First Support on Ginger and OMAP TI
[linux-ginger.git] / drivers / staging / pohmelfs / netfs.h
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1 /*
2 * 2007+ Copyright (c) Evgeniy Polyakov <zbr@ioremap.net>
3 * All rights reserved.
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
16 #ifndef __NETFS_H
17 #define __NETFS_H
19 #include <linux/types.h>
20 #include <linux/connector.h>
22 #define POHMELFS_CN_IDX 5
23 #define POHMELFS_CN_VAL 0
25 #define POHMELFS_CTLINFO_ACK 1
26 #define POHMELFS_NOINFO_ACK 2
28 #define POHMELFS_NULL_IDX 65535
31 * Network command structure.
32 * Will be extended.
34 struct netfs_cmd {
35 __u16 cmd; /* Command number */
36 __u16 csize; /* Attached crypto information size */
37 __u16 cpad; /* Attached padding size */
38 __u16 ext; /* External flags */
39 __u32 size; /* Size of the attached data */
40 __u32 trans; /* Transaction id */
41 __u64 id; /* Object ID to operate on. Used for feedback.*/
42 __u64 start; /* Start of the object. */
43 __u64 iv; /* IV sequence */
44 __u8 data[0];
47 static inline void netfs_convert_cmd(struct netfs_cmd *cmd)
49 cmd->id = __be64_to_cpu(cmd->id);
50 cmd->start = __be64_to_cpu(cmd->start);
51 cmd->iv = __be64_to_cpu(cmd->iv);
52 cmd->cmd = __be16_to_cpu(cmd->cmd);
53 cmd->ext = __be16_to_cpu(cmd->ext);
54 cmd->csize = __be16_to_cpu(cmd->csize);
55 cmd->cpad = __be16_to_cpu(cmd->cpad);
56 cmd->size = __be32_to_cpu(cmd->size);
59 #define NETFS_TRANS_SINGLE_DST (1<<0)
61 enum {
62 NETFS_READDIR = 1, /* Read directory for given inode number */
63 NETFS_READ_PAGE, /* Read data page from the server */
64 NETFS_WRITE_PAGE, /* Write data page to the server */
65 NETFS_CREATE, /* Create directory entry */
66 NETFS_REMOVE, /* Remove directory entry */
68 NETFS_LOOKUP, /* Lookup single object */
69 NETFS_LINK, /* Create a link */
70 NETFS_TRANS, /* Transaction */
71 NETFS_OPEN, /* Open intent */
72 NETFS_INODE_INFO, /* Metadata cache coherency synchronization message */
74 NETFS_PAGE_CACHE, /* Page cache invalidation message */
75 NETFS_READ_PAGES, /* Read multiple contiguous pages in one go */
76 NETFS_RENAME, /* Rename object */
77 NETFS_CAPABILITIES, /* Capabilities of the client, for example supported crypto */
78 NETFS_LOCK, /* Distributed lock message */
80 NETFS_XATTR_SET, /* Set extended attribute */
81 NETFS_XATTR_GET, /* Get extended attribute */
82 NETFS_CMD_MAX
85 enum {
86 POHMELFS_FLAGS_ADD = 0, /* Network state control message for ADD */
87 POHMELFS_FLAGS_DEL, /* Network state control message for DEL */
88 POHMELFS_FLAGS_SHOW, /* Network state control message for SHOW */
89 POHMELFS_FLAGS_CRYPTO, /* Crypto data control message */
90 POHMELFS_FLAGS_MODIFY, /* Network state modification message */
91 POHMELFS_FLAGS_DUMP, /* Network state control message for SHOW ALL */
92 POHMELFS_FLAGS_FLUSH, /* Network state control message for FLUSH */
96 * Always wanted to copy it from socket headers into public one,
97 * since they are __KERNEL__ protected there.
99 #define _K_SS_MAXSIZE 128
101 struct saddr {
102 unsigned short sa_family;
103 char addr[_K_SS_MAXSIZE];
106 enum {
107 POHMELFS_CRYPTO_HASH = 0,
108 POHMELFS_CRYPTO_CIPHER,
111 struct pohmelfs_crypto {
112 unsigned int idx; /* Config index */
113 unsigned short strlen; /* Size of the attached crypto string including 0-byte
114 * "cbc(aes)" for example */
115 unsigned short type; /* HMAC, cipher, both */
116 unsigned int keysize; /* Key size */
117 unsigned char data[0]; /* Algorithm string, key and IV */
120 #define POHMELFS_IO_PERM_READ (1<<0)
121 #define POHMELFS_IO_PERM_WRITE (1<<1)
124 * Configuration command used to create table of different remote servers.
126 struct pohmelfs_ctl {
127 __u32 idx; /* Config index */
128 __u32 type; /* Socket type */
129 __u32 proto; /* Socket protocol */
130 __u16 addrlen; /* Size of the address */
131 __u16 perm; /* IO permission */
132 __u16 prio; /* IO priority */
133 struct saddr addr; /* Remote server address */
137 * Ack for userspace about requested command.
139 struct pohmelfs_cn_ack {
140 struct cn_msg msg;
141 int error;
142 int msg_num;
143 int unused[3];
144 struct pohmelfs_ctl ctl;
148 * Inode info structure used to sync with server.
149 * Check what stat() returns.
151 struct netfs_inode_info {
152 unsigned int mode;
153 unsigned int nlink;
154 unsigned int uid;
155 unsigned int gid;
156 unsigned int blocksize;
157 unsigned int padding;
158 __u64 ino;
159 __u64 blocks;
160 __u64 rdev;
161 __u64 size;
162 __u64 version;
165 static inline void netfs_convert_inode_info(struct netfs_inode_info *info)
167 info->mode = __cpu_to_be32(info->mode);
168 info->nlink = __cpu_to_be32(info->nlink);
169 info->uid = __cpu_to_be32(info->uid);
170 info->gid = __cpu_to_be32(info->gid);
171 info->blocksize = __cpu_to_be32(info->blocksize);
172 info->blocks = __cpu_to_be64(info->blocks);
173 info->rdev = __cpu_to_be64(info->rdev);
174 info->size = __cpu_to_be64(info->size);
175 info->version = __cpu_to_be64(info->version);
176 info->ino = __cpu_to_be64(info->ino);
180 * Cache state machine.
182 enum {
183 NETFS_COMMAND_PENDING = 0, /* Command is being executed */
184 NETFS_INODE_REMOTE_SYNCED, /* Inode was synced to server */
185 NETFS_INODE_REMOTE_DIR_SYNCED, /* Inode (directory) was synced from the server */
186 NETFS_INODE_OWNED, /* Inode is owned by given host */
187 NETFS_INODE_NEED_FLUSH, /* Inode has to be flushed to the server */
191 * POHMELFS capabilities: information about supported
192 * crypto operations (hash/cipher, modes, key sizes and so on),
193 * root informaion (used/available size, number of objects, permissions)
195 enum pohmelfs_capabilities {
196 POHMELFS_CRYPTO_CAPABILITIES = 0,
197 POHMELFS_ROOT_CAPABILITIES,
200 /* Read-only mount */
201 #define POHMELFS_FLAGS_RO (1<<0)
202 /* Extended attributes support on/off */
203 #define POHMELFS_FLAGS_XATTR (1<<1)
205 struct netfs_root_capabilities {
206 __u64 nr_files;
207 __u64 used, avail;
208 __u64 flags;
211 static inline void netfs_convert_root_capabilities(struct netfs_root_capabilities *cap)
213 cap->nr_files = __cpu_to_be64(cap->nr_files);
214 cap->used = __cpu_to_be64(cap->used);
215 cap->avail = __cpu_to_be64(cap->avail);
216 cap->flags = __cpu_to_be64(cap->flags);
219 struct netfs_crypto_capabilities {
220 unsigned short hash_strlen; /* Hash string length, like "hmac(sha1) including 0 byte "*/
221 unsigned short cipher_strlen; /* Cipher string length with the same format */
222 unsigned int cipher_keysize; /* Cipher key size */
225 static inline void netfs_convert_crypto_capabilities(struct netfs_crypto_capabilities *cap)
227 cap->hash_strlen = __cpu_to_be16(cap->hash_strlen);
228 cap->cipher_strlen = __cpu_to_be16(cap->cipher_strlen);
229 cap->cipher_keysize = __cpu_to_be32(cap->cipher_keysize);
232 enum pohmelfs_lock_type {
233 POHMELFS_LOCK_GRAB = (1<<15),
235 POHMELFS_READ_LOCK = 0,
236 POHMELFS_WRITE_LOCK,
239 struct netfs_lock {
240 __u64 start;
241 __u64 ino;
242 __u32 size;
243 __u32 type;
246 static inline void netfs_convert_lock(struct netfs_lock *lock)
248 lock->start = __cpu_to_be64(lock->start);
249 lock->ino = __cpu_to_be64(lock->ino);
250 lock->size = __cpu_to_be32(lock->size);
251 lock->type = __cpu_to_be32(lock->type);
254 #ifdef __KERNEL__
256 #include <linux/kernel.h>
257 #include <linux/completion.h>
258 #include <linux/rbtree.h>
259 #include <linux/net.h>
260 #include <linux/poll.h>
263 * Private POHMELFS cache of objects in directory.
265 struct pohmelfs_name {
266 struct rb_node hash_node;
268 struct list_head sync_create_entry;
270 u64 ino;
272 u32 hash;
273 u32 mode;
274 u32 len;
276 char *data;
280 * POHMELFS inode. Main object.
282 struct pohmelfs_inode {
283 struct list_head inode_entry; /* Entry in superblock list.
284 * Objects which are not bound to dentry require to be dropped
285 * in ->put_super()
287 struct rb_root hash_root; /* The same, but indexed by name hash and len */
288 struct mutex offset_lock; /* Protect both above trees */
290 struct list_head sync_create_list; /* List of created but not yet synced to the server children */
292 unsigned int drop_count;
294 int lock_type; /* How this inode is locked: read or write */
296 int error; /* Transaction error for given inode */
298 long state; /* State machine above */
300 u64 ino; /* Inode number */
301 u64 total_len; /* Total length of all children names, used to create offsets */
303 struct inode vfs_inode;
306 struct netfs_trans;
307 typedef int (* netfs_trans_complete_t)(struct page **pages, unsigned int page_num,
308 void *private, int err);
310 struct netfs_state;
311 struct pohmelfs_sb;
313 struct netfs_trans {
315 * Transaction header and attached contiguous data live here.
317 struct iovec iovec;
320 * Pages attached to transaction.
322 struct page **pages;
325 * List and protecting lock for transaction destination
326 * network states.
328 spinlock_t dst_lock;
329 struct list_head dst_list;
332 * Number of users for given transaction.
333 * For example each network state attached to transaction
334 * via dst_list increases it.
336 atomic_t refcnt;
339 * Number of pages attached to given transaction.
340 * Some slots in above page array can be NULL, since
341 * for example page can be under writeback already,
342 * so we skip it in this transaction.
344 unsigned int page_num;
347 * Transaction flags: single dst or broadcast and so on.
349 unsigned int flags;
352 * Size of the data, which can be placed into
353 * iovec.iov_base area.
355 unsigned int total_size;
358 * Number of pages to be sent to remote server.
359 * Usually equal to above page_num, but in case of partial
360 * writeback it can accumulate only pages already completed
361 * previous writeback.
363 unsigned int attached_pages;
366 * Attached number of bytes in all above pages.
368 unsigned int attached_size;
371 * Unique transacton generation number.
372 * Used as identity in the network state tree of transactions.
374 unsigned int gen;
377 * Transaction completion status.
379 int result;
382 * Superblock this transaction belongs to
384 struct pohmelfs_sb *psb;
387 * Crypto engine, which processed this transaction.
388 * Can be not NULL only if crypto engine holds encrypted pages.
390 struct pohmelfs_crypto_engine *eng;
392 /* Private data */
393 void *private;
395 /* Completion callback, invoked just before transaction is destroyed */
396 netfs_trans_complete_t complete;
399 static inline int netfs_trans_cur_len(struct netfs_trans *t)
401 return (signed)(t->total_size - t->iovec.iov_len);
404 static inline void *netfs_trans_current(struct netfs_trans *t)
406 return t->iovec.iov_base + t->iovec.iov_len;
409 struct netfs_trans *netfs_trans_alloc(struct pohmelfs_sb *psb, unsigned int size,
410 unsigned int flags, unsigned int nr);
411 void netfs_trans_free(struct netfs_trans *t);
412 int netfs_trans_finish(struct netfs_trans *t, struct pohmelfs_sb *psb);
413 int netfs_trans_finish_send(struct netfs_trans *t, struct pohmelfs_sb *psb);
415 static inline void netfs_trans_reset(struct netfs_trans *t)
417 t->complete = NULL;
420 struct netfs_trans_dst {
421 struct list_head trans_entry;
422 struct rb_node state_entry;
424 unsigned long send_time;
427 * Times this transaction was resent to its old or new,
428 * depending on flags, destinations. When it reaches maximum
429 * allowed number, specified in superblock->trans_retries,
430 * transaction will be freed with ETIMEDOUT error.
432 unsigned int retries;
434 struct netfs_trans *trans;
435 struct netfs_state *state;
438 struct netfs_trans_dst *netfs_trans_search(struct netfs_state *st, unsigned int gen);
439 void netfs_trans_drop_dst(struct netfs_trans_dst *dst);
440 void netfs_trans_drop_dst_nostate(struct netfs_trans_dst *dst);
441 void netfs_trans_drop_trans(struct netfs_trans *t, struct netfs_state *st);
442 void netfs_trans_drop_last(struct netfs_trans *t, struct netfs_state *st);
443 int netfs_trans_resend(struct netfs_trans *t, struct pohmelfs_sb *psb);
444 int netfs_trans_remove_nolock(struct netfs_trans_dst *dst, struct netfs_state *st);
446 int netfs_trans_init(void);
447 void netfs_trans_exit(void);
449 struct pohmelfs_crypto_engine {
450 u64 iv; /* Crypto IV for current operation */
451 unsigned long timeout; /* Crypto waiting timeout */
452 unsigned int size; /* Size of crypto scratchpad */
453 void *data; /* Temporal crypto scratchpad */
455 * Crypto operations performed on objects.
457 struct crypto_hash *hash;
458 struct crypto_ablkcipher *cipher;
460 struct pohmelfs_crypto_thread *thread; /* Crypto thread which hosts this engine */
462 struct page **pages;
463 unsigned int page_num;
466 struct pohmelfs_crypto_thread {
467 struct list_head thread_entry;
469 struct task_struct *thread;
470 struct pohmelfs_sb *psb;
472 struct pohmelfs_crypto_engine eng;
474 struct netfs_trans *trans;
476 wait_queue_head_t wait;
477 int error;
479 unsigned int size;
480 struct page *page;
483 void pohmelfs_crypto_thread_make_ready(struct pohmelfs_crypto_thread *th);
486 * Network state, attached to one server.
488 struct netfs_state {
489 struct mutex __state_lock; /* Can not allow to use the same socket simultaneously */
490 struct mutex __state_send_lock;
491 struct netfs_cmd cmd; /* Cached command */
492 struct netfs_inode_info info; /* Cached inode info */
494 void *data; /* Cached some data */
495 unsigned int size; /* Size of that data */
497 struct pohmelfs_sb *psb; /* Superblock */
499 struct task_struct *thread; /* Async receiving thread */
501 /* Waiting/polling machinery */
502 wait_queue_t wait;
503 wait_queue_head_t *whead;
504 wait_queue_head_t thread_wait;
506 struct mutex trans_lock;
507 struct rb_root trans_root;
509 struct pohmelfs_ctl ctl; /* Remote peer */
511 struct socket *socket; /* Socket object */
512 struct socket *read_socket; /* Cached pointer to socket object.
513 * Used to determine if between lock drops socket was changed.
514 * Never used to read data or any kind of access.
517 * Crypto engines to process incoming data.
519 struct pohmelfs_crypto_engine eng;
521 int need_reset;
524 int netfs_state_init(struct netfs_state *st);
525 void netfs_state_exit(struct netfs_state *st);
527 static inline void netfs_state_lock_send(struct netfs_state *st)
529 mutex_lock(&st->__state_send_lock);
532 static inline int netfs_state_trylock_send(struct netfs_state *st)
534 return mutex_trylock(&st->__state_send_lock);
537 static inline void netfs_state_unlock_send(struct netfs_state *st)
539 BUG_ON(!mutex_is_locked(&st->__state_send_lock));
541 mutex_unlock(&st->__state_send_lock);
544 static inline void netfs_state_lock(struct netfs_state *st)
546 mutex_lock(&st->__state_lock);
549 static inline void netfs_state_unlock(struct netfs_state *st)
551 BUG_ON(!mutex_is_locked(&st->__state_lock));
553 mutex_unlock(&st->__state_lock);
556 static inline unsigned int netfs_state_poll(struct netfs_state *st)
558 unsigned int revents = POLLHUP | POLLERR;
560 netfs_state_lock(st);
561 if (st->socket)
562 revents = st->socket->ops->poll(NULL, st->socket, NULL);
563 netfs_state_unlock(st);
565 return revents;
568 struct pohmelfs_config;
570 struct pohmelfs_sb {
571 struct rb_root mcache_root;
572 struct mutex mcache_lock;
573 atomic_long_t mcache_gen;
574 unsigned long mcache_timeout;
576 unsigned int idx;
578 unsigned int trans_retries;
580 atomic_t trans_gen;
582 unsigned int crypto_attached_size;
583 unsigned int crypto_align_size;
585 unsigned int crypto_fail_unsupported;
587 unsigned int crypto_thread_num;
588 struct list_head crypto_active_list, crypto_ready_list;
589 struct mutex crypto_thread_lock;
591 unsigned int trans_max_pages;
592 unsigned long trans_data_size;
593 unsigned long trans_timeout;
595 unsigned long drop_scan_timeout;
596 unsigned long trans_scan_timeout;
598 unsigned long wait_on_page_timeout;
600 struct list_head flush_list;
601 struct list_head drop_list;
602 spinlock_t ino_lock;
603 u64 ino;
606 * Remote nodes POHMELFS connected to.
608 struct list_head state_list;
609 struct mutex state_lock;
612 * Currently active state to request data from.
614 struct pohmelfs_config *active_state;
617 wait_queue_head_t wait;
620 * Timed checks: stale transactions, inodes to be freed and so on.
622 struct delayed_work dwork;
623 struct delayed_work drop_dwork;
625 struct super_block *sb;
628 * Algorithm strings.
630 char *hash_string;
631 char *cipher_string;
633 u8 *hash_key;
634 u8 *cipher_key;
637 * Algorithm string lengths.
639 unsigned int hash_strlen;
640 unsigned int cipher_strlen;
641 unsigned int hash_keysize;
642 unsigned int cipher_keysize;
645 * Controls whether to perfrom crypto processing or not.
647 int perform_crypto;
650 * POHMELFS statistics.
652 u64 total_size;
653 u64 avail_size;
654 atomic_long_t total_inodes;
657 * Xattr support, read-only and so on.
659 u64 state_flags;
662 * Temporary storage to detect changes in the wait queue.
664 long flags;
667 static inline void netfs_trans_update(struct netfs_cmd *cmd,
668 struct netfs_trans *t, unsigned int size)
670 unsigned int sz = ALIGN(size, t->psb->crypto_align_size);
672 t->iovec.iov_len += sizeof(struct netfs_cmd) + sz;
673 cmd->cpad = __cpu_to_be16(sz - size);
676 static inline struct pohmelfs_sb *POHMELFS_SB(struct super_block *sb)
678 return sb->s_fs_info;
681 static inline struct pohmelfs_inode *POHMELFS_I(struct inode *inode)
683 return container_of(inode, struct pohmelfs_inode, vfs_inode);
686 static inline u64 pohmelfs_new_ino(struct pohmelfs_sb *psb)
688 u64 ino;
690 spin_lock(&psb->ino_lock);
691 ino = psb->ino++;
692 spin_unlock(&psb->ino_lock);
694 return ino;
697 static inline void pohmelfs_put_inode(struct pohmelfs_inode *pi)
699 struct pohmelfs_sb *psb = POHMELFS_SB(pi->vfs_inode.i_sb);
701 spin_lock(&psb->ino_lock);
702 list_move_tail(&pi->inode_entry, &psb->drop_list);
703 pi->drop_count++;
704 spin_unlock(&psb->ino_lock);
707 struct pohmelfs_config {
708 struct list_head config_entry;
710 struct netfs_state state;
713 struct pohmelfs_config_group {
715 * Entry in the global config group list.
717 struct list_head group_entry;
720 * Index of the current group.
722 unsigned int idx;
724 * Number of config_list entries in this group entry.
726 unsigned int num_entry;
728 * Algorithm strings.
730 char *hash_string;
731 char *cipher_string;
734 * Algorithm string lengths.
736 unsigned int hash_strlen;
737 unsigned int cipher_strlen;
740 * Key and its size.
742 unsigned int hash_keysize;
743 unsigned int cipher_keysize;
744 u8 *hash_key;
745 u8 *cipher_key;
748 * List of config entries (network state info) for given idx.
750 struct list_head config_list;
753 int __init pohmelfs_config_init(void);
754 void pohmelfs_config_exit(void);
755 int pohmelfs_copy_config(struct pohmelfs_sb *psb);
756 int pohmelfs_copy_crypto(struct pohmelfs_sb *psb);
757 int pohmelfs_config_check(struct pohmelfs_config *config, int idx);
758 int pohmelfs_state_init_one(struct pohmelfs_sb *psb, struct pohmelfs_config *conf);
760 extern const struct file_operations pohmelfs_dir_fops;
761 extern const struct inode_operations pohmelfs_dir_inode_ops;
763 int pohmelfs_state_init(struct pohmelfs_sb *psb);
764 void pohmelfs_state_exit(struct pohmelfs_sb *psb);
765 void pohmelfs_state_flush_transactions(struct netfs_state *st);
767 void pohmelfs_fill_inode(struct inode *inode, struct netfs_inode_info *info);
769 void pohmelfs_name_del(struct pohmelfs_inode *parent, struct pohmelfs_name *n);
770 void pohmelfs_free_names(struct pohmelfs_inode *parent);
771 struct pohmelfs_name *pohmelfs_search_hash(struct pohmelfs_inode *pi, u32 hash);
773 void pohmelfs_inode_del_inode(struct pohmelfs_sb *psb, struct pohmelfs_inode *pi);
775 struct pohmelfs_inode *pohmelfs_create_entry_local(struct pohmelfs_sb *psb,
776 struct pohmelfs_inode *parent, struct qstr *str, u64 start, int mode);
778 int pohmelfs_write_create_inode(struct pohmelfs_inode *pi);
780 int pohmelfs_write_inode_create(struct inode *inode, struct netfs_trans *trans);
781 int pohmelfs_remove_child(struct pohmelfs_inode *parent, struct pohmelfs_name *n);
783 struct pohmelfs_inode *pohmelfs_new_inode(struct pohmelfs_sb *psb,
784 struct pohmelfs_inode *parent, struct qstr *str,
785 struct netfs_inode_info *info, int link);
787 int pohmelfs_setattr(struct dentry *dentry, struct iattr *attr);
788 int pohmelfs_setattr_raw(struct inode *inode, struct iattr *attr);
790 int pohmelfs_meta_command(struct pohmelfs_inode *pi, unsigned int cmd_op, unsigned int flags,
791 netfs_trans_complete_t complete, void *priv, u64 start);
792 int pohmelfs_meta_command_data(struct pohmelfs_inode *pi, u64 id, unsigned int cmd_op, char *addon,
793 unsigned int flags, netfs_trans_complete_t complete, void *priv, u64 start);
795 void pohmelfs_check_states(struct pohmelfs_sb *psb);
796 void pohmelfs_switch_active(struct pohmelfs_sb *psb);
798 int pohmelfs_construct_path_string(struct pohmelfs_inode *pi, void *data, int len);
799 int pohmelfs_path_length(struct pohmelfs_inode *pi);
801 struct pohmelfs_crypto_completion {
802 struct completion complete;
803 int error;
806 int pohmelfs_trans_crypt(struct netfs_trans *t, struct pohmelfs_sb *psb);
807 void pohmelfs_crypto_exit(struct pohmelfs_sb *psb);
808 int pohmelfs_crypto_init(struct pohmelfs_sb *psb);
810 int pohmelfs_crypto_engine_init(struct pohmelfs_crypto_engine *e, struct pohmelfs_sb *psb);
811 void pohmelfs_crypto_engine_exit(struct pohmelfs_crypto_engine *e);
813 int pohmelfs_crypto_process_input_data(struct pohmelfs_crypto_engine *e, u64 iv,
814 void *data, struct page *page, unsigned int size);
815 int pohmelfs_crypto_process_input_page(struct pohmelfs_crypto_engine *e,
816 struct page *page, unsigned int size, u64 iv);
818 static inline u64 pohmelfs_gen_iv(struct netfs_trans *t)
820 u64 iv = t->gen;
822 iv <<= 32;
823 iv |= ((unsigned long)t) & 0xffffffff;
825 return iv;
828 int pohmelfs_data_lock(struct pohmelfs_inode *pi, u64 start, u32 size, int type);
829 int pohmelfs_data_unlock(struct pohmelfs_inode *pi, u64 start, u32 size, int type);
830 int pohmelfs_data_lock_response(struct netfs_state *st);
832 static inline int pohmelfs_need_lock(struct pohmelfs_inode *pi, int type)
834 if (test_bit(NETFS_INODE_OWNED, &pi->state)) {
835 if (type == pi->lock_type)
836 return 0;
837 if ((type == POHMELFS_READ_LOCK) && (pi->lock_type == POHMELFS_WRITE_LOCK))
838 return 0;
841 if (!test_bit(NETFS_INODE_REMOTE_SYNCED, &pi->state))
842 return 0;
844 return 1;
847 int __init pohmelfs_mcache_init(void);
848 void pohmelfs_mcache_exit(void);
850 /* #define CONFIG_POHMELFS_DEBUG */
852 #ifdef CONFIG_POHMELFS_DEBUG
853 #define dprintka(f, a...) printk(f, ##a)
854 #define dprintk(f, a...) printk("%d: " f, task_pid_vnr(current), ##a)
855 #else
856 #define dprintka(f, a...) do {} while (0)
857 #define dprintk(f, a...) do {} while (0)
858 #endif
860 static inline void netfs_trans_get(struct netfs_trans *t)
862 atomic_inc(&t->refcnt);
865 static inline void netfs_trans_put(struct netfs_trans *t)
867 if (atomic_dec_and_test(&t->refcnt)) {
868 dprintk("%s: t: %p, gen: %u, err: %d.\n",
869 __func__, t, t->gen, t->result);
870 if (t->complete)
871 t->complete(t->pages, t->page_num,
872 t->private, t->result);
873 netfs_trans_free(t);
877 struct pohmelfs_mcache {
878 struct rb_node mcache_entry;
879 struct completion complete;
881 atomic_t refcnt;
883 u64 gen;
885 void *data;
886 u64 start;
887 u32 size;
888 int err;
890 struct netfs_inode_info info;
893 struct pohmelfs_mcache *pohmelfs_mcache_alloc(struct pohmelfs_sb *psb, u64 start,
894 unsigned int size, void *data);
895 void pohmelfs_mcache_free(struct pohmelfs_sb *psb, struct pohmelfs_mcache *m);
896 struct pohmelfs_mcache *pohmelfs_mcache_search(struct pohmelfs_sb *psb, u64 gen);
897 void pohmelfs_mcache_remove_locked(struct pohmelfs_sb *psb, struct pohmelfs_mcache *m);
899 static inline void pohmelfs_mcache_get(struct pohmelfs_mcache *m)
901 atomic_inc(&m->refcnt);
904 static inline void pohmelfs_mcache_put(struct pohmelfs_sb *psb,
905 struct pohmelfs_mcache *m)
907 if (atomic_dec_and_test(&m->refcnt))
908 pohmelfs_mcache_free(psb, m);
911 //#define POHMELFS_TRUNCATE_ON_INODE_FLUSH
913 #endif /* __KERNEL__*/
915 #endif /* __NETFS_H */