* breakpoint.c (breakpoint_thread_match break_command_1):
[deliverable/binutils-gdb.git] / gdb / remote-udi.c
1 /* Remote debugging interface for AMD 29k interfaced via UDI, for GDB.
2 Copyright 1990, 1992 Free Software Foundation, Inc.
3 Written by Daniel Mann. Contributed by AMD.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
20
21 /* This is like remote.c but uses the Universal Debug Interface (UDI) to
22 talk to the target hardware (or simulator). UDI is a TCP/IP based
23 protocol; for hardware that doesn't run TCP, an interface adapter
24 daemon talks UDI on one side, and talks to the hardware (typically
25 over a serial port) on the other side.
26
27 - Originally written by Daniel Mann at AMD for MiniMON and gdb 3.91.6.
28 - David Wood (wood@lab.ultra.nyu.edu) at New York University adapted this
29 file to gdb 3.95. I was unable to get this working on sun3os4
30 with termio, only with sgtty.
31 - Daniel Mann at AMD took the 3.95 adaptions above and replaced
32 MiniMON interface with UDI-p interface. */
33
34 #include "defs.h"
35 #include "inferior.h"
36 #include "wait.h"
37 #include "value.h"
38 #include <ctype.h>
39 #include <fcntl.h>
40 #include <signal.h>
41 #include <errno.h>
42 #include <string.h>
43 #include "terminal.h"
44 #include "target.h"
45 #include "29k-share/udi/udiproc.h"
46 #include "gdbcmd.h"
47 #include "bfd.h"
48 #include "gdbcore.h" /* For download function */
49
50 /* access the register store directly, without going through
51 the normal handler functions. This avoids an extra data copy. */
52
53 static int kiodebug;
54 extern int stop_soon_quietly; /* for wait_for_inferior */
55 extern struct value *call_function_by_hand();
56 static void udi_resume PARAMS ((int pid, int step, int sig));
57 static void udi_fetch_registers PARAMS ((int regno));
58 static void udi_load PARAMS ((char *args, int from_tty));
59 static void fetch_register PARAMS ((int regno));
60 static void udi_store_registers PARAMS ((int regno));
61 static int store_register PARAMS ((int regno));
62 static int regnum_to_srnum PARAMS ((int regno));
63 static void udi_close PARAMS ((int quitting));
64 static CPUSpace udi_memory_space PARAMS ((CORE_ADDR addr));
65 static int udi_write_inferior_memory PARAMS ((CORE_ADDR memaddr, char *myaddr,
66 int len));
67 static int udi_read_inferior_memory PARAMS ((CORE_ADDR memaddr, char *myaddr,
68 int len));
69 static void download PARAMS ((char *load_arg_string, int from_tty));
70 char CoffFileName[100] = "";
71
72 #define FREEZE_MODE (read_register(CPS_REGNUM) & 0x400)
73 #define USE_SHADOW_PC ((processor_type == a29k_freeze_mode) && FREEZE_MODE)
74
75 /* FIXME: Replace with `set remotedebug'. Also, seems not to be used. */
76 #define LLOG_FILE "udi.log"
77 #if defined (LOG_FILE)
78 FILE *log_file;
79 #endif
80
81 static int timeout = 5;
82 extern struct target_ops udi_ops; /* Forward declaration */
83
84 /* Special register enumeration.
85 */
86
87 /******************************************************************* UDI DATA*/
88 #define MAXDATA 2*1024 /* max UDI[read/write] byte size */
89 /* Descriptor for I/O to remote machine. Initialize it to -1 so that
90 udi_open knows that we don't have a file open when the program
91 starts. */
92
93 UDISessionId udi_session_id = -1;
94
95 CPUOffset IMemStart = 0;
96 CPUSizeT IMemSize = 0;
97 CPUOffset DMemStart = 0;
98 CPUSizeT DMemSize = 0;
99 CPUOffset RMemStart = 0;
100 CPUSizeT RMemSize = 0;
101 UDIUInt32 CPUPRL;
102 UDIUInt32 CoProcPRL;
103
104 UDIMemoryRange address_ranges[2]; /* Text and data */
105 UDIResource entry = {0, 0}; /* Entry point */
106 CPUSizeT stack_sizes[2]; /* Regular and memory stacks */
107
108 #define SBUF_MAX 1024 /* maximum size of string handling buffer */
109 char sbuf[SBUF_MAX];
110
111 typedef struct bkpt_entry_str
112 {
113 UDIResource Addr;
114 UDIUInt32 PassCount;
115 UDIBreakType Type;
116 unsigned int BreakId;
117 } bkpt_entry_t;
118 #define BKPT_TABLE_SIZE 40
119 static bkpt_entry_t bkpt_table[BKPT_TABLE_SIZE];
120 extern char dfe_errmsg[]; /* error string */
121
122 /* malloc'd name of the program on the remote system. */
123 static char *prog_name = NULL;
124
125 /* Number of SIGTRAPs we need to simulate. That is, the next
126 NEED_ARTIFICIAL_TRAP calls to udi_wait should just return
127 SIGTRAP without actually waiting for anything. */
128
129 /* This is called not only when we first attach, but also when the
130 user types "run" after having attached. */
131
132 static void
133 udi_create_inferior (execfile, args, env)
134 char *execfile;
135 char *args;
136 char **env;
137 {
138 char *args1;
139
140 if (execfile)
141 {
142 if (prog_name != NULL)
143 free (prog_name);
144 prog_name = savestring (execfile, strlen (execfile));
145 }
146 else if (entry.Offset)
147 execfile = "";
148 else
149 error ("No image loaded into target.");
150
151 if (udi_session_id < 0)
152 {
153 printf("UDI connection not open yet.\n");
154 return;
155 }
156
157 inferior_pid = 40000;
158
159 if (!entry.Offset)
160 download(execfile, 0);
161
162 args1 = alloca (strlen(execfile) + strlen(args) + 2);
163
164 strcpy (args1, execfile);
165 strcat (args1, " ");
166 strcat (args1, args);
167
168 UDIInitializeProcess (address_ranges, /* ProcessMemory[] */
169 (UDIInt)2, /* NumberOfRanges */
170 entry, /* EntryPoint */
171 stack_sizes, /* *StackSizes */
172 (UDIInt)2, /* NumberOfStacks */
173 args1); /* ArgString */
174
175 init_wait_for_inferior ();
176 clear_proceed_status ();
177 proceed(-1,-1,0);
178 }
179
180 static void
181 udi_mourn()
182 {
183 #if 0
184 /* Requiring "target udi" each time you run is a major pain. I suspect
185 this was just blindy copied from remote.c, in which "target" and
186 "run" are combined. Having a udi target without an inferior seems
187 to work between "target udi" and "run", so why not now? */
188 pop_target (); /* Pop back to no-child state */
189 #endif
190 generic_mourn_inferior ();
191 }
192
193 /******************************************************************** UDI_OPEN
194 ** Open a connection to remote TIP.
195 NAME is the socket domain used for communication with the TIP,
196 then a space and the socket name or TIP-host name.
197 '<udi_udi_config_id>' for example.
198 */
199
200 /* XXX - need cleanups for udiconnect for various failures!!! */
201
202 static char *udi_config_id;
203 static void
204 udi_open (name, from_tty)
205 char *name;
206 int from_tty;
207 {
208 unsigned int prl;
209 char *p;
210 int cnt;
211 UDIMemoryRange KnownMemory[10];
212 UDIUInt32 ChipVersions[10];
213 UDIInt NumberOfRanges = 10;
214 UDIInt NumberOfChips = 10;
215 UDIPId PId;
216 UDIUInt32 TIPId, TargetId, DFEId, DFE, TIP, DFEIPCId, TIPIPCId;
217
218 target_preopen(from_tty);
219
220 entry.Offset = 0;
221
222 for (cnt = 0; cnt < BKPT_TABLE_SIZE; cnt++)
223 bkpt_table[cnt].Type = 0;
224
225 if (udi_config_id)
226 free (udi_config_id);
227
228 if (!name)
229 error("Usage: target udi config_id, where config_id appears in udi_soc file");
230
231 udi_config_id = strdup (strtok (name, " \t"));
232
233 if (UDIConnect (udi_config_id, &udi_session_id))
234 error("UDIConnect() failed: %s\n", dfe_errmsg);
235
236 push_target (&udi_ops);
237
238 #if defined (LOG_FILE)
239 log_file = fopen (LOG_FILE, "w");
240 if (log_file == NULL)
241 error ("udi_open: fopen(%s) %s", LOG_FILE, safe_strerror(errno));
242 #endif
243 /*
244 ** Initialize target configuration structure (global)
245 */
246 if (UDIGetTargetConfig (KnownMemory, &NumberOfRanges,
247 ChipVersions, &NumberOfChips))
248 error ("UDIGetTargetConfig() failed");
249 if (NumberOfChips > 2)
250 fprintf(stderr,"Target has more than one processor\n");
251 for (cnt=0; cnt < NumberOfRanges; cnt++)
252 {
253 switch(KnownMemory[cnt].Space)
254 {
255 default:
256 fprintf(stderr, "UDIGetTargetConfig() unknown memory space\n");
257 break;
258 case UDI29KCP_S:
259 break;
260 case UDI29KIROMSpace:
261 RMemStart = KnownMemory[cnt].Offset;
262 RMemSize = KnownMemory[cnt].Size;
263 break;
264 case UDI29KIRAMSpace:
265 IMemStart = KnownMemory[cnt].Offset;
266 IMemSize = KnownMemory[cnt].Size;
267 break;
268 case UDI29KDRAMSpace:
269 DMemStart = KnownMemory[cnt].Offset;
270 DMemSize = KnownMemory[cnt].Size;
271 break;
272 }
273 }
274
275 a29k_get_processor_type ();
276
277 if (UDICreateProcess (&PId))
278 fprintf(stderr, "UDICreateProcess() failed\n");
279
280 /* Print out some stuff, letting the user now what's going on */
281 if (UDICapabilities (&TIPId, &TargetId, DFEId, DFE, &TIP, &DFEIPCId,
282 &TIPIPCId, sbuf))
283 error ("UDICapabilities() failed");
284 if (from_tty)
285 {
286 printf_filtered ("Connected via UDI socket,\n\
287 DFE-IPC version %x.%x.%x TIP-IPC version %x.%x.%x TIP version %x.%x.%x\n %s\n",
288 (DFEIPCId>>8)&0xf, (DFEIPCId>>4)&0xf, DFEIPCId&0xf,
289 (TIPIPCId>>8)&0xf, (TIPIPCId>>4)&0xf, TIPIPCId&0xf,
290 (TargetId>>8)&0xf, (TargetId>>4)&0xf, TargetId&0xf,
291 sbuf);
292 }
293 }
294
295 /******************************************************************* UDI_CLOSE
296 Close the open connection to the TIP process.
297 Use this when you want to detach and do something else
298 with your gdb. */
299 static void
300 udi_close (quitting) /*FIXME: how is quitting used */
301 int quitting;
302 {
303 if (udi_session_id < 0)
304 return;
305
306 /* We should never get here if there isn't something valid in
307 udi_session_id. */
308
309 if (UDIDisconnect (udi_session_id, UDITerminateSession))
310 error ("UDIDisconnect() failed in udi_close");
311
312 /* Do not try to close udi_session_id again, later in the program. */
313 udi_session_id = -1;
314 inferior_pid = 0;
315
316 #if defined (LOG_FILE)
317 if (ferror (log_file))
318 printf ("Error writing log file.\n");
319 if (fclose (log_file) != 0)
320 printf ("Error closing log file.\n");
321 #endif
322
323 printf_filtered (" Ending remote debugging\n");
324 }
325
326 /**************************************************************** UDI_ATACH */
327 /* Attach to a program that is already loaded and running
328 * Upon exiting the process's execution is stopped.
329 */
330 static void
331 udi_attach (args, from_tty)
332 char *args;
333 int from_tty;
334 {
335 UDIResource From;
336 UDIInt32 PC_adds;
337 UDICount Count = 1;
338 UDISizeT Size = 4;
339 UDICount CountDone;
340 UDIBool HostEndian = 0;
341 UDIError err;
342
343 if (udi_session_id < 0)
344 error ("UDI connection not opened yet, use the 'target udi' command.\n");
345
346 if (from_tty)
347 printf ("Attaching to remote program %s...\n", prog_name);
348
349 UDIStop();
350 From.Space = UDI29KSpecialRegs;
351 From.Offset = 11;
352 if (err = UDIRead(From, &PC_adds, Count, Size, &CountDone, HostEndian))
353 error ("UDIRead failed in udi_attach");
354 printf ("Remote process is now halted, pc1 = 0x%x.\n", PC_adds);
355 }
356 /************************************************************* UDI_DETACH */
357 /* Terminate the open connection to the TIP process.
358 Use this when you want to detach and do something else
359 with your gdb. Leave remote process running (with no breakpoints set). */
360 static void
361 udi_detach (args,from_tty)
362 char *args;
363 int from_tty;
364 {
365
366 remove_breakpoints(); /* Just in case there were any left in */
367
368 if (UDIDisconnect (udi_session_id, UDIContinueSession))
369 error ("UDIDisconnect() failed in udi_detach");
370
371 pop_target(); /* calls udi_close to do the real work */
372
373 if (from_tty)
374 printf ("Ending remote debugging\n");
375 }
376
377
378 /****************************************************************** UDI_RESUME
379 ** Tell the remote machine to resume. */
380
381 static void
382 udi_resume (pid, step, sig)
383 int pid, step, sig;
384 {
385 UDIError tip_error;
386 UDIUInt32 Steps = 1;
387 UDIStepType StepType = UDIStepNatural;
388 UDIRange Range;
389
390 if (step) /* step 1 instruction */
391 {
392 tip_error = UDIStep (Steps, StepType, Range);
393 if (!tip_error)
394 return;
395
396 fprintf (stderr, "UDIStep() error = %d\n", tip_error);
397 error ("failed in udi_resume");
398 }
399
400 if (UDIExecute())
401 error ("UDIExecute() failed in udi_resume");
402 }
403
404 /******************************************************************** UDI_WAIT
405 ** Wait until the remote machine stops, then return,
406 storing status in STATUS just as `wait' would. */
407
408 static int
409 udi_wait (pid, status)
410 int pid;
411 WAITTYPE *status;
412 {
413 UDIInt32 MaxTime;
414 UDIPId PId;
415 UDIInt32 StopReason;
416 UDISizeT CountDone;
417 int old_timeout = timeout;
418 int old_immediate_quit = immediate_quit;
419 int i;
420
421 WSETEXIT ((*status), 0);
422
423 /* wait for message to arrive. It should be:
424 If the target stops executing, udi_wait() should return.
425 */
426 timeout = 0; /* Wait indefinetly for a message */
427 immediate_quit = 1; /* Helps ability to QUIT */
428
429 while(1)
430 {
431 i = 0;
432 MaxTime = UDIWaitForever;
433 UDIWait(MaxTime, &PId, &StopReason);
434 QUIT; /* Let user quit if they want */
435
436 switch (StopReason & UDIGrossState)
437 {
438 case UDIStdoutReady:
439 if (UDIGetStdout (sbuf, (UDISizeT)SBUF_MAX, &CountDone))
440 /* This is said to happen if the program tries to output
441 a whole bunch of output (more than SBUF_MAX, I would
442 guess). It doesn't seem to happen with the simulator. */
443 warning ("UDIGetStdout() failed in udi_wait");
444 fwrite (sbuf, 1, CountDone, stdout);
445 fflush(stdout);
446 continue;
447 case UDIStderrReady:
448 UDIGetStderr (sbuf, (UDISizeT)SBUF_MAX, &CountDone);
449 fwrite (sbuf, 1, CountDone, stderr);
450 fflush(stderr);
451 continue;
452
453 case UDIStdinNeeded:
454 {
455 int ch;
456 i = 0;
457 do
458 {
459 ch = getchar ();
460 if (ch == EOF)
461 break;
462 sbuf[i++] = ch;
463 } while (i < SBUF_MAX && ch != '\n');
464 UDIPutStdin (sbuf, (UDISizeT)i, &CountDone);
465 continue;
466 }
467
468 case UDIRunning:
469 /* In spite of the fact that we told UDIWait to wait forever, it will
470 return spuriously sometimes. */
471 case UDIStdinModeX:
472 continue;
473 default:
474 break;
475 }
476 break;
477 }
478
479 switch (StopReason & UDIGrossState)
480 {
481 case UDITrapped:
482 printf("Am290*0 received vector number %d\n", StopReason >> 24);
483
484 switch (StopReason >> 8)
485 {
486 case 0: /* Illegal opcode */
487 printf(" (break point)\n");
488 WSETSTOP ((*status), SIGTRAP);
489 break;
490 case 1: /* Unaligned Access */
491 WSETSTOP ((*status), SIGBUS);
492 break;
493 case 3:
494 case 4:
495 WSETSTOP ((*status), SIGFPE);
496 break;
497 case 5: /* Protection Violation */
498 WSETSTOP ((*status), SIGILL);
499 break;
500 case 6:
501 case 7:
502 case 8: /* User Instruction Mapping Miss */
503 case 9: /* User Data Mapping Miss */
504 case 10: /* Supervisor Instruction Mapping Miss */
505 case 11: /* Supervisor Data Mapping Miss */
506 WSETSTOP ((*status), SIGSEGV);
507 break;
508 case 12:
509 case 13:
510 WSETSTOP ((*status), SIGILL);
511 break;
512 case 14: /* Timer */
513 WSETSTOP ((*status), SIGALRM);
514 break;
515 case 15: /* Trace */
516 WSETSTOP ((*status), SIGTRAP);
517 break;
518 case 16: /* INTR0 */
519 case 17: /* INTR1 */
520 case 18: /* INTR2 */
521 case 19: /* INTR3/Internal */
522 case 20: /* TRAP0 */
523 case 21: /* TRAP1 */
524 WSETSTOP ((*status), SIGINT);
525 break;
526 case 22: /* Floating-Point Exception */
527 WSETSTOP ((*status), SIGILL);
528 break;
529 case 77: /* assert 77 */
530 WSETSTOP ((*status), SIGTRAP);
531 break;
532 default:
533 WSETEXIT ((*status), 0);
534 }
535 break;
536 case UDINotExecuting:
537 WSETSTOP ((*status), SIGTERM);
538 break;
539 case UDIStopped:
540 WSETSTOP ((*status), SIGTSTP);
541 break;
542 case UDIWarned:
543 WSETSTOP ((*status), SIGURG);
544 break;
545 case UDIStepped:
546 case UDIBreak:
547 WSETSTOP ((*status), SIGTRAP);
548 break;
549 case UDIWaiting:
550 WSETSTOP ((*status), SIGSTOP);
551 break;
552 case UDIHalted:
553 WSETSTOP ((*status), SIGKILL);
554 break;
555 case UDIExited:
556 default:
557 WSETEXIT ((*status), 0);
558 }
559
560 timeout = old_timeout; /* Restore original timeout value */
561 immediate_quit = old_immediate_quit;
562 return inferior_pid;
563 }
564
565 /********************************************************** UDI_FETCH_REGISTERS
566 * Read a remote register 'regno'.
567 * If regno==-1 then read all the registers.
568 */
569 static void
570 udi_fetch_registers (regno)
571 int regno;
572 {
573 UDIResource From;
574 UDIUInt32 *To;
575 UDICount Count;
576 UDISizeT Size = 4;
577 UDICount CountDone;
578 UDIBool HostEndian = 0;
579 UDIError err;
580 int i;
581
582 if (regno >= 0) {
583 fetch_register(regno);
584 return;
585 }
586
587 /* Gr1/rsp */
588
589 From.Space = UDI29KGlobalRegs;
590 From.Offset = 1;
591 To = (UDIUInt32 *)&registers[4 * GR1_REGNUM];
592 Count = 1;
593 if (err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
594 error("UDIRead() failed in udi_fetch_registers");
595
596 register_valid[GR1_REGNUM] = 1;
597
598 #if defined(GR64_REGNUM) /* Read gr64-127 */
599
600 /* Global Registers gr64-gr95 */
601
602 From.Space = UDI29KGlobalRegs;
603 From.Offset = 64;
604 To = (UDIUInt32 *)&registers[4 * GR64_REGNUM];
605 Count = 32;
606 if (err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
607 error("UDIRead() failed in udi_fetch_registers");
608
609 for (i = GR64_REGNUM; i < GR64_REGNUM + 32; i++)
610 register_valid[i] = 1;
611
612 #endif /* GR64_REGNUM */
613
614 /* Global Registers gr96-gr127 */
615
616 From.Space = UDI29KGlobalRegs;
617 From.Offset = 96;
618 To = (UDIUInt32 *)&registers[4 * GR96_REGNUM];
619 Count = 32;
620 if (err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
621 error("UDIRead() failed in udi_fetch_registers");
622
623 for (i = GR96_REGNUM; i < GR96_REGNUM + 32; i++)
624 register_valid[i] = 1;
625
626 /* Local Registers */
627
628 From.Space = UDI29KLocalRegs;
629 From.Offset = 0;
630 To = (UDIUInt32 *)&registers[4 * LR0_REGNUM];
631 Count = 128;
632 if (err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
633 error("UDIRead() failed in udi_fetch_registers");
634
635 for (i = LR0_REGNUM; i < LR0_REGNUM + 128; i++)
636 register_valid[i] = 1;
637
638 /* Protected Special Registers */
639
640 From.Space = UDI29KSpecialRegs;
641 From.Offset = 0;
642 To = (UDIUInt32 *)&registers[4 * SR_REGNUM(0)];
643 Count = 15;
644 if (err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
645 error("UDIRead() failed in udi_fetch_registers");
646
647 for (i = SR_REGNUM(0); i < SR_REGNUM(0) + 15; i++)
648 register_valid[i] = 1;
649
650 if (USE_SHADOW_PC) { /* Let regno_to_srnum() handle the register number */
651 fetch_register(NPC_REGNUM);
652 fetch_register(PC_REGNUM);
653 fetch_register(PC2_REGNUM);
654
655 /* Unprotected Special Registers sr128-sr135 */
656
657 From.Space = UDI29KSpecialRegs;
658 From.Offset = 128;
659 To = (UDIUInt32 *)&registers[4 * SR_REGNUM(128)];
660 Count = 135-128 + 1;
661 if (err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
662 error("UDIRead() failed in udi_fetch_registers");
663
664 for (i = SR_REGNUM(128); i < SR_REGNUM(128) + 135-128+1; i++)
665 register_valid[i] = 1;
666 }
667
668 if (kiodebug)
669 {
670 printf("Fetching all registers\n");
671 printf("Fetching PC0 = 0x%x, PC1 = 0x%x, PC2 = 0x%x\n",
672 read_register(NPC_REGNUM), read_register(PC_REGNUM),
673 read_register(PC2_REGNUM));
674 }
675
676 /* There doesn't seem to be any way to get these. */
677 {
678 int val = -1;
679 supply_register (FPE_REGNUM, (char *) &val);
680 supply_register (INTE_REGNUM, (char *) &val);
681 supply_register (FPS_REGNUM, (char *) &val);
682 supply_register (EXO_REGNUM, (char *) &val);
683 }
684 }
685
686
687 /********************************************************* UDI_STORE_REGISTERS
688 ** Store register regno into the target.
689 * If regno==-1 then store all the registers.
690 */
691
692 static void
693 udi_store_registers (regno)
694 int regno;
695 {
696 UDIUInt32 *From;
697 UDIResource To;
698 UDICount Count;
699 UDISizeT Size = 4;
700 UDICount CountDone;
701 UDIBool HostEndian = 0;
702
703 if (regno >= 0)
704 {
705 store_register(regno);
706 return;
707 }
708
709 if (kiodebug)
710 {
711 printf("Storing all registers\n");
712 printf("PC0 = 0x%x, PC1 = 0x%x, PC2 = 0x%x\n", read_register(NPC_REGNUM),
713 read_register(PC_REGNUM), read_register(PC2_REGNUM));
714 }
715
716 /* Gr1/rsp */
717
718 From = (UDIUInt32 *)&registers[4 * GR1_REGNUM];
719 To.Space = UDI29KGlobalRegs;
720 To.Offset = 1;
721 Count = 1;
722 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
723 error("UDIWrite() failed in udi_store_regisetrs");
724
725 #if defined(GR64_REGNUM)
726
727 /* Global registers gr64-gr95 */
728
729 From = (UDIUInt32 *)&registers[4 * GR64_REGNUM];
730 To.Space = UDI29KGlobalRegs;
731 To.Offset = 64;
732 Count = 32;
733 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
734 error("UDIWrite() failed in udi_store_regisetrs");
735
736 #endif /* GR64_REGNUM */
737
738 /* Global registers gr96-gr127 */
739
740 From = (UDIUInt32 *)&registers[4 * GR96_REGNUM];
741 To.Space = UDI29KGlobalRegs;
742 To.Offset = 96;
743 Count = 32;
744 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
745 error("UDIWrite() failed in udi_store_regisetrs");
746
747 /* Local Registers */
748
749 From = (UDIUInt32 *)&registers[4 * LR0_REGNUM];
750 To.Space = UDI29KLocalRegs;
751 To.Offset = 0;
752 Count = 128;
753 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
754 error("UDIWrite() failed in udi_store_regisetrs");
755
756
757 /* Protected Special Registers */ /* VAB through TMR */
758
759 From = (UDIUInt32 *)&registers[4 * SR_REGNUM(0)];
760 To.Space = UDI29KSpecialRegs;
761 To.Offset = 0;
762 Count = 10;
763 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
764 error("UDIWrite() failed in udi_store_regisetrs");
765
766 /* PC0, PC1, PC2 possibly as shadow registers */
767
768 From = (UDIUInt32 *)&registers[4 * SR_REGNUM(10)];
769 To.Space = UDI29KSpecialRegs;
770 Count = 3;
771 if (USE_SHADOW_PC)
772 To.Offset = 20; /* SPC0 */
773 else
774 To.Offset = 10; /* PC0 */
775 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
776 error("UDIWrite() failed in udi_store_regisetrs");
777
778 /* LRU and MMU */
779
780 From = (UDIUInt32 *)&registers[4 * SR_REGNUM(13)];
781 To.Space = UDI29KSpecialRegs;
782 To.Offset = 13;
783 Count = 2;
784 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
785 error("UDIWrite() failed in udi_store_regisetrs");
786
787 /* Unprotected Special Registers */
788
789 From = (UDIUInt32 *)&registers[4 * SR_REGNUM(128)];
790 To.Space = UDI29KSpecialRegs;
791 To.Offset = 128;
792 Count = 135-128 +1;
793 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
794 error("UDIWrite() failed in udi_store_regisetrs");
795
796 registers_changed ();
797 }
798
799 /****************************************************** UDI_PREPARE_TO_STORE */
800 /* Get ready to modify the registers array. On machines which store
801 individual registers, this doesn't need to do anything. On machines
802 which store all the registers in one fell swoop, this makes sure
803 that registers contains all the registers from the program being
804 debugged. */
805
806 static void
807 udi_prepare_to_store ()
808 {
809 /* Do nothing, since we can store individual regs */
810 }
811
812 /********************************************************** TRANSLATE_ADDR */
813 static CORE_ADDR
814 translate_addr(addr)
815 CORE_ADDR addr;
816 {
817 #if defined(ULTRA3) && defined(KERNEL_DEBUGGING)
818 /* Check for a virtual address in the kernel */
819 /* Assume physical address of ublock is in paddr_u register */
820 /* FIXME: doesn't work for user virtual addresses */
821 if (addr >= UVADDR) {
822 /* PADDR_U register holds the physical address of the ublock */
823 CORE_ADDR i = (CORE_ADDR)read_register(PADDR_U_REGNUM);
824 return(i + addr - (CORE_ADDR)UVADDR);
825 } else {
826 return(addr);
827 }
828 #else
829 return(addr);
830 #endif
831 }
832 /************************************************* UDI_XFER_INFERIOR_MEMORY */
833 /* FIXME! Merge these two. */
834 static int
835 udi_xfer_inferior_memory (memaddr, myaddr, len, write)
836 CORE_ADDR memaddr;
837 char *myaddr;
838 int len;
839 int write;
840 {
841
842 memaddr = translate_addr(memaddr);
843
844 if (write)
845 return udi_write_inferior_memory (memaddr, myaddr, len);
846 else
847 return udi_read_inferior_memory (memaddr, myaddr, len);
848 }
849
850 /********************************************************** UDI_FILES_INFO */
851 static void
852 udi_files_info ()
853 {
854 printf ("\tAttached to UDI socket to %s and running program %s.\n",
855 udi_config_id, prog_name);
856 }
857
858 /**************************************************** UDI_INSERT_BREAKPOINT */
859 static int
860 udi_insert_breakpoint (addr, contents_cache)
861 CORE_ADDR addr;
862 char *contents_cache;
863 {
864 int cnt;
865 UDIError err;
866
867 for (cnt = 0; cnt < BKPT_TABLE_SIZE; cnt++)
868 if (bkpt_table[cnt].Type == 0) /* Find first free slot */
869 break;
870
871 if(cnt >= BKPT_TABLE_SIZE)
872 error("Too many breakpoints set");
873
874 bkpt_table[cnt].Addr.Offset = addr;
875 bkpt_table[cnt].Addr.Space = UDI29KIRAMSpace;
876 bkpt_table[cnt].PassCount = 1;
877 bkpt_table[cnt].Type = UDIBreakFlagExecute;
878
879 err = UDISetBreakpoint(bkpt_table[cnt].Addr,
880 bkpt_table[cnt].PassCount,
881 bkpt_table[cnt].Type,
882 &bkpt_table[cnt].BreakId);
883
884 if (err == 0) return 0; /* Success */
885
886 bkpt_table[cnt].Type = 0;
887 error("UDISetBreakpoint returned error code %d\n", err);
888 }
889
890 /**************************************************** UDI_REMOVE_BREAKPOINT */
891 static int
892 udi_remove_breakpoint (addr, contents_cache)
893 CORE_ADDR addr;
894 char *contents_cache;
895 {
896 int cnt;
897 UDIError err;
898
899 for (cnt = 0; cnt < BKPT_TABLE_SIZE; cnt++)
900 if (bkpt_table[cnt].Addr.Offset == addr) /* Find matching breakpoint */
901 break;
902
903 if(cnt >= BKPT_TABLE_SIZE)
904 error("Can't find breakpoint in table");
905
906 bkpt_table[cnt].Type = 0;
907
908 err = UDIClearBreakpoint(bkpt_table[cnt].BreakId);
909 if (err == 0) return 0; /* Success */
910
911 error("UDIClearBreakpoint returned error code %d\n", err);
912 }
913
914 static void
915 udi_kill(arg,from_tty)
916 char *arg;
917 int from_tty;
918 {
919
920 #if 0
921 /*
922 UDIStop does not really work as advertised. It causes the TIP to close it's
923 connection, which usually results in GDB dying with a SIGPIPE. For now, we
924 just invoke udi_close, which seems to get things right.
925 */
926 UDIStop();
927
928 udi_session_id = -1;
929 inferior_pid = 0;
930
931 if (from_tty)
932 printf("Target has been stopped.");
933 #else
934 udi_close(0);
935 #endif
936 pop_target();
937 }
938
939 /*
940 Load a program into the target. Args are: `program {options}'. The options
941 are used to control loading of the program, and are NOT passed onto the
942 loaded code as arguments. (You need to use the `run' command to do that.)
943
944 The options are:
945 -ms %d Set mem stack size to %d
946 -rs %d Set regular stack size to %d
947 -i send init info (default)
948 -noi don't send init info
949 -[tT] Load Text section
950 -[dD] Load Data section
951 -[bB] Load BSS section
952 -[lL] Load Lit section
953 */
954
955 static void
956 download(load_arg_string, from_tty)
957 char *load_arg_string;
958 int from_tty;
959 {
960 #define DEFAULT_MEM_STACK_SIZE 0x6000
961 #define DEFAULT_REG_STACK_SIZE 0x2000
962
963 char *token;
964 char *filename;
965 asection *section;
966 bfd *pbfd;
967 UDIError err;
968 int load_text = 1, load_data = 1, load_bss = 1, load_lit = 1;
969
970 address_ranges[0].Space = UDI29KIRAMSpace;
971 address_ranges[0].Offset = 0xffffffff;
972 address_ranges[0].Size = 0;
973
974 address_ranges[1].Space = UDI29KDRAMSpace;
975 address_ranges[1].Offset = 0xffffffff;
976 address_ranges[1].Size = 0;
977
978 stack_sizes[0] = DEFAULT_REG_STACK_SIZE;
979 stack_sizes[1] = DEFAULT_MEM_STACK_SIZE;
980
981 dont_repeat ();
982
983 filename = strtok(load_arg_string, " \t");
984 if (!filename)
985 error ("Must specify at least a file name with the load command");
986
987 filename = tilde_expand (filename);
988 make_cleanup (free, filename);
989
990 while (token = strtok (NULL, " \t"))
991 {
992 if (token[0] == '-')
993 {
994 token++;
995
996 if (STREQ (token, "ms"))
997 stack_sizes[1] = atol (strtok (NULL, " \t"));
998 else if (STREQ (token, "rs"))
999 stack_sizes[0] = atol (strtok (NULL, " \t"));
1000 else
1001 {
1002 load_text = load_data = load_bss = load_lit = 0;
1003
1004 while (*token)
1005 {
1006 switch (*token++)
1007 {
1008 case 't':
1009 case 'T':
1010 load_text = 1;
1011 break;
1012 case 'd':
1013 case 'D':
1014 load_data = 1;
1015 break;
1016 case 'b':
1017 case 'B':
1018 load_bss = 1;
1019 break;
1020 case 'l':
1021 case 'L':
1022 load_lit = 1;
1023 break;
1024 default:
1025 error ("Unknown UDI load option -%s", token-1);
1026 }
1027 }
1028 }
1029 }
1030 }
1031
1032 pbfd = bfd_openr (filename, gnutarget);
1033
1034 if (!pbfd)
1035 perror_with_name (filename);
1036
1037 make_cleanup (bfd_close, pbfd);
1038
1039 QUIT;
1040 immediate_quit++;
1041
1042 if (!bfd_check_format (pbfd, bfd_object))
1043 error ("It doesn't seem to be an object file");
1044
1045 for (section = pbfd->sections; section; section = section->next)
1046 {
1047 if (bfd_get_section_flags (pbfd, section) & SEC_ALLOC)
1048 {
1049 UDIResource To;
1050 UDICount Count;
1051 unsigned long section_size, section_end;
1052 const char *section_name;
1053
1054 section_name = bfd_get_section_name (pbfd, section);
1055 if (STREQ (section_name, ".text") && !load_text)
1056 continue;
1057 else if (STREQ (section_name, ".data") && !load_data)
1058 continue;
1059 else if (STREQ (section_name, ".bss") && !load_bss)
1060 continue;
1061 else if (STREQ (section_name, ".lit") && !load_lit)
1062 continue;
1063
1064 To.Offset = bfd_get_section_vma (pbfd, section);
1065 section_size = bfd_section_size (pbfd, section);
1066 section_end = To.Offset + section_size;
1067
1068 if (section_size == 0)
1069 /* This is needed at least in the BSS case, where the code
1070 below starts writing before it even checks the size. */
1071 continue;
1072
1073 printf("[Loading section %s at %x (%d bytes)]\n",
1074 section_name,
1075 To.Offset,
1076 section_size);
1077
1078 if (bfd_get_section_flags (pbfd, section) & SEC_CODE)
1079 {
1080 To.Space = UDI29KIRAMSpace;
1081
1082 address_ranges[0].Offset = min (address_ranges[0].Offset,
1083 To.Offset);
1084 address_ranges[0].Size = max (address_ranges[0].Size,
1085 section_end
1086 - address_ranges[0].Offset);
1087 }
1088 else
1089 {
1090 To.Space = UDI29KDRAMSpace;
1091
1092 address_ranges[1].Offset = min (address_ranges[1].Offset,
1093 To.Offset);
1094 address_ranges[1].Size = max (address_ranges[1].Size,
1095 section_end
1096 - address_ranges[1].Offset);
1097 }
1098
1099 if (bfd_get_section_flags (pbfd, section) & SEC_LOAD) /* Text, data or lit */
1100 {
1101 file_ptr fptr;
1102
1103 fptr = 0;
1104
1105 while (section_size > 0)
1106 {
1107 char buffer[1024];
1108
1109 Count = min (section_size, 1024);
1110
1111 bfd_get_section_contents (pbfd, section, buffer, fptr,
1112 Count);
1113
1114 err = UDIWrite ((UDIHostMemPtr)buffer, /* From */
1115 To, /* To */
1116 Count, /* Count */
1117 (UDISizeT)1, /* Size */
1118 &Count, /* CountDone */
1119 (UDIBool)0); /* HostEndian */
1120 if (err)
1121 error ("UDIWrite failed, error = %d", err);
1122
1123 To.Offset += Count;
1124 fptr += Count;
1125 section_size -= Count;
1126 }
1127 }
1128 else /* BSS */
1129 {
1130 UDIResource From;
1131 unsigned long zero = 0;
1132
1133 /* Write a zero byte at the vma */
1134 /* FIXME: Broken for sections of 1-3 bytes (we test for
1135 zero above). */
1136 err = UDIWrite ((UDIHostMemPtr)&zero, /* From */
1137 To, /* To */
1138 (UDICount)1, /* Count */
1139 (UDISizeT)4, /* Size */
1140 &Count, /* CountDone */
1141 (UDIBool)0); /* HostEndian */
1142 if (err)
1143 error ("UDIWrite failed, error = %d", err);
1144
1145 From = To;
1146 To.Offset+=4;
1147
1148 /* Now, duplicate it for the length of the BSS */
1149 err = UDICopy (From, /* From */
1150 To, /* To */
1151 (UDICount)(section_size/4 - 1), /* Count */
1152 (UDISizeT)4, /* Size */
1153 &Count, /* CountDone */
1154 (UDIBool)1); /* Direction */
1155 if (err)
1156 {
1157 char message[100];
1158 int xerr;
1159
1160 xerr = UDIGetErrorMsg(err, 100, message, &Count);
1161 if (!xerr)
1162 fprintf (stderr, "Error is %s\n", message);
1163 else
1164 fprintf (stderr, "xerr is %d\n", xerr);
1165 error ("UDICopy failed, error = %d", err);
1166 }
1167 }
1168
1169 }
1170 }
1171
1172 entry.Space = UDI29KIRAMSpace;
1173 entry.Offset = bfd_get_start_address (pbfd);
1174
1175 immediate_quit--;
1176 }
1177
1178 /* User interface to download an image into the remote target. See download()
1179 * for details on args.
1180 */
1181
1182 static void
1183 udi_load(args, from_tty)
1184 char *args;
1185 int from_tty;
1186 {
1187 download (args, from_tty);
1188
1189 symbol_file_add (strtok (args, " \t"), from_tty, 0, 0, 0, 0);
1190 }
1191
1192 /*************************************************** UDI_WRITE_INFERIOR_MEMORY
1193 ** Copy LEN bytes of data from debugger memory at MYADDR
1194 to inferior's memory at MEMADDR. Returns number of bytes written. */
1195 static int
1196 udi_write_inferior_memory (memaddr, myaddr, len)
1197 CORE_ADDR memaddr;
1198 char *myaddr;
1199 int len;
1200 {
1201 int nwritten = 0;
1202 UDIUInt32 *From;
1203 UDIResource To;
1204 UDICount Count;
1205 UDISizeT Size = 1;
1206 UDICount CountDone = 0;
1207 UDIBool HostEndian = 0;
1208
1209 To.Space = udi_memory_space(memaddr);
1210 From = (UDIUInt32*)myaddr;
1211
1212 while (nwritten < len)
1213 { Count = len - nwritten;
1214 if (Count > MAXDATA) Count = MAXDATA;
1215 To.Offset = memaddr + nwritten;
1216 if(UDIWrite(From, To, Count, Size, &CountDone, HostEndian))
1217 { error("UDIWrite() failed in udi_write_inferrior_memory");
1218 break;
1219 }
1220 else
1221 { nwritten += CountDone;
1222 From += CountDone;
1223 }
1224 }
1225 return(nwritten);
1226 }
1227
1228 /**************************************************** UDI_READ_INFERIOR_MEMORY
1229 ** Read LEN bytes from inferior memory at MEMADDR. Put the result
1230 at debugger address MYADDR. Returns number of bytes read. */
1231 static int
1232 udi_read_inferior_memory(memaddr, myaddr, len)
1233 CORE_ADDR memaddr;
1234 char *myaddr;
1235 int len;
1236 {
1237 int nread = 0;
1238 UDIResource From;
1239 UDIUInt32 *To;
1240 UDICount Count;
1241 UDISizeT Size = 1;
1242 UDICount CountDone = 0;
1243 UDIBool HostEndian = 0;
1244 UDIError err;
1245
1246 From.Space = udi_memory_space(memaddr);
1247 To = (UDIUInt32*)myaddr;
1248
1249 while (nread < len)
1250 { Count = len - nread;
1251 if (Count > MAXDATA) Count = MAXDATA;
1252 From.Offset = memaddr + nread;
1253 if(err = UDIRead(From, To, Count, Size, &CountDone, HostEndian))
1254 { error("UDIRead() failed in udi_read_inferrior_memory");
1255 break;
1256 }
1257 else
1258 { nread += CountDone;
1259 To += CountDone;
1260 }
1261 }
1262 return(nread);
1263 }
1264
1265 /********************************************************************* WARNING
1266 */
1267 udi_warning(num)
1268 int num;
1269 {
1270 error ("ERROR while loading program into remote TIP: $d\n", num);
1271 }
1272
1273
1274 /*****************************************************************************/
1275 /* Fetch a single register indicatated by 'regno'.
1276 * Returns 0/-1 on success/failure.
1277 */
1278 static void
1279 fetch_register (regno)
1280 int regno;
1281 {
1282 UDIResource From;
1283 UDIUInt32 To;
1284 UDICount Count = 1;
1285 UDISizeT Size = 4;
1286 UDICount CountDone;
1287 UDIBool HostEndian = 0;
1288 UDIError err;
1289 int result;
1290
1291 if (regno == GR1_REGNUM)
1292 {
1293 From.Space = UDI29KGlobalRegs;
1294 From.Offset = 1;
1295 }
1296 else if (regno >= GR96_REGNUM && regno < GR96_REGNUM + 32)
1297 {
1298 From.Space = UDI29KGlobalRegs;
1299 From.Offset = (regno - GR96_REGNUM) + 96;;
1300 }
1301
1302 #if defined(GR64_REGNUM)
1303
1304 else if (regno >= GR64_REGNUM && regno < GR64_REGNUM + 32 )
1305 {
1306 From.Space = UDI29KGlobalRegs;
1307 From.Offset = (regno - GR64_REGNUM) + 64;
1308 }
1309
1310 #endif /* GR64_REGNUM */
1311
1312 else if (regno >= LR0_REGNUM && regno < LR0_REGNUM + 128)
1313 {
1314 From.Space = UDI29KLocalRegs;
1315 From.Offset = (regno - LR0_REGNUM);
1316 }
1317 else if (regno>=FPE_REGNUM && regno<=EXO_REGNUM)
1318 {
1319 int val = -1;
1320 supply_register(160 + (regno - FPE_REGNUM),(char *) &val);
1321 return; /* Pretend Success */
1322 }
1323 else
1324 {
1325 From.Space = UDI29KSpecialRegs;
1326 From.Offset = regnum_to_srnum(regno);
1327 }
1328
1329 if (err = UDIRead(From, &To, Count, Size, &CountDone, HostEndian))
1330 error("UDIRead() failed in udi_fetch_registers");
1331
1332 supply_register(regno, (char *) &To);
1333
1334 if (kiodebug)
1335 printf("Fetching register %s = 0x%x\n", reg_names[regno], To);
1336 }
1337 /*****************************************************************************/
1338 /* Store a single register indicated by 'regno'.
1339 * Returns 0/-1 on success/failure.
1340 */
1341 static int
1342 store_register (regno)
1343 int regno;
1344 {
1345 int result;
1346 UDIUInt32 From;
1347 UDIResource To;
1348 UDICount Count = 1;
1349 UDISizeT Size = 4;
1350 UDICount CountDone;
1351 UDIBool HostEndian = 0;
1352
1353 From = read_register (regno); /* get data value */
1354
1355 if (kiodebug)
1356 printf("Storing register %s = 0x%x\n", reg_names[regno], From);
1357
1358 if (regno == GR1_REGNUM)
1359 { To.Space = UDI29KGlobalRegs;
1360 To.Offset = 1;
1361 result = UDIWrite(&From, To, Count, Size, &CountDone, HostEndian);
1362 /* Setting GR1 changes the numbers of all the locals, so invalidate the
1363 * register cache. Do this *after* calling read_register, because we want
1364 * read_register to return the value that write_register has just stuffed
1365 * into the registers array, not the value of the register fetched from
1366 * the inferior.
1367 */
1368 registers_changed ();
1369 }
1370 #if defined(GR64_REGNUM)
1371 else if (regno >= GR64_REGNUM && regno < GR64_REGNUM + 32 )
1372 { To.Space = UDI29KGlobalRegs;
1373 To.Offset = (regno - GR64_REGNUM) + 64;
1374 result = UDIWrite(&From, To, Count, Size, &CountDone, HostEndian);
1375 }
1376 #endif /* GR64_REGNUM */
1377 else if (regno >= GR96_REGNUM && regno < GR96_REGNUM + 32)
1378 { To.Space = UDI29KGlobalRegs;
1379 To.Offset = (regno - GR96_REGNUM) + 96;
1380 result = UDIWrite(&From, To, Count, Size, &CountDone, HostEndian);
1381 }
1382 else if (regno >= LR0_REGNUM && regno < LR0_REGNUM + 128)
1383 { To.Space = UDI29KLocalRegs;
1384 To.Offset = (regno - LR0_REGNUM);
1385 result = UDIWrite(&From, To, Count, Size, &CountDone, HostEndian);
1386 }
1387 else if (regno>=FPE_REGNUM && regno<=EXO_REGNUM)
1388 {
1389 return 0; /* Pretend Success */
1390 }
1391 else /* An unprotected or protected special register */
1392 { To.Space = UDI29KSpecialRegs;
1393 To.Offset = regnum_to_srnum(regno);
1394 result = UDIWrite(&From, To, Count, Size, &CountDone, HostEndian);
1395 }
1396
1397 if(result)
1398 { result = -1;
1399 error("UDIWrite() failed in store_registers");
1400 }
1401 return result;
1402 }
1403 /********************************************************** REGNUM_TO_SRNUM */
1404 /*
1405 * Convert a gdb special register number to a 29000 special register number.
1406 */
1407 static int
1408 regnum_to_srnum(regno)
1409 int regno;
1410 {
1411 switch(regno) {
1412 case VAB_REGNUM: return(0);
1413 case OPS_REGNUM: return(1);
1414 case CPS_REGNUM: return(2);
1415 case CFG_REGNUM: return(3);
1416 case CHA_REGNUM: return(4);
1417 case CHD_REGNUM: return(5);
1418 case CHC_REGNUM: return(6);
1419 case RBP_REGNUM: return(7);
1420 case TMC_REGNUM: return(8);
1421 case TMR_REGNUM: return(9);
1422 case NPC_REGNUM: return(USE_SHADOW_PC ? (20) : (10));
1423 case PC_REGNUM: return(USE_SHADOW_PC ? (21) : (11));
1424 case PC2_REGNUM: return(USE_SHADOW_PC ? (22) : (12));
1425 case MMU_REGNUM: return(13);
1426 case LRU_REGNUM: return(14);
1427 case IPC_REGNUM: return(128);
1428 case IPA_REGNUM: return(129);
1429 case IPB_REGNUM: return(130);
1430 case Q_REGNUM: return(131);
1431 case ALU_REGNUM: return(132);
1432 case BP_REGNUM: return(133);
1433 case FC_REGNUM: return(134);
1434 case CR_REGNUM: return(135);
1435 case FPE_REGNUM: return(160);
1436 case INTE_REGNUM: return(161);
1437 case FPS_REGNUM: return(162);
1438 case EXO_REGNUM:return(164);
1439 default:
1440 return(255); /* Failure ? */
1441 }
1442 }
1443 /****************************************************************************/
1444 /*
1445 * Determine the Target memory space qualifier based on the addr.
1446 * FIXME: Can't distinguis I_ROM/D_ROM.
1447 * FIXME: Doesn't know anything about I_CACHE/D_CACHE.
1448 */
1449 static CPUSpace
1450 udi_memory_space(addr)
1451 CORE_ADDR addr;
1452 {
1453 UDIUInt32 tstart = IMemStart;
1454 UDIUInt32 tend = tstart + IMemSize;
1455 UDIUInt32 dstart = DMemStart;
1456 UDIUInt32 dend = tstart + DMemSize;
1457 UDIUInt32 rstart = RMemStart;
1458 UDIUInt32 rend = tstart + RMemSize;
1459
1460 if (((UDIUInt32)addr >= tstart) && ((UDIUInt32)addr < tend)) {
1461 return UDI29KIRAMSpace;
1462 } else if (((UDIUInt32)addr >= dstart) && ((UDIUInt32)addr < dend)) {
1463 return UDI29KDRAMSpace;
1464 } else if (((UDIUInt32)addr >= rstart) && ((UDIUInt32)addr < rend)) {
1465 /* FIXME: how do we determine between D_ROM and I_ROM */
1466 return UDI29KIROMSpace;
1467 } else /* FIXME: what do me do now? */
1468 return UDI29KDRAMSpace; /* Hmmm! */
1469 }
1470 /*********************************************************************** STUBS
1471 */
1472
1473 void convert16() {;}
1474 void convert32() {;}
1475 FILE* EchoFile = 0; /* used for debugging */
1476 int QuietMode = 0; /* used for debugging */
1477 \f
1478 /* Target_ops vector. Not static because there does not seem to be
1479 any portable way to do a forward declaration of a static variable.
1480 The RS/6000 doesn't like "extern" followed by "static"; SunOS
1481 /bin/cc doesn't like "static" twice. */
1482
1483 struct target_ops udi_ops = {
1484 "udi",
1485 "Remote UDI connected TIP",
1486 "Remote debug an AMD 29k using UDI socket connection to TIP process.\n\
1487 Arguments are\n\
1488 `configuration-id AF_INET hostname port-number'\n\
1489 To connect via the network, where hostname and port-number specify the\n\
1490 host and port where you can connect via UDI.\n\
1491 configuration-id is unused.\n\
1492 \n\
1493 `configuration-id AF_UNIX socket-name tip-program'\n\
1494 To connect using a local connection to the \"tip.exe\" program which is\n\
1495 supplied by AMD. If socket-name specifies an AF_UNIX socket then the\n\
1496 tip program must already be started; connect to it using that socket.\n\
1497 If not, start up tip-program, which should be the name of the tip\n\
1498 program. If appropriate, the PATH environment variable is searched.\n\
1499 configuration-id is unused.\n\
1500 \n\
1501 `configuration-id'\n\
1502 Look up the configuration in ./udi_soc or /etc/udi_soc, which\n\
1503 are files containing lines in the above formats. configuration-id is\n\
1504 used to pick which line of the file to use.",
1505 udi_open,
1506 udi_close,
1507 udi_attach,
1508 udi_detach,
1509 udi_resume,
1510 udi_wait,
1511 udi_fetch_registers,
1512 udi_store_registers,
1513 udi_prepare_to_store,
1514 udi_xfer_inferior_memory,
1515 udi_files_info,
1516 udi_insert_breakpoint,
1517 udi_remove_breakpoint,
1518 0, /* termial_init */
1519 0, /* terminal_inferior */
1520 0, /* terminal_ours_for_output */
1521 0, /* terminal_ours */
1522 0, /* terminal_info */
1523 udi_kill, /* FIXME, kill */
1524 udi_load,
1525 0, /* lookup_symbol */
1526 udi_create_inferior,
1527 udi_mourn, /* mourn_inferior FIXME */
1528 0, /* can_run */
1529 0, /* notice_signals */
1530 process_stratum,
1531 0, /* next */
1532 1, /* has_all_memory */
1533 1, /* has_memory */
1534 1, /* has_stack */
1535 1, /* has_registers */
1536 1, /* has_execution */
1537 0, /* sections */
1538 0, /* sections_end */
1539 OPS_MAGIC, /* Always the last thing */
1540 };
1541
1542 void _initialize_remote_udi()
1543 {
1544 add_target (&udi_ops);
1545 add_show_from_set (
1546 add_set_cmd ("remotedebug", no_class, var_boolean,
1547 (char *)&kiodebug,
1548 "Set debugging of UDI I/O.\n\
1549 When enabled, debugging info is displayed.",
1550 &setlist),
1551 &showlist);
1552 }
1553
1554 #ifdef NO_HIF_SUPPORT
1555 service_HIF(msg)
1556 union msg_t *msg;
1557 {
1558 return(0); /* Emulate a failure */
1559 }
1560 #endif
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