1 /* Motorola m68k native support for GNU/Linux.
2 
3    Copyright 1996, 1998, 2000, 2001, 2002 Free Software Foundation,
4    Inc.
5 
6    This file is part of GDB.
7 
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.
12 
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.
17 
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.  */
22 
23 #include "defs.h"
24 #include "frame.h"
25 #include "inferior.h"
26 #include "language.h"
27 #include "gdbcore.h"
28 #include "gdb_string.h"
29 #include "regcache.h"
30 
31 #include "m68k-tdep.h"
32 
33 #ifdef USG
34 #include <sys/types.h>
35 #endif
36 
37 #include <sys/param.h>
38 #include <sys/dir.h>
39 #include <signal.h>
40 #include <sys/ptrace.h>
41 #include <sys/user.h>
42 #include <sys/ioctl.h>
43 #include <fcntl.h>
44 #include <sys/procfs.h>
45 
46 #ifdef HAVE_SYS_REG_H
47 #include <sys/reg.h>
48 #endif
49 
50 #include <sys/file.h>
51 #include "gdb_stat.h"
52 
53 #include "floatformat.h"
54 
55 #include "target.h"
56 
57 /* This table must line up with REGISTER_NAME in "m68k-tdep.c".  */
58 static const int regmap[] =
59 {
60   PT_D0, PT_D1, PT_D2, PT_D3, PT_D4, PT_D5, PT_D6, PT_D7,
61   PT_A0, PT_A1, PT_A2, PT_A3, PT_A4, PT_A5, PT_A6, PT_USP,
62   PT_SR, PT_PC,
63   /* PT_FP0, ..., PT_FP7 */
64   21, 24, 27, 30, 33, 36, 39, 42,
65   /* PT_FPCR, PT_FPSR, PT_FPIAR */
66   45, 46, 47
67 };
68 
69 /* Which ptrace request retrieves which registers?
70    These apply to the corresponding SET requests as well.  */
71 #define NUM_GREGS (18)
72 #define MAX_NUM_REGS (NUM_GREGS + 11)
73 
74 int
getregs_supplies(int regno)75 getregs_supplies (int regno)
76 {
77   return 0 <= regno && regno < NUM_GREGS;
78 }
79 
80 int
getfpregs_supplies(int regno)81 getfpregs_supplies (int regno)
82 {
83   return FP0_REGNUM <= regno && regno <= M68K_FPI_REGNUM;
84 }
85 
86 /* Does the current host support the GETREGS request?  */
87 int have_ptrace_getregs =
88 #ifdef HAVE_PTRACE_GETREGS
89   1
90 #else
91   0
92 #endif
93 ;
94 
95 
96 
97 /* BLOCKEND is the value of u.u_ar0, and points to the place where GS
98    is stored.  */
99 
100 int
m68k_linux_register_u_addr(int blockend,int regnum)101 m68k_linux_register_u_addr (int blockend, int regnum)
102 {
103   return (blockend + 4 * regmap[regnum]);
104 }
105 
106 
107 /* Fetching registers directly from the U area, one at a time.  */
108 
109 /* FIXME: This duplicates code from `inptrace.c'.  The problem is that we
110    define FETCH_INFERIOR_REGISTERS since we want to use our own versions
111    of {fetch,store}_inferior_registers that use the GETREGS request.  This
112    means that the code in `infptrace.c' is #ifdef'd out.  But we need to
113    fall back on that code when GDB is running on top of a kernel that
114    doesn't support the GETREGS request.  */
115 
116 #ifndef PT_READ_U
117 #define PT_READ_U PTRACE_PEEKUSR
118 #endif
119 #ifndef PT_WRITE_U
120 #define PT_WRITE_U PTRACE_POKEUSR
121 #endif
122 
123 /* Default the type of the ptrace transfer to int.  */
124 #ifndef PTRACE_XFER_TYPE
125 #define PTRACE_XFER_TYPE int
126 #endif
127 
128 /* Fetch one register.  */
129 
130 static void
fetch_register(int regno)131 fetch_register (int regno)
132 {
133   /* This isn't really an address.  But ptrace thinks of it as one.  */
134   CORE_ADDR regaddr;
135   char mess[128];		/* For messages */
136   int i;
137   unsigned int offset;		/* Offset of registers within the u area.  */
138   char buf[MAX_REGISTER_SIZE];
139   int tid;
140 
141   if (CANNOT_FETCH_REGISTER (regno))
142     {
143       memset (buf, '\0', register_size (current_gdbarch, regno));	/* Supply zeroes */
144       supply_register (regno, buf);
145       return;
146     }
147 
148   /* Overload thread id onto process id */
149   tid = TIDGET (inferior_ptid);
150   if (tid == 0)
151     tid = PIDGET (inferior_ptid);	/* no thread id, just use process id */
152 
153   offset = U_REGS_OFFSET;
154 
155   regaddr = register_addr (regno, offset);
156   for (i = 0; i < register_size (current_gdbarch, regno);
157        i += sizeof (PTRACE_XFER_TYPE))
158     {
159       errno = 0;
160       *(PTRACE_XFER_TYPE *) &buf[i] = ptrace (PT_READ_U, tid,
161 					      (PTRACE_ARG3_TYPE) regaddr, 0);
162       regaddr += sizeof (PTRACE_XFER_TYPE);
163       if (errno != 0)
164 	{
165 	  sprintf (mess, "reading register %s (#%d)",
166 		   REGISTER_NAME (regno), regno);
167 	  perror_with_name (mess);
168 	}
169     }
170   supply_register (regno, buf);
171 }
172 
173 /* Fetch register values from the inferior.
174    If REGNO is negative, do this for all registers.
175    Otherwise, REGNO specifies which register (so we can save time). */
176 
177 void
old_fetch_inferior_registers(int regno)178 old_fetch_inferior_registers (int regno)
179 {
180   if (regno >= 0)
181     {
182       fetch_register (regno);
183     }
184   else
185     {
186       for (regno = 0; regno < NUM_REGS; regno++)
187 	{
188 	  fetch_register (regno);
189 	}
190     }
191 }
192 
193 /* Store one register. */
194 
195 static void
store_register(int regno)196 store_register (int regno)
197 {
198   /* This isn't really an address.  But ptrace thinks of it as one.  */
199   CORE_ADDR regaddr;
200   char mess[128];		/* For messages */
201   int i;
202   unsigned int offset;		/* Offset of registers within the u area.  */
203   int tid;
204   char buf[MAX_REGISTER_SIZE];
205 
206   if (CANNOT_STORE_REGISTER (regno))
207     {
208       return;
209     }
210 
211   /* Overload thread id onto process id */
212   tid = TIDGET (inferior_ptid);
213   if (tid == 0)
214     tid = PIDGET (inferior_ptid);	/* no thread id, just use process id */
215 
216   offset = U_REGS_OFFSET;
217 
218   regaddr = register_addr (regno, offset);
219 
220   /* Put the contents of regno into a local buffer */
221   regcache_collect (regno, buf);
222 
223   /* Store the local buffer into the inferior a chunk at the time. */
224   for (i = 0; i < register_size (current_gdbarch, regno);
225        i += sizeof (PTRACE_XFER_TYPE))
226     {
227       errno = 0;
228       ptrace (PT_WRITE_U, tid, (PTRACE_ARG3_TYPE) regaddr,
229 	      *(PTRACE_XFER_TYPE *) (buf + i));
230       regaddr += sizeof (PTRACE_XFER_TYPE);
231       if (errno != 0)
232 	{
233 	  sprintf (mess, "writing register %s (#%d)",
234 		   REGISTER_NAME (regno), regno);
235 	  perror_with_name (mess);
236 	}
237     }
238 }
239 
240 /* Store our register values back into the inferior.
241    If REGNO is negative, do this for all registers.
242    Otherwise, REGNO specifies which register (so we can save time).  */
243 
244 void
old_store_inferior_registers(int regno)245 old_store_inferior_registers (int regno)
246 {
247   if (regno >= 0)
248     {
249       store_register (regno);
250     }
251   else
252     {
253       for (regno = 0; regno < NUM_REGS; regno++)
254 	{
255 	  store_register (regno);
256 	}
257     }
258 }
259 
260 /*  Given a pointer to a general register set in /proc format
261    (elf_gregset_t *), unpack the register contents and supply
262    them as gdb's idea of the current register values. */
263 
264 
265 /* Note both m68k-tdep.c and m68klinux-nat.c contain definitions
266    for supply_gregset and supply_fpregset. The definitions
267    in m68k-tdep.c are valid if USE_PROC_FS is defined. Otherwise,
268    the definitions in m68klinux-nat.c will be used. This is a
269    bit of a hack. The supply_* routines do not belong in
270    *_tdep.c files. But, there are several lynx ports that currently
271    depend on these definitions. */
272 
273 #ifndef USE_PROC_FS
274 
275 /* Prototypes for supply_gregset etc. */
276 #include "gregset.h"
277 
278 void
supply_gregset(elf_gregset_t * gregsetp)279 supply_gregset (elf_gregset_t *gregsetp)
280 {
281   elf_greg_t *regp = (elf_greg_t *) gregsetp;
282   int regi;
283 
284   for (regi = M68K_D0_REGNUM; regi <= SP_REGNUM; regi++)
285     supply_register (regi, (char *) &regp[regmap[regi]]);
286   supply_register (PS_REGNUM, (char *) &regp[PT_SR]);
287   supply_register (PC_REGNUM, (char *) &regp[PT_PC]);
288 }
289 
290 /* Fill register REGNO (if it is a general-purpose register) in
291    *GREGSETPS with the value in GDB's register array.  If REGNO is -1,
292    do this for all registers.  */
293 void
fill_gregset(elf_gregset_t * gregsetp,int regno)294 fill_gregset (elf_gregset_t *gregsetp, int regno)
295 {
296   elf_greg_t *regp = (elf_greg_t *) gregsetp;
297   int i;
298 
299   for (i = 0; i < NUM_GREGS; i++)
300     if (regno == -1 || regno == i)
301       regcache_collect (i, regp + regmap[i]);
302 }
303 
304 #ifdef HAVE_PTRACE_GETREGS
305 
306 /* Fetch all general-purpose registers from process/thread TID and
307    store their values in GDB's register array.  */
308 
309 static void
fetch_regs(int tid)310 fetch_regs (int tid)
311 {
312   elf_gregset_t regs;
313 
314   if (ptrace (PTRACE_GETREGS, tid, 0, (int) &regs) < 0)
315     {
316       if (errno == EIO)
317 	{
318 	  /* The kernel we're running on doesn't support the GETREGS
319              request.  Reset `have_ptrace_getregs'.  */
320 	  have_ptrace_getregs = 0;
321 	  return;
322 	}
323 
324       perror_with_name ("Couldn't get registers");
325     }
326 
327   supply_gregset (&regs);
328 }
329 
330 /* Store all valid general-purpose registers in GDB's register array
331    into the process/thread specified by TID.  */
332 
333 static void
store_regs(int tid,int regno)334 store_regs (int tid, int regno)
335 {
336   elf_gregset_t regs;
337 
338   if (ptrace (PTRACE_GETREGS, tid, 0, (int) &regs) < 0)
339     perror_with_name ("Couldn't get registers");
340 
341   fill_gregset (&regs, regno);
342 
343   if (ptrace (PTRACE_SETREGS, tid, 0, (int) &regs) < 0)
344     perror_with_name ("Couldn't write registers");
345 }
346 
347 #else
348 
fetch_regs(int tid)349 static void fetch_regs (int tid) {}
store_regs(int tid,int regno)350 static void store_regs (int tid, int regno) {}
351 
352 #endif
353 
354 
355 /* Transfering floating-point registers between GDB, inferiors and cores.  */
356 
357 /* What is the address of fpN within the floating-point register set F?  */
358 #define FPREG_ADDR(f, n) ((char *) &(f)->fpregs[(n) * 3])
359 
360 /* Fill GDB's register array with the floating-point register values in
361    *FPREGSETP.  */
362 
363 void
supply_fpregset(elf_fpregset_t * fpregsetp)364 supply_fpregset (elf_fpregset_t *fpregsetp)
365 {
366   int regi;
367 
368   for (regi = FP0_REGNUM; regi < FP0_REGNUM + 8; regi++)
369     supply_register (regi, FPREG_ADDR (fpregsetp, regi - FP0_REGNUM));
370   supply_register (M68K_FPC_REGNUM, (char *) &fpregsetp->fpcntl[0]);
371   supply_register (M68K_FPS_REGNUM, (char *) &fpregsetp->fpcntl[1]);
372   supply_register (M68K_FPI_REGNUM, (char *) &fpregsetp->fpcntl[2]);
373 }
374 
375 /* Fill register REGNO (if it is a floating-point register) in
376    *FPREGSETP with the value in GDB's register array.  If REGNO is -1,
377    do this for all registers.  */
378 
379 void
fill_fpregset(elf_fpregset_t * fpregsetp,int regno)380 fill_fpregset (elf_fpregset_t *fpregsetp, int regno)
381 {
382   int i;
383 
384   /* Fill in the floating-point registers.  */
385   for (i = FP0_REGNUM; i < FP0_REGNUM + 8; i++)
386     if (regno == -1 || regno == i)
387       regcache_collect (i, FPREG_ADDR (fpregsetp, i - FP0_REGNUM));
388 
389   /* Fill in the floating-point control registers.  */
390   for (i = M68K_FPC_REGNUM; i <= M68K_FPI_REGNUM; i++)
391     if (regno == -1 || regno == i)
392       regcache_collect (i, (char *) &fpregsetp->fpcntl[i - M68K_FPC_REGNUM]);
393 }
394 
395 #ifdef HAVE_PTRACE_GETREGS
396 
397 /* Fetch all floating-point registers from process/thread TID and store
398    thier values in GDB's register array.  */
399 
400 static void
fetch_fpregs(int tid)401 fetch_fpregs (int tid)
402 {
403   elf_fpregset_t fpregs;
404 
405   if (ptrace (PTRACE_GETFPREGS, tid, 0, (int) &fpregs) < 0)
406     perror_with_name ("Couldn't get floating point status");
407 
408   supply_fpregset (&fpregs);
409 }
410 
411 /* Store all valid floating-point registers in GDB's register array
412    into the process/thread specified by TID.  */
413 
414 static void
store_fpregs(int tid,int regno)415 store_fpregs (int tid, int regno)
416 {
417   elf_fpregset_t fpregs;
418 
419   if (ptrace (PTRACE_GETFPREGS, tid, 0, (int) &fpregs) < 0)
420     perror_with_name ("Couldn't get floating point status");
421 
422   fill_fpregset (&fpregs, regno);
423 
424   if (ptrace (PTRACE_SETFPREGS, tid, 0, (int) &fpregs) < 0)
425     perror_with_name ("Couldn't write floating point status");
426 }
427 
428 #else
429 
fetch_fpregs(int tid)430 static void fetch_fpregs (int tid) {}
store_fpregs(int tid,int regno)431 static void store_fpregs (int tid, int regno) {}
432 
433 #endif
434 
435 #endif
436 
437 /* Transferring arbitrary registers between GDB and inferior.  */
438 
439 /* Fetch register REGNO from the child process.  If REGNO is -1, do
440    this for all registers (including the floating point and SSE
441    registers).  */
442 
443 void
fetch_inferior_registers(int regno)444 fetch_inferior_registers (int regno)
445 {
446   int tid;
447 
448   /* Use the old method of peeking around in `struct user' if the
449      GETREGS request isn't available.  */
450   if (! have_ptrace_getregs)
451     {
452       old_fetch_inferior_registers (regno);
453       return;
454     }
455 
456   /* GNU/Linux LWP ID's are process ID's.  */
457   tid = TIDGET (inferior_ptid);
458   if (tid == 0)
459     tid = PIDGET (inferior_ptid);		/* Not a threaded program.  */
460 
461   /* Use the PTRACE_GETFPXREGS request whenever possible, since it
462      transfers more registers in one system call, and we'll cache the
463      results.  But remember that fetch_fpxregs can fail, and return
464      zero.  */
465   if (regno == -1)
466     {
467       fetch_regs (tid);
468 
469       /* The call above might reset `have_ptrace_getregs'.  */
470       if (! have_ptrace_getregs)
471 	{
472 	  old_fetch_inferior_registers (-1);
473 	  return;
474 	}
475 
476       fetch_fpregs (tid);
477       return;
478     }
479 
480   if (getregs_supplies (regno))
481     {
482       fetch_regs (tid);
483       return;
484     }
485 
486   if (getfpregs_supplies (regno))
487     {
488       fetch_fpregs (tid);
489       return;
490     }
491 
492   internal_error (__FILE__, __LINE__,
493 		  "Got request for bad register number %d.", regno);
494 }
495 
496 /* Store register REGNO back into the child process.  If REGNO is -1,
497    do this for all registers (including the floating point and SSE
498    registers).  */
499 void
store_inferior_registers(int regno)500 store_inferior_registers (int regno)
501 {
502   int tid;
503 
504   /* Use the old method of poking around in `struct user' if the
505      SETREGS request isn't available.  */
506   if (! have_ptrace_getregs)
507     {
508       old_store_inferior_registers (regno);
509       return;
510     }
511 
512   /* GNU/Linux LWP ID's are process ID's.  */
513   tid = TIDGET (inferior_ptid);
514   if (tid == 0)
515     tid = PIDGET (inferior_ptid);	/* Not a threaded program.  */
516 
517   /* Use the PTRACE_SETFPREGS requests whenever possible, since it
518      transfers more registers in one system call.  But remember that
519      store_fpregs can fail, and return zero.  */
520   if (regno == -1)
521     {
522       store_regs (tid, regno);
523       store_fpregs (tid, regno);
524       return;
525     }
526 
527   if (getregs_supplies (regno))
528     {
529       store_regs (tid, regno);
530       return;
531     }
532 
533   if (getfpregs_supplies (regno))
534     {
535       store_fpregs (tid, regno);
536       return;
537     }
538 
539   internal_error (__FILE__, __LINE__,
540 		  "Got request to store bad register number %d.", regno);
541 }
542 
543 /* Interpreting register set info found in core files.  */
544 
545 /* Provide registers to GDB from a core file.
546 
547    (We can't use the generic version of this function in
548    core-regset.c, because we need to use elf_gregset_t instead of
549    gregset_t.)
550 
551    CORE_REG_SECT points to an array of bytes, which are the contents
552    of a `note' from a core file which BFD thinks might contain
553    register contents.  CORE_REG_SIZE is its size.
554 
555    WHICH says which register set corelow suspects this is:
556      0 --- the general-purpose register set, in elf_gregset_t format
557      2 --- the floating-point register set, in elf_fpregset_t format
558 
559    REG_ADDR isn't used on GNU/Linux.  */
560 
561 static void
fetch_core_registers(char * core_reg_sect,unsigned core_reg_size,int which,CORE_ADDR reg_addr)562 fetch_core_registers (char *core_reg_sect, unsigned core_reg_size,
563 		      int which, CORE_ADDR reg_addr)
564 {
565   elf_gregset_t gregset;
566   elf_fpregset_t fpregset;
567 
568   switch (which)
569     {
570     case 0:
571       if (core_reg_size != sizeof (gregset))
572 	warning ("Wrong size gregset in core file.");
573       else
574 	{
575 	  memcpy (&gregset, core_reg_sect, sizeof (gregset));
576 	  supply_gregset (&gregset);
577 	}
578       break;
579 
580     case 2:
581       if (core_reg_size != sizeof (fpregset))
582 	warning ("Wrong size fpregset in core file.");
583       else
584 	{
585 	  memcpy (&fpregset, core_reg_sect, sizeof (fpregset));
586 	  supply_fpregset (&fpregset);
587 	}
588       break;
589 
590     default:
591       /* We've covered all the kinds of registers we know about here,
592          so this must be something we wouldn't know what to do with
593          anyway.  Just ignore it.  */
594       break;
595     }
596 }
597 
598 
599 int
kernel_u_size(void)600 kernel_u_size (void)
601 {
602   return (sizeof (struct user));
603 }
604 
605 /* Register that we are able to handle GNU/Linux ELF core file
606    formats.  */
607 
608 static struct core_fns linux_elf_core_fns =
609 {
610   bfd_target_elf_flavour,		/* core_flavour */
611   default_check_format,			/* check_format */
612   default_core_sniffer,			/* core_sniffer */
613   fetch_core_registers,			/* core_read_registers */
614   NULL					/* next */
615 };
616 
617 void
_initialize_m68k_linux_nat(void)618 _initialize_m68k_linux_nat (void)
619 {
620   deprecated_add_core_fns (&linux_elf_core_fns);
621 }
622