old-cross-binutils/gdb/i386-nto-tdep.c
H.J. Lu 90884b2b1f Enable XML target descriptions for x86.
gdb/

2010-03-01  H.J. Lu  <hongjiu.lu@intel.com>

	* amd64-linux-nat.c (AMD64_LINUX_USER64_CS): New.
	(amd64_linux_read_description): Likewise.
	(_initialize_amd64_linux_nat): Set to_read_description to
	amd64_linux_read_description.

	* amd64-linux-tdep.c: Include "features/i386/amd64-linux.c".
	(amd64_linux_register_name): Removed.
	(amd64_linux_register_type): Likewise.
	(amd64_linux_core_read_description): New.
	(amd64_linux_init_abi): Set target description to
	tdesc_amd64_linux if needed.  Support orig_rax in target
	description.  Don't call set_gdbarch_register_name nor
	set_gdbarch_register_type.  Call
	set_gdbarch_core_read_description.
	(_initialize_amd64_linux_tdep): Call
	initialize_tdesc_amd64_linux.

	* amd64-linux-tdep.h (tdesc_amd64_linux): New.

	* amd64-tdep.c:  Include "features/i386/amd64.c".
	(amd64_register_names): Removed.
	(amd64_register_name): Likewise.
	(amd64_register_type): Likewise.
	(amd64_init_abi):  Set num_core_regs and register_names.  Set
	target description to tdesc_amd64 if needed.  Don't call
	set_gdbarch_register_name nor set_gdbarch_register_type.
	(_initialize_amd64_tdep): New.

	* i386-linux-nat.c (i386_linux_read_description): New.
	(_initialize_i386_linux_nat): Set to_read_description to
	i386_linux_read_description.

	* i386-linux-tdep.c: Include "features/i386/i386-linux.c".
	(i386_linux_register_name): Removed.
	(i386_linux_core_read_description): New.
	(i386_linux_read_description): Likewise.
	(i386_linux_init_abi): Don't call set_gdbarch_register_name.
	Set target description to tdesc_i386_linux if needed.  Support
	orig_eax.  Set register_reggroup_p.  Call
	set_gdbarch_core_read_description.
	(_initialize_i386_linux_tdep): Call initialize_tdesc_i386_linux.

	* i386-linux-tdep.h (tdesc_i386_linux): New.

	* i386-nto-tdep.c (i386nto_regset_id): Replace I386_NUM_FREGS
	with I387_NUM_REGS.

	* i386-tdep.c: Include "features/i386/i386.c".
	(i386_register_names): Make it const.
	(i386_mmx_names): Likewise.
	(i386_num_register_names): Removed.
	(i386_register_name): Likewise.
	(i386_eflags_type): Likewise.
	(i386_mxcsr_type): Likewise.
	(i386_sse_type): Likewise.
	(i386_register_type): Likewise.
	(i387_ext_type): Call tdesc_find_type instead of arch_float_type.
	(i386_pseudo_register_name): New.
	(i386_pseudo_register_type): Likewise.
	(i386_mmx_type): Make it static.
	(i386_gdbarch_init): Check arch.  Replace I386_NUM_FREGS with
	I387_NUM_REGS.  Set num_core_regs and register_names.  Don't
	call set_gdbarch_register_name nor set_gdbarch_register_type.
	Set register_reggroup_p.  Set target description to tdesc_i386
	if needed.  Call set_tdesc_pseudo_register_type,
	set_tdesc_pseudo_register_name and tdesc_use_registers.
	(_initialize_i386_tdep): Call initialize_tdesc_i386.
	initialize_tdesc_x86_64.

	* i386-tdep.h (gdbarch_tdep): Remove i386_eflags_type,
	i386_mxcsr_type and i386_sse_type.  Add num_core_regs,
	register_names, tdesc and register_reggroup_p.
	(I386_NUM_FREGS): Removed.
	(i386_eflags_type): Likewise.
	(i386_mxcsr_type): Likewise.
	(i386_mmx_type): Likewise.
	(i386_sse_type): Likewise.
	(i386_register_name): Likewise.
	(i386_regnum): Add I386_MXCSR_REGNUM.
	(I386_SSE_NUM_REGS): Defined with I386_MXCSR_REGNUM.

	* i387-tdep.h (I387_NUM_REGS): New.

	* regformats/i386/i386-linux.dat: Generated.
	* regformats/i386/i386.dat: Likewise.
	* regformats/i386/amd64-linux.dat: Likewise.
	* regformats/i386/amd64.dat: Likewise.

	* regformats/reg-i386-linux.dat: Removed.
	* regformats/reg-i386.dat: Likewise.
	* regformats/reg-x86-64-linux.dat: Likewise.
	* regformats/reg-x86-64.dat: Likewise.

gdb/gdbserver/

2010-03-01  H.J. Lu  <hongjiu.lu@intel.com>

	* Makefile.in (clean): Replace reg-i386.c, reg-x86-64.c,
	reg-i386-linux.c and reg-x86-64-linux.c with i386.c, amd64.c,
	i386-linux.c and amd64-linux.c.
	(reg-i386.o): Removed.
	(reg-i386.c): Likewise.
	(reg-i386-linux.o): Likewise.
	(reg-i386-linux.c): Likewise.
	(reg-x86-64.o): Likewise.
	(reg-x86-64.c): Likewise.
	(reg-x86-64-linux.o): Likewise.
	(reg-x86-64-linux.c): Likewise.
	(i386.o): New.
	(i386.c): Likewise.
	(i386-linux.o): Likewise.
	(i386-linux.c): Likewise.
	(amd64.o): Likewise.
	(amd64.c): Likewise.
	(amd64-linux.o): Likewise.
	(amd64-linux.c): Likewise.

	* configure.srv (srv_i386_regobj): New.
	(srv_i386_linux_regobj): Likewise.
	(srv_amd64_regobj): Likewise.
	(srv_amd64_linux_regobj): Likewise.
	(srv_i386_32bit_xmlfiles): Likewise.
	(srv_i386_64bit_xmlfiles): Likewise.
	(srv_i386_xmlfiles): Likewise.
	(srv_amd64_xmlfiles): Likewise.
	(srv_i386_linux_xmlfiles): Likewise.
	(srv_amd64_linux_xmlfiles): Likewise.
	(i[34567]86-*-cygwin*): Set srv_regobj to $srv_i386_regobj.  Set
	srv_xmlfiles to $srv_i386_xmlfiles.
	(i[34567]86-*-mingw32ce*): Likewise.
	(i[34567]86-*-mingw*): Likewise.
	(i[34567]86-*-nto*): Likewise.
	(i[34567]86-*-linux*): Set srv_regobj to $srv_i386_linux_regobj
	and $srv_amd64_linux_regobj.  Set srv_xmlfiles to
	$srv_i386_linux_xmlfiles and $srv_amd64_linux_xmlfiles.
	(x86_64-*-linux*): Likewise.

	* linux-x86-low.c (init_registers_x86_64_linux): Removed.
	(init_registers_amd64_linux): New.
	(x86_arch_setup): Replace init_registers_x86_64_linux with
	init_registers_amd64_linux.

gdb/testsuite/

2010-03-01  H.J. Lu  <hongjiu.lu@intel.com>

	* gdb.xml/tdesc-regs.exp (architecture): New.  Set it for x86.
	(load_description): Set architecture if defined.
2010-03-01 15:33:32 +00:00

387 lines
10 KiB
C

/* Target-dependent code for QNX Neutrino x86.
Copyright (C) 2003, 2004, 2007, 2008, 2009, 2010
Free Software Foundation, Inc.
Contributed by QNX Software Systems Ltd.
This file is part of GDB.
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
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>. */
#include "defs.h"
#include "frame.h"
#include "osabi.h"
#include "regcache.h"
#include "target.h"
#include "gdb_assert.h"
#include "gdb_string.h"
#include "i386-tdep.h"
#include "i387-tdep.h"
#include "nto-tdep.h"
#include "solib.h"
#include "solib-svr4.h"
#ifndef X86_CPU_FXSR
#define X86_CPU_FXSR (1L << 12)
#endif
/* Why 13? Look in our /usr/include/x86/context.h header at the
x86_cpu_registers structure and you'll see an 'exx' junk register
that is just filler. Don't ask me, ask the kernel guys. */
#define NUM_GPREGS 13
/* Mapping between the general-purpose registers in `struct xxx'
format and GDB's register cache layout. */
/* From <x86/context.h>. */
static int i386nto_gregset_reg_offset[] =
{
7 * 4, /* %eax */
6 * 4, /* %ecx */
5 * 4, /* %edx */
4 * 4, /* %ebx */
11 * 4, /* %esp */
2 * 4, /* %epb */
1 * 4, /* %esi */
0 * 4, /* %edi */
8 * 4, /* %eip */
10 * 4, /* %eflags */
9 * 4, /* %cs */
12 * 4, /* %ss */
-1 /* filler */
};
/* Given a GDB register number REGNUM, return the offset into
Neutrino's register structure or -1 if the register is unknown. */
static int
nto_reg_offset (int regnum)
{
if (regnum >= 0 && regnum < ARRAY_SIZE (i386nto_gregset_reg_offset))
return i386nto_gregset_reg_offset[regnum];
return -1;
}
static void
i386nto_supply_gregset (struct regcache *regcache, char *gpregs)
{
struct gdbarch *gdbarch = get_regcache_arch (regcache);
struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
if(tdep->gregset == NULL)
tdep->gregset = regset_alloc (gdbarch, i386_supply_gregset,
i386_collect_gregset);
gdb_assert (tdep->gregset_reg_offset == i386nto_gregset_reg_offset);
tdep->gregset->supply_regset (tdep->gregset, regcache, -1,
gpregs, NUM_GPREGS * 4);
}
static void
i386nto_supply_fpregset (struct regcache *regcache, char *fpregs)
{
if (nto_cpuinfo_valid && nto_cpuinfo_flags | X86_CPU_FXSR)
i387_supply_fxsave (regcache, -1, fpregs);
else
i387_supply_fsave (regcache, -1, fpregs);
}
static void
i386nto_supply_regset (struct regcache *regcache, int regset, char *data)
{
switch (regset)
{
case NTO_REG_GENERAL:
i386nto_supply_gregset (regcache, data);
break;
case NTO_REG_FLOAT:
i386nto_supply_fpregset (regcache, data);
break;
}
}
static int
i386nto_regset_id (int regno)
{
if (regno == -1)
return NTO_REG_END;
else if (regno < I386_NUM_GREGS)
return NTO_REG_GENERAL;
else if (regno < I386_NUM_GREGS + I387_NUM_REGS)
return NTO_REG_FLOAT;
else if (regno < I386_SSE_NUM_REGS)
return NTO_REG_FLOAT; /* We store xmm registers in fxsave_area. */
return -1; /* Error. */
}
static int
i386nto_register_area (struct gdbarch *gdbarch,
int regno, int regset, unsigned *off)
{
struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
int len;
*off = 0;
if (regset == NTO_REG_GENERAL)
{
if (regno == -1)
return NUM_GPREGS * 4;
*off = nto_reg_offset (regno);
if (*off == -1)
return 0;
return 4;
}
else if (regset == NTO_REG_FLOAT)
{
unsigned off_adjust, regsize, regset_size, regno_base;
/* The following are flags indicating number in our fxsave_area. */
int first_four = (regno >= I387_FCTRL_REGNUM (tdep)
&& regno <= I387_FISEG_REGNUM (tdep));
int second_four = (regno > I387_FISEG_REGNUM (tdep)
&& regno <= I387_FOP_REGNUM (tdep));
int st_reg = (regno >= I387_ST0_REGNUM (tdep)
&& regno < I387_ST0_REGNUM (tdep) + 8);
int xmm_reg = (regno >= I387_XMM0_REGNUM (tdep)
&& regno < I387_MXCSR_REGNUM (tdep));
if (nto_cpuinfo_valid && nto_cpuinfo_flags | X86_CPU_FXSR)
{
off_adjust = 32;
regsize = 16;
regset_size = 512;
/* fxsave_area structure. */
if (first_four)
{
/* fpu_control_word, fpu_status_word, fpu_tag_word, fpu_operand
registers. */
regsize = 2; /* Two bytes each. */
off_adjust = 0;
regno_base = I387_FCTRL_REGNUM (tdep);
}
else if (second_four)
{
/* fpu_ip, fpu_cs, fpu_op, fpu_ds registers. */
regsize = 4;
off_adjust = 8;
regno_base = I387_FISEG_REGNUM (tdep) + 1;
}
else if (st_reg)
{
/* ST registers. */
regsize = 16;
off_adjust = 32;
regno_base = I387_ST0_REGNUM (tdep);
}
else if (xmm_reg)
{
/* XMM registers. */
regsize = 16;
off_adjust = 160;
regno_base = I387_XMM0_REGNUM (tdep);
}
else if (regno == I387_MXCSR_REGNUM (tdep))
{
regsize = 4;
off_adjust = 24;
regno_base = I387_MXCSR_REGNUM (tdep);
}
else
{
/* Whole regset. */
gdb_assert (regno == -1);
off_adjust = 0;
regno_base = 0;
regsize = regset_size;
}
}
else
{
regset_size = 108;
/* fsave_area structure. */
if (first_four || second_four)
{
/* fpu_control_word, ... , fpu_ds registers. */
regsize = 4;
off_adjust = 0;
regno_base = I387_FCTRL_REGNUM (tdep);
}
else if (st_reg)
{
/* One of ST registers. */
regsize = 10;
off_adjust = 7 * 4;
regno_base = I387_ST0_REGNUM (tdep);
}
else
{
/* Whole regset. */
gdb_assert (regno == -1);
off_adjust = 0;
regno_base = 0;
regsize = regset_size;
}
}
if (regno != -1)
*off = off_adjust + (regno - regno_base) * regsize;
else
*off = 0;
return regsize;
}
return -1;
}
static int
i386nto_regset_fill (const struct regcache *regcache, int regset, char *data)
{
if (regset == NTO_REG_GENERAL)
{
int regno;
for (regno = 0; regno < NUM_GPREGS; regno++)
{
int offset = nto_reg_offset (regno);
if (offset != -1)
regcache_raw_collect (regcache, regno, data + offset);
}
}
else if (regset == NTO_REG_FLOAT)
{
if (nto_cpuinfo_valid && nto_cpuinfo_flags | X86_CPU_FXSR)
i387_collect_fxsave (regcache, -1, data);
else
i387_collect_fsave (regcache, -1, data);
}
else
return -1;
return 0;
}
/* Return whether THIS_FRAME corresponds to a QNX Neutrino sigtramp
routine. */
static int
i386nto_sigtramp_p (struct frame_info *this_frame)
{
CORE_ADDR pc = get_frame_pc (this_frame);
char *name;
find_pc_partial_function (pc, &name, NULL, NULL);
return name && strcmp ("__signalstub", name) == 0;
}
/* Assuming THIS_FRAME is a QNX Neutrino sigtramp routine, return the
address of the associated sigcontext structure. */
static CORE_ADDR
i386nto_sigcontext_addr (struct frame_info *this_frame)
{
struct gdbarch *gdbarch = get_frame_arch (this_frame);
enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
char buf[4];
CORE_ADDR ptrctx;
/* We store __ucontext_t addr in EDI register. */
get_frame_register (this_frame, I386_EDI_REGNUM, buf);
ptrctx = extract_unsigned_integer (buf, 4, byte_order);
ptrctx += 24 /* Context pointer is at this offset. */;
return ptrctx;
}
static void
init_i386nto_ops (void)
{
nto_regset_id = i386nto_regset_id;
nto_supply_gregset = i386nto_supply_gregset;
nto_supply_fpregset = i386nto_supply_fpregset;
nto_supply_altregset = nto_dummy_supply_regset;
nto_supply_regset = i386nto_supply_regset;
nto_register_area = i386nto_register_area;
nto_regset_fill = i386nto_regset_fill;
nto_fetch_link_map_offsets =
svr4_ilp32_fetch_link_map_offsets;
}
static void
i386nto_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
{
struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
static struct target_so_ops nto_svr4_so_ops;
/* Deal with our strange signals. */
nto_initialize_signals ();
/* NTO uses ELF. */
i386_elf_init_abi (info, gdbarch);
/* Neutrino rewinds to look more normal. Need to override the i386
default which is [unfortunately] to decrement the PC. */
set_gdbarch_decr_pc_after_break (gdbarch, 0);
tdep->gregset_reg_offset = i386nto_gregset_reg_offset;
tdep->gregset_num_regs = ARRAY_SIZE (i386nto_gregset_reg_offset);
tdep->sizeof_gregset = NUM_GPREGS * 4;
tdep->sigtramp_p = i386nto_sigtramp_p;
tdep->sigcontext_addr = i386nto_sigcontext_addr;
tdep->sc_reg_offset = i386nto_gregset_reg_offset;
tdep->sc_num_regs = ARRAY_SIZE (i386nto_gregset_reg_offset);
/* Setjmp()'s return PC saved in EDX (5). */
tdep->jb_pc_offset = 20; /* 5x32 bit ints in. */
set_solib_svr4_fetch_link_map_offsets
(gdbarch, svr4_ilp32_fetch_link_map_offsets);
/* Initialize this lazily, to avoid an initialization order
dependency on solib-svr4.c's _initialize routine. */
if (nto_svr4_so_ops.in_dynsym_resolve_code == NULL)
{
nto_svr4_so_ops = svr4_so_ops;
/* Our loader handles solib relocations differently than svr4. */
nto_svr4_so_ops.relocate_section_addresses
= nto_relocate_section_addresses;
/* Supply a nice function to find our solibs. */
nto_svr4_so_ops.find_and_open_solib
= nto_find_and_open_solib;
/* Our linker code is in libc. */
nto_svr4_so_ops.in_dynsym_resolve_code
= nto_in_dynsym_resolve_code;
}
set_solib_ops (gdbarch, &nto_svr4_so_ops);
}
/* Provide a prototype to silence -Wmissing-prototypes. */
extern initialize_file_ftype _initialize_i386nto_tdep;
void
_initialize_i386nto_tdep (void)
{
init_i386nto_ops ();
gdbarch_register_osabi (bfd_arch_i386, 0, GDB_OSABI_QNXNTO,
i386nto_init_abi);
gdbarch_register_osabi_sniffer (bfd_arch_i386, bfd_target_elf_flavour,
nto_elf_osabi_sniffer);
}