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i386-darwin-nat.c revision 1.1.1.1
      1 /* Darwin support for GDB, the GNU debugger.
      2    Copyright (C) 1997-2014 Free Software Foundation, Inc.
      3 
      4    Contributed by Apple Computer, 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 3 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, see <http://www.gnu.org/licenses/>.  */
     20 
     21 #include "defs.h"
     22 #include "frame.h"
     23 #include "inferior.h"
     24 #include "target.h"
     25 #include "symfile.h"
     26 #include "symtab.h"
     27 #include "objfiles.h"
     28 #include "gdbcmd.h"
     29 #include "regcache.h"
     30 #include "gdb_assert.h"
     31 #include "i386-tdep.h"
     32 #include "i387-tdep.h"
     33 #include "gdbarch.h"
     34 #include "arch-utils.h"
     35 #include "gdbcore.h"
     36 
     37 #include "i386-nat.h"
     38 #include "darwin-nat.h"
     39 #include "i386-darwin-tdep.h"
     40 
     41 #ifdef BFD64
     42 #include "amd64-nat.h"
     43 #include "amd64-tdep.h"
     44 #include "amd64-darwin-tdep.h"
     45 #endif
     46 
     47 /* Read register values from the inferior process.
     48    If REGNO is -1, do this for all registers.
     49    Otherwise, REGNO specifies which register (so we can save time).  */
     50 static void
     51 i386_darwin_fetch_inferior_registers (struct target_ops *ops,
     52 				      struct regcache *regcache, int regno)
     53 {
     54   thread_t current_thread = ptid_get_tid (inferior_ptid);
     55   int fetched = 0;
     56   struct gdbarch *gdbarch = get_regcache_arch (regcache);
     57 
     58 #ifdef BFD64
     59   if (gdbarch_ptr_bit (gdbarch) == 64)
     60     {
     61       if (regno == -1 || amd64_native_gregset_supplies_p (gdbarch, regno))
     62         {
     63           x86_thread_state_t gp_regs;
     64           unsigned int gp_count = x86_THREAD_STATE_COUNT;
     65           kern_return_t ret;
     66 
     67 	  ret = thread_get_state
     68             (current_thread, x86_THREAD_STATE, (thread_state_t) & gp_regs,
     69              &gp_count);
     70 	  if (ret != KERN_SUCCESS)
     71 	    {
     72 	      printf_unfiltered (_("Error calling thread_get_state for "
     73 				   "GP registers for thread 0x%lx\n"),
     74 				 (unsigned long) current_thread);
     75 	      MACH_CHECK_ERROR (ret);
     76 	    }
     77 	  amd64_supply_native_gregset (regcache, &gp_regs.uts, -1);
     78           fetched++;
     79         }
     80 
     81       if (regno == -1 || !amd64_native_gregset_supplies_p (gdbarch, regno))
     82         {
     83           x86_float_state_t fp_regs;
     84           unsigned int fp_count = x86_FLOAT_STATE_COUNT;
     85           kern_return_t ret;
     86 
     87 	  ret = thread_get_state
     88             (current_thread, x86_FLOAT_STATE, (thread_state_t) & fp_regs,
     89              &fp_count);
     90 	  if (ret != KERN_SUCCESS)
     91 	    {
     92 	      printf_unfiltered (_("Error calling thread_get_state for "
     93 				   "float registers for thread 0x%lx\n"),
     94 				 (unsigned long) current_thread);
     95 	      MACH_CHECK_ERROR (ret);
     96 	    }
     97           amd64_supply_fxsave (regcache, -1, &fp_regs.ufs.fs64.__fpu_fcw);
     98           fetched++;
     99         }
    100     }
    101   else
    102 #endif
    103     {
    104       if (regno == -1 || regno < I386_NUM_GREGS)
    105         {
    106           x86_thread_state32_t gp_regs;
    107           unsigned int gp_count = x86_THREAD_STATE32_COUNT;
    108           kern_return_t ret;
    109 	  int i;
    110 
    111 	  ret = thread_get_state
    112             (current_thread, x86_THREAD_STATE32, (thread_state_t) &gp_regs,
    113              &gp_count);
    114 	  if (ret != KERN_SUCCESS)
    115 	    {
    116 	      printf_unfiltered (_("Error calling thread_get_state for "
    117 				   "GP registers for thread 0x%lx\n"),
    118 				 (unsigned long) current_thread);
    119 	      MACH_CHECK_ERROR (ret);
    120 	    }
    121 	  for (i = 0; i < I386_NUM_GREGS; i++)
    122 	    regcache_raw_supply
    123 	      (regcache, i,
    124 	       (char *)&gp_regs + i386_darwin_thread_state_reg_offset[i]);
    125 
    126           fetched++;
    127         }
    128 
    129       if (regno == -1
    130 	  || (regno >= I386_ST0_REGNUM && regno < I386_SSE_NUM_REGS))
    131         {
    132           x86_float_state32_t fp_regs;
    133           unsigned int fp_count = x86_FLOAT_STATE32_COUNT;
    134           kern_return_t ret;
    135 
    136 	  ret = thread_get_state
    137             (current_thread, x86_FLOAT_STATE32, (thread_state_t) &fp_regs,
    138              &fp_count);
    139 	  if (ret != KERN_SUCCESS)
    140 	    {
    141 	      printf_unfiltered (_("Error calling thread_get_state for "
    142 				   "float registers for thread 0x%lx\n"),
    143 				 (unsigned long) current_thread);
    144 	      MACH_CHECK_ERROR (ret);
    145 	    }
    146           i387_supply_fxsave (regcache, -1, &fp_regs.__fpu_fcw);
    147           fetched++;
    148         }
    149     }
    150 
    151   if (! fetched)
    152     {
    153       warning (_("unknown register %d"), regno);
    154       regcache_raw_supply (regcache, regno, NULL);
    155     }
    156 }
    157 
    158 /* Store our register values back into the inferior.
    159    If REGNO is -1, do this for all registers.
    160    Otherwise, REGNO specifies which register (so we can save time).  */
    161 
    162 static void
    163 i386_darwin_store_inferior_registers (struct target_ops *ops,
    164 				      struct regcache *regcache, int regno)
    165 {
    166   thread_t current_thread = ptid_get_tid (inferior_ptid);
    167   struct gdbarch *gdbarch = get_regcache_arch (regcache);
    168 
    169 #ifdef BFD64
    170   if (gdbarch_ptr_bit (gdbarch) == 64)
    171     {
    172       if (regno == -1 || amd64_native_gregset_supplies_p (gdbarch, regno))
    173         {
    174           x86_thread_state_t gp_regs;
    175           kern_return_t ret;
    176 	  unsigned int gp_count = x86_THREAD_STATE_COUNT;
    177 
    178 	  ret = thread_get_state
    179 	    (current_thread, x86_THREAD_STATE, (thread_state_t) &gp_regs,
    180 	     &gp_count);
    181           MACH_CHECK_ERROR (ret);
    182 	  gdb_assert (gp_regs.tsh.flavor == x86_THREAD_STATE64);
    183           gdb_assert (gp_regs.tsh.count == x86_THREAD_STATE64_COUNT);
    184 
    185 	  amd64_collect_native_gregset (regcache, &gp_regs.uts, regno);
    186 
    187           ret = thread_set_state (current_thread, x86_THREAD_STATE,
    188                                   (thread_state_t) &gp_regs,
    189                                   x86_THREAD_STATE_COUNT);
    190           MACH_CHECK_ERROR (ret);
    191         }
    192 
    193       if (regno == -1 || !amd64_native_gregset_supplies_p (gdbarch, regno))
    194         {
    195           x86_float_state_t fp_regs;
    196           kern_return_t ret;
    197 	  unsigned int fp_count = x86_FLOAT_STATE_COUNT;
    198 
    199 	  ret = thread_get_state
    200 	    (current_thread, x86_FLOAT_STATE, (thread_state_t) & fp_regs,
    201 	     &fp_count);
    202           MACH_CHECK_ERROR (ret);
    203           gdb_assert (fp_regs.fsh.flavor == x86_FLOAT_STATE64);
    204           gdb_assert (fp_regs.fsh.count == x86_FLOAT_STATE64_COUNT);
    205 
    206 	  amd64_collect_fxsave (regcache, regno, &fp_regs.ufs.fs64.__fpu_fcw);
    207 
    208 	  ret = thread_set_state (current_thread, x86_FLOAT_STATE,
    209 				  (thread_state_t) & fp_regs,
    210 				  x86_FLOAT_STATE_COUNT);
    211 	  MACH_CHECK_ERROR (ret);
    212         }
    213     }
    214   else
    215 #endif
    216     {
    217       if (regno == -1 || regno < I386_NUM_GREGS)
    218         {
    219           x86_thread_state32_t gp_regs;
    220           kern_return_t ret;
    221           unsigned int gp_count = x86_THREAD_STATE32_COUNT;
    222 	  int i;
    223 
    224           ret = thread_get_state
    225             (current_thread, x86_THREAD_STATE32, (thread_state_t) &gp_regs,
    226              &gp_count);
    227 	  MACH_CHECK_ERROR (ret);
    228 
    229 	  for (i = 0; i < I386_NUM_GREGS; i++)
    230 	    if (regno == -1 || regno == i)
    231 	      regcache_raw_collect
    232 		(regcache, i,
    233 		 (char *)&gp_regs + i386_darwin_thread_state_reg_offset[i]);
    234 
    235           ret = thread_set_state (current_thread, x86_THREAD_STATE32,
    236                                   (thread_state_t) &gp_regs,
    237                                   x86_THREAD_STATE32_COUNT);
    238           MACH_CHECK_ERROR (ret);
    239         }
    240 
    241       if (regno == -1
    242 	  || (regno >= I386_ST0_REGNUM && regno < I386_SSE_NUM_REGS))
    243         {
    244           x86_float_state32_t fp_regs;
    245           unsigned int fp_count = x86_FLOAT_STATE32_COUNT;
    246           kern_return_t ret;
    247 
    248 	  ret = thread_get_state
    249             (current_thread, x86_FLOAT_STATE32, (thread_state_t) & fp_regs,
    250              &fp_count);
    251 	  MACH_CHECK_ERROR (ret);
    252 
    253 	  i387_collect_fxsave (regcache, regno, &fp_regs.__fpu_fcw);
    254 
    255 	  ret = thread_set_state (current_thread, x86_FLOAT_STATE32,
    256 				  (thread_state_t) &fp_regs,
    257 				  x86_FLOAT_STATE32_COUNT);
    258 	  MACH_CHECK_ERROR (ret);
    259         }
    260     }
    261 }
    262 
    263 /* Support for debug registers, boosted mostly from i386-linux-nat.c.  */
    264 
    265 static void
    266 i386_darwin_dr_set (int regnum, CORE_ADDR value)
    267 {
    268   int current_pid;
    269   thread_t current_thread;
    270   x86_debug_state_t dr_regs;
    271   kern_return_t ret;
    272   unsigned int dr_count;
    273 
    274   gdb_assert (regnum >= 0 && regnum <= DR_CONTROL);
    275 
    276   current_thread = ptid_get_tid (inferior_ptid);
    277 
    278   dr_regs.dsh.flavor = x86_DEBUG_STATE;
    279   dr_regs.dsh.count = x86_DEBUG_STATE_COUNT;
    280   dr_count = x86_DEBUG_STATE_COUNT;
    281   ret = thread_get_state (current_thread, x86_DEBUG_STATE,
    282                           (thread_state_t) &dr_regs, &dr_count);
    283   MACH_CHECK_ERROR (ret);
    284 
    285   switch (dr_regs.dsh.flavor)
    286     {
    287     case x86_DEBUG_STATE32:
    288       switch (regnum)
    289 	{
    290 	case 0:
    291 	  dr_regs.uds.ds32.__dr0 = value;
    292 	  break;
    293 	case 1:
    294 	  dr_regs.uds.ds32.__dr1 = value;
    295 	  break;
    296 	case 2:
    297 	  dr_regs.uds.ds32.__dr2 = value;
    298 	  break;
    299 	case 3:
    300 	  dr_regs.uds.ds32.__dr3 = value;
    301 	  break;
    302 	case 4:
    303 	  dr_regs.uds.ds32.__dr4 = value;
    304 	  break;
    305 	case 5:
    306 	  dr_regs.uds.ds32.__dr5 = value;
    307 	  break;
    308 	case 6:
    309 	  dr_regs.uds.ds32.__dr6 = value;
    310 	  break;
    311 	case 7:
    312 	  dr_regs.uds.ds32.__dr7 = value;
    313 	  break;
    314 	}
    315       break;
    316 #ifdef BFD64
    317     case x86_DEBUG_STATE64:
    318       switch (regnum)
    319 	{
    320 	case 0:
    321 	  dr_regs.uds.ds64.__dr0 = value;
    322 	  break;
    323 	case 1:
    324 	  dr_regs.uds.ds64.__dr1 = value;
    325 	  break;
    326 	case 2:
    327 	  dr_regs.uds.ds64.__dr2 = value;
    328 	  break;
    329 	case 3:
    330 	  dr_regs.uds.ds64.__dr3 = value;
    331 	  break;
    332 	case 4:
    333 	  dr_regs.uds.ds64.__dr4 = value;
    334 	  break;
    335 	case 5:
    336 	  dr_regs.uds.ds64.__dr5 = value;
    337 	  break;
    338 	case 6:
    339 	  dr_regs.uds.ds64.__dr6 = value;
    340 	  break;
    341 	case 7:
    342 	  dr_regs.uds.ds64.__dr7 = value;
    343 	  break;
    344 	}
    345       break;
    346 #endif
    347     }
    348 
    349   ret = thread_set_state (current_thread, dr_regs.dsh.flavor,
    350                           (thread_state_t) &dr_regs.uds, dr_count);
    351 
    352   MACH_CHECK_ERROR (ret);
    353 }
    354 
    355 static CORE_ADDR
    356 i386_darwin_dr_get (int regnum)
    357 {
    358   thread_t current_thread;
    359   x86_debug_state_t dr_regs;
    360   kern_return_t ret;
    361   unsigned int dr_count;
    362 
    363   gdb_assert (regnum >= 0 && regnum <= DR_CONTROL);
    364 
    365   current_thread = ptid_get_tid (inferior_ptid);
    366 
    367   dr_regs.dsh.flavor = x86_DEBUG_STATE;
    368   dr_regs.dsh.count = x86_DEBUG_STATE_COUNT;
    369   dr_count = x86_DEBUG_STATE_COUNT;
    370   ret = thread_get_state (current_thread, x86_DEBUG_STATE,
    371                           (thread_state_t) &dr_regs, &dr_count);
    372   MACH_CHECK_ERROR (ret);
    373 
    374   switch (dr_regs.dsh.flavor)
    375     {
    376     case x86_DEBUG_STATE32:
    377       switch (regnum)
    378 	{
    379 	case 0:
    380 	  return dr_regs.uds.ds32.__dr0;
    381 	case 1:
    382 	  return dr_regs.uds.ds32.__dr1;
    383 	case 2:
    384 	  return dr_regs.uds.ds32.__dr2;
    385 	case 3:
    386 	  return dr_regs.uds.ds32.__dr3;
    387 	case 4:
    388 	  return dr_regs.uds.ds32.__dr4;
    389 	case 5:
    390 	  return dr_regs.uds.ds32.__dr5;
    391 	case 6:
    392 	  return dr_regs.uds.ds32.__dr6;
    393 	case 7:
    394 	  return dr_regs.uds.ds32.__dr7;
    395 	default:
    396 	  return -1;
    397 	}
    398       break;
    399 #ifdef BFD64
    400     case x86_DEBUG_STATE64:
    401       switch (regnum)
    402 	{
    403 	case 0:
    404 	  return dr_regs.uds.ds64.__dr0;
    405 	case 1:
    406 	  return dr_regs.uds.ds64.__dr1;
    407 	case 2:
    408 	  return dr_regs.uds.ds64.__dr2;
    409 	case 3:
    410 	  return dr_regs.uds.ds64.__dr3;
    411 	case 4:
    412 	  return dr_regs.uds.ds64.__dr4;
    413 	case 5:
    414 	  return dr_regs.uds.ds64.__dr5;
    415 	case 6:
    416 	  return dr_regs.uds.ds64.__dr6;
    417 	case 7:
    418 	  return dr_regs.uds.ds64.__dr7;
    419 	default:
    420 	  return -1;
    421 	}
    422       break;
    423 #endif
    424     default:
    425       return -1;
    426     }
    427 }
    428 
    429 static void
    430 i386_darwin_dr_set_control (unsigned long control)
    431 {
    432   i386_darwin_dr_set (DR_CONTROL, control);
    433 }
    434 
    435 static void
    436 i386_darwin_dr_set_addr (int regnum, CORE_ADDR addr)
    437 {
    438   gdb_assert (regnum >= 0 && regnum <= DR_LASTADDR - DR_FIRSTADDR);
    439 
    440   i386_darwin_dr_set (DR_FIRSTADDR + regnum, addr);
    441 }
    442 
    443 static CORE_ADDR
    444 i386_darwin_dr_get_addr (int regnum)
    445 {
    446   return i386_darwin_dr_get (regnum);
    447 }
    448 
    449 static unsigned long
    450 i386_darwin_dr_get_status (void)
    451 {
    452   return i386_darwin_dr_get (DR_STATUS);
    453 }
    454 
    455 static unsigned long
    456 i386_darwin_dr_get_control (void)
    457 {
    458   return i386_darwin_dr_get (DR_CONTROL);
    459 }
    460 
    461 void
    462 darwin_check_osabi (darwin_inferior *inf, thread_t thread)
    463 {
    464   if (gdbarch_osabi (target_gdbarch ()) == GDB_OSABI_UNKNOWN)
    465     {
    466       /* Attaching to a process.  Let's figure out what kind it is.  */
    467       x86_thread_state_t gp_regs;
    468       struct gdbarch_info info;
    469       unsigned int gp_count = x86_THREAD_STATE_COUNT;
    470       kern_return_t ret;
    471 
    472       ret = thread_get_state (thread, x86_THREAD_STATE,
    473 			      (thread_state_t) &gp_regs, &gp_count);
    474       if (ret != KERN_SUCCESS)
    475 	{
    476 	  MACH_CHECK_ERROR (ret);
    477 	  return;
    478 	}
    479 
    480       gdbarch_info_init (&info);
    481       gdbarch_info_fill (&info);
    482       info.byte_order = gdbarch_byte_order (target_gdbarch ());
    483       info.osabi = GDB_OSABI_DARWIN;
    484       if (gp_regs.tsh.flavor == x86_THREAD_STATE64)
    485 	info.bfd_arch_info = bfd_lookup_arch (bfd_arch_i386,
    486 					      bfd_mach_x86_64);
    487       else
    488 	info.bfd_arch_info = bfd_lookup_arch (bfd_arch_i386,
    489 					      bfd_mach_i386_i386);
    490       gdbarch_update_p (info);
    491     }
    492 }
    493 
    494 #define X86_EFLAGS_T 0x100UL
    495 
    496 /* Returning from a signal trampoline is done by calling a
    497    special system call (sigreturn).  This system call
    498    restores the registers that were saved when the signal was
    499    raised, including %eflags/%rflags.  That means that single-stepping
    500    won't work.  Instead, we'll have to modify the signal context
    501    that's about to be restored, and set the trace flag there.  */
    502 
    503 static int
    504 i386_darwin_sstep_at_sigreturn (x86_thread_state_t *regs)
    505 {
    506   enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
    507   static const gdb_byte darwin_syscall[] = { 0xcd, 0x80 }; /* int 0x80 */
    508   gdb_byte buf[sizeof (darwin_syscall)];
    509 
    510   /* Check if PC is at a sigreturn system call.  */
    511   if (target_read_memory (regs->uts.ts32.__eip, buf, sizeof (buf)) == 0
    512       && memcmp (buf, darwin_syscall, sizeof (darwin_syscall)) == 0
    513       && regs->uts.ts32.__eax == 0xb8 /* SYS_sigreturn */)
    514     {
    515       ULONGEST uctx_addr;
    516       ULONGEST mctx_addr;
    517       ULONGEST flags_addr;
    518       unsigned int eflags;
    519 
    520       uctx_addr = read_memory_unsigned_integer
    521 		    (regs->uts.ts32.__esp + 4, 4, byte_order);
    522       mctx_addr = read_memory_unsigned_integer
    523 		    (uctx_addr + 28, 4, byte_order);
    524 
    525       flags_addr = mctx_addr + 12 + 9 * 4;
    526       read_memory (flags_addr, (gdb_byte *) &eflags, 4);
    527       eflags |= X86_EFLAGS_T;
    528       write_memory (flags_addr, (gdb_byte *) &eflags, 4);
    529 
    530       return 1;
    531     }
    532   return 0;
    533 }
    534 
    535 #ifdef BFD64
    536 static int
    537 amd64_darwin_sstep_at_sigreturn (x86_thread_state_t *regs)
    538 {
    539   enum bfd_endian byte_order = gdbarch_byte_order (target_gdbarch ());
    540   static const gdb_byte darwin_syscall[] = { 0x0f, 0x05 }; /* syscall */
    541   gdb_byte buf[sizeof (darwin_syscall)];
    542 
    543   /* Check if PC is at a sigreturn system call.  */
    544   if (target_read_memory (regs->uts.ts64.__rip, buf, sizeof (buf)) == 0
    545       && memcmp (buf, darwin_syscall, sizeof (darwin_syscall)) == 0
    546       && (regs->uts.ts64.__rax & 0xffffffff) == 0x20000b8 /* SYS_sigreturn */)
    547     {
    548       ULONGEST mctx_addr;
    549       ULONGEST flags_addr;
    550       unsigned int rflags;
    551 
    552       mctx_addr = read_memory_unsigned_integer
    553 		    (regs->uts.ts64.__rdi + 48, 8, byte_order);
    554       flags_addr = mctx_addr + 16 + 17 * 8;
    555 
    556       /* AMD64 is little endian.  */
    557       read_memory (flags_addr, (gdb_byte *) &rflags, 4);
    558       rflags |= X86_EFLAGS_T;
    559       write_memory (flags_addr, (gdb_byte *) &rflags, 4);
    560 
    561       return 1;
    562     }
    563   return 0;
    564 }
    565 #endif
    566 
    567 void
    568 darwin_set_sstep (thread_t thread, int enable)
    569 {
    570   x86_thread_state_t regs;
    571   unsigned int count = x86_THREAD_STATE_COUNT;
    572   kern_return_t kret;
    573 
    574   kret = thread_get_state (thread, x86_THREAD_STATE,
    575 			   (thread_state_t) &regs, &count);
    576   if (kret != KERN_SUCCESS)
    577     {
    578       printf_unfiltered (_("darwin_set_sstep: error %x, thread=%x\n"),
    579 			 kret, thread);
    580       return;
    581     }
    582 
    583   switch (regs.tsh.flavor)
    584     {
    585     case x86_THREAD_STATE32:
    586       {
    587 	__uint32_t bit = enable ? X86_EFLAGS_T : 0;
    588 
    589 	if (enable && i386_darwin_sstep_at_sigreturn (&regs))
    590 	  return;
    591 	if ((regs.uts.ts32.__eflags & X86_EFLAGS_T) == bit)
    592 	  return;
    593 	regs.uts.ts32.__eflags
    594 	  = (regs.uts.ts32.__eflags & ~X86_EFLAGS_T) | bit;
    595 	kret = thread_set_state (thread, x86_THREAD_STATE,
    596 				 (thread_state_t) &regs, count);
    597 	MACH_CHECK_ERROR (kret);
    598       }
    599       break;
    600 #ifdef BFD64
    601     case x86_THREAD_STATE64:
    602       {
    603 	__uint64_t bit = enable ? X86_EFLAGS_T : 0;
    604 
    605 	if (enable && amd64_darwin_sstep_at_sigreturn (&regs))
    606 	  return;
    607 	if ((regs.uts.ts64.__rflags & X86_EFLAGS_T) == bit)
    608 	  return;
    609 	regs.uts.ts64.__rflags
    610 	  = (regs.uts.ts64.__rflags & ~X86_EFLAGS_T) | bit;
    611 	kret = thread_set_state (thread, x86_THREAD_STATE,
    612 				 (thread_state_t) &regs, count);
    613 	MACH_CHECK_ERROR (kret);
    614       }
    615       break;
    616 #endif
    617     default:
    618       error (_("darwin_set_sstep: unknown flavour: %d"), regs.tsh.flavor);
    619     }
    620 }
    621 
    622 void
    623 darwin_complete_target (struct target_ops *target)
    624 {
    625 #ifdef BFD64
    626   amd64_native_gregset64_reg_offset = amd64_darwin_thread_state_reg_offset;
    627   amd64_native_gregset64_num_regs = amd64_darwin_thread_state_num_regs;
    628   amd64_native_gregset32_reg_offset = i386_darwin_thread_state_reg_offset;
    629   amd64_native_gregset32_num_regs = i386_darwin_thread_state_num_regs;
    630 #endif
    631 
    632   i386_use_watchpoints (target);
    633 
    634   i386_dr_low.set_control = i386_darwin_dr_set_control;
    635   i386_dr_low.set_addr = i386_darwin_dr_set_addr;
    636   i386_dr_low.get_addr = i386_darwin_dr_get_addr;
    637   i386_dr_low.get_status = i386_darwin_dr_get_status;
    638   i386_dr_low.get_control = i386_darwin_dr_get_control;
    639 
    640   /* Let's assume that the kernel is 64 bits iff the executable is.  */
    641 #ifdef __x86_64__
    642   i386_set_debug_register_length (8);
    643 #else
    644   i386_set_debug_register_length (4);
    645 #endif
    646 
    647   target->to_fetch_registers = i386_darwin_fetch_inferior_registers;
    648   target->to_store_registers = i386_darwin_store_inferior_registers;
    649 }
    650