Obvious fix: in entries for 1998-02-10 and 1998-02-06,
[deliverable/binutils-gdb.git] / gdb / remote-mips.c
CommitLineData
c906108c 1/* Remote debugging interface for MIPS remote debugging protocol.
29e57380 2 Copyright 1993, 1994, 1995, 2000, 2001 Free Software Foundation, Inc.
c906108c
SS
3 Contributed by Cygnus Support. Written by Ian Lance Taylor
4 <ian@cygnus.com>.
5
c5aa993b 6 This file is part of GDB.
c906108c 7
c5aa993b
JM
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
c906108c 12
c5aa993b
JM
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
c906108c 17
c5aa993b
JM
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 59 Temple Place - Suite 330,
21 Boston, MA 02111-1307, USA. */
c906108c
SS
22
23#include "defs.h"
24#include "inferior.h"
25#include "bfd.h"
26#include "symfile.h"
c906108c
SS
27#include "gdbcmd.h"
28#include "gdbcore.h"
29#include "serial.h"
30#include "target.h"
31#include "remote-utils.h"
32#include "gdb_string.h"
4e052eda 33#include "regcache.h"
c906108c 34
c906108c
SS
35#include <sys/types.h>
36#include <sys/stat.h>
59d521c1
AC
37#include <ctype.h>
38
c906108c
SS
39/* Microsoft C's stat.h doesn't define all the POSIX file modes. */
40#ifndef S_IROTH
41#define S_IROTH S_IREAD
42#endif
43
c906108c 44\f
c5aa993b 45
c906108c
SS
46/* Breakpoint types. Values 0, 1, and 2 must agree with the watch
47 types passed by breakpoint.c to target_insert_watchpoint.
48 Value 3 is our own invention, and is used for ordinary instruction
49 breakpoints. Value 4 is used to mark an unused watchpoint in tables. */
c5aa993b
JM
50enum break_type
51 {
52 BREAK_WRITE, /* 0 */
53 BREAK_READ, /* 1 */
54 BREAK_ACCESS, /* 2 */
55 BREAK_FETCH, /* 3 */
56 BREAK_UNUSED /* 4 */
57 };
c906108c
SS
58
59/* Prototypes for local functions. */
60
a14ed312 61static int mips_readchar (int timeout);
c906108c 62
a14ed312
KB
63static int mips_receive_header (unsigned char *hdr, int *pgarbage,
64 int ch, int timeout);
c906108c 65
a14ed312
KB
66static int mips_receive_trailer (unsigned char *trlr, int *pgarbage,
67 int *pch, int timeout);
c906108c 68
a14ed312
KB
69static int mips_cksum (const unsigned char *hdr,
70 const unsigned char *data, int len);
c906108c 71
a14ed312 72static void mips_send_packet (const char *s, int get_ack);
c906108c 73
a14ed312 74static void mips_send_command (const char *cmd, int prompt);
c906108c 75
a14ed312 76static int mips_receive_packet (char *buff, int throw_error, int timeout);
c906108c 77
4014092b
AC
78static ULONGEST mips_request (int cmd, ULONGEST addr, ULONGEST data,
79 int *perr, int timeout, char *buff);
c906108c 80
a14ed312 81static void mips_initialize (void);
c906108c 82
a14ed312 83static void mips_open (char *name, int from_tty);
c906108c 84
a14ed312 85static void pmon_open (char *name, int from_tty);
c906108c 86
a14ed312 87static void ddb_open (char *name, int from_tty);
c906108c 88
a14ed312 89static void lsi_open (char *name, int from_tty);
c906108c 90
a14ed312 91static void mips_close (int quitting);
c906108c 92
a14ed312 93static void mips_detach (char *args, int from_tty);
c906108c 94
a14ed312 95static void mips_resume (int pid, int step, enum target_signal siggnal);
c906108c 96
a14ed312 97static int mips_wait (int pid, struct target_waitstatus *status);
c906108c 98
a14ed312 99static int mips_map_regno (int regno);
c906108c 100
a14ed312 101static void mips_fetch_registers (int regno);
c906108c 102
a14ed312 103static void mips_prepare_to_store (void);
c906108c 104
a14ed312 105static void mips_store_registers (int regno);
c906108c 106
a14ed312 107static unsigned int mips_fetch_word (CORE_ADDR addr);
c906108c 108
a14ed312
KB
109static int mips_store_word (CORE_ADDR addr, unsigned int value,
110 char *old_contents);
c906108c 111
a14ed312 112static int mips_xfer_memory (CORE_ADDR memaddr, char *myaddr, int len,
29e57380
C
113 int write,
114 struct mem_attrib *attrib,
115 struct target_ops *target);
c906108c 116
a14ed312 117static void mips_files_info (struct target_ops *ignore);
c906108c 118
a14ed312 119static void mips_create_inferior (char *execfile, char *args, char **env);
c906108c 120
a14ed312 121static void mips_mourn_inferior (void);
c906108c 122
a14ed312 123static int pmon_makeb64 (unsigned long v, char *p, int n, int *chksum);
c906108c 124
a14ed312
KB
125static int pmon_zeroset (int recsize, char **buff, int *amount,
126 unsigned int *chksum);
c906108c 127
a14ed312 128static int pmon_checkset (int recsize, char **buff, int *value);
c906108c 129
a14ed312
KB
130static void pmon_make_fastrec (char **outbuf, unsigned char *inbuf,
131 int *inptr, int inamount, int *recsize,
132 unsigned int *csum, unsigned int *zerofill);
c906108c 133
a14ed312 134static int pmon_check_ack (char *mesg);
c906108c 135
a14ed312 136static void pmon_start_download (void);
c906108c 137
a14ed312 138static void pmon_end_download (int final, int bintotal);
c906108c 139
a14ed312 140static void pmon_download (char *buffer, int length);
c906108c 141
a14ed312 142static void pmon_load_fast (char *file);
c906108c 143
a14ed312 144static void mips_load (char *file, int from_tty);
c906108c 145
a14ed312
KB
146static int mips_make_srec (char *buffer, int type, CORE_ADDR memaddr,
147 unsigned char *myaddr, int len);
c906108c 148
a14ed312 149static int set_breakpoint (CORE_ADDR addr, int len, enum break_type type);
c906108c 150
a14ed312 151static int clear_breakpoint (CORE_ADDR addr, int len, enum break_type type);
c906108c 152
a14ed312
KB
153static int common_breakpoint (int set, CORE_ADDR addr, int len,
154 enum break_type type);
c906108c
SS
155
156/* Forward declarations. */
157extern struct target_ops mips_ops;
158extern struct target_ops pmon_ops;
159extern struct target_ops ddb_ops;
c5aa993b 160\f/* *INDENT-OFF* */
c906108c
SS
161/* The MIPS remote debugging interface is built on top of a simple
162 packet protocol. Each packet is organized as follows:
163
c5aa993b
JM
164 SYN The first character is always a SYN (ASCII 026, or ^V). SYN
165 may not appear anywhere else in the packet. Any time a SYN is
166 seen, a new packet should be assumed to have begun.
c906108c
SS
167
168 TYPE_LEN
c5aa993b
JM
169 This byte contains the upper five bits of the logical length
170 of the data section, plus a single bit indicating whether this
171 is a data packet or an acknowledgement. The documentation
172 indicates that this bit is 1 for a data packet, but the actual
173 board uses 1 for an acknowledgement. The value of the byte is
174 0x40 + (ack ? 0x20 : 0) + (len >> 6)
175 (we always have 0 <= len < 1024). Acknowledgement packets do
176 not carry data, and must have a data length of 0.
c906108c
SS
177
178 LEN1 This byte contains the lower six bits of the logical length of
c5aa993b
JM
179 the data section. The value is
180 0x40 + (len & 0x3f)
181
182 SEQ This byte contains the six bit sequence number of the packet.
183 The value is
184 0x40 + seq
185 An acknowlegment packet contains the sequence number of the
186 packet being acknowledged plus 1 modulo 64. Data packets are
187 transmitted in sequence. There may only be one outstanding
188 unacknowledged data packet at a time. The sequence numbers
189 are independent in each direction. If an acknowledgement for
190 the previous packet is received (i.e., an acknowledgement with
191 the sequence number of the packet just sent) the packet just
192 sent should be retransmitted. If no acknowledgement is
193 received within a timeout period, the packet should be
194 retransmitted. This has an unfortunate failure condition on a
195 high-latency line, as a delayed acknowledgement may lead to an
196 endless series of duplicate packets.
197
198 DATA The actual data bytes follow. The following characters are
199 escaped inline with DLE (ASCII 020, or ^P):
200 SYN (026) DLE S
201 DLE (020) DLE D
202 ^C (003) DLE C
203 ^S (023) DLE s
204 ^Q (021) DLE q
205 The additional DLE characters are not counted in the logical
206 length stored in the TYPE_LEN and LEN1 bytes.
c906108c
SS
207
208 CSUM1
209 CSUM2
210 CSUM3
c5aa993b
JM
211 These bytes contain an 18 bit checksum of the complete
212 contents of the packet excluding the SEQ byte and the
213 CSUM[123] bytes. The checksum is simply the twos complement
214 addition of all the bytes treated as unsigned characters. The
215 values of the checksum bytes are:
216 CSUM1: 0x40 + ((cksum >> 12) & 0x3f)
217 CSUM2: 0x40 + ((cksum >> 6) & 0x3f)
218 CSUM3: 0x40 + (cksum & 0x3f)
c906108c
SS
219
220 It happens that the MIPS remote debugging protocol always
221 communicates with ASCII strings. Because of this, this
222 implementation doesn't bother to handle the DLE quoting mechanism,
223 since it will never be required. */
9846de1b 224/* *INDENT-ON* */
c906108c 225
c5aa993b 226
c906108c
SS
227/* The SYN character which starts each packet. */
228#define SYN '\026'
229
230/* The 0x40 used to offset each packet (this value ensures that all of
231 the header and trailer bytes, other than SYN, are printable ASCII
232 characters). */
233#define HDR_OFFSET 0x40
234
235/* The indices of the bytes in the packet header. */
236#define HDR_INDX_SYN 0
237#define HDR_INDX_TYPE_LEN 1
238#define HDR_INDX_LEN1 2
239#define HDR_INDX_SEQ 3
240#define HDR_LENGTH 4
241
242/* The data/ack bit in the TYPE_LEN header byte. */
243#define TYPE_LEN_DA_BIT 0x20
244#define TYPE_LEN_DATA 0
245#define TYPE_LEN_ACK TYPE_LEN_DA_BIT
246
247/* How to compute the header bytes. */
248#define HDR_SET_SYN(data, len, seq) (SYN)
249#define HDR_SET_TYPE_LEN(data, len, seq) \
250 (HDR_OFFSET \
251 + ((data) ? TYPE_LEN_DATA : TYPE_LEN_ACK) \
252 + (((len) >> 6) & 0x1f))
253#define HDR_SET_LEN1(data, len, seq) (HDR_OFFSET + ((len) & 0x3f))
254#define HDR_SET_SEQ(data, len, seq) (HDR_OFFSET + (seq))
255
256/* Check that a header byte is reasonable. */
257#define HDR_CHECK(ch) (((ch) & HDR_OFFSET) == HDR_OFFSET)
258
259/* Get data from the header. These macros evaluate their argument
260 multiple times. */
261#define HDR_IS_DATA(hdr) \
262 (((hdr)[HDR_INDX_TYPE_LEN] & TYPE_LEN_DA_BIT) == TYPE_LEN_DATA)
263#define HDR_GET_LEN(hdr) \
264 ((((hdr)[HDR_INDX_TYPE_LEN] & 0x1f) << 6) + (((hdr)[HDR_INDX_LEN1] & 0x3f)))
265#define HDR_GET_SEQ(hdr) ((unsigned int)(hdr)[HDR_INDX_SEQ] & 0x3f)
266
267/* The maximum data length. */
268#define DATA_MAXLEN 1023
269
270/* The trailer offset. */
271#define TRLR_OFFSET HDR_OFFSET
272
273/* The indices of the bytes in the packet trailer. */
274#define TRLR_INDX_CSUM1 0
275#define TRLR_INDX_CSUM2 1
276#define TRLR_INDX_CSUM3 2
277#define TRLR_LENGTH 3
278
279/* How to compute the trailer bytes. */
280#define TRLR_SET_CSUM1(cksum) (TRLR_OFFSET + (((cksum) >> 12) & 0x3f))
281#define TRLR_SET_CSUM2(cksum) (TRLR_OFFSET + (((cksum) >> 6) & 0x3f))
282#define TRLR_SET_CSUM3(cksum) (TRLR_OFFSET + (((cksum) ) & 0x3f))
283
284/* Check that a trailer byte is reasonable. */
285#define TRLR_CHECK(ch) (((ch) & TRLR_OFFSET) == TRLR_OFFSET)
286
287/* Get data from the trailer. This evaluates its argument multiple
288 times. */
289#define TRLR_GET_CKSUM(trlr) \
290 ((((trlr)[TRLR_INDX_CSUM1] & 0x3f) << 12) \
291 + (((trlr)[TRLR_INDX_CSUM2] & 0x3f) << 6) \
292 + ((trlr)[TRLR_INDX_CSUM3] & 0x3f))
293
294/* The sequence number modulos. */
295#define SEQ_MODULOS (64)
296
297/* PMON commands to load from the serial port or UDP socket. */
298#define LOAD_CMD "load -b -s tty0\r"
299#define LOAD_CMD_UDP "load -b -s udp\r"
300
301/* The target vectors for the four different remote MIPS targets.
302 These are initialized with code in _initialize_remote_mips instead
303 of static initializers, to make it easier to extend the target_ops
304 vector later. */
305struct target_ops mips_ops, pmon_ops, ddb_ops, lsi_ops;
306
c5aa993b
JM
307enum mips_monitor_type
308 {
309 /* IDT/SIM monitor being used: */
310 MON_IDT,
311 /* PMON monitor being used: */
312 MON_PMON, /* 3.0.83 [COGENT,EB,FP,NET] Algorithmics Ltd. Nov 9 1995 17:19:50 */
313 MON_DDB, /* 2.7.473 [DDBVR4300,EL,FP,NET] Risq Modular Systems, Thu Jun 6 09:28:40 PDT 1996 */
314 MON_LSI, /* 4.3.12 [EB,FP], LSI LOGIC Corp. Tue Feb 25 13:22:14 1997 */
315 /* Last and unused value, for sizing vectors, etc. */
316 MON_LAST
317 };
c906108c
SS
318static enum mips_monitor_type mips_monitor = MON_LAST;
319
320/* The monitor prompt text. If the user sets the PMON prompt
321 to some new value, the GDB `set monitor-prompt' command must also
322 be used to inform GDB about the expected prompt. Otherwise, GDB
323 will not be able to connect to PMON in mips_initialize().
324 If the `set monitor-prompt' command is not used, the expected
325 default prompt will be set according the target:
c5aa993b
JM
326 target prompt
327 ----- -----
328 pmon PMON>
329 ddb NEC010>
330 lsi PMON>
331 */
c906108c
SS
332static char *mips_monitor_prompt;
333
334/* Set to 1 if the target is open. */
335static int mips_is_open;
336
337/* Currently active target description (if mips_is_open == 1) */
338static struct target_ops *current_ops;
339
340/* Set to 1 while the connection is being initialized. */
341static int mips_initializing;
342
343/* Set to 1 while the connection is being brought down. */
344static int mips_exiting;
345
346/* The next sequence number to send. */
347static unsigned int mips_send_seq;
348
349/* The next sequence number we expect to receive. */
350static unsigned int mips_receive_seq;
351
352/* The time to wait before retransmitting a packet, in seconds. */
353static int mips_retransmit_wait = 3;
354
355/* The number of times to try retransmitting a packet before giving up. */
356static int mips_send_retries = 10;
357
358/* The number of garbage characters to accept when looking for an
359 SYN for the next packet. */
59d521c1 360static int mips_syn_garbage = 10;
c906108c
SS
361
362/* The time to wait for a packet, in seconds. */
363static int mips_receive_wait = 5;
364
365/* Set if we have sent a packet to the board but have not yet received
366 a reply. */
367static int mips_need_reply = 0;
368
369/* Handle used to access serial I/O stream. */
370static serial_t mips_desc;
371
372/* UDP handle used to download files to target. */
373static serial_t udp_desc;
374static int udp_in_use;
375
376/* TFTP filename used to download files to DDB board, in the form
377 host:filename. */
378static char *tftp_name; /* host:filename */
379static char *tftp_localname; /* filename portion of above */
380static int tftp_in_use;
381static FILE *tftp_file;
382
383/* Counts the number of times the user tried to interrupt the target (usually
384 via ^C. */
385static int interrupt_count;
386
387/* If non-zero, means that the target is running. */
388static int mips_wait_flag = 0;
389
390/* If non-zero, monitor supports breakpoint commands. */
d4f3574e 391static int monitor_supports_breakpoints = 0;
c906108c
SS
392
393/* Data cache header. */
394
c5aa993b 395#if 0 /* not used (yet?) */
c906108c
SS
396static DCACHE *mips_dcache;
397#endif
398
399/* Non-zero means that we've just hit a read or write watchpoint */
400static int hit_watchpoint;
401
402/* Table of breakpoints/watchpoints (used only on LSI PMON target).
403 The table is indexed by a breakpoint number, which is an integer
404 from 0 to 255 returned by the LSI PMON when a breakpoint is set.
c5aa993b 405 */
c906108c
SS
406#define MAX_LSI_BREAKPOINTS 256
407struct lsi_breakpoint_info
c5aa993b
JM
408 {
409 enum break_type type; /* type of breakpoint */
410 CORE_ADDR addr; /* address of breakpoint */
411 int len; /* length of region being watched */
412 unsigned long value; /* value to watch */
413 }
414lsi_breakpoints[MAX_LSI_BREAKPOINTS];
c906108c
SS
415
416/* Error/warning codes returned by LSI PMON for breakpoint commands.
417 Warning values may be ORed together; error values may not. */
c5aa993b
JM
418#define W_WARN 0x100 /* This bit is set if the error code is a warning */
419#define W_MSK 0x101 /* warning: Range feature is supported via mask */
420#define W_VAL 0x102 /* warning: Value check is not supported in hardware */
421#define W_QAL 0x104 /* warning: Requested qualifiers are not supported in hardware */
422
423#define E_ERR 0x200 /* This bit is set if the error code is an error */
424#define E_BPT 0x200 /* error: No such breakpoint number */
425#define E_RGE 0x201 /* error: Range is not supported */
426#define E_QAL 0x202 /* error: The requested qualifiers can not be used */
427#define E_OUT 0x203 /* error: Out of hardware resources */
428#define E_NON 0x204 /* error: Hardware breakpoint not supported */
c906108c
SS
429
430struct lsi_error
c5aa993b
JM
431 {
432 int code; /* error code */
433 char *string; /* string associated with this code */
434 };
c906108c
SS
435
436struct lsi_error lsi_warning_table[] =
437{
c5aa993b
JM
438 {W_MSK, "Range feature is supported via mask"},
439 {W_VAL, "Value check is not supported in hardware"},
440 {W_QAL, "Requested qualifiers are not supported in hardware"},
441 {0, NULL}
c906108c
SS
442};
443
444struct lsi_error lsi_error_table[] =
c5aa993b
JM
445{
446 {E_BPT, "No such breakpoint number"},
447 {E_RGE, "Range is not supported"},
448 {E_QAL, "The requested qualifiers can not be used"},
449 {E_OUT, "Out of hardware resources"},
450 {E_NON, "Hardware breakpoint not supported"},
451 {0, NULL}
c906108c
SS
452};
453
454/* Set to 1 with the 'set monitor-warnings' command to enable printing
455 of warnings returned by PMON when hardware breakpoints are used. */
456static int monitor_warnings;
457
458
459static void
fba45db2 460close_ports (void)
c906108c
SS
461{
462 mips_is_open = 0;
463 SERIAL_CLOSE (mips_desc);
464
465 if (udp_in_use)
466 {
467 SERIAL_CLOSE (udp_desc);
468 udp_in_use = 0;
469 }
470 tftp_in_use = 0;
471}
c5aa993b 472
c906108c
SS
473/* Handle low-level error that we can't recover from. Note that just
474 error()ing out from target_wait or some such low-level place will cause
475 all hell to break loose--the rest of GDB will tend to get left in an
476 inconsistent state. */
477
478static NORETURN void
c5aa993b 479mips_error (char *string,...)
c906108c
SS
480{
481 va_list args;
482
c906108c 483 va_start (args, string);
c5aa993b 484
c906108c 485 target_terminal_ours ();
c5aa993b 486 wrap_here (""); /* Force out any buffered output */
c906108c
SS
487 gdb_flush (gdb_stdout);
488 if (error_pre_print)
489 fprintf_filtered (gdb_stderr, error_pre_print);
490 vfprintf_filtered (gdb_stderr, string, args);
491 fprintf_filtered (gdb_stderr, "\n");
492 va_end (args);
493 gdb_flush (gdb_stderr);
494
495 /* Clean up in such a way that mips_close won't try to talk to the
496 board (it almost surely won't work since we weren't able to talk to
497 it). */
498 close_ports ();
499
500 printf_unfiltered ("Ending remote MIPS debugging.\n");
501 target_mourn_inferior ();
502
503 return_to_top_level (RETURN_ERROR);
504}
505
506/* putc_readable - print a character, displaying non-printable chars in
507 ^x notation or in hex. */
508
509static void
fba45db2 510fputc_readable (int ch, struct ui_file *file)
c906108c
SS
511{
512 if (ch == '\n')
9846de1b 513 fputc_unfiltered ('\n', file);
c906108c 514 else if (ch == '\r')
9846de1b 515 fprintf_unfiltered (file, "\\r");
c5aa993b 516 else if (ch < 0x20) /* ASCII control character */
9846de1b 517 fprintf_unfiltered (file, "^%c", ch + '@');
c5aa993b 518 else if (ch >= 0x7f) /* non-ASCII characters (rubout or greater) */
9846de1b 519 fprintf_unfiltered (file, "[%02x]", ch & 0xff);
c906108c 520 else
9846de1b 521 fputc_unfiltered (ch, file);
c906108c
SS
522}
523
524
525/* puts_readable - print a string, displaying non-printable chars in
526 ^x notation or in hex. */
527
528static void
98691afe 529fputs_readable (const char *string, struct ui_file *file)
c906108c
SS
530{
531 int c;
532
533 while ((c = *string++) != '\0')
9846de1b 534 fputc_readable (c, file);
c906108c
SS
535}
536
537
538/* Wait until STRING shows up in mips_desc. Returns 1 if successful, else 0 if
539 timed out. TIMEOUT specifies timeout value in seconds.
c5aa993b 540 */
c906108c
SS
541
542int
98691afe 543mips_expect_timeout (const char *string, int timeout)
c906108c 544{
98691afe 545 const char *p = string;
c906108c
SS
546
547 if (remote_debug)
548 {
9846de1b
JM
549 fprintf_unfiltered (gdb_stdlog, "Expected \"");
550 fputs_readable (string, gdb_stdlog);
551 fprintf_unfiltered (gdb_stdlog, "\", got \"");
c906108c
SS
552 }
553
8edbea78 554 immediate_quit++;
c906108c
SS
555 while (1)
556 {
557 int c;
558
559/* Must use SERIAL_READCHAR here cuz mips_readchar would get confused if we
560 were waiting for the mips_monitor_prompt... */
561
562 c = SERIAL_READCHAR (mips_desc, timeout);
563
564 if (c == SERIAL_TIMEOUT)
565 {
566 if (remote_debug)
9846de1b 567 fprintf_unfiltered (gdb_stdlog, "\": FAIL\n");
c906108c
SS
568 return 0;
569 }
570
571 if (remote_debug)
9846de1b 572 fputc_readable (c, gdb_stdlog);
c906108c
SS
573
574 if (c == *p++)
c5aa993b 575 {
c906108c
SS
576 if (*p == '\0')
577 {
8edbea78 578 immediate_quit--;
c906108c 579 if (remote_debug)
9846de1b 580 fprintf_unfiltered (gdb_stdlog, "\": OK\n");
c906108c
SS
581 return 1;
582 }
583 }
584 else
585 {
586 p = string;
587 if (c == *p)
588 p++;
589 }
590 }
591}
592
593/* Wait until STRING shows up in mips_desc. Returns 1 if successful, else 0 if
594 timed out. The timeout value is hard-coded to 2 seconds. Use
595 mips_expect_timeout if a different timeout value is needed.
c5aa993b 596 */
c906108c
SS
597
598int
98691afe 599mips_expect (const char *string)
c906108c 600{
688991e6 601 return mips_expect_timeout (string, remote_timeout);
c906108c
SS
602}
603
604/* Read the required number of characters into the given buffer (which
605 is assumed to be large enough). The only failure is a timeout. */
606int
fba45db2 607mips_getstring (char *string, int n)
c906108c
SS
608{
609 char *p = string;
610 int c;
611
8edbea78 612 immediate_quit++;
c906108c
SS
613 while (n > 0)
614 {
688991e6 615 c = SERIAL_READCHAR (mips_desc, remote_timeout);
c906108c 616
c5aa993b
JM
617 if (c == SERIAL_TIMEOUT)
618 {
619 fprintf_unfiltered (gdb_stderr,
620 "Failed to read %d characters from target (TIMEOUT)\n", n);
8edbea78 621 immediate_quit--;
c5aa993b
JM
622 return 0;
623 }
c906108c
SS
624
625 *p++ = c;
626 n--;
627 }
628
8edbea78 629 immediate_quit--;
c906108c
SS
630 return 1;
631}
632
633/* Read a character from the remote, aborting on error. Returns
634 SERIAL_TIMEOUT on timeout (since that's what SERIAL_READCHAR
635 returns). FIXME: If we see the string mips_monitor_prompt from
636 the board, then we are debugging on the main console port, and we
637 have somehow dropped out of remote debugging mode. In this case,
638 we automatically go back in to remote debugging mode. This is a
639 hack, put in because I can't find any way for a program running on
640 the remote board to terminate without also ending remote debugging
641 mode. I assume users won't have any trouble with this; for one
642 thing, the IDT documentation generally assumes that the remote
643 debugging port is not the console port. This is, however, very
644 convenient for DejaGnu when you only have one connected serial
645 port. */
646
647static int
fba45db2 648mips_readchar (int timeout)
c906108c
SS
649{
650 int ch;
651 static int state = 0;
652 int mips_monitor_prompt_len = strlen (mips_monitor_prompt);
653
c906108c
SS
654 {
655 int i;
656
657 i = timeout;
658 if (i == -1 && watchdog > 0)
c5aa993b 659 i = watchdog;
c906108c 660 }
c906108c
SS
661
662 if (state == mips_monitor_prompt_len)
663 timeout = 1;
664 ch = SERIAL_READCHAR (mips_desc, timeout);
7a292a7a 665
c5aa993b 666 if (ch == SERIAL_TIMEOUT && timeout == -1) /* Watchdog went off */
c906108c
SS
667 {
668 target_mourn_inferior ();
669 error ("Watchdog has expired. Target detached.\n");
670 }
7a292a7a 671
c906108c
SS
672 if (ch == SERIAL_EOF)
673 mips_error ("End of file from remote");
674 if (ch == SERIAL_ERROR)
675 mips_error ("Error reading from remote: %s", safe_strerror (errno));
676 if (remote_debug > 1)
677 {
678 /* Don't use _filtered; we can't deal with a QUIT out of
c5aa993b 679 target_wait, and I think this might be called from there. */
c906108c 680 if (ch != SERIAL_TIMEOUT)
9846de1b 681 fprintf_unfiltered (gdb_stdlog, "Read '%c' %d 0x%x\n", ch, ch, ch);
c906108c 682 else
9846de1b 683 fprintf_unfiltered (gdb_stdlog, "Timed out in read\n");
c906108c
SS
684 }
685
686 /* If we have seen mips_monitor_prompt and we either time out, or
687 we see a @ (which was echoed from a packet we sent), reset the
688 board as described above. The first character in a packet after
689 the SYN (which is not echoed) is always an @ unless the packet is
690 more than 64 characters long, which ours never are. */
691 if ((ch == SERIAL_TIMEOUT || ch == '@')
692 && state == mips_monitor_prompt_len
c5aa993b
JM
693 && !mips_initializing
694 && !mips_exiting)
c906108c
SS
695 {
696 if (remote_debug > 0)
697 /* Don't use _filtered; we can't deal with a QUIT out of
698 target_wait, and I think this might be called from there. */
9846de1b 699 fprintf_unfiltered (gdb_stdlog, "Reinitializing MIPS debugging mode\n");
c906108c
SS
700
701 mips_need_reply = 0;
702 mips_initialize ();
703
704 state = 0;
705
706 /* At this point, about the only thing we can do is abort the command
c5aa993b 707 in progress and get back to command level as quickly as possible. */
c906108c
SS
708
709 error ("Remote board reset, debug protocol re-initialized.");
710 }
711
712 if (ch == mips_monitor_prompt[state])
713 ++state;
714 else
715 state = 0;
716
717 return ch;
718}
719
720/* Get a packet header, putting the data in the supplied buffer.
721 PGARBAGE is a pointer to the number of garbage characters received
722 so far. CH is the last character received. Returns 0 for success,
723 or -1 for timeout. */
724
725static int
fba45db2 726mips_receive_header (unsigned char *hdr, int *pgarbage, int ch, int timeout)
c906108c
SS
727{
728 int i;
729
730 while (1)
731 {
732 /* Wait for a SYN. mips_syn_garbage is intended to prevent
c5aa993b
JM
733 sitting here indefinitely if the board sends us one garbage
734 character per second. ch may already have a value from the
735 last time through the loop. */
c906108c
SS
736 while (ch != SYN)
737 {
738 ch = mips_readchar (timeout);
739 if (ch == SERIAL_TIMEOUT)
c5aa993b 740 return -1;
c906108c
SS
741 if (ch != SYN)
742 {
743 /* Printing the character here lets the user of gdb see
c5aa993b 744 what the program is outputting, if the debugging is
59d521c1
AC
745 being done on the console port. Don't use _filtered:
746 we can't deal with a QUIT out of target_wait and
747 buffered target output confuses the user. */
748 if (!mips_initializing || remote_debug > 0)
749 {
750 if (isprint (ch) || isspace (ch))
751 {
752 fputc_unfiltered (ch, gdb_stdtarg);
753 }
754 else
755 {
756 fputc_readable (ch, gdb_stdtarg);
757 }
758 gdb_flush (gdb_stdtarg);
759 }
760
761 /* Only count unprintable characters. */
762 if (! (isprint (ch) || isspace (ch)))
763 (*pgarbage) += 1;
764
c906108c
SS
765 if (mips_syn_garbage > 0
766 && *pgarbage > mips_syn_garbage)
c5aa993b 767 mips_error ("Debug protocol failure: more than %d characters before a sync.",
c906108c
SS
768 mips_syn_garbage);
769 }
770 }
771
772 /* Get the packet header following the SYN. */
773 for (i = 1; i < HDR_LENGTH; i++)
774 {
775 ch = mips_readchar (timeout);
776 if (ch == SERIAL_TIMEOUT)
c5aa993b 777 return -1;
c906108c 778 /* Make sure this is a header byte. */
c5aa993b 779 if (ch == SYN || !HDR_CHECK (ch))
c906108c
SS
780 break;
781
782 hdr[i] = ch;
783 }
784
785 /* If we got the complete header, we can return. Otherwise we
c5aa993b 786 loop around and keep looking for SYN. */
c906108c 787 if (i >= HDR_LENGTH)
c5aa993b 788 return 0;
c906108c
SS
789 }
790}
791
792/* Get a packet header, putting the data in the supplied buffer.
793 PGARBAGE is a pointer to the number of garbage characters received
794 so far. The last character read is returned in *PCH. Returns 0
795 for success, -1 for timeout, -2 for error. */
796
797static int
fba45db2 798mips_receive_trailer (unsigned char *trlr, int *pgarbage, int *pch, int timeout)
c906108c
SS
799{
800 int i;
801 int ch;
802
803 for (i = 0; i < TRLR_LENGTH; i++)
804 {
805 ch = mips_readchar (timeout);
806 *pch = ch;
807 if (ch == SERIAL_TIMEOUT)
808 return -1;
c5aa993b 809 if (!TRLR_CHECK (ch))
c906108c
SS
810 return -2;
811 trlr[i] = ch;
812 }
813 return 0;
814}
815
816/* Get the checksum of a packet. HDR points to the packet header.
817 DATA points to the packet data. LEN is the length of DATA. */
818
819static int
fba45db2 820mips_cksum (const unsigned char *hdr, const unsigned char *data, int len)
c906108c
SS
821{
822 register const unsigned char *p;
823 register int c;
824 register int cksum;
825
826 cksum = 0;
827
828 /* The initial SYN is not included in the checksum. */
829 c = HDR_LENGTH - 1;
830 p = hdr + 1;
831 while (c-- != 0)
832 cksum += *p++;
c5aa993b 833
c906108c
SS
834 c = len;
835 p = data;
836 while (c-- != 0)
837 cksum += *p++;
838
839 return cksum;
840}
841
842/* Send a packet containing the given ASCII string. */
843
844static void
fba45db2 845mips_send_packet (const char *s, int get_ack)
c906108c
SS
846{
847 /* unsigned */ int len;
848 unsigned char *packet;
849 register int cksum;
850 int try;
851
852 len = strlen (s);
853 if (len > DATA_MAXLEN)
854 mips_error ("MIPS protocol data packet too long: %s", s);
855
856 packet = (unsigned char *) alloca (HDR_LENGTH + len + TRLR_LENGTH + 1);
857
858 packet[HDR_INDX_SYN] = HDR_SET_SYN (1, len, mips_send_seq);
859 packet[HDR_INDX_TYPE_LEN] = HDR_SET_TYPE_LEN (1, len, mips_send_seq);
860 packet[HDR_INDX_LEN1] = HDR_SET_LEN1 (1, len, mips_send_seq);
861 packet[HDR_INDX_SEQ] = HDR_SET_SEQ (1, len, mips_send_seq);
862
863 memcpy (packet + HDR_LENGTH, s, len);
864
865 cksum = mips_cksum (packet, packet + HDR_LENGTH, len);
866 packet[HDR_LENGTH + len + TRLR_INDX_CSUM1] = TRLR_SET_CSUM1 (cksum);
867 packet[HDR_LENGTH + len + TRLR_INDX_CSUM2] = TRLR_SET_CSUM2 (cksum);
868 packet[HDR_LENGTH + len + TRLR_INDX_CSUM3] = TRLR_SET_CSUM3 (cksum);
869
870 /* Increment the sequence number. This will set mips_send_seq to
871 the sequence number we expect in the acknowledgement. */
872 mips_send_seq = (mips_send_seq + 1) % SEQ_MODULOS;
873
874 /* We can only have one outstanding data packet, so we just wait for
875 the acknowledgement here. Keep retransmitting the packet until
876 we get one, or until we've tried too many times. */
877 for (try = 0; try < mips_send_retries; try++)
878 {
879 int garbage;
880 int ch;
881
882 if (remote_debug > 0)
883 {
884 /* Don't use _filtered; we can't deal with a QUIT out of
885 target_wait, and I think this might be called from there. */
886 packet[HDR_LENGTH + len + TRLR_LENGTH] = '\0';
9846de1b 887 fprintf_unfiltered (gdb_stdlog, "Writing \"%s\"\n", packet + 1);
c906108c
SS
888 }
889
890 if (SERIAL_WRITE (mips_desc, packet,
891 HDR_LENGTH + len + TRLR_LENGTH) != 0)
892 mips_error ("write to target failed: %s", safe_strerror (errno));
893
c5aa993b 894 if (!get_ack)
c906108c
SS
895 return;
896
897 garbage = 0;
898 ch = 0;
899 while (1)
900 {
901 unsigned char hdr[HDR_LENGTH + 1];
902 unsigned char trlr[TRLR_LENGTH + 1];
903 int err;
904 unsigned int seq;
905
906 /* Get the packet header. If we time out, resend the data
907 packet. */
908 err = mips_receive_header (hdr, &garbage, ch, mips_retransmit_wait);
909 if (err != 0)
910 break;
911
912 ch = 0;
913
914 /* If we get a data packet, assume it is a duplicate and
915 ignore it. FIXME: If the acknowledgement is lost, this
916 data packet may be the packet the remote sends after the
917 acknowledgement. */
c5aa993b
JM
918 if (HDR_IS_DATA (hdr))
919 {
920 int i;
921
922 /* Ignore any errors raised whilst attempting to ignore
923 packet. */
924
925 len = HDR_GET_LEN (hdr);
926
927 for (i = 0; i < len; i++)
928 {
929 int rch;
930
688991e6 931 rch = mips_readchar (remote_timeout);
c5aa993b
JM
932 if (rch == SYN)
933 {
934 ch = SYN;
935 break;
936 }
937 if (rch == SERIAL_TIMEOUT)
938 break;
939 /* ignore the character */
940 }
941
942 if (i == len)
688991e6
AC
943 (void) mips_receive_trailer (trlr, &garbage, &ch,
944 remote_timeout);
c5aa993b
JM
945
946 /* We don't bother checking the checksum, or providing an
947 ACK to the packet. */
948 continue;
949 }
c906108c
SS
950
951 /* If the length is not 0, this is a garbled packet. */
952 if (HDR_GET_LEN (hdr) != 0)
953 continue;
954
955 /* Get the packet trailer. */
956 err = mips_receive_trailer (trlr, &garbage, &ch,
957 mips_retransmit_wait);
958
959 /* If we timed out, resend the data packet. */
960 if (err == -1)
961 break;
962
963 /* If we got a bad character, reread the header. */
964 if (err != 0)
965 continue;
966
967 /* If the checksum does not match the trailer checksum, this
968 is a bad packet; ignore it. */
969 if (mips_cksum (hdr, (unsigned char *) NULL, 0)
970 != TRLR_GET_CKSUM (trlr))
971 continue;
972
973 if (remote_debug > 0)
974 {
975 hdr[HDR_LENGTH] = '\0';
976 trlr[TRLR_LENGTH] = '\0';
977 /* Don't use _filtered; we can't deal with a QUIT out of
c5aa993b 978 target_wait, and I think this might be called from there. */
9846de1b
JM
979 fprintf_unfiltered (gdb_stdlog, "Got ack %d \"%s%s\"\n",
980 HDR_GET_SEQ (hdr), hdr + 1, trlr);
c906108c
SS
981 }
982
983 /* If this ack is for the current packet, we're done. */
984 seq = HDR_GET_SEQ (hdr);
985 if (seq == mips_send_seq)
986 return;
987
988 /* If this ack is for the last packet, resend the current
989 packet. */
990 if ((seq + 1) % SEQ_MODULOS == mips_send_seq)
991 break;
992
993 /* Otherwise this is a bad ack; ignore it. Increment the
994 garbage count to ensure that we do not stay in this loop
995 forever. */
996 ++garbage;
997 }
998 }
999
1000 mips_error ("Remote did not acknowledge packet");
1001}
1002
1003/* Receive and acknowledge a packet, returning the data in BUFF (which
1004 should be DATA_MAXLEN + 1 bytes). The protocol documentation
1005 implies that only the sender retransmits packets, so this code just
1006 waits silently for a packet. It returns the length of the received
1007 packet. If THROW_ERROR is nonzero, call error() on errors. If not,
1008 don't print an error message and return -1. */
1009
1010static int
fba45db2 1011mips_receive_packet (char *buff, int throw_error, int timeout)
c906108c
SS
1012{
1013 int ch;
1014 int garbage;
1015 int len;
1016 unsigned char ack[HDR_LENGTH + TRLR_LENGTH + 1];
1017 int cksum;
1018
1019 ch = 0;
1020 garbage = 0;
1021 while (1)
1022 {
1023 unsigned char hdr[HDR_LENGTH];
1024 unsigned char trlr[TRLR_LENGTH];
1025 int i;
1026 int err;
1027
1028 if (mips_receive_header (hdr, &garbage, ch, timeout) != 0)
1029 {
1030 if (throw_error)
1031 mips_error ("Timed out waiting for remote packet");
1032 else
1033 return -1;
1034 }
1035
1036 ch = 0;
1037
1038 /* An acknowledgement is probably a duplicate; ignore it. */
c5aa993b 1039 if (!HDR_IS_DATA (hdr))
c906108c 1040 {
c5aa993b
JM
1041 len = HDR_GET_LEN (hdr);
1042 /* Check if the length is valid for an ACK, we may aswell
1043 try and read the remainder of the packet: */
1044 if (len == 0)
1045 {
1046 /* Ignore the error condition, since we are going to
1047 ignore the packet anyway. */
1048 (void) mips_receive_trailer (trlr, &garbage, &ch, timeout);
1049 }
c906108c
SS
1050 /* Don't use _filtered; we can't deal with a QUIT out of
1051 target_wait, and I think this might be called from there. */
1052 if (remote_debug > 0)
9846de1b 1053 fprintf_unfiltered (gdb_stdlog, "Ignoring unexpected ACK\n");
c906108c
SS
1054 continue;
1055 }
1056
1057 len = HDR_GET_LEN (hdr);
1058 for (i = 0; i < len; i++)
1059 {
1060 int rch;
1061
1062 rch = mips_readchar (timeout);
1063 if (rch == SYN)
1064 {
1065 ch = SYN;
1066 break;
1067 }
1068 if (rch == SERIAL_TIMEOUT)
1069 {
1070 if (throw_error)
1071 mips_error ("Timed out waiting for remote packet");
1072 else
1073 return -1;
1074 }
1075 buff[i] = rch;
1076 }
1077
1078 if (i < len)
1079 {
1080 /* Don't use _filtered; we can't deal with a QUIT out of
1081 target_wait, and I think this might be called from there. */
1082 if (remote_debug > 0)
9846de1b
JM
1083 fprintf_unfiltered (gdb_stdlog,
1084 "Got new SYN after %d chars (wanted %d)\n",
1085 i, len);
c906108c
SS
1086 continue;
1087 }
1088
1089 err = mips_receive_trailer (trlr, &garbage, &ch, timeout);
1090 if (err == -1)
1091 {
1092 if (throw_error)
1093 mips_error ("Timed out waiting for packet");
1094 else
1095 return -1;
1096 }
1097 if (err == -2)
1098 {
1099 /* Don't use _filtered; we can't deal with a QUIT out of
1100 target_wait, and I think this might be called from there. */
1101 if (remote_debug > 0)
9846de1b 1102 fprintf_unfiltered (gdb_stdlog, "Got SYN when wanted trailer\n");
c906108c
SS
1103 continue;
1104 }
1105
1106 /* If this is the wrong sequence number, ignore it. */
1107 if (HDR_GET_SEQ (hdr) != mips_receive_seq)
1108 {
1109 /* Don't use _filtered; we can't deal with a QUIT out of
1110 target_wait, and I think this might be called from there. */
1111 if (remote_debug > 0)
9846de1b 1112 fprintf_unfiltered (gdb_stdlog,
c5aa993b
JM
1113 "Ignoring sequence number %d (want %d)\n",
1114 HDR_GET_SEQ (hdr), mips_receive_seq);
c906108c
SS
1115 continue;
1116 }
1117
1118 if (mips_cksum (hdr, buff, len) == TRLR_GET_CKSUM (trlr))
c5aa993b 1119 break;
c906108c
SS
1120
1121 if (remote_debug > 0)
1122 /* Don't use _filtered; we can't deal with a QUIT out of
1123 target_wait, and I think this might be called from there. */
1124 printf_unfiltered ("Bad checksum; data %d, trailer %d\n",
c5aa993b
JM
1125 mips_cksum (hdr, buff, len),
1126 TRLR_GET_CKSUM (trlr));
c906108c
SS
1127
1128 /* The checksum failed. Send an acknowledgement for the
c5aa993b 1129 previous packet to tell the remote to resend the packet. */
c906108c
SS
1130 ack[HDR_INDX_SYN] = HDR_SET_SYN (0, 0, mips_receive_seq);
1131 ack[HDR_INDX_TYPE_LEN] = HDR_SET_TYPE_LEN (0, 0, mips_receive_seq);
1132 ack[HDR_INDX_LEN1] = HDR_SET_LEN1 (0, 0, mips_receive_seq);
1133 ack[HDR_INDX_SEQ] = HDR_SET_SEQ (0, 0, mips_receive_seq);
1134
1135 cksum = mips_cksum (ack, (unsigned char *) NULL, 0);
1136
1137 ack[HDR_LENGTH + TRLR_INDX_CSUM1] = TRLR_SET_CSUM1 (cksum);
1138 ack[HDR_LENGTH + TRLR_INDX_CSUM2] = TRLR_SET_CSUM2 (cksum);
1139 ack[HDR_LENGTH + TRLR_INDX_CSUM3] = TRLR_SET_CSUM3 (cksum);
1140
1141 if (remote_debug > 0)
1142 {
1143 ack[HDR_LENGTH + TRLR_LENGTH] = '\0';
1144 /* Don't use _filtered; we can't deal with a QUIT out of
1145 target_wait, and I think this might be called from there. */
1146 printf_unfiltered ("Writing ack %d \"%s\"\n", mips_receive_seq,
c5aa993b 1147 ack + 1);
c906108c
SS
1148 }
1149
1150 if (SERIAL_WRITE (mips_desc, ack, HDR_LENGTH + TRLR_LENGTH) != 0)
1151 {
1152 if (throw_error)
1153 mips_error ("write to target failed: %s", safe_strerror (errno));
1154 else
1155 return -1;
1156 }
1157 }
1158
1159 if (remote_debug > 0)
1160 {
1161 buff[len] = '\0';
1162 /* Don't use _filtered; we can't deal with a QUIT out of
c5aa993b 1163 target_wait, and I think this might be called from there. */
c906108c
SS
1164 printf_unfiltered ("Got packet \"%s\"\n", buff);
1165 }
1166
1167 /* We got the packet. Send an acknowledgement. */
1168 mips_receive_seq = (mips_receive_seq + 1) % SEQ_MODULOS;
1169
1170 ack[HDR_INDX_SYN] = HDR_SET_SYN (0, 0, mips_receive_seq);
1171 ack[HDR_INDX_TYPE_LEN] = HDR_SET_TYPE_LEN (0, 0, mips_receive_seq);
1172 ack[HDR_INDX_LEN1] = HDR_SET_LEN1 (0, 0, mips_receive_seq);
1173 ack[HDR_INDX_SEQ] = HDR_SET_SEQ (0, 0, mips_receive_seq);
1174
1175 cksum = mips_cksum (ack, (unsigned char *) NULL, 0);
1176
1177 ack[HDR_LENGTH + TRLR_INDX_CSUM1] = TRLR_SET_CSUM1 (cksum);
1178 ack[HDR_LENGTH + TRLR_INDX_CSUM2] = TRLR_SET_CSUM2 (cksum);
1179 ack[HDR_LENGTH + TRLR_INDX_CSUM3] = TRLR_SET_CSUM3 (cksum);
1180
1181 if (remote_debug > 0)
1182 {
1183 ack[HDR_LENGTH + TRLR_LENGTH] = '\0';
1184 /* Don't use _filtered; we can't deal with a QUIT out of
c5aa993b 1185 target_wait, and I think this might be called from there. */
c906108c 1186 printf_unfiltered ("Writing ack %d \"%s\"\n", mips_receive_seq,
c5aa993b 1187 ack + 1);
c906108c
SS
1188 }
1189
1190 if (SERIAL_WRITE (mips_desc, ack, HDR_LENGTH + TRLR_LENGTH) != 0)
1191 {
1192 if (throw_error)
1193 mips_error ("write to target failed: %s", safe_strerror (errno));
1194 else
1195 return -1;
1196 }
1197
1198 return len;
1199}
1200\f
1201/* Optionally send a request to the remote system and optionally wait
1202 for the reply. This implements the remote debugging protocol,
1203 which is built on top of the packet protocol defined above. Each
1204 request has an ADDR argument and a DATA argument. The following
1205 requests are defined:
1206
c5aa993b
JM
1207 \0 don't send a request; just wait for a reply
1208 i read word from instruction space at ADDR
1209 d read word from data space at ADDR
1210 I write DATA to instruction space at ADDR
1211 D write DATA to data space at ADDR
1212 r read register number ADDR
1213 R set register number ADDR to value DATA
1214 c continue execution (if ADDR != 1, set pc to ADDR)
1215 s single step (if ADDR != 1, set pc to ADDR)
c906108c
SS
1216
1217 The read requests return the value requested. The write requests
1218 return the previous value in the changed location. The execution
1219 requests return a UNIX wait value (the approximate signal which
1220 caused execution to stop is in the upper eight bits).
1221
1222 If PERR is not NULL, this function waits for a reply. If an error
1223 occurs, it sets *PERR to 1 and sets errno according to what the
1224 target board reports. */
1225
4014092b
AC
1226static ULONGEST
1227mips_request (int cmd,
1228 ULONGEST addr,
1229 ULONGEST data,
1230 int *perr,
1231 int timeout,
1232 char *buff)
c906108c
SS
1233{
1234 char myBuff[DATA_MAXLEN + 1];
1235 int len;
1236 int rpid;
1237 char rcmd;
1238 int rerrflg;
1239 unsigned long rresponse;
1240
1241 if (buff == (char *) NULL)
1242 buff = myBuff;
1243
1244 if (cmd != '\0')
1245 {
1246 if (mips_need_reply)
8e65ff28
AC
1247 internal_error (__FILE__, __LINE__,
1248 "mips_request: Trying to send command before reply");
c906108c
SS
1249 sprintf (buff, "0x0 %c 0x%s 0x%s", cmd, paddr_nz (addr), paddr_nz (data));
1250 mips_send_packet (buff, 1);
1251 mips_need_reply = 1;
1252 }
1253
1254 if (perr == (int *) NULL)
1255 return 0;
1256
c5aa993b 1257 if (!mips_need_reply)
8e65ff28
AC
1258 internal_error (__FILE__, __LINE__,
1259 "mips_request: Trying to get reply before command");
c906108c
SS
1260
1261 mips_need_reply = 0;
1262
1263 len = mips_receive_packet (buff, 1, timeout);
1264 buff[len] = '\0';
1265
1266 if (sscanf (buff, "0x%x %c 0x%x 0x%lx",
1267 &rpid, &rcmd, &rerrflg, &rresponse) != 4
1268 || (cmd != '\0' && rcmd != cmd))
1269 mips_error ("Bad response from remote board");
1270
1271 if (rerrflg != 0)
1272 {
1273 *perr = 1;
1274
1275 /* FIXME: This will returns MIPS errno numbers, which may or may
c5aa993b
JM
1276 not be the same as errno values used on other systems. If
1277 they stick to common errno values, they will be the same, but
1278 if they don't, they must be translated. */
c906108c
SS
1279 errno = rresponse;
1280
1281 return 0;
1282 }
1283
1284 *perr = 0;
1285 return rresponse;
1286}
1287
1288static void
fba45db2 1289mips_initialize_cleanups (PTR arg)
c906108c
SS
1290{
1291 mips_initializing = 0;
1292}
1293
1294static void
fba45db2 1295mips_exit_cleanups (PTR arg)
c906108c
SS
1296{
1297 mips_exiting = 0;
1298}
1299
1300static void
fba45db2 1301mips_send_command (const char *cmd, int prompt)
c906108c 1302{
c5aa993b 1303 SERIAL_WRITE (mips_desc, cmd, strlen (cmd));
c906108c
SS
1304 mips_expect (cmd);
1305 mips_expect ("\n");
1306 if (prompt)
1307 mips_expect (mips_monitor_prompt);
1308}
1309
1310/* Enter remote (dbx) debug mode: */
1311static void
fba45db2 1312mips_enter_debug (void)
c906108c
SS
1313{
1314 /* Reset the sequence numbers, ready for the new debug sequence: */
1315 mips_send_seq = 0;
1316 mips_receive_seq = 0;
1317
1318 if (mips_monitor != MON_IDT)
1319 mips_send_command ("debug\r", 0);
c5aa993b 1320 else /* assume IDT monitor by default */
c906108c
SS
1321 mips_send_command ("db tty0\r", 0);
1322
c5aa993b 1323 sleep (1);
c906108c
SS
1324 SERIAL_WRITE (mips_desc, "\r", sizeof "\r" - 1);
1325
1326 /* We don't need to absorb any spurious characters here, since the
1327 mips_receive_header will eat up a reasonable number of characters
1328 whilst looking for the SYN, however this avoids the "garbage"
1329 being displayed to the user. */
1330 if (mips_monitor != MON_IDT)
1331 mips_expect ("\r");
c5aa993b 1332
c906108c
SS
1333 {
1334 char buff[DATA_MAXLEN + 1];
1335 if (mips_receive_packet (buff, 1, 3) < 0)
1336 mips_error ("Failed to initialize (didn't receive packet).");
1337 }
1338}
1339
1340/* Exit remote (dbx) debug mode, returning to the monitor prompt: */
1341static int
fba45db2 1342mips_exit_debug (void)
c906108c
SS
1343{
1344 int err;
1345 struct cleanup *old_cleanups = make_cleanup (mips_exit_cleanups, NULL);
1346
1347 mips_exiting = 1;
1348
1349 if (mips_monitor != MON_IDT)
1350 {
1351 /* The DDB (NEC) and MiniRISC (LSI) versions of PMON exit immediately,
1352 so we do not get a reply to this command: */
4014092b 1353 mips_request ('x', 0, 0, NULL, mips_receive_wait, NULL);
c906108c
SS
1354 mips_need_reply = 0;
1355 if (!mips_expect (" break!"))
c5aa993b 1356 return -1;
c906108c
SS
1357 }
1358 else
4014092b 1359 mips_request ('x', 0, 0, &err, mips_receive_wait, NULL);
c906108c
SS
1360
1361 if (!mips_expect (mips_monitor_prompt))
1362 return -1;
1363
1364 do_cleanups (old_cleanups);
1365
1366 return 0;
1367}
1368
1369/* Initialize a new connection to the MIPS board, and make sure we are
1370 really connected. */
1371
1372static void
fba45db2 1373mips_initialize (void)
c906108c
SS
1374{
1375 int err;
1376 struct cleanup *old_cleanups = make_cleanup (mips_initialize_cleanups, NULL);
1377 int j;
1378
1379 /* What is this code doing here? I don't see any way it can happen, and
1380 it might mean mips_initializing didn't get cleared properly.
1381 So I'll make it a warning. */
1382
1383 if (mips_initializing)
1384 {
1385 warning ("internal error: mips_initialize called twice");
1386 return;
1387 }
1388
1389 mips_wait_flag = 0;
1390 mips_initializing = 1;
1391
1392 /* At this point, the packit protocol isn't responding. We'll try getting
1393 into the monitor, and restarting the protocol. */
1394
1395 /* Force the system into the monitor. After this we *should* be at
1396 the mips_monitor_prompt. */
1397 if (mips_monitor != MON_IDT)
c5aa993b 1398 j = 0; /* start by checking if we are already at the prompt */
c906108c 1399 else
c5aa993b 1400 j = 1; /* start by sending a break */
c906108c
SS
1401 for (; j <= 4; j++)
1402 {
1403 switch (j)
1404 {
c5aa993b
JM
1405 case 0: /* First, try sending a CR */
1406 SERIAL_FLUSH_INPUT (mips_desc);
c906108c 1407 SERIAL_WRITE (mips_desc, "\r", 1);
c5aa993b
JM
1408 break;
1409 case 1: /* First, try sending a break */
c906108c
SS
1410 SERIAL_SEND_BREAK (mips_desc);
1411 break;
c5aa993b 1412 case 2: /* Then, try a ^C */
c906108c
SS
1413 SERIAL_WRITE (mips_desc, "\003", 1);
1414 break;
c5aa993b 1415 case 3: /* Then, try escaping from download */
c906108c 1416 {
c5aa993b
JM
1417 if (mips_monitor != MON_IDT)
1418 {
1419 char tbuff[7];
1420
1421 /* We shouldn't need to send multiple termination
1422 sequences, since the target performs line (or
1423 block) reads, and then processes those
1424 packets. In-case we were downloading a large packet
1425 we flush the output buffer before inserting a
1426 termination sequence. */
1427 SERIAL_FLUSH_OUTPUT (mips_desc);
1428 sprintf (tbuff, "\r/E/E\r");
1429 SERIAL_WRITE (mips_desc, tbuff, 6);
1430 }
1431 else
1432 {
1433 char srec[10];
1434 int i;
1435
1436 /* We are possibly in binary download mode, having
1437 aborted in the middle of an S-record. ^C won't
1438 work because of binary mode. The only reliable way
1439 out is to send enough termination packets (8 bytes)
1440 to fill up and then overflow the largest size
1441 S-record (255 bytes in this case). This amounts to
1442 256/8 + 1 packets.
1443 */
1444
1445 mips_make_srec (srec, '7', 0, NULL, 0);
1446
1447 for (i = 1; i <= 33; i++)
1448 {
1449 SERIAL_WRITE (mips_desc, srec, 8);
1450
1451 if (SERIAL_READCHAR (mips_desc, 0) >= 0)
1452 break; /* Break immediatly if we get something from
c906108c 1453 the board. */
c5aa993b
JM
1454 }
1455 }
1456 }
c906108c
SS
1457 break;
1458 case 4:
1459 mips_error ("Failed to initialize.");
1460 }
1461
1462 if (mips_expect (mips_monitor_prompt))
1463 break;
1464 }
1465
1466 if (mips_monitor != MON_IDT)
1467 {
1468 /* Sometimes PMON ignores the first few characters in the first
1469 command sent after a load. Sending a blank command gets
c5aa993b 1470 around that. */
c906108c
SS
1471 mips_send_command ("\r", -1);
1472
1473 /* Ensure the correct target state: */
1474 if (mips_monitor != MON_LSI)
1475 mips_send_command ("set regsize 64\r", -1);
1476 mips_send_command ("set hostport tty0\r", -1);
1477 mips_send_command ("set brkcmd \"\"\r", -1);
1478 /* Delete all the current breakpoints: */
1479 mips_send_command ("db *\r", -1);
1480 /* NOTE: PMON does not have breakpoint support through the
1481 "debug" mode, only at the monitor command-line. */
1482 }
1483
1484 mips_enter_debug ();
1485
1486 /* Clear all breakpoints: */
1487 if ((mips_monitor == MON_IDT
1488 && clear_breakpoint (-1, 0, BREAK_UNUSED) == 0)
1489 || mips_monitor == MON_LSI)
1490 monitor_supports_breakpoints = 1;
1491 else
1492 monitor_supports_breakpoints = 0;
1493
1494 do_cleanups (old_cleanups);
1495
1496 /* If this doesn't call error, we have connected; we don't care if
1497 the request itself succeeds or fails. */
1498
4014092b 1499 mips_request ('r', 0, 0, &err, mips_receive_wait, NULL);
c906108c
SS
1500 set_current_frame (create_new_frame (read_fp (), read_pc ()));
1501 select_frame (get_current_frame (), 0);
1502}
1503
1504/* Open a connection to the remote board. */
1505static void
fba45db2 1506common_open (struct target_ops *ops, char *name, int from_tty,
98691afe
AC
1507 enum mips_monitor_type new_monitor,
1508 const char *new_monitor_prompt)
c906108c
SS
1509{
1510 char *ptype;
1511 char *serial_port_name;
1512 char *remote_name = 0;
1513 char *local_name = 0;
1514 char **argv;
1515
1516 if (name == 0)
1517 error (
c5aa993b 1518 "To open a MIPS remote debugging connection, you need to specify what serial\n\
c906108c 1519device is attached to the target board (e.g., /dev/ttya).\n"
c5aa993b
JM
1520 "If you want to use TFTP to download to the board, specify the name of a\n"
1521 "temporary file to be used by GDB for downloads as the second argument.\n"
1522 "This filename must be in the form host:filename, where host is the name\n"
1523 "of the host running the TFTP server, and the file must be readable by the\n"
1524 "world. If the local name of the temporary file differs from the name as\n"
1525 "seen from the board via TFTP, specify that name as the third parameter.\n");
c906108c
SS
1526
1527 /* Parse the serial port name, the optional TFTP name, and the
1528 optional local TFTP name. */
1529 if ((argv = buildargv (name)) == NULL)
c5aa993b 1530 nomem (0);
7a292a7a 1531 make_cleanup_freeargv (argv);
c906108c 1532
4fcf66da 1533 serial_port_name = xstrdup (argv[0]);
c5aa993b 1534 if (argv[1]) /* remote TFTP name specified? */
c906108c
SS
1535 {
1536 remote_name = argv[1];
c5aa993b 1537 if (argv[2]) /* local TFTP filename specified? */
c906108c
SS
1538 local_name = argv[2];
1539 }
1540
1541 target_preopen (from_tty);
1542
1543 if (mips_is_open)
1544 unpush_target (current_ops);
1545
1546 /* Open and initialize the serial port. */
1547 mips_desc = SERIAL_OPEN (serial_port_name);
1548 if (mips_desc == (serial_t) NULL)
1549 perror_with_name (serial_port_name);
1550
1551 if (baud_rate != -1)
1552 {
1553 if (SERIAL_SETBAUDRATE (mips_desc, baud_rate))
c5aa993b
JM
1554 {
1555 SERIAL_CLOSE (mips_desc);
1556 perror_with_name (serial_port_name);
1557 }
c906108c
SS
1558 }
1559
1560 SERIAL_RAW (mips_desc);
1561
1562 /* Open and initialize the optional download port. If it is in the form
1563 hostname#portnumber, it's a UDP socket. If it is in the form
1564 hostname:filename, assume it's the TFTP filename that must be
1565 passed to the DDB board to tell it where to get the load file. */
1566 if (remote_name)
1567 {
1568 if (strchr (remote_name, '#'))
1569 {
1570 udp_desc = SERIAL_OPEN (remote_name);
1571 if (!udp_desc)
1572 perror_with_name ("Unable to open UDP port");
1573 udp_in_use = 1;
1574 }
1575 else
1576 {
1577 /* Save the remote and local names of the TFTP temp file. If
1578 the user didn't specify a local name, assume it's the same
1579 as the part of the remote name after the "host:". */
1580 if (tftp_name)
b8c9b27d 1581 xfree (tftp_name);
c906108c 1582 if (tftp_localname)
b8c9b27d 1583 xfree (tftp_localname);
c906108c 1584 if (local_name == NULL)
c5aa993b
JM
1585 if ((local_name = strchr (remote_name, ':')) != NULL)
1586 local_name++; /* skip over the colon */
c906108c
SS
1587 if (local_name == NULL)
1588 local_name = remote_name; /* local name same as remote name */
4fcf66da
AC
1589 tftp_name = xstrdup (remote_name);
1590 tftp_localname = xstrdup (local_name);
c906108c
SS
1591 tftp_in_use = 1;
1592 }
1593 }
1594
1595 current_ops = ops;
1596 mips_is_open = 1;
1597
1598 /* Reset the expected monitor prompt if it's never been set before. */
1599 if (mips_monitor_prompt == NULL)
4fcf66da 1600 mips_monitor_prompt = xstrdup (new_monitor_prompt);
c906108c
SS
1601 mips_monitor = new_monitor;
1602
1603 mips_initialize ();
1604
1605 if (from_tty)
1606 printf_unfiltered ("Remote MIPS debugging using %s\n", serial_port_name);
1607
1608 /* Switch to using remote target now. */
1609 push_target (ops);
1610
1611 /* FIXME: Should we call start_remote here? */
1612
1613 /* Try to figure out the processor model if possible. */
1614 ptype = mips_read_processor_type ();
1615 if (ptype)
4fcf66da 1616 mips_set_processor_type_command (xstrdup (ptype), 0);
c906108c
SS
1617
1618/* This is really the job of start_remote however, that makes an assumption
1619 that the target is about to print out a status message of some sort. That
1620 doesn't happen here (in fact, it may not be possible to get the monitor to
1621 send the appropriate packet). */
1622
1623 flush_cached_frames ();
1624 registers_changed ();
1625 stop_pc = read_pc ();
1626 set_current_frame (create_new_frame (read_fp (), stop_pc));
1627 select_frame (get_current_frame (), 0);
1628 print_stack_frame (selected_frame, -1, 1);
b8c9b27d 1629 xfree (serial_port_name);
c906108c
SS
1630}
1631
1632static void
fba45db2 1633mips_open (char *name, int from_tty)
c906108c 1634{
ef31c1ea
AC
1635 const char *monitor_prompt = NULL;
1636 if (TARGET_ARCHITECTURE != NULL
1637 && TARGET_ARCHITECTURE->arch == bfd_arch_mips)
1638 {
1639 switch (TARGET_ARCHITECTURE->mach)
1640 {
1641 case bfd_mach_mips4100:
1642 case bfd_mach_mips4300:
1643 case bfd_mach_mips4600:
1644 case bfd_mach_mips4650:
1645 case bfd_mach_mips5000:
1646 monitor_prompt = "<RISQ> ";
1647 break;
1648 }
1649 }
1650 if (monitor_prompt == NULL)
1651 monitor_prompt = "<IDT>";
1652 common_open (&mips_ops, name, from_tty, MON_IDT, monitor_prompt);
c906108c
SS
1653}
1654
1655static void
fba45db2 1656pmon_open (char *name, int from_tty)
c906108c
SS
1657{
1658 common_open (&pmon_ops, name, from_tty, MON_PMON, "PMON> ");
1659}
1660
1661static void
fba45db2 1662ddb_open (char *name, int from_tty)
c906108c
SS
1663{
1664 common_open (&ddb_ops, name, from_tty, MON_DDB, "NEC010>");
1665}
1666
1667static void
fba45db2 1668lsi_open (char *name, int from_tty)
c906108c
SS
1669{
1670 int i;
1671
1672 /* Clear the LSI breakpoint table. */
1673 for (i = 0; i < MAX_LSI_BREAKPOINTS; i++)
1674 lsi_breakpoints[i].type = BREAK_UNUSED;
c5aa993b 1675
c906108c
SS
1676 common_open (&lsi_ops, name, from_tty, MON_LSI, "PMON> ");
1677}
1678
1679/* Close a connection to the remote board. */
1680
1681static void
fba45db2 1682mips_close (int quitting)
c906108c
SS
1683{
1684 if (mips_is_open)
1685 {
1686 /* Get the board out of remote debugging mode. */
1687 (void) mips_exit_debug ();
1688
1689 close_ports ();
1690 }
1691}
1692
1693/* Detach from the remote board. */
1694
1695static void
fba45db2 1696mips_detach (char *args, int from_tty)
c906108c
SS
1697{
1698 if (args)
1699 error ("Argument given to \"detach\" when remotely debugging.");
1700
1701 pop_target ();
1702
1703 mips_close (1);
1704
1705 if (from_tty)
1706 printf_unfiltered ("Ending remote MIPS debugging.\n");
1707}
1708
1709/* Tell the target board to resume. This does not wait for a reply
1710 from the board, except in the case of single-stepping on LSI boards,
1711 where PMON does return a reply. */
1712
1713static void
fba45db2 1714mips_resume (int pid, int step, enum target_signal siggnal)
c906108c
SS
1715{
1716 int err;
1717
1718 /* LSI PMON requires returns a reply packet "0x1 s 0x0 0x57f" after
1719 a single step, so we wait for that. */
4014092b 1720 mips_request (step ? 's' : 'c', 1, siggnal,
c906108c
SS
1721 mips_monitor == MON_LSI && step ? &err : (int *) NULL,
1722 mips_receive_wait, NULL);
1723}
1724
1725/* Return the signal corresponding to SIG, where SIG is the number which
1726 the MIPS protocol uses for the signal. */
1727enum target_signal
fba45db2 1728mips_signal_from_protocol (int sig)
c906108c
SS
1729{
1730 /* We allow a few more signals than the IDT board actually returns, on
1731 the theory that there is at least *some* hope that perhaps the numbering
1732 for these signals is widely agreed upon. */
1733 if (sig <= 0
1734 || sig > 31)
1735 return TARGET_SIGNAL_UNKNOWN;
1736
1737 /* Don't want to use target_signal_from_host because we are converting
1738 from MIPS signal numbers, not host ones. Our internal numbers
1739 match the MIPS numbers for the signals the board can return, which
1740 are: SIGINT, SIGSEGV, SIGBUS, SIGILL, SIGFPE, SIGTRAP. */
1741 return (enum target_signal) sig;
1742}
1743
1744/* Wait until the remote stops, and return a wait status. */
1745
1746static int
fba45db2 1747mips_wait (int pid, struct target_waitstatus *status)
c906108c
SS
1748{
1749 int rstatus;
1750 int err;
1751 char buff[DATA_MAXLEN];
1752 int rpc, rfp, rsp;
1753 char flags[20];
1754 int nfields;
1755 int i;
1756
1757 interrupt_count = 0;
1758 hit_watchpoint = 0;
1759
1760 /* If we have not sent a single step or continue command, then the
1761 board is waiting for us to do something. Return a status
1762 indicating that it is stopped. */
c5aa993b 1763 if (!mips_need_reply)
c906108c
SS
1764 {
1765 status->kind = TARGET_WAITKIND_STOPPED;
1766 status->value.sig = TARGET_SIGNAL_TRAP;
1767 return 0;
1768 }
1769
1770 /* No timeout; we sit here as long as the program continues to execute. */
1771 mips_wait_flag = 1;
4014092b 1772 rstatus = mips_request ('\000', 0, 0, &err, -1, buff);
c906108c
SS
1773 mips_wait_flag = 0;
1774 if (err)
1775 mips_error ("Remote failure: %s", safe_strerror (errno));
1776
1777 /* On returning from a continue, the PMON monitor seems to start
1778 echoing back the messages we send prior to sending back the
1779 ACK. The code can cope with this, but to try and avoid the
1780 unnecessary serial traffic, and "spurious" characters displayed
1781 to the user, we cheat and reset the debug protocol. The problems
1782 seems to be caused by a check on the number of arguments, and the
1783 command length, within the monitor causing it to echo the command
1784 as a bad packet. */
1785 if (mips_monitor == MON_PMON)
1786 {
1787 mips_exit_debug ();
1788 mips_enter_debug ();
1789 }
1790
1791 /* See if we got back extended status. If so, pick out the pc, fp, sp, etc... */
1792
1793 nfields = sscanf (buff, "0x%*x %*c 0x%*x 0x%*x 0x%x 0x%x 0x%x 0x%*x %s",
1794 &rpc, &rfp, &rsp, flags);
1795 if (nfields >= 3)
1796 {
1797 char buf[MAX_REGISTER_RAW_SIZE];
1798
1799 store_unsigned_integer (buf, REGISTER_RAW_SIZE (PC_REGNUM), rpc);
1800 supply_register (PC_REGNUM, buf);
1801
1802 store_unsigned_integer (buf, REGISTER_RAW_SIZE (PC_REGNUM), rfp);
c5aa993b 1803 supply_register (30, buf); /* This register they are avoiding and so it is unnamed */
c906108c
SS
1804
1805 store_unsigned_integer (buf, REGISTER_RAW_SIZE (SP_REGNUM), rsp);
1806 supply_register (SP_REGNUM, buf);
1807
1808 store_unsigned_integer (buf, REGISTER_RAW_SIZE (FP_REGNUM), 0);
1809 supply_register (FP_REGNUM, buf);
1810
1811 if (nfields == 9)
1812 {
1813 int i;
1814
1815 for (i = 0; i <= 2; i++)
1816 if (flags[i] == 'r' || flags[i] == 'w')
1817 hit_watchpoint = 1;
1818 else if (flags[i] == '\000')
1819 break;
1820 }
1821 }
1822
1823 if (strcmp (target_shortname, "lsi") == 0)
1824 {
1825#if 0
1826 /* If this is an LSI PMON target, see if we just hit a hardrdware watchpoint.
c5aa993b
JM
1827 Right now, PMON doesn't give us enough information to determine which
1828 breakpoint we hit. So we have to look up the PC in our own table
1829 of breakpoints, and if found, assume it's just a normal instruction
1830 fetch breakpoint, not a data watchpoint. FIXME when PMON
1831 provides some way to tell us what type of breakpoint it is. */
c906108c 1832 int i;
c5aa993b 1833 CORE_ADDR pc = read_pc ();
c906108c
SS
1834
1835 hit_watchpoint = 1;
1836 for (i = 0; i < MAX_LSI_BREAKPOINTS; i++)
1837 {
1838 if (lsi_breakpoints[i].addr == pc
1839 && lsi_breakpoints[i].type == BREAK_FETCH)
1840 {
1841 hit_watchpoint = 0;
1842 break;
1843 }
1844 }
1845#else
1846 /* If a data breakpoint was hit, PMON returns the following packet:
c5aa993b
JM
1847 0x1 c 0x0 0x57f 0x1
1848 The return packet from an ordinary breakpoint doesn't have the
1849 extra 0x01 field tacked onto the end. */
c906108c
SS
1850 if (nfields == 1 && rpc == 1)
1851 hit_watchpoint = 1;
1852#endif
1853 }
1854
1855 /* NOTE: The following (sig) numbers are defined by PMON:
c5aa993b
JM
1856 SPP_SIGTRAP 5 breakpoint
1857 SPP_SIGINT 2
1858 SPP_SIGSEGV 11
1859 SPP_SIGBUS 10
1860 SPP_SIGILL 4
1861 SPP_SIGFPE 8
1862 SPP_SIGTERM 15 */
c906108c
SS
1863
1864 /* Translate a MIPS waitstatus. We use constants here rather than WTERMSIG
1865 and so on, because the constants we want here are determined by the
1866 MIPS protocol and have nothing to do with what host we are running on. */
1867 if ((rstatus & 0xff) == 0)
1868 {
1869 status->kind = TARGET_WAITKIND_EXITED;
1870 status->value.integer = (((rstatus) >> 8) & 0xff);
1871 }
1872 else if ((rstatus & 0xff) == 0x7f)
1873 {
1874 status->kind = TARGET_WAITKIND_STOPPED;
1875 status->value.sig = mips_signal_from_protocol (((rstatus) >> 8) & 0xff);
1876
1877 /* If the stop PC is in the _exit function, assume
1878 we hit the 'break 0x3ff' instruction in _exit, so this
c5aa993b 1879 is not a normal breakpoint. */
c906108c
SS
1880 if (strcmp (target_shortname, "lsi") == 0)
1881 {
1882 char *func_name;
1883 CORE_ADDR func_start;
c5aa993b 1884 CORE_ADDR pc = read_pc ();
c906108c
SS
1885
1886 find_pc_partial_function (pc, &func_name, &func_start, NULL);
1887 if (func_name != NULL && strcmp (func_name, "_exit") == 0
1888 && func_start == pc)
1889 status->kind = TARGET_WAITKIND_EXITED;
1890 }
1891 }
1892 else
1893 {
1894 status->kind = TARGET_WAITKIND_SIGNALLED;
1895 status->value.sig = mips_signal_from_protocol (rstatus & 0x7f);
1896 }
1897
1898 return 0;
1899}
1900
1901/* We have to map between the register numbers used by gdb and the
1902 register numbers used by the debugging protocol. This function
1903 assumes that we are using tm-mips.h. */
1904
1905#define REGNO_OFFSET 96
1906
1907static int
fba45db2 1908mips_map_regno (int regno)
c906108c
SS
1909{
1910 if (regno < 32)
1911 return regno;
1912 if (regno >= FP0_REGNUM && regno < FP0_REGNUM + 32)
1913 return regno - FP0_REGNUM + 32;
1914 switch (regno)
1915 {
1916 case PC_REGNUM:
1917 return REGNO_OFFSET + 0;
1918 case CAUSE_REGNUM:
1919 return REGNO_OFFSET + 1;
1920 case HI_REGNUM:
1921 return REGNO_OFFSET + 2;
1922 case LO_REGNUM:
1923 return REGNO_OFFSET + 3;
1924 case FCRCS_REGNUM:
1925 return REGNO_OFFSET + 4;
1926 case FCRIR_REGNUM:
1927 return REGNO_OFFSET + 5;
1928 default:
1929 /* FIXME: Is there a way to get the status register? */
1930 return 0;
1931 }
1932}
1933
1934/* Fetch the remote registers. */
1935
1936static void
fba45db2 1937mips_fetch_registers (int regno)
c906108c
SS
1938{
1939 unsigned LONGEST val;
1940 int err;
1941
1942 if (regno == -1)
1943 {
1944 for (regno = 0; regno < NUM_REGS; regno++)
1945 mips_fetch_registers (regno);
1946 return;
1947 }
1948
1949 if (regno == FP_REGNUM || regno == ZERO_REGNUM)
1950 /* FP_REGNUM on the mips is a hack which is just supposed to read
1951 zero (see also mips-nat.c). */
1952 val = 0;
1953 else
1954 {
1955 /* If PMON doesn't support this register, don't waste serial
1956 bandwidth trying to read it. */
1957 int pmon_reg = mips_map_regno (regno);
1958 if (regno != 0 && pmon_reg == 0)
1959 val = 0;
1960 else
1961 {
1962 /* Unfortunately the PMON version in the Vr4300 board has been
1963 compiled without the 64bit register access commands. This
1964 means we cannot get hold of the full register width. */
1965 if (mips_monitor == MON_DDB)
4014092b
AC
1966 val = (unsigned) mips_request ('t', pmon_reg, 0,
1967 &err, mips_receive_wait, NULL);
c906108c 1968 else
4014092b
AC
1969 val = mips_request ('r', pmon_reg, 0,
1970 &err, mips_receive_wait, NULL);
c906108c
SS
1971 if (err)
1972 mips_error ("Can't read register %d: %s", regno,
1973 safe_strerror (errno));
1974 }
1975 }
1976
1977 {
1978 char buf[MAX_REGISTER_RAW_SIZE];
1979
1980 /* We got the number the register holds, but gdb expects to see a
1981 value in the target byte ordering. */
1982 store_unsigned_integer (buf, REGISTER_RAW_SIZE (regno), val);
1983 supply_register (regno, buf);
1984 }
1985}
1986
1987/* Prepare to store registers. The MIPS protocol can store individual
1988 registers, so this function doesn't have to do anything. */
1989
1990static void
fba45db2 1991mips_prepare_to_store (void)
c906108c
SS
1992{
1993}
1994
1995/* Store remote register(s). */
1996
1997static void
fba45db2 1998mips_store_registers (int regno)
c906108c
SS
1999{
2000 int err;
2001
2002 if (regno == -1)
2003 {
2004 for (regno = 0; regno < NUM_REGS; regno++)
2005 mips_store_registers (regno);
2006 return;
2007 }
2008
4014092b 2009 mips_request ('R', mips_map_regno (regno),
c906108c
SS
2010 read_register (regno),
2011 &err, mips_receive_wait, NULL);
2012 if (err)
2013 mips_error ("Can't write register %d: %s", regno, safe_strerror (errno));
2014}
2015
2016/* Fetch a word from the target board. */
2017
c5aa993b 2018static unsigned int
fba45db2 2019mips_fetch_word (CORE_ADDR addr)
c906108c
SS
2020{
2021 unsigned int val;
2022 int err;
2023
4014092b 2024 val = mips_request ('d', addr, 0, &err, mips_receive_wait, NULL);
c906108c
SS
2025 if (err)
2026 {
2027 /* Data space failed; try instruction space. */
4014092b 2028 val = mips_request ('i', addr, 0, &err,
c906108c
SS
2029 mips_receive_wait, NULL);
2030 if (err)
c5aa993b
JM
2031 mips_error ("Can't read address 0x%s: %s",
2032 paddr_nz (addr), safe_strerror (errno));
c906108c
SS
2033 }
2034 return val;
2035}
2036
2037/* Store a word to the target board. Returns errno code or zero for
2038 success. If OLD_CONTENTS is non-NULL, put the old contents of that
2039 memory location there. */
2040
2041/* FIXME! make sure only 32-bit quantities get stored! */
2042static int
fba45db2 2043mips_store_word (CORE_ADDR addr, unsigned int val, char *old_contents)
c906108c
SS
2044{
2045 int err;
2046 unsigned int oldcontents;
2047
4014092b 2048 oldcontents = mips_request ('D', addr, val, &err,
c906108c
SS
2049 mips_receive_wait, NULL);
2050 if (err)
2051 {
2052 /* Data space failed; try instruction space. */
4014092b 2053 oldcontents = mips_request ('I', addr, val, &err,
c906108c
SS
2054 mips_receive_wait, NULL);
2055 if (err)
2056 return errno;
2057 }
2058 if (old_contents != NULL)
2059 store_unsigned_integer (old_contents, 4, oldcontents);
2060 return 0;
2061}
2062
2063/* Read or write LEN bytes from inferior memory at MEMADDR,
2064 transferring to or from debugger address MYADDR. Write to inferior
2065 if SHOULD_WRITE is nonzero. Returns length of data written or
2066 read; 0 for error. Note that protocol gives us the correct value
2067 for a longword, since it transfers values in ASCII. We want the
2068 byte values, so we have to swap the longword values. */
2069
4014092b
AC
2070static int mask_address_p = 1;
2071
c906108c 2072static int
fba45db2 2073mips_xfer_memory (CORE_ADDR memaddr, char *myaddr, int len, int write,
29e57380
C
2074 struct mem_attrib *attrib ATTRIBUTE_UNUSED,
2075 struct target_ops *target ATTRIBUTE_UNUSED)
c906108c 2076{
4014092b
AC
2077 int i;
2078 CORE_ADDR addr;
2079 int count;
2080 char *buffer;
2081 int status;
2082
2083 /* PMON targets do not cope well with 64 bit addresses. Mask the
2084 value down to 32 bits. */
2085 if (mask_address_p)
2086 memaddr &= (CORE_ADDR) 0xffffffff;
2087
c906108c 2088 /* Round starting address down to longword boundary. */
4014092b 2089 addr = memaddr & ~3;
c906108c 2090 /* Round ending address up; get number of longwords that makes. */
4014092b 2091 count = (((memaddr + len) - addr) + 3) / 4;
c906108c 2092 /* Allocate buffer of that many longwords. */
4014092b 2093 buffer = alloca (count * 4);
c906108c
SS
2094
2095 if (write)
2096 {
2097 /* Fill start and end extra bytes of buffer with existing data. */
2098 if (addr != memaddr || len < 4)
2099 {
2100 /* Need part of initial word -- fetch it. */
2101 store_unsigned_integer (&buffer[0], 4, mips_fetch_word (addr));
2102 }
2103
2104 if (count > 1)
2105 {
2106 /* Need part of last word -- fetch it. FIXME: we do this even
2107 if we don't need it. */
2108 store_unsigned_integer (&buffer[(count - 1) * 4], 4,
2109 mips_fetch_word (addr + (count - 1) * 4));
2110 }
2111
2112 /* Copy data to be written over corresponding part of buffer */
2113
2114 memcpy ((char *) buffer + (memaddr & 3), myaddr, len);
2115
2116 /* Write the entire buffer. */
2117
2118 for (i = 0; i < count; i++, addr += 4)
2119 {
2120 status = mips_store_word (addr,
c5aa993b 2121 extract_unsigned_integer (&buffer[i * 4], 4),
c906108c
SS
2122 NULL);
2123 /* Report each kilobyte (we download 32-bit words at a time) */
c5aa993b 2124 if (i % 256 == 255)
c906108c
SS
2125 {
2126 printf_unfiltered ("*");
2127 gdb_flush (gdb_stdout);
2128 }
2129 if (status)
2130 {
2131 errno = status;
2132 return 0;
2133 }
2134 /* FIXME: Do we want a QUIT here? */
2135 }
2136 if (count >= 256)
2137 printf_unfiltered ("\n");
2138 }
2139 else
2140 {
2141 /* Read all the longwords */
2142 for (i = 0; i < count; i++, addr += 4)
2143 {
c5aa993b 2144 store_unsigned_integer (&buffer[i * 4], 4, mips_fetch_word (addr));
c906108c
SS
2145 QUIT;
2146 }
2147
2148 /* Copy appropriate bytes out of the buffer. */
2149 memcpy (myaddr, buffer + (memaddr & 3), len);
2150 }
2151 return len;
2152}
2153
2154/* Print info on this target. */
2155
2156static void
fba45db2 2157mips_files_info (struct target_ops *ignore)
c906108c
SS
2158{
2159 printf_unfiltered ("Debugging a MIPS board over a serial line.\n");
2160}
2161
2162/* Kill the process running on the board. This will actually only
2163 work if we are doing remote debugging over the console input. I
2164 think that if IDT/sim had the remote debug interrupt enabled on the
2165 right port, we could interrupt the process with a break signal. */
2166
2167static void
fba45db2 2168mips_kill (void)
c906108c
SS
2169{
2170 if (!mips_wait_flag)
2171 return;
2172
2173 interrupt_count++;
2174
2175 if (interrupt_count >= 2)
2176 {
2177 interrupt_count = 0;
2178
2179 target_terminal_ours ();
2180
2181 if (query ("Interrupted while waiting for the program.\n\
2182Give up (and stop debugging it)? "))
2183 {
2184 /* Clean up in such a way that mips_close won't try to talk to the
2185 board (it almost surely won't work since we weren't able to talk to
2186 it). */
2187 mips_wait_flag = 0;
c5aa993b 2188 close_ports ();
c906108c
SS
2189
2190 printf_unfiltered ("Ending remote MIPS debugging.\n");
2191 target_mourn_inferior ();
2192
2193 return_to_top_level (RETURN_QUIT);
2194 }
2195
2196 target_terminal_inferior ();
2197 }
2198
2199 if (remote_debug > 0)
2200 printf_unfiltered ("Sending break\n");
2201
2202 SERIAL_SEND_BREAK (mips_desc);
2203
2204#if 0
2205 if (mips_is_open)
2206 {
2207 char cc;
2208
2209 /* Send a ^C. */
2210 cc = '\003';
2211 SERIAL_WRITE (mips_desc, &cc, 1);
2212 sleep (1);
2213 target_mourn_inferior ();
2214 }
2215#endif
2216}
2217
2218/* Start running on the target board. */
2219
2220static void
fba45db2 2221mips_create_inferior (char *execfile, char *args, char **env)
c906108c
SS
2222{
2223 CORE_ADDR entry_pt;
2224
2225 if (args && *args)
2226 {
2227 warning ("\
2228Can't pass arguments to remote MIPS board; arguments ignored.");
2229 /* And don't try to use them on the next "run" command. */
2230 execute_command ("set args", 0);
2231 }
2232
2233 if (execfile == 0 || exec_bfd == 0)
2234 error ("No executable file specified");
2235
2236 entry_pt = (CORE_ADDR) bfd_get_start_address (exec_bfd);
2237
2238 init_wait_for_inferior ();
2239
2240 /* FIXME: Should we set inferior_pid here? */
2241
2242 proceed (entry_pt, TARGET_SIGNAL_DEFAULT, 0);
2243}
2244
2245/* Clean up after a process. Actually nothing to do. */
2246
2247static void
fba45db2 2248mips_mourn_inferior (void)
c906108c
SS
2249{
2250 if (current_ops != NULL)
2251 unpush_target (current_ops);
2252 generic_mourn_inferior ();
2253}
2254\f
2255/* We can write a breakpoint and read the shadow contents in one
2256 operation. */
2257
2258/* Insert a breakpoint. On targets that don't have built-in breakpoint
2259 support, we read the contents of the target location and stash it,
2260 then overwrite it with a breakpoint instruction. ADDR is the target
2261 location in the target machine. CONTENTS_CACHE is a pointer to
2262 memory allocated for saving the target contents. It is guaranteed
2263 by the caller to be long enough to save sizeof BREAKPOINT bytes (this
2264 is accomplished via BREAKPOINT_MAX). */
2265
2266static int
fba45db2 2267mips_insert_breakpoint (CORE_ADDR addr, char *contents_cache)
c906108c
SS
2268{
2269 if (monitor_supports_breakpoints)
2270 return set_breakpoint (addr, MIPS_INSTLEN, BREAK_FETCH);
2271 else
2272 return memory_insert_breakpoint (addr, contents_cache);
2273}
2274
2275static int
fba45db2 2276mips_remove_breakpoint (CORE_ADDR addr, char *contents_cache)
c906108c
SS
2277{
2278 if (monitor_supports_breakpoints)
2279 return clear_breakpoint (addr, MIPS_INSTLEN, BREAK_FETCH);
2280 else
2281 return memory_remove_breakpoint (addr, contents_cache);
2282}
2283
c5aa993b 2284#if 0 /* currently not used */
c906108c
SS
2285/* PMON does not currently provide support for the debug mode 'b'
2286 commands to manipulate breakpoints. However, if we wanted to use
2287 the monitor breakpoints (rather than the GDB BREAK_INSN version)
2288 then this code performs the work needed to leave debug mode,
2289 set/clear the breakpoint, and then return to debug mode. */
2290
c5aa993b 2291#define PMON_MAX_BP (33) /* 32 SW, 1 HW */
c906108c
SS
2292static CORE_ADDR mips_pmon_bp_info[PMON_MAX_BP];
2293/* NOTE: The code relies on this vector being zero-initialised by the system */
2294
2295static int
fba45db2 2296pmon_insert_breakpoint (CORE_ADDR addr, char *contents_cache)
c906108c
SS
2297{
2298 int status;
2299
2300 if (monitor_supports_breakpoints)
2301 {
c5aa993b 2302 char tbuff[12]; /* space for breakpoint command */
c906108c
SS
2303 int bpnum;
2304 CORE_ADDR bpaddr;
2305
2306 /* PMON does not support debug level breakpoint set/remove: */
2307 if (mips_exit_debug ())
c5aa993b 2308 mips_error ("Failed to exit debug mode");
c906108c
SS
2309
2310 sprintf (tbuff, "b %08x\r", addr);
2311 mips_send_command (tbuff, 0);
2312
2313 mips_expect ("Bpt ");
2314
688991e6 2315 if (!mips_getstring (tbuff, remote_timeout))
c5aa993b
JM
2316 return 1;
2317 tbuff[2] = '\0'; /* terminate the string */
c906108c 2318 if (sscanf (tbuff, "%d", &bpnum) != 1)
c5aa993b
JM
2319 {
2320 fprintf_unfiltered (gdb_stderr,
2321 "Invalid decimal breakpoint number from target: %s\n", tbuff);
2322 return 1;
2323 }
c906108c
SS
2324
2325 mips_expect (" = ");
2326
2327 /* Lead in the hex number we are expecting: */
2328 tbuff[0] = '0';
2329 tbuff[1] = 'x';
2330
2331 /* FIXME!! only 8 bytes! need to expand for Bfd64;
2332 which targets return 64-bit addresses? PMON returns only 32! */
2333 if (!mips_getstring (&tbuff[2], 8))
c5aa993b
JM
2334 return 1;
2335 tbuff[10] = '\0'; /* terminate the string */
c906108c
SS
2336
2337 if (sscanf (tbuff, "0x%08x", &bpaddr) != 1)
c5aa993b
JM
2338 {
2339 fprintf_unfiltered (gdb_stderr,
2340 "Invalid hex address from target: %s\n", tbuff);
2341 return 1;
2342 }
c906108c
SS
2343
2344 if (bpnum >= PMON_MAX_BP)
c5aa993b
JM
2345 {
2346 fprintf_unfiltered (gdb_stderr,
c906108c 2347 "Error: Returned breakpoint number %d outside acceptable range (0..%d)\n",
c5aa993b
JM
2348 bpnum, PMON_MAX_BP - 1);
2349 return 1;
2350 }
c906108c
SS
2351
2352 if (bpaddr != addr)
c5aa993b 2353 fprintf_unfiltered (gdb_stderr, "Warning: Breakpoint addresses do not match: 0x%x != 0x%x\n", addr, bpaddr);
c906108c
SS
2354
2355 mips_pmon_bp_info[bpnum] = bpaddr;
2356
2357 mips_expect ("\r\n");
2358 mips_expect (mips_monitor_prompt);
2359
2360 mips_enter_debug ();
2361
2362 return 0;
2363 }
2364
2365 return mips_store_word (addr, BREAK_INSN, contents_cache);
2366}
2367
2368static int
fba45db2 2369pmon_remove_breakpoint (CORE_ADDR addr, char *contents_cache)
c906108c
SS
2370{
2371 if (monitor_supports_breakpoints)
2372 {
2373 int bpnum;
c5aa993b 2374 char tbuff[7]; /* enough for delete breakpoint command */
c906108c
SS
2375
2376 for (bpnum = 0; bpnum < PMON_MAX_BP; bpnum++)
c5aa993b
JM
2377 if (mips_pmon_bp_info[bpnum] == addr)
2378 break;
c906108c
SS
2379
2380 if (bpnum >= PMON_MAX_BP)
c5aa993b
JM
2381 {
2382 fprintf_unfiltered (gdb_stderr,
2383 "pmon_remove_breakpoint: Failed to find breakpoint at address 0x%s\n",
2384 paddr_nz (addr));
2385 return 1;
2386 }
c906108c
SS
2387
2388 if (mips_exit_debug ())
c5aa993b 2389 mips_error ("Failed to exit debug mode");
c906108c
SS
2390
2391 sprintf (tbuff, "db %02d\r", bpnum);
2392
2393 mips_send_command (tbuff, -1);
2394 /* NOTE: If the breakpoint does not exist then a "Bpt <dd> not
2395 set" message will be returned. */
2396
2397 mips_enter_debug ();
2398
2399 return 0;
2400 }
2401
2402 return target_write_memory (addr, contents_cache, BREAK_INSN_SIZE);
2403}
2404#endif
2405
2406
2407/* Tell whether this target can support a hardware breakpoint. CNT
2408 is the number of hardware breakpoints already installed. This
2409 implements the TARGET_CAN_USE_HARDWARE_WATCHPOINT macro. */
2410
2411int
fba45db2 2412remote_mips_can_use_hardware_watchpoint (int cnt)
c906108c 2413{
c5aa993b 2414 return cnt < MAX_LSI_BREAKPOINTS && strcmp (target_shortname, "lsi") == 0;
c906108c
SS
2415}
2416
2417
2418/* Compute a don't care mask for the region bounding ADDR and ADDR + LEN - 1.
2419 This is used for memory ref breakpoints. */
2420
2421static unsigned long
fba45db2 2422calculate_mask (CORE_ADDR addr, int len)
c906108c
SS
2423{
2424 unsigned long mask;
2425 int i;
2426
2427 mask = addr ^ (addr + len - 1);
2428
2429 for (i = 32; i >= 0; i--)
2430 if (mask == 0)
2431 break;
2432 else
2433 mask >>= 1;
2434
2435 mask = (unsigned long) 0xffffffff >> i;
2436
2437 return mask;
2438}
2439
2440
2441/* Insert a hardware breakpoint. This works only on LSI targets, which
2442 implement ordinary breakpoints using hardware facilities. */
2443
2444int
fba45db2 2445remote_mips_insert_hw_breakpoint (CORE_ADDR addr, char *contents_cache)
c906108c
SS
2446{
2447 if (strcmp (target_shortname, "lsi") == 0)
2448 return mips_insert_breakpoint (addr, contents_cache);
2449 else
2450 return -1;
2451}
2452
2453
2454/* Remove a hardware breakpoint. This works only on LSI targets, which
2455 implement ordinary breakpoints using hardware facilities. */
2456
2457int
fba45db2 2458remote_mips_remove_hw_breakpoint (CORE_ADDR addr, char *contents_cache)
c906108c
SS
2459{
2460 if (strcmp (target_shortname, "lsi") == 0)
2461 return mips_remove_breakpoint (addr, contents_cache);
2462 else
2463 return -1;
2464}
2465
2466/* Set a data watchpoint. ADDR and LEN should be obvious. TYPE is 0
2467 for a write watchpoint, 1 for a read watchpoint, or 2 for a read/write
2468 watchpoint. */
2469
2470int
fba45db2 2471remote_mips_set_watchpoint (CORE_ADDR addr, int len, int type)
c906108c
SS
2472{
2473 if (set_breakpoint (addr, len, type))
2474 return -1;
2475
2476 return 0;
2477}
2478
2479int
fba45db2 2480remote_mips_remove_watchpoint (CORE_ADDR addr, int len, int type)
c906108c
SS
2481{
2482 if (clear_breakpoint (addr, len, type))
2483 return -1;
2484
2485 return 0;
2486}
2487
2488int
d4f3574e 2489remote_mips_stopped_by_watchpoint (void)
c906108c
SS
2490{
2491 return hit_watchpoint;
2492}
2493
2494
2495/* Insert a breakpoint. */
2496
2497static int
fba45db2 2498set_breakpoint (CORE_ADDR addr, int len, enum break_type type)
c906108c
SS
2499{
2500 return common_breakpoint (1, addr, len, type);
2501}
2502
2503
2504/* Clear a breakpoint. */
2505
2506static int
fba45db2 2507clear_breakpoint (CORE_ADDR addr, int len, enum break_type type)
c906108c
SS
2508{
2509 return common_breakpoint (0, addr, len, type);
2510}
2511
2512
2513/* Check the error code from the return packet for an LSI breakpoint
2514 command. If there's no error, just return 0. If it's a warning,
2515 print the warning text and return 0. If it's an error, print
2516 the error text and return 1. <ADDR> is the address of the breakpoint
2517 that was being set. <RERRFLG> is the error code returned by PMON.
2518 This is a helper function for common_breakpoint. */
2519
2520static int
fba45db2 2521check_lsi_error (CORE_ADDR addr, int rerrflg)
c906108c
SS
2522{
2523 struct lsi_error *err;
2524 char *saddr = paddr_nz (addr); /* printable address string */
2525
2526 if (rerrflg == 0) /* no error */
2527 return 0;
2528
2529 /* Warnings can be ORed together, so check them all. */
2530 if (rerrflg & W_WARN)
2531 {
2532 if (monitor_warnings)
2533 {
2534 int found = 0;
2535 for (err = lsi_warning_table; err->code != 0; err++)
2536 {
2537 if ((err->code & rerrflg) == err->code)
2538 {
2539 found = 1;
2540 fprintf_unfiltered (gdb_stderr,
c5aa993b 2541 "common_breakpoint (0x%s): Warning: %s\n",
c906108c
SS
2542 saddr,
2543 err->string);
2544 }
2545 }
2546 if (!found)
2547 fprintf_unfiltered (gdb_stderr,
c5aa993b 2548 "common_breakpoint (0x%s): Unknown warning: 0x%x\n",
c906108c
SS
2549 saddr,
2550 rerrflg);
2551 }
2552 return 0;
2553 }
2554
2555 /* Errors are unique, i.e. can't be ORed together. */
2556 for (err = lsi_error_table; err->code != 0; err++)
2557 {
2558 if ((err->code & rerrflg) == err->code)
2559 {
2560 fprintf_unfiltered (gdb_stderr,
2561 "common_breakpoint (0x%s): Error: %s\n",
2562 saddr,
2563 err->string);
2564 return 1;
2565 }
2566 }
2567 fprintf_unfiltered (gdb_stderr,
2568 "common_breakpoint (0x%s): Unknown error: 0x%x\n",
2569 saddr,
2570 rerrflg);
2571 return 1;
2572}
2573
2574
2575/* This routine sends a breakpoint command to the remote target.
2576
2577 <SET> is 1 if setting a breakpoint, or 0 if clearing a breakpoint.
2578 <ADDR> is the address of the breakpoint.
2579 <LEN> the length of the region to break on.
2580 <TYPE> is the type of breakpoint:
c5aa993b
JM
2581 0 = write (BREAK_WRITE)
2582 1 = read (BREAK_READ)
2583 2 = read/write (BREAK_ACCESS)
2584 3 = instruction fetch (BREAK_FETCH)
c906108c
SS
2585
2586 Return 0 if successful; otherwise 1. */
2587
2588static int
fba45db2 2589common_breakpoint (int set, CORE_ADDR addr, int len, enum break_type type)
c906108c
SS
2590{
2591 char buf[DATA_MAXLEN + 1];
2592 char cmd, rcmd;
2593 int rpid, rerrflg, rresponse, rlen;
2594 int nfields;
2595
2596 addr = ADDR_BITS_REMOVE (addr);
2597
2598 if (mips_monitor == MON_LSI)
2599 {
c5aa993b 2600 if (set == 0) /* clear breakpoint */
c906108c
SS
2601 {
2602 /* The LSI PMON "clear breakpoint" has this form:
c5aa993b
JM
2603 <pid> 'b' <bptn> 0x0
2604 reply:
2605 <pid> 'b' 0x0 <code>
c906108c
SS
2606
2607 <bptn> is a breakpoint number returned by an earlier 'B' command.
2608 Possible return codes: OK, E_BPT. */
2609
2610 int i;
2611
2612 /* Search for the breakpoint in the table. */
2613 for (i = 0; i < MAX_LSI_BREAKPOINTS; i++)
2614 if (lsi_breakpoints[i].type == type
2615 && lsi_breakpoints[i].addr == addr
2616 && lsi_breakpoints[i].len == len)
2617 break;
2618
2619 /* Clear the table entry and tell PMON to clear the breakpoint. */
2620 if (i == MAX_LSI_BREAKPOINTS)
2621 {
2622 warning ("common_breakpoint: Attempt to clear bogus breakpoint at %s\n",
2623 paddr_nz (addr));
2624 return 1;
2625 }
2626
2627 lsi_breakpoints[i].type = BREAK_UNUSED;
2628 sprintf (buf, "0x0 b 0x%x 0x0", i);
2629 mips_send_packet (buf, 1);
2630
2631 rlen = mips_receive_packet (buf, 1, mips_receive_wait);
2632 buf[rlen] = '\0';
2633
2634 nfields = sscanf (buf, "0x%x b 0x0 0x%x", &rpid, &rerrflg);
2635 if (nfields != 2)
2636 mips_error ("common_breakpoint: Bad response from remote board: %s", buf);
2637
2638 return (check_lsi_error (addr, rerrflg));
2639 }
c5aa993b
JM
2640 else
2641 /* set a breakpoint */
c906108c
SS
2642 {
2643 /* The LSI PMON "set breakpoint" command has this form:
c5aa993b
JM
2644 <pid> 'B' <addr> 0x0
2645 reply:
2646 <pid> 'B' <bptn> <code>
c906108c
SS
2647
2648 The "set data breakpoint" command has this form:
2649
c5aa993b 2650 <pid> 'A' <addr1> <type> [<addr2> [<value>]]
c906108c 2651
c5aa993b
JM
2652 where: type= "0x1" = read
2653 "0x2" = write
2654 "0x3" = access (read or write)
c906108c
SS
2655
2656 The reply returns two values:
c5aa993b
JM
2657 bptn - a breakpoint number, which is a small integer with
2658 possible values of zero through 255.
2659 code - an error return code, a value of zero indicates a
2660 succesful completion, other values indicate various
2661 errors and warnings.
2662
c906108c
SS
2663 Possible return codes: OK, W_QAL, E_QAL, E_OUT, E_NON.
2664
c5aa993b 2665 */
c906108c
SS
2666
2667 if (type == BREAK_FETCH) /* instruction breakpoint */
2668 {
2669 cmd = 'B';
2670 sprintf (buf, "0x0 B 0x%s 0x0", paddr_nz (addr));
2671 }
c5aa993b
JM
2672 else
2673 /* watchpoint */
c906108c
SS
2674 {
2675 cmd = 'A';
2676 sprintf (buf, "0x0 A 0x%s 0x%x 0x%s", paddr_nz (addr),
c5aa993b 2677 type == BREAK_READ ? 1 : (type == BREAK_WRITE ? 2 : 3),
c906108c
SS
2678 paddr_nz (addr + len - 1));
2679 }
2680 mips_send_packet (buf, 1);
2681
2682 rlen = mips_receive_packet (buf, 1, mips_receive_wait);
2683 buf[rlen] = '\0';
2684
2685 nfields = sscanf (buf, "0x%x %c 0x%x 0x%x",
2686 &rpid, &rcmd, &rresponse, &rerrflg);
2687 if (nfields != 4 || rcmd != cmd || rresponse > 255)
2688 mips_error ("common_breakpoint: Bad response from remote board: %s", buf);
2689
2690 if (rerrflg != 0)
2691 if (check_lsi_error (addr, rerrflg))
2692 return 1;
2693
2694 /* rresponse contains PMON's breakpoint number. Record the
2695 information for this breakpoint so we can clear it later. */
2696 lsi_breakpoints[rresponse].type = type;
2697 lsi_breakpoints[rresponse].addr = addr;
c5aa993b 2698 lsi_breakpoints[rresponse].len = len;
c906108c
SS
2699
2700 return 0;
2701 }
2702 }
2703 else
2704 {
2705 /* On non-LSI targets, the breakpoint command has this form:
c5aa993b
JM
2706 0x0 <CMD> <ADDR> <MASK> <FLAGS>
2707 <MASK> is a don't care mask for addresses.
2708 <FLAGS> is any combination of `r', `w', or `f' for read/write/fetch.
c906108c
SS
2709 */
2710 unsigned long mask;
2711
2712 mask = calculate_mask (addr, len);
2713 addr &= ~mask;
2714
c5aa993b
JM
2715 if (set) /* set a breakpoint */
2716 {
c906108c
SS
2717 char *flags;
2718 switch (type)
2719 {
c5aa993b 2720 case BREAK_WRITE: /* write */
c906108c
SS
2721 flags = "w";
2722 break;
c5aa993b 2723 case BREAK_READ: /* read */
c906108c
SS
2724 flags = "r";
2725 break;
c5aa993b 2726 case BREAK_ACCESS: /* read/write */
c906108c
SS
2727 flags = "rw";
2728 break;
c5aa993b 2729 case BREAK_FETCH: /* fetch */
c906108c
SS
2730 flags = "f";
2731 break;
2732 default:
e1e9e218 2733 internal_error (__FILE__, __LINE__, "failed internal consistency check");
c906108c
SS
2734 }
2735
2736 cmd = 'B';
2737 sprintf (buf, "0x0 B 0x%s 0x%s %s", paddr_nz (addr),
2738 paddr_nz (mask), flags);
2739 }
2740 else
2741 {
2742 cmd = 'b';
2743 sprintf (buf, "0x0 b 0x%s", paddr_nz (addr));
2744 }
2745
2746 mips_send_packet (buf, 1);
2747
2748 rlen = mips_receive_packet (buf, 1, mips_receive_wait);
2749 buf[rlen] = '\0';
2750
2751 nfields = sscanf (buf, "0x%x %c 0x%x 0x%x",
2752 &rpid, &rcmd, &rerrflg, &rresponse);
2753
2754 if (nfields != 4 || rcmd != cmd)
2755 mips_error ("common_breakpoint: Bad response from remote board: %s",
2756 buf);
2757
2758 if (rerrflg != 0)
2759 {
2760 /* Ddb returns "0x0 b 0x16 0x0\000", whereas
2761 Cogent returns "0x0 b 0xffffffff 0x16\000": */
2762 if (mips_monitor == MON_DDB)
2763 rresponse = rerrflg;
c5aa993b 2764 if (rresponse != 22) /* invalid argument */
c906108c 2765 fprintf_unfiltered (gdb_stderr,
c5aa993b 2766 "common_breakpoint (0x%s): Got error: 0x%x\n",
c906108c
SS
2767 paddr_nz (addr), rresponse);
2768 return 1;
2769 }
2770 }
2771 return 0;
2772}
2773\f
2774static void
fba45db2 2775send_srec (char *srec, int len, CORE_ADDR addr)
c906108c
SS
2776{
2777 while (1)
2778 {
2779 int ch;
2780
2781 SERIAL_WRITE (mips_desc, srec, len);
2782
688991e6 2783 ch = mips_readchar (remote_timeout);
c906108c
SS
2784
2785 switch (ch)
2786 {
2787 case SERIAL_TIMEOUT:
2788 error ("Timeout during download.");
2789 break;
2790 case 0x6: /* ACK */
2791 return;
2792 case 0x15: /* NACK */
d4f3574e 2793 fprintf_unfiltered (gdb_stderr, "Download got a NACK at byte %s! Retrying.\n", paddr_u (addr));
c906108c
SS
2794 continue;
2795 default:
2796 error ("Download got unexpected ack char: 0x%x, retrying.\n", ch);
2797 }
2798 }
2799}
2800
2801/* Download a binary file by converting it to S records. */
2802
2803static void
fba45db2 2804mips_load_srec (char *args)
c906108c
SS
2805{
2806 bfd *abfd;
2807 asection *s;
2808 char *buffer, srec[1024];
2809 unsigned int i;
2810 unsigned int srec_frame = 200;
2811 int reclen;
2812 static int hashmark = 1;
2813
2814 buffer = alloca (srec_frame * 2 + 256);
2815
2816 abfd = bfd_openr (args, 0);
2817 if (!abfd)
2818 {
2819 printf_filtered ("Unable to open file %s\n", args);
2820 return;
2821 }
2822
2823 if (bfd_check_format (abfd, bfd_object) == 0)
2824 {
2825 printf_filtered ("File is not an object file\n");
2826 return;
2827 }
2828
2829/* This actually causes a download in the IDT binary format: */
2830 mips_send_command (LOAD_CMD, 0);
2831
2832 for (s = abfd->sections; s; s = s->next)
2833 {
2834 if (s->flags & SEC_LOAD)
2835 {
2836 unsigned int numbytes;
2837
d4f3574e
SS
2838 /* FIXME! vma too small????? */
2839 printf_filtered ("%s\t: 0x%4lx .. 0x%4lx ", s->name,
2840 (long) s->vma,
2841 (long) (s->vma + s->_raw_size));
c906108c
SS
2842 gdb_flush (gdb_stdout);
2843
2844 for (i = 0; i < s->_raw_size; i += numbytes)
2845 {
2846 numbytes = min (srec_frame, s->_raw_size - i);
2847
2848 bfd_get_section_contents (abfd, s, buffer, i, numbytes);
2849
2850 reclen = mips_make_srec (srec, '3', s->vma + i, buffer, numbytes);
2851 send_srec (srec, reclen, s->vma + i);
2852
2853 if (hashmark)
2854 {
2855 putchar_unfiltered ('#');
2856 gdb_flush (gdb_stdout);
2857 }
2858
c5aa993b
JM
2859 } /* Per-packet (or S-record) loop */
2860
c906108c 2861 putchar_unfiltered ('\n');
c5aa993b 2862 } /* Loadable sections */
c906108c 2863 }
c5aa993b 2864 if (hashmark)
c906108c 2865 putchar_unfiltered ('\n');
c5aa993b 2866
c906108c
SS
2867 /* Write a type 7 terminator record. no data for a type 7, and there
2868 is no data, so len is 0. */
2869
2870 reclen = mips_make_srec (srec, '7', abfd->start_address, NULL, 0);
2871
2872 send_srec (srec, reclen, abfd->start_address);
2873
2874 SERIAL_FLUSH_INPUT (mips_desc);
2875}
2876
2877/*
2878 * mips_make_srec -- make an srecord. This writes each line, one at a
c5aa993b
JM
2879 * time, each with it's own header and trailer line.
2880 * An srecord looks like this:
c906108c
SS
2881 *
2882 * byte count-+ address
2883 * start ---+ | | data +- checksum
c5aa993b
JM
2884 * | | | |
2885 * S01000006F6B692D746573742E73726563E4
2886 * S315000448600000000000000000FC00005900000000E9
2887 * S31A0004000023C1400037DE00F023604000377B009020825000348D
2888 * S30B0004485A0000000000004E
2889 * S70500040000F6
c906108c 2890 *
c5aa993b 2891 * S<type><length><address><data><checksum>
c906108c
SS
2892 *
2893 * Where
2894 * - length
2895 * is the number of bytes following upto the checksum. Note that
2896 * this is not the number of chars following, since it takes two
2897 * chars to represent a byte.
2898 * - type
2899 * is one of:
2900 * 0) header record
2901 * 1) two byte address data record
2902 * 2) three byte address data record
2903 * 3) four byte address data record
2904 * 7) four byte address termination record
2905 * 8) three byte address termination record
2906 * 9) two byte address termination record
2907 *
2908 * - address
2909 * is the start address of the data following, or in the case of
2910 * a termination record, the start address of the image
2911 * - data
2912 * is the data.
2913 * - checksum
c5aa993b 2914 * is the sum of all the raw byte data in the record, from the length
c906108c
SS
2915 * upwards, modulo 256 and subtracted from 255.
2916 *
2917 * This routine returns the length of the S-record.
2918 *
2919 */
2920
2921static int
fba45db2
KB
2922mips_make_srec (char *buf, int type, CORE_ADDR memaddr, unsigned char *myaddr,
2923 int len)
c906108c
SS
2924{
2925 unsigned char checksum;
2926 int i;
2927
2928 /* Create the header for the srec. addr_size is the number of bytes in the address,
2929 and 1 is the number of bytes in the count. */
2930
2931 /* FIXME!! bigger buf required for 64-bit! */
2932 buf[0] = 'S';
2933 buf[1] = type;
2934 buf[2] = len + 4 + 1; /* len + 4 byte address + 1 byte checksum */
2935 /* This assumes S3 style downloads (4byte addresses). There should
2936 probably be a check, or the code changed to make it more
2937 explicit. */
2938 buf[3] = memaddr >> 24;
2939 buf[4] = memaddr >> 16;
2940 buf[5] = memaddr >> 8;
2941 buf[6] = memaddr;
2942 memcpy (&buf[7], myaddr, len);
2943
2944 /* Note that the checksum is calculated on the raw data, not the
2945 hexified data. It includes the length, address and the data
2946 portions of the packet. */
2947 checksum = 0;
2948 buf += 2; /* Point at length byte */
2949 for (i = 0; i < len + 4 + 1; i++)
2950 checksum += *buf++;
2951
2952 *buf = ~checksum;
2953
2954 return len + 8;
2955}
2956
2957/* The following manifest controls whether we enable the simple flow
2958 control support provided by the monitor. If enabled the code will
2959 wait for an affirmative ACK between transmitting packets. */
2960#define DOETXACK (1)
2961
2962/* The PMON fast-download uses an encoded packet format constructed of
2963 3byte data packets (encoded as 4 printable ASCII characters), and
2964 escape sequences (preceded by a '/'):
2965
c5aa993b
JM
2966 'K' clear checksum
2967 'C' compare checksum (12bit value, not included in checksum calculation)
2968 'S' define symbol name (for addr) terminated with "," and padded to 4char boundary
2969 'Z' zero fill multiple of 3bytes
2970 'B' byte (12bit encoded value, of 8bit data)
2971 'A' address (36bit encoded value)
2972 'E' define entry as original address, and exit load
c906108c
SS
2973
2974 The packets are processed in 4 character chunks, so the escape
2975 sequences that do not have any data (or variable length data)
2976 should be padded to a 4 character boundary. The decoder will give
2977 an error if the complete message block size is not a multiple of
2978 4bytes (size of record).
2979
2980 The encoding of numbers is done in 6bit fields. The 6bit value is
2981 used to index into this string to get the specific character
2982 encoding for the value: */
2983static char encoding[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789,.";
2984
2985/* Convert the number of bits required into an encoded number, 6bits
2986 at a time (range 0..63). Keep a checksum if required (passed
2987 pointer non-NULL). The function returns the number of encoded
2988 characters written into the buffer. */
2989static int
fba45db2 2990pmon_makeb64 (unsigned long v, char *p, int n, int *chksum)
c906108c
SS
2991{
2992 int count = (n / 6);
2993
c5aa993b
JM
2994 if ((n % 12) != 0)
2995 {
2996 fprintf_unfiltered (gdb_stderr,
2997 "Fast encoding bitcount must be a multiple of 12bits: %dbit%s\n", n, (n == 1) ? "" : "s");
2998 return (0);
2999 }
3000 if (n > 36)
3001 {
3002 fprintf_unfiltered (gdb_stderr,
3003 "Fast encoding cannot process more than 36bits at the moment: %dbits\n", n);
3004 return (0);
3005 }
c906108c
SS
3006
3007 /* Deal with the checksum: */
c5aa993b
JM
3008 if (chksum != NULL)
3009 {
3010 switch (n)
3011 {
3012 case 36:
3013 *chksum += ((v >> 24) & 0xFFF);
3014 case 24:
3015 *chksum += ((v >> 12) & 0xFFF);
3016 case 12:
3017 *chksum += ((v >> 0) & 0xFFF);
3018 }
c906108c 3019 }
c906108c 3020
c5aa993b
JM
3021 do
3022 {
3023 n -= 6;
3024 *p++ = encoding[(v >> n) & 0x3F];
3025 }
3026 while (n > 0);
c906108c 3027
c5aa993b 3028 return (count);
c906108c
SS
3029}
3030
3031/* Shorthand function (that could be in-lined) to output the zero-fill
3032 escape sequence into the data stream. */
3033static int
fba45db2 3034pmon_zeroset (int recsize, char **buff, int *amount, unsigned int *chksum)
c906108c
SS
3035{
3036 int count;
3037
c5aa993b 3038 sprintf (*buff, "/Z");
c906108c
SS
3039 count = pmon_makeb64 (*amount, (*buff + 2), 12, chksum);
3040 *buff += (count + 2);
3041 *amount = 0;
c5aa993b 3042 return (recsize + count + 2);
c906108c
SS
3043}
3044
3045static int
fba45db2 3046pmon_checkset (int recsize, char **buff, int *value)
c906108c
SS
3047{
3048 int count;
3049
3050 /* Add the checksum (without updating the value): */
3051 sprintf (*buff, "/C");
3052 count = pmon_makeb64 (*value, (*buff + 2), 12, NULL);
3053 *buff += (count + 2);
3054 sprintf (*buff, "\n");
c5aa993b 3055 *buff += 2; /* include zero terminator */
c906108c
SS
3056 /* Forcing a checksum validation clears the sum: */
3057 *value = 0;
c5aa993b 3058 return (recsize + count + 3);
c906108c
SS
3059}
3060
3061/* Amount of padding we leave after at the end of the output buffer,
3062 for the checksum and line termination characters: */
3063#define CHECKSIZE (4 + 4 + 4 + 2)
3064/* zero-fill, checksum, transfer end and line termination space. */
3065
3066/* The amount of binary data loaded from the object file in a single
3067 operation: */
3068#define BINCHUNK (1024)
3069
3070/* Maximum line of data accepted by the monitor: */
3071#define MAXRECSIZE (550)
3072/* NOTE: This constant depends on the monitor being used. This value
3073 is for PMON 5.x on the Cogent Vr4300 board. */
3074
3075static void
fba45db2
KB
3076pmon_make_fastrec (char **outbuf, unsigned char *inbuf, int *inptr,
3077 int inamount, int *recsize, unsigned int *csum,
3078 unsigned int *zerofill)
c906108c
SS
3079{
3080 int count = 0;
3081 char *p = *outbuf;
3082
3083 /* This is a simple check to ensure that our data will fit within
3084 the maximum allowable record size. Each record output is 4bytes
3085 in length. We must allow space for a pending zero fill command,
3086 the record, and a checksum record. */
c5aa993b
JM
3087 while ((*recsize < (MAXRECSIZE - CHECKSIZE)) && ((inamount - *inptr) > 0))
3088 {
3089 /* Process the binary data: */
3090 if ((inamount - *inptr) < 3)
3091 {
3092 if (*zerofill != 0)
3093 *recsize = pmon_zeroset (*recsize, &p, zerofill, csum);
3094 sprintf (p, "/B");
3095 count = pmon_makeb64 (inbuf[*inptr], &p[2], 12, csum);
3096 p += (2 + count);
3097 *recsize += (2 + count);
3098 (*inptr)++;
3099 }
3100 else
3101 {
3102 unsigned int value = ((inbuf[*inptr + 0] << 16) | (inbuf[*inptr + 1] << 8) | inbuf[*inptr + 2]);
3103 /* Simple check for zero data. TODO: A better check would be
3104 to check the last, and then the middle byte for being zero
3105 (if the first byte is not). We could then check for
3106 following runs of zeros, and if above a certain size it is
3107 worth the 4 or 8 character hit of the byte insertions used
3108 to pad to the start of the zeroes. NOTE: This also depends
3109 on the alignment at the end of the zero run. */
3110 if (value == 0x00000000)
3111 {
3112 (*zerofill)++;
3113 if (*zerofill == 0xFFF) /* 12bit counter */
3114 *recsize = pmon_zeroset (*recsize, &p, zerofill, csum);
3115 }
3116 else
3117 {
3118 if (*zerofill != 0)
3119 *recsize = pmon_zeroset (*recsize, &p, zerofill, csum);
3120 count = pmon_makeb64 (value, p, 24, csum);
3121 p += count;
3122 *recsize += count;
3123 }
3124 *inptr += 3;
3125 }
c906108c 3126 }
c906108c
SS
3127
3128 *outbuf = p;
3129 return;
3130}
3131
3132static int
fba45db2 3133pmon_check_ack (char *mesg)
c906108c
SS
3134{
3135#if defined(DOETXACK)
3136 int c;
3137
3138 if (!tftp_in_use)
3139 {
688991e6
AC
3140 c = SERIAL_READCHAR (udp_in_use ? udp_desc : mips_desc,
3141 remote_timeout);
c906108c
SS
3142 if ((c == SERIAL_TIMEOUT) || (c != 0x06))
3143 {
3144 fprintf_unfiltered (gdb_stderr,
3145 "Failed to receive valid ACK for %s\n", mesg);
c5aa993b 3146 return (-1); /* terminate the download */
c906108c
SS
3147 }
3148 }
3149#endif /* DOETXACK */
c5aa993b 3150 return (0);
c906108c
SS
3151}
3152
3153/* pmon_download - Send a sequence of characters to the PMON download port,
3154 which is either a serial port or a UDP socket. */
3155
3156static void
fba45db2 3157pmon_start_download (void)
c906108c
SS
3158{
3159 if (tftp_in_use)
3160 {
3161 /* Create the temporary download file. */
3162 if ((tftp_file = fopen (tftp_localname, "w")) == NULL)
3163 perror_with_name (tftp_localname);
3164 }
3165 else
3166 {
3167 mips_send_command (udp_in_use ? LOAD_CMD_UDP : LOAD_CMD, 0);
3168 mips_expect ("Downloading from ");
3169 mips_expect (udp_in_use ? "udp" : "tty0");
3170 mips_expect (", ^C to abort\r\n");
3171 }
3172}
3173
3174static int
3175mips_expect_download (char *string)
3176{
3177 if (!mips_expect (string))
3178 {
3179 fprintf_unfiltered (gdb_stderr, "Load did not complete successfully.\n");
3180 if (tftp_in_use)
3181 remove (tftp_localname); /* Remove temporary file */
3182 return 0;
3183 }
3184 else
3185 return 1;
3186}
3187
688991e6
AC
3188static void
3189pmon_check_entry_address (char *entry_address, int final)
3190{
3191 char hexnumber[9]; /* includes '\0' space */
3192 mips_expect_timeout (entry_address, tftp_in_use ? 15 : remote_timeout);
3193 sprintf (hexnumber, "%x", final);
3194 mips_expect (hexnumber);
3195 mips_expect ("\r\n");
3196}
3197
3198static int
3199pmon_check_total (int bintotal)
3200{
3201 char hexnumber[9]; /* includes '\0' space */
3202 mips_expect ("\r\ntotal = 0x");
3203 sprintf (hexnumber, "%x", bintotal);
3204 mips_expect (hexnumber);
3205 return mips_expect_download (" bytes\r\n");
3206}
3207
c906108c 3208static void
fba45db2 3209pmon_end_download (int final, int bintotal)
c906108c 3210{
c5aa993b 3211 char hexnumber[9]; /* includes '\0' space */
c906108c
SS
3212
3213 if (tftp_in_use)
3214 {
3215 static char *load_cmd_prefix = "load -b -s ";
3216 char *cmd;
3217 struct stat stbuf;
3218
3219 /* Close off the temporary file containing the load data. */
3220 fclose (tftp_file);
3221 tftp_file = NULL;
3222
3223 /* Make the temporary file readable by the world. */
3224 if (stat (tftp_localname, &stbuf) == 0)
3225 chmod (tftp_localname, stbuf.st_mode | S_IROTH);
3226
3227 /* Must reinitialize the board to prevent PMON from crashing. */
3228 mips_send_command ("initEther\r", -1);
3229
3230 /* Send the load command. */
3231 cmd = xmalloc (strlen (load_cmd_prefix) + strlen (tftp_name) + 2);
3232 strcpy (cmd, load_cmd_prefix);
3233 strcat (cmd, tftp_name);
3234 strcat (cmd, "\r");
3235 mips_send_command (cmd, 0);
b8c9b27d 3236 xfree (cmd);
c906108c
SS
3237 if (!mips_expect_download ("Downloading from "))
3238 return;
3239 if (!mips_expect_download (tftp_name))
3240 return;
3241 if (!mips_expect_download (", ^C to abort\r\n"))
3242 return;
3243 }
3244
3245 /* Wait for the stuff that PMON prints after the load has completed.
3246 The timeout value for use in the tftp case (15 seconds) was picked
3247 arbitrarily but might be too small for really large downloads. FIXME. */
688991e6 3248 switch (mips_monitor)
c906108c 3249 {
688991e6
AC
3250 case MON_LSI:
3251 pmon_check_ack ("termination");
3252 pmon_check_entry_address ("Entry address is ", final);
3253 if (!pmon_check_total (bintotal))
3254 return;
3255 break;
3256 default:
3257 pmon_check_entry_address ("Entry Address = ", final);
c906108c 3258 pmon_check_ack ("termination");
688991e6
AC
3259 if (!pmon_check_total (bintotal))
3260 return;
3261 break;
c906108c 3262 }
c906108c
SS
3263
3264 if (tftp_in_use)
3265 remove (tftp_localname); /* Remove temporary file */
3266}
3267
3268static void
fba45db2 3269pmon_download (char *buffer, int length)
c906108c
SS
3270{
3271 if (tftp_in_use)
3272 fwrite (buffer, 1, length, tftp_file);
3273 else
3274 SERIAL_WRITE (udp_in_use ? udp_desc : mips_desc, buffer, length);
3275}
3276
3277static void
fba45db2 3278pmon_load_fast (char *file)
c906108c
SS
3279{
3280 bfd *abfd;
3281 asection *s;
3282 unsigned char *binbuf;
3283 char *buffer;
3284 int reclen;
3285 unsigned int csum = 0;
3286 int hashmark = !tftp_in_use;
3287 int bintotal = 0;
3288 int final = 0;
3289 int finished = 0;
3290
c5aa993b
JM
3291 buffer = (char *) xmalloc (MAXRECSIZE + 1);
3292 binbuf = (unsigned char *) xmalloc (BINCHUNK);
c906108c 3293
c5aa993b 3294 abfd = bfd_openr (file, 0);
c906108c 3295 if (!abfd)
c5aa993b
JM
3296 {
3297 printf_filtered ("Unable to open file %s\n", file);
3298 return;
3299 }
c906108c 3300
c5aa993b
JM
3301 if (bfd_check_format (abfd, bfd_object) == 0)
3302 {
3303 printf_filtered ("File is not an object file\n");
3304 return;
3305 }
c906108c
SS
3306
3307 /* Setup the required download state: */
3308 mips_send_command ("set dlproto etxack\r", -1);
3309 mips_send_command ("set dlecho off\r", -1);
3310 /* NOTE: We get a "cannot set variable" message if the variable is
3311 already defined to have the argument we give. The code doesn't
3312 care, since it just scans to the next prompt anyway. */
3313 /* Start the download: */
c5aa993b
JM
3314 pmon_start_download ();
3315
c906108c 3316 /* Zero the checksum */
c5aa993b
JM
3317 sprintf (buffer, "/Kxx\n");
3318 reclen = strlen (buffer);
c906108c 3319 pmon_download (buffer, reclen);
c5aa993b 3320 finished = pmon_check_ack ("/Kxx");
c906108c
SS
3321
3322 for (s = abfd->sections; s && !finished; s = s->next)
c5aa993b
JM
3323 if (s->flags & SEC_LOAD) /* only deal with loadable sections */
3324 {
3325 bintotal += s->_raw_size;
3326 final = (s->vma + s->_raw_size);
3327
3328 printf_filtered ("%s\t: 0x%4x .. 0x%4x ", s->name, (unsigned int) s->vma,
3329 (unsigned int) (s->vma + s->_raw_size));
3330 gdb_flush (gdb_stdout);
3331
3332 /* Output the starting address */
3333 sprintf (buffer, "/A");
3334 reclen = pmon_makeb64 (s->vma, &buffer[2], 36, &csum);
3335 buffer[2 + reclen] = '\n';
3336 buffer[3 + reclen] = '\0';
3337 reclen += 3; /* for the initial escape code and carriage return */
3338 pmon_download (buffer, reclen);
3339 finished = pmon_check_ack ("/A");
3340
3341 if (!finished)
3342 {
3343 unsigned int binamount;
3344 unsigned int zerofill = 0;
3345 char *bp = buffer;
3346 unsigned int i;
3347
3348 reclen = 0;
3349
3350 for (i = 0; ((i < s->_raw_size) && !finished); i += binamount)
3351 {
3352 int binptr = 0;
3353
3354 binamount = min (BINCHUNK, s->_raw_size - i);
3355
3356 bfd_get_section_contents (abfd, s, binbuf, i, binamount);
3357
3358 /* This keeps a rolling checksum, until we decide to output
3359 the line: */
3360 for (; ((binamount - binptr) > 0);)
3361 {
3362 pmon_make_fastrec (&bp, binbuf, &binptr, binamount, &reclen, &csum, &zerofill);
3363 if (reclen >= (MAXRECSIZE - CHECKSIZE))
3364 {
3365 reclen = pmon_checkset (reclen, &bp, &csum);
3366 pmon_download (buffer, reclen);
3367 finished = pmon_check_ack ("data record");
3368 if (finished)
3369 {
3370 zerofill = 0; /* do not transmit pending zerofills */
3371 break;
3372 }
3373
3374 if (hashmark)
3375 {
3376 putchar_unfiltered ('#');
3377 gdb_flush (gdb_stdout);
3378 }
3379
3380 bp = buffer;
3381 reclen = 0; /* buffer processed */
3382 }
3383 }
3384 }
3385
3386 /* Ensure no out-standing zerofill requests: */
3387 if (zerofill != 0)
3388 reclen = pmon_zeroset (reclen, &bp, &zerofill, &csum);
3389
3390 /* and then flush the line: */
3391 if (reclen > 0)
3392 {
3393 reclen = pmon_checkset (reclen, &bp, &csum);
3394 /* Currently pmon_checkset outputs the line terminator by
3395 default, so we write out the buffer so far: */
3396 pmon_download (buffer, reclen);
3397 finished = pmon_check_ack ("record remnant");
3398 }
3399 }
3400
3401 putchar_unfiltered ('\n');
3402 }
c906108c
SS
3403
3404 /* Terminate the transfer. We know that we have an empty output
3405 buffer at this point. */
c5aa993b 3406 sprintf (buffer, "/E/E\n"); /* include dummy padding characters */
c906108c
SS
3407 reclen = strlen (buffer);
3408 pmon_download (buffer, reclen);
3409
c5aa993b
JM
3410 if (finished)
3411 { /* Ignore the termination message: */
3412 SERIAL_FLUSH_INPUT (udp_in_use ? udp_desc : mips_desc);
3413 }
3414 else
3415 { /* Deal with termination message: */
3416 pmon_end_download (final, bintotal);
3417 }
c906108c
SS
3418
3419 return;
3420}
3421
3422/* mips_load -- download a file. */
3423
3424static void
fba45db2 3425mips_load (char *file, int from_tty)
c906108c
SS
3426{
3427 /* Get the board out of remote debugging mode. */
3428 if (mips_exit_debug ())
3429 error ("mips_load: Couldn't get into monitor mode.");
3430
3431 if (mips_monitor != MON_IDT)
c5aa993b 3432 pmon_load_fast (file);
c906108c 3433 else
c5aa993b 3434 mips_load_srec (file);
c906108c
SS
3435
3436 mips_initialize ();
3437
3438 /* Finally, make the PC point at the start address */
3439 if (mips_monitor != MON_IDT)
3440 {
3441 /* Work around problem where PMON monitor updates the PC after a load
c5aa993b
JM
3442 to a different value than GDB thinks it has. The following ensures
3443 that the write_pc() WILL update the PC value: */
c906108c
SS
3444 register_valid[PC_REGNUM] = 0;
3445 }
3446 if (exec_bfd)
3447 write_pc (bfd_get_start_address (exec_bfd));
3448
3449 inferior_pid = 0; /* No process now */
3450
3451/* This is necessary because many things were based on the PC at the time that
3452 we attached to the monitor, which is no longer valid now that we have loaded
3453 new code (and just changed the PC). Another way to do this might be to call
3454 normal_stop, except that the stack may not be valid, and things would get
3455 horribly confused... */
3456
3457 clear_symtab_users ();
3458}
3459
3460
3461/* Pass the command argument as a packet to PMON verbatim. */
3462
3463static void
fba45db2 3464pmon_command (char *args, int from_tty)
c906108c
SS
3465{
3466 char buf[DATA_MAXLEN + 1];
3467 int rlen;
3468
3469 sprintf (buf, "0x0 %s", args);
3470 mips_send_packet (buf, 1);
3471 printf_filtered ("Send packet: %s\n", buf);
3472
3473 rlen = mips_receive_packet (buf, 1, mips_receive_wait);
3474 buf[rlen] = '\0';
3475 printf_filtered ("Received packet: %s\n", buf);
3476}
3477\f
3478void
fba45db2 3479_initialize_remote_mips (void)
c906108c
SS
3480{
3481 /* Initialize the fields in mips_ops that are common to all four targets. */
3482 mips_ops.to_longname = "Remote MIPS debugging over serial line";
3483 mips_ops.to_close = mips_close;
3484 mips_ops.to_detach = mips_detach;
3485 mips_ops.to_resume = mips_resume;
3486 mips_ops.to_fetch_registers = mips_fetch_registers;
3487 mips_ops.to_store_registers = mips_store_registers;
3488 mips_ops.to_prepare_to_store = mips_prepare_to_store;
3489 mips_ops.to_xfer_memory = mips_xfer_memory;
3490 mips_ops.to_files_info = mips_files_info;
3491 mips_ops.to_insert_breakpoint = mips_insert_breakpoint;
3492 mips_ops.to_remove_breakpoint = mips_remove_breakpoint;
3493 mips_ops.to_kill = mips_kill;
3494 mips_ops.to_load = mips_load;
3495 mips_ops.to_create_inferior = mips_create_inferior;
3496 mips_ops.to_mourn_inferior = mips_mourn_inferior;
3497 mips_ops.to_stratum = process_stratum;
3498 mips_ops.to_has_all_memory = 1;
3499 mips_ops.to_has_memory = 1;
3500 mips_ops.to_has_stack = 1;
3501 mips_ops.to_has_registers = 1;
3502 mips_ops.to_has_execution = 1;
3503 mips_ops.to_magic = OPS_MAGIC;
3504
3505 /* Copy the common fields to all four target vectors. */
3506 pmon_ops = ddb_ops = lsi_ops = mips_ops;
3507
3508 /* Initialize target-specific fields in the target vectors. */
3509 mips_ops.to_shortname = "mips";
3510 mips_ops.to_doc = "\
3511Debug a board using the MIPS remote debugging protocol over a serial line.\n\
3512The argument is the device it is connected to or, if it contains a colon,\n\
3513HOST:PORT to access a board over a network";
3514 mips_ops.to_open = mips_open;
3515 mips_ops.to_wait = mips_wait;
3516
3517 pmon_ops.to_shortname = "pmon";
c5aa993b 3518 pmon_ops.to_doc = "\
c906108c
SS
3519Debug a board using the PMON MIPS remote debugging protocol over a serial\n\
3520line. The argument is the device it is connected to or, if it contains a\n\
3521colon, HOST:PORT to access a board over a network";
3522 pmon_ops.to_open = pmon_open;
3523 pmon_ops.to_wait = mips_wait;
3524
3525 ddb_ops.to_shortname = "ddb";
3526 ddb_ops.to_doc = "\
3527Debug a board using the PMON MIPS remote debugging protocol over a serial\n\
3528line. The first argument is the device it is connected to or, if it contains\n\
3529a colon, HOST:PORT to access a board over a network. The optional second\n\
3530parameter is the temporary file in the form HOST:FILENAME to be used for\n\
3531TFTP downloads to the board. The optional third parameter is the local name\n\
3532of the TFTP temporary file, if it differs from the filename seen by the board.";
3533 ddb_ops.to_open = ddb_open;
3534 ddb_ops.to_wait = mips_wait;
3535
3536 lsi_ops.to_shortname = "lsi";
3537 lsi_ops.to_doc = pmon_ops.to_doc;
3538 lsi_ops.to_open = lsi_open;
3539 lsi_ops.to_wait = mips_wait;
3540
3541 /* Add the targets. */
3542 add_target (&mips_ops);
3543 add_target (&pmon_ops);
3544 add_target (&ddb_ops);
3545 add_target (&lsi_ops);
3546
3547 add_show_from_set (
c5aa993b
JM
3548 add_set_cmd ("timeout", no_class, var_zinteger,
3549 (char *) &mips_receive_wait,
3550 "Set timeout in seconds for remote MIPS serial I/O.",
3551 &setlist),
3552 &showlist);
c906108c
SS
3553
3554 add_show_from_set (
c5aa993b
JM
3555 add_set_cmd ("retransmit-timeout", no_class, var_zinteger,
3556 (char *) &mips_retransmit_wait,
3557 "Set retransmit timeout in seconds for remote MIPS serial I/O.\n\
c906108c
SS
3558This is the number of seconds to wait for an acknowledgement to a packet\n\
3559before resending the packet.", &setlist),
c5aa993b 3560 &showlist);
c906108c
SS
3561
3562 add_show_from_set (
c5aa993b
JM
3563 add_set_cmd ("syn-garbage-limit", no_class, var_zinteger,
3564 (char *) &mips_syn_garbage,
3565 "Set the maximum number of characters to ignore when scanning for a SYN.\n\
c906108c
SS
3566This is the maximum number of characters GDB will ignore when trying to\n\
3567synchronize with the remote system. A value of -1 means that there is no limit\n\
3568(Note that these characters are printed out even though they are ignored.)",
c5aa993b
JM
3569 &setlist),
3570 &showlist);
c906108c
SS
3571
3572 add_show_from_set
3573 (add_set_cmd ("monitor-prompt", class_obscure, var_string,
3574 (char *) &mips_monitor_prompt,
3575 "Set the prompt that GDB expects from the monitor.",
3576 &setlist),
3577 &showlist);
3578
3579 add_show_from_set (
c5aa993b
JM
3580 add_set_cmd ("monitor-warnings", class_obscure, var_zinteger,
3581 (char *) &monitor_warnings,
3582 "Set printing of monitor warnings.\n"
3583 "When enabled, monitor warnings about hardware breakpoints "
3584 "will be displayed.",
3585 &setlist),
3586 &showlist);
c906108c
SS
3587
3588 add_com ("pmon <command>", class_obscure, pmon_command,
c5aa993b 3589 "Send a packet to PMON (must be in debug mode).");
4014092b
AC
3590
3591 add_show_from_set (add_set_cmd ("mask-address", no_class,
3592 var_boolean, &mask_address_p,
3593 "Set zeroing of upper 32 bits of 64-bit addresses when talking to PMON targets.\n\
3594Use \"on\" to enable the masking and \"off\" to disable it.\n",
3595 &setlist),
3596 &showlist);
c906108c 3597}
This page took 0.293736 seconds and 4 git commands to generate.