values, LEN is the length of REG_BUF in
418 bytes, and PROCNUM is the RPC procedure number (PTRACE_SETREGS or
419 PTRACE_SETFPREGS). An error exit is taken if the RPC call fails or
420 if an error status is returned by the remote debug server. This is
421 a utility routine used by vx_write_register (). */
422
423 void
424 net_write_registers (char *reg_buf, int len, u_long procnum)
425 {
426 int status;
427 Rptrace ptrace_in;
428 Ptrace_return ptrace_out;
429 C_bytes in_data;
430 char message[100];
431
432 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
433 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
434
435 /* Initialize RPC input argument structure. */
436
437 in_data.bytes = reg_buf;
438 in_data.len = len;
439
440 ptrace_in.pid = inferior_pid;
441 ptrace_in.info.ttype = DATA;
442 ptrace_in.info.more_data = (caddr_t) & in_data;
443
444 /* Call RPC; take an error exit if appropriate. */
445
446 status = net_ptrace_clnt_call (procnum, &ptrace_in, &ptrace_out);
447 if (status)
448 error (rpcerr);
449 if (ptrace_out.status == -1)
450 {
451 errno = ptrace_out.errno_num;
452 sprintf (message, "writing %s registers", (procnum == PTRACE_SETREGS)
453 ? "general-purpose"
454 : "floating-point");
455 perror_with_name (message);
456 }
457 }
458
459 /* Prepare to store registers. Since we will store all of them,
460 read out their current values now. */
461
462 static void
463 vx_prepare_to_store (void)
464 {
465 /* Fetch all registers, if any of them are not yet fetched. */
466 read_register_bytes (0, NULL, REGISTER_BYTES);
467 }
468
469 /* Copy LEN bytes to or from remote inferior's memory starting at MEMADDR
470 to debugger memory starting at MYADDR. WRITE is true if writing to the
471 inferior.
472 Result is the number of bytes written or read (zero if error). The
473 protocol allows us to return a negative count, indicating that we can't
474 handle the current address but can handle one N bytes further, but
475 vxworks doesn't give us that information. */
476
477 static int
478 vx_xfer_memory (memaddr, myaddr, len, write, target)
479 CORE_ADDR memaddr;
480 char *myaddr;
481 int len;
482 int write;
483 struct target_ops *target; /* ignored */
484 {
485 int status;
486 Rptrace ptrace_in;
487 Ptrace_return ptrace_out;
488 C_bytes data;
489 enum ptracereq request;
490 int nleft, nxfer;
491
492 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
493 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
494
495 ptrace_in.pid = inferior_pid; /* XXX pid unnecessary for READDATA */
496 ptrace_in.addr = (int) memaddr; /* Where from */
497 ptrace_in.data = len; /* How many bytes */
498
499 if (write)
500 {
501 ptrace_in.info.ttype = DATA;
502 ptrace_in.info.more_data = (caddr_t) & data;
503
504 data.bytes = (caddr_t) myaddr; /* Where from */
505 data.len = len; /* How many bytes (again, for XDR) */
506 request = PTRACE_WRITEDATA;
507 }
508 else
509 {
510 ptrace_out.info.more_data = (caddr_t) & data;
511 request = PTRACE_READDATA;
512 }
513 /* Loop until the entire request has been satisfied, transferring
514 at most VX_MEMXFER_MAX bytes per iteration. Break from the loop
515 if an error status is returned by the remote debug server. */
516
517 nleft = len;
518 status = 0;
519
520 while (nleft > 0 && status == 0)
521 {
522 nxfer = min (nleft, VX_MEMXFER_MAX);
523
524 ptrace_in.addr = (int) memaddr;
525 ptrace_in.data = nxfer;
526 data.bytes = (caddr_t) myaddr;
527 data.len = nxfer;
528
529 /* Request a block from the remote debug server; if RPC fails,
530 report an error and return to debugger command level. */
531
532 if (net_ptrace_clnt_call (request, &ptrace_in, &ptrace_out))
533 error (rpcerr);
534
535 status = ptrace_out.status;
536 if (status == 0)
537 {
538 memaddr += nxfer;
539 myaddr += nxfer;
540 nleft -= nxfer;
541 }
542 else
543 {
544 /* A target-side error has ocurred. Set errno to the error
545 code chosen by the target so that a later perror () will
546 say something meaningful. */
547
548 errno = ptrace_out.errno_num;
549 }
550 }
551
552 /* Return the number of bytes transferred. */
553
554 return (len - nleft);
555 }
556
557 static void
558 vx_files_info (void)
559 {
560 printf_unfiltered ("\tAttached to host `%s'", vx_host);
561 printf_unfiltered (", which has %sfloating point", target_has_fp ? "" : "no ");
562 printf_unfiltered (".\n");
563 }
564
565 static void
566 vx_run_files_info (void)
567 {
568 printf_unfiltered ("\tRunning %s VxWorks process %s",
569 vx_running ? "child" : "attached",
570 local_hex_string (inferior_pid));
571 if (vx_running)
572 printf_unfiltered (", function `%s'", vx_running);
573 printf_unfiltered (".\n");
574 }
575
576 static void
577 vx_resume (int pid, int step, enum target_signal siggnal)
578 {
579 int status;
580 Rptrace ptrace_in;
581 Ptrace_return ptrace_out;
582 CORE_ADDR cont_addr;
583
584 if (pid == -1)
585 pid = inferior_pid;
586
587 if (siggnal != 0 && siggnal != stop_signal)
588 error ("Cannot send signals to VxWorks processes");
589
590 /* Set CONT_ADDR to the address at which we are continuing,
591 or to 1 if we are continuing from where the program stopped.
592 This conforms to traditional ptrace () usage, but at the same
593 time has special meaning for the VxWorks remote debug server.
594 If the address is not 1, the server knows that the target
595 program is jumping to a new address, which requires special
596 handling if there is a breakpoint at the new address. */
597
598 cont_addr = read_register (PC_REGNUM);
599 if (cont_addr == stop_pc)
600 cont_addr = 1;
601
602 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
603 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
604
605 ptrace_in.pid = pid;
606 ptrace_in.addr = cont_addr; /* Target side insists on this, or it panics. */
607
608 if (step)
609 status = net_step ();
610 else
611 status = net_ptrace_clnt_call (PTRACE_CONT, &ptrace_in, &ptrace_out);
612
613 if (status)
614 error (rpcerr);
615 if (ptrace_out.status == -1)
616 {
617 errno = ptrace_out.errno_num;
618 perror_with_name ("Resuming remote process");
619 }
620 }
621
622 static void
623 vx_mourn_inferior (void)
624 {
625 pop_target (); /* Pop back to no-child state */
626 generic_mourn_inferior ();
627 }
628 \f
629
630 static void vx_add_symbols (char *, int, CORE_ADDR, CORE_ADDR, CORE_ADDR);
631
632 struct find_sect_args
633 {
634 CORE_ADDR text_start;
635 CORE_ADDR data_start;
636 CORE_ADDR bss_start;
637 };
638
639 static void find_sect (bfd *, asection *, void *);
640
641 static void
642 find_sect (bfd *abfd, asection *sect, PTR obj)
643 {
644 struct find_sect_args *args = (struct find_sect_args *) obj;
645
646 if (bfd_get_section_flags (abfd, sect) & (SEC_CODE & SEC_READONLY))
647 args->text_start = bfd_get_section_vma (abfd, sect);
648 else if (bfd_get_section_flags (abfd, sect) & SEC_ALLOC)
649 {
650 if (bfd_get_section_flags (abfd, sect) & SEC_LOAD)
651 {
652 /* Exclude .ctor and .dtor sections which have SEC_CODE set but not
653 SEC_DATA. */
654 if (bfd_get_section_flags (abfd, sect) & SEC_DATA)
655 args->data_start = bfd_get_section_vma (abfd, sect);
656 }
657 else
658 args->bss_start = bfd_get_section_vma (abfd, sect);
659 }
660 }
661
662 static void
663 vx_add_symbols (char *name, int from_tty, CORE_ADDR text_addr,
664 CORE_ADDR data_addr, CORE_ADDR bss_addr)
665 {
666 struct section_offsets *offs;
667 struct objfile *objfile;
668 struct find_sect_args ss;
669
670 /* It might be nice to suppress the breakpoint_re_set which happens here
671 because we are going to do one again after the objfile_relocate. */
672 objfile = symbol_file_add (name, from_tty, NULL, 0, 0);
673
674 /* This is a (slightly cheesy) way of superceding the old symbols. A less
675 cheesy way would be to find the objfile with the same name and
676 free_objfile it. */
677 objfile_to_front (objfile);
678
679 offs = (struct section_offsets *) alloca (SIZEOF_SECTION_OFFSETS);
680 memcpy (offs, objfile->section_offsets, SIZEOF_SECTION_OFFSETS);
681
682 ss.text_start = 0;
683 ss.data_start = 0;
684 ss.bss_start = 0;
685 bfd_map_over_sections (objfile->obfd, find_sect, &ss);
686
687 /* Both COFF and b.out frontends use these SECT_OFF_* values. */
688 ANOFFSET (offs, SECT_OFF_TEXT (so->objfile)) = text_addr - ss.text_start;
689 ANOFFSET (offs, SECT_OFF_DATA (so->objfile)) = data_addr - ss.data_start;
690 ANOFFSET (offs, SECT_OFF_BSS (so->objfile)) = bss_addr - ss.bss_start;
691 objfile_relocate (objfile, offs);
692 }
693
694 /* This function allows the addition of incrementally linked object files. */
695
696 static void
697 vx_load_command (char *arg_string, int from_tty)
698 {
699 CORE_ADDR text_addr;
700 CORE_ADDR data_addr;
701 CORE_ADDR bss_addr;
702
703 if (arg_string == 0)
704 error ("The load command takes a file name");
705
706 arg_string = tilde_expand (arg_string);
707 make_cleanup (free, arg_string);
708
709 dont_repeat ();
710
711 /* Refuse to load the module if a debugged task is running. Doing so
712 can have a number of unpleasant consequences to the running task. */
713
714 if (inferior_pid != 0 && target_has_execution)
715 {
716 if (query ("You may not load a module while the target task is running.\n\
717 Kill the target task? "))
718 target_kill ();
719 else
720 error ("Load cancelled.");
721 }
722
723 QUIT;
724 immediate_quit++;
725 if (net_load (arg_string, &text_addr, &data_addr, &bss_addr) == -1)
726 error ("Load failed on target machine");
727 immediate_quit--;
728
729 vx_add_symbols (arg_string, from_tty, text_addr, data_addr, bss_addr);
730
731 /* Getting new symbols may change our opinion about what is
732 frameless. */
733 reinit_frame_cache ();
734 }
735
736 /* Single step the target program at the source or machine level.
737 Takes an error exit if rpc fails.
738 Returns -1 if remote single-step operation fails, else 0. */
739
740 static int
741 net_step (void)
742 {
743 enum clnt_stat status;
744 int step_status;
745 SOURCE_STEP source_step;
746
747 source_step.taskId = inferior_pid;
748
749 if (step_range_end)
750 {
751 source_step.startAddr = step_range_start;
752 source_step.endAddr = step_range_end;
753 }
754 else
755 {
756 source_step.startAddr = 0;
757 source_step.endAddr = 0;
758 }
759
760 status = net_clnt_call (VX_SOURCE_STEP, xdr_SOURCE_STEP, &source_step,
761 xdr_int, &step_status);
762
763 if (status == RPC_SUCCESS)
764 return step_status;
765 else
766 error (rpcerr);
767 }
768
769 /* Emulate ptrace using RPC calls to the VxWorks target system.
770 Returns nonzero (-1) if RPC status to VxWorks is bad, 0 otherwise. */
771
772 static int
773 net_ptrace_clnt_call (enum ptracereq request, Rptrace *pPtraceIn,
774 Ptrace_return *pPtraceOut)
775 {
776 enum clnt_stat status;
777
778 status = net_clnt_call (request, xdr_rptrace, pPtraceIn, xdr_ptrace_return,
779 pPtraceOut);
780
781 if (status != RPC_SUCCESS)
782 return -1;
783
784 return 0;
785 }
786
787 /* Query the target for the name of the file from which VxWorks was
788 booted. pBootFile is the address of a pointer to the buffer to
789 receive the file name; if the pointer pointed to by pBootFile is
790 NULL, memory for the buffer will be allocated by XDR.
791 Returns -1 if rpc failed, 0 otherwise. */
792
793 static int
794 net_get_boot_file (char **pBootFile)
795 {
796 enum clnt_stat status;
797
798 status = net_clnt_call (VX_BOOT_FILE_INQ, xdr_void, (char *) 0,
799 xdr_wrapstring, pBootFile);
800 return (status == RPC_SUCCESS) ? 0 : -1;
801 }
802
803 /* Fetch a list of loaded object modules from the VxWorks target.
804 Returns -1 if rpc failed, 0 otherwise
805 There's no way to check if the returned loadTable is correct.
806 VxWorks doesn't check it. */
807
808 static int
809 net_get_symbols (pLoadTable)
810 ldtabl *pLoadTable; /* return pointer to ldtabl here */
811 {
812 enum clnt_stat status;
813
814 memset ((char *) pLoadTable, '\0', sizeof (struct ldtabl));
815
816 status = net_clnt_call (VX_STATE_INQ, xdr_void, 0, xdr_ldtabl, pLoadTable);
817 return (status == RPC_SUCCESS) ? 0 : -1;
818 }
819
820 /* Look up a symbol in the VxWorks target's symbol table.
821 Returns status of symbol read on target side (0=success, -1=fail)
822 Returns -1 and complain()s if rpc fails. */
823
824 struct complaint cant_contact_target =
825 {"Lost contact with VxWorks target", 0, 0};
826
827 static int
828 vx_lookup_symbol (char *name, /* symbol name */
829 CORE_ADDR *pAddr)
830 {
831 enum clnt_stat status;
832 SYMBOL_ADDR symbolAddr;
833
834 *pAddr = 0;
835 memset ((char *) &symbolAddr, '\0', sizeof (symbolAddr));
836
837 status = net_clnt_call (VX_SYMBOL_INQ, xdr_wrapstring, &name,
838 xdr_SYMBOL_ADDR, &symbolAddr);
839 if (status != RPC_SUCCESS)
840 {
841 complain (&cant_contact_target);
842 return -1;
843 }
844
845 *pAddr = symbolAddr.addr;
846 return symbolAddr.status;
847 }
848
849 /* Check to see if the VxWorks target has a floating point coprocessor.
850 Returns 1 if target has floating point processor, 0 otherwise.
851 Calls error() if rpc fails. */
852
853 static int
854 net_check_for_fp (void)
855 {
856 enum clnt_stat status;
857 bool_t fp = 0; /* true if fp processor is present on target board */
858
859 status = net_clnt_call (VX_FP_INQUIRE, xdr_void, 0, xdr_bool, &fp);
860 if (status != RPC_SUCCESS)
861 error (rpcerr);
862
863 return (int) fp;
864 }
865
866 /* Establish an RPC connection with the VxWorks target system.
867 Calls error () if unable to establish connection. */
868
869 static void
870 net_connect (char *host)
871 {
872 struct sockaddr_in destAddr;
873 struct hostent *destHost;
874 unsigned long addr;
875
876 /* Get the internet address for the given host. Allow a numeric
877 IP address or a hostname. */
878
879 addr = inet_addr (host);
880 if (addr == -1)
881 {
882 destHost = (struct hostent *) gethostbyname (host);
883 if (destHost == NULL)
884 /* FIXME: Probably should include hostname here in quotes.
885 For example if the user types "target vxworks vx960 " it should
886 say "Invalid host `vx960 '." not just "Invalid hostname". */
887 error ("Invalid hostname. Couldn't find remote host address.");
888 addr = *(unsigned long *) destHost->h_addr;
889 }
890
891 memset (&destAddr, '\0', sizeof (destAddr));
892
893 destAddr.sin_addr.s_addr = addr;
894 destAddr.sin_family = AF_INET;
895 destAddr.sin_port = 0; /* set to actual port that remote
896 ptrace is listening on. */
897
898 /* Create a tcp client transport on which to issue
899 calls to the remote ptrace server. */
900
901 ptraceSock = RPC_ANYSOCK;
902 pClient = clnttcp_create (&destAddr, RDBPROG, RDBVERS, &ptraceSock, 0, 0);
903 /* FIXME, here is where we deal with different version numbers of the
904 proto */
905
906 if (pClient == NULL)
907 {
908 clnt_pcreateerror ("\tnet_connect");
909 error ("Couldn't connect to remote target.");
910 }
911 }
912 \f
913 /* Sleep for the specified number of milliseconds
914 * (assumed to be less than 1000).
915 * If select () is interrupted, returns immediately;
916 * takes an error exit if select () fails for some other reason.
917 */
918
919 static void
920 sleep_ms (long ms)
921 {
922 struct timeval select_timeout;
923 int status;
924
925 select_timeout.tv_sec = 0;
926 select_timeout.tv_usec = ms * 1000;
927
928 status = select (0, (fd_set *) 0, (fd_set *) 0, (fd_set *) 0,
929 &select_timeout);
930
931 if (status < 0 && errno != EINTR)
932 perror_with_name ("select");
933 }
934
935 static int
936 vx_wait (int pid_to_wait_for, struct target_waitstatus *status)
937 {
938 register int pid;
939 RDB_EVENT rdbEvent;
940 int quit_failed;
941
942 do
943 {
944 /* If CTRL-C is hit during this loop,
945 suspend the inferior process. */
946
947 quit_failed = 0;
948 if (quit_flag)
949 {
950 quit_failed = (net_quit () == -1);
951 quit_flag = 0;
952 }
953
954 /* If a net_quit () or net_wait () call has failed,
955 allow the user to break the connection with the target.
956 We can't simply error () out of this loop, since the
957 data structures representing the state of the inferior
958 are in an inconsistent state. */
959
960 if (quit_failed || net_wait (&rdbEvent) == -1)
961 {
962 terminal_ours ();
963 if (query ("Can't %s. Disconnect from target system? ",
964 (quit_failed) ? "suspend remote task"
965 : "get status of remote task"))
966 {
967 target_mourn_inferior ();
968 error ("Use the \"target\" command to reconnect.");
969 }
970 else
971 {
972 terminal_inferior ();
973 continue;
974 }
975 }
976
977 pid = rdbEvent.taskId;
978 if (pid == 0)
979 {
980 sleep_ms (200); /* FIXME Don't kill the network too badly */
981 }
982 else if (pid != inferior_pid)
983 internal_error ("Bad pid for debugged task: %s\n",
984 local_hex_string ((unsigned long) pid));
985 }
986 while (pid == 0);
987
988 /* The mostly likely kind. */
989 status->kind = TARGET_WAITKIND_STOPPED;
990
991 switch (rdbEvent.eventType)
992 {
993 case EVENT_EXIT:
994 status->kind = TARGET_WAITKIND_EXITED;
995 /* FIXME is it possible to distinguish between a
996 normal vs abnormal exit in VxWorks? */
997 status->value.integer = 0;
998 break;
999
1000 case EVENT_START:
1001 /* Task was just started. */
1002 status->value.sig = TARGET_SIGNAL_TRAP;
1003 break;
1004
1005 case EVENT_STOP:
1006 status->value.sig = TARGET_SIGNAL_TRAP;
1007 /* XXX was it stopped by a signal? act accordingly */
1008 break;
1009
1010 case EVENT_BREAK: /* Breakpoint was hit. */
1011 status->value.sig = TARGET_SIGNAL_TRAP;
1012 break;
1013
1014 case EVENT_SUSPEND: /* Task was suspended, probably by ^C. */
1015 status->value.sig = TARGET_SIGNAL_INT;
1016 break;
1017
1018 case EVENT_BUS_ERR: /* Task made evil nasty reference. */
1019 status->value.sig = TARGET_SIGNAL_BUS;
1020 break;
1021
1022 case EVENT_ZERO_DIV: /* Division by zero */
1023 status->value.sig = TARGET_SIGNAL_FPE;
1024 break;
1025
1026 case EVENT_SIGNAL:
1027 #ifdef I80960
1028 status->value.sig = i960_fault_to_signal (rdbEvent.sigType);
1029 #else
1030 /* Back in the old days, before enum target_signal, this code used
1031 to add NSIG to the signal number and claim that PRINT_RANDOM_SIGNAL
1032 would take care of it. But PRINT_RANDOM_SIGNAL has never been
1033 defined except on the i960, so I don't really know what we are
1034 supposed to do on other architectures. */
1035 status->value.sig = TARGET_SIGNAL_UNKNOWN;
1036 #endif
1037 break;
1038 } /* switch */
1039 return pid;
1040 }
1041 \f
1042 static int
1043 symbol_stub (char *arg)
1044 {
1045 symbol_file_command (arg, 0);
1046 return 1;
1047 }
1048
1049 static int
1050 add_symbol_stub (char *arg)
1051 {
1052 struct ldfile *pLoadFile = (struct ldfile *) arg;
1053
1054 printf_unfiltered ("\t%s: ", pLoadFile->name);
1055 vx_add_symbols (pLoadFile->name, 0, pLoadFile->txt_addr,
1056 pLoadFile->data_addr, pLoadFile->bss_addr);
1057 printf_unfiltered ("ok\n");
1058 return 1;
1059 }
1060 /* Target command for VxWorks target systems.
1061
1062 Used in vxgdb. Takes the name of a remote target machine
1063 running vxWorks and connects to it to initialize remote network
1064 debugging. */
1065
1066 static void
1067 vx_open (char *args, int from_tty)
1068 {
1069 extern int close ();
1070 char *bootFile;
1071 extern char *source_path;
1072 struct ldtabl loadTable;
1073 struct ldfile *pLoadFile;
1074 int i;
1075 extern CLIENT *pClient;
1076 int symbols_added = 0;
1077
1078 if (!args)
1079 error_no_arg ("target machine name");
1080
1081 target_preopen (from_tty);
1082
1083 unpush_target (&vx_ops);
1084 printf_unfiltered ("Attaching remote machine across net...\n");
1085 gdb_flush (gdb_stdout);
1086
1087 /* Allow the user to kill the connect attempt by typing ^C.
1088 Wait until the call to target_has_fp () completes before
1089 disallowing an immediate quit, since even if net_connect ()
1090 is successful, the remote debug server might be hung. */
1091
1092 immediate_quit++;
1093
1094 net_connect (args);
1095 target_has_fp = net_check_for_fp ();
1096 printf_filtered ("Connected to %s.\n", args);
1097
1098 immediate_quit--;
1099
1100 push_target (&vx_ops);
1101
1102 /* Save a copy of the target host's name. */
1103 vx_host = savestring (args, strlen (args));
1104
1105 /* Find out the name of the file from which the target was booted
1106 and load its symbol table. */
1107
1108 printf_filtered ("Looking in Unix path for all loaded modules:\n");
1109 bootFile = NULL;
1110 if (!net_get_boot_file (&bootFile))
1111 {
1112 if (*bootFile)
1113 {
1114 printf_filtered ("\t%s: ", bootFile);
1115 /* This assumes that the kernel is never relocated. Hope that is an
1116 accurate assumption. */
1117 if (catch_errors
1118 (symbol_stub,
1119 bootFile,
1120 "Error while reading symbols from boot file:\n",
1121 RETURN_MASK_ALL))
1122 puts_filtered ("ok\n");
1123 }
1124 else if (from_tty)
1125 printf_unfiltered ("VxWorks kernel symbols not loaded.\n");
1126 }
1127 else
1128 error ("Can't retrieve boot file name from target machine.");
1129
1130 clnt_freeres (pClient, xdr_wrapstring, &bootFile);
1131
1132 if (net_get_symbols (&loadTable) != 0)
1133 error ("Can't read loaded modules from target machine");
1134
1135 i = 0 - 1;
1136 while (++i < loadTable.tbl_size)
1137 {
1138 QUIT; /* FIXME, avoids clnt_freeres below: mem leak */
1139 pLoadFile = &loadTable.tbl_ent[i];
1140 #ifdef WRS_ORIG
1141 {
1142 register int desc;
1143 struct cleanup *old_chain;
1144 char *fullname = NULL;
1145
1146 desc = openp (source_path, 0, pLoadFile->name, O_RDONLY, 0, &fullname);
1147 if (desc < 0)
1148 perror_with_name (pLoadFile->name);
1149 old_chain = make_cleanup (close, desc);
1150 add_file_at_addr (fullname, desc, pLoadFile->txt_addr, pLoadFile->data_addr,
1151 pLoadFile->bss_addr);
1152 do_cleanups (old_chain);
1153 }
1154 #else
1155 /* FIXME: Is there something better to search than the PATH? (probably
1156 not the source path, since source might be in different directories
1157 than objects. */
1158
1159 if (catch_errors (add_symbol_stub, (char *) pLoadFile, (char *) 0,
1160 RETURN_MASK_ALL))
1161 symbols_added = 1;
1162 #endif
1163 }
1164 printf_filtered ("Done.\n");
1165
1166 clnt_freeres (pClient, xdr_ldtabl, &loadTable);
1167
1168 /* Getting new symbols may change our opinion about what is
1169 frameless. */
1170 if (symbols_added)
1171 reinit_frame_cache ();
1172 }
1173 \f
1174 /* Takes a task started up outside of gdb and ``attaches'' to it.
1175 This stops it cold in its tracks and allows us to start tracing it. */
1176
1177 static void
1178 vx_attach (char *args, int from_tty)
1179 {
1180 unsigned long pid;
1181 char *cptr = 0;
1182 Rptrace ptrace_in;
1183 Ptrace_return ptrace_out;
1184 int status;
1185
1186 if (!args)
1187 error_no_arg ("process-id to attach");
1188
1189 pid = strtoul (args, &cptr, 0);
1190 if ((cptr == args) || (*cptr != '\0'))
1191 error ("Invalid process-id -- give a single number in decimal or 0xhex");
1192
1193 if (from_tty)
1194 printf_unfiltered ("Attaching pid %s.\n",
1195 local_hex_string ((unsigned long) pid));
1196
1197 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
1198 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
1199 ptrace_in.pid = pid;
1200
1201 status = net_ptrace_clnt_call (PTRACE_ATTACH, &ptrace_in, &ptrace_out);
1202 if (status == -1)
1203 error (rpcerr);
1204 if (ptrace_out.status == -1)
1205 {
1206 errno = ptrace_out.errno_num;
1207 perror_with_name ("Attaching remote process");
1208 }
1209
1210 /* It worked... */
1211
1212 inferior_pid = pid;
1213 push_target (&vx_run_ops);
1214
1215 if (vx_running)
1216 free (vx_running);
1217 vx_running = 0;
1218 }
1219
1220 /* detach_command --
1221 takes a program previously attached to and detaches it.
1222 The program resumes execution and will no longer stop
1223 on signals, etc. We better not have left any breakpoints
1224 in the program or it'll die when it hits one. For this
1225 to work, it may be necessary for the process to have been
1226 previously attached. It *might* work if the program was
1227 started via the normal ptrace (PTRACE_TRACEME). */
1228
1229 static void
1230 vx_detach (char *args, int from_tty)
1231 {
1232 Rptrace ptrace_in;
1233 Ptrace_return ptrace_out;
1234 int signal = 0;
1235 int status;
1236
1237 if (args)
1238 error ("Argument given to VxWorks \"detach\".");
1239
1240 if (from_tty)
1241 printf_unfiltered ("Detaching pid %s.\n",
1242 local_hex_string ((unsigned long) inferior_pid));
1243
1244 if (args) /* FIXME, should be possible to leave suspended */
1245 signal = atoi (args);
1246
1247 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
1248 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
1249 ptrace_in.pid = inferior_pid;
1250
1251 status = net_ptrace_clnt_call (PTRACE_DETACH, &ptrace_in, &ptrace_out);
1252 if (status == -1)
1253 error (rpcerr);
1254 if (ptrace_out.status == -1)
1255 {
1256 errno = ptrace_out.errno_num;
1257 perror_with_name ("Detaching VxWorks process");
1258 }
1259
1260 inferior_pid = 0;
1261 pop_target (); /* go back to non-executing VxWorks connection */
1262 }
1263
1264 /* vx_kill -- takes a running task and wipes it out. */
1265
1266 static void
1267 vx_kill (void)
1268 {
1269 Rptrace ptrace_in;
1270 Ptrace_return ptrace_out;
1271 int status;
1272
1273 printf_unfiltered ("Killing pid %s.\n", local_hex_string ((unsigned long) inferior_pid));
1274
1275 memset ((char *) &ptrace_in, '\0', sizeof (ptrace_in));
1276 memset ((char *) &ptrace_out, '\0', sizeof (ptrace_out));
1277 ptrace_in.pid = inferior_pid;
1278
1279 status = net_ptrace_clnt_call (PTRACE_KILL, &ptrace_in, &ptrace_out);
1280 if (status == -1)
1281 warning (rpcerr);
1282 else if (ptrace_out.status == -1)
1283 {
1284 errno = ptrace_out.errno_num;
1285 perror_with_name ("Killing VxWorks process");
1286 }
1287
1288 /* If it gives good status, the process is *gone*, no events remain.
1289 If the kill failed, assume the process is gone anyhow. */
1290 inferior_pid = 0;
1291 pop_target (); /* go back to non-executing VxWorks connection */
1292 }
1293
1294 /* Clean up from the VxWorks process target as it goes away. */
1295
1296 static void
1297 vx_proc_close (int quitting)
1298 {
1299 inferior_pid = 0; /* No longer have a process. */
1300 if (vx_running)
1301 free (vx_running);
1302 vx_running = 0;
1303 }
1304 \f
1305 /* Make an RPC call to the VxWorks target.
1306 Returns RPC status. */
1307
1308 static enum clnt_stat
1309 net_clnt_call (enum ptracereq procNum, xdrproc_t inProc, char *in,
1310 xdrproc_t outProc, char *out)
1311 {
1312 enum clnt_stat status;
1313
1314 status = clnt_call (pClient, procNum, inProc, in, outProc, out, rpcTimeout);
1315
1316 if (status != RPC_SUCCESS)
1317 clnt_perrno (status);
1318
1319 return status;
1320 }
1321
1322 /* Clean up before losing control. */
1323
1324 static void
1325 vx_close (int quitting)
1326 {
1327 if (pClient)
1328 clnt_destroy (pClient); /* The net connection */
1329 pClient = 0;
1330
1331 if (vx_host)
1332 free (vx_host); /* The hostname */
1333 vx_host = 0;
1334 }
1335
1336 /* A vxprocess target should be started via "run" not "target". */
1337 /*ARGSUSED */
1338 static void
1339 vx_proc_open (char *name, int from_tty)
1340 {
1341 error ("Use the \"run\" command to start a VxWorks process.");
1342 }
1343
1344 static void
1345 init_vx_ops (void)
1346 {
1347 vx_ops.to_shortname = "vxworks";
1348 vx_ops.to_longname = "VxWorks target memory via RPC over TCP/IP";
1349 vx_ops.to_doc = "Use VxWorks target memory. \n\
1350 Specify the name of the machine to connect to.";
1351 vx_ops.to_open = vx_open;
1352 vx_ops.to_close = vx_close;
1353 vx_ops.to_attach = vx_attach;
1354 vx_ops.to_xfer_memory = vx_xfer_memory;
1355 vx_ops.to_files_info = vx_files_info;
1356 vx_ops.to_load = vx_load_command;
1357 vx_ops.to_lookup_symbol = vx_lookup_symbol;
1358 vx_ops.to_create_inferior = vx_create_inferior;
1359 vx_ops.to_stratum = core_stratum;
1360 vx_ops.to_has_all_memory = 1;
1361 vx_ops.to_has_memory = 1;
1362 vx_ops.to_magic = OPS_MAGIC; /* Always the last thing */
1363 };
1364
1365 static void
1366 init_vx_run_ops (void)
1367 {
1368 vx_run_ops.to_shortname = "vxprocess";
1369 vx_run_ops.to_longname = "VxWorks process";
1370 vx_run_ops.to_doc = "VxWorks process; started by the \"run\" command.";
1371 vx_run_ops.to_open = vx_proc_open;
1372 vx_run_ops.to_close = vx_proc_close;
1373 vx_run_ops.to_detach = vx_detach;
1374 vx_run_ops.to_resume = vx_resume;
1375 vx_run_ops.to_wait = vx_wait;
1376 vx_run_ops.to_fetch_registers = vx_read_register;
1377 vx_run_ops.to_store_registers = vx_write_register;
1378 vx_run_ops.to_prepare_to_store = vx_prepare_to_store;
1379 vx_run_ops.to_xfer_memory = vx_xfer_memory;
1380 vx_run_ops.to_files_info = vx_run_files_info;
1381 vx_run_ops.to_insert_breakpoint = vx_insert_breakpoint;
1382 vx_run_ops.to_remove_breakpoint = vx_remove_breakpoint;
1383 vx_run_ops.to_kill = vx_kill;
1384 vx_run_ops.to_load = vx_load_command;
1385 vx_run_ops.to_lookup_symbol = vx_lookup_symbol;
1386 vx_run_ops.to_mourn_inferior = vx_mourn_inferior;
1387 vx_run_ops.to_stratum = process_stratum;
1388 vx_run_ops.to_has_memory = 1;
1389 vx_run_ops.to_has_stack = 1;
1390 vx_run_ops.to_has_registers = 1;
1391 vx_run_ops.to_has_execution = 1;
1392 vx_run_ops.to_magic = OPS_MAGIC;
1393 }
1394 \f
1395 void
1396 _initialize_vx (void)
1397 {
1398 init_vx_ops ();
1399 add_target (&vx_ops);
1400 init_vx_run_ops ();
1401 add_target (&vx_run_ops);
1402
1403 add_show_from_set
1404 (add_set_cmd ("vxworks-timeout", class_support, var_uinteger,
1405 (char *) &rpcTimeout.tv_sec,
1406 "Set seconds to wait for rpc calls to return.\n\
1407 Set the number of seconds to wait for rpc calls to return.", &setlist),
1408 &showlist);
1409 }
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