1 /****************************************************************************
3 THIS SOFTWARE IS NOT COPYRIGHTED
5 HP offers the following for use in the public domain. HP makes no
6 warranty with regard to the software or it's performance and the
7 user accepts the software "AS IS" with all faults.
9 HP DISCLAIMS ANY WARRANTIES, EXPRESS OR IMPLIED, WITH REGARD
10 TO THIS SOFTWARE INCLUDING BUT NOT LIMITED TO THE WARRANTIES
11 OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
13 ****************************************************************************/
15 /****************************************************************************
16 * Header: remcom.c,v 1.34 91/03/09 12:29:49 glenne Exp $
18 * Module name: remcom.c $
20 * Date: 91/03/09 12:29:49 $
21 * Contributor: Lake Stevens Instrument Division$
23 * Description: low level support for gdb debugger. $
25 * Considerations: only works on target hardware $
27 * Written by: Glenn Engel $
28 * ModuleState: Experimental $
32 * Modified for 386 by Jim Kingdon, Cygnus Support.
34 * To enable debugger support, two things need to happen. One, a
35 * call to set_debug_traps() is necessary in order to allow any breakpoints
36 * or error conditions to be properly intercepted and reported to gdb.
37 * Two, a breakpoint needs to be generated to begin communication. This
38 * is most easily accomplished by a call to breakpoint(). Breakpoint()
39 * simulates a breakpoint by executing a trap #1.
41 * The external function exceptionHandler() is
42 * used to attach a specific handler to a specific 386 vector number.
43 * It should use the same privilege level it runs at. It should
44 * install it as an interrupt gate so that interrupts are masked
45 * while the handler runs.
47 * Because gdb will sometimes write to the stack area to execute function
48 * calls, this program cannot rely on using the supervisor stack so it
49 * uses it's own stack area reserved in the int array remcomStack.
53 * The following gdb commands are supported:
55 * command function Return value
57 * g return the value of the CPU registers hex data or ENN
58 * G set the value of the CPU registers OK or ENN
60 * mAA..AA,LLLL Read LLLL bytes at address AA..AA hex data or ENN
61 * MAA..AA,LLLL: Write LLLL bytes at address AA.AA OK or ENN
63 * c Resume at current address SNN ( signal NN)
64 * cAA..AA Continue at address AA..AA SNN
66 * s Step one instruction SNN
67 * sAA..AA Step one instruction from AA..AA SNN
71 * ? What was the last sigval ? SNN (signal NN)
73 * All commands and responses are sent with a packet which includes a
74 * checksum. A packet consists of
76 * $<packet info>#<checksum>.
79 * <packet info> :: <characters representing the command or response>
80 * <checksum> :: < two hex digits computed as modulo 256 sum of <packetinfo>>
82 * When a packet is received, it is first acknowledged with either '+' or '-'.
83 * '+' indicates a successful transfer. '-' indicates a failed transfer.
88 * $m0,10#2a +$00010203040506070809101112131415#42
90 ****************************************************************************/
95 /************************************************************************
97 * external low-level support routines
100 extern void putDebugChar(); /* write a single character */
101 extern int getDebugChar(); /* read and return a single char */
102 extern void exceptionHandler(); /* assign an exception handler */
104 /************************************************************************/
105 /* BUFMAX defines the maximum number of characters in inbound/outbound buffers*/
106 /* at least NUMREGBYTES*2 are needed for register packets */
109 static char initialized
; /* boolean flag. != 0 means we've been initialized */
112 /* debug > 0 prints ill-formed commands in valid packets & checksum errors */
114 static const char hexchars
[]="0123456789abcdef";
116 /* Number of registers. */
119 /* Number of bytes of registers. */
120 #define NUMREGBYTES (NUMREGS * 4)
122 enum regnames
{EAX
, ECX
, EDX
, EBX
, ESP
, EBP
, ESI
, EDI
,
123 PC
/* also known as eip */,
124 PS
/* also known as eflags */,
125 CS
, SS
, DS
, ES
, FS
, GS
};
128 * these should not be static cuz they can be used outside this module
130 int registers
[NUMREGS
];
132 #define STACKSIZE 10000
133 int remcomStack
[STACKSIZE
/sizeof(int)];
134 static int* stackPtr
= &remcomStack
[STACKSIZE
/sizeof(int) - 1];
136 /*************************** ASSEMBLY CODE MACROS *************************/
142 /* Restore the program's registers (including the stack pointer, which
143 means we get the right stack and don't have to worry about popping our
144 return address and any stack frames and so on) and return. */
146 asm(".globl _return_to_prog");
147 asm("_return_to_prog:");
148 asm(" movw _registers+44, %ss");
149 asm(" movl _registers+16, %esp");
150 asm(" movl _registers+4, %ecx");
151 asm(" movl _registers+8, %edx");
152 asm(" movl _registers+12, %ebx");
153 asm(" movl _registers+20, %ebp");
154 asm(" movl _registers+24, %esi");
155 asm(" movl _registers+28, %edi");
156 asm(" movw _registers+48, %ds");
157 asm(" movw _registers+52, %es");
158 asm(" movw _registers+56, %fs");
159 asm(" movw _registers+60, %gs");
160 asm(" movl _registers+36, %eax");
161 asm(" pushl %eax"); /* saved eflags */
162 asm(" movl _registers+40, %eax");
163 asm(" pushl %eax"); /* saved cs */
164 asm(" movl _registers+32, %eax");
165 asm(" pushl %eax"); /* saved eip */
166 asm(" movl _registers, %eax");
167 /* use iret to restore pc and flags together so
168 that trace flag works right. */
171 #define BREAKPOINT() asm(" int $3");
173 /* Put the error code here just in case the user cares. */
175 /* Likewise, the vector number here (since GDB only gets the signal
176 number through the usual means, and that's not very specific). */
177 int gdb_i386vector
= -1;
179 /* GDB stores segment registers in 32-bit words (that's just the way
180 m-i386v.h is written). So zero the appropriate areas in registers. */
181 #define SAVE_REGISTERS1() \
182 asm ("movl %eax, _registers"); \
183 asm ("movl %ecx, _registers+4"); \
184 asm ("movl %edx, _registers+8"); \
185 asm ("movl %ebx, _registers+12"); \
186 asm ("movl %ebp, _registers+20"); \
187 asm ("movl %esi, _registers+24"); \
188 asm ("movl %edi, _registers+28"); \
189 asm ("movw $0, %ax"); \
190 asm ("movw %ds, _registers+48"); \
191 asm ("movw %ax, _registers+50"); \
192 asm ("movw %es, _registers+52"); \
193 asm ("movw %ax, _registers+54"); \
194 asm ("movw %fs, _registers+56"); \
195 asm ("movw %ax, _registers+58"); \
196 asm ("movw %gs, _registers+60"); \
197 asm ("movw %ax, _registers+62");
198 #define SAVE_ERRCODE() \
200 asm ("movl %ebx, _gdb_i386errcode");
201 #define SAVE_REGISTERS2() \
202 asm ("popl %ebx"); /* old eip */ \
203 asm ("movl %ebx, _registers+32"); \
204 asm ("popl %ebx"); /* old cs */ \
205 asm ("movl %ebx, _registers+40"); \
206 asm ("movw %ax, _registers+42"); \
207 asm ("popl %ebx"); /* old eflags */ \
208 asm ("movl %ebx, _registers+36"); \
209 /* Now that we've done the pops, we can save the stack pointer."); */ \
210 asm ("movw %ss, _registers+44"); \
211 asm ("movw %ax, _registers+46"); \
212 asm ("movl %esp, _registers+16");
214 /* See if mem_fault_routine is set, if so just IRET to that address. */
215 #define CHECK_FAULT() \
216 asm ("cmpl $0, _mem_fault_routine"); \
217 asm ("jne mem_fault");
221 /* OK to clobber temp registers; we're just going to end up in set_mem_err. */
222 /* Pop error code from the stack and save it. */
224 asm (" movl %eax, _gdb_i386errcode");
226 asm (" popl %eax"); /* eip */
227 /* We don't want to return there, we want to return to the function
228 pointed to by mem_fault_routine instead. */
229 asm (" movl _mem_fault_routine, %eax");
230 asm (" popl %ecx"); /* cs (low 16 bits; junk in hi 16 bits). */
231 asm (" popl %edx"); /* eflags */
233 /* Remove this stack frame; when we do the iret, we will be going to
234 the start of a function, so we want the stack to look just like it
235 would after a "call" instruction. */
238 /* Push the stuff that iret wants. */
239 asm (" pushl %edx"); /* eflags */
240 asm (" pushl %ecx"); /* cs */
241 asm (" pushl %eax"); /* eip */
243 /* Zero mem_fault_routine. */
244 asm (" movl $0, %eax");
245 asm (" movl %eax, _mem_fault_routine");
249 #define CALL_HOOK() asm("call _remcomHandler");
251 /* This function is called when a i386 exception occurs. It saves
252 * all the cpu regs in the _registers array, munges the stack a bit,
253 * and invokes an exception handler (remcom_handler).
255 * stack on entry: stack on exit:
256 * old eflags vector number
257 * old cs (zero-filled to 32 bits)
261 extern void _catchException3();
263 asm(".globl __catchException3");
264 asm("__catchException3:");
270 /* Same thing for exception 1. */
271 extern void _catchException1();
273 asm(".globl __catchException1");
274 asm("__catchException1:");
280 /* Same thing for exception 0. */
281 extern void _catchException0();
283 asm(".globl __catchException0");
284 asm("__catchException0:");
290 /* Same thing for exception 4. */
291 extern void _catchException4();
293 asm(".globl __catchException4");
294 asm("__catchException4:");
300 /* Same thing for exception 5. */
301 extern void _catchException5();
303 asm(".globl __catchException5");
304 asm("__catchException5:");
310 /* Same thing for exception 6. */
311 extern void _catchException6();
313 asm(".globl __catchException6");
314 asm("__catchException6:");
320 /* Same thing for exception 7. */
321 extern void _catchException7();
323 asm(".globl __catchException7");
324 asm("__catchException7:");
330 /* Same thing for exception 8. */
331 extern void _catchException8();
333 asm(".globl __catchException8");
334 asm("__catchException8:");
341 /* Same thing for exception 9. */
342 extern void _catchException9();
344 asm(".globl __catchException9");
345 asm("__catchException9:");
351 /* Same thing for exception 10. */
352 extern void _catchException10();
354 asm(".globl __catchException10");
355 asm("__catchException10:");
362 /* Same thing for exception 12. */
363 extern void _catchException12();
365 asm(".globl __catchException12");
366 asm("__catchException12:");
373 /* Same thing for exception 16. */
374 extern void _catchException16();
376 asm(".globl __catchException16");
377 asm("__catchException16:");
383 /* For 13, 11, and 14 we have to deal with the CHECK_FAULT stuff. */
385 /* Same thing for exception 13. */
386 extern void _catchException13 ();
388 asm (".globl __catchException13");
389 asm ("__catchException13:");
397 /* Same thing for exception 11. */
398 extern void _catchException11 ();
400 asm (".globl __catchException11");
401 asm ("__catchException11:");
409 /* Same thing for exception 14. */
410 extern void _catchException14 ();
412 asm (".globl __catchException14");
413 asm ("__catchException14:");
422 * remcomHandler is a front end for handle_exception. It moves the
423 * stack pointer into an area reserved for debugger use.
425 asm("_remcomHandler:");
426 asm(" popl %eax"); /* pop off return address */
427 asm(" popl %eax"); /* get the exception number */
428 asm(" movl _stackPtr, %esp"); /* move to remcom stack area */
429 asm(" pushl %eax"); /* push exception onto stack */
430 asm(" call _handle_exception"); /* this never returns */
432 void _returnFromException()
440 if ((ch
>= 'a') && (ch
<= 'f')) return (ch
-'a'+10);
441 if ((ch
>= '0') && (ch
<= '9')) return (ch
-'0');
442 if ((ch
>= 'A') && (ch
<= 'F')) return (ch
-'A'+10);
446 static char remcomInBuffer
[BUFMAX
];
447 static char remcomOutBuffer
[BUFMAX
];
449 /* scan for the sequence $<data>#<checksum> */
454 unsigned char *buffer
= &remcomInBuffer
[0];
455 unsigned char checksum
;
456 unsigned char xmitcsum
;
462 /* wait around for the start character, ignore all other characters */
463 while ((ch
= getDebugChar ()) != '$')
471 /* now, read until a # or end of buffer is found */
472 while (count
< BUFMAX
)
474 ch
= getDebugChar ();
479 checksum
= checksum
+ ch
;
487 ch
= getDebugChar ();
488 xmitcsum
= hex (ch
) << 4;
489 ch
= getDebugChar ();
490 xmitcsum
+= hex (ch
);
492 if (checksum
!= xmitcsum
)
497 "bad checksum. My count = 0x%x, sent=0x%x. buf=%s\n",
498 checksum
, xmitcsum
, buffer
);
500 putDebugChar ('-'); /* failed checksum */
504 putDebugChar ('+'); /* successful transfer */
506 /* if a sequence char is present, reply the sequence ID */
507 if (buffer
[2] == ':')
509 putDebugChar (buffer
[0]);
510 putDebugChar (buffer
[1]);
521 /* send the packet in buffer. */
523 void putpacket(buffer
)
524 unsigned char *buffer
;
526 unsigned char checksum
;
530 /* $<packet info>#<checksum>. */
536 while (ch
=buffer
[count
]) {
543 putDebugChar(hexchars
[checksum
>> 4]);
544 putDebugChar(hexchars
[checksum
% 16]);
546 } while (getDebugChar() != '+');
550 void debug_error(format
, parm
)
554 if (remote_debug
) fprintf (stderr
,format
,parm
);
557 /* Address of a routine to RTE to if we get a memory fault. */
558 static void (*volatile mem_fault_routine
)() = NULL
;
560 /* Indicate to caller of mem2hex or hex2mem that there has been an
562 static volatile int mem_err
= 0;
570 /* These are separate functions so that they are so short and sweet
571 that the compiler won't save any registers (if there is a fault
572 to mem_fault, they won't get restored, so there better not be any
575 get_char (char *addr
)
581 set_char (char *addr
, int val
)
586 /* convert the memory pointed to by mem into hex, placing result in buf */
587 /* return a pointer to the last char put in buf (null) */
588 /* If MAY_FAULT is non-zero, then we should set mem_err in response to
589 a fault; if zero treat a fault like any other fault in the stub. */
590 char* mem2hex(mem
, buf
, count
, may_fault
)
600 mem_fault_routine
= set_mem_err
;
601 for (i
=0;i
<count
;i
++) {
602 ch
= get_char (mem
++);
603 if (may_fault
&& mem_err
)
605 *buf
++ = hexchars
[ch
>> 4];
606 *buf
++ = hexchars
[ch
% 16];
610 mem_fault_routine
= NULL
;
614 /* convert the hex array pointed to by buf into binary to be placed in mem */
615 /* return a pointer to the character AFTER the last byte written */
616 char* hex2mem(buf
, mem
, count
, may_fault
)
626 mem_fault_routine
= set_mem_err
;
627 for (i
=0;i
<count
;i
++) {
628 ch
= hex(*buf
++) << 4;
629 ch
= ch
+ hex(*buf
++);
630 set_char (mem
++, ch
);
631 if (may_fault
&& mem_err
)
635 mem_fault_routine
= NULL
;
639 /* this function takes the 386 exception vector and attempts to
640 translate this number into a unix compatible signal value */
641 int computeSignal( exceptionVector
)
645 switch (exceptionVector
) {
646 case 0 : sigval
= 8; break; /* divide by zero */
647 case 1 : sigval
= 5; break; /* debug exception */
648 case 3 : sigval
= 5; break; /* breakpoint */
649 case 4 : sigval
= 16; break; /* into instruction (overflow) */
650 case 5 : sigval
= 16; break; /* bound instruction */
651 case 6 : sigval
= 4; break; /* Invalid opcode */
652 case 7 : sigval
= 8; break; /* coprocessor not available */
653 case 8 : sigval
= 7; break; /* double fault */
654 case 9 : sigval
= 11; break; /* coprocessor segment overrun */
655 case 10 : sigval
= 11; break; /* Invalid TSS */
656 case 11 : sigval
= 11; break; /* Segment not present */
657 case 12 : sigval
= 11; break; /* stack exception */
658 case 13 : sigval
= 11; break; /* general protection */
659 case 14 : sigval
= 11; break; /* page fault */
660 case 16 : sigval
= 7; break; /* coprocessor error */
662 sigval
= 7; /* "software generated"*/
667 /**********************************************/
668 /* WHILE WE FIND NICE HEX CHARS, BUILD AN INT */
669 /* RETURN NUMBER OF CHARS PROCESSED */
670 /**********************************************/
671 int hexToInt(char **ptr
, int *intValue
)
680 hexValue
= hex(**ptr
);
683 *intValue
= (*intValue
<<4) | hexValue
;
696 * This function does all command procesing for interfacing to gdb.
698 void handle_exception(int exceptionVector
)
700 int sigval
, stepping
;
705 gdb_i386vector
= exceptionVector
;
707 if (remote_debug
) printf("vector=%d, sr=0x%x, pc=0x%x\n",
712 /* reply to host that an exception has occurred */
713 sigval
= computeSignal( exceptionVector
);
714 remcomOutBuffer
[0] = 'S';
715 remcomOutBuffer
[1] = hexchars
[sigval
>> 4];
716 remcomOutBuffer
[2] = hexchars
[sigval
% 16];
717 remcomOutBuffer
[3] = 0;
719 putpacket(remcomOutBuffer
);
724 remcomOutBuffer
[0] = 0;
728 case '?' : remcomOutBuffer
[0] = 'S';
729 remcomOutBuffer
[1] = hexchars
[sigval
>> 4];
730 remcomOutBuffer
[2] = hexchars
[sigval
% 16];
731 remcomOutBuffer
[3] = 0;
733 case 'd' : remote_debug
= !(remote_debug
); /* toggle debug flag */
735 case 'g' : /* return the value of the CPU registers */
736 mem2hex((char*) registers
, remcomOutBuffer
, NUMREGBYTES
, 0);
738 case 'G' : /* set the value of the CPU registers - return OK */
739 hex2mem(ptr
, (char*) registers
, NUMREGBYTES
, 0);
740 strcpy(remcomOutBuffer
,"OK");
742 case 'P' : /* set the value of a single CPU register - return OK */
746 if (hexToInt (&ptr
, ®no
) && *ptr
++ == '=')
747 if (regno
>= 0 && regno
< NUMREGS
)
749 hex2mem (ptr
, (char *)®isters
[regno
], 4, 0);
750 strcpy(remcomOutBuffer
,"OK");
754 strcpy (remcomOutBuffer
, "E01");
758 /* mAA..AA,LLLL Read LLLL bytes at address AA..AA */
760 /* TRY TO READ %x,%x. IF SUCCEED, SET PTR = 0 */
761 if (hexToInt(&ptr
,&addr
))
763 if (hexToInt(&ptr
,&length
))
767 mem2hex((char*) addr
, remcomOutBuffer
, length
, 1);
769 strcpy (remcomOutBuffer
, "E03");
770 debug_error ("memory fault");
776 strcpy(remcomOutBuffer
,"E01");
780 /* MAA..AA,LLLL: Write LLLL bytes at address AA.AA return OK */
782 /* TRY TO READ '%x,%x:'. IF SUCCEED, SET PTR = 0 */
783 if (hexToInt(&ptr
,&addr
))
785 if (hexToInt(&ptr
,&length
))
789 hex2mem(ptr
, (char*) addr
, length
, 1);
792 strcpy (remcomOutBuffer
, "E03");
793 debug_error ("memory fault");
795 strcpy(remcomOutBuffer
,"OK");
802 strcpy(remcomOutBuffer
,"E02");
806 /* cAA..AA Continue at address AA..AA(optional) */
807 /* sAA..AA Step one instruction from AA..AA(optional) */
811 /* try to read optional parameter, pc unchanged if no parm */
812 if (hexToInt(&ptr
,&addr
))
813 registers
[ PC
] = addr
;
815 newPC
= registers
[ PC
];
817 /* clear the trace bit */
818 registers
[ PS
] &= 0xfffffeff;
820 /* set the trace bit if we're stepping */
821 if (stepping
) registers
[ PS
] |= 0x100;
823 _returnFromException(); /* this is a jump */
826 /* kill the program */
827 case 'k' : /* do nothing */
829 /* Huh? This doesn't look like "nothing".
830 m68k-stub.c and sparc-stub.c don't have it. */
836 /* reply to the request */
837 putpacket(remcomOutBuffer
);
841 /* this function is used to set up exception handlers for tracing and
843 void set_debug_traps()
845 extern void remcomHandler();
848 stackPtr
= &remcomStack
[STACKSIZE
/sizeof(int) - 1];
850 exceptionHandler (0, _catchException0
);
851 exceptionHandler (1, _catchException1
);
852 exceptionHandler (3, _catchException3
);
853 exceptionHandler (4, _catchException4
);
854 exceptionHandler (5, _catchException5
);
855 exceptionHandler (6, _catchException6
);
856 exceptionHandler (7, _catchException7
);
857 exceptionHandler (8, _catchException8
);
858 exceptionHandler (9, _catchException9
);
859 exceptionHandler (10, _catchException10
);
860 exceptionHandler (11, _catchException11
);
861 exceptionHandler (12, _catchException12
);
862 exceptionHandler (13, _catchException13
);
863 exceptionHandler (14, _catchException14
);
864 exceptionHandler (16, _catchException16
);
869 /* This function will generate a breakpoint exception. It is used at the
870 beginning of a program to sync up with a debugger and can be used
871 otherwise as a quick means to stop program execution and "break" into