Reindented to GNU standard. No semantic changes. This checkin is to
[deliverable/binutils-gdb.git] / gdb / xm-altos.h
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1/* Definitions to make GDB run on an Altos 3068 (m68k running SVR2)
2 Copyright (C) 1987,1989 Free Software Foundation, Inc.
3
4This file is part of GDB.
5
99a7de40 6This program is free software; you can redistribute it and/or modify
dd3b648e 7it under the terms of the GNU General Public License as published by
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8the Free Software Foundation; either version 2 of the License, or
9(at your option) any later version.
dd3b648e 10
99a7de40 11This program is distributed in the hope that it will be useful,
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12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
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17along with this program; if not, write to the Free Software
18Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
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19
20#define HOST_BYTE_ORDER BIG_ENDIAN
21
22/* The altos support would make a good base for a port to other USGR2 systems
23 (like the 3b1 and the Convergent miniframe). */
24
25/* This is only needed in one file, but it's cleaner to put it here than
26 putting in more #ifdef's. */
27#include <sys/page.h>
28#include <sys/net.h>
29
30#define USG
31
32#define HAVE_TERMIO
33
34#define CBREAK XTABS /* It takes all kinds... */
35
36#ifndef R_OK
37#define R_OK 4
38#define W_OK 2
39#define X_OK 1
40#define F_OK 0
41#endif
42
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43/* Get sys/wait.h ie. from a Sun and edit it a little (mc68000 to m68k) */
44/* Why bother? */
45#if 0
46#define HAVE_WAIT_STRUCT
47#endif
48
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49/* This is the amount to subtract from u.u_ar0
50 to get the offset in the core file of the register values. */
51
52#define KERNEL_U_ADDR 0x1fbf000
53
54#define REGISTER_U_ADDR(addr, blockend, regno) \
55{ if (regno <= SP_REGNUM) \
56 addr = blockend + regno * 4; \
57 else if (regno == PS_REGNUM) \
58 addr = blockend + regno * 4 + 4; \
59 else if (regno == PC_REGNUM) \
60 addr = blockend + regno * 4 + 2; \
61}
62
63#define REGISTER_ADDR(u_ar0, regno) \
64 (((regno) < PS_REGNUM) \
65 ? (&((struct exception_stack *) (u_ar0))->e_regs[(regno + R0)]) \
66 : (((regno) == PS_REGNUM) \
67 ? ((int *) (&((struct exception_stack *) (u_ar0))->e_PS)) \
68 : (&((struct exception_stack *) (u_ar0))->e_PC)))
69
70#define FP_REGISTER_ADDR(u, regno) \
71 (((char *) \
72 (((regno) < FPC_REGNUM) \
73 ? (&u.u_pcb.pcb_mc68881[FMC68881_R0 + (((regno) - FP0_REGNUM) * 3)]) \
74 : (&u.u_pcb.pcb_mc68881[FMC68881_C + ((regno) - FPC_REGNUM)]))) \
75 - ((char *) (& u)))
76
77\f
78#ifndef __GNUC__
79#undef USE_GAS
80#define ALTOS_AS
81#else
82#define USE_GAS
83#endif
84
85/* Motorola assembly format */
86#if !defined(USE_GAS) && !defined(ALTOS)
87#define MOTOROLA
88#endif
89
90/* Interface definitions for kernel debugger KDB. */
91
92/* Map machine fault codes into signal numbers.
93 First subtract 0, divide by 4, then index in a table.
94 Faults for which the entry in this table is 0
95 are not handled by KDB; the program's own trap handler
96 gets to handle then. */
97
98#define FAULT_CODE_ORIGIN 0
99#define FAULT_CODE_UNITS 4
100#define FAULT_TABLE \
101{ 0, 0, 0, 0, SIGTRAP, 0, 0, 0, \
102 0, SIGTRAP, 0, 0, 0, 0, 0, SIGKILL, \
103 0, 0, 0, 0, 0, 0, 0, 0, \
104 SIGILL }
105
106/* Start running with a stack stretching from BEG to END.
107 BEG and END should be symbols meaningful to the assembler.
108 This is used only for kdb. */
109
110#ifdef MOTOROLA
111#define INIT_STACK(beg, end) \
112{ asm (".globl end"); \
113 asm ("move.l $ end, sp"); \
114 asm ("clr.l fp"); }
115#else
116#ifdef ALTOS_AS
117#define INIT_STACK(beg, end) \
118{ asm ("global end"); \
119 asm ("mov.l &end,%sp"); \
120 asm ("clr.l %fp"); }
121#else
122#define INIT_STACK(beg, end) \
123{ asm (".globl end"); \
124 asm ("movel $ end, sp"); \
125 asm ("clrl fp"); }
126#endif
127#endif
128
129/* Push the frame pointer register on the stack. */
130#ifdef MOTOROLA
131#define PUSH_FRAME_PTR \
132 asm ("move.l fp, -(sp)");
133#else
134#ifdef ALTOS_AS
135#define PUSH_FRAME_PTR \
136 asm ("mov.l %fp, -(%sp)");
137#else
138#define PUSH_FRAME_PTR \
139 asm ("movel fp, -(sp)");
140#endif
141#endif
142
143/* Copy the top-of-stack to the frame pointer register. */
144#ifdef MOTOROLA
145#define POP_FRAME_PTR \
146 asm ("move.l (sp), fp");
147#else
148#ifdef ALTOS_AS
149#define POP_FRAME_PTR \
150 asm ("mov.l (%sp), %fp");
151#else
152#define POP_FRAME_PTR \
153 asm ("movl (sp), fp");
154#endif
155#endif
156
157/* After KDB is entered by a fault, push all registers
158 that GDB thinks about (all NUM_REGS of them),
159 so that they appear in order of ascending GDB register number.
160 The fault code will be on the stack beyond the last register. */
161
162#ifdef MOTOROLA
163#define PUSH_REGISTERS \
164{ asm ("clr.w -(sp)"); \
165 asm ("pea (10,sp)"); \
166 asm ("movem $ 0xfffe,-(sp)"); }
167#else
168#ifdef ALTOS_AS
169#define PUSH_REGISTERS \
170{ asm ("clr.w -(%sp)"); \
171 asm ("pea (10,%sp)"); \
172 asm ("movm.l &0xfffe,-(%sp)"); }
173#else
174#define PUSH_REGISTERS \
175{ asm ("clrw -(sp)"); \
176 asm ("pea 10(sp)"); \
177 asm ("movem $ 0xfffe,-(sp)"); }
178#endif
179#endif
180
181/* Assuming the registers (including processor status) have been
182 pushed on the stack in order of ascending GDB register number,
183 restore them and return to the address in the saved PC register. */
184
185#ifdef MOTOROLA
186#define POP_REGISTERS \
187{ asm ("subi.l $8,28(sp)"); \
188 asm ("movem (sp),$ 0xffff"); \
189 asm ("rte"); }
190#else
191#ifdef ALTOS_AS
192#define POP_REGISTERS \
193{ asm ("sub.l &8,28(%sp)"); \
194 asm ("movem (%sp),&0xffff"); \
195 asm ("rte"); }
196#else
197#define POP_REGISTERS \
198{ asm ("subil $8,28(sp)"); \
199 asm ("movem (sp),$ 0xffff"); \
200 asm ("rte"); }
201#endif
202#endif
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