trivial: fix where cgroup documentation is not correctly referred to
cgroup documentation was moved to Documentation/cgroups/. There are some places that still refer to Documentation/controllers/, Documentation/cgroups.txt and Documentation/cpusets.txt. Fix those. Signed-off-by: Thadeu Lima de Souza Cascardo <cascardo@holoscopio.com> Reviewed-by: Li Zefan <lizf@cn.fujitsu.com> Acked-by: Paul Menage <menage@google.com> Signed-off-by: Jiri Kosina <jkosina@suse.cz>
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9 changed files with 35 additions and 11 deletions
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@ -86,6 +86,8 @@ cachetlb.txt
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- describes the cache/TLB flushing interfaces Linux uses.
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cdrom/
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- directory with information on the CD-ROM drivers that Linux has.
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cgroups/
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- cgroups features, including cpusets and memory controller.
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connector/
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- docs on the netlink based userspace<->kernel space communication mod.
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console/
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@ -98,8 +100,6 @@ cpu-load.txt
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- document describing how CPU load statistics are collected.
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cpuidle/
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- info on CPU_IDLE, CPU idle state management subsystem.
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cpusets.txt
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- documents the cpusets feature; assign CPUs and Mem to a set of tasks.
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cputopology.txt
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- documentation on how CPU topology info is exported via sysfs.
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cris/
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18
Documentation/cgroups/00-INDEX
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18
Documentation/cgroups/00-INDEX
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@ -0,0 +1,18 @@
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00-INDEX
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- this file
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cgroups.txt
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- Control Groups definition, implementation details, examples and API.
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cpuacct.txt
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- CPU Accounting Controller; account CPU usage for groups of tasks.
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cpusets.txt
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- documents the cpusets feature; assign CPUs and Mem to a set of tasks.
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devices.txt
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- Device Whitelist Controller; description, interface and security.
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freezer-subsystem.txt
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- checkpointing; rationale to not use signals, interface.
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memcg_test.txt
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- Memory Resource Controller; implementation details.
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memory.txt
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- Memory Resource Controller; design, accounting, interface, testing.
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resource_counter.txt
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- Resource Counter API.
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@ -1593,7 +1593,7 @@ and is between 256 and 4096 characters. It is defined in the file
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nosoftlockup [KNL] Disable the soft-lockup detector.
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noswapaccount [KNL] Disable accounting of swap in memory resource
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controller. (See Documentation/controllers/memory.txt)
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controller. (See Documentation/cgroups/memory.txt)
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nosync [HW,M68K] Disables sync negotiation for all devices.
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@ -1932,7 +1932,7 @@ and is between 256 and 4096 characters. It is defined in the file
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relax_domain_level=
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[KNL, SMP] Set scheduler's default relax_domain_level.
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See Documentation/cpusets.txt.
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See Documentation/cgroups/cpusets.txt.
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reserve= [KNL,BUGS] Force the kernel to ignore some iomem area
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@ -126,7 +126,7 @@ This uses the /cgroup virtual file system and "/cgroup/<cgroup>/cpu.rt_runtime_u
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to control the CPU time reserved for each control group instead.
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For more information on working with control groups, you should read
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Documentation/cgroups.txt as well.
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Documentation/cgroups/cgroups.txt as well.
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Group settings are checked against the following limits in order to keep the configuration
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schedulable:
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@ -8,7 +8,8 @@ The current memory policy support was added to Linux 2.6 around May 2004. This
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document attempts to describe the concepts and APIs of the 2.6 memory policy
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support.
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Memory policies should not be confused with cpusets (Documentation/cpusets.txt)
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Memory policies should not be confused with cpusets
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(Documentation/cgroups/cpusets.txt)
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which is an administrative mechanism for restricting the nodes from which
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memory may be allocated by a set of processes. Memory policies are a
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programming interface that a NUMA-aware application can take advantage of. When
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@ -37,7 +37,8 @@ locations.
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Larger installations usually partition the system using cpusets into
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sections of nodes. Paul Jackson has equipped cpusets with the ability to
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move pages when a task is moved to another cpuset (See ../cpusets.txt).
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move pages when a task is moved to another cpuset (See
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Documentation/cgroups/cpusets.txt).
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Cpusets allows the automation of process locality. If a task is moved to
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a new cpuset then also all its pages are moved with it so that the
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performance of the process does not sink dramatically. Also the pages
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@ -7,7 +7,8 @@ you can create fake NUMA nodes that represent contiguous chunks of memory and
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assign them to cpusets and their attached tasks. This is a way of limiting the
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amount of system memory that are available to a certain class of tasks.
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For more information on the features of cpusets, see Documentation/cpusets.txt.
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For more information on the features of cpusets, see
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Documentation/cgroups/cpusets.txt.
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There are a number of different configurations you can use for your needs. For
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more information on the numa=fake command line option and its various ways of
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configuring fake nodes, see Documentation/x86/x86_64/boot-options.txt.
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@ -32,7 +33,7 @@ A machine may be split as follows with "numa=fake=4*512," as reported by dmesg:
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On node 3 totalpages: 131072
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Now following the instructions for mounting the cpusets filesystem from
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Documentation/cpusets.txt, you can assign fake nodes (i.e. contiguous memory
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Documentation/cgroups/cpusets.txt, you can assign fake nodes (i.e. contiguous memory
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address spaces) to individual cpusets:
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[root@xroads /]# mkdir exampleset
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@ -342,7 +342,10 @@ int cgroup_task_count(const struct cgroup *cgrp);
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/* Return true if the cgroup is a descendant of the current cgroup */
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int cgroup_is_descendant(const struct cgroup *cgrp);
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/* Control Group subsystem type. See Documentation/cgroups.txt for details */
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/*
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* Control Group subsystem type.
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* See Documentation/cgroups/cgroups.txt for details
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*/
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struct cgroup_subsys {
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struct cgroup_subsys_state *(*create)(struct cgroup_subsys *ss,
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@ -565,7 +565,7 @@ config CGROUP_MEM_RES_CTLR
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select MM_OWNER
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help
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Provides a memory resource controller that manages both anonymous
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memory and page cache. (See Documentation/controllers/memory.txt)
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memory and page cache. (See Documentation/cgroups/memory.txt)
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Note that setting this option increases fixed memory overhead
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associated with each page of memory in the system. By this,
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