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[/] [openrisc/] [trunk/] [gnu-old/] [gdb-7.1/] [gdb/] [ppcobsd-tdep.c] - Diff between revs 834 and 842

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/* Target-dependent code for OpenBSD/powerpc.
/* Target-dependent code for OpenBSD/powerpc.
 
 
   Copyright (C) 2004, 2005, 2006, 2007, 2008, 2009, 2010
   Copyright (C) 2004, 2005, 2006, 2007, 2008, 2009, 2010
   Free Software Foundation, Inc.
   Free Software Foundation, Inc.
 
 
   This file is part of GDB.
   This file is part of GDB.
 
 
   This program is free software; you can redistribute it and/or modify
   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 3 of the License, or
   the Free Software Foundation; either version 3 of the License, or
   (at your option) any later version.
   (at your option) any later version.
 
 
   This program is distributed in the hope that it will be useful,
   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.
   GNU General Public License for more details.
 
 
   You should have received a copy of the GNU General Public License
   You should have received a copy of the GNU General Public License
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
 
 
#include "defs.h"
#include "defs.h"
#include "arch-utils.h"
#include "arch-utils.h"
#include "frame.h"
#include "frame.h"
#include "frame-unwind.h"
#include "frame-unwind.h"
#include "gdbtypes.h"
#include "gdbtypes.h"
#include "osabi.h"
#include "osabi.h"
#include "regcache.h"
#include "regcache.h"
#include "regset.h"
#include "regset.h"
#include "symtab.h"
#include "symtab.h"
#include "trad-frame.h"
#include "trad-frame.h"
 
 
#include "gdb_assert.h"
#include "gdb_assert.h"
#include "gdb_string.h"
#include "gdb_string.h"
 
 
#include "ppc-tdep.h"
#include "ppc-tdep.h"
#include "ppcobsd-tdep.h"
#include "ppcobsd-tdep.h"
#include "solib-svr4.h"
#include "solib-svr4.h"
 
 
/* Register offsets from <machine/reg.h>.  */
/* Register offsets from <machine/reg.h>.  */
struct ppc_reg_offsets ppcobsd_reg_offsets;
struct ppc_reg_offsets ppcobsd_reg_offsets;
struct ppc_reg_offsets ppcobsd_fpreg_offsets;
struct ppc_reg_offsets ppcobsd_fpreg_offsets;


 
 
/* Core file support.  */
/* Core file support.  */
 
 
/* Supply register REGNUM in the general-purpose register set REGSET
/* Supply register REGNUM in the general-purpose register set REGSET
   from the buffer specified by GREGS and LEN to register cache
   from the buffer specified by GREGS and LEN to register cache
   REGCACHE.  If REGNUM is -1, do this for all registers in REGSET.  */
   REGCACHE.  If REGNUM is -1, do this for all registers in REGSET.  */
 
 
void
void
ppcobsd_supply_gregset (const struct regset *regset,
ppcobsd_supply_gregset (const struct regset *regset,
                        struct regcache *regcache, int regnum,
                        struct regcache *regcache, int regnum,
                        const void *gregs, size_t len)
                        const void *gregs, size_t len)
{
{
  ppc_supply_gregset (regset, regcache, regnum, gregs, len);
  ppc_supply_gregset (regset, regcache, regnum, gregs, len);
  ppc_supply_fpregset (regset, regcache, regnum, gregs, len);
  ppc_supply_fpregset (regset, regcache, regnum, gregs, len);
}
}
 
 
/* Collect register REGNUM in the general-purpose register set
/* Collect register REGNUM in the general-purpose register set
   REGSET. from register cache REGCACHE into the buffer specified by
   REGSET. from register cache REGCACHE into the buffer specified by
   GREGS and LEN.  If REGNUM is -1, do this for all registers in
   GREGS and LEN.  If REGNUM is -1, do this for all registers in
   REGSET.  */
   REGSET.  */
 
 
void
void
ppcobsd_collect_gregset (const struct regset *regset,
ppcobsd_collect_gregset (const struct regset *regset,
                         const struct regcache *regcache, int regnum,
                         const struct regcache *regcache, int regnum,
                         void *gregs, size_t len)
                         void *gregs, size_t len)
{
{
  ppc_collect_gregset (regset, regcache, regnum, gregs, len);
  ppc_collect_gregset (regset, regcache, regnum, gregs, len);
  ppc_collect_fpregset (regset, regcache, regnum, gregs, len);
  ppc_collect_fpregset (regset, regcache, regnum, gregs, len);
}
}
 
 
/* OpenBSD/powerpc register set.  */
/* OpenBSD/powerpc register set.  */
 
 
struct regset ppcobsd_gregset =
struct regset ppcobsd_gregset =
{
{
  &ppcobsd_reg_offsets,
  &ppcobsd_reg_offsets,
  ppcobsd_supply_gregset
  ppcobsd_supply_gregset
};
};
 
 
struct regset ppcobsd_fpregset =
struct regset ppcobsd_fpregset =
{
{
  &ppcobsd_fpreg_offsets,
  &ppcobsd_fpreg_offsets,
  ppc_supply_fpregset
  ppc_supply_fpregset
};
};
 
 
/* Return the appropriate register set for the core section identified
/* Return the appropriate register set for the core section identified
   by SECT_NAME and SECT_SIZE.  */
   by SECT_NAME and SECT_SIZE.  */
 
 
static const struct regset *
static const struct regset *
ppcobsd_regset_from_core_section (struct gdbarch *gdbarch,
ppcobsd_regset_from_core_section (struct gdbarch *gdbarch,
                                  const char *sect_name, size_t sect_size)
                                  const char *sect_name, size_t sect_size)
{
{
  if (strcmp (sect_name, ".reg") == 0 && sect_size >= 412)
  if (strcmp (sect_name, ".reg") == 0 && sect_size >= 412)
    return &ppcobsd_gregset;
    return &ppcobsd_gregset;
 
 
  return NULL;
  return NULL;
}
}


 
 
/* Signal trampolines.  */
/* Signal trampolines.  */
 
 
/* Since OpenBSD 3.2, the sigtramp routine is mapped at a random page
/* Since OpenBSD 3.2, the sigtramp routine is mapped at a random page
   in virtual memory.  The randomness makes it somewhat tricky to
   in virtual memory.  The randomness makes it somewhat tricky to
   detect it, but fortunately we can rely on the fact that the start
   detect it, but fortunately we can rely on the fact that the start
   of the sigtramp routine is page-aligned.  We recognize the
   of the sigtramp routine is page-aligned.  We recognize the
   trampoline by looking for the code that invokes the sigreturn
   trampoline by looking for the code that invokes the sigreturn
   system call.  The offset where we can find that code varies from
   system call.  The offset where we can find that code varies from
   release to release.
   release to release.
 
 
   By the way, the mapping mentioned above is read-only, so you cannot
   By the way, the mapping mentioned above is read-only, so you cannot
   place a breakpoint in the signal trampoline.  */
   place a breakpoint in the signal trampoline.  */
 
 
/* Default page size.  */
/* Default page size.  */
static const int ppcobsd_page_size = 4096;
static const int ppcobsd_page_size = 4096;
 
 
/* Offset for sigreturn(2).  */
/* Offset for sigreturn(2).  */
static const int ppcobsd_sigreturn_offset[] = {
static const int ppcobsd_sigreturn_offset[] = {
  0x98,                         /* OpenBSD 3.8 */
  0x98,                         /* OpenBSD 3.8 */
  0x0c,                         /* OpenBSD 3.2 */
  0x0c,                         /* OpenBSD 3.2 */
  -1
  -1
};
};
 
 
static int
static int
ppcobsd_sigtramp_frame_sniffer (const struct frame_unwind *self,
ppcobsd_sigtramp_frame_sniffer (const struct frame_unwind *self,
                                struct frame_info *this_frame,
                                struct frame_info *this_frame,
                                void **this_cache)
                                void **this_cache)
{
{
  struct gdbarch *gdbarch = get_frame_arch (this_frame);
  struct gdbarch *gdbarch = get_frame_arch (this_frame);
  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
  CORE_ADDR pc = get_frame_pc (this_frame);
  CORE_ADDR pc = get_frame_pc (this_frame);
  CORE_ADDR start_pc = (pc & ~(ppcobsd_page_size - 1));
  CORE_ADDR start_pc = (pc & ~(ppcobsd_page_size - 1));
  const int *offset;
  const int *offset;
  char *name;
  char *name;
 
 
  find_pc_partial_function (pc, &name, NULL, NULL);
  find_pc_partial_function (pc, &name, NULL, NULL);
  if (name)
  if (name)
    return 0;
    return 0;
 
 
  for (offset = ppcobsd_sigreturn_offset; *offset != -1; offset++)
  for (offset = ppcobsd_sigreturn_offset; *offset != -1; offset++)
    {
    {
      gdb_byte buf[2 * PPC_INSN_SIZE];
      gdb_byte buf[2 * PPC_INSN_SIZE];
      unsigned long insn;
      unsigned long insn;
 
 
      if (!safe_frame_unwind_memory (this_frame, start_pc + *offset,
      if (!safe_frame_unwind_memory (this_frame, start_pc + *offset,
                                     buf, sizeof buf))
                                     buf, sizeof buf))
        continue;
        continue;
 
 
      /* Check for "li r0,SYS_sigreturn".  */
      /* Check for "li r0,SYS_sigreturn".  */
      insn = extract_unsigned_integer (buf, PPC_INSN_SIZE, byte_order);
      insn = extract_unsigned_integer (buf, PPC_INSN_SIZE, byte_order);
      if (insn != 0x38000067)
      if (insn != 0x38000067)
        continue;
        continue;
 
 
      /* Check for "sc".  */
      /* Check for "sc".  */
      insn = extract_unsigned_integer (buf + PPC_INSN_SIZE,
      insn = extract_unsigned_integer (buf + PPC_INSN_SIZE,
                                       PPC_INSN_SIZE, byte_order);
                                       PPC_INSN_SIZE, byte_order);
      if (insn != 0x44000002)
      if (insn != 0x44000002)
        continue;
        continue;
 
 
      return 1;
      return 1;
    }
    }
 
 
  return 0;
  return 0;
}
}
 
 
static struct trad_frame_cache *
static struct trad_frame_cache *
ppcobsd_sigtramp_frame_cache (struct frame_info *this_frame, void **this_cache)
ppcobsd_sigtramp_frame_cache (struct frame_info *this_frame, void **this_cache)
{
{
  struct gdbarch *gdbarch = get_frame_arch (this_frame);
  struct gdbarch *gdbarch = get_frame_arch (this_frame);
  struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
  struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
  struct trad_frame_cache *cache;
  struct trad_frame_cache *cache;
  CORE_ADDR addr, base, func;
  CORE_ADDR addr, base, func;
  gdb_byte buf[PPC_INSN_SIZE];
  gdb_byte buf[PPC_INSN_SIZE];
  unsigned long insn, sigcontext_offset;
  unsigned long insn, sigcontext_offset;
  int i;
  int i;
 
 
  if (*this_cache)
  if (*this_cache)
    return *this_cache;
    return *this_cache;
 
 
  cache = trad_frame_cache_zalloc (this_frame);
  cache = trad_frame_cache_zalloc (this_frame);
  *this_cache = cache;
  *this_cache = cache;
 
 
  func = get_frame_pc (this_frame);
  func = get_frame_pc (this_frame);
  func &= ~(ppcobsd_page_size - 1);
  func &= ~(ppcobsd_page_size - 1);
  if (!safe_frame_unwind_memory (this_frame, func, buf, sizeof buf))
  if (!safe_frame_unwind_memory (this_frame, func, buf, sizeof buf))
    return cache;
    return cache;
 
 
  /* Calculate the offset where we can find `struct sigcontext'.  We
  /* Calculate the offset where we can find `struct sigcontext'.  We
     base our calculation on the amount of stack space reserved by the
     base our calculation on the amount of stack space reserved by the
     first instruction of the signal trampoline.  */
     first instruction of the signal trampoline.  */
  insn = extract_unsigned_integer (buf, PPC_INSN_SIZE, byte_order);
  insn = extract_unsigned_integer (buf, PPC_INSN_SIZE, byte_order);
  sigcontext_offset = (0x10000 - (insn & 0x0000ffff)) + 8;
  sigcontext_offset = (0x10000 - (insn & 0x0000ffff)) + 8;
 
 
  base = get_frame_register_unsigned (this_frame, gdbarch_sp_regnum (gdbarch));
  base = get_frame_register_unsigned (this_frame, gdbarch_sp_regnum (gdbarch));
  addr = base + sigcontext_offset + 2 * tdep->wordsize;
  addr = base + sigcontext_offset + 2 * tdep->wordsize;
  for (i = 0; i < ppc_num_gprs; i++, addr += tdep->wordsize)
  for (i = 0; i < ppc_num_gprs; i++, addr += tdep->wordsize)
    {
    {
      int regnum = i + tdep->ppc_gp0_regnum;
      int regnum = i + tdep->ppc_gp0_regnum;
      trad_frame_set_reg_addr (cache, regnum, addr);
      trad_frame_set_reg_addr (cache, regnum, addr);
    }
    }
  trad_frame_set_reg_addr (cache, tdep->ppc_lr_regnum, addr);
  trad_frame_set_reg_addr (cache, tdep->ppc_lr_regnum, addr);
  addr += tdep->wordsize;
  addr += tdep->wordsize;
  trad_frame_set_reg_addr (cache, tdep->ppc_cr_regnum, addr);
  trad_frame_set_reg_addr (cache, tdep->ppc_cr_regnum, addr);
  addr += tdep->wordsize;
  addr += tdep->wordsize;
  trad_frame_set_reg_addr (cache, tdep->ppc_xer_regnum, addr);
  trad_frame_set_reg_addr (cache, tdep->ppc_xer_regnum, addr);
  addr += tdep->wordsize;
  addr += tdep->wordsize;
  trad_frame_set_reg_addr (cache, tdep->ppc_ctr_regnum, addr);
  trad_frame_set_reg_addr (cache, tdep->ppc_ctr_regnum, addr);
  addr += tdep->wordsize;
  addr += tdep->wordsize;
  trad_frame_set_reg_addr (cache, gdbarch_pc_regnum (gdbarch), addr);
  trad_frame_set_reg_addr (cache, gdbarch_pc_regnum (gdbarch), addr);
  /* SRR0? */
  /* SRR0? */
  addr += tdep->wordsize;
  addr += tdep->wordsize;
 
 
  /* Construct the frame ID using the function start.  */
  /* Construct the frame ID using the function start.  */
  trad_frame_set_id (cache, frame_id_build (base, func));
  trad_frame_set_id (cache, frame_id_build (base, func));
 
 
  return cache;
  return cache;
}
}
 
 
static void
static void
ppcobsd_sigtramp_frame_this_id (struct frame_info *this_frame,
ppcobsd_sigtramp_frame_this_id (struct frame_info *this_frame,
                                void **this_cache, struct frame_id *this_id)
                                void **this_cache, struct frame_id *this_id)
{
{
  struct trad_frame_cache *cache =
  struct trad_frame_cache *cache =
    ppcobsd_sigtramp_frame_cache (this_frame, this_cache);
    ppcobsd_sigtramp_frame_cache (this_frame, this_cache);
 
 
  trad_frame_get_id (cache, this_id);
  trad_frame_get_id (cache, this_id);
}
}
 
 
static struct value *
static struct value *
ppcobsd_sigtramp_frame_prev_register (struct frame_info *this_frame,
ppcobsd_sigtramp_frame_prev_register (struct frame_info *this_frame,
                                      void **this_cache, int regnum)
                                      void **this_cache, int regnum)
{
{
  struct trad_frame_cache *cache =
  struct trad_frame_cache *cache =
    ppcobsd_sigtramp_frame_cache (this_frame, this_cache);
    ppcobsd_sigtramp_frame_cache (this_frame, this_cache);
 
 
  return trad_frame_get_register (cache, this_frame, regnum);
  return trad_frame_get_register (cache, this_frame, regnum);
}
}
 
 
static const struct frame_unwind ppcobsd_sigtramp_frame_unwind = {
static const struct frame_unwind ppcobsd_sigtramp_frame_unwind = {
  SIGTRAMP_FRAME,
  SIGTRAMP_FRAME,
  ppcobsd_sigtramp_frame_this_id,
  ppcobsd_sigtramp_frame_this_id,
  ppcobsd_sigtramp_frame_prev_register,
  ppcobsd_sigtramp_frame_prev_register,
  NULL,
  NULL,
  ppcobsd_sigtramp_frame_sniffer
  ppcobsd_sigtramp_frame_sniffer
};
};


 
 
static void
static void
ppcobsd_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
ppcobsd_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
{
{
  /* OpenBSD doesn't support the 128-bit `long double' from the psABI.  */
  /* OpenBSD doesn't support the 128-bit `long double' from the psABI.  */
  set_gdbarch_long_double_bit (gdbarch, 64);
  set_gdbarch_long_double_bit (gdbarch, 64);
  set_gdbarch_long_double_format (gdbarch, floatformats_ieee_double);
  set_gdbarch_long_double_format (gdbarch, floatformats_ieee_double);
 
 
  /* OpenBSD currently uses a broken GCC.  */
  /* OpenBSD currently uses a broken GCC.  */
  set_gdbarch_return_value (gdbarch, ppc_sysv_abi_broken_return_value);
  set_gdbarch_return_value (gdbarch, ppc_sysv_abi_broken_return_value);
 
 
  /* OpenBSD uses SVR4-style shared libraries.  */
  /* OpenBSD uses SVR4-style shared libraries.  */
  set_solib_svr4_fetch_link_map_offsets
  set_solib_svr4_fetch_link_map_offsets
    (gdbarch, svr4_ilp32_fetch_link_map_offsets);
    (gdbarch, svr4_ilp32_fetch_link_map_offsets);
 
 
  set_gdbarch_regset_from_core_section
  set_gdbarch_regset_from_core_section
    (gdbarch, ppcobsd_regset_from_core_section);
    (gdbarch, ppcobsd_regset_from_core_section);
 
 
  frame_unwind_append_unwinder (gdbarch, &ppcobsd_sigtramp_frame_unwind);
  frame_unwind_append_unwinder (gdbarch, &ppcobsd_sigtramp_frame_unwind);
}
}


 
 
/* OpenBSD uses uses the traditional NetBSD core file format, even for
/* OpenBSD uses uses the traditional NetBSD core file format, even for
   ports that use ELF.  */
   ports that use ELF.  */
#define GDB_OSABI_NETBSD_CORE GDB_OSABI_OPENBSD_ELF
#define GDB_OSABI_NETBSD_CORE GDB_OSABI_OPENBSD_ELF
 
 
static enum gdb_osabi
static enum gdb_osabi
ppcobsd_core_osabi_sniffer (bfd *abfd)
ppcobsd_core_osabi_sniffer (bfd *abfd)
{
{
  if (strcmp (bfd_get_target (abfd), "netbsd-core") == 0)
  if (strcmp (bfd_get_target (abfd), "netbsd-core") == 0)
    return GDB_OSABI_NETBSD_CORE;
    return GDB_OSABI_NETBSD_CORE;
 
 
  return GDB_OSABI_UNKNOWN;
  return GDB_OSABI_UNKNOWN;
}
}


 
 
/* Provide a prototype to silence -Wmissing-prototypes.  */
/* Provide a prototype to silence -Wmissing-prototypes.  */
void _initialize_ppcobsd_tdep (void);
void _initialize_ppcobsd_tdep (void);
 
 
void
void
_initialize_ppcobsd_tdep (void)
_initialize_ppcobsd_tdep (void)
{
{
  /* BFD doesn't set a flavour for NetBSD style a.out core files.  */
  /* BFD doesn't set a flavour for NetBSD style a.out core files.  */
  gdbarch_register_osabi_sniffer (bfd_arch_powerpc, bfd_target_unknown_flavour,
  gdbarch_register_osabi_sniffer (bfd_arch_powerpc, bfd_target_unknown_flavour,
                                  ppcobsd_core_osabi_sniffer);
                                  ppcobsd_core_osabi_sniffer);
 
 
  gdbarch_register_osabi (bfd_arch_rs6000, 0, GDB_OSABI_OPENBSD_ELF,
  gdbarch_register_osabi (bfd_arch_rs6000, 0, GDB_OSABI_OPENBSD_ELF,
                          ppcobsd_init_abi);
                          ppcobsd_init_abi);
  gdbarch_register_osabi (bfd_arch_powerpc, 0, GDB_OSABI_OPENBSD_ELF,
  gdbarch_register_osabi (bfd_arch_powerpc, 0, GDB_OSABI_OPENBSD_ELF,
                          ppcobsd_init_abi);
                          ppcobsd_init_abi);
 
 
  /* Avoid initializing the register offsets again if they were
  /* Avoid initializing the register offsets again if they were
     already initailized by ppcobsd-nat.c.  */
     already initailized by ppcobsd-nat.c.  */
  if (ppcobsd_reg_offsets.pc_offset == 0)
  if (ppcobsd_reg_offsets.pc_offset == 0)
    {
    {
      /* General-purpose registers.  */
      /* General-purpose registers.  */
      ppcobsd_reg_offsets.r0_offset = 0;
      ppcobsd_reg_offsets.r0_offset = 0;
      ppcobsd_reg_offsets.gpr_size = 4;
      ppcobsd_reg_offsets.gpr_size = 4;
      ppcobsd_reg_offsets.xr_size = 4;
      ppcobsd_reg_offsets.xr_size = 4;
      ppcobsd_reg_offsets.pc_offset = 384;
      ppcobsd_reg_offsets.pc_offset = 384;
      ppcobsd_reg_offsets.ps_offset = 388;
      ppcobsd_reg_offsets.ps_offset = 388;
      ppcobsd_reg_offsets.cr_offset = 392;
      ppcobsd_reg_offsets.cr_offset = 392;
      ppcobsd_reg_offsets.lr_offset = 396;
      ppcobsd_reg_offsets.lr_offset = 396;
      ppcobsd_reg_offsets.ctr_offset = 400;
      ppcobsd_reg_offsets.ctr_offset = 400;
      ppcobsd_reg_offsets.xer_offset = 404;
      ppcobsd_reg_offsets.xer_offset = 404;
      ppcobsd_reg_offsets.mq_offset = 408;
      ppcobsd_reg_offsets.mq_offset = 408;
 
 
      /* Floating-point registers.  */
      /* Floating-point registers.  */
      ppcobsd_reg_offsets.f0_offset = 128;
      ppcobsd_reg_offsets.f0_offset = 128;
      ppcobsd_reg_offsets.fpscr_offset = -1;
      ppcobsd_reg_offsets.fpscr_offset = -1;
 
 
      /* AltiVec registers.  */
      /* AltiVec registers.  */
      ppcobsd_reg_offsets.vr0_offset = 0;
      ppcobsd_reg_offsets.vr0_offset = 0;
      ppcobsd_reg_offsets.vscr_offset = 512;
      ppcobsd_reg_offsets.vscr_offset = 512;
      ppcobsd_reg_offsets.vrsave_offset = 520;
      ppcobsd_reg_offsets.vrsave_offset = 520;
    }
    }
 
 
  if (ppcobsd_fpreg_offsets.fpscr_offset == 0)
  if (ppcobsd_fpreg_offsets.fpscr_offset == 0)
    {
    {
      /* Floating-point registers.  */
      /* Floating-point registers.  */
      ppcobsd_reg_offsets.f0_offset = 0;
      ppcobsd_reg_offsets.f0_offset = 0;
      ppcobsd_reg_offsets.fpscr_offset = 256;
      ppcobsd_reg_offsets.fpscr_offset = 256;
      ppcobsd_reg_offsets.fpscr_size = 4;
      ppcobsd_reg_offsets.fpscr_size = 4;
    }
    }
}
}
 
 

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