1 // SPDX-License-Identifier: GPL-2.0 << 2 /* 1 /* 3 * Cache operations for Coda. 2 * Cache operations for Coda. 4 * For Linux 2.1: (C) 1997 Carnegie Mellon Uni 3 * For Linux 2.1: (C) 1997 Carnegie Mellon University 5 * For Linux 2.3: (C) 2000 Carnegie Mellon Uni 4 * For Linux 2.3: (C) 2000 Carnegie Mellon University 6 * 5 * 7 * Carnegie Mellon encourages users of this co 6 * Carnegie Mellon encourages users of this code to contribute improvements 8 * to the Coda project http://www.coda.cs.cmu. 7 * to the Coda project http://www.coda.cs.cmu.edu/ <coda@cs.cmu.edu>. 9 */ 8 */ 10 9 11 #include <linux/types.h> 10 #include <linux/types.h> 12 #include <linux/kernel.h> 11 #include <linux/kernel.h> 13 #include <linux/time.h> 12 #include <linux/time.h> 14 #include <linux/fs.h> 13 #include <linux/fs.h> 15 #include <linux/stat.h> 14 #include <linux/stat.h> 16 #include <linux/errno.h> 15 #include <linux/errno.h> 17 #include <linux/uaccess.h> 16 #include <linux/uaccess.h> 18 #include <linux/string.h> 17 #include <linux/string.h> 19 #include <linux/list.h> 18 #include <linux/list.h> 20 #include <linux/sched.h> 19 #include <linux/sched.h> 21 #include <linux/spinlock.h> 20 #include <linux/spinlock.h> 22 21 23 #include <linux/coda.h> 22 #include <linux/coda.h> 24 #include "coda_psdev.h" !! 23 #include <linux/coda_psdev.h> 25 #include "coda_linux.h" 24 #include "coda_linux.h" 26 #include "coda_cache.h" 25 #include "coda_cache.h" 27 26 28 static atomic_t permission_epoch = ATOMIC_INIT 27 static atomic_t permission_epoch = ATOMIC_INIT(0); 29 28 30 /* replace or extend an acl cache hit */ 29 /* replace or extend an acl cache hit */ 31 void coda_cache_enter(struct inode *inode, int 30 void coda_cache_enter(struct inode *inode, int mask) 32 { 31 { 33 struct coda_inode_info *cii = ITOC(ino 32 struct coda_inode_info *cii = ITOC(inode); 34 33 35 spin_lock(&cii->c_lock); 34 spin_lock(&cii->c_lock); 36 cii->c_cached_epoch = atomic_read(&per 35 cii->c_cached_epoch = atomic_read(&permission_epoch); 37 if (!uid_eq(cii->c_uid, current_fsuid( 36 if (!uid_eq(cii->c_uid, current_fsuid())) { 38 cii->c_uid = current_fsuid(); 37 cii->c_uid = current_fsuid(); 39 cii->c_cached_perm = mask; 38 cii->c_cached_perm = mask; 40 } else 39 } else 41 cii->c_cached_perm |= mask; 40 cii->c_cached_perm |= mask; 42 spin_unlock(&cii->c_lock); 41 spin_unlock(&cii->c_lock); 43 } 42 } 44 43 45 /* remove cached acl from an inode */ 44 /* remove cached acl from an inode */ 46 void coda_cache_clear_inode(struct inode *inod 45 void coda_cache_clear_inode(struct inode *inode) 47 { 46 { 48 struct coda_inode_info *cii = ITOC(ino 47 struct coda_inode_info *cii = ITOC(inode); 49 spin_lock(&cii->c_lock); 48 spin_lock(&cii->c_lock); 50 cii->c_cached_epoch = atomic_read(&per 49 cii->c_cached_epoch = atomic_read(&permission_epoch) - 1; 51 spin_unlock(&cii->c_lock); 50 spin_unlock(&cii->c_lock); 52 } 51 } 53 52 54 /* remove all acl caches */ 53 /* remove all acl caches */ 55 void coda_cache_clear_all(struct super_block * 54 void coda_cache_clear_all(struct super_block *sb) 56 { 55 { 57 atomic_inc(&permission_epoch); 56 atomic_inc(&permission_epoch); 58 } 57 } 59 58 60 59 61 /* check if the mask has been matched against 60 /* check if the mask has been matched against the acl already */ 62 int coda_cache_check(struct inode *inode, int 61 int coda_cache_check(struct inode *inode, int mask) 63 { 62 { 64 struct coda_inode_info *cii = ITOC(ino 63 struct coda_inode_info *cii = ITOC(inode); 65 int hit; 64 int hit; 66 65 67 spin_lock(&cii->c_lock); 66 spin_lock(&cii->c_lock); 68 hit = (mask & cii->c_cached_perm) == m 67 hit = (mask & cii->c_cached_perm) == mask && 69 uid_eq(cii->c_uid, current_fsuid() 68 uid_eq(cii->c_uid, current_fsuid()) && 70 cii->c_cached_epoch == atomic_read 69 cii->c_cached_epoch == atomic_read(&permission_epoch); 71 spin_unlock(&cii->c_lock); 70 spin_unlock(&cii->c_lock); 72 71 73 return hit; 72 return hit; 74 } 73 } 75 74 76 75 77 /* Purging dentries and children */ 76 /* Purging dentries and children */ 78 /* The following routines drop dentries which 77 /* The following routines drop dentries which are not 79 in use and flag dentries which are in use t 78 in use and flag dentries which are in use to be 80 zapped later. 79 zapped later. 81 80 82 The flags are detected by: 81 The flags are detected by: 83 - coda_dentry_revalidate (for lookups) if t 82 - coda_dentry_revalidate (for lookups) if the flag is C_PURGE 84 - coda_dentry_delete: to remove dentry from 83 - coda_dentry_delete: to remove dentry from the cache when d_count 85 falls to zero 84 falls to zero 86 - an inode method coda_revalidate (for attr 85 - an inode method coda_revalidate (for attributes) if the 87 flag is C_VATTR 86 flag is C_VATTR 88 */ 87 */ 89 88 90 /* this won't do any harm: just flag all child 89 /* this won't do any harm: just flag all children */ 91 static void coda_flag_children(struct dentry * 90 static void coda_flag_children(struct dentry *parent, int flag) 92 { 91 { 93 struct dentry *de; 92 struct dentry *de; 94 93 95 spin_lock(&parent->d_lock); 94 spin_lock(&parent->d_lock); 96 hlist_for_each_entry(de, &parent->d_ch !! 95 list_for_each_entry(de, &parent->d_subdirs, d_child) { 97 struct inode *inode = d_inode_ << 98 /* don't know what to do with 96 /* don't know what to do with negative dentries */ 99 if (inode) !! 97 if (d_inode(de) ) 100 coda_flag_inode(inode, !! 98 coda_flag_inode(d_inode(de), flag); 101 } 99 } 102 spin_unlock(&parent->d_lock); 100 spin_unlock(&parent->d_lock); >> 101 return; 103 } 102 } 104 103 105 void coda_flag_inode_children(struct inode *in 104 void coda_flag_inode_children(struct inode *inode, int flag) 106 { 105 { 107 struct dentry *alias_de; 106 struct dentry *alias_de; 108 107 109 if ( !inode || !S_ISDIR(inode->i_mode) 108 if ( !inode || !S_ISDIR(inode->i_mode)) 110 return; 109 return; 111 110 112 alias_de = d_find_alias(inode); 111 alias_de = d_find_alias(inode); 113 if (!alias_de) 112 if (!alias_de) 114 return; 113 return; 115 coda_flag_children(alias_de, flag); 114 coda_flag_children(alias_de, flag); 116 shrink_dcache_parent(alias_de); 115 shrink_dcache_parent(alias_de); 117 dput(alias_de); 116 dput(alias_de); 118 } 117 } 119 118 120 119
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