2965c99fea
a flattened argument/environment buffer now. This simplifies the work for the kernel a bit, since it can just copy the buffer and check whether it looks OK instead of messing around with individual strings. The runtime loader also gets a flattened array. * Set the maximum size of the arguments/environment buffer to 128 KB. When more arguments are passed, we fail with a proper error code (instead of just truncating the arguments as before). * On exec*() the first argument was silently replaced by the given path name, which is not correct. git-svn-id: file:///srv/svn/repos/haiku/haiku/trunk@26119 a95241bf-73f2-0310-859d-f6bbb57e9c96
80 lines
2.8 KiB
C
80 lines
2.8 KiB
C
/*
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* Copyright 2004-2007, Haiku Inc. All Rights Reserved.
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* Distributed under the terms of the MIT License.
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*/
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#ifndef _TEAM_H
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#define _TEAM_H
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#include <thread_types.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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status_t team_init(struct kernel_args *args);
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team_id team_create_team(const char *path, const char *name, char **args,
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int argc, char **envp, int envc, int priority);
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status_t wait_for_team(team_id id, status_t *returnCode);
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void team_remove_team(struct team *team);
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void team_delete_team(struct team *team);
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struct process_group *team_get_process_group_locked(
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struct process_session *session, pid_t id);
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void team_delete_process_group(struct process_group *group);
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struct team *team_get_kernel_team(void);
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team_id team_get_kernel_team_id(void);
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team_id team_get_current_team_id(void);
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status_t team_get_address_space(team_id id,
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struct vm_address_space **_addressSpace);
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char **user_team_get_arguments(void);
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int user_team_get_arg_count(void);
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struct job_control_entry* team_get_death_entry(struct team *team,
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thread_id child, bool* _deleteEntry);
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bool team_is_valid(team_id id);
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struct team *team_get_team_struct_locked(team_id id);
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int32 team_max_teams(void);
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int32 team_used_teams(void);
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void team_set_job_control_state(struct team* team, job_control_state newState,
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int signal, bool threadsLocked);
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void team_set_controlling_tty(int32 index);
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int32 team_get_controlling_tty();
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status_t team_set_foreground_process_group(int32 ttyIndex, pid_t processGroup);
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status_t start_watching_team(team_id team, void (*hook)(team_id, void *),
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void *data);
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status_t stop_watching_team(team_id team, void (*hook)(team_id, void *),
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void *data);
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struct user_thread* team_allocate_user_thread(struct team* team);
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void team_free_user_thread(struct thread* thread);
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// used in syscalls.c
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thread_id _user_load_image(const char* const* flatArgs, size_t flatArgsSize,
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int32 argCount, int32 envCount, int32 priority, uint32 flags,
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port_id errorPort, uint32 errorToken);
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status_t _user_wait_for_team(team_id id, status_t *_returnCode);
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void _user_exit_team(status_t returnValue);
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status_t _user_kill_team(thread_id thread);
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thread_id _user_wait_for_child(thread_id child, uint32 flags, int32 *_reason,
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status_t *_returnCode);
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status_t _user_exec(const char *path, const char* const* flatArgs,
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size_t flatArgsSize, int32 argCount, int32 envCount);
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thread_id _user_fork(void);
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team_id _user_get_current_team(void);
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pid_t _user_process_info(pid_t process, int32 which);
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pid_t _user_setpgid(pid_t process, pid_t group);
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pid_t _user_setsid(void);
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status_t _user_get_team_info(team_id id, team_info *info);
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status_t _user_get_next_team_info(int32 *cookie, team_info *info);
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status_t _user_get_team_usage_info(team_id team, int32 who,
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team_usage_info *info, size_t size);
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#ifdef __cplusplus
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}
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#endif
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#endif /* _TEAM_H */
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