50e0ce4bee
They are only used if the architecture doesn't support them directly. git-svn-id: file:///srv/svn/repos/haiku/trunk/current@4360 a95241bf-73f2-0310-859d-f6bbb57e9c96
144 lines
5.8 KiB
C
144 lines
5.8 KiB
C
/*
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** Copyright 2001, Travis Geiselbrecht. All rights reserved.
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** Distributed under the terms of the NewOS License.
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*/
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#ifndef _LIBSYS_SYSCALLS_H
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#define _LIBSYS_SYSCALLS_H
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#include <ktypes.h>
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#include <defines.h>
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#include <resource.h>
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#include <vfs_types.h>
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#include <vm_types.h>
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#include <thread_types.h>
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#include <OS.h>
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#include <image.h>
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#include <sys/stat.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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int sys_null();
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int sys_getrlimit(int resource, struct rlimit * rlp);
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int sys_setrlimit(int resource, const struct rlimit * rlp);
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bigtime_t sys_system_time();
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status_t sys_snooze_etc(bigtime_t time, int timebase, int32 flags);
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/* sem functions */
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sem_id sys_create_sem(int count, const char *name);
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int sys_delete_sem(sem_id id);
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int sys_acquire_sem(sem_id id);
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int sys_acquire_sem_etc(sem_id id, uint32 count, uint32 flags, bigtime_t timeout);
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int sys_release_sem(sem_id id);
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int sys_release_sem_etc(sem_id id, uint32 count, uint32 flags);
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int sys_sem_get_count(sem_id id, int32* thread_count);
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int sys_get_sem_info(sem_id, struct sem_info *, size_t);
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int sys_get_next_sem_info(team_id, uint32 *, struct sem_info *, size_t);
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int sys_set_sem_owner(sem_id id, team_id proc);
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void sys_exit(int retcode);
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team_id sys_create_team(const char *path, const char *name, char **args, int argc, char **envp, int envc, int priority);
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thread_id sys_spawn_thread(int32 (*func)(thread_func, void *), const char *, int32, void *, void *);
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thread_id sys_get_current_thread_id(void);
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int sys_suspend_thread(thread_id tid);
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int sys_resume_thread(thread_id tid);
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int sys_kill_thread(thread_id tid);
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void sys_exit_thread(status_t return_value);
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status_t sys_wait_on_thread(thread_id tid, status_t *retcode);
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int sys_kill_team(team_id tid);
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team_id sys_get_current_team_id();
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int sys_wait_on_team(team_id tid, int *retcode);
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status_t sys_get_thread_info(thread_id id, thread_info *info);
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status_t sys_get_next_thread_info(team_id team, int32 *cookie, thread_info *info);
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status_t sys_get_team_info(team_id id, team_info *info);
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status_t sys_get_next_team_info(int32 *cookie, team_info *info);
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int sys_send_signal(pid_t tid, uint sig);
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int sys_sigaction(int sig, const struct sigaction *act, struct sigaction *oact);
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bigtime_t sys_set_alarm(bigtime_t time, uint32 mode);
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// image functions
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image_id sys_register_image(image_info *info, size_t size);
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status_t sys_unregister_image(image_id id);
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status_t sys_get_image_info(image_id id, image_info *info, size_t size);
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status_t sys_get_next_image_info(team_id team, int32 *cookie, image_info *info, size_t size);
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// node monitor functions
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status_t sys_stop_notifying(port_id port, uint32 token);
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status_t sys_start_watching(dev_t device, ino_t node, uint32 flags,
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port_id port, uint32 token);
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status_t sys_stop_watching(dev_t device, ino_t node, uint32 flags,
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port_id port, uint32 token);
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// area functions
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area_id _kern_create_area(const char *name, void **address, uint32 addressSpec,
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size_t size, uint32 lock, uint32 protection);
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region_id sys_vm_map_file(const char *name, void **address, int addr_type,
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addr size, int lock, int mapping, const char *path, off_t offset);
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status_t _kern_delete_area(area_id area);
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area_id _kern_area_for(void *address);
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area_id _kern_find_area(const char *name);
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status_t _kern_get_area_info(area_id area, area_info *info);
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status_t _kern_get_next_area_info(team_id team, int32 *cookie, area_info *info);
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status_t _kern_resize_area(area_id area, size_t newSize);
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status_t _kern_set_area_protection(area_id area, uint32 newProtection);
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area_id _kern_clone_area(const char *name, void **_address, uint32 addressSpec,
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uint32 protection, area_id sourceArea);
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/* kernel port functions */
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port_id sys_port_create(int32 queue_length, const char *name);
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int sys_port_close(port_id id);
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int sys_port_delete(port_id id);
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port_id sys_port_find(const char *port_name);
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int sys_port_get_info(port_id id, struct port_info *info);
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int sys_port_get_next_port_info(team_id team, uint32 *cookie, struct port_info *info);
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ssize_t sys_port_buffer_size(port_id port);
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ssize_t sys_port_buffer_size_etc(port_id port, uint32 flags, bigtime_t timeout);
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int32 sys_port_count(port_id port);
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ssize_t sys_port_read(port_id port, int32 *msg_code, void *msg_buffer, size_t buffer_size);
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ssize_t sys_port_read_etc(port_id port, int32 *msg_code, void *msg_buffer, size_t buffer_size, uint32 flags, bigtime_t timeout);
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int sys_port_set_owner(port_id port, team_id team);
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int sys_port_write(port_id port, int32 msg_code, const void *msg_buffer, size_t buffer_size);
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int sys_port_write_etc(port_id port, int32 msg_code, const void *msg_buffer, size_t buffer_size, uint32 flags, bigtime_t timeout);
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/* atomic_* ops (needed for CPUs that don't support them directly) */
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int32 _kern_atomic_set(vint32 *value, int32 newValue);
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int32 _kern_atomic_test_and_set(vint32 *value, int32 newValue, int32 testAgainst);
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int32 _kern_atomic_add(vint32 *value, int32 addValue);
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int32 _kern_atomic_and(vint32 *value, int32 andValue);
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int32 _kern_atomic_or(vint32 *value, int32 orValue);
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int32 _kern_atomic_read(vint32 *value);
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int64 _kern_atomic_set64(vint64 *value, int64 newValue);
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int64 _kern_atomic_test_and_set64(vint64 *value, int64 newValue, int64 testAgainst);
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int64 _kern_atomic_add64(vint64 *value, int64 addValue);
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int64 _kern_atomic_and64(vint64 *value, int64 andValue);
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int64 _kern_atomic_or64(vint64 *value, int64 orValue);
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int64 _kern_atomic_read64(vint64 *value);
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int sys_sysctl(int *, uint, void *, size_t *, void *, size_t);
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int sys_socket(int, int, int);
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int sys_setenv(const char *, const char *, int);
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int sys_getenv(const char *, char **);
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/* region prototypes */
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area_id sys_find_region_by_name(const char *);
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/* This is a real BSD'ism :) Basically it returns the size of the
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* descriptor table for the current process as an integer.
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*/
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int sys_getdtablesize(void);
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#ifdef __cplusplus
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}
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#endif
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#endif /* _LIBSYS_SYSCALLS_H */
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