xref: /freebsd-14.2/lib/libc/sys/getrlimit.2 (revision a1075ea2)
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28.\"     @(#)getrlimit.2	8.1 (Berkeley) 6/4/93
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30.Dd September 30, 2016
31.Dt GETRLIMIT 2
32.Os
33.Sh NAME
34.Nm getrlimit ,
35.Nm setrlimit
36.Nd control maximum system resource consumption
37.Sh LIBRARY
38.Lb libc
39.Sh SYNOPSIS
40.In sys/types.h
41.In sys/time.h
42.In sys/resource.h
43.Ft int
44.Fn getrlimit "int resource" "struct rlimit *rlp"
45.Ft int
46.Fn setrlimit "int resource" "const struct rlimit *rlp"
47.Sh DESCRIPTION
48Limits on the consumption of system resources by the current process
49and each process it creates may be obtained with the
50.Fn getrlimit
51system call, and set with the
52.Fn setrlimit
53system call.
54.Pp
55The
56.Fa resource
57argument is one of the following:
58.Bl -tag -width RLIMIT_FSIZEAA
59.It Dv RLIMIT_AS
60The maximum amount (in bytes) of virtual memory the process is
61allowed to map.
62.It Dv RLIMIT_CORE
63The largest size (in bytes)
64.Xr core 5
65file that may be created.
66.It Dv RLIMIT_CPU
67The maximum amount of cpu time (in seconds) to be used by
68each process.
69.It Dv RLIMIT_DATA
70The maximum size (in bytes) of the data segment for a process;
71this defines how far a program may extend its break with the
72.Xr sbrk 2
73function.
74.It Dv RLIMIT_FSIZE
75The largest size (in bytes) file that may be created.
76.It Dv RLIMIT_KQUEUES
77The maximum number of kqueues this user id is allowed to create.
78.It Dv RLIMIT_MEMLOCK
79The maximum size (in bytes) which a process may lock into memory
80using the
81.Xr mlock 2
82system call.
83.It Dv RLIMIT_NOFILE
84The maximum number of open files for this process.
85.It Dv RLIMIT_NPROC
86The maximum number of simultaneous processes for this user id.
87.It Dv RLIMIT_NPTS
88The maximum number of pseudo-terminals this user id is allowed to create.
89.It Dv RLIMIT_RSS
90When there is memory pressure and swap is available, prioritize eviction of
91a process' resident pages beyond this amount (in bytes).
92When memory is not under pressure, this rlimit is effectively ignored.
93Even when there is memory pressure, the amount of available swap space and some
94sysctl settings like
95.Xr vm.swap_enabled
96and
97.Xr vm.swap_idle_enabled
98can affect what happens to processes that have exceeded this size.
99.Pp
100Processes that exceed their set
101.Dv RLIMIT_RSS
102are not signalled or halted.
103The limit is merely a hint to the VM daemon to prefer to deactivate pages from
104processes that have exceeded their set
105.Dv RLIMIT_RSS .
106.It Dv RLIMIT_SBSIZE
107The maximum size (in bytes) of socket buffer usage for this user.
108This limits the amount of network memory, and hence the amount of
109mbufs, that this user may hold at any time.
110.It Dv RLIMIT_STACK
111The maximum size (in bytes) of the stack segment for a process;
112this defines how far a program's stack segment may be extended.
113Stack extension is performed automatically by the system.
114.It Dv RLIMIT_SWAP
115The maximum size (in bytes) of the swap space that may be reserved or
116used by all of this user id's processes.
117This limit is enforced only if bit 1 of the
118.Va vm.overcommit
119sysctl is set.
120Please see
121.Xr tuning 7
122for a complete description of this sysctl.
123.It Dv RLIMIT_UMTXP
124The limit of the number of process-shared posix thread library objects
125allocated by user id.
126.It Dv RLIMIT_VMEM
127An alias for
128.Dv RLIMIT_AS .
129.El
130.Pp
131A resource limit is specified as a soft limit and a hard limit.
132When a soft limit is exceeded, a process might or might not receive a signal.
133For example, signals are generated when the cpu time or file size is exceeded,
134but not if the address space or RSS limit is exceeded.
135A program that exceeds the soft limit is allowed to continue execution until it
136reaches the hard limit, or modifies its own resource limit.
137Even reaching the hard limit does not necessarily halt a process.
138For example, if the RSS hard limit is exceeded, nothing happens.
139.Pp
140The
141.Vt rlimit
142structure is used to specify the hard and soft limits on a resource.
143.Bd -literal -offset indent
144struct rlimit {
145	rlim_t	rlim_cur;	/* current (soft) limit */
146	rlim_t	rlim_max;	/* maximum value for rlim_cur */
147};
148.Ed
149.Pp
150Only the super-user may raise the maximum limits.
151Other users
152may only alter
153.Fa rlim_cur
154within the range from 0 to
155.Fa rlim_max
156or (irreversibly) lower
157.Fa rlim_max .
158.Pp
159An
160.Dq infinite
161value for a limit is defined as
162.Dv RLIM_INFINITY .
163.Pp
164Because this information is stored in the per-process information,
165this system call must be executed directly by the shell if it
166is to affect all future processes created by the shell;
167.Ic limit
168is thus a built-in command to
169.Xr csh 1 .
170.Pp
171The system refuses to extend the data or stack space when the limits
172would be exceeded in the normal way: a
173.Xr brk 2
174function fails if the data space limit is reached.
175When the stack limit is reached, the process receives
176a segmentation fault
177.Pq Dv SIGSEGV ;
178if this signal is not
179caught by a handler using the signal stack, this signal
180will kill the process.
181.Pp
182A file I/O operation that would create a file larger that the process'
183soft limit will cause the write to fail and a signal
184.Dv SIGXFSZ
185to be
186generated; this normally terminates the process, but may be caught.
187When
188the soft cpu time limit is exceeded, a
189.Dv SIGXCPU
190signal is sent to the
191offending process.
192.Pp
193When most operations would allocate more virtual memory than allowed by the
194soft limit of
195.Dv RLIMIT_AS ,
196the operation fails with
197.Dv ENOMEM
198and no signal is raised.
199A notable exception is stack extension, described above.
200If stack extension would allocate more virtual memory than allowed by the soft
201limit of
202.Dv RLIMIT_AS ,
203a
204.Dv SIGSEGV
205signal will be delivered.
206The caller is free to raise the soft address space limit up to the hard limit
207and retry the allocation.
208.Sh RETURN VALUES
209.Rv -std
210.Sh ERRORS
211The
212.Fn getrlimit
213and
214.Fn setrlimit
215system calls
216will fail if:
217.Bl -tag -width Er
218.It Bq Er EFAULT
219The address specified for
220.Fa rlp
221is invalid.
222.It Bq Er EPERM
223The limit specified to
224.Fn setrlimit
225would have
226raised the maximum limit value, and the caller is not the super-user.
227.El
228.Sh SEE ALSO
229.Xr csh 1 ,
230.Xr quota 1 ,
231.Xr quotactl 2 ,
232.Xr sigaction 2 ,
233.Xr sigaltstack 2 ,
234.Xr sysctl 3 ,
235.Xr ulimit 3
236.Sh HISTORY
237The
238.Fn getrlimit
239system call appeared in
240.Bx 4.2 .
241