]> code.delx.au - gnu-emacs/blob - src/m/intel386.h
Some more changes from Michael K. Johnson for Linux.
[gnu-emacs] / src / m / intel386.h
1 /* Machine description file for intel 386.
2 Copyright (C) 1987 Free Software Foundation, Inc.
3
4 This file is part of GNU Emacs.
5
6 GNU Emacs is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 1, or (at your option)
9 any later version.
10
11 GNU Emacs is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GNU Emacs; see the file COPYING. If not, write to
18 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
19
20
21 /* The following line tells the configuration script what sort of
22 operating system this machine is likely to run.
23 USUAL-OPSYS="note"
24
25 NOTE-START
26 Intel 386 (-machine=intel386 or -machine=is386.h)
27
28 The possibilities for -opsystem are: bsd4-2, usg5-2-2, usg5-3,
29 isc2-2, 386-ix, esix, linux, sco3.2v4, and xenix.
30
31 18.58 should support a wide variety of operating systems.
32 Use isc2-2 for Interactive 386/ix version 2.2.
33 Use 386ix for prior versions.
34 Use esix for Esix.
35 Use linux for Linux.
36 It isn't clear what to do on an SCO system.
37
38 -machine=is386 is used for an Integrated Solutions 386 machine.
39 It may also be correct for Microport systems.
40
41 Cubix QBx/386 (-machine=intel386 -opsystem=usg5-3)
42
43 Changes merged in 19.1. Systems before 2/A/0 may fail to compile etags.c
44 due to a compiler bug.
45
46 Prime EXL (-machine=intel386 -opsystem=usg5-3)
47
48 Minor changes merged in 19.1.
49 NOTE-END */
50
51 /* The following three symbols give information on
52 the size of various data types. */
53
54
55 /* Linux defines these in <values.h>, but they can't be used in #if's */
56 #undef SHORTBITS
57 #undef INTBITS
58 #undef LONGBITS
59
60 #define SHORTBITS 16 /* Number of bits in a short */
61
62 #define INTBITS 32 /* Number of bits in an int */
63
64 #define LONGBITS 32 /* Number of bits in a long */
65
66 /* i386 is not big-endian: lowest numbered byte is least significant. */
67
68 /* #undef BIG_ENDIAN */
69
70 /* Define NO_ARG_ARRAY if you cannot take the address of the first of a
71 * group of arguments and treat it as an array of the arguments. */
72
73 /* #define NO_ARG_ARRAY */
74
75 /* Define WORD_MACHINE if addresses and such have
76 * to be corrected before they can be used as byte counts. */
77
78 /* #define WORD_MACHINE */
79
80 /* Now define a symbol for the cpu type, if your compiler
81 does not define it automatically:
82 Ones defined so far include vax, m68000, ns16000, pyramid,
83 orion, tahoe, APOLLO and many others */
84
85 #define INTEL386
86
87 /* Use type int rather than a union, to represent Lisp_Object */
88
89 #define NO_UNION_TYPE
90
91 /* crt0.c, if it is used, should use the i386-bsd style of entry.
92 with no extra dummy args. On USG and XENIX,
93 NO_REMAP says this isn't used. */
94
95 #define CRT0_DUMMIES bogus_fp,
96
97 /* crt0.c should define a symbol `start' and do .globl with a dot. */
98
99 #define DOT_GLOBAL_START
100
101 #ifdef XENIX
102 /* Data type of load average, as read out of kmem. */
103 #define LOAD_AVE_TYPE short
104
105 /* Convert that into an integer that is 100 for a load average of 1.0 */
106 #define LOAD_AVE_CVT(x) (((double) (x)) * 100.0 / FSCALE)
107
108 #define FSCALE 256.0 /* determined by experimentation... */
109 #endif
110
111 #ifdef USG5_4 /* Older USG systems do not support the load average. */
112 /* Data type of load average, as read out of kmem. */
113
114 #define LOAD_AVE_TYPE long
115
116 /* Convert that into an integer that is 100 for a load average of 1.0 */
117 /* This is totally uncalibrated. */
118
119 #define LOAD_AVE_CVT(x) ((int) (((double) (x)) * 100.0 / FSCALE))
120 #define FSCALE 256.0
121 #endif
122
123 /* Define CANNOT_DUMP on machines where unexec does not work.
124 Then the function dump-emacs will not be defined
125 and temacs will do (load "loadup") automatically unless told otherwise. */
126
127 /* #define CANNOT_DUMP */
128
129 /* Define VIRT_ADDR_VARIES if the virtual addresses of
130 pure and impure space as loaded can vary, and even their
131 relative order cannot be relied on.
132
133 Otherwise Emacs assumes that text space precedes data space,
134 numerically. */
135
136 /* #define VIRT_ADDR_VARIES */
137
138 #ifdef XENIX
139 #define VALBITS 26
140 #define GCTYPEBITS 5
141
142 /* Define NO_REMAP if memory segmentation makes it not work well
143 to change the boundary between the text section and data section
144 when Emacs is dumped. If you define this, the preloaded Lisp
145 code will not be sharable; but that's better than failing completely. */
146
147 #define NO_REMAP
148
149 #define STACK_DIRECTION -1
150
151 /* Since cannot purify, use standard Xenix 386 startup code. */
152
153 #define START_FILES /lib/386/Sseg.o pre-crt0.o /lib/386/Scrt0.o
154
155 /* These really use terminfo. */
156
157 #define LIBS_TERMCAP /lib/386/Slibcurses.a \
158 /lib/386/Slibtinfo.a /lib/386/Slibx.a
159
160 /* Standard libraries for this machine. Since `-l' doesn't work in `ld'. */
161 /* '__fltused' is unresolved w/o Slibcfp.a */
162 #define LIB_STANDARD /lib/386/Slibcfp.a /lib/386/Slibc.a
163 #else /* not XENIX */
164
165 /* this brings in alloca() if we're using cc */
166 #ifdef USG
167 #ifndef LIB_STANDARD
168 #ifdef USG5_4
169 #define LIB_STANDARD -lc
170 #else /* not USG5_4 */
171 #define LIB_STANDARD -lPW -lc
172 #endif /* not USG5_4 */
173 #endif /* LIB_STANDARD */
174
175 #define HAVE_ALLOCA
176 #define NO_REMAP
177 #define TEXT_START 0
178 #endif /* not USG */
179 #endif /* not XENIX */
180
181 #ifdef BSD
182 #define HAVE_ALLOCA
183 #endif /* BSD */
184
185 /* If compiling with GCC, let GCC implement alloca. */
186 #if defined(__GNUC__) && !defined(alloca)
187 #define alloca(n) __builtin_alloca(n)
188 #define HAVE_ALLOCA
189 #endif
190
191 #ifdef USG5_4
192 #define DATA_SEG_BITS 0x08000000
193 #endif