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ipc/util.c
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/* * linux/ipc/util.c * Copyright (C) 1992 Krishna Balasubramanian * * Sep 1997 - Call suser() last after "normal" permission checks so we * get BSD style process accounting right. * Occurs in several places in the IPC code. * Chris Evans, <chris@ferret.lmh.ox.ac.uk> * Nov 1999 - ipc helper functions, unified SMP locking |
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* Manfred Spraul <manfred@colorfullife.com> |
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* Oct 2002 - One lock per IPC id. RCU ipc_free for lock-free grow_ary(). * Mingming Cao <cmm@us.ibm.com> |
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* Mar 2006 - support for audit of ipc object properties * Dustin Kirkland <dustin.kirkland@us.ibm.com> |
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* Jun 2006 - namespaces ssupport * OpenVZ, SWsoft Inc. * Pavel Emelianov <xemul@openvz.org> |
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*/ |
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#include <linux/mm.h> #include <linux/shm.h> #include <linux/init.h> #include <linux/msg.h> |
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#include <linux/vmalloc.h> #include <linux/slab.h> |
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#include <linux/capability.h> |
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#include <linux/highuid.h> #include <linux/security.h> #include <linux/rcupdate.h> #include <linux/workqueue.h> |
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#include <linux/seq_file.h> #include <linux/proc_fs.h> |
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#include <linux/audit.h> |
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#include <linux/nsproxy.h> |
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#include <linux/rwsem.h> |
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#include <linux/memory.h> |
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#include <linux/ipc_namespace.h> |
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#include <asm/unistd.h> #include "util.h" |
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struct ipc_proc_iface { const char *path; const char *header; |
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int ids; |
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int (*show)(struct seq_file *, void *); }; |
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#ifdef CONFIG_MEMORY_HOTPLUG |
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static void ipc_memory_notifier(struct work_struct *work) { ipcns_notify(IPCNS_MEMCHANGED); } static DECLARE_WORK(ipc_memory_wq, ipc_memory_notifier); |
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static int ipc_memory_callback(struct notifier_block *self, unsigned long action, void *arg) { switch (action) { case MEM_ONLINE: /* memory successfully brought online */ case MEM_OFFLINE: /* or offline: it's time to recompute msgmni */ /* * This is done by invoking the ipcns notifier chain with the * IPC_MEMCHANGED event. |
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* In order not to keep the lock on the hotplug memory chain * for too long, queue a work item that will, when waken up, * activate the ipcns notification chain. * No need to keep several ipc work items on the queue. |
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*/ |
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if (!work_pending(&ipc_memory_wq)) schedule_work(&ipc_memory_wq); |
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break; case MEM_GOING_ONLINE: case MEM_GOING_OFFLINE: case MEM_CANCEL_ONLINE: case MEM_CANCEL_OFFLINE: default: break; } return NOTIFY_OK; } #endif /* CONFIG_MEMORY_HOTPLUG */ |
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/** * ipc_init - initialise IPC subsystem * * The various system5 IPC resources (semaphores, messages and shared |
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* memory) are initialised |
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* A callback routine is registered into the memory hotplug notifier * chain: since msgmni scales to lowmem this callback routine will be * called upon successful memory add / remove to recompute msmgni. |
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*/ static int __init ipc_init(void) { sem_init(); msg_init(); shm_init(); |
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hotplug_memory_notifier(ipc_memory_callback, IPC_CALLBACK_PRI); register_ipcns_notifier(&init_ipc_ns); |
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return 0; } __initcall(ipc_init); /** * ipc_init_ids - initialise IPC identifiers * @ids: Identifier set |
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* |
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* Set up the sequence range to use for the ipc identifier range (limited * below IPCMNI) then initialise the ids idr. |
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*/ |
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void ipc_init_ids(struct ipc_ids *ids) |
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{ |
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init_rwsem(&ids->rw_mutex); |
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ids->in_use = 0; |
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ids->seq = 0; { int seq_limit = INT_MAX/SEQ_MULTIPLIER; |
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if (seq_limit > USHRT_MAX) ids->seq_max = USHRT_MAX; |
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else ids->seq_max = seq_limit; } |
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idr_init(&ids->ipcs_idr); |
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} |
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#ifdef CONFIG_PROC_FS |
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static const struct file_operations sysvipc_proc_fops; |
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/** |
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* ipc_init_proc_interface - Create a proc interface for sysipc types using a seq_file interface. |
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* @path: Path in procfs * @header: Banner to be printed at the beginning of the file. * @ids: ipc id table to iterate. * @show: show routine. */ void __init ipc_init_proc_interface(const char *path, const char *header, |
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int ids, int (*show)(struct seq_file *, void *)) |
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{ struct proc_dir_entry *pde; struct ipc_proc_iface *iface; iface = kmalloc(sizeof(*iface), GFP_KERNEL); if (!iface) return; iface->path = path; iface->header = header; iface->ids = ids; iface->show = show; |
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pde = proc_create_data(path, S_IRUGO, /* world readable */ NULL, /* parent dir */ &sysvipc_proc_fops, iface); if (!pde) { |
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kfree(iface); } } #endif |
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/** * ipc_findkey - find a key in an ipc identifier set * @ids: Identifier set * @key: The key to find * |
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* Requires ipc_ids.rw_mutex locked. |
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* Returns the LOCKED pointer to the ipc structure if found or NULL * if not. |
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* If key is found ipc points to the owning ipc structure |
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*/ |
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static struct kern_ipc_perm *ipc_findkey(struct ipc_ids *ids, key_t key) |
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{ |
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struct kern_ipc_perm *ipc; int next_id; int total; |
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for (total = 0, next_id = 0; total < ids->in_use; next_id++) { ipc = idr_find(&ids->ipcs_idr, next_id); if (ipc == NULL) |
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continue; |
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if (ipc->key != key) { total++; continue; } ipc_lock_by_ptr(ipc); return ipc; |
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} |
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return NULL; |
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} |
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/** * ipc_get_maxid - get the last assigned id * @ids: IPC identifier set * |
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* Called with ipc_ids.rw_mutex held. |
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*/ |
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int ipc_get_maxid(struct ipc_ids *ids) { struct kern_ipc_perm *ipc; int max_id = -1; int total, id; if (ids->in_use == 0) return -1; |
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if (ids->in_use == IPCMNI) return IPCMNI - 1; /* Look for the last assigned id */ total = 0; for (id = 0; id < IPCMNI && total < ids->in_use; id++) { ipc = idr_find(&ids->ipcs_idr, id); if (ipc != NULL) { max_id = id; total++; } } return max_id; |
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} /** * ipc_addid - add an IPC identifier * @ids: IPC identifier set * @new: new IPC permission set |
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* @size: limit for the number of used ids |
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* |
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* Add an entry 'new' to the IPC ids idr. The permissions object is |
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* initialised and the first free entry is set up and the id assigned |
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* is returned. The 'new' entry is returned in a locked state on success. |
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* On failure the entry is not locked and a negative err-code is returned. |
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* |
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* Called with ipc_ids.rw_mutex held as a writer. |
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*/ int ipc_addid(struct ipc_ids* ids, struct kern_ipc_perm* new, int size) { |
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uid_t euid; gid_t egid; |
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int id, err; |
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if (size > IPCMNI) size = IPCMNI; if (ids->in_use >= size) |
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return -ENOSPC; |
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spin_lock_init(&new->lock); new->deleted = 0; rcu_read_lock(); spin_lock(&new->lock); |
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err = idr_get_new(&ids->ipcs_idr, new, &id); |
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if (err) { spin_unlock(&new->lock); rcu_read_unlock(); |
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return err; |
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} |
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ids->in_use++; |
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current_euid_egid(&euid, &egid); new->cuid = new->uid = euid; new->gid = new->cgid = egid; |
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new->seq = ids->seq++; if(ids->seq > ids->seq_max) ids->seq = 0; |
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new->id = ipc_buildid(id, new->seq); |
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return id; } /** |
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* ipcget_new - create a new ipc object * @ns: namespace |
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* @ids: IPC identifer set |
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* @ops: the actual creation routine to call * @params: its parameters * |
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* This routine is called by sys_msgget, sys_semget() and sys_shmget() * when the key is IPC_PRIVATE. |
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*/ |
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static int ipcget_new(struct ipc_namespace *ns, struct ipc_ids *ids, |
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struct ipc_ops *ops, struct ipc_params *params) { int err; |
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retry: |
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err = idr_pre_get(&ids->ipcs_idr, GFP_KERNEL); if (!err) return -ENOMEM; |
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down_write(&ids->rw_mutex); |
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err = ops->getnew(ns, params); |
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up_write(&ids->rw_mutex); |
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if (err == -EAGAIN) goto retry; |
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return err; } /** * ipc_check_perms - check security and permissions for an IPC |
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* @ns: IPC namespace |
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* @ipcp: ipc permission set |
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* @ops: the actual security routine to call * @params: its parameters |
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* * This routine is called by sys_msgget(), sys_semget() and sys_shmget() * when the key is not IPC_PRIVATE and that key already exists in the * ids IDR. * * On success, the IPC id is returned. * |
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* It is called with ipc_ids.rw_mutex and ipcp->lock held. |
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*/ |
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static int ipc_check_perms(struct ipc_namespace *ns, struct kern_ipc_perm *ipcp, struct ipc_ops *ops, struct ipc_params *params) |
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{ int err; |
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if (ipcperms(ns, ipcp, params->flg)) |
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err = -EACCES; else { err = ops->associate(ipcp, params->flg); if (!err) err = ipcp->id; } return err; } /** * ipcget_public - get an ipc object or create a new one * @ns: namespace |
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* @ids: IPC identifer set |
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* @ops: the actual creation routine to call * @params: its parameters * |
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* This routine is called by sys_msgget, sys_semget() and sys_shmget() * when the key is not IPC_PRIVATE. * It adds a new entry if the key is not found and does some permission * / security checkings if the key is found. * * On success, the ipc id is returned. |
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*/ |
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static int ipcget_public(struct ipc_namespace *ns, struct ipc_ids *ids, |
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struct ipc_ops *ops, struct ipc_params *params) { struct kern_ipc_perm *ipcp; int flg = params->flg; int err; |
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retry: |
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err = idr_pre_get(&ids->ipcs_idr, GFP_KERNEL); |
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/* * Take the lock as a writer since we are potentially going to add * a new entry + read locks are not "upgradable" */ down_write(&ids->rw_mutex); |
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ipcp = ipc_findkey(ids, params->key); if (ipcp == NULL) { /* key not used */ if (!(flg & IPC_CREAT)) err = -ENOENT; else if (!err) err = -ENOMEM; else err = ops->getnew(ns, params); } else { /* ipc object has been locked by ipc_findkey() */ if (flg & IPC_CREAT && flg & IPC_EXCL) err = -EEXIST; else { err = 0; if (ops->more_checks) err = ops->more_checks(ipcp, params); if (!err) |
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/* * ipc_check_perms returns the IPC id on * success */ |
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err = ipc_check_perms(ns, ipcp, ops, params); |
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} ipc_unlock(ipcp); } |
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up_write(&ids->rw_mutex); |
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if (err == -EAGAIN) goto retry; |
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return err; } /** |
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* ipc_rmid - remove an IPC identifier |
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* @ids: IPC identifier set * @ipcp: ipc perm structure containing the identifier to remove |
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* |
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* ipc_ids.rw_mutex (as a writer) and the spinlock for this ID are held * before this function is called, and remain locked on the exit. |
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*/ |
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void ipc_rmid(struct ipc_ids *ids, struct kern_ipc_perm *ipcp) |
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{ |
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int lid = ipcid_to_idx(ipcp->id); |
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idr_remove(&ids->ipcs_idr, lid); |
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ids->in_use--; |
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ipcp->deleted = 1; return; |
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} /** * ipc_alloc - allocate ipc space * @size: size desired * * Allocate memory from the appropriate pools and return a pointer to it. * NULL is returned if the allocation fails */ void* ipc_alloc(int size) { void* out; if(size > PAGE_SIZE) out = vmalloc(size); else out = kmalloc(size, GFP_KERNEL); return out; } /** * ipc_free - free ipc space * @ptr: pointer returned by ipc_alloc * @size: size of block * |
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* Free a block created with ipc_alloc(). The caller must know the size |
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* used in the allocation call. */ void ipc_free(void* ptr, int size) { if(size > PAGE_SIZE) vfree(ptr); else kfree(ptr); } /* * rcu allocations: * There are three headers that are prepended to the actual allocation: * - during use: ipc_rcu_hdr. * - during the rcu grace period: ipc_rcu_grace. * - [only if vmalloc]: ipc_rcu_sched. * Their lifetime doesn't overlap, thus the headers share the same memory. * Unlike a normal union, they are right-aligned, thus some container_of * forward/backward casting is necessary: */ struct ipc_rcu_hdr { int refcount; int is_vmalloc; void *data[0]; }; struct ipc_rcu_grace { struct rcu_head rcu; /* "void *" makes sure alignment of following data is sane. */ void *data[0]; }; struct ipc_rcu_sched { struct work_struct work; /* "void *" makes sure alignment of following data is sane. */ void *data[0]; }; #define HDRLEN_KMALLOC (sizeof(struct ipc_rcu_grace) > sizeof(struct ipc_rcu_hdr) ? \ sizeof(struct ipc_rcu_grace) : sizeof(struct ipc_rcu_hdr)) #define HDRLEN_VMALLOC (sizeof(struct ipc_rcu_sched) > HDRLEN_KMALLOC ? \ sizeof(struct ipc_rcu_sched) : HDRLEN_KMALLOC) static inline int rcu_use_vmalloc(int size) { /* Too big for a single page? */ if (HDRLEN_KMALLOC + size > PAGE_SIZE) return 1; return 0; } /** * ipc_rcu_alloc - allocate ipc and rcu space * @size: size desired * * Allocate memory for the rcu header structure + the object. * Returns the pointer to the object. * NULL is returned if the allocation fails. */ void* ipc_rcu_alloc(int size) { void* out; /* * We prepend the allocation with the rcu struct, and * workqueue if necessary (for vmalloc). */ if (rcu_use_vmalloc(size)) { out = vmalloc(HDRLEN_VMALLOC + size); if (out) { out += HDRLEN_VMALLOC; container_of(out, struct ipc_rcu_hdr, data)->is_vmalloc = 1; container_of(out, struct ipc_rcu_hdr, data)->refcount = 1; } } else { out = kmalloc(HDRLEN_KMALLOC + size, GFP_KERNEL); if (out) { out += HDRLEN_KMALLOC; container_of(out, struct ipc_rcu_hdr, data)->is_vmalloc = 0; container_of(out, struct ipc_rcu_hdr, data)->refcount = 1; } } return out; } void ipc_rcu_getref(void *ptr) { container_of(ptr, struct ipc_rcu_hdr, data)->refcount++; } |
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static void ipc_do_vfree(struct work_struct *work) { vfree(container_of(work, struct ipc_rcu_sched, work)); } |
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/** |
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* ipc_schedule_free - free ipc + rcu space * @head: RCU callback structure for queued work |
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* * Since RCU callback function is called in bh, |
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* we need to defer the vfree to schedule_work(). |
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*/ static void ipc_schedule_free(struct rcu_head *head) { |
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struct ipc_rcu_grace *grace; struct ipc_rcu_sched *sched; grace = container_of(head, struct ipc_rcu_grace, rcu); sched = container_of(&(grace->data[0]), struct ipc_rcu_sched, data[0]); |
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INIT_WORK(&sched->work, ipc_do_vfree); |
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schedule_work(&sched->work); } |
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void ipc_rcu_putref(void *ptr) { if (--container_of(ptr, struct ipc_rcu_hdr, data)->refcount > 0) return; if (container_of(ptr, struct ipc_rcu_hdr, data)->is_vmalloc) { call_rcu(&container_of(ptr, struct ipc_rcu_grace, data)->rcu, ipc_schedule_free); } else { |
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kfree_rcu(container_of(ptr, struct ipc_rcu_grace, data), rcu); |
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} } /** * ipcperms - check IPC permissions |
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* @ns: IPC namespace |
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* @ipcp: IPC permission set * @flag: desired permission set. * * Check user, group, other permissions for access * to ipc resources. return 0 if allowed |
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* * @flag will most probably be 0 or S_...UGO from <linux/stat.h> |
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*/ |
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int ipcperms(struct ipc_namespace *ns, struct kern_ipc_perm *ipcp, short flag) { |
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uid_t euid = current_euid(); |
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int requested_mode, granted_mode; |
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audit_ipc_obj(ipcp); |
1da177e4c
|
590 591 |
requested_mode = (flag >> 6) | (flag >> 3) | flag; granted_mode = ipcp->mode; |
414c0708d
|
592 593 |
if (euid == ipcp->cuid || euid == ipcp->uid) |
1da177e4c
|
594 595 596 597 598 |
granted_mode >>= 6; else if (in_group_p(ipcp->cgid) || in_group_p(ipcp->gid)) granted_mode >>= 3; /* is there some bit set in requested_mode but not in granted_mode? */ if ((requested_mode & ~granted_mode & 0007) && |
b0e77598f
|
599 |
!ns_capable(ns->user_ns, CAP_IPC_OWNER)) |
1da177e4c
|
600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 |
return -1; return security_ipc_permission(ipcp, flag); } /* * Functions to convert between the kern_ipc_perm structure and the * old/new ipc_perm structures */ /** * kernel_to_ipc64_perm - convert kernel ipc permissions to user * @in: kernel permissions * @out: new style IPC permissions * |
72fd4a35a
|
615 616 |
* Turn the kernel object @in into a set of permissions descriptions * for returning to userspace (@out). |
1da177e4c
|
617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 |
*/ void kernel_to_ipc64_perm (struct kern_ipc_perm *in, struct ipc64_perm *out) { out->key = in->key; out->uid = in->uid; out->gid = in->gid; out->cuid = in->cuid; out->cgid = in->cgid; out->mode = in->mode; out->seq = in->seq; } /** |
f4566f048
|
632 |
* ipc64_perm_to_ipc_perm - convert new ipc permissions to old |
1da177e4c
|
633 634 635 |
* @in: new style IPC permissions * @out: old style IPC permissions * |
72fd4a35a
|
636 637 |
* Turn the new style permissions object @in into a compatibility * object and store it into the @out pointer. |
1da177e4c
|
638 639 640 641 642 643 644 645 646 647 648 649 |
*/ void ipc64_perm_to_ipc_perm (struct ipc64_perm *in, struct ipc_perm *out) { out->key = in->key; SET_UID(out->uid, in->uid); SET_GID(out->gid, in->gid); SET_UID(out->cuid, in->cuid); SET_GID(out->cgid, in->cgid); out->mode = in->mode; out->seq = in->seq; } |
f4566f048
|
650 |
/** |
3e148c799
|
651 |
* ipc_lock - Lock an ipc structure without rw_mutex held |
f4566f048
|
652 653 654 655 656 |
* @ids: IPC identifier set * @id: ipc id to look for * * Look for an id in the ipc ids idr and lock the associated ipc object. * |
f4566f048
|
657 658 |
* The ipc object is locked on exit. */ |
7ca7e564e
|
659 |
struct kern_ipc_perm *ipc_lock(struct ipc_ids *ids, int id) |
1da177e4c
|
660 |
{ |
7ca7e564e
|
661 |
struct kern_ipc_perm *out; |
ce621f5ba
|
662 |
int lid = ipcid_to_idx(id); |
1da177e4c
|
663 664 |
rcu_read_lock(); |
7ca7e564e
|
665 666 |
out = idr_find(&ids->ipcs_idr, lid); if (out == NULL) { |
1da177e4c
|
667 |
rcu_read_unlock(); |
023a53557
|
668 |
return ERR_PTR(-EINVAL); |
1da177e4c
|
669 |
} |
7ca7e564e
|
670 |
|
1da177e4c
|
671 672 673 674 675 676 677 678 |
spin_lock(&out->lock); /* ipc_rmid() may have already freed the ID while ipc_lock * was spinning: here verify that the structure is still valid */ if (out->deleted) { spin_unlock(&out->lock); rcu_read_unlock(); |
023a53557
|
679 |
return ERR_PTR(-EINVAL); |
1da177e4c
|
680 |
} |
7ca7e564e
|
681 |
|
1da177e4c
|
682 683 |
return out; } |
b2d75cddc
|
684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 |
struct kern_ipc_perm *ipc_lock_check(struct ipc_ids *ids, int id) { struct kern_ipc_perm *out; out = ipc_lock(ids, id); if (IS_ERR(out)) return out; if (ipc_checkid(out, id)) { ipc_unlock(out); return ERR_PTR(-EIDRM); } return out; } /** * ipcget - Common sys_*get() code * @ns : namsepace * @ids : IPC identifier set * @ops : operations to be called on ipc object creation, permission checks * and further checks * @params : the parameters needed by the previous operations. * * Common routine called by sys_msgget(), sys_semget() and sys_shmget(). */ int ipcget(struct ipc_namespace *ns, struct ipc_ids *ids, struct ipc_ops *ops, struct ipc_params *params) { if (params->key == IPC_PRIVATE) return ipcget_new(ns, ids, ops, params); else return ipcget_public(ns, ids, ops, params); } |
8f4a3809c
|
718 719 720 721 722 723 724 725 726 727 728 729 |
/** * ipc_update_perm - update the permissions of an IPC. * @in: the permission given as input. * @out: the permission of the ipc to set. */ void ipc_update_perm(struct ipc64_perm *in, struct kern_ipc_perm *out) { out->uid = in->uid; out->gid = in->gid; out->mode = (out->mode & ~S_IRWXUGO) | (in->mode & S_IRWXUGO); } |
a5f75e7f2
|
730 731 |
/** * ipcctl_pre_down - retrieve an ipc and check permissions for some IPC_XXX cmd |
6213cfe82
|
732 |
* @ns: the ipc namespace |
a5f75e7f2
|
733 734 735 736 737 738 739 740 741 742 743 744 745 746 |
* @ids: the table of ids where to look for the ipc * @id: the id of the ipc to retrieve * @cmd: the cmd to check * @perm: the permission to set * @extra_perm: one extra permission parameter used by msq * * This function does some common audit and permissions check for some IPC_XXX * cmd and is called from semctl_down, shmctl_down and msgctl_down. * It must be called without any lock held and * - retrieves the ipc with the given id in the given table. * - performs some audit and permission check, depending on the given cmd * - returns the ipc with both ipc and rw_mutex locks held in case of success * or an err-code without any lock held otherwise. */ |
b0e77598f
|
747 748 |
struct kern_ipc_perm *ipcctl_pre_down(struct ipc_namespace *ns, struct ipc_ids *ids, int id, int cmd, |
a5f75e7f2
|
749 750 751 |
struct ipc64_perm *perm, int extra_perm) { struct kern_ipc_perm *ipcp; |
414c0708d
|
752 |
uid_t euid; |
a5f75e7f2
|
753 754 755 |
int err; down_write(&ids->rw_mutex); |
00c2bf85d
|
756 |
ipcp = ipc_lock_check(ids, id); |
a5f75e7f2
|
757 758 759 760 |
if (IS_ERR(ipcp)) { err = PTR_ERR(ipcp); goto out_up; } |
a33e67510
|
761 |
audit_ipc_obj(ipcp); |
e816f370c
|
762 763 |
if (cmd == IPC_SET) audit_ipc_set_perm(extra_perm, perm->uid, |
a5f75e7f2
|
764 |
perm->gid, perm->mode); |
414c0708d
|
765 766 |
euid = current_euid(); |
b0e77598f
|
767 768 |
if (euid == ipcp->cuid || euid == ipcp->uid || ns_capable(ns->user_ns, CAP_SYS_ADMIN)) |
a5f75e7f2
|
769 770 771 |
return ipcp; err = -EPERM; |
a5f75e7f2
|
772 773 774 775 776 |
ipc_unlock(ipcp); out_up: up_write(&ids->rw_mutex); return ERR_PTR(err); } |
1da177e4c
|
777 778 779 780 781 782 783 784 |
#ifdef __ARCH_WANT_IPC_PARSE_VERSION /** * ipc_parse_version - IPC call version * @cmd: pointer to command * * Return IPC_64 for new style IPC and IPC_OLD for old style IPC. |
72fd4a35a
|
785 |
* The @cmd value is turned from an encoding command and version into |
1da177e4c
|
786 787 788 789 790 791 792 793 794 795 796 797 798 799 |
* just the command code. */ int ipc_parse_version (int *cmd) { if (*cmd & IPC_64) { *cmd ^= IPC_64; return IPC_64; } else { return IPC_OLD; } } #endif /* __ARCH_WANT_IPC_PARSE_VERSION */ |
ae7817745
|
800 801 |
#ifdef CONFIG_PROC_FS |
bc1fc6d88
|
802 803 804 805 |
struct ipc_proc_iter { struct ipc_namespace *ns; struct ipc_proc_iface *iface; }; |
7ca7e564e
|
806 807 808 |
/* * This routine locks the ipc structure found at least at position pos. */ |
b524b9adb
|
809 810 |
static struct kern_ipc_perm *sysvipc_find_ipc(struct ipc_ids *ids, loff_t pos, loff_t *new_pos) |
ae7817745
|
811 |
{ |
7ca7e564e
|
812 813 |
struct kern_ipc_perm *ipc; int total, id; |
73ea41302
|
814 |
|
7ca7e564e
|
815 816 817 818 819 820 |
total = 0; for (id = 0; id < pos && total < ids->in_use; id++) { ipc = idr_find(&ids->ipcs_idr, id); if (ipc != NULL) total++; } |
ae7817745
|
821 |
|
7ca7e564e
|
822 823 |
if (total >= ids->in_use) return NULL; |
ae7817745
|
824 |
|
7ca7e564e
|
825 826 827 828 829 |
for ( ; pos < IPCMNI; pos++) { ipc = idr_find(&ids->ipcs_idr, pos); if (ipc != NULL) { *new_pos = pos + 1; ipc_lock_by_ptr(ipc); |
ae7817745
|
830 831 832 833 834 835 836 |
return ipc; } } /* Out of range - return NULL to terminate iteration */ return NULL; } |
7ca7e564e
|
837 838 839 840 841 842 843 844 845 |
static void *sysvipc_proc_next(struct seq_file *s, void *it, loff_t *pos) { struct ipc_proc_iter *iter = s->private; struct ipc_proc_iface *iface = iter->iface; struct kern_ipc_perm *ipc = it; /* If we had an ipc id locked before, unlock it */ if (ipc && ipc != SEQ_START_TOKEN) ipc_unlock(ipc); |
ed2ddbf88
|
846 |
return sysvipc_find_ipc(&iter->ns->ids[iface->ids], *pos, pos); |
7ca7e564e
|
847 |
} |
ae7817745
|
848 |
/* |
f4566f048
|
849 850 |
* File positions: pos 0 -> header, pos n -> ipc id = n - 1. * SeqFile iterator: iterator value locked ipc pointer or SEQ_TOKEN_START. |
ae7817745
|
851 852 853 |
*/ static void *sysvipc_proc_start(struct seq_file *s, loff_t *pos) { |
bc1fc6d88
|
854 855 |
struct ipc_proc_iter *iter = s->private; struct ipc_proc_iface *iface = iter->iface; |
73ea41302
|
856 |
struct ipc_ids *ids; |
ed2ddbf88
|
857 |
ids = &iter->ns->ids[iface->ids]; |
ae7817745
|
858 859 860 861 862 |
/* * Take the lock - this will be released by the corresponding * call to stop(). */ |
3e148c799
|
863 |
down_read(&ids->rw_mutex); |
ae7817745
|
864 865 866 867 868 869 870 871 872 873 |
/* pos < 0 is invalid */ if (*pos < 0) return NULL; /* pos == 0 means header */ if (*pos == 0) return SEQ_START_TOKEN; /* Find the (pos-1)th ipc */ |
7ca7e564e
|
874 |
return sysvipc_find_ipc(ids, *pos - 1, pos); |
ae7817745
|
875 876 877 878 879 |
} static void sysvipc_proc_stop(struct seq_file *s, void *it) { struct kern_ipc_perm *ipc = it; |
bc1fc6d88
|
880 881 |
struct ipc_proc_iter *iter = s->private; struct ipc_proc_iface *iface = iter->iface; |
73ea41302
|
882 |
struct ipc_ids *ids; |
ae7817745
|
883 |
|
f4566f048
|
884 |
/* If we had a locked structure, release it */ |
ae7817745
|
885 886 |
if (ipc && ipc != SEQ_START_TOKEN) ipc_unlock(ipc); |
ed2ddbf88
|
887 |
ids = &iter->ns->ids[iface->ids]; |
ae7817745
|
888 |
/* Release the lock we took in start() */ |
3e148c799
|
889 |
up_read(&ids->rw_mutex); |
ae7817745
|
890 891 892 893 |
} static int sysvipc_proc_show(struct seq_file *s, void *it) { |
bc1fc6d88
|
894 895 |
struct ipc_proc_iter *iter = s->private; struct ipc_proc_iface *iface = iter->iface; |
ae7817745
|
896 897 898 899 900 901 |
if (it == SEQ_START_TOKEN) return seq_puts(s, iface->header); return iface->show(s, it); } |
88e9d34c7
|
902 |
static const struct seq_operations sysvipc_proc_seqops = { |
ae7817745
|
903 904 905 906 907 |
.start = sysvipc_proc_start, .stop = sysvipc_proc_stop, .next = sysvipc_proc_next, .show = sysvipc_proc_show, }; |
bc1fc6d88
|
908 909 |
static int sysvipc_proc_open(struct inode *inode, struct file *file) { |
ae7817745
|
910 911 |
int ret; struct seq_file *seq; |
bc1fc6d88
|
912 913 914 915 916 917 |
struct ipc_proc_iter *iter; ret = -ENOMEM; iter = kmalloc(sizeof(*iter), GFP_KERNEL); if (!iter) goto out; |
ae7817745
|
918 919 |
ret = seq_open(file, &sysvipc_proc_seqops); |
bc1fc6d88
|
920 921 922 923 924 925 926 927 928 |
if (ret) goto out_kfree; seq = file->private_data; seq->private = iter; iter->iface = PDE(inode)->data; iter->ns = get_ipc_ns(current->nsproxy->ipc_ns); out: |
ae7817745
|
929 |
return ret; |
bc1fc6d88
|
930 931 932 933 934 935 936 937 938 939 940 |
out_kfree: kfree(iter); goto out; } static int sysvipc_proc_release(struct inode *inode, struct file *file) { struct seq_file *seq = file->private_data; struct ipc_proc_iter *iter = seq->private; put_ipc_ns(iter->ns); return seq_release_private(inode, file); |
ae7817745
|
941 |
} |
9a32144e9
|
942 |
static const struct file_operations sysvipc_proc_fops = { |
ae7817745
|
943 944 945 |
.open = sysvipc_proc_open, .read = seq_read, .llseek = seq_lseek, |
bc1fc6d88
|
946 |
.release = sysvipc_proc_release, |
ae7817745
|
947 948 |
}; #endif /* CONFIG_PROC_FS */ |