2013-08-30 11:35:30 -04:00
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/*******************************************************************************
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Copyright(C) Jonas 'Sortie' Termansen 2013.
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This file is part of Sortix.
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Sortix is free software: you can redistribute it and/or modify it under the
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terms of the GNU General Public License as published by the Free Software
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Foundation, either version 3 of the License, or (at your option) any later
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version.
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Sortix is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
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details.
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You should have received a copy of the GNU General Public License along with
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Sortix. If not, see <http://www.gnu.org/licenses/>.
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resource.cpp
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Resource limits and operations.
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*******************************************************************************/
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#include <sys/types.h>
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#include <errno.h>
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#include <limits.h>
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#include <sortix/resource.h>
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2013-08-30 17:55:09 -04:00
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#include <sortix/kernel/copy.h>
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2013-08-30 11:35:30 -04:00
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#include <sortix/kernel/kernel.h>
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#include <sortix/kernel/process.h>
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#include <sortix/kernel/ptable.h>
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#include <sortix/kernel/syscall.h>
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#include "resource.h"
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namespace Sortix {
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namespace Resource {
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static int GetProcessPriority(pid_t who)
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{
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if ( who < 0 )
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return errno = EINVAL, -1;
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// TODO: If who isn't the current process, then it could self-destruct at
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// any time while we use it; there is no safe way to do this yet.
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Process* process = who ? CurrentProcess()->GetPTable()->Get(who) : CurrentProcess();
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if ( !process )
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return errno = ESRCH, -1;
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ScopedLock lock(&process->nicelock);
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return process->nice;
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}
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static int SetProcessPriority(pid_t who, int prio)
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{
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if ( who < 0 )
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return errno = EINVAL, -1;
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// TODO: If who isn't the current process, then it could self-destruct at
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// any time while we use it; there is no safe way to do this yet.
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Process* process = who ? CurrentProcess()->GetPTable()->Get(who) : CurrentProcess();
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if ( !process )
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return errno = ESRCH, -1;
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ScopedLock lock(&process->nicelock);
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process->nice = prio;
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return 0;
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}
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static Process* CurrentProcessGroup()
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{
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Process* process = CurrentProcess();
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ScopedLock lock(&process->groupchildlock);
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// TODO: The process group can change when this call returns, additionally
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// the current process leader could self-destruct.
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return process->group;
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}
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static int GetProcessGroupPriority(pid_t who)
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{
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if ( who < 0 )
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return errno = EINVAL, -1;
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// TODO: If who isn't the current process, then it could self-destruct at
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// any time while we use it; there is no safe way to do this yet.
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Process* group = who ? CurrentProcess()->GetPTable()->Get(who) : CurrentProcessGroup();
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if ( !group )
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return errno = ESRCH, -1;
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int lowest = INT_MAX;
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ScopedLock group_parent_lock(&group->groupparentlock);
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for ( Process* process = group->groupfirst; process; process = process->groupnext )
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{
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ScopedLock lock(&process->nicelock);
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if ( process->nice < lowest )
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lowest = process->nice;
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}
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return lowest;
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}
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static int SetProcessGroupPriority(pid_t who, int prio)
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{
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if ( who < 0 )
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return errno = EINVAL, -1;
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// TODO: If who isn't the current process, then it could self-destruct at
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// any time while we use it; there is no safe way to do this yet.
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Process* group = who ? CurrentProcess()->GetPTable()->Get(who) : CurrentProcessGroup();
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if ( !group )
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return errno = ESRCH, -1;
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ScopedLock group_parent_lock(&group->groupparentlock);
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for ( Process* process = group->groupfirst; process; process = process->groupnext )
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{
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ScopedLock lock(&process->nicelock);
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process->nice = prio;
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}
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return 0;
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}
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static int GetUserPriority(uid_t /*who*/)
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{
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// TODO: There is currently no easy way to iterate all processes without
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// dire race conditions being possible.
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return errno = ENOSYS, -1;
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}
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static int SetUserPriority(uid_t /*who*/, int /*prio*/)
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{
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// TODO: There is currently no easy way to iterate all processes without
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// dire race conditions being possible.
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return errno = ENOSYS, -1;
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}
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static int sys_getpriority(int which, id_t who)
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{
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switch ( which )
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{
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case PRIO_PROCESS: return GetProcessPriority(who);
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case PRIO_PGRP: return GetProcessGroupPriority(who);
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case PRIO_USER: return GetUserPriority(who);
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default: return errno = EINVAL, -1;
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}
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}
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static int sys_setpriority(int which, id_t who, int prio)
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{
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switch ( which )
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{
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case PRIO_PROCESS: return SetProcessPriority(who, prio);
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case PRIO_PGRP: return SetProcessGroupPriority(who, prio);
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case PRIO_USER: return SetUserPriority(who, prio);
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default: return errno = EINVAL, -1;
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}
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}
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2013-08-30 17:55:09 -04:00
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static
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int sys_prlimit(pid_t pid,
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int resource,
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const struct rlimit* user_new_limit,
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struct rlimit* user_old_limit)
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{
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if ( pid < 0 )
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return errno = EINVAL, -1;
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if ( resource < 0 || RLIMIT_NUM_DECLARED <= resource )
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return errno = EINVAL, -1;
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// TODO: If pid isn't the current process, then it could self-destruct at
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// any time while we use it; there is no safe way to do this yet.
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2014-03-19 18:34:09 -04:00
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Process* process = pid ? CurrentProcess()->GetPTable()->Get(pid) : CurrentProcess();
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2013-08-30 17:55:09 -04:00
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if ( !process )
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return errno = ESRCH, -1;
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ScopedLock lock(&process->resource_limits_lock);
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struct rlimit* limit = &process->resource_limits[resource];
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if ( user_old_limit )
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{
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if ( !CopyToUser(user_old_limit, limit, sizeof(struct rlimit)) )
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return -1;
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}
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if ( user_new_limit )
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{
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struct rlimit new_limit;
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if ( !CopyFromUser(&new_limit, user_new_limit, sizeof(struct rlimit)) )
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return -1;
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if ( new_limit.rlim_max < new_limit.rlim_cur )
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return errno = EINVAL, -1;
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*limit = new_limit;
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}
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return 0;
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}
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void Init()
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{
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Syscall::Register(SYSCALL_GETPRIORITY, (void*) sys_getpriority);
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Syscall::Register(SYSCALL_PRLIMIT, (void*) sys_prlimit);
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Syscall::Register(SYSCALL_SETPRIORITY, (void*) sys_setpriority);
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}
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} // namespace Resource
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} // namespace Sortix
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