592 lines
16 KiB
C
592 lines
16 KiB
C
/***********************************************************************
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Copyright 2003-2006 Raza Microelectronics, Inc.(RMI).
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This is a derived work from software originally provided by the external
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entity identified below. The licensing terms and warranties specified in
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the header of the original work apply to this derived work.
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Contribution by RMI:
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*****************************#RMI_1#**********************************/
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/* Target-dependent code for MIPS systems running NetBSD.
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Copyright 2002, 2003 Free Software Foundation, Inc.
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Contributed by Wasabi Systems, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA. */
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#include "defs.h"
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#include "gdbcore.h"
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#include "regcache.h"
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#include "target.h"
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#include "value.h"
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#include "osabi.h"
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#include "nbsd-tdep.h"
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#include "mipsfbsd-tdep.h"
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#include "mips-tdep.h"
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#include "solib-svr4.h"
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#include <sys/procfs.h>
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#include "gregset.h"
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#include "trad-frame.h"
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#include "frame.h"
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#include "frame-unwind.h"
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#include "bfd.h"
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#include "objfiles.h"
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/* Conveniently, GDB uses the same register numbering as the
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ptrace register structure used by NetBSD/mips. */
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void
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mipsfbsd_supply_reg (char *regs, int regno)
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{
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int i;
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for (i = 0; i <= PC_REGNUM; i++)
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{
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if (regno == i || regno == -1)
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{
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if (CANNOT_FETCH_REGISTER (i))
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supply_register (i, NULL);
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else
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supply_register (i, regs + (i * mips_regsize (current_gdbarch)));
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}
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}
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}
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void
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supply_gregset (gdb_gregset_t *gregs)
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{
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mipsfbsd_supply_reg((char *)gregs, -1);
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}
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void
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mipsfbsd_fill_reg (char *regs, int regno)
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{
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int i;
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for (i = 0; i <= PC_REGNUM; i++)
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if ((regno == i || regno == -1) && ! CANNOT_STORE_REGISTER (i))
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regcache_collect (i, regs + (i * mips_regsize (current_gdbarch)));
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}
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void
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fill_gregset (gdb_gregset_t *gregs, int regno)
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{
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mipsfbsd_fill_reg ((char *)gregs, regno);
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}
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void
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mipsfbsd_supply_fpreg (char *fpregs, int regno)
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{
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int i;
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for (i = FP0_REGNUM;
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i <= mips_regnum (current_gdbarch)->fp_implementation_revision;
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i++)
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{
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if (regno == i || regno == -1)
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{
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if (CANNOT_FETCH_REGISTER (i))
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supply_register (i, NULL);
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else
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supply_register (i,
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fpregs + ((i - FP0_REGNUM) * mips_regsize (current_gdbarch)));
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}
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}
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}
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void
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supply_fpregset (gdb_fpregset_t *fpregs)
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{
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mipsfbsd_supply_fpreg((char *)fpregs, -1);
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}
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void
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mipsfbsd_fill_fpreg (char *fpregs, int regno)
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{
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int i;
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for (i = FP0_REGNUM; i <= mips_regnum (current_gdbarch)->fp_control_status;
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i++)
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if ((regno == i || regno == -1) && ! CANNOT_STORE_REGISTER (i))
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regcache_collect (i,
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fpregs + ((i - FP0_REGNUM) * mips_regsize (current_gdbarch)));
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}
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void
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fill_fpregset (gdb_fpregset_t *fpregs, int regno)
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{
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mipsfbsd_fill_fpreg ((char *)fpregs, regno);
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}
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static void
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fetch_core_registers (char *core_reg_sect, unsigned core_reg_size, int which,
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CORE_ADDR ignore)
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{
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char *regs, *fpregs;
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/* We get everything from one section. */
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if (which != 0)
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return;
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regs = core_reg_sect;
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fpregs = core_reg_sect + SIZEOF_STRUCT_REG;
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/* Integer registers. */
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mipsfbsd_supply_reg (regs, -1);
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/* Floating point registers. */
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mipsfbsd_supply_fpreg (fpregs, -1);
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}
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static void
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fetch_elfcore_registers (char *core_reg_sect, unsigned core_reg_size, int which,
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CORE_ADDR ignore)
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{
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switch (which)
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{
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case 0: /* Integer registers. */
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if (core_reg_size != SIZEOF_STRUCT_REG)
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warning ("Wrong size register set in core file.");
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else
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mipsfbsd_supply_reg (core_reg_sect, -1);
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break;
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case 2: /* Floating point registers. */
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if (core_reg_size != SIZEOF_STRUCT_FPREG)
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warning ("Wrong size register set in core file.");
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else
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mipsfbsd_supply_fpreg (core_reg_sect, -1);
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break;
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default:
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/* Don't know what kind of register request this is; just ignore it. */
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break;
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}
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}
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static struct core_fns mipsfbsd_core_fns =
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{
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bfd_target_unknown_flavour, /* core_flavour */
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default_check_format, /* check_format */
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default_core_sniffer, /* core_sniffer */
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fetch_core_registers, /* core_read_registers */
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NULL /* next */
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};
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static struct core_fns mipsfbsd_elfcore_fns =
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{
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bfd_target_elf_flavour, /* core_flavour */
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default_check_format, /* check_format */
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default_core_sniffer, /* core_sniffer */
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fetch_elfcore_registers, /* core_read_registers */
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NULL /* next */
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};
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/*
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* MIPSFBSD Offsets
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* 0x7fff0000 User high mem -> USRSTACK [64K]
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*
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* 0x7ffefff0 ps_strings -> 16 bytes
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*
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* 0x7ffeffec sigcode -> 44 bytes
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*
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* 0x7ffeffc4 sigcode end env strings etc start
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*
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* XXX This is out-of-date and varies by ABI.
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*/
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#define MIPS_FBSD_SIGTRAMP_START (0x7ffeffc4)
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#define MIPS_FBSD_SIGTRAMP_END (0x7ffeffec)
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#define MIPS_FBSD_SIGTRAMP_STACK_MOD_START (0x7ffeffc8)
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#define MIPS_FBSD_SIGTRAMP_STACK_MOD_END (0x7ffeffd8)
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static LONGEST
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mipsfbsd_sigtramp_offset (CORE_ADDR pc)
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{
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return pc < MIPS_FBSD_SIGTRAMP_END &&
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pc >= MIPS_FBSD_SIGTRAMP_START ? 1 : -1;
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}
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static int
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fbsd_pc_in_sigtramp (CORE_ADDR pc, char *name)
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{
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return (name && strcmp (name, "__sigtramp") == 0);
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}
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static int
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mipsfbsd_pc_in_sigtramp (CORE_ADDR pc, char *func_name)
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{
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return (fbsd_pc_in_sigtramp (pc, func_name)
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|| mipsfbsd_sigtramp_offset (pc) >= 0);
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}
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static int
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is_sigtramp_sp_modified (CORE_ADDR pc)
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{
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return (pc >= MIPS_FBSD_SIGTRAMP_STACK_MOD_START &&
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pc <= MIPS_FBSD_SIGTRAMP_STACK_MOD_END);
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}
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/* Figure out where the longjmp will land. We expect that we have
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just entered longjmp and haven't yet setup the stack frame, so
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the args are still in the argument regs. A0_REGNUM points at the
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jmp_buf structure from which we extract the PC that we will land
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at. The PC is copied into *pc. This routine returns true on
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success. */
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#define FBSD_MIPS_JB_PC (12)
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#define FBSD_MIPS_JB_ELEMENT_SIZE mips_regsize (current_gdbarch)
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#define FBSD_MIPS_JB_OFFSET (FBSD_MIPS_JB_PC * \
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FBSD_MIPS_JB_ELEMENT_SIZE)
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static int
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mipsfbsd_get_longjmp_target (CORE_ADDR *pc)
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{
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CORE_ADDR jb_addr;
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char *buf;
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buf = alloca (FBSD_MIPS_JB_ELEMENT_SIZE);
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jb_addr = read_register (A0_REGNUM);
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if (target_read_memory (jb_addr + FBSD_MIPS_JB_OFFSET, buf,
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FBSD_MIPS_JB_ELEMENT_SIZE))
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return 0;
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*pc = extract_unsigned_integer (buf, FBSD_MIPS_JB_ELEMENT_SIZE);
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return 1;
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}
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static int
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mipsfbsd_cannot_fetch_register (int regno)
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{
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return (regno == ZERO_REGNUM
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|| regno == mips_regnum (current_gdbarch)->fp_implementation_revision);
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/* XXX TODO: Are there other registers that we cannot fetch ? */
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}
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static int
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mipsfbsd_cannot_store_register (int regno)
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{
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return (regno == ZERO_REGNUM
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|| regno == mips_regnum (current_gdbarch)->fp_implementation_revision);
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/* XXX TODO: Are there other registers that we cannot write ? */
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}
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/*
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* This structure is defined in mips-tdep.c.
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*/
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struct mips_frame_cache
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{
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CORE_ADDR base;
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struct trad_frame_saved_reg *saved_regs;
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};
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/*
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* Prologue cache for sigtramp frame
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* When we land in sigtramp, sigcontext is saved on the
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* stack just below the sigtramp's stack frame. We have
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* the Registers saved at fixed offsets on the stack.
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*/
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#define MIPS_FBSD_SIGTRAMP_STACK_SIZE (48)
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#define MIPS_FBSD_SIGCONTEXT_REG_OFFSET (32)
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static struct mips_frame_cache *
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mipsfbsd_sigtramp_frame_cache (struct frame_info *next_frame,
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void **this_cache)
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{
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struct mips_frame_cache *cache;
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CORE_ADDR gregs_addr, sp, pc;
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int regnum;
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int sigtramp_stack_size;
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if (*this_cache)
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return *this_cache;
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cache = FRAME_OBSTACK_ZALLOC (struct mips_frame_cache);
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*this_cache = cache;
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cache->saved_regs = trad_frame_alloc_saved_regs (next_frame);
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/*
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* Get sp of next frame which is the adjusted sp of
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* tramp code.
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*/
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sp = frame_unwind_register_unsigned(next_frame, NUM_REGS + SP_REGNUM);
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pc = frame_unwind_register_unsigned(next_frame, NUM_REGS + PC_REGNUM);
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sigtramp_stack_size = is_sigtramp_sp_modified(pc) ?
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MIPS_FBSD_SIGTRAMP_STACK_SIZE : 0;
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gregs_addr = sp + sigtramp_stack_size + MIPS_FBSD_SIGCONTEXT_REG_OFFSET;
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for (regnum = 0; regnum < PC_REGNUM; regnum++) {
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cache->saved_regs[NUM_REGS + regnum].addr = gregs_addr +
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regnum * mips_regsize (current_gdbarch);
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}
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/* Only retrieve PC and SP */
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cache->saved_regs[NUM_REGS + SP_REGNUM].addr = gregs_addr +
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SP_REGNUM * ( mips_regsize (current_gdbarch));
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cache->saved_regs[NUM_REGS + RA_REGNUM].addr = gregs_addr +
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RA_REGNUM * ( mips_regsize (current_gdbarch));
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cache->base = get_frame_memory_unsigned (next_frame,
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cache->saved_regs[NUM_REGS + SP_REGNUM].addr,
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mips_regsize (current_gdbarch));
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/* Todo: Floating point registers */
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cache->saved_regs[NUM_REGS + mips_regnum (current_gdbarch)->pc]
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= cache->saved_regs[NUM_REGS + RA_REGNUM];
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return *this_cache;
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}
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static void
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mipsfbsd_sigtramp_frame_this_id (struct frame_info *next_frame,
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void **this_cache,
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struct frame_id *this_id)
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{
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struct mips_frame_cache *cache =
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mipsfbsd_sigtramp_frame_cache (next_frame, this_cache);
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(*this_id) = frame_id_build (cache->base,
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cache->saved_regs[NUM_REGS + mips_regnum (current_gdbarch)->pc].addr);
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}
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static void
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mipsfbsd_sigtramp_frame_prev_register (struct frame_info *next_frame,
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void **this_cache,
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int regnum, int *optimizedp,
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enum lval_type *lvalp,
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CORE_ADDR *addrp,
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int *realnump, void *valuep)
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{
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struct mips_frame_cache *cache =
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mipsfbsd_sigtramp_frame_cache (next_frame, this_cache);
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trad_frame_prev_register (next_frame, cache->saved_regs, regnum,
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optimizedp, lvalp, addrp, realnump, valuep);
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}
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static const struct frame_unwind mipsfbsd_sigtramp_frame_unwind =
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{
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SIGTRAMP_FRAME,
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mipsfbsd_sigtramp_frame_this_id,
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mipsfbsd_sigtramp_frame_prev_register
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};
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static const struct frame_unwind *
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mipsfbsd_sigtramp_frame_sniffer (struct frame_info *next_frame)
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{
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CORE_ADDR pc = frame_pc_unwind (next_frame);
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char *name;
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find_pc_partial_function (pc, &name, NULL, NULL);
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if (mipsfbsd_pc_in_sigtramp (pc, name) )
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return &mipsfbsd_sigtramp_frame_unwind;
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return NULL;
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}
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/*
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* Find out if PC has landed into dynamic library stub.
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* We can find it by seeing if the name of the object
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* file section where the PC lies is "MIPS.stubs"
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*/
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int
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mipsfbsd_in_stub_section (CORE_ADDR pc, char *name)
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{
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struct obj_section *s;
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int retval = 0;
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s = find_pc_section (pc);
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retval = (s != NULL
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&& s->the_bfd_section->name != NULL
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&& strcmp (s->the_bfd_section->name, ".MIPS.stubs") == 0);
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return (retval);
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}
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/*
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* Prologue cache for dynamic library stub frame.
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* This stub does not modify the SP, so we set the
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* cache base to calling frame's SP
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*/
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static struct mips_frame_cache *
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mipsfbsd_stub_frame_cache (struct frame_info *next_frame,
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void **this_cache)
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{
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struct mips_frame_cache *cache;
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if (*this_cache)
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return *this_cache;
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cache = FRAME_OBSTACK_ZALLOC (struct mips_frame_cache);
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*this_cache = cache;
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cache->saved_regs = trad_frame_alloc_saved_regs (next_frame);
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cache->saved_regs[NUM_REGS + mips_regnum (current_gdbarch)->pc].realreg =
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NUM_REGS + RA_REGNUM;
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cache->base = frame_unwind_register_unsigned (next_frame,
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NUM_REGS + SP_REGNUM);
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return (*this_cache);
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}
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static void
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mipsfbsd_stub_frame_this_id (struct frame_info *next_frame,
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void **this_cache,
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struct frame_id *this_id)
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{
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struct mips_frame_cache *cache =
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mipsfbsd_stub_frame_cache (next_frame, this_cache);
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(*this_id) = frame_id_build (cache->base,
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cache->saved_regs[NUM_REGS + mips_regnum (current_gdbarch)->pc].addr);
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}
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static void
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mipsfbsd_stub_frame_prev_register (struct frame_info *next_frame,
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void **this_cache,
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int regnum, int *optimizedp,
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enum lval_type *lvalp, CORE_ADDR *addrp,
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int *realnump, void *valuep)
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{
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struct mips_frame_cache *cache =
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mipsfbsd_stub_frame_cache (next_frame, this_cache);
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trad_frame_prev_register (next_frame, cache->saved_regs, regnum,
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optimizedp, lvalp, addrp, realnump, valuep);
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}
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static const struct frame_unwind mipsfbsd_stub_frame_unwind = {
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NORMAL_FRAME,
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mipsfbsd_stub_frame_this_id,
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mipsfbsd_stub_frame_prev_register
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};
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static const struct frame_unwind *
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mipsfbsd_stub_frame_sniffer (struct frame_info *next_frame)
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{
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CORE_ADDR pc = frame_pc_unwind (next_frame);
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if (mipsfbsd_in_stub_section(pc, NULL))
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return &mipsfbsd_stub_frame_unwind;
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return NULL;
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}
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/*
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* typedef struct link_map {
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* caddr_t l_addr; /* Base Address of library
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* #ifdef __mips__
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* caddr_t l_offs; /* Load Offset of library
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* #endif
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* const char *l_name; /* Absolute Path to Library
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* const void *l_ld; /* Pointer to .dynamic in memory
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* struct link_map *l_next, *l_prev; /* linked list of of mapped libs
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* } Link_map;
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*
|
|
* struct r_debug {
|
|
* int r_version; /* not used
|
|
* struct link_map *r_map; /* list of loaded images
|
|
* void (*r_brk)(struct r_debug *, struct link_map *);
|
|
* /* pointer to break point
|
|
* enum {
|
|
* RT_CONSISTENT, /* things are stable
|
|
* RT_ADD, /* adding a shared library
|
|
* RT_DELETE /* removing a shared library
|
|
* } r_state;
|
|
* };
|
|
*
|
|
*/
|
|
|
|
static struct link_map_offsets *
|
|
mipsfbsd_ilp32_solib_svr4_fetch_link_map_offsets (void)
|
|
{
|
|
static struct link_map_offsets lmo;
|
|
static struct link_map_offsets *lmp = NULL;
|
|
|
|
if (lmp == NULL)
|
|
{
|
|
lmp = &lmo;
|
|
|
|
lmo.r_debug_size = 16;
|
|
|
|
lmo.r_map_offset = 4;
|
|
lmo.r_map_size = 4;
|
|
|
|
lmo.link_map_size = 24;
|
|
|
|
lmo.l_addr_offset = 0;
|
|
lmo.l_addr_size = 4;
|
|
|
|
lmo.l_name_offset = 8;
|
|
lmo.l_name_size = 4;
|
|
|
|
lmo.l_next_offset = 16;
|
|
lmo.l_next_size = 4;
|
|
|
|
lmo.l_prev_offset = 20;
|
|
lmo.l_prev_size = 4;
|
|
}
|
|
|
|
return lmp;
|
|
}
|
|
|
|
static void
|
|
mipsfbsd_init_abi (struct gdbarch_info info,
|
|
struct gdbarch *gdbarch)
|
|
{
|
|
set_gdbarch_pc_in_sigtramp (gdbarch, mipsfbsd_pc_in_sigtramp);
|
|
|
|
set_gdbarch_get_longjmp_target (gdbarch, mipsfbsd_get_longjmp_target);
|
|
|
|
set_gdbarch_cannot_fetch_register (gdbarch, mipsfbsd_cannot_fetch_register);
|
|
set_gdbarch_cannot_store_register (gdbarch, mipsfbsd_cannot_store_register);
|
|
|
|
set_gdbarch_software_single_step (gdbarch, mips_software_single_step);
|
|
set_solib_svr4_fetch_link_map_offsets (gdbarch,
|
|
mipsfbsd_ilp32_solib_svr4_fetch_link_map_offsets);
|
|
set_gdbarch_skip_trampoline_code (gdbarch, find_solib_trampoline_target);
|
|
set_gdbarch_in_solib_call_trampoline (gdbarch, mipsfbsd_in_stub_section);
|
|
|
|
/* frame sniffers */
|
|
frame_unwind_append_sniffer (gdbarch, mipsfbsd_sigtramp_frame_sniffer);
|
|
frame_unwind_append_sniffer (gdbarch, mipsfbsd_stub_frame_sniffer);
|
|
|
|
}
|
|
|
|
void
|
|
_initialize_mipsfbsd_tdep (void)
|
|
{
|
|
gdbarch_register_osabi (bfd_arch_mips, 0, GDB_OSABI_FREEBSD_ELF,
|
|
mipsfbsd_init_abi);
|
|
add_core_fns (&mipsfbsd_core_fns);
|
|
add_core_fns (&mipsfbsd_elfcore_fns);
|
|
}
|