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https://github.com/darlinghq/darling-gdb.git
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73937e031a
* regcache.h (deprecated_read_register_bytes): Rename read_register_bytes. (deprecated_write_register_bytes): Rename write_register_bytes. * alpha-tdep.c, arm-tdep.c, cris-tdep.c, d10v-tdep.c: Update. * dwarf2cfi.c, frv-tdep.c, hppa-tdep.c, ia64-tdep.c: Update. * m68k-tdep.c, mcore-tdep.c, mips-tdep.c, mn10300-tdep.c: Update. * ns32k-tdep.c, regcache.c, remote-sds.c, remote-vx.c: Update. * remote.c, rs6000-tdep.c, s390-tdep.c, sh-tdep.c: Update. * sparc-tdep.c, v850-tdep.c, vax-tdep.c, x86-64-tdep.c: Update. * xstormy16-tdep.c, z8k-tdep.c, config/nm-gnu.h: Update. * config/nm-m3.h, config/h8500/tm-h8500.h: Update. * config/i386/nm-ptx4.h, config/i386/nm-symmetry.h: Update. * config/m32r/tm-m32r.h, config/m68k/nm-sun3.h: Update. * config/m68k/tm-delta68.h, config/m68k/tm-linux.h: Update. * config/mn10200/tm-mn10200.h, config/pa/tm-hppa64.h: Update. * config/sparc/nm-nbsd.h, config/sparc/nm-sun4os4.h: Update. * config/sparc/nm-sun4sol2.h, config/sparc/tm-sparclet.h: Update. 2002-11-13 Andrew Cagney <ac131313@redhat.com> * mi-main.c (mi_cmd_data_write_register_values): Use deprecated_write_register_bytes instead of write_register_bytes.
542 lines
13 KiB
C
542 lines
13 KiB
C
/* Target-machine dependent code for Zilog Z8000, for GDB.
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Copyright 1992, 1993, 1994, 1995, 1996, 1998, 1999, 2000, 2001,
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2002 Free Software Foundation, 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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/*
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Contributed by Steve Chamberlain
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sac@cygnus.com
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*/
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#include "defs.h"
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#include "frame.h"
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#include "symtab.h"
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#include "gdbcmd.h"
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#include "gdbtypes.h"
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#include "dis-asm.h"
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#include "gdbcore.h"
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#include "regcache.h"
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#include "value.h" /* For read_register() */
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static int read_memory_pointer (CORE_ADDR x);
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/* Return the saved PC from this frame.
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If the frame has a memory copy of SRP_REGNUM, use that. If not,
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just use the register SRP_REGNUM itself. */
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CORE_ADDR
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z8k_frame_saved_pc (struct frame_info *frame)
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{
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return read_memory_pointer (frame->frame + (BIG ? 4 : 2));
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}
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#define IS_PUSHL(x) (BIG ? ((x & 0xfff0) == 0x91e0):((x & 0xfff0) == 0x91F0))
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#define IS_PUSHW(x) (BIG ? ((x & 0xfff0) == 0x93e0):((x & 0xfff0)==0x93f0))
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#define IS_MOVE_FP(x) (BIG ? x == 0xa1ea : x == 0xa1fa)
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#define IS_MOV_SP_FP(x) (BIG ? x == 0x94ea : x == 0x0d76)
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#define IS_SUB2_SP(x) (x==0x1b87)
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#define IS_MOVK_R5(x) (x==0x7905)
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#define IS_SUB_SP(x) ((x & 0xffff) == 0x020f)
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#define IS_PUSH_FP(x) (BIG ? (x == 0x93ea) : (x == 0x93fa))
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/* work out how much local space is on the stack and
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return the pc pointing to the first push */
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static CORE_ADDR
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skip_adjust (CORE_ADDR pc, int *size)
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{
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*size = 0;
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if (IS_PUSH_FP (read_memory_short (pc))
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&& IS_MOV_SP_FP (read_memory_short (pc + 2)))
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{
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/* This is a function with an explict frame pointer */
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pc += 4;
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*size += 2; /* remember the frame pointer */
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}
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/* remember any stack adjustment */
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if (IS_SUB_SP (read_memory_short (pc)))
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{
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*size += read_memory_short (pc + 2);
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pc += 4;
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}
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return pc;
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}
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static CORE_ADDR examine_frame (CORE_ADDR, CORE_ADDR * regs, CORE_ADDR);
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static CORE_ADDR
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examine_frame (CORE_ADDR pc, CORE_ADDR *regs, CORE_ADDR sp)
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{
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int w = read_memory_short (pc);
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int offset = 0;
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int regno;
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for (regno = 0; regno < NUM_REGS; regno++)
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regs[regno] = 0;
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while (IS_PUSHW (w) || IS_PUSHL (w))
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{
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/* work out which register is being pushed to where */
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if (IS_PUSHL (w))
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{
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regs[w & 0xf] = offset;
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regs[(w & 0xf) + 1] = offset + 2;
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offset += 4;
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}
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else
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{
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regs[w & 0xf] = offset;
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offset += 2;
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}
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pc += 2;
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w = read_memory_short (pc);
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}
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if (IS_MOVE_FP (w))
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{
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/* We know the fp */
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}
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else if (IS_SUB_SP (w))
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{
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/* Subtracting a value from the sp, so were in a function
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which needs stack space for locals, but has no fp. We fake up
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the values as if we had an fp */
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regs[FP_REGNUM] = sp;
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}
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else
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{
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/* This one didn't have an fp, we'll fake it up */
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regs[SP_REGNUM] = sp;
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}
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/* stack pointer contains address of next frame */
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/* regs[fp_regnum()] = fp; */
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regs[SP_REGNUM] = sp;
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return pc;
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}
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CORE_ADDR
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z8k_skip_prologue (CORE_ADDR start_pc)
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{
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CORE_ADDR dummy[NUM_REGS];
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return examine_frame (start_pc, dummy, 0);
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}
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CORE_ADDR
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z8k_addr_bits_remove (CORE_ADDR addr)
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{
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return (addr & PTR_MASK);
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}
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static int
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read_memory_pointer (CORE_ADDR x)
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{
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return read_memory_integer (ADDR_BITS_REMOVE (x), BIG ? 4 : 2);
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}
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CORE_ADDR
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z8k_frame_chain (struct frame_info *thisframe)
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{
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if (!inside_entry_file (thisframe->pc))
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{
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return read_memory_pointer (thisframe->frame);
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}
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return 0;
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}
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void
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init_frame_pc (void)
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{
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internal_error (__FILE__, __LINE__, "failed internal consistency check");
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}
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/* Put here the code to store, into a struct frame_saved_regs,
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the addresses of the saved registers of frame described by FRAME_INFO.
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This includes special registers such as pc and fp saved in special
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ways in the stack frame. sp is even more special:
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the address we return for it IS the sp for the next frame. */
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void
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z8k_frame_init_saved_regs (struct frame_info *frame_info)
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{
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CORE_ADDR pc;
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int w;
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frame_saved_regs_zalloc (frame_info);
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pc = get_pc_function_start (frame_info->pc);
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/* wander down the instruction stream */
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examine_frame (pc, frame_info->saved_regs, frame_info->frame);
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}
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void
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z8k_push_dummy_frame (void)
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{
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internal_error (__FILE__, __LINE__, "failed internal consistency check");
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}
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int
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gdb_print_insn_z8k (bfd_vma memaddr, disassemble_info *info)
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{
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if (BIG)
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return print_insn_z8001 (memaddr, info);
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else
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return print_insn_z8002 (memaddr, info);
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}
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/* Fetch the instruction at ADDR, returning 0 if ADDR is beyond LIM or
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is not the address of a valid instruction, the address of the next
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instruction beyond ADDR otherwise. *PWORD1 receives the first word
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of the instruction. */
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CORE_ADDR
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NEXT_PROLOGUE_INSN (CORE_ADDR addr, CORE_ADDR lim, short *pword1)
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{
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char buf[2];
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if (addr < lim + 8)
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{
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read_memory (addr, buf, 2);
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*pword1 = extract_signed_integer (buf, 2);
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return addr + 2;
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}
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return 0;
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}
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#if 0
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/* Put here the code to store, into a struct frame_saved_regs,
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the addresses of the saved registers of frame described by FRAME_INFO.
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This includes special registers such as pc and fp saved in special
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ways in the stack frame. sp is even more special:
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the address we return for it IS the sp for the next frame.
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We cache the result of doing this in the frame_cache_obstack, since
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it is fairly expensive. */
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void
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frame_find_saved_regs (struct frame_info *fip, struct frame_saved_regs *fsrp)
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{
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int locals;
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CORE_ADDR pc;
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CORE_ADDR adr;
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int i;
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memset (fsrp, 0, sizeof *fsrp);
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pc = skip_adjust (get_pc_function_start (fip->pc), &locals);
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{
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adr = FRAME_FP (fip) - locals;
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for (i = 0; i < 8; i++)
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{
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int word = read_memory_short (pc);
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pc += 2;
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if (IS_PUSHL (word))
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{
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fsrp->regs[word & 0xf] = adr;
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fsrp->regs[(word & 0xf) + 1] = adr - 2;
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adr -= 4;
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}
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else if (IS_PUSHW (word))
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{
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fsrp->regs[word & 0xf] = adr;
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adr -= 2;
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}
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else
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break;
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}
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}
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fsrp->regs[PC_REGNUM] = fip->frame + 4;
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fsrp->regs[FP_REGNUM] = fip->frame;
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}
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#endif
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int
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z8k_saved_pc_after_call (struct frame_info *frame)
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{
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return ADDR_BITS_REMOVE
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(read_memory_integer (read_register (SP_REGNUM), PTR_SIZE));
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}
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void
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extract_return_value (struct type *type, char *regbuf, char *valbuf)
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{
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int b;
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int len = TYPE_LENGTH (type);
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for (b = 0; b < len; b += 2)
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{
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int todo = len - b;
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if (todo > 2)
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todo = 2;
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memcpy (valbuf + b, regbuf + b, todo);
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}
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}
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void
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write_return_value (struct type *type, char *valbuf)
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{
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int reg;
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int len;
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for (len = 0; len < TYPE_LENGTH (type); len += 2)
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deprecated_write_register_bytes (REGISTER_BYTE (len / 2 + 2),
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valbuf + len, 2);
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}
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void
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store_struct_return (CORE_ADDR addr, CORE_ADDR sp)
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{
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write_register (2, addr);
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}
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static void
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z8k_print_register_hook (int regno)
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{
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if ((regno & 1) == 0 && regno < 16)
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{
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unsigned char l[4];
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frame_register_read (selected_frame, regno, l + 0);
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frame_register_read (selected_frame, regno + 1, l + 2);
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printf_unfiltered ("\t");
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printf_unfiltered ("0x%02x%02x%02x%02x", l[0], l[1], l[2], l[3]);
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}
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if ((regno & 3) == 0 && regno < 16)
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{
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unsigned char l[8];
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frame_register_read (selected_frame, regno, l + 0);
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frame_register_read (selected_frame, regno + 1, l + 2);
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frame_register_read (selected_frame, regno + 2, l + 4);
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frame_register_read (selected_frame, regno + 3, l + 6);
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printf_unfiltered ("\t");
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printf_unfiltered ("0x%02x%02x%02x%02x%02x%02x%02x%02x",
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l[0], l[1], l[2], l[3], l[4], l[5], l[6], l[7]);
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}
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if (regno == 15)
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{
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unsigned short rval;
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int i;
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frame_register_read (selected_frame, regno, (char *) (&rval));
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printf_unfiltered ("\n");
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for (i = 0; i < 10; i += 2)
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{
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printf_unfiltered ("(sp+%d=%04x)", i,
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(unsigned int)read_memory_short (rval + i));
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}
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}
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}
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static void
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z8k_print_registers_info (struct gdbarch *gdbarch,
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struct ui_file *file,
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struct frame_info *frame,
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int regnum, int print_all)
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{
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int i;
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const int numregs = NUM_REGS + NUM_PSEUDO_REGS;
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char *raw_buffer = alloca (MAX_REGISTER_RAW_SIZE);
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char *virtual_buffer = alloca (MAX_REGISTER_VIRTUAL_SIZE);
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for (i = 0; i < numregs; i++)
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{
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/* Decide between printing all regs, non-float / vector regs, or
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specific reg. */
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if (regnum == -1)
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{
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if (!print_all)
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{
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if (TYPE_CODE (REGISTER_VIRTUAL_TYPE (i)) == TYPE_CODE_FLT)
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continue;
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if (TYPE_VECTOR (REGISTER_VIRTUAL_TYPE (i)))
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continue;
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}
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}
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else
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{
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if (i != regnum)
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continue;
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}
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/* If the register name is empty, it is undefined for this
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processor, so don't display anything. */
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if (REGISTER_NAME (i) == NULL || *(REGISTER_NAME (i)) == '\0')
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continue;
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fputs_filtered (REGISTER_NAME (i), file);
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print_spaces_filtered (15 - strlen (REGISTER_NAME (i)), file);
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/* Get the data in raw format. */
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if (! frame_register_read (frame, i, raw_buffer))
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{
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fprintf_filtered (file, "*value not available*\n");
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continue;
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}
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/* FIXME: cagney/2002-08-03: This code shouldn't be necessary.
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The function frame_register_read() should have returned the
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pre-cooked register so no conversion is necessary. */
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/* Convert raw data to virtual format if necessary. */
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if (REGISTER_CONVERTIBLE (i))
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{
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REGISTER_CONVERT_TO_VIRTUAL (i, REGISTER_VIRTUAL_TYPE (i),
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raw_buffer, virtual_buffer);
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}
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else
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{
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memcpy (virtual_buffer, raw_buffer,
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REGISTER_VIRTUAL_SIZE (i));
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}
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/* If virtual format is floating, print it that way, and in raw
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hex. */
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if (TYPE_CODE (REGISTER_VIRTUAL_TYPE (i)) == TYPE_CODE_FLT)
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{
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int j;
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val_print (REGISTER_VIRTUAL_TYPE (i), virtual_buffer, 0, 0,
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file, 0, 1, 0, Val_pretty_default);
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fprintf_filtered (file, "\t(raw 0x");
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for (j = 0; j < REGISTER_RAW_SIZE (i); j++)
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{
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int idx;
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if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG)
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idx = j;
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else
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idx = REGISTER_RAW_SIZE (i) - 1 - j;
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fprintf_filtered (file, "%02x", (unsigned char) raw_buffer[idx]);
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}
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fprintf_filtered (file, ")");
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}
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else
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{
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/* Print the register in hex. */
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val_print (REGISTER_VIRTUAL_TYPE (i), virtual_buffer, 0, 0,
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file, 'x', 1, 0, Val_pretty_default);
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/* If not a vector register, print it also according to its
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natural format. */
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if (TYPE_VECTOR (REGISTER_VIRTUAL_TYPE (i)) == 0)
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{
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fprintf_filtered (file, "\t");
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val_print (REGISTER_VIRTUAL_TYPE (i), virtual_buffer, 0, 0,
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file, 0, 1, 0, Val_pretty_default);
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}
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}
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/* Some z8k specific info. */
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z8k_print_register_hook (i);
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fprintf_filtered (file, "\n");
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}
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}
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void
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z8k_do_registers_info (int regnum, int all)
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{
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z8k_print_registers_info (current_gdbarch, gdb_stdout, selected_frame,
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regnum, all);
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}
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void
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z8k_pop_frame (void)
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{
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}
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struct cmd_list_element *setmemorylist;
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void
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z8k_set_pointer_size (int newsize)
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{
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static int oldsize = 0;
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if (oldsize != newsize)
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{
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printf_unfiltered ("pointer size set to %d bits\n", newsize);
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oldsize = newsize;
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if (newsize == 32)
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{
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BIG = 1;
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}
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else
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{
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BIG = 0;
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}
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/* FIXME: This code should be using the GDBARCH framework to
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handle changed type sizes. If this problem is ever fixed
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(the direct reference to _initialize_gdbtypes() below
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eliminated) then Makefile.in should be updated so that
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z8k-tdep.c is again compiled with -Werror. */
|
|
_initialize_gdbtypes ();
|
|
}
|
|
}
|
|
|
|
static void
|
|
segmented_command (char *args, int from_tty)
|
|
{
|
|
z8k_set_pointer_size (32);
|
|
}
|
|
|
|
static void
|
|
unsegmented_command (char *args, int from_tty)
|
|
{
|
|
z8k_set_pointer_size (16);
|
|
}
|
|
|
|
static void
|
|
set_memory (char *args, int from_tty)
|
|
{
|
|
printf_unfiltered ("\"set memory\" must be followed by the name of a memory subcommand.\n");
|
|
help_list (setmemorylist, "set memory ", -1, gdb_stdout);
|
|
}
|
|
|
|
void
|
|
_initialize_z8ktdep (void)
|
|
{
|
|
tm_print_insn = gdb_print_insn_z8k;
|
|
|
|
add_prefix_cmd ("memory", no_class, set_memory,
|
|
"set the memory model", &setmemorylist, "set memory ", 0,
|
|
&setlist);
|
|
add_cmd ("segmented", class_support, segmented_command,
|
|
"Set segmented memory model.", &setmemorylist);
|
|
add_cmd ("unsegmented", class_support, unsegmented_command,
|
|
"Set unsegmented memory model.", &setmemorylist);
|
|
|
|
}
|