ipc: do not use a negative value to re-enable msgmni automatic recomputing
This patch proposes an alternative to the "magical positive-versus-negative number trick" Andrew complained about last week in http://lkml.org/lkml/2008/6/24/418. This had been introduced with the patches that scale msgmni to the amount of lowmem. With these patches, msgmni has a registered notification routine that recomputes msgmni value upon memory add/remove or ipc namespace creation/ removal. When msgmni is changed from user space (i.e. value written to the proc file), that notification routine is unregistered, and the way to make it registered back is to write a negative value into the proc file. This is the "magical positive-versus-negative number trick". To fix this, a new proc file is introduced: /proc/sys/kernel/auto_msgmni. This file acts as ON/OFF for msgmni automatic recomputing. With this patch, the process is the following: 1) kernel boots in "automatic recomputing mode" /proc/sys/kernel/msgmni contains the value that has been computed (depends on lowmem) /proc/sys/kernel/automatic_msgmni contains "1" 2) echo <val> > /proc/sys/kernel/msgmni . sets msg_ctlmni to <val> . de-activates automatic recomputing (i.e. if, say, some memory is added msgmni won't be recomputed anymore) . /proc/sys/kernel/automatic_msgmni now contains "0" 3) echo "0" > /proc/sys/kernel/automatic_msgmni . de-activates msgmni automatic recomputing this has the same effect as 2) except that msg_ctlmni's value stays blocked at its current value) 3) echo "1" > /proc/sys/kernel/automatic_msgmni . recomputes msgmni's value based on the current available memory size and number of ipc namespaces . re-activates automatic recomputing for msgmni. Signed-off-by: Nadia Derbey <Nadia.Derbey@bull.net> Cc: Solofo Ramangalahy <Solofo.Ramangalahy@bull.net> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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@ -36,6 +36,7 @@ struct ipc_namespace {
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int msg_ctlmni;
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atomic_t msg_bytes;
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atomic_t msg_hdrs;
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int auto_msgmni;
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size_t shm_ctlmax;
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size_t shm_ctlall;
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@ -53,7 +54,7 @@ extern atomic_t nr_ipc_ns;
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extern int register_ipcns_notifier(struct ipc_namespace *);
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extern int cond_register_ipcns_notifier(struct ipc_namespace *);
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extern int unregister_ipcns_notifier(struct ipc_namespace *);
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extern void unregister_ipcns_notifier(struct ipc_namespace *);
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extern int ipcns_notify(unsigned long);
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#else /* CONFIG_SYSVIPC */
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@ -27,15 +27,17 @@ static void *get_ipc(ctl_table *table)
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}
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/*
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* Routine that is called when a tunable has successfully been changed by
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* hand and it has a callback routine registered on the ipc namespace notifier
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* chain: we don't want such tunables to be recomputed anymore upon memory
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* Routine that is called when the file "auto_msgmni" has successfully been
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* written.
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* Two values are allowed:
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* 0: unregister msgmni's callback routine from the ipc namespace notifier
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* chain. This means that msgmni won't be recomputed anymore upon memory
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* add/remove or ipc namespace creation/removal.
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* They can come back to a recomputable state by being set to a <0 value.
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* 1: register back the callback routine.
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*/
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static void tunable_set_callback(int val)
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static void ipc_auto_callback(int val)
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{
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if (val >= 0)
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if (!val)
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unregister_ipcns_notifier(current->nsproxy->ipc_ns);
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else {
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/*
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@ -71,7 +73,12 @@ static int proc_ipc_callback_dointvec(ctl_table *table, int write,
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rc = proc_dointvec(&ipc_table, write, filp, buffer, lenp, ppos);
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if (write && !rc && lenp_bef == *lenp)
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tunable_set_callback(*((int *)(ipc_table.data)));
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/*
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* Tunable has successfully been changed by hand. Disable its
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* automatic adjustment. This simply requires unregistering
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* the notifiers that trigger recalculation.
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*/
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unregister_ipcns_notifier(current->nsproxy->ipc_ns);
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return rc;
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}
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@ -87,10 +94,39 @@ static int proc_ipc_doulongvec_minmax(ctl_table *table, int write,
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lenp, ppos);
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}
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static int proc_ipcauto_dointvec_minmax(ctl_table *table, int write,
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struct file *filp, void __user *buffer, size_t *lenp, loff_t *ppos)
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{
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struct ctl_table ipc_table;
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size_t lenp_bef = *lenp;
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int oldval;
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int rc;
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memcpy(&ipc_table, table, sizeof(ipc_table));
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ipc_table.data = get_ipc(table);
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oldval = *((int *)(ipc_table.data));
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rc = proc_dointvec_minmax(&ipc_table, write, filp, buffer, lenp, ppos);
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if (write && !rc && lenp_bef == *lenp) {
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int newval = *((int *)(ipc_table.data));
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/*
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* The file "auto_msgmni" has correctly been set.
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* React by (un)registering the corresponding tunable, if the
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* value has changed.
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*/
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if (newval != oldval)
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ipc_auto_callback(newval);
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}
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return rc;
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}
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#else
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#define proc_ipc_doulongvec_minmax NULL
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#define proc_ipc_dointvec NULL
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#define proc_ipc_callback_dointvec NULL
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#define proc_ipcauto_dointvec_minmax NULL
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#endif
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#ifdef CONFIG_SYSCTL_SYSCALL
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@ -142,14 +178,11 @@ static int sysctl_ipc_registered_data(ctl_table *table, int __user *name,
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rc = sysctl_ipc_data(table, name, nlen, oldval, oldlenp, newval,
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newlen);
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if (newval && newlen && rc > 0) {
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if (newval && newlen && rc > 0)
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/*
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* Tunable has successfully been changed from userland
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*/
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int *data = get_ipc(table);
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tunable_set_callback(*data);
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}
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unregister_ipcns_notifier(current->nsproxy->ipc_ns);
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return rc;
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}
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@ -158,6 +191,9 @@ static int sysctl_ipc_registered_data(ctl_table *table, int __user *name,
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#define sysctl_ipc_registered_data NULL
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#endif
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static int zero;
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static int one = 1;
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static struct ctl_table ipc_kern_table[] = {
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{
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.ctl_name = KERN_SHMMAX,
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@ -222,6 +258,16 @@ static struct ctl_table ipc_kern_table[] = {
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.proc_handler = proc_ipc_dointvec,
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.strategy = sysctl_ipc_data,
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},
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{
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.ctl_name = CTL_UNNUMBERED,
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.procname = "auto_msgmni",
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.data = &init_ipc_ns.auto_msgmni,
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.maxlen = sizeof(int),
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.mode = 0644,
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.proc_handler = proc_ipcauto_dointvec_minmax,
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.extra1 = &zero,
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.extra2 = &one,
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},
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{}
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};
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@ -55,25 +55,35 @@ static int ipcns_callback(struct notifier_block *self,
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int register_ipcns_notifier(struct ipc_namespace *ns)
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{
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int rc;
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memset(&ns->ipcns_nb, 0, sizeof(ns->ipcns_nb));
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ns->ipcns_nb.notifier_call = ipcns_callback;
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ns->ipcns_nb.priority = IPCNS_CALLBACK_PRI;
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return blocking_notifier_chain_register(&ipcns_chain, &ns->ipcns_nb);
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rc = blocking_notifier_chain_register(&ipcns_chain, &ns->ipcns_nb);
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if (!rc)
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ns->auto_msgmni = 1;
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return rc;
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}
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int cond_register_ipcns_notifier(struct ipc_namespace *ns)
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{
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int rc;
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memset(&ns->ipcns_nb, 0, sizeof(ns->ipcns_nb));
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ns->ipcns_nb.notifier_call = ipcns_callback;
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ns->ipcns_nb.priority = IPCNS_CALLBACK_PRI;
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return blocking_notifier_chain_cond_register(&ipcns_chain,
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rc = blocking_notifier_chain_cond_register(&ipcns_chain,
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&ns->ipcns_nb);
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if (!rc)
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ns->auto_msgmni = 1;
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return rc;
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}
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int unregister_ipcns_notifier(struct ipc_namespace *ns)
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void unregister_ipcns_notifier(struct ipc_namespace *ns)
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{
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return blocking_notifier_chain_unregister(&ipcns_chain,
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&ns->ipcns_nb);
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blocking_notifier_chain_unregister(&ipcns_chain, &ns->ipcns_nb);
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ns->auto_msgmni = 0;
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}
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int ipcns_notify(unsigned long val)
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