1 |
cebix |
1.1 |
/* |
2 |
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* sysdeps.h - System dependent definitions for Unix |
3 |
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* |
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cebix |
1.21 |
* Basilisk II (C) 1997-2002 Christian Bauer |
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cebix |
1.1 |
* |
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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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* |
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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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* |
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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, Boston, MA 02111-1307 USA |
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*/ |
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#ifndef SYSDEPS_H |
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#define SYSDEPS_H |
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#ifndef __STDC__ |
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#error "Your compiler is not ANSI. Get a real one." |
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#endif |
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#include "config.h" |
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cebix |
1.3 |
#include "user_strings_unix.h" |
30 |
cebix |
1.1 |
|
31 |
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#ifndef STDC_HEADERS |
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#error "You don't have ANSI C header files." |
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#endif |
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cebix |
1.2 |
#ifdef HAVE_UNISTD_H |
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# include <sys/types.h> |
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# include <unistd.h> |
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#endif |
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cebix |
1.1 |
#include <netinet/in.h> |
41 |
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#include <assert.h> |
42 |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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46 |
gbeauche |
1.24 |
#ifdef HAVE_PTHREADS |
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# include <pthread.h> |
48 |
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#endif |
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cebix |
1.1 |
#ifdef HAVE_FCNTL_H |
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# include <fcntl.h> |
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#endif |
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#ifdef TIME_WITH_SYS_TIME |
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# include <sys/time.h> |
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# include <time.h> |
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#else |
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# ifdef HAVE_SYS_TIME_H |
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# include <sys/time.h> |
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# else |
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# include <time.h> |
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# endif |
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#endif |
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66 |
cebix |
1.11 |
#ifdef ENABLE_NATIVE_M68K |
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/* Mac and host address space are the same */ |
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#define REAL_ADDRESSING 1 |
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/* Using 68k natively */ |
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#define EMULATED_68K 0 |
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/* Mac ROM is not write protected */ |
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#define ROM_IS_WRITE_PROTECTED 0 |
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cebix |
1.14 |
#define USE_SCRATCHMEM_SUBTERFUGE 1 |
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cebix |
1.11 |
|
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#else |
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/* Mac and host address space are distinct */ |
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gbeauche |
1.13 |
#ifndef REAL_ADDRESSING |
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cebix |
1.1 |
#define REAL_ADDRESSING 0 |
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gbeauche |
1.13 |
#endif |
84 |
cebix |
1.1 |
|
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cebix |
1.11 |
/* Using 68k emulator */ |
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cebix |
1.1 |
#define EMULATED_68K 1 |
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gbeauche |
1.13 |
/* The m68k emulator uses a prefetch buffer ? */ |
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#define USE_PREFETCH_BUFFER 0 |
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cebix |
1.14 |
/* Mac ROM is write protected when banked memory is used */ |
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gbeauche |
1.13 |
#if REAL_ADDRESSING || DIRECT_ADDRESSING |
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# define ROM_IS_WRITE_PROTECTED 0 |
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# define USE_SCRATCHMEM_SUBTERFUGE 1 |
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#else |
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# define ROM_IS_WRITE_PROTECTED 1 |
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#endif |
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cebix |
1.1 |
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cebix |
1.11 |
#endif |
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gbeauche |
1.13 |
/* Direct Addressing requires Video on SEGV signals */ |
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#if DIRECT_ADDRESSING && !ENABLE_VOSF |
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# undef ENABLE_VOSF |
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# define ENABLE_VOSF 1 |
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#endif |
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cebix |
1.6 |
/* ExtFS is supported */ |
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#define SUPPORTS_EXTFS 1 |
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cebix |
1.11 |
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cebix |
1.20 |
/* BSD socket API supported */ |
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#define SUPPORTS_UDP_TUNNEL 1 |
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cebix |
1.6 |
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cebix |
1.1 |
/* Data types */ |
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typedef unsigned char uint8; |
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typedef signed char int8; |
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#if SIZEOF_SHORT == 2 |
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typedef unsigned short uint16; |
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typedef short int16; |
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#elif SIZEOF_INT == 2 |
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typedef unsigned int uint16; |
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typedef int int16; |
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#else |
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#error "No 2 byte type, you lose." |
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#endif |
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#if SIZEOF_INT == 4 |
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typedef unsigned int uint32; |
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typedef int int32; |
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#elif SIZEOF_LONG == 4 |
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typedef unsigned long uint32; |
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typedef long int32; |
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#else |
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#error "No 4 byte type, you lose." |
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#endif |
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#if SIZEOF_LONG == 8 |
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typedef unsigned long uint64; |
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typedef long int64; |
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cebix |
1.8 |
#define VAL64(a) (a ## l) |
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#define UVAL64(a) (a ## ul) |
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cebix |
1.1 |
#elif SIZEOF_LONG_LONG == 8 |
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typedef unsigned long long uint64; |
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typedef long long int64; |
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cebix |
1.8 |
#define VAL64(a) (a ## LL) |
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#define UVAL64(a) (a ## uLL) |
145 |
cebix |
1.1 |
#else |
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#error "No 8 byte type, you lose." |
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gbeauche |
1.13 |
#endif |
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#if SIZEOF_VOID_P == 4 |
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typedef uint32 uintptr; |
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typedef int32 intptr; |
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#elif SIZEOF_VOID_P == 8 |
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typedef uint64 uintptr; |
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typedef int64 intptr; |
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#else |
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#error "Unsupported size of pointer" |
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cebix |
1.1 |
#endif |
157 |
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nigel |
1.27 |
#ifndef HAVE_LOFF_T |
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gbeauche |
1.28 |
typedef off_t loff_t; |
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#endif |
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#ifndef HAVE_CADDR_T |
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typedef char * caddr_t; |
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nigel |
1.27 |
#endif |
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cebix |
1.1 |
/* Time data type for Time Manager emulation */ |
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#ifdef HAVE_CLOCK_GETTIME |
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typedef struct timespec tm_time_t; |
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#else |
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typedef struct timeval tm_time_t; |
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#endif |
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172 |
gbeauche |
1.23 |
/* Define codes for all the float formats that we know of. |
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* Though we only handle IEEE format. */ |
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#define UNKNOWN_FLOAT_FORMAT 0 |
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#define IEEE_FLOAT_FORMAT 1 |
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#define VAX_FLOAT_FORMAT 2 |
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#define IBM_FLOAT_FORMAT 3 |
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#define C4X_FLOAT_FORMAT 4 |
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cebix |
1.1 |
/* UAE CPU data types */ |
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#define uae_s8 int8 |
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#define uae_u8 uint8 |
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#define uae_s16 int16 |
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#define uae_u16 uint16 |
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#define uae_s32 int32 |
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#define uae_u32 uint32 |
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cebix |
1.7 |
#define uae_s64 int64 |
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#define uae_u64 uint64 |
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cebix |
1.1 |
typedef uae_u32 uaecptr; |
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/* Alignment restrictions */ |
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gbeauche |
1.25 |
#if defined(__i386__) || defined(__powerpc__) || defined(__m68k__) || defined(__x86_64__) |
193 |
cebix |
1.1 |
# define CPU_CAN_ACCESS_UNALIGNED |
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#endif |
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196 |
cebix |
1.12 |
/* Timing functions */ |
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extern uint64 GetTicks_usec(void); |
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extern void Delay_usec(uint32 usec); |
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200 |
cebix |
1.22 |
#ifdef HAVE_PTHREADS |
201 |
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/* Centralized pthread attribute setup */ |
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void Set_pthread_attr(pthread_attr_t *attr, int priority); |
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#endif |
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205 |
cebix |
1.1 |
/* UAE CPU defines */ |
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#ifdef WORDS_BIGENDIAN |
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#ifdef CPU_CAN_ACCESS_UNALIGNED |
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/* Big-endian CPUs which can do unaligned accesses */ |
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static inline uae_u32 do_get_mem_long(uae_u32 *a) {return *a;} |
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static inline uae_u32 do_get_mem_word(uae_u16 *a) {return *a;} |
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static inline void do_put_mem_long(uae_u32 *a, uae_u32 v) {*a = v;} |
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static inline void do_put_mem_word(uae_u16 *a, uae_u32 v) {*a = v;} |
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#else /* CPU_CAN_ACCESS_UNALIGNED */ |
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#ifdef sgi |
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/* The SGI MIPSPro compilers can do unaligned accesses given enough hints. |
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* They will automatically inline these routines. */ |
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#ifdef __cplusplus |
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extern "C" { /* only the C compiler does unaligned accesses */ |
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#endif |
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extern uae_u32 do_get_mem_long(uae_u32 *a); |
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extern uae_u32 do_get_mem_word(uae_u16 *a); |
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extern void do_put_mem_long(uae_u32 *a, uae_u32 v); |
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extern void do_put_mem_word(uae_u16 *a, uae_u32 v); |
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#ifdef __cplusplus |
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} |
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#endif |
231 |
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232 |
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#else /* sgi */ |
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234 |
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/* Big-endian CPUs which can not do unaligned accesses (this is not the most efficient way to do this...) */ |
235 |
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static inline uae_u32 do_get_mem_long(uae_u32 *a) {uint8 *b = (uint8 *)a; return (b[0] << 24) | (b[1] << 16) | (b[2] << 8) | b[3];} |
236 |
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static inline uae_u32 do_get_mem_word(uae_u16 *a) {uint8 *b = (uint8 *)a; return (b[0] << 8) | b[1];} |
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static inline void do_put_mem_long(uae_u32 *a, uae_u32 v) {uint8 *b = (uint8 *)a; b[0] = v >> 24; b[1] = v >> 16; b[2] = v >> 8; b[3] = v;} |
238 |
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static inline void do_put_mem_word(uae_u16 *a, uae_u32 v) {uint8 *b = (uint8 *)a; b[0] = v >> 8; b[1] = v;} |
239 |
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#endif /* sgi */ |
240 |
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241 |
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#endif /* CPU_CAN_ACCESS_UNALIGNED */ |
242 |
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243 |
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#else /* WORDS_BIGENDIAN */ |
244 |
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245 |
gbeauche |
1.25 |
#if defined(__i386__) || defined(__x86_64__) |
246 |
cebix |
1.1 |
|
247 |
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/* Intel x86 */ |
248 |
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#define X86_PPRO_OPT |
249 |
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static inline uae_u32 do_get_mem_long(uae_u32 *a) {uint32 retval; __asm__ ("bswap %0" : "=r" (retval) : "0" (*a) : "cc"); return retval;} |
250 |
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#ifdef X86_PPRO_OPT |
251 |
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static inline uae_u32 do_get_mem_word(uae_u16 *a) {uint32 retval; __asm__ ("movzwl %w1,%k0\n\tshll $16,%k0\n\tbswapl %k0\n" : "=&r" (retval) : "m" (*a) : "cc"); return retval;} |
252 |
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#else |
253 |
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static inline uae_u32 do_get_mem_word(uae_u16 *a) {uint32 retval; __asm__ ("xorl %k0,%k0\n\tmovw %w1,%w0\n\trolw $8,%w0" : "=&r" (retval) : "m" (*a) : "cc"); return retval;} |
254 |
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#endif |
255 |
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#define HAVE_GET_WORD_UNSWAPPED |
256 |
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#define do_get_mem_word_unswapped(a) ((uae_u32)*((uae_u16 *)(a))) |
257 |
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static inline void do_put_mem_long(uae_u32 *a, uae_u32 v) {__asm__ ("bswap %0" : "=r" (v) : "0" (v) : "cc"); *a = v;} |
258 |
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#ifdef X86_PPRO_OPT |
259 |
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static inline void do_put_mem_word(uae_u16 *a, uae_u32 v) {__asm__ ("bswapl %0" : "=&r" (v) : "0" (v << 16) : "cc"); *a = v;} |
260 |
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#else |
261 |
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static inline void do_put_mem_word(uae_u16 *a, uae_u32 v) {__asm__ ("rolw $8,%0" : "=r" (v) : "0" (v) : "cc"); *a = v;} |
262 |
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#endif |
263 |
gbeauche |
1.16 |
#define HAVE_OPTIMIZED_BYTESWAP_32 |
264 |
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/* bswap doesn't affect condition codes */ |
265 |
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static inline uae_u32 do_byteswap_32(uae_u32 v) {__asm__ ("bswap %0" : "=r" (v) : "0" (v)); return v;} |
266 |
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#define HAVE_OPTIMIZED_BYTESWAP_16 |
267 |
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#ifdef X86_PPRO_OPT |
268 |
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static inline uae_u32 do_byteswap_16(uae_u32 v) {__asm__ ("bswapl %0" : "=&r" (v) : "0" (v << 16) : "cc"); return v;} |
269 |
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#else |
270 |
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static inline uae_u32 do_byteswap_16(uae_u32 v) {__asm__ ("rolw $8,%0" : "=r" (v) : "0" (v) : "cc"); return v;} |
271 |
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#endif |
272 |
cebix |
1.1 |
|
273 |
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#elif defined(CPU_CAN_ACCESS_UNALIGNED) |
274 |
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275 |
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/* Other little-endian CPUs which can do unaligned accesses */ |
276 |
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static inline uae_u32 do_get_mem_long(uae_u32 *a) {uint32 x = *a; return (x >> 24) | (x >> 8) & 0xff00 | (x << 8) & 0xff0000 | (x << 24);} |
277 |
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static inline uae_u32 do_get_mem_word(uae_u16 *a) {uint16 x = *a; return (x >> 8) | (x << 8);} |
278 |
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static inline void do_put_mem_long(uae_u32 *a, uae_u32 v) {*a = (v >> 24) | (v >> 8) & 0xff00 | (v << 8) & 0xff0000 | (v << 24);} |
279 |
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static inline void do_put_mem_word(uae_u16 *a, uae_u32 v) {*a = (v >> 8) | (v << 8);} |
280 |
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281 |
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#else /* CPU_CAN_ACCESS_UNALIGNED */ |
282 |
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283 |
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/* Other little-endian CPUs which can not do unaligned accesses (this needs optimization) */ |
284 |
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static inline uae_u32 do_get_mem_long(uae_u32 *a) {uint8 *b = (uint8 *)a; return (b[0] << 24) | (b[1] << 16) | (b[2] << 8) | b[3];} |
285 |
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static inline uae_u32 do_get_mem_word(uae_u16 *a) {uint8 *b = (uint8 *)a; return (b[0] << 8) | b[1];} |
286 |
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static inline void do_put_mem_long(uae_u32 *a, uae_u32 v) {uint8 *b = (uint8 *)a; b[0] = v >> 24; b[1] = v >> 16; b[2] = v >> 8; b[3] = v;} |
287 |
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static inline void do_put_mem_word(uae_u16 *a, uae_u32 v) {uint8 *b = (uint8 *)a; b[0] = v >> 8; b[1] = v;} |
288 |
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289 |
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#endif /* CPU_CAN_ACCESS_UNALIGNED */ |
290 |
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291 |
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#endif /* WORDS_BIGENDIAN */ |
292 |
gbeauche |
1.16 |
|
293 |
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#ifndef HAVE_OPTIMIZED_BYTESWAP_32 |
294 |
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static inline uae_u32 do_byteswap_32(uae_u32 v) |
295 |
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{ return (((v >> 24) & 0xff) | ((v >> 8) & 0xff00) | ((v & 0xff) << 24) | ((v & 0xff00) << 8)); } |
296 |
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#endif |
297 |
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298 |
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#ifndef HAVE_OPTIMIZED_BYTESWAP_16 |
299 |
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static inline uae_u32 do_byteswap_16(uae_u32 v) |
300 |
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{ return (((v >> 8) & 0xff) | ((v & 0xff) << 8)); } |
301 |
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#endif |
302 |
cebix |
1.1 |
|
303 |
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#define do_get_mem_byte(a) ((uae_u32)*((uae_u8 *)(a))) |
304 |
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#define do_put_mem_byte(a, v) (*(uae_u8 *)(a) = (v)) |
305 |
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306 |
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#define call_mem_get_func(func, addr) ((*func)(addr)) |
307 |
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#define call_mem_put_func(func, addr, v) ((*func)(addr, v)) |
308 |
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#define __inline__ inline |
309 |
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#define CPU_EMU_SIZE 0 |
310 |
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#undef NO_INLINE_MEMORY_ACCESS |
311 |
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#undef MD_HAVE_MEM_1_FUNCS |
312 |
|
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#define ENUMDECL typedef enum |
313 |
|
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#define ENUMNAME(name) name |
314 |
|
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#define write_log printf |
315 |
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|
316 |
gbeauche |
1.26 |
#if defined(X86_ASSEMBLY) || defined(X86_64_ASSEMBLY) |
317 |
cebix |
1.1 |
#define ASM_SYM_FOR_FUNC(a) __asm__(a) |
318 |
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#else |
319 |
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#define ASM_SYM_FOR_FUNC(a) |
320 |
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#endif |
321 |
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322 |
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#ifndef REGPARAM |
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# define REGPARAM |
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#endif |
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#define REGPARAM2 |
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#endif |