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dd3b648e 1/* Remote debugging interface for AMD 29000 EBMON on IBM PC, for GDB.
e17960fb 2 Copyright 1990, 1991, 1992 Free Software Foundation, Inc.
dd3b648e
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3 Contributed by Cygnus Support. Written by Jim Kingdon for Cygnus.
4
5This file is part of GDB.
6
7This program is free software; you can redistribute it and/or modify
8it under the terms of the GNU General Public License as published by
99a7de40
JG
9the Free Software Foundation; either version 2 of the License, or
10(at your option) any later version.
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11
12This program is distributed in the hope that it will be useful,
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
99a7de40 18along with this program; if not, write to the Free Software
6c9638b4 19Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
dd3b648e
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20
21/* This is like remote.c but is for an esoteric situation--
d7d35f00 22 having a a29k board in a PC hooked up to a unix machine with
dd3b648e
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23 a serial line, and running ctty com1 on the PC, through which
24 the unix machine can run ebmon. Not to mention that the PC
25 has PC/NFS, so it can access the same executables that gdb can,
26 over the net in real time. */
27
dd3b648e 28#include "defs.h"
2b576293 29#include "gdb_string.h"
76b2c3c8 30
dd3b648e 31#include "inferior.h"
45d8db87 32#include "bfd.h"
6b27ebe8 33#include "symfile.h"
dd3b648e
RP
34#include "wait.h"
35#include "value.h"
36#include <ctype.h>
37#include <fcntl.h>
38#include <signal.h>
39#include <errno.h>
40#include "terminal.h"
41#include "target.h"
76b2c3c8 42#include "gdbcore.h"
dd3b648e 43
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44extern struct target_ops eb_ops; /* Forward declaration */
45
19b66c0e
JG
46static void eb_close();
47
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48#define LOG_FILE "eb.log"
49#if defined (LOG_FILE)
50FILE *log_file;
51#endif
52
76b2c3c8 53static int timeout = 24;
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54
55/* Descriptor for I/O to remote machine. Initialize it to -1 so that
56 eb_open knows that we don't have a file open when the program
57 starts. */
58int eb_desc = -1;
59
60/* stream which is fdopen'd from eb_desc. Only valid when
61 eb_desc != -1. */
62FILE *eb_stream;
63
64/* Read a character from the remote system, doing all the fancy
65 timeout stuff. */
66static int
67readchar ()
68{
69 char buf;
70
71 buf = '\0';
72#ifdef HAVE_TERMIO
73 /* termio does the timeout for us. */
74 read (eb_desc, &buf, 1);
75#else
76 alarm (timeout);
77 if (read (eb_desc, &buf, 1) < 0)
78 {
79 if (errno == EINTR)
80 error ("Timeout reading from remote system.");
81 else
82 perror_with_name ("remote");
83 }
84 alarm (0);
85#endif
86
87 if (buf == '\0')
88 error ("Timeout reading from remote system.");
89#if defined (LOG_FILE)
90 putc (buf & 0x7f, log_file);
91#endif
92 return buf & 0x7f;
93}
94
95/* Keep discarding input from the remote system, until STRING is found.
96 Let the user break out immediately. */
97static void
98expect (string)
99 char *string;
100{
101 char *p = string;
102
103 immediate_quit = 1;
104 while (1)
105 {
106 if (readchar() == *p)
107 {
108 p++;
109 if (*p == '\0')
110 {
111 immediate_quit = 0;
112 return;
113 }
114 }
115 else
116 p = string;
117 }
118}
119
120/* Keep discarding input until we see the ebmon prompt.
121
122 The convention for dealing with the prompt is that you
123 o give your command
124 o *then* wait for the prompt.
125
126 Thus the last thing that a procedure does with the serial line
127 will be an expect_prompt(). Exception: eb_resume does not
128 wait for the prompt, because the terminal is being handed over
129 to the inferior. However, the next thing which happens after that
130 is a eb_wait which does wait for the prompt.
131 Note that this includes abnormal exit, e.g. error(). This is
132 necessary to prevent getting into states from which we can't
133 recover. */
134static void
135expect_prompt ()
136{
137#if defined (LOG_FILE)
138 /* This is a convenient place to do this. The idea is to do it often
139 enough that we never lose much data if we terminate abnormally. */
140 fflush (log_file);
141#endif
142 expect ("\n# ");
143}
144
145/* Get a hex digit from the remote system & return its value.
146 If ignore_space is nonzero, ignore spaces (not newline, tab, etc). */
147static int
148get_hex_digit (ignore_space)
149 int ignore_space;
150{
151 int ch;
152 while (1)
153 {
154 ch = readchar ();
155 if (ch >= '0' && ch <= '9')
156 return ch - '0';
157 else if (ch >= 'A' && ch <= 'F')
158 return ch - 'A' + 10;
159 else if (ch >= 'a' && ch <= 'f')
160 return ch - 'a' + 10;
161 else if (ch == ' ' && ignore_space)
162 ;
163 else
164 {
165 expect_prompt ();
166 error ("Invalid hex digit from remote system.");
167 }
168 }
169}
170
171/* Get a byte from eb_desc and put it in *BYT. Accept any number
172 leading spaces. */
173static void
174get_hex_byte (byt)
175 char *byt;
176{
177 int val;
178
179 val = get_hex_digit (1) << 4;
180 val |= get_hex_digit (0);
181 *byt = val;
182}
183
184/* Get N 32-bit words from remote, each preceded by a space,
185 and put them in registers starting at REGNO. */
186static void
187get_hex_regs (n, regno)
188 int n;
189 int regno;
190{
191 long val;
192 int i;
193
194 for (i = 0; i < n; i++)
195 {
196 int j;
197
198 val = 0;
199 for (j = 0; j < 8; j++)
200 val = (val << 4) + get_hex_digit (j == 0);
a058c1e8 201 supply_register (regno++, (char *) &val);
dd3b648e
RP
202 }
203}
204
205/* Called when SIGALRM signal sent due to alarm() timeout. */
206#ifndef HAVE_TERMIO
207
208#ifndef __STDC__
209#define volatile /**/
210#endif
211volatile int n_alarms;
212
213void
214eb_timer ()
215{
216#if 0
217 if (kiodebug)
218 printf ("eb_timer called\n");
219#endif
220 n_alarms++;
221}
222#endif
223
224/* malloc'd name of the program on the remote system. */
225static char *prog_name = NULL;
226
227/* Nonzero if we have loaded the file ("yc") and not yet issued a "gi"
228 command. "gi" is supposed to happen exactly once for each "yc". */
229static int need_gi = 0;
230
231/* Number of SIGTRAPs we need to simulate. That is, the next
232 NEED_ARTIFICIAL_TRAP calls to eb_wait should just return
233 SIGTRAP without actually waiting for anything. */
234
235static int need_artificial_trap = 0;
236
237/* This is called not only when we first attach, but also when the
238 user types "run" after having attached. */
76b2c3c8
JG
239static void
240eb_create_inferior (execfile, args, env)
241 char *execfile;
242 char *args;
243 char **env;
dd3b648e 244{
76b2c3c8 245 int entry_pt;
dd3b648e 246
76b2c3c8
JG
247 if (args && *args)
248 error ("Can't pass arguments to remote EBMON process");
dd3b648e 249
76b2c3c8
JG
250 if (execfile == 0 || exec_bfd == 0)
251 error ("No exec file specified");
dd3b648e 252
76b2c3c8 253 entry_pt = (int) bfd_get_start_address (exec_bfd);
dd3b648e 254
76b2c3c8
JG
255 {
256 /* OK, now read in the file. Y=read, C=COFF, D=no symbols
257 0=start address, %s=filename. */
258
259 fprintf (eb_stream, "YC D,0:%s", prog_name);
260
261 if (args != NULL)
262 fprintf(eb_stream, " %s", args);
263
264 fprintf (eb_stream, "\n");
265 fflush (eb_stream);
266
267 expect_prompt ();
268
269 need_gi = 1;
270 }
271
272/* The "process" (board) is already stopped awaiting our commands, and
273 the program is already downloaded. We just set its PC and go. */
274
275 clear_proceed_status ();
276
277 /* Tell wait_for_inferior that we've started a new process. */
278 init_wait_for_inferior ();
279
280 /* Set up the "saved terminal modes" of the inferior
281 based on what modes we are starting it with. */
282 target_terminal_init ();
dd3b648e 283
76b2c3c8
JG
284 /* Install inferior's terminal modes. */
285 target_terminal_inferior ();
286
287 /* insert_step_breakpoint (); FIXME, do we need this? */
45dc9be3 288 proceed ((CORE_ADDR)entry_pt, TARGET_SIGNAL_DEFAULT, 0); /* Let 'er rip... */
dd3b648e
RP
289}
290
291/* Translate baud rates from integers to damn B_codes. Unix should
292 have outgrown this crap years ago, but even POSIX wouldn't buck it. */
293
294#ifndef B19200
295#define B19200 EXTA
296#endif
297#ifndef B38400
298#define B38400 EXTB
299#endif
300
301struct {int rate, damn_b;} baudtab[] = {
302 {0, B0},
303 {50, B50},
304 {75, B75},
305 {110, B110},
306 {134, B134},
307 {150, B150},
308 {200, B200},
309 {300, B300},
310 {600, B600},
311 {1200, B1200},
312 {1800, B1800},
313 {2400, B2400},
314 {4800, B4800},
315 {9600, B9600},
316 {19200, B19200},
317 {38400, B38400},
318 {-1, -1},
319};
320
321int damn_b (rate)
322 int rate;
323{
324 int i;
325
326 for (i = 0; baudtab[i].rate != -1; i++)
327 if (rate == baudtab[i].rate) return baudtab[i].damn_b;
328 return B38400; /* Random */
329}
330
331
332/* Open a connection to a remote debugger.
333 NAME is the filename used for communication, then a space,
334 then the name of the program as we should name it to EBMON. */
335
336static int baudrate = 9600;
337static char *dev_name;
338void
339eb_open (name, from_tty)
340 char *name;
341 int from_tty;
342{
343 TERMINAL sg;
344
345 char *p;
346
f2fc6e7a
JK
347 target_preopen (from_tty);
348
dd3b648e
RP
349 /* Find the first whitespace character, it separates dev_name from
350 prog_name. */
351 if (name == 0)
352 goto erroid;
353
354 for (p = name;
355 *p != '\0' && !isspace (*p); p++)
356 ;
357 if (*p == '\0')
358erroid:
359 error ("\
360Please include the name of the device for the serial port,\n\
361the baud rate, and the name of the program to run on the remote system.");
362 dev_name = alloca (p - name + 1);
363 strncpy (dev_name, name, p - name);
364 dev_name[p - name] = '\0';
365
366 /* Skip over the whitespace after dev_name */
367 for (; isspace (*p); p++)
368 /*EMPTY*/;
369
370 if (1 != sscanf (p, "%d ", &baudrate))
371 goto erroid;
372
373 /* Skip the number and then the spaces */
374 for (; isdigit (*p); p++)
375 /*EMPTY*/;
376 for (; isspace (*p); p++)
377 /*EMPTY*/;
378
379 if (prog_name != NULL)
380 free (prog_name);
381 prog_name = savestring (p, strlen (p));
382
383 eb_close (0);
384
385 eb_desc = open (dev_name, O_RDWR);
386 if (eb_desc < 0)
387 perror_with_name (dev_name);
388 ioctl (eb_desc, TIOCGETP, &sg);
389#ifdef HAVE_TERMIO
390 sg.c_cc[VMIN] = 0; /* read with timeout. */
391 sg.c_cc[VTIME] = timeout * 10;
392 sg.c_lflag &= ~(ICANON | ECHO);
393 sg.c_cflag = (sg.c_cflag & ~CBAUD) | damn_b (baudrate);
394#else
395 sg.sg_ispeed = damn_b (baudrate);
396 sg.sg_ospeed = damn_b (baudrate);
397 sg.sg_flags |= RAW | ANYP;
398 sg.sg_flags &= ~ECHO;
399#endif
400
401 ioctl (eb_desc, TIOCSETP, &sg);
402 eb_stream = fdopen (eb_desc, "r+");
403
404 push_target (&eb_ops);
405 if (from_tty)
406 printf ("Remote %s debugging %s using %s\n", target_shortname,
407 prog_name, dev_name);
408
409#ifndef HAVE_TERMIO
410#ifndef NO_SIGINTERRUPT
411 /* Cause SIGALRM's to make reads fail with EINTR instead of resuming
412 the read. */
413 if (siginterrupt (SIGALRM, 1) != 0)
414 perror ("eb_open: error in siginterrupt");
415#endif
416
417 /* Set up read timeout timer. */
418 if ((void (*)) signal (SIGALRM, eb_timer) == (void (*)) -1)
419 perror ("eb_open: error in signal");
420#endif
421
422#if defined (LOG_FILE)
423 log_file = fopen (LOG_FILE, "w");
424 if (log_file == NULL)
425 perror_with_name (LOG_FILE);
426#endif
427
428 /* Hello? Are you there? */
429 write (eb_desc, "\n", 1);
430
431 expect_prompt ();
432}
433
434/* Close out all files and local state before this target loses control. */
435
e36ca74a 436static void
dd3b648e
RP
437eb_close (quitting)
438 int quitting;
439{
440
441 /* Due to a bug in Unix, fclose closes not only the stdio stream,
442 but also the file descriptor. So we don't actually close
443 eb_desc. */
444 if (eb_stream)
445 fclose (eb_stream); /* This also closes eb_desc */
446 if (eb_desc >= 0)
447 /* close (eb_desc); */
448
449 /* Do not try to close eb_desc again, later in the program. */
450 eb_stream = NULL;
451 eb_desc = -1;
452
453#if defined (LOG_FILE)
76b2c3c8
JG
454 if (log_file) {
455 if (ferror (log_file))
456 printf ("Error writing log file.\n");
457 if (fclose (log_file) != 0)
458 printf ("Error closing log file.\n");
459 }
dd3b648e
RP
460#endif
461}
462
463/* Terminate the open connection to the remote debugger.
464 Use this when you want to detach and do something else
465 with your gdb. */
466void
467eb_detach (from_tty)
468 int from_tty;
469{
470 pop_target(); /* calls eb_close to do the real work */
471 if (from_tty)
472 printf ("Ending remote %s debugging\n", target_shortname);
473}
474
475/* Tell the remote machine to resume. */
476
477void
25286543 478eb_resume (pid, step, sig)
67ac9759
JK
479 int pid, step;
480 enum target_signal sig;
dd3b648e
RP
481{
482 if (step)
483 {
484 write (eb_desc, "t 1,s\n", 6);
485 /* Wait for the echo. */
486 expect ("t 1,s\r");
487 /* Then comes a line containing the instruction we stepped to. */
488 expect ("\n@");
489 /* Then we get the prompt. */
490 expect_prompt ();
491
492 /* Force the next eb_wait to return a trap. Not doing anything
493 about I/O from the target means that the user has to type
494 "continue" to see any. This should be fixed. */
495 need_artificial_trap = 1;
496 }
497 else
498 {
499 if (need_gi)
500 {
501 need_gi = 0;
502 write (eb_desc, "gi\n", 3);
503
504 /* Swallow the echo of "gi". */
505 expect ("gi\r");
506 }
507 else
508 {
509 write (eb_desc, "GR\n", 3);
510 /* Swallow the echo. */
511 expect ("GR\r");
512 }
513 }
514}
515
516/* Wait until the remote machine stops, then return,
517 storing status in STATUS just as `wait' would. */
518
519int
520eb_wait (status)
67ac9759 521 struct target_waitstatus *status;
dd3b648e
RP
522{
523 /* Strings to look for. '?' means match any single character.
524 Note that with the algorithm we use, the initial character
525 of the string cannot recur in the string, or we will not
526 find some cases of the string in the input. */
527
528 static char bpt[] = "Invalid interrupt taken - #0x50 - ";
529 /* It would be tempting to look for "\n[__exit + 0x8]\n"
530 but that requires loading symbols with "yc i" and even if
531 we did do that we don't know that the file has symbols. */
532 static char exitmsg[] = "\n@????????I JMPTI GR121,LR0";
533 char *bp = bpt;
534 char *ep = exitmsg;
535
536 /* Large enough for either sizeof (bpt) or sizeof (exitmsg) chars. */
537 char swallowed[50];
538 /* Current position in swallowed. */
539 char *swallowed_p = swallowed;
540
541 int ch;
542 int ch_handled;
543
544 int old_timeout = timeout;
545
67ac9759
JK
546 status->kind = TARGET_WAITKIND_EXITED;
547 status->value.integer = 0;
dd3b648e
RP
548
549 if (need_artificial_trap != 0)
550 {
67ac9759
JK
551 status->kind = TARGET_WAITKIND_STOPPED;
552 status->value.sig = TARGET_SIGNAL_TRAP;
dd3b648e
RP
553 need_artificial_trap--;
554 return 0;
555 }
556
557 timeout = 0; /* Don't time out -- user program is running. */
558 while (1)
559 {
560 ch_handled = 0;
561 ch = readchar ();
562 if (ch == *bp)
563 {
564 bp++;
565 if (*bp == '\0')
566 break;
567 ch_handled = 1;
568
569 *swallowed_p++ = ch;
570 }
571 else
572 bp = bpt;
573
574 if (ch == *ep || *ep == '?')
575 {
576 ep++;
577 if (*ep == '\0')
578 break;
579
580 if (!ch_handled)
581 *swallowed_p++ = ch;
582 ch_handled = 1;
583 }
584 else
585 ep = exitmsg;
586
587 if (!ch_handled)
588 {
589 char *p;
590
591 /* Print out any characters which have been swallowed. */
592 for (p = swallowed; p < swallowed_p; ++p)
593 putc (*p, stdout);
594 swallowed_p = swallowed;
595
596 putc (ch, stdout);
597 }
598 }
599 expect_prompt ();
600 if (*bp== '\0')
67ac9759
JK
601 {
602 status->kind = TARGET_WAITKIND_STOPPED;
603 status->value.sig = TARGET_SIGNAL_TRAP;
604 }
dd3b648e 605 else
67ac9759
JK
606 {
607 status->kind = TARGET_WAITKIND_EXITED;
608 status->value.integer = 0;
609 }
dd3b648e
RP
610 timeout = old_timeout;
611
612 return 0;
613}
614
615/* Return the name of register number REGNO
616 in the form input and output by EBMON.
617
618 Returns a pointer to a static buffer containing the answer. */
619static char *
620get_reg_name (regno)
621 int regno;
622{
623 static char buf[80];
624 if (regno >= GR96_REGNUM && regno < GR96_REGNUM + 32)
625 sprintf (buf, "GR%03d", regno - GR96_REGNUM + 96);
626 else if (regno >= LR0_REGNUM && regno < LR0_REGNUM + 128)
627 sprintf (buf, "LR%03d", regno - LR0_REGNUM);
628 else if (regno == Q_REGNUM)
629 strcpy (buf, "SR131");
630 else if (regno >= BP_REGNUM && regno <= CR_REGNUM)
631 sprintf (buf, "SR%03d", regno - BP_REGNUM + 133);
632 else if (regno == ALU_REGNUM)
633 strcpy (buf, "SR132");
634 else if (regno >= IPC_REGNUM && regno <= IPB_REGNUM)
635 sprintf (buf, "SR%03d", regno - IPC_REGNUM + 128);
636 else if (regno >= VAB_REGNUM && regno <= LRU_REGNUM)
637 sprintf (buf, "SR%03d", regno - VAB_REGNUM);
638 else if (regno == GR1_REGNUM)
639 strcpy (buf, "GR001");
640 return buf;
641}
642
643/* Read the remote registers into the block REGS. */
644
645static void
646eb_fetch_registers ()
647{
648 int reg_index;
649 int regnum_index;
650 char tempbuf[10];
651 int i;
652
653#if 0
654 /* This should not be necessary, because one is supposed to read the
655 registers only when the inferior is stopped (at least with
656 ptrace() and why not make it the same for remote?). */
657 /* ^A is the "normal character" used to make sure we are talking to EBMON
658 and not to the program being debugged. */
659 write (eb_desc, "\001\n");
660 expect_prompt ();
661#endif
662
663 write (eb_desc, "dw gr96,gr127\n", 14);
664 for (reg_index = 96, regnum_index = GR96_REGNUM;
665 reg_index < 128;
666 reg_index += 4, regnum_index += 4)
667 {
668 sprintf (tempbuf, "GR%03d ", reg_index);
669 expect (tempbuf);
670 get_hex_regs (4, regnum_index);
671 expect ("\n");
672 }
673
674 for (i = 0; i < 128; i += 32)
675 {
676 /* The PC has a tendency to hang if we get these
677 all in one fell swoop ("dw lr0,lr127"). */
678 sprintf (tempbuf, "dw lr%d\n", i);
679 write (eb_desc, tempbuf, strlen (tempbuf));
680 for (reg_index = i, regnum_index = LR0_REGNUM + i;
681 reg_index < i + 32;
682 reg_index += 4, regnum_index += 4)
683 {
684 sprintf (tempbuf, "LR%03d ", reg_index);
685 expect (tempbuf);
686 get_hex_regs (4, regnum_index);
687 expect ("\n");
688 }
689 }
690
691 write (eb_desc, "dw sr133,sr133\n", 15);
692 expect ("SR133 ");
693 get_hex_regs (1, BP_REGNUM);
694 expect ("\n");
695
696 write (eb_desc, "dw sr134,sr134\n", 15);
697 expect ("SR134 ");
698 get_hex_regs (1, FC_REGNUM);
699 expect ("\n");
700
701 write (eb_desc, "dw sr135,sr135\n", 15);
702 expect ("SR135 ");
703 get_hex_regs (1, CR_REGNUM);
704 expect ("\n");
705
706 write (eb_desc, "dw sr131,sr131\n", 15);
707 expect ("SR131 ");
708 get_hex_regs (1, Q_REGNUM);
709 expect ("\n");
710
711 write (eb_desc, "dw sr0,sr14\n", 12);
712 for (reg_index = 0, regnum_index = VAB_REGNUM;
713 regnum_index <= LRU_REGNUM;
714 regnum_index += 4, reg_index += 4)
715 {
716 sprintf (tempbuf, "SR%03d ", reg_index);
717 expect (tempbuf);
718 get_hex_regs (reg_index == 12 ? 3 : 4, regnum_index);
719 expect ("\n");
720 }
721
722 /* There doesn't seem to be any way to get these. */
723 {
724 int val = -1;
a058c1e8
RP
725 supply_register (FPE_REGNUM, (char *) &val);
726 supply_register (INTE_REGNUM, (char *) &val);
727 supply_register (FPS_REGNUM, (char *) &val);
728 supply_register (EXO_REGNUM, (char *) &val);
dd3b648e
RP
729 }
730
731 write (eb_desc, "dw gr1,gr1\n", 11);
732 expect ("GR001 ");
733 get_hex_regs (1, GR1_REGNUM);
734 expect_prompt ();
735}
736
737/* Fetch register REGNO, or all registers if REGNO is -1.
738 Returns errno value. */
17f7e032 739void
dd3b648e
RP
740eb_fetch_register (regno)
741 int regno;
742{
743 if (regno == -1)
744 eb_fetch_registers ();
745 else
746 {
747 char *name = get_reg_name (regno);
748 fprintf (eb_stream, "dw %s,%s\n", name, name);
749 expect (name);
750 expect (" ");
751 get_hex_regs (1, regno);
752 expect_prompt ();
753 }
17f7e032 754 return;
dd3b648e
RP
755}
756
757/* Store the remote registers from the contents of the block REGS. */
758
759static void
760eb_store_registers ()
761{
762 int i, j;
763 fprintf (eb_stream, "s gr1,%x\n", read_register (GR1_REGNUM));
764 expect_prompt ();
765
766 for (j = 0; j < 32; j += 16)
767 {
768 fprintf (eb_stream, "s gr%d,", j + 96);
769 for (i = 0; i < 15; ++i)
770 fprintf (eb_stream, "%x,", read_register (GR96_REGNUM + j + i));
771 fprintf (eb_stream, "%x\n", read_register (GR96_REGNUM + j + 15));
772 expect_prompt ();
773 }
774
775 for (j = 0; j < 128; j += 16)
776 {
777 fprintf (eb_stream, "s lr%d,", j);
778 for (i = 0; i < 15; ++i)
779 fprintf (eb_stream, "%x,", read_register (LR0_REGNUM + j + i));
780 fprintf (eb_stream, "%x\n", read_register (LR0_REGNUM + j + 15));
781 expect_prompt ();
782 }
783
784 fprintf (eb_stream, "s sr133,%x,%x,%x\n", read_register (BP_REGNUM),
785 read_register (FC_REGNUM), read_register (CR_REGNUM));
786 expect_prompt ();
787 fprintf (eb_stream, "s sr131,%x\n", read_register (Q_REGNUM));
788 expect_prompt ();
789 fprintf (eb_stream, "s sr0,");
790 for (i = 0; i < 11; ++i)
791 fprintf (eb_stream, "%x,", read_register (VAB_REGNUM + i));
792 fprintf (eb_stream, "%x\n", read_register (VAB_REGNUM + 11));
793 expect_prompt ();
794}
795
796/* Store register REGNO, or all if REGNO == 0.
797 Return errno value. */
e95bfbf1 798void
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799eb_store_register (regno)
800 int regno;
801{
802 if (regno == -1)
803 eb_store_registers ();
804 else
805 {
806 char *name = get_reg_name (regno);
807 fprintf (eb_stream, "s %s,%x\n", name, read_register (regno));
808 /* Setting GR1 changes the numbers of all the locals, so
809 invalidate the register cache. Do this *after* calling
810 read_register, because we want read_register to return the
811 value that write_register has just stuffed into the registers
812 array, not the value of the register fetched from the
813 inferior. */
814 if (regno == GR1_REGNUM)
815 registers_changed ();
816 expect_prompt ();
817 }
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818}
819
820/* Get ready to modify the registers array. On machines which store
821 individual registers, this doesn't need to do anything. On machines
822 which store all the registers in one fell swoop, this makes sure
823 that registers contains all the registers from the program being
824 debugged. */
825
826void
827eb_prepare_to_store ()
828{
829 /* Do nothing, since we can store individual regs */
830}
831
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832
833/* FIXME-someday! Merge these two. */
dd3b648e 834int
8f1f2a72 835eb_xfer_inferior_memory (memaddr, myaddr, len, write, target)
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836 CORE_ADDR memaddr;
837 char *myaddr;
838 int len;
839 int write;
8f1f2a72 840 struct target_ops *target; /* ignored */
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841{
842 if (write)
843 return eb_write_inferior_memory (memaddr, myaddr, len);
844 else
76b2c3c8 845 return eb_read_inferior_memory (memaddr, myaddr, len);
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846}
847
848void
849eb_files_info ()
850{
851 printf ("\tAttached to %s at %d baud and running program %s.\n",
852 dev_name, baudrate, prog_name);
853}
854
855/* Copy LEN bytes of data from debugger memory at MYADDR
76b2c3c8 856 to inferior's memory at MEMADDR. Returns length moved. */
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857int
858eb_write_inferior_memory (memaddr, myaddr, len)
859 CORE_ADDR memaddr;
860 char *myaddr;
861 int len;
862{
863 int i;
864
865 for (i = 0; i < len; i++)
866 {
867 if ((i % 16) == 0)
868 fprintf (eb_stream, "sb %x,", memaddr + i);
869 if ((i % 16) == 15 || i == len - 1)
870 {
871 fprintf (eb_stream, "%x\n", ((unsigned char *)myaddr)[i]);
872 expect_prompt ();
873 }
874 else
875 fprintf (eb_stream, "%x,", ((unsigned char *)myaddr)[i]);
876 }
76b2c3c8 877 return len;
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878}
879
880/* Read LEN bytes from inferior memory at MEMADDR. Put the result
76b2c3c8 881 at debugger address MYADDR. Returns length moved. */
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882int
883eb_read_inferior_memory(memaddr, myaddr, len)
884 CORE_ADDR memaddr;
885 char *myaddr;
886 int len;
887{
888 int i;
889
890 /* Number of bytes read so far. */
891 int count;
892
893 /* Starting address of this pass. */
894 unsigned long startaddr;
895
896 /* Number of bytes to read in this pass. */
897 int len_this_pass;
898
899 /* Note that this code works correctly if startaddr is just less
900 than UINT_MAX (well, really CORE_ADDR_MAX if there was such a
901 thing). That is, something like
902 eb_read_bytes (CORE_ADDR_MAX - 4, foo, 4)
903 works--it never adds len to memaddr and gets 0. */
904 /* However, something like
905 eb_read_bytes (CORE_ADDR_MAX - 3, foo, 4)
906 doesn't need to work. Detect it and give up if there's an attempt
907 to do that. */
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908 if (((memaddr - 1) + len) < memaddr) {
909 errno = EIO;
910 return 0;
911 }
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912
913 startaddr = memaddr;
914 count = 0;
915 while (count < len)
916 {
917 len_this_pass = 16;
918 if ((startaddr % 16) != 0)
919 len_this_pass -= startaddr % 16;
920 if (len_this_pass > (len - count))
921 len_this_pass = (len - count);
922
923 fprintf (eb_stream, "db %x,%x\n", startaddr,
924 (startaddr - 1) + len_this_pass);
925 expect ("\n");
926
927 /* Look for 8 hex digits. */
928 i = 0;
929 while (1)
930 {
931 if (isxdigit (readchar ()))
932 ++i;
933 else
934 {
935 expect_prompt ();
936 error ("Hex digit expected from remote system.");
937 }
938 if (i >= 8)
939 break;
940 }
941
942 expect (" ");
943
944 for (i = 0; i < len_this_pass; i++)
945 get_hex_byte (&myaddr[count++]);
946
947 expect_prompt ();
948
949 startaddr += len_this_pass;
950 }
76b2c3c8 951 return len;
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952}
953
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954static void
955eb_kill (args, from_tty)
956 char *args;
957 int from_tty;
958{
959 return; /* Ignore attempts to kill target system */
960}
961
962/* Clean up when a program exits.
963
964 The program actually lives on in the remote processor's RAM, and may be
965 run again without a download. Don't leave it full of breakpoint
966 instructions. */
967
968void
969eb_mourn_inferior ()
970{
971 remove_breakpoints ();
71607f9d 972 unpush_target (&eb_ops);
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973 generic_mourn_inferior (); /* Do all the proper things now */
974}
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975/* Define the target subroutine names */
976
977struct target_ops eb_ops = {
978 "amd-eb", "Remote serial AMD EBMON target",
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979 "Use a remote computer running EBMON connected by a serial line.\n\
980Arguments are the name of the device for the serial line,\n\
981the speed to connect at in bits per second, and the filename of the\n\
982executable as it exists on the remote computer. For example,\n\
983 target amd-eb /dev/ttya 9600 demo",
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984 eb_open, eb_close,
985 0, eb_detach, eb_resume, eb_wait,
986 eb_fetch_register, eb_store_register,
a03d4f8e 987 eb_prepare_to_store,
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988 eb_xfer_inferior_memory, eb_files_info,
989 0, 0, /* Breakpoints */
990 0, 0, 0, 0, 0, /* Terminal handling */
76b2c3c8 991 eb_kill,
6b27ebe8 992 generic_load, /* load */
dd3b648e 993 0, /* lookup_symbol */
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994 eb_create_inferior,
995 eb_mourn_inferior,
5ee4e16c 996 0, /* can_run */
3950a34e 997 0, /* notice_signals */
78b459a7 998 0, /* to_stop */
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999 process_stratum, 0, /* next */
1000 1, 1, 1, 1, 1, /* all mem, mem, stack, regs, exec */
8f1f2a72 1001 0, 0, /* Section pointers */
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1002 OPS_MAGIC, /* Always the last thing */
1003};
1004
1005void
1006_initialize_remote_eb ()
1007{
1008 add_target (&eb_ops);
1009}