Obvious fix: in entries for 1998-02-10 and 1998-02-06,
[deliverable/binutils-gdb.git] / gdb / remote-array.c
1 /* Remote debugging interface for Array Tech RAID controller..
2 Copyright 90, 91, 92, 93, 94, 1995, 1998, 2001 Free Software Foundation, Inc.
3 Contributed by Cygnus Support. Written by Rob Savoye for Cygnus.
4
5 This module talks to a debug monitor called 'MONITOR', which
6 We communicate with MONITOR via either a direct serial line, or a TCP
7 (or possibly TELNET) stream to a terminal multiplexor,
8 which in turn talks to the target board.
9
10 This file is part of GDB.
11
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 2 of the License, or
15 (at your option) any later version.
16
17 This program is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 GNU General Public License for more details.
21
22 You should have received a copy of the GNU General Public License
23 along with this program; if not, write to the Free Software
24 Foundation, Inc., 59 Temple Place - Suite 330,
25 Boston, MA 02111-1307, USA.
26 */
27
28 #include "defs.h"
29 #include "gdbcore.h"
30 #include "target.h"
31 #include <ctype.h>
32 #include <sys/types.h>
33 #include "gdb_string.h"
34 #include "command.h"
35 #include "serial.h"
36 #include "monitor.h"
37 #include "remote-utils.h"
38 #include "inferior.h"
39 #include "version.h"
40 #include "regcache.h"
41
42 extern int baud_rate;
43
44 #define ARRAY_PROMPT ">> "
45
46 #define SWAP_TARGET_AND_HOST(buffer,len) \
47 do \
48 { \
49 if (TARGET_BYTE_ORDER != HOST_BYTE_ORDER) \
50 { \
51 char tmp; \
52 char *p = (char *)(buffer); \
53 char *q = ((char *)(buffer)) + len - 1; \
54 for (; p < q; p++, q--) \
55 { \
56 tmp = *q; \
57 *q = *p; \
58 *p = tmp; \
59 } \
60 } \
61 } \
62 while (0)
63
64 static void debuglogs (int, char *, ...);
65 static void array_open ();
66 static void array_close ();
67 static void array_detach ();
68 static void array_attach ();
69 static void array_resume ();
70 static void array_fetch_register ();
71 static void array_store_register ();
72 static void array_fetch_registers ();
73 static void array_store_registers ();
74 static void array_prepare_to_store ();
75 static void array_files_info ();
76 static void array_kill ();
77 static void array_create_inferior ();
78 static void array_mourn_inferior ();
79 static void make_gdb_packet ();
80 static int array_xfer_memory ();
81 static int array_wait ();
82 static int array_insert_breakpoint ();
83 static int array_remove_breakpoint ();
84 static int tohex ();
85 static int to_hex ();
86 static int from_hex ();
87 static int array_send_packet ();
88 static int array_get_packet ();
89 static unsigned long ascii2hexword ();
90 static void hexword2ascii ();
91
92 #define LOG_FILE "monitor.log"
93 #if defined (LOG_FILE)
94 FILE *log_file;
95 #endif
96
97 static int timeout = 30;
98 /* Having this larger than 400 causes us to be incompatible with m68k-stub.c
99 and i386-stub.c. Normally, no one would notice because it only matters
100 for writing large chunks of memory (e.g. in downloads). Also, this needs
101 to be more than 400 if required to hold the registers (see below, where
102 we round it up based on REGISTER_BYTES). */
103 #define PBUFSIZ 400
104
105 /*
106 * Descriptor for I/O to remote machine. Initialize it to NULL so that
107 * array_open knows that we don't have a file open when the program starts.
108 */
109 serial_t array_desc = NULL;
110
111 /*
112 * this array of registers need to match the indexes used by GDB. The
113 * whole reason this exists is cause the various ROM monitors use
114 * different strings than GDB does, and doesn't support all the
115 * registers either. So, typing "info reg sp" becomes a "r30".
116 */
117 extern char *tmp_mips_processor_type;
118 extern int mips_set_processor_type ();
119
120 static struct target_ops array_ops;
121
122 static void
123 init_array_ops (void)
124 {
125 array_ops.to_shortname = "array";
126 array_ops.to_longname =
127 "Debug using the standard GDB remote protocol for the Array Tech target.",
128 array_ops.to_doc =
129 "Debug using the standard GDB remote protocol for the Array Tech target.\n\
130 Specify the serial device it is connected to (e.g. /dev/ttya).";
131 array_ops.to_open = array_open;
132 array_ops.to_close = array_close;
133 array_ops.to_attach = NULL;
134 array_ops.to_post_attach = NULL;
135 array_ops.to_require_attach = NULL;
136 array_ops.to_detach = array_detach;
137 array_ops.to_require_detach = NULL;
138 array_ops.to_resume = array_resume;
139 array_ops.to_wait = array_wait;
140 array_ops.to_post_wait = NULL;
141 array_ops.to_fetch_registers = array_fetch_registers;
142 array_ops.to_store_registers = array_store_registers;
143 array_ops.to_prepare_to_store = array_prepare_to_store;
144 array_ops.to_xfer_memory = array_xfer_memory;
145 array_ops.to_files_info = array_files_info;
146 array_ops.to_insert_breakpoint = array_insert_breakpoint;
147 array_ops.to_remove_breakpoint = array_remove_breakpoint;
148 array_ops.to_terminal_init = 0;
149 array_ops.to_terminal_inferior = 0;
150 array_ops.to_terminal_ours_for_output = 0;
151 array_ops.to_terminal_ours = 0;
152 array_ops.to_terminal_info = 0;
153 array_ops.to_kill = array_kill;
154 array_ops.to_load = 0;
155 array_ops.to_lookup_symbol = 0;
156 array_ops.to_create_inferior = array_create_inferior;
157 array_ops.to_post_startup_inferior = NULL;
158 array_ops.to_acknowledge_created_inferior = NULL;
159 array_ops.to_clone_and_follow_inferior = NULL;
160 array_ops.to_post_follow_inferior_by_clone = NULL;
161 array_ops.to_insert_fork_catchpoint = NULL;
162 array_ops.to_remove_fork_catchpoint = NULL;
163 array_ops.to_insert_vfork_catchpoint = NULL;
164 array_ops.to_remove_vfork_catchpoint = NULL;
165 array_ops.to_has_forked = NULL;
166 array_ops.to_has_vforked = NULL;
167 array_ops.to_can_follow_vfork_prior_to_exec = NULL;
168 array_ops.to_post_follow_vfork = NULL;
169 array_ops.to_insert_exec_catchpoint = NULL;
170 array_ops.to_remove_exec_catchpoint = NULL;
171 array_ops.to_has_execd = NULL;
172 array_ops.to_reported_exec_events_per_exec_call = NULL;
173 array_ops.to_has_exited = NULL;
174 array_ops.to_mourn_inferior = array_mourn_inferior;
175 array_ops.to_can_run = 0;
176 array_ops.to_notice_signals = 0;
177 array_ops.to_thread_alive = 0;
178 array_ops.to_stop = 0;
179 array_ops.to_pid_to_exec_file = NULL;
180 array_ops.to_core_file_to_sym_file = NULL;
181 array_ops.to_stratum = process_stratum;
182 array_ops.DONT_USE = 0;
183 array_ops.to_has_all_memory = 1;
184 array_ops.to_has_memory = 1;
185 array_ops.to_has_stack = 1;
186 array_ops.to_has_registers = 1;
187 array_ops.to_has_execution = 1;
188 array_ops.to_sections = 0;
189 array_ops.to_sections_end = 0;
190 array_ops.to_magic = OPS_MAGIC;
191 };
192
193 /*
194 * printf_monitor -- send data to monitor. Works just like printf.
195 */
196 static void
197 printf_monitor (char *pattern,...)
198 {
199 va_list args;
200 char buf[PBUFSIZ];
201 int i;
202
203 va_start (args, pattern);
204
205 vsprintf (buf, pattern, args);
206
207 debuglogs (1, "printf_monitor(), Sending: \"%s\".", buf);
208
209 if (strlen (buf) > PBUFSIZ)
210 error ("printf_monitor(): string too long");
211 if (SERIAL_WRITE (array_desc, buf, strlen (buf)))
212 fprintf (stderr, "SERIAL_WRITE failed: %s\n", safe_strerror (errno));
213 }
214 /*
215 * write_monitor -- send raw data to monitor.
216 */
217 static void
218 write_monitor (char data[], int len)
219 {
220 if (SERIAL_WRITE (array_desc, data, len))
221 fprintf (stderr, "SERIAL_WRITE failed: %s\n", safe_strerror (errno));
222
223 *(data + len + 1) = '\0';
224 debuglogs (1, "write_monitor(), Sending: \"%s\".", data);
225
226 }
227
228 /*
229 * debuglogs -- deal with debugging info to multiple sources. This takes
230 * two real args, the first one is the level to be compared against
231 * the sr_get_debug() value, the second arg is a printf buffer and args
232 * to be formatted and printed. A CR is added after each string is printed.
233 */
234 static void
235 debuglogs (int level, char *pattern,...)
236 {
237 va_list args;
238 char *p;
239 unsigned char buf[PBUFSIZ];
240 char newbuf[PBUFSIZ];
241 int i;
242
243 va_start (args, pattern);
244
245 if ((level < 0) || (level > 100))
246 {
247 error ("Bad argument passed to debuglogs(), needs debug level");
248 return;
249 }
250
251 vsprintf (buf, pattern, args); /* format the string */
252
253 /* convert some characters so it'll look right in the log */
254 p = newbuf;
255 for (i = 0; buf[i] != '\0'; i++)
256 {
257 if (i > PBUFSIZ)
258 error ("Debug message too long");
259 switch (buf[i])
260 {
261 case '\n': /* newlines */
262 *p++ = '\\';
263 *p++ = 'n';
264 continue;
265 case '\r': /* carriage returns */
266 *p++ = '\\';
267 *p++ = 'r';
268 continue;
269 case '\033': /* escape */
270 *p++ = '\\';
271 *p++ = 'e';
272 continue;
273 case '\t': /* tab */
274 *p++ = '\\';
275 *p++ = 't';
276 continue;
277 case '\b': /* backspace */
278 *p++ = '\\';
279 *p++ = 'b';
280 continue;
281 default: /* no change */
282 *p++ = buf[i];
283 }
284
285 if (buf[i] < 26)
286 { /* modify control characters */
287 *p++ = '^';
288 *p++ = buf[i] + 'A';
289 continue;
290 }
291 if (buf[i] >= 128)
292 { /* modify control characters */
293 *p++ = '!';
294 *p++ = buf[i] + 'A';
295 continue;
296 }
297 }
298 *p = '\0'; /* terminate the string */
299
300 if (sr_get_debug () > level)
301 printf_unfiltered ("%s\n", newbuf);
302
303 #ifdef LOG_FILE /* write to the monitor log */
304 if (log_file != 0x0)
305 {
306 fputs (newbuf, log_file);
307 fputc ('\n', log_file);
308 fflush (log_file);
309 }
310 #endif
311 }
312
313 /* readchar -- read a character from the remote system, doing all the fancy
314 * timeout stuff.
315 */
316 static int
317 readchar (int timeout)
318 {
319 int c;
320
321 c = SERIAL_READCHAR (array_desc, abs (timeout));
322
323 if (sr_get_debug () > 5)
324 {
325 putchar (c & 0x7f);
326 debuglogs (5, "readchar: timeout = %d\n", timeout);
327 }
328
329 #ifdef LOG_FILE
330 if (isascii (c))
331 putc (c & 0x7f, log_file);
332 #endif
333
334 if (c >= 0)
335 return c & 0x7f;
336
337 if (c == SERIAL_TIMEOUT)
338 {
339 if (timeout <= 0)
340 return c; /* Polls shouldn't generate timeout errors */
341 error ("Timeout reading from remote system.");
342 #ifdef LOG_FILE
343 fputs ("ERROR: Timeout reading from remote system", log_file);
344 #endif
345 }
346 perror_with_name ("readchar");
347 }
348
349 /*
350 * expect -- scan input from the remote system, until STRING is found.
351 * If DISCARD is non-zero, then discard non-matching input, else print
352 * it out. Let the user break out immediately.
353 */
354 static void
355 expect (char *string, int discard)
356 {
357 char *p = string;
358 int c;
359
360
361 debuglogs (1, "Expecting \"%s\".", string);
362
363 immediate_quit++;
364 while (1)
365 {
366 c = readchar (timeout);
367 if (!isascii (c))
368 continue;
369 if (c == *p++)
370 {
371 if (*p == '\0')
372 {
373 immediate_quit--;
374 debuglogs (4, "Matched");
375 return;
376 }
377 }
378 else
379 {
380 if (!discard)
381 {
382 fputc_unfiltered (c, gdb_stdout);
383 }
384 p = string;
385 }
386 }
387 }
388
389 /* Keep discarding input until we see the MONITOR array_cmds->prompt.
390
391 The convention for dealing with the expect_prompt is that you
392 o give your command
393 o *then* wait for the expect_prompt.
394
395 Thus the last thing that a procedure does with the serial line
396 will be an expect_prompt(). Exception: array_resume does not
397 wait for the expect_prompt, because the terminal is being handed over
398 to the inferior. However, the next thing which happens after that
399 is a array_wait which does wait for the expect_prompt.
400 Note that this includes abnormal exit, e.g. error(). This is
401 necessary to prevent getting into states from which we can't
402 recover. */
403 static void
404 expect_prompt (int discard)
405 {
406 expect (ARRAY_PROMPT, discard);
407 }
408
409 /*
410 * junk -- ignore junk characters. Returns a 1 if junk, 0 otherwise
411 */
412 static int
413 junk (char ch)
414 {
415 switch (ch)
416 {
417 case '\0':
418 case ' ':
419 case '-':
420 case '\t':
421 case '\r':
422 case '\n':
423 if (sr_get_debug () > 5)
424 debuglogs (5, "Ignoring \'%c\'.", ch);
425 return 1;
426 default:
427 if (sr_get_debug () > 5)
428 debuglogs (5, "Accepting \'%c\'.", ch);
429 return 0;
430 }
431 }
432
433 /*
434 * get_hex_digit -- Get a hex digit from the remote system & return its value.
435 * If ignore is nonzero, ignore spaces, newline & tabs.
436 */
437 static int
438 get_hex_digit (int ignore)
439 {
440 static int ch;
441 while (1)
442 {
443 ch = readchar (timeout);
444 if (junk (ch))
445 continue;
446 if (sr_get_debug () > 4)
447 {
448 debuglogs (4, "get_hex_digit() got a 0x%x(%c)", ch, ch);
449 }
450 else
451 {
452 #ifdef LOG_FILE /* write to the monitor log */
453 if (log_file != 0x0)
454 {
455 fputs ("get_hex_digit() got a 0x", log_file);
456 fputc (ch, log_file);
457 fputc ('\n', log_file);
458 fflush (log_file);
459 }
460 #endif
461 }
462
463 if (ch >= '0' && ch <= '9')
464 return ch - '0';
465 else if (ch >= 'A' && ch <= 'F')
466 return ch - 'A' + 10;
467 else if (ch >= 'a' && ch <= 'f')
468 return ch - 'a' + 10;
469 else if (ch == ' ' && ignore)
470 ;
471 else
472 {
473 expect_prompt (1);
474 debuglogs (4, "Invalid hex digit from remote system. (0x%x)", ch);
475 error ("Invalid hex digit from remote system. (0x%x)", ch);
476 }
477 }
478 }
479
480 /* get_hex_byte -- Get a byte from monitor and put it in *BYT.
481 * Accept any number leading spaces.
482 */
483 static void
484 get_hex_byte (char *byt)
485 {
486 int val;
487
488 val = get_hex_digit (1) << 4;
489 debuglogs (4, "get_hex_byte() -- Read first nibble 0x%x", val);
490
491 val |= get_hex_digit (0);
492 debuglogs (4, "get_hex_byte() -- Read second nibble 0x%x", val);
493 *byt = val;
494
495 debuglogs (4, "get_hex_byte() -- Read a 0x%x", val);
496 }
497
498 /*
499 * get_hex_word -- Get N 32-bit words from remote, each preceded by a space,
500 * and put them in registers starting at REGNO.
501 */
502 static int
503 get_hex_word (void)
504 {
505 long val, newval;
506 int i;
507
508 val = 0;
509
510 #if 0
511 if (HOST_BYTE_ORDER == BIG_ENDIAN)
512 {
513 #endif
514 for (i = 0; i < 8; i++)
515 val = (val << 4) + get_hex_digit (i == 0);
516 #if 0
517 }
518 else
519 {
520 for (i = 7; i >= 0; i--)
521 val = (val << 4) + get_hex_digit (i == 0);
522 }
523 #endif
524
525 debuglogs (4, "get_hex_word() got a 0x%x for a %s host.", val, (HOST_BYTE_ORDER == BIG_ENDIAN) ? "big endian" : "little endian");
526
527 return val;
528 }
529
530 /* This is called not only when we first attach, but also when the
531 user types "run" after having attached. */
532 static void
533 array_create_inferior (char *execfile, char *args, char **env)
534 {
535 int entry_pt;
536
537 if (args && *args)
538 error ("Can't pass arguments to remote MONITOR process");
539
540 if (execfile == 0 || exec_bfd == 0)
541 error ("No executable file specified");
542
543 entry_pt = (int) bfd_get_start_address (exec_bfd);
544
545 /* The "process" (board) is already stopped awaiting our commands, and
546 the program is already downloaded. We just set its PC and go. */
547
548 clear_proceed_status ();
549
550 /* Tell wait_for_inferior that we've started a new process. */
551 init_wait_for_inferior ();
552
553 /* Set up the "saved terminal modes" of the inferior
554 based on what modes we are starting it with. */
555 target_terminal_init ();
556
557 /* Install inferior's terminal modes. */
558 target_terminal_inferior ();
559
560 /* insert_step_breakpoint (); FIXME, do we need this? */
561
562 /* Let 'er rip... */
563 proceed ((CORE_ADDR) entry_pt, TARGET_SIGNAL_DEFAULT, 0);
564 }
565
566 /*
567 * array_open -- open a connection to a remote debugger.
568 * NAME is the filename used for communication.
569 */
570 static int baudrate = 9600;
571 static char dev_name[100];
572
573 static void
574 array_open (char *args, char *name, int from_tty)
575 {
576 char packet[PBUFSIZ];
577
578 if (args == NULL)
579 error ("Use `target %s DEVICE-NAME' to use a serial port, or \n\
580 `target %s HOST-NAME:PORT-NUMBER' to use a network connection.", name, name);
581
582 /* if (is_open) */
583 array_close (0);
584
585 target_preopen (from_tty);
586 unpush_target (&array_ops);
587
588 tmp_mips_processor_type = "lsi33k"; /* change the default from r3051 */
589 mips_set_processor_type_command ("lsi33k", 0);
590
591 strcpy (dev_name, args);
592 array_desc = SERIAL_OPEN (dev_name);
593
594 if (array_desc == NULL)
595 perror_with_name (dev_name);
596
597 if (baud_rate != -1)
598 {
599 if (SERIAL_SETBAUDRATE (array_desc, baud_rate))
600 {
601 SERIAL_CLOSE (array_desc);
602 perror_with_name (name);
603 }
604 }
605
606 SERIAL_RAW (array_desc);
607
608 #if defined (LOG_FILE)
609 log_file = fopen (LOG_FILE, "w");
610 if (log_file == NULL)
611 perror_with_name (LOG_FILE);
612 fprintf (log_file, "GDB %s (%s", version, host_name);
613 fprintf (log_file, " --target %s)\n", array_ops.to_shortname);
614 fprintf (log_file, "Remote target %s connected to %s\n\n", array_ops.to_shortname, dev_name);
615 #endif
616
617 /* see if the target is alive. For a ROM monitor, we can just try to force the
618 expect_prompt to print a few times. For the GDB remote protocol, the application
619 being debugged is sitting at a breakpoint and waiting for GDB to initialize
620 the connection. We force it to give us an empty packet to see if it's alive.
621 */
622 debuglogs (3, "Trying to ACK the target's debug stub");
623 /* unless your are on the new hardware, the old board won't initialize
624 because the '@' doesn't flush output like it does on the new ROMS.
625 */
626 printf_monitor ("@"); /* ask for the last signal */
627 expect_prompt (1); /* See if we get a expect_prompt */
628 #ifdef TEST_ARRAY /* skip packet for testing */
629 make_gdb_packet (packet, "?"); /* ask for a bogus packet */
630 if (array_send_packet (packet) == 0)
631 error ("Couldn't transmit packet\n");
632 printf_monitor ("@\n"); /* force it to flush stdout */
633 expect_prompt (1); /* See if we get a expect_prompt */
634 #endif
635 push_target (&array_ops);
636 if (from_tty)
637 printf ("Remote target %s connected to %s\n", array_ops.to_shortname, dev_name);
638 }
639
640 /*
641 * array_close -- Close out all files and local state before this
642 * target loses control.
643 */
644
645 static void
646 array_close (int quitting)
647 {
648 SERIAL_CLOSE (array_desc);
649 array_desc = NULL;
650
651 debuglogs (1, "array_close (quitting=%d)", quitting);
652
653 #if defined (LOG_FILE)
654 if (log_file)
655 {
656 if (ferror (log_file))
657 printf_filtered ("Error writing log file.\n");
658 if (fclose (log_file) != 0)
659 printf_filtered ("Error closing log file.\n");
660 }
661 #endif
662 }
663
664 /*
665 * array_detach -- terminate the open connection to the remote
666 * debugger. Use this when you want to detach and do something
667 * else with your gdb.
668 */
669 static void
670 array_detach (int from_tty)
671 {
672
673 debuglogs (1, "array_detach ()");
674
675 pop_target (); /* calls array_close to do the real work */
676 if (from_tty)
677 printf ("Ending remote %s debugging\n", target_shortname);
678 }
679
680 /*
681 * array_attach -- attach GDB to the target.
682 */
683 static void
684 array_attach (char *args, int from_tty)
685 {
686 if (from_tty)
687 printf ("Starting remote %s debugging\n", target_shortname);
688
689 debuglogs (1, "array_attach (args=%s)", args);
690
691 printf_monitor ("go %x\n");
692 /* swallow the echo. */
693 expect ("go %x\n", 1);
694 }
695
696 /*
697 * array_resume -- Tell the remote machine to resume.
698 */
699 static void
700 array_resume (int pid, int step, enum target_signal sig)
701 {
702 debuglogs (1, "array_resume (step=%d, sig=%d)", step, sig);
703
704 if (step)
705 {
706 printf_monitor ("s\n");
707 }
708 else
709 {
710 printf_monitor ("go\n");
711 }
712 }
713
714 #define TMPBUFSIZ 5
715
716 /*
717 * array_wait -- Wait until the remote machine stops, then return,
718 * storing status in status just as `wait' would.
719 */
720 static int
721 array_wait (int pid, struct target_waitstatus *status)
722 {
723 int old_timeout = timeout;
724 int result, i;
725 char c;
726 serial_t tty_desc;
727 serial_ttystate ttystate;
728
729 debuglogs (1, "array_wait (), printing extraneous text.");
730
731 status->kind = TARGET_WAITKIND_EXITED;
732 status->value.integer = 0;
733
734 timeout = 0; /* Don't time out -- user program is running. */
735
736 #if !defined(__GO32__) && !defined(__MSDOS__) && !defined(_WIN32)
737 tty_desc = SERIAL_FDOPEN (0);
738 ttystate = SERIAL_GET_TTY_STATE (tty_desc);
739 SERIAL_RAW (tty_desc);
740
741 i = 0;
742 /* poll on the serial port and the keyboard. */
743 while (1)
744 {
745 c = readchar (timeout);
746 if (c > 0)
747 {
748 if (c == *(ARRAY_PROMPT + i))
749 {
750 if (++i >= strlen (ARRAY_PROMPT))
751 { /* matched the prompt */
752 debuglogs (4, "array_wait(), got the expect_prompt.");
753 break;
754 }
755 }
756 else
757 { /* not the prompt */
758 i = 0;
759 }
760 fputc_unfiltered (c, gdb_stdout);
761 gdb_flush (gdb_stdout);
762 }
763 c = SERIAL_READCHAR (tty_desc, timeout);
764 if (c > 0)
765 {
766 SERIAL_WRITE (array_desc, &c, 1);
767 /* do this so it looks like there's keyboard echo */
768 if (c == 3) /* exit on Control-C */
769 break;
770 #if 0
771 fputc_unfiltered (c, gdb_stdout);
772 gdb_flush (gdb_stdout);
773 #endif
774 }
775 }
776 SERIAL_SET_TTY_STATE (tty_desc, ttystate);
777 #else
778 expect_prompt (1);
779 debuglogs (4, "array_wait(), got the expect_prompt.");
780 #endif
781
782 status->kind = TARGET_WAITKIND_STOPPED;
783 status->value.sig = TARGET_SIGNAL_TRAP;
784
785 timeout = old_timeout;
786
787 return 0;
788 }
789
790 /*
791 * array_fetch_registers -- read the remote registers into the
792 * block regs.
793 */
794 static void
795 array_fetch_registers (int ignored)
796 {
797 int regno, i;
798 char *p;
799 unsigned char packet[PBUFSIZ];
800 char regs[REGISTER_BYTES];
801
802 debuglogs (1, "array_fetch_registers (ignored=%d)\n", ignored);
803
804 memset (packet, 0, PBUFSIZ);
805 /* Unimplemented registers read as all bits zero. */
806 memset (regs, 0, REGISTER_BYTES);
807 make_gdb_packet (packet, "g");
808 if (array_send_packet (packet) == 0)
809 error ("Couldn't transmit packet\n");
810 if (array_get_packet (packet) == 0)
811 error ("Couldn't receive packet\n");
812 /* FIXME: read bytes from packet */
813 debuglogs (4, "array_fetch_registers: Got a \"%s\" back\n", packet);
814 for (regno = 0; regno <= PC_REGNUM + 4; regno++)
815 {
816 /* supply register stores in target byte order, so swap here */
817 /* FIXME: convert from ASCII hex to raw bytes */
818 i = ascii2hexword (packet + (regno * 8));
819 debuglogs (5, "Adding register %d = %x\n", regno, i);
820 SWAP_TARGET_AND_HOST (&i, 4);
821 supply_register (regno, (char *) &i);
822 }
823 }
824
825 /*
826 * This is unused by targets like this one that use a
827 * protocol based on GDB's remote protocol.
828 */
829 static void
830 array_fetch_register (int ignored)
831 {
832 array_fetch_registers (0 /* ignored */);
833 }
834
835 /*
836 * Get all the registers from the targets. They come back in a large array.
837 */
838 static void
839 array_store_registers (int ignored)
840 {
841 int regno;
842 unsigned long i;
843 char packet[PBUFSIZ];
844 char buf[PBUFSIZ];
845 char num[9];
846
847 debuglogs (1, "array_store_registers()");
848
849 memset (packet, 0, PBUFSIZ);
850 memset (buf, 0, PBUFSIZ);
851 buf[0] = 'G';
852
853 /* Unimplemented registers read as all bits zero. */
854 /* FIXME: read bytes from packet */
855 for (regno = 0; regno < 41; regno++)
856 { /* FIXME */
857 /* supply register stores in target byte order, so swap here */
858 /* FIXME: convert from ASCII hex to raw bytes */
859 i = (unsigned long) read_register (regno);
860 hexword2ascii (num, i);
861 strcpy (buf + (regno * 8) + 1, num);
862 }
863 *(buf + (regno * 8) + 2) = 0;
864 make_gdb_packet (packet, buf);
865 if (array_send_packet (packet) == 0)
866 error ("Couldn't transmit packet\n");
867 if (array_get_packet (packet) == 0)
868 error ("Couldn't receive packet\n");
869
870 registers_changed ();
871 }
872
873 /*
874 * This is unused by targets like this one that use a
875 * protocol based on GDB's remote protocol.
876 */
877 static void
878 array_store_register (int ignored)
879 {
880 array_store_registers (0 /* ignored */);
881 }
882
883 /* Get ready to modify the registers array. On machines which store
884 individual registers, this doesn't need to do anything. On machines
885 which store all the registers in one fell swoop, this makes sure
886 that registers contains all the registers from the program being
887 debugged. */
888
889 static void
890 array_prepare_to_store (void)
891 {
892 /* Do nothing, since we can store individual regs */
893 }
894
895 static void
896 array_files_info (void)
897 {
898 printf ("\tAttached to %s at %d baud.\n",
899 dev_name, baudrate);
900 }
901
902 /*
903 * array_write_inferior_memory -- Copy LEN bytes of data from debugger
904 * memory at MYADDR to inferior's memory at MEMADDR. Returns length moved.
905 */
906 static int
907 array_write_inferior_memory (CORE_ADDR memaddr, unsigned char *myaddr, int len)
908 {
909 unsigned long i;
910 int j;
911 char packet[PBUFSIZ];
912 char buf[PBUFSIZ];
913 char num[9];
914 char *p;
915
916 debuglogs (1, "array_write_inferior_memory (memaddr=0x%x, myaddr=0x%x, len=%d)", memaddr, myaddr, len);
917 memset (buf, '\0', PBUFSIZ); /* this also sets the string terminator */
918 p = buf;
919
920 *p++ = 'M'; /* The command to write memory */
921 hexword2ascii (num, memaddr); /* convert the address */
922 strcpy (p, num); /* copy the address */
923 p += 8;
924 *p++ = ','; /* add comma delimeter */
925 hexword2ascii (num, len); /* Get the length as a 4 digit number */
926 *p++ = num[4];
927 *p++ = num[5];
928 *p++ = num[6];
929 *p++ = num[7];
930 *p++ = ':'; /* add the colon delimeter */
931 for (j = 0; j < len; j++)
932 { /* copy the data in after converting it */
933 *p++ = tohex ((myaddr[j] >> 4) & 0xf);
934 *p++ = tohex (myaddr[j] & 0xf);
935 }
936
937 make_gdb_packet (packet, buf);
938 if (array_send_packet (packet) == 0)
939 error ("Couldn't transmit packet\n");
940 if (array_get_packet (packet) == 0)
941 error ("Couldn't receive packet\n");
942
943 return len;
944 }
945
946 /*
947 * array_read_inferior_memory -- read LEN bytes from inferior memory
948 * at MEMADDR. Put the result at debugger address MYADDR. Returns
949 * length moved.
950 */
951 static int
952 array_read_inferior_memory (CORE_ADDR memaddr, char *myaddr, int len)
953 {
954 int j;
955 char buf[20];
956 char packet[PBUFSIZ];
957 int count; /* Number of bytes read so far. */
958 unsigned long startaddr; /* Starting address of this pass. */
959 int len_this_pass; /* Number of bytes to read in this pass. */
960
961 debuglogs (1, "array_read_inferior_memory (memaddr=0x%x, myaddr=0x%x, len=%d)", memaddr, myaddr, len);
962
963 /* Note that this code works correctly if startaddr is just less
964 than UINT_MAX (well, really CORE_ADDR_MAX if there was such a
965 thing). That is, something like
966 array_read_bytes (CORE_ADDR_MAX - 4, foo, 4)
967 works--it never adds len To memaddr and gets 0. */
968 /* However, something like
969 array_read_bytes (CORE_ADDR_MAX - 3, foo, 4)
970 doesn't need to work. Detect it and give up if there's an attempt
971 to do that. */
972 if (((memaddr - 1) + len) < memaddr)
973 {
974 errno = EIO;
975 return 0;
976 }
977
978 for (count = 0, startaddr = memaddr; count < len; startaddr += len_this_pass)
979 {
980 /* Try to align to 16 byte boundry (why?) */
981 len_this_pass = 16;
982 if ((startaddr % 16) != 0)
983 {
984 len_this_pass -= startaddr % 16;
985 }
986 /* Only transfer bytes we need */
987 if (len_this_pass > (len - count))
988 {
989 len_this_pass = (len - count);
990 }
991 /* Fetch the bytes */
992 debuglogs (3, "read %d bytes from inferior address %x", len_this_pass,
993 startaddr);
994 sprintf (buf, "m%08lx,%04x", startaddr, len_this_pass);
995 make_gdb_packet (packet, buf);
996 if (array_send_packet (packet) == 0)
997 {
998 error ("Couldn't transmit packet\n");
999 }
1000 if (array_get_packet (packet) == 0)
1001 {
1002 error ("Couldn't receive packet\n");
1003 }
1004 if (*packet == 0)
1005 {
1006 error ("Got no data in the GDB packet\n");
1007 }
1008 /* Pick packet apart and xfer bytes to myaddr */
1009 debuglogs (4, "array_read_inferior_memory: Got a \"%s\" back\n", packet);
1010 for (j = 0; j < len_this_pass; j++)
1011 {
1012 /* extract the byte values */
1013 myaddr[count++] = from_hex (*(packet + (j * 2))) * 16 + from_hex (*(packet + (j * 2) + 1));
1014 debuglogs (5, "myaddr[%d] set to %x\n", count - 1, myaddr[count - 1]);
1015 }
1016 }
1017 return (count);
1018 }
1019
1020 /* Transfer LEN bytes between GDB address MYADDR and target address
1021 MEMADDR. If WRITE is non-zero, transfer them to the target,
1022 otherwise transfer them from the target. TARGET is unused.
1023
1024 Returns the number of bytes transferred. */
1025
1026 static int
1027 array_xfer_memory (CORE_ADDR memaddr, char *myaddr, int len, int write,
1028 struct mem_attrib *attrib ATTRIBUTE_UNUSED,
1029 struct target_ops *target ATTRIBUTE_UNUSED)
1030 {
1031 if (write)
1032 return array_write_inferior_memory (memaddr, myaddr, len);
1033 else
1034 return array_read_inferior_memory (memaddr, myaddr, len);
1035 }
1036
1037 static void
1038 array_kill (char *args, int from_tty)
1039 {
1040 return; /* ignore attempts to kill target system */
1041 }
1042
1043 /* Clean up when a program exits.
1044 The program actually lives on in the remote processor's RAM, and may be
1045 run again without a download. Don't leave it full of breakpoint
1046 instructions. */
1047
1048 static void
1049 array_mourn_inferior (void)
1050 {
1051 remove_breakpoints ();
1052 generic_mourn_inferior (); /* Do all the proper things now */
1053 }
1054
1055 #define MAX_ARRAY_BREAKPOINTS 16
1056
1057 static CORE_ADDR breakaddr[MAX_ARRAY_BREAKPOINTS] =
1058 {0};
1059
1060 /*
1061 * array_insert_breakpoint -- add a breakpoint
1062 */
1063 static int
1064 array_insert_breakpoint (CORE_ADDR addr, char *shadow)
1065 {
1066 int i;
1067 int bp_size = 0;
1068 CORE_ADDR bp_addr = addr;
1069
1070 debuglogs (1, "array_insert_breakpoint() addr = 0x%x", addr);
1071 BREAKPOINT_FROM_PC (&bp_addr, &bp_size);
1072
1073 for (i = 0; i <= MAX_ARRAY_BREAKPOINTS; i++)
1074 {
1075 if (breakaddr[i] == 0)
1076 {
1077 breakaddr[i] = addr;
1078 if (sr_get_debug () > 4)
1079 printf ("Breakpoint at %s\n", paddr_nz (addr));
1080 array_read_inferior_memory (bp_addr, shadow, bp_size);
1081 printf_monitor ("b 0x%x\n", addr);
1082 expect_prompt (1);
1083 return 0;
1084 }
1085 }
1086
1087 fprintf (stderr, "Too many breakpoints (> 16) for monitor\n");
1088 return 1;
1089 }
1090
1091 /*
1092 * _remove_breakpoint -- Tell the monitor to remove a breakpoint
1093 */
1094 static int
1095 array_remove_breakpoint (CORE_ADDR addr, char *shadow)
1096 {
1097 int i;
1098
1099 debuglogs (1, "array_remove_breakpoint() addr = 0x%x", addr);
1100
1101 for (i = 0; i < MAX_ARRAY_BREAKPOINTS; i++)
1102 {
1103 if (breakaddr[i] == addr)
1104 {
1105 breakaddr[i] = 0;
1106 /* some monitors remove breakpoints based on the address */
1107 printf_monitor ("bd %x\n", i);
1108 expect_prompt (1);
1109 return 0;
1110 }
1111 }
1112 fprintf (stderr, "Can't find breakpoint associated with 0x%s\n",
1113 paddr_nz (addr));
1114 return 1;
1115 }
1116
1117 static void
1118 array_stop (void)
1119 {
1120 debuglogs (1, "array_stop()");
1121 printf_monitor ("\003");
1122 expect_prompt (1);
1123 }
1124
1125 /*
1126 * array_command -- put a command string, in args, out to MONITOR.
1127 * Output from MONITOR is placed on the users terminal until the
1128 * expect_prompt is seen. FIXME
1129 */
1130 static void
1131 monitor_command (char *args, int fromtty)
1132 {
1133 debuglogs (1, "monitor_command (args=%s)", args);
1134
1135 if (array_desc == NULL)
1136 error ("monitor target not open.");
1137
1138 if (!args)
1139 error ("Missing command.");
1140
1141 printf_monitor ("%s\n", args);
1142 expect_prompt (0);
1143 }
1144
1145 /*
1146 * make_gdb_packet -- make a GDB packet. The data is always ASCII.
1147 * A debug packet whose contents are <data>
1148 * is encapsulated for transmission in the form:
1149 *
1150 * $ <data> # CSUM1 CSUM2
1151 *
1152 * <data> must be ASCII alphanumeric and cannot include characters
1153 * '$' or '#'. If <data> starts with two characters followed by
1154 * ':', then the existing stubs interpret this as a sequence number.
1155 *
1156 * CSUM1 and CSUM2 are ascii hex representation of an 8-bit
1157 * checksum of <data>, the most significant nibble is sent first.
1158 * the hex digits 0-9,a-f are used.
1159 *
1160 */
1161 static void
1162 make_gdb_packet (char *buf, char *data)
1163 {
1164 int i;
1165 unsigned char csum = 0;
1166 int cnt;
1167 char *p;
1168
1169 debuglogs (3, "make_gdb_packet(%s)\n", data);
1170 cnt = strlen (data);
1171 if (cnt > PBUFSIZ)
1172 error ("make_gdb_packet(): to much data\n");
1173
1174 /* start with the packet header */
1175 p = buf;
1176 *p++ = '$';
1177
1178 /* calculate the checksum */
1179 for (i = 0; i < cnt; i++)
1180 {
1181 csum += data[i];
1182 *p++ = data[i];
1183 }
1184
1185 /* terminate the data with a '#' */
1186 *p++ = '#';
1187
1188 /* add the checksum as two ascii digits */
1189 *p++ = tohex ((csum >> 4) & 0xf);
1190 *p++ = tohex (csum & 0xf);
1191 *p = 0x0; /* Null terminator on string */
1192 }
1193
1194 /*
1195 * array_send_packet -- send a GDB packet to the target with error handling. We
1196 * get a '+' (ACK) back if the packet is received and the checksum
1197 * matches. Otherwise a '-' (NAK) is returned. It returns a 1 for a
1198 * successful transmition, or a 0 for a failure.
1199 */
1200 static int
1201 array_send_packet (char *packet)
1202 {
1203 int c, retries, i;
1204 char junk[PBUFSIZ];
1205
1206 retries = 0;
1207
1208 #if 0
1209 /* scan the packet to make sure it only contains valid characters.
1210 this may sound silly, but sometimes a garbled packet will hang
1211 the target board. We scan the whole thing, then print the error
1212 message.
1213 */
1214 for (i = 0; i < strlen (packet); i++)
1215 {
1216 debuglogs (5, "array_send_packet(): Scanning \'%c\'\n", packet[i]);
1217 /* legit hex numbers or command */
1218 if ((isxdigit (packet[i])) || (isalpha (packet[i])))
1219 continue;
1220 switch (packet[i])
1221 {
1222 case '+': /* ACK */
1223 case '-': /* NAK */
1224 case '#': /* end of packet */
1225 case '$': /* start of packet */
1226 continue;
1227 default: /* bogus character */
1228 retries++;
1229 debuglogs (4, "array_send_packet(): Found a non-ascii digit \'%c\' in the packet.\n", packet[i]);
1230 }
1231 }
1232 #endif
1233
1234 if (retries > 0)
1235 error ("Can't send packet, found %d non-ascii characters", retries);
1236
1237 /* ok, try to send the packet */
1238 retries = 0;
1239 while (retries++ <= 10)
1240 {
1241 printf_monitor ("%s", packet);
1242
1243 /* read until either a timeout occurs (-2) or '+' is read */
1244 while (retries <= 10)
1245 {
1246 c = readchar (-timeout);
1247 debuglogs (3, "Reading a GDB protocol packet... Got a '%c'\n", c);
1248 switch (c)
1249 {
1250 case '+':
1251 debuglogs (3, "Got Ack\n");
1252 return 1;
1253 case SERIAL_TIMEOUT:
1254 debuglogs (3, "Timed out reading serial port\n");
1255 printf_monitor ("@"); /* resync with the monitor */
1256 expect_prompt (1); /* See if we get a expect_prompt */
1257 break; /* Retransmit buffer */
1258 case '-':
1259 debuglogs (3, "Got NAK\n");
1260 printf_monitor ("@"); /* resync with the monitor */
1261 expect_prompt (1); /* See if we get a expect_prompt */
1262 break;
1263 case '$':
1264 /* it's probably an old response, or the echo of our command.
1265 * just gobble up the packet and ignore it.
1266 */
1267 debuglogs (3, "Got a junk packet\n");
1268 i = 0;
1269 do
1270 {
1271 c = readchar (timeout);
1272 junk[i++] = c;
1273 }
1274 while (c != '#');
1275 c = readchar (timeout);
1276 junk[i++] = c;
1277 c = readchar (timeout);
1278 junk[i++] = c;
1279 junk[i++] = '\0';
1280 debuglogs (3, "Reading a junk packet, got a \"%s\"\n", junk);
1281 continue; /* Now, go look for next packet */
1282 default:
1283 continue;
1284 }
1285 retries++;
1286 debuglogs (3, "Retransmitting packet \"%s\"\n", packet);
1287 break; /* Here to retransmit */
1288 }
1289 } /* outer while */
1290 return 0;
1291 }
1292
1293 /*
1294 * array_get_packet -- get a GDB packet from the target. Basically we read till we
1295 * see a '#', then check the checksum. It returns a 1 if it's gotten a
1296 * packet, or a 0 it the packet wasn't transmitted correctly.
1297 */
1298 static int
1299 array_get_packet (char *packet)
1300 {
1301 int c;
1302 int retries;
1303 unsigned char csum;
1304 unsigned char pktcsum;
1305 char *bp;
1306
1307 csum = 0;
1308 bp = packet;
1309
1310 memset (packet, 1, PBUFSIZ);
1311 retries = 0;
1312 while (retries <= 10)
1313 {
1314 do
1315 {
1316 c = readchar (timeout);
1317 if (c == SERIAL_TIMEOUT)
1318 {
1319 debuglogs (3, "array_get_packet: got time out from serial port.\n");
1320 }
1321 debuglogs (3, "Waiting for a '$', got a %c\n", c);
1322 }
1323 while (c != '$');
1324
1325 retries = 0;
1326 while (retries <= 10)
1327 {
1328 c = readchar (timeout);
1329 debuglogs (3, "array_get_packet: got a '%c'\n", c);
1330 switch (c)
1331 {
1332 case SERIAL_TIMEOUT:
1333 debuglogs (3, "Timeout in mid-packet, retrying\n");
1334 return 0;
1335 case '$':
1336 debuglogs (3, "Saw new packet start in middle of old one\n");
1337 return 0; /* Start a new packet, count retries */
1338 case '#':
1339 *bp = '\0';
1340 pktcsum = from_hex (readchar (timeout)) << 4;
1341 pktcsum |= from_hex (readchar (timeout));
1342 if (csum == 0)
1343 debuglogs (3, "\nGDB packet checksum zero, must be a bogus packet\n");
1344 if (csum == pktcsum)
1345 {
1346 debuglogs (3, "\nGDB packet checksum correct, packet data is \"%s\",\n", packet);
1347 printf_monitor ("@");
1348 expect_prompt (1);
1349 return 1;
1350 }
1351 debuglogs (3, "Bad checksum, sentsum=0x%x, csum=0x%x\n", pktcsum, csum);
1352 return 0;
1353 case '*': /* Run length encoding */
1354 debuglogs (5, "Run length encoding in packet\n");
1355 csum += c;
1356 c = readchar (timeout);
1357 csum += c;
1358 c = c - ' ' + 3; /* Compute repeat count */
1359
1360 if (c > 0 && c < 255 && bp + c - 1 < packet + PBUFSIZ - 1)
1361 {
1362 memset (bp, *(bp - 1), c);
1363 bp += c;
1364 continue;
1365 }
1366 *bp = '\0';
1367 printf_filtered ("Repeat count %d too large for buffer.\n", c);
1368 return 0;
1369
1370 default:
1371 if ((!isxdigit (c)) && (!ispunct (c)))
1372 debuglogs (4, "Got a non-ascii digit \'%c\'.\\n", c);
1373 if (bp < packet + PBUFSIZ - 1)
1374 {
1375 *bp++ = c;
1376 csum += c;
1377 continue;
1378 }
1379
1380 *bp = '\0';
1381 puts_filtered ("Remote packet too long.\n");
1382 return 0;
1383 }
1384 }
1385 }
1386 return 0; /* exceeded retries */
1387 }
1388
1389 /*
1390 * ascii2hexword -- convert an ascii number represented by 8 digits to a hex value.
1391 */
1392 static unsigned long
1393 ascii2hexword (unsigned char *mem)
1394 {
1395 unsigned long val;
1396 int i;
1397 char buf[9];
1398
1399 val = 0;
1400 for (i = 0; i < 8; i++)
1401 {
1402 val <<= 4;
1403 if (mem[i] >= 'A' && mem[i] <= 'F')
1404 val = val + mem[i] - 'A' + 10;
1405 if (mem[i] >= 'a' && mem[i] <= 'f')
1406 val = val + mem[i] - 'a' + 10;
1407 if (mem[i] >= '0' && mem[i] <= '9')
1408 val = val + mem[i] - '0';
1409 buf[i] = mem[i];
1410 }
1411 buf[8] = '\0';
1412 debuglogs (4, "ascii2hexword() got a 0x%x from %s(%x).\n", val, buf, mem);
1413 return val;
1414 }
1415
1416 /*
1417 * ascii2hexword -- convert a hex value to an ascii number represented by 8
1418 * digits.
1419 */
1420 static void
1421 hexword2ascii (unsigned char *mem, unsigned long num)
1422 {
1423 int i;
1424 unsigned char ch;
1425
1426 debuglogs (4, "hexword2ascii() converting %x ", num);
1427 for (i = 7; i >= 0; i--)
1428 {
1429 mem[i] = tohex ((num >> 4) & 0xf);
1430 mem[i] = tohex (num & 0xf);
1431 num = num >> 4;
1432 }
1433 mem[8] = '\0';
1434 debuglogs (4, "\tto a %s", mem);
1435 }
1436
1437 /* Convert hex digit A to a number. */
1438 static int
1439 from_hex (int a)
1440 {
1441 if (a == 0)
1442 return 0;
1443
1444 debuglogs (4, "from_hex got a 0x%x(%c)\n", a, a);
1445 if (a >= '0' && a <= '9')
1446 return a - '0';
1447 if (a >= 'a' && a <= 'f')
1448 return a - 'a' + 10;
1449 if (a >= 'A' && a <= 'F')
1450 return a - 'A' + 10;
1451 else
1452 {
1453 error ("Reply contains invalid hex digit 0x%x", a);
1454 }
1455 }
1456
1457 /* Convert number NIB to a hex digit. */
1458 static int
1459 tohex (int nib)
1460 {
1461 if (nib < 10)
1462 return '0' + nib;
1463 else
1464 return 'a' + nib - 10;
1465 }
1466
1467 /*
1468 * _initialize_remote_monitors -- setup a few addtitional commands that
1469 * are usually only used by monitors.
1470 */
1471 void
1472 _initialize_remote_monitors (void)
1473 {
1474 /* generic monitor command */
1475 add_com ("monitor", class_obscure, monitor_command,
1476 "Send a command to the debug monitor.");
1477
1478 }
1479
1480 /*
1481 * _initialize_array -- do any special init stuff for the target.
1482 */
1483 void
1484 _initialize_array (void)
1485 {
1486 init_array_ops ();
1487 add_target (&array_ops);
1488 }
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