fsclient.c 42.9 KB
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/* AFS File Server client stubs
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 *
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 * Copyright (C) 2002, 2007 Red Hat, Inc. All Rights Reserved.
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 * Written by David Howells (dhowells@redhat.com)
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * as published by the Free Software Foundation; either version
 * 2 of the License, or (at your option) any later version.
 */

#include <linux/init.h>
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#include <linux/slab.h>
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#include <linux/sched.h>
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#include <linux/circ_buf.h>
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#include "internal.h"
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#include "afs_fs.h"
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/*
 * We need somewhere to discard into in case the server helpfully returns more
 * than we asked for in FS.FetchData{,64}.
 */
static u8 afs_discard_buffer[64];

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/*
 * decode an AFSFid block
 */
static void xdr_decode_AFSFid(const __be32 **_bp, struct afs_fid *fid)
{
	const __be32 *bp = *_bp;

	fid->vid		= ntohl(*bp++);
	fid->vnode		= ntohl(*bp++);
	fid->unique		= ntohl(*bp++);
	*_bp = bp;
}

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/*
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 * decode an AFSFetchStatus block
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 */
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static void xdr_decode_AFSFetchStatus(const __be32 **_bp,
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				      struct afs_file_status *status,
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				      struct afs_vnode *vnode,
				      afs_dataversion_t *store_version)
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{
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	afs_dataversion_t expected_version;
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	const __be32 *bp = *_bp;
	umode_t mode;
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	u64 data_version, size;
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	u32 changed = 0; /* becomes non-zero if ctime-type changes seen */
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	kuid_t owner;
	kgid_t group;
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#define EXTRACT(DST)				\
	do {					\
		u32 x = ntohl(*bp++);		\
		changed |= DST - x;		\
		DST = x;			\
	} while (0)

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	status->if_version = ntohl(*bp++);
	EXTRACT(status->type);
	EXTRACT(status->nlink);
	size = ntohl(*bp++);
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	data_version = ntohl(*bp++);
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	EXTRACT(status->author);
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	owner = make_kuid(&init_user_ns, ntohl(*bp++));
	changed |= !uid_eq(owner, status->owner);
	status->owner = owner;
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	EXTRACT(status->caller_access); /* call ticket dependent */
	EXTRACT(status->anon_access);
	EXTRACT(status->mode);
	EXTRACT(status->parent.vnode);
	EXTRACT(status->parent.unique);
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	bp++; /* seg size */
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	status->mtime_client = ntohl(*bp++);
	status->mtime_server = ntohl(*bp++);
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	group = make_kgid(&init_user_ns, ntohl(*bp++));
	changed |= !gid_eq(group, status->group);
	status->group = group;
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	bp++; /* sync counter */
	data_version |= (u64) ntohl(*bp++) << 32;
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	EXTRACT(status->lock_count);
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	size |= (u64) ntohl(*bp++) << 32;
	bp++; /* spare 4 */
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	*_bp = bp;

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	if (size != status->size) {
		status->size = size;
		changed |= true;
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	}
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	status->mode &= S_IALLUGO;
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	_debug("vnode time %lx, %lx",
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	       status->mtime_client, status->mtime_server);

	if (vnode) {
		status->parent.vid = vnode->fid.vid;
		if (changed && !test_bit(AFS_VNODE_UNSET, &vnode->flags)) {
			_debug("vnode changed");
			i_size_write(&vnode->vfs_inode, size);
			vnode->vfs_inode.i_uid = status->owner;
			vnode->vfs_inode.i_gid = status->group;
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			vnode->vfs_inode.i_generation = vnode->fid.unique;
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			set_nlink(&vnode->vfs_inode, status->nlink);
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			mode = vnode->vfs_inode.i_mode;
			mode &= ~S_IALLUGO;
			mode |= status->mode;
			barrier();
			vnode->vfs_inode.i_mode = mode;
		}

		vnode->vfs_inode.i_ctime.tv_sec	= status->mtime_server;
		vnode->vfs_inode.i_mtime	= vnode->vfs_inode.i_ctime;
		vnode->vfs_inode.i_atime	= vnode->vfs_inode.i_ctime;
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		vnode->vfs_inode.i_version	= data_version;
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	}

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	expected_version = status->data_version;
	if (store_version)
		expected_version = *store_version;

	if (expected_version != data_version) {
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		status->data_version = data_version;
		if (vnode && !test_bit(AFS_VNODE_UNSET, &vnode->flags)) {
			_debug("vnode modified %llx on {%x:%u}",
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			       (unsigned long long) data_version,
			       vnode->fid.vid, vnode->fid.vnode);
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			set_bit(AFS_VNODE_MODIFIED, &vnode->flags);
			set_bit(AFS_VNODE_ZAP_DATA, &vnode->flags);
		}
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	} else if (store_version) {
		status->data_version = data_version;
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	}
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}
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/*
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 * decode an AFSCallBack block
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 */
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static void xdr_decode_AFSCallBack(const __be32 **_bp, struct afs_vnode *vnode)
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{
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	const __be32 *bp = *_bp;
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	vnode->cb_version	= ntohl(*bp++);
	vnode->cb_expiry	= ntohl(*bp++);
	vnode->cb_type		= ntohl(*bp++);
	vnode->cb_expires	= vnode->cb_expiry + get_seconds();
	*_bp = bp;
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}
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static void xdr_decode_AFSCallBack_raw(const __be32 **_bp,
				       struct afs_callback *cb)
{
	const __be32 *bp = *_bp;

	cb->version	= ntohl(*bp++);
	cb->expiry	= ntohl(*bp++);
	cb->type	= ntohl(*bp++);
	*_bp = bp;
}

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/*
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 * decode an AFSVolSync block
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 */
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static void xdr_decode_AFSVolSync(const __be32 **_bp,
				  struct afs_volsync *volsync)
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{
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	const __be32 *bp = *_bp;
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	volsync->creation = ntohl(*bp++);
	bp++; /* spare2 */
	bp++; /* spare3 */
	bp++; /* spare4 */
	bp++; /* spare5 */
	bp++; /* spare6 */
	*_bp = bp;
}
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/*
 * encode the requested attributes into an AFSStoreStatus block
 */
static void xdr_encode_AFS_StoreStatus(__be32 **_bp, struct iattr *attr)
{
	__be32 *bp = *_bp;
	u32 mask = 0, mtime = 0, owner = 0, group = 0, mode = 0;

	mask = 0;
	if (attr->ia_valid & ATTR_MTIME) {
		mask |= AFS_SET_MTIME;
		mtime = attr->ia_mtime.tv_sec;
	}

	if (attr->ia_valid & ATTR_UID) {
		mask |= AFS_SET_OWNER;
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		owner = from_kuid(&init_user_ns, attr->ia_uid);
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	}

	if (attr->ia_valid & ATTR_GID) {
		mask |= AFS_SET_GROUP;
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		group = from_kgid(&init_user_ns, attr->ia_gid);
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	}

	if (attr->ia_valid & ATTR_MODE) {
		mask |= AFS_SET_MODE;
		mode = attr->ia_mode & S_IALLUGO;
	}

	*bp++ = htonl(mask);
	*bp++ = htonl(mtime);
	*bp++ = htonl(owner);
	*bp++ = htonl(group);
	*bp++ = htonl(mode);
	*bp++ = 0;		/* segment size */
	*_bp = bp;
}

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/*
 * decode an AFSFetchVolumeStatus block
 */
static void xdr_decode_AFSFetchVolumeStatus(const __be32 **_bp,
					    struct afs_volume_status *vs)
{
	const __be32 *bp = *_bp;

	vs->vid			= ntohl(*bp++);
	vs->parent_id		= ntohl(*bp++);
	vs->online		= ntohl(*bp++);
	vs->in_service		= ntohl(*bp++);
	vs->blessed		= ntohl(*bp++);
	vs->needs_salvage	= ntohl(*bp++);
	vs->type		= ntohl(*bp++);
	vs->min_quota		= ntohl(*bp++);
	vs->max_quota		= ntohl(*bp++);
	vs->blocks_in_use	= ntohl(*bp++);
	vs->part_blocks_avail	= ntohl(*bp++);
	vs->part_max_blocks	= ntohl(*bp++);
	*_bp = bp;
}

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/*
 * deliver reply data to an FS.FetchStatus
 */
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static int afs_deliver_fs_fetch_status(struct afs_call *call)
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{
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	struct afs_vnode *vnode = call->reply;
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	const __be32 *bp;
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	int ret;
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	_enter("");
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	ret = afs_transfer_reply(call);
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	if (ret < 0)
		return ret;
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	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
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	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, NULL);
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	xdr_decode_AFSCallBack(&bp, vnode);
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	if (call->reply2)
		xdr_decode_AFSVolSync(&bp, call->reply2);
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	_leave(" = 0 [done]");
	return 0;
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}
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/*
 * FS.FetchStatus operation type
 */
static const struct afs_call_type afs_RXFSFetchStatus = {
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	.name		= "FS.FetchStatus",
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	.deliver	= afs_deliver_fs_fetch_status,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};
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/*
 * fetch the status information for a file
 */
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int afs_fs_fetch_file_status(struct afs_server *server,
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			     struct key *key,
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			     struct afs_vnode *vnode,
			     struct afs_volsync *volsync,
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			     bool async)
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{
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	struct afs_call *call;
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	__be32 *bp;

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	_enter(",%x,{%x:%u},,",
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	       key_serial(key), vnode->fid.vid, vnode->fid.vnode);
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	call = afs_alloc_flat_call(&afs_RXFSFetchStatus, 16, (21 + 3 + 6) * 4);
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	if (!call)
		return -ENOMEM;
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	call->key = key;
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	call->reply = vnode;
	call->reply2 = volsync;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
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	/* marshall the parameters */
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	bp = call->request;
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	bp[0] = htonl(FSFETCHSTATUS);
	bp[1] = htonl(vnode->fid.vid);
	bp[2] = htonl(vnode->fid.vnode);
	bp[3] = htonl(vnode->fid.unique);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}
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/*
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 * deliver reply data to an FS.FetchData
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 */
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static int afs_deliver_fs_fetch_data(struct afs_call *call)
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{
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	struct afs_vnode *vnode = call->reply;
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	struct afs_read *req = call->reply3;
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	const __be32 *bp;
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	unsigned int size;
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	void *buffer;
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	int ret;

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	_enter("{%u,%zu/%u;%u/%llu}",
	       call->unmarshall, call->offset, call->count,
	       req->remain, req->actual_len);
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	switch (call->unmarshall) {
	case 0:
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		req->actual_len = 0;
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		call->offset = 0;
		call->unmarshall++;
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		if (call->operation_ID != FSFETCHDATA64) {
			call->unmarshall++;
			goto no_msw;
		}
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		/* extract the upper part of the returned data length of an
		 * FSFETCHDATA64 op (which should always be 0 using this
		 * client) */
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	case 1:
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		_debug("extract data length (MSW)");
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		ret = afs_extract_data(call, &call->tmp, 4, true);
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		if (ret < 0)
			return ret;
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		req->actual_len = ntohl(call->tmp);
		req->actual_len <<= 32;
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		call->offset = 0;
		call->unmarshall++;

	no_msw:
		/* extract the returned data length */
	case 2:
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		_debug("extract data length");
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		ret = afs_extract_data(call, &call->tmp, 4, true);
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		if (ret < 0)
			return ret;
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		req->actual_len |= ntohl(call->tmp);
		_debug("DATA length: %llu", req->actual_len);

		req->remain = req->actual_len;
		call->offset = req->pos & (PAGE_SIZE - 1);
		req->index = 0;
		if (req->actual_len == 0)
			goto no_more_data;
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		call->unmarshall++;

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	begin_page:
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		ASSERTCMP(req->index, <, req->nr_pages);
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		if (req->remain > PAGE_SIZE - call->offset)
			size = PAGE_SIZE - call->offset;
		else
			size = req->remain;
		call->count = call->offset + size;
		ASSERTCMP(call->count, <=, PAGE_SIZE);
		req->remain -= size;

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		/* extract the returned data */
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	case 3:
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		_debug("extract data %u/%llu %zu/%u",
		       req->remain, req->actual_len, call->offset, call->count);

		buffer = kmap(req->pages[req->index]);
		ret = afs_extract_data(call, buffer, call->count, true);
		kunmap(req->pages[req->index]);
		if (ret < 0)
			return ret;
		if (call->offset == PAGE_SIZE) {
			if (req->page_done)
				req->page_done(call, req);
			if (req->remain > 0) {
				call->offset = 0;
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				req->index++;
				if (req->index >= req->nr_pages)
					goto begin_discard;
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				goto begin_page;
			}
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		}
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		goto no_more_data;

		/* Discard any excess data the server gave us */
	begin_discard:
	case 4:
		size = min_t(size_t, sizeof(afs_discard_buffer), req->remain);
		call->count = size;
		_debug("extract discard %u/%llu %zu/%u",
		       req->remain, req->actual_len, call->offset, call->count);

		call->offset = 0;
		ret = afs_extract_data(call, afs_discard_buffer, call->count, true);
		req->remain -= call->offset;
		if (ret < 0)
			return ret;
		if (req->remain > 0)
			goto begin_discard;
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	no_more_data:
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		call->offset = 0;
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		call->unmarshall = 5;
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		/* extract the metadata */
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	case 5:
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		ret = afs_extract_data(call, call->buffer,
				       (21 + 3 + 6) * 4, false);
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		if (ret < 0)
			return ret;
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		bp = call->buffer;
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		xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, NULL);
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		xdr_decode_AFSCallBack(&bp, vnode);
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		if (call->reply2)
			xdr_decode_AFSVolSync(&bp, call->reply2);

		call->offset = 0;
		call->unmarshall++;
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	case 6:
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		break;
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	}

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	for (; req->index < req->nr_pages; req->index++) {
		if (call->count < PAGE_SIZE)
			zero_user_segment(req->pages[req->index],
					  call->count, PAGE_SIZE);
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		if (req->page_done)
			req->page_done(call, req);
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		call->count = 0;
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	}

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	_leave(" = 0 [done]");
	return 0;
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}
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static void afs_fetch_data_destructor(struct afs_call *call)
{
	struct afs_read *req = call->reply3;

	afs_put_read(req);
	afs_flat_call_destructor(call);
}

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/*
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 * FS.FetchData operation type
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 */
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static const struct afs_call_type afs_RXFSFetchData = {
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	.name		= "FS.FetchData",
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	.deliver	= afs_deliver_fs_fetch_data,
	.abort_to_error	= afs_abort_to_error,
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	.destructor	= afs_fetch_data_destructor,
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};

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static const struct afs_call_type afs_RXFSFetchData64 = {
	.name		= "FS.FetchData64",
	.deliver	= afs_deliver_fs_fetch_data,
	.abort_to_error	= afs_abort_to_error,
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	.destructor	= afs_fetch_data_destructor,
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};

/*
 * fetch data from a very large file
 */
static int afs_fs_fetch_data64(struct afs_server *server,
			       struct key *key,
			       struct afs_vnode *vnode,
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			       struct afs_read *req,
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			       bool async)
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{
	struct afs_call *call;
	__be32 *bp;

	_enter("");

	call = afs_alloc_flat_call(&afs_RXFSFetchData64, 32, (21 + 3 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->reply2 = NULL; /* volsync */
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	call->reply3 = req;
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	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
	call->operation_ID = FSFETCHDATA64;

	/* marshall the parameters */
	bp = call->request;
	bp[0] = htonl(FSFETCHDATA64);
	bp[1] = htonl(vnode->fid.vid);
	bp[2] = htonl(vnode->fid.vnode);
	bp[3] = htonl(vnode->fid.unique);
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	bp[4] = htonl(upper_32_bits(req->pos));
	bp[5] = htonl(lower_32_bits(req->pos));
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	bp[6] = 0;
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	bp[7] = htonl(lower_32_bits(req->len));
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	atomic_inc(&req->usage);
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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}

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/*
 * fetch data from a file
 */
int afs_fs_fetch_data(struct afs_server *server,
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		      struct key *key,
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		      struct afs_vnode *vnode,
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		      struct afs_read *req,
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		      bool async)
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{
531
	struct afs_call *call;
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	__be32 *bp;

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	if (upper_32_bits(req->pos) ||
	    upper_32_bits(req->len) ||
	    upper_32_bits(req->pos + req->len))
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		return afs_fs_fetch_data64(server, key, vnode, req, async);
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	_enter("");
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	call = afs_alloc_flat_call(&afs_RXFSFetchData, 24, (21 + 3 + 6) * 4);
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	if (!call)
		return -ENOMEM;
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	call->key = key;
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	call->reply = vnode;
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	call->reply2 = NULL; /* volsync */
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	call->reply3 = req;
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	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
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	call->operation_ID = FSFETCHDATA;
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	/* marshall the parameters */
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	bp = call->request;
	bp[0] = htonl(FSFETCHDATA);
	bp[1] = htonl(vnode->fid.vid);
	bp[2] = htonl(vnode->fid.vnode);
	bp[3] = htonl(vnode->fid.unique);
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	bp[4] = htonl(lower_32_bits(req->pos));
	bp[5] = htonl(lower_32_bits(req->len));
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	atomic_inc(&req->usage);
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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
564
}
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/*
 * deliver reply data to an FS.GiveUpCallBacks
 */
569
static int afs_deliver_fs_give_up_callbacks(struct afs_call *call)
570
{
571
	_enter("");
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573
	/* shouldn't be any reply data */
574
	return afs_extract_data(call, NULL, 0, false);
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}
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/*
578 579 580
 * FS.GiveUpCallBacks operation type
 */
static const struct afs_call_type afs_RXFSGiveUpCallBacks = {
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	.name		= "FS.GiveUpCallBacks",
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	.deliver	= afs_deliver_fs_give_up_callbacks,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * give up a set of callbacks
 * - the callbacks are held in the server->cb_break ring
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 */
591
int afs_fs_give_up_callbacks(struct afs_server *server,
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			     bool async)
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{
594 595 596 597
	struct afs_call *call;
	size_t ncallbacks;
	__be32 *bp, *tp;
	int loop;
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	ncallbacks = CIRC_CNT(server->cb_break_head, server->cb_break_tail,
			      ARRAY_SIZE(server->cb_break));
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602
	_enter("{%zu},", ncallbacks);
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604 605 606 607
	if (ncallbacks == 0)
		return 0;
	if (ncallbacks > AFSCBMAX)
		ncallbacks = AFSCBMAX;
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609
	_debug("break %zu callbacks", ncallbacks);
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	call = afs_alloc_flat_call(&afs_RXFSGiveUpCallBacks,
				   12 + ncallbacks * 6 * 4, 0);
	if (!call)
		return -ENOMEM;

	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
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	/* marshall the parameters */
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	bp = call->request;
	tp = bp + 2 + ncallbacks * 3;
	*bp++ = htonl(FSGIVEUPCALLBACKS);
	*bp++ = htonl(ncallbacks);
	*tp++ = htonl(ncallbacks);

	atomic_sub(ncallbacks, &server->cb_break_n);
	for (loop = ncallbacks; loop > 0; loop--) {
		struct afs_callback *cb =
			&server->cb_break[server->cb_break_tail];

		*bp++ = htonl(cb->fid.vid);
		*bp++ = htonl(cb->fid.vnode);
		*bp++ = htonl(cb->fid.unique);
		*tp++ = htonl(cb->version);
		*tp++ = htonl(cb->expiry);
		*tp++ = htonl(cb->type);
		smp_mb();
		server->cb_break_tail =
			(server->cb_break_tail + 1) &
			(ARRAY_SIZE(server->cb_break) - 1);
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	}

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	ASSERT(ncallbacks > 0);
	wake_up_nr(&server->cb_break_waitq, ncallbacks);
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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}
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/*
 * deliver reply data to an FS.CreateFile or an FS.MakeDir
 */
652
static int afs_deliver_fs_create_vnode(struct afs_call *call)
653 654 655
{
	struct afs_vnode *vnode = call->reply;
	const __be32 *bp;
656
	int ret;
657

658
	_enter("{%u}", call->unmarshall);
659

660
	ret = afs_transfer_reply(call);
661 662
	if (ret < 0)
		return ret;
663 664 665 666

	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
	xdr_decode_AFSFid(&bp, call->reply2);
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	xdr_decode_AFSFetchStatus(&bp, call->reply3, NULL, NULL);
	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, NULL);
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	xdr_decode_AFSCallBack_raw(&bp, call->reply4);
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.CreateFile and FS.MakeDir operation type
 */
static const struct afs_call_type afs_RXFSCreateXXXX = {
	.name		= "FS.CreateXXXX",
	.deliver	= afs_deliver_fs_create_vnode,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * create a file or make a directory
 */
int afs_fs_create(struct afs_server *server,
		  struct key *key,
		  struct afs_vnode *vnode,
		  const char *name,
		  umode_t mode,
		  struct afs_fid *newfid,
		  struct afs_file_status *newstatus,
		  struct afs_callback *newcb,
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		  bool async)
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{
	struct afs_call *call;
	size_t namesz, reqsz, padsz;
	__be32 *bp;

	_enter("");

	namesz = strlen(name);
	padsz = (4 - (namesz & 3)) & 3;
	reqsz = (5 * 4) + namesz + padsz + (6 * 4);

	call = afs_alloc_flat_call(&afs_RXFSCreateXXXX, reqsz,
				   (3 + 21 + 21 + 3 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->reply2 = newfid;
	call->reply3 = newstatus;
	call->reply4 = newcb;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(S_ISDIR(mode) ? FSMAKEDIR : FSCREATEFILE);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);
	*bp++ = htonl(namesz);
	memcpy(bp, name, namesz);
	bp = (void *) bp + namesz;
	if (padsz > 0) {
		memset(bp, 0, padsz);
		bp = (void *) bp + padsz;
	}
	*bp++ = htonl(AFS_SET_MODE);
	*bp++ = 0; /* mtime */
	*bp++ = 0; /* owner */
	*bp++ = 0; /* group */
	*bp++ = htonl(mode & S_IALLUGO); /* unix mode */
	*bp++ = 0; /* segment size */

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
743 744 745 746 747
}

/*
 * deliver reply data to an FS.RemoveFile or FS.RemoveDir
 */
748
static int afs_deliver_fs_remove(struct afs_call *call)
749 750 751
{
	struct afs_vnode *vnode = call->reply;
	const __be32 *bp;
752
	int ret;
753

754
	_enter("{%u}", call->unmarshall);
755

756
	ret = afs_transfer_reply(call);
757 758
	if (ret < 0)
		return ret;
759 760 761

	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
762
	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, NULL);
763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.RemoveDir/FS.RemoveFile operation type
 */
static const struct afs_call_type afs_RXFSRemoveXXXX = {
	.name		= "FS.RemoveXXXX",
	.deliver	= afs_deliver_fs_remove,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * remove a file or directory
 */
int afs_fs_remove(struct afs_server *server,
		  struct key *key,
		  struct afs_vnode *vnode,
		  const char *name,
		  bool isdir,
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		  bool async)
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{
	struct afs_call *call;
	size_t namesz, reqsz, padsz;
	__be32 *bp;

	_enter("");

	namesz = strlen(name);
	padsz = (4 - (namesz & 3)) & 3;
	reqsz = (5 * 4) + namesz + padsz;

	call = afs_alloc_flat_call(&afs_RXFSRemoveXXXX, reqsz, (21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(isdir ? FSREMOVEDIR : FSREMOVEFILE);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);
	*bp++ = htonl(namesz);
	memcpy(bp, name, namesz);
	bp = (void *) bp + namesz;
	if (padsz > 0) {
		memset(bp, 0, padsz);
		bp = (void *) bp + padsz;
	}

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
823 824 825 826 827
}

/*
 * deliver reply data to an FS.Link
 */
828
static int afs_deliver_fs_link(struct afs_call *call)
829 830 831
{
	struct afs_vnode *dvnode = call->reply, *vnode = call->reply2;
	const __be32 *bp;
832
	int ret;
833

834
	_enter("{%u}", call->unmarshall);
835

836
	ret = afs_transfer_reply(call);
837 838
	if (ret < 0)
		return ret;
839 840 841

	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
842 843
	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, NULL);
	xdr_decode_AFSFetchStatus(&bp, &dvnode->status, dvnode, NULL);
844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.Link operation type
 */
static const struct afs_call_type afs_RXFSLink = {
	.name		= "FS.Link",
	.deliver	= afs_deliver_fs_link,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * make a hard link
 */
int afs_fs_link(struct afs_server *server,
		struct key *key,
		struct afs_vnode *dvnode,
		struct afs_vnode *vnode,
		const char *name,
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		bool async)
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{
	struct afs_call *call;
	size_t namesz, reqsz, padsz;
	__be32 *bp;

	_enter("");

	namesz = strlen(name);
	padsz = (4 - (namesz & 3)) & 3;
	reqsz = (5 * 4) + namesz + padsz + (3 * 4);

	call = afs_alloc_flat_call(&afs_RXFSLink, reqsz, (21 + 21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = dvnode;
	call->reply2 = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSLINK);
	*bp++ = htonl(dvnode->fid.vid);
	*bp++ = htonl(dvnode->fid.vnode);
	*bp++ = htonl(dvnode->fid.unique);
	*bp++ = htonl(namesz);
	memcpy(bp, name, namesz);
	bp = (void *) bp + namesz;
	if (padsz > 0) {
		memset(bp, 0, padsz);
		bp = (void *) bp + padsz;
	}
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
908 909 910 911 912
}

/*
 * deliver reply data to an FS.Symlink
 */
913
static int afs_deliver_fs_symlink(struct afs_call *call)
914 915 916
{
	struct afs_vnode *vnode = call->reply;
	const __be32 *bp;
917
	int ret;
918

919
	_enter("{%u}", call->unmarshall);
920

921
	ret = afs_transfer_reply(call);
922 923
	if (ret < 0)
		return ret;
924 925 926 927

	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
	xdr_decode_AFSFid(&bp, call->reply2);
928 929
	xdr_decode_AFSFetchStatus(&bp, call->reply3, NULL, NULL);
	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, NULL);
930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.Symlink operation type
 */
static const struct afs_call_type afs_RXFSSymlink = {
	.name		= "FS.Symlink",
	.deliver	= afs_deliver_fs_symlink,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * create a symbolic link
 */
int afs_fs_symlink(struct afs_server *server,
		   struct key *key,
		   struct afs_vnode *vnode,
		   const char *name,
		   const char *contents,
		   struct afs_fid *newfid,
		   struct afs_file_status *newstatus,
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		   bool async)
957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010
{
	struct afs_call *call;
	size_t namesz, reqsz, padsz, c_namesz, c_padsz;
	__be32 *bp;

	_enter("");

	namesz = strlen(name);
	padsz = (4 - (namesz & 3)) & 3;

	c_namesz = strlen(contents);
	c_padsz = (4 - (c_namesz & 3)) & 3;

	reqsz = (6 * 4) + namesz + padsz + c_namesz + c_padsz + (6 * 4);

	call = afs_alloc_flat_call(&afs_RXFSSymlink, reqsz,
				   (3 + 21 + 21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->reply2 = newfid;
	call->reply3 = newstatus;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSYMLINK);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);
	*bp++ = htonl(namesz);
	memcpy(bp, name, namesz);
	bp = (void *) bp + namesz;
	if (padsz > 0) {
		memset(bp, 0, padsz);
		bp = (void *) bp + padsz;
	}
	*bp++ = htonl(c_namesz);
	memcpy(bp, contents, c_namesz);
	bp = (void *) bp + c_namesz;
	if (c_padsz > 0) {
		memset(bp, 0, c_padsz);
		bp = (void *) bp + c_padsz;
	}
	*bp++ = htonl(AFS_SET_MODE);
	*bp++ = 0; /* mtime */
	*bp++ = 0; /* owner */
	*bp++ = 0; /* group */
	*bp++ = htonl(S_IRWXUGO); /* unix mode */
	*bp++ = 0; /* segment size */

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
1012 1013 1014 1015 1016
}

/*
 * deliver reply data to an FS.Rename
 */
1017
static int afs_deliver_fs_rename(struct afs_call *call)
1018 1019 1020
{
	struct afs_vnode *orig_dvnode = call->reply, *new_dvnode = call->reply2;
	const __be32 *bp;
1021
	int ret;
1022

1023
	_enter("{%u}", call->unmarshall);
1024

1025
	ret = afs_transfer_reply(call);
1026 1027
	if (ret < 0)
		return ret;
1028 1029 1030

	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
1031
	xdr_decode_AFSFetchStatus(&bp, &orig_dvnode->status, orig_dvnode, NULL);
1032
	if (new_dvnode != orig_dvnode)
1033 1034
		xdr_decode_AFSFetchStatus(&bp, &new_dvnode->status, new_dvnode,
					  NULL);
1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.Rename operation type
 */
static const struct afs_call_type afs_RXFSRename = {
	.name		= "FS.Rename",
	.deliver	= afs_deliver_fs_rename,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * create a symbolic link
 */
int afs_fs_rename(struct afs_server *server,
		  struct key *key,
		  struct afs_vnode *orig_dvnode,
		  const char *orig_name,
		  struct afs_vnode *new_dvnode,
		  const char *new_name,
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		  bool async)
1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113
{
	struct afs_call *call;
	size_t reqsz, o_namesz, o_padsz, n_namesz, n_padsz;
	__be32 *bp;

	_enter("");

	o_namesz = strlen(orig_name);
	o_padsz = (4 - (o_namesz & 3)) & 3;

	n_namesz = strlen(new_name);
	n_padsz = (4 - (n_namesz & 3)) & 3;

	reqsz = (4 * 4) +
		4 + o_namesz + o_padsz +
		(3 * 4) +
		4 + n_namesz + n_padsz;

	call = afs_alloc_flat_call(&afs_RXFSRename, reqsz, (21 + 21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = orig_dvnode;
	call->reply2 = new_dvnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSRENAME);
	*bp++ = htonl(orig_dvnode->fid.vid);
	*bp++ = htonl(orig_dvnode->fid.vnode);
	*bp++ = htonl(orig_dvnode->fid.unique);
	*bp++ = htonl(o_namesz);
	memcpy(bp, orig_name, o_namesz);
	bp = (void *) bp + o_namesz;
	if (o_padsz > 0) {
		memset(bp, 0, o_padsz);
		bp = (void *) bp + o_padsz;
	}

	*bp++ = htonl(new_dvnode->fid.vid);
	*bp++ = htonl(new_dvnode->fid.vnode);
	*bp++ = htonl(new_dvnode->fid.unique);
	*bp++ = htonl(n_namesz);
	memcpy(bp, new_name, n_namesz);
	bp = (void *) bp + n_namesz;
	if (n_padsz > 0) {
		memset(bp, 0, n_padsz);
		bp = (void *) bp + n_padsz;
	}

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
1115
}
1116 1117 1118 1119

/*
 * deliver reply data to an FS.StoreData
 */
1120
static int afs_deliver_fs_store_data(struct afs_call *call)
1121 1122 1123
{
	struct afs_vnode *vnode = call->reply;
	const __be32 *bp;
1124
	int ret;
1125

1126
	_enter("");
1127

1128
	ret = afs_transfer_reply(call);
1129 1130
	if (ret < 0)
		return ret;
1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153

	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode,
				  &call->store_version);
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	afs_pages_written_back(vnode, call);

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.StoreData operation type
 */
static const struct afs_call_type afs_RXFSStoreData = {
	.name		= "FS.StoreData",
	.deliver	= afs_deliver_fs_store_data,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

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static const struct afs_call_type afs_RXFSStoreData64 = {
	.name		= "FS.StoreData64",
	.deliver	= afs_deliver_fs_store_data,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * store a set of pages to a very large file
 */
static int afs_fs_store_data64(struct afs_server *server,
			       struct afs_writeback *wb,
			       pgoff_t first, pgoff_t last,
			       unsigned offset, unsigned to,
			       loff_t size, loff_t pos, loff_t i_size,
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			       bool async)
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{
	struct afs_vnode *vnode = wb->vnode;
	struct afs_call *call;
	__be32 *bp;

	_enter(",%x,{%x:%u},,",
	       key_serial(wb->key), vnode->fid.vid, vnode->fid.vnode);

	call = afs_alloc_flat_call(&afs_RXFSStoreData64,
				   (4 + 6 + 3 * 2) * 4,
				   (21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->wb = wb;
	call->key = wb->key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
	call->mapping = vnode->vfs_inode.i_mapping;
	call->first = first;
	call->last = last;
	call->first_offset = offset;
	call->last_to = to;
	call->send_pages = true;
	call->store_version = vnode->status.data_version + 1;

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSTOREDATA64);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

	*bp++ = 0; /* mask */
	*bp++ = 0; /* mtime */
	*bp++ = 0; /* owner */
	*bp++ = 0; /* group */
	*bp++ = 0; /* unix mode */
	*bp++ = 0; /* segment size */

	*bp++ = htonl(pos >> 32);
	*bp++ = htonl((u32) pos);
	*bp++ = htonl(size >> 32);
	*bp++ = htonl((u32) size);
	*bp++ = htonl(i_size >> 32);
	*bp++ = htonl((u32) i_size);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}

1221 1222 1223 1224 1225 1226
/*
 * store a set of pages
 */
int afs_fs_store_data(struct afs_server *server, struct afs_writeback *wb,
		      pgoff_t first, pgoff_t last,
		      unsigned offset, unsigned to,
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		      bool async)
1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250
{
	struct afs_vnode *vnode = wb->vnode;
	struct afs_call *call;
	loff_t size, pos, i_size;
	__be32 *bp;

	_enter(",%x,{%x:%u},,",
	       key_serial(wb->key), vnode->fid.vid, vnode->fid.vnode);

	size = to - offset;
	if (first != last)
		size += (loff_t)(last - first) << PAGE_SHIFT;
	pos = (loff_t)first << PAGE_SHIFT;
	pos += offset;

	i_size = i_size_read(&vnode->vfs_inode);
	if (pos + size > i_size)
		i_size = size + pos;

	_debug("size %llx, at %llx, i_size %llx",
	       (unsigned long long) size, (unsigned long long) pos,
	       (unsigned long long) i_size);

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	if (pos >> 32 || i_size >> 32 || size >> 32 || (pos + size) >> 32)
		return afs_fs_store_data64(server, wb, first, last, offset, to,
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					   size, pos, i_size, async);
1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291

	call = afs_alloc_flat_call(&afs_RXFSStoreData,
				   (4 + 6 + 3) * 4,
				   (21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->wb = wb;
	call->key = wb->key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
	call->mapping = vnode->vfs_inode.i_mapping;
	call->first = first;
	call->last = last;
	call->first_offset = offset;
	call->last_to = to;
	call->send_pages = true;
	call->store_version = vnode->status.data_version + 1;

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSTOREDATA);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

	*bp++ = 0; /* mask */
	*bp++ = 0; /* mtime */
	*bp++ = 0; /* owner */
	*bp++ = 0; /* group */
	*bp++ = 0; /* unix mode */
	*bp++ = 0; /* segment size */

	*bp++ = htonl(pos);
	*bp++ = htonl(size);
	*bp++ = htonl(i_size);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
1293 1294 1295 1296 1297
}

/*
 * deliver reply data to an FS.StoreStatus
 */
1298
static int afs_deliver_fs_store_status(struct afs_call *call)
1299 1300 1301 1302
{
	afs_dataversion_t *store_version;
	struct afs_vnode *vnode = call->reply;
	const __be32 *bp;
1303
	int ret;
1304

1305
	_enter("");
1306

1307
	ret = afs_transfer_reply(call);
1308 1309
	if (ret < 0)
		return ret;
1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340

	/* unmarshall the reply once we've received all of it */
	store_version = NULL;
	if (call->operation_ID == FSSTOREDATA)
		store_version = &call->store_version;

	bp = call->buffer;
	xdr_decode_AFSFetchStatus(&bp, &vnode->status, vnode, store_version);
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.StoreStatus operation type
 */
static const struct afs_call_type afs_RXFSStoreStatus = {
	.name		= "FS.StoreStatus",
	.deliver	= afs_deliver_fs_store_status,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

static const struct afs_call_type afs_RXFSStoreData_as_Status = {
	.name		= "FS.StoreData",
	.deliver	= afs_deliver_fs_store_status,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

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static const struct afs_call_type afs_RXFSStoreData64_as_Status = {
	.name		= "FS.StoreData64",
	.deliver	= afs_deliver_fs_store_status,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * set the attributes on a very large file, using FS.StoreData rather than
 * FS.StoreStatus so as to alter the file size also
 */
static int afs_fs_setattr_size64(struct afs_server *server, struct key *key,
				 struct afs_vnode *vnode, struct iattr *attr,
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				 bool async)
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{
	struct afs_call *call;
	__be32 *bp;

	_enter(",%x,{%x:%u},,",
	       key_serial(key), vnode->fid.vid, vnode->fid.vnode);

	ASSERT(attr->ia_valid & ATTR_SIZE);

	call = afs_alloc_flat_call(&afs_RXFSStoreData64_as_Status,
				   (4 + 6 + 3 * 2) * 4,
				   (21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
	call->store_version = vnode->status.data_version + 1;
	call->operation_ID = FSSTOREDATA;

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSTOREDATA64);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

	xdr_encode_AFS_StoreStatus(&bp, attr);

	*bp++ = 0;				/* position of start of write */
	*bp++ = 0;
	*bp++ = 0;				/* size of write */
	*bp++ = 0;
	*bp++ = htonl(attr->ia_size >> 32);	/* new file length */
	*bp++ = htonl((u32) attr->ia_size);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}

1396 1397 1398 1399 1400 1401
/*
 * set the attributes on a file, using FS.StoreData rather than FS.StoreStatus
 * so as to alter the file size also
 */
static int afs_fs_setattr_size(struct afs_server *server, struct key *key,
			       struct afs_vnode *vnode, struct iattr *attr,
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			       bool async)
1403 1404 1405 1406 1407 1408 1409 1410
{
	struct afs_call *call;
	__be32 *bp;

	_enter(",%x,{%x:%u},,",
	       key_serial(key), vnode->fid.vid, vnode->fid.vnode);

	ASSERT(attr->ia_valid & ATTR_SIZE);
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	if (attr->ia_size >> 32)
		return afs_fs_setattr_size64(server, key, vnode, attr,
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					     async);
1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440

	call = afs_alloc_flat_call(&afs_RXFSStoreData_as_Status,
				   (4 + 6 + 3) * 4,
				   (21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
	call->store_version = vnode->status.data_version + 1;
	call->operation_ID = FSSTOREDATA;

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSTOREDATA);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

	xdr_encode_AFS_StoreStatus(&bp, attr);

	*bp++ = 0;				/* position of start of write */
	*bp++ = 0;				/* size of write */
	*bp++ = htonl(attr->ia_size);		/* new file length */

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
1442 1443 1444 1445 1446 1447 1448 1449
}

/*
 * set the attributes on a file, using FS.StoreData if there's a change in file
 * size, and FS.StoreStatus otherwise
 */
int afs_fs_setattr(struct afs_server *server, struct key *key,
		   struct afs_vnode *vnode, struct iattr *attr,
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		   bool async)
1451 1452 1453 1454 1455 1456
{
	struct afs_call *call;
	__be32 *bp;

	if (attr->ia_valid & ATTR_SIZE)
		return afs_fs_setattr_size(server, key, vnode, attr,
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					   async);
1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482

	_enter(",%x,{%x:%u},,",
	       key_serial(key), vnode->fid.vid, vnode->fid.vnode);

	call = afs_alloc_flat_call(&afs_RXFSStoreStatus,
				   (4 + 6) * 4,
				   (21 + 6) * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);
	call->operation_ID = FSSTORESTATUS;

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSTORESTATUS);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

	xdr_encode_AFS_StoreStatus(&bp, attr);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
1484
}
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/*
 * deliver reply data to an FS.GetVolumeStatus
 */
1489
static int afs_deliver_fs_get_volume_status(struct afs_call *call)
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{
	const __be32 *bp;
	char *p;
	int ret;

1495
	_enter("{%u}", call->unmarshall);
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	switch (call->unmarshall) {
	case 0:
		call->offset = 0;
		call->unmarshall++;

		/* extract the returned status record */
	case 1:
		_debug("extract status");
1505 1506
		ret = afs_extract_data(call, call->buffer,
				       12 * 4, true);
1507 1508
		if (ret < 0)
			return ret;
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		bp = call->buffer;
		xdr_decode_AFSFetchVolumeStatus(&bp, call->reply2);
		call->offset = 0;
		call->unmarshall++;

		/* extract the volume name length */
	case 2:
1517
		ret = afs_extract_data(call, &call->tmp, 4, true);
1518 1519
		if (ret < 0)
			return ret;
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		call->count = ntohl(call->tmp);
		_debug("volname length: %u", call->count);
		if (call->count >= AFSNAMEMAX)
			return -EBADMSG;
		call->offset = 0;
		call->unmarshall++;

		/* extract the volume name */
	case 3:
		_debug("extract volname");
		if (call->count > 0) {
1532 1533
			ret = afs_extract_data(call, call->reply3,
					       call->count, true);
1534 1535
			if (ret < 0)
				return ret;
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		}

		p = call->reply3;
		p[call->count] = 0;
		_debug("volname '%s'", p);

		call->offset = 0;
		call->unmarshall++;

		/* extract the volume name padding */
		if ((call->count & 3) == 0) {
			call->unmarshall++;
			goto no_volname_padding;
		}
		call->count = 4 - (call->count & 3);

	case 4:
1553 1554
		ret = afs_extract_data(call, call->buffer,
				       call->count, true);
1555 1556
		if (ret < 0)
			return ret;
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		call->offset = 0;
		call->unmarshall++;
	no_volname_padding:

		/* extract the offline message length */
	case 5:
1564
		ret = afs_extract_data(call, &call->tmp, 4, true);
1565 1566
		if (ret < 0)
			return ret;
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		call->count = ntohl(call->tmp);
		_debug("offline msg length: %u", call->count);
		if (call->count >= AFSNAMEMAX)
			return -EBADMSG;
		call->offset = 0;
		call->unmarshall++;

		/* extract the offline message */
	case 6:
		_debug("extract offline");
		if (call->count > 0) {
1579 1580
			ret = afs_extract_data(call, call->reply3,
					       call->count, true);
1581 1582
			if (ret < 0)
				return ret;
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		}

		p = call->reply3;
		p[call->count] = 0;
		_debug("offline '%s'", p);

		call->offset = 0;
		call->unmarshall++;

		/* extract the offline message padding */
		if ((call->count & 3) == 0) {
			call->unmarshall++;
			goto no_offline_padding;
		}
		call->count = 4 - (call->count & 3);

	case 7:
1600 1601
		ret = afs_extract_data(call, call->buffer,
				       call->count, true);
1602 1603
		if (ret < 0)
			return ret;
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		call->offset = 0;
		call->unmarshall++;
	no_offline_padding:

		/* extract the message of the day length */
	case 8:
1611
		ret = afs_extract_data(call, &call->tmp, 4, true);
1612 1613
		if (ret < 0)
			return ret;
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		call->count = ntohl(call->tmp);
		_debug("motd length: %u", call->count);
		if (call->count >= AFSNAMEMAX)
			return -EBADMSG;
		call->offset = 0;
		call->unmarshall++;

		/* extract the message of the day */
	case 9:
		_debug("extract motd");
		if (call->count > 0) {
1626 1627
			ret = afs_extract_data(call, call->reply3,
					       call->count, true);
1628 1629
			if (ret < 0)
				return ret;
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		}

		p = call->reply3;
		p[call->count] = 0;
		_debug("motd '%s'", p);

		call->offset = 0;
		call->unmarshall++;

		/* extract the message of the day padding */
1640
		call->count = (4 - (call->count & 3)) & 3;
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	case 10:
1643 1644
		ret = afs_extract_data(call, call->buffer,
				       call->count, false);
1645 1646
		if (ret < 0)
			return ret;
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		call->offset = 0;
		call->unmarshall++;
	case 11:
		break;
	}

	_leave(" = 0 [done]");
	return 0;
}

/*
 * destroy an FS.GetVolumeStatus call
 */
static void afs_get_volume_status_call_destructor(struct afs_call *call)
{
	kfree(call->reply3);
	call->reply3 = NULL;
	afs_flat_call_destructor(call);
}

/*
 * FS.GetVolumeStatus operation type
 */
static const struct afs_call_type afs_RXFSGetVolumeStatus = {
	.name		= "FS.GetVolumeStatus",
	.deliver	= afs_deliver_fs_get_volume_status,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_get_volume_status_call_destructor,
};

/*
 * fetch the status of a volume
 */
int afs_fs_get_volume_status(struct afs_server *server,
			     struct key *key,
			     struct afs_vnode *vnode,
			     struct afs_volume_status *vs,
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			     bool async)
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{
	struct afs_call *call;
	__be32 *bp;
	void *tmpbuf;

	_enter("");

	tmpbuf = kmalloc(AFSOPAQUEMAX, GFP_KERNEL);
	if (!tmpbuf)
		return -ENOMEM;

	call = afs_alloc_flat_call(&afs_RXFSGetVolumeStatus, 2 * 4, 12 * 4);
	if (!call) {
		kfree(tmpbuf);
		return -ENOMEM;
	}

	call->key = key;
	call->reply = vnode;
	call->reply2 = vs;
	call->reply3 = tmpbuf;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	bp[0] = htonl(FSGETVOLUMESTATUS);
	bp[1] = htonl(vnode->fid.vid);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}
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/*
 * deliver reply data to an FS.SetLock, FS.ExtendLock or FS.ReleaseLock
 */
1721
static int afs_deliver_fs_xxxx_lock(struct afs_call *call)
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{
	const __be32 *bp;
1724
	int ret;
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1726
	_enter("{%u}", call->unmarshall);
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1727

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	ret = afs_transfer_reply(call);
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	if (ret < 0)
		return ret;
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	/* unmarshall the reply once we've received all of it */
	bp = call->buffer;
	/* xdr_decode_AFSVolSync(&bp, call->replyX); */

	_leave(" = 0 [done]");
	return 0;
}

/*
 * FS.SetLock operation type
 */
static const struct afs_call_type afs_RXFSSetLock = {
	.name		= "FS.SetLock",
	.deliver	= afs_deliver_fs_xxxx_lock,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * FS.ExtendLock operation type
 */
static const struct afs_call_type afs_RXFSExtendLock = {
	.name		= "FS.ExtendLock",
	.deliver	= afs_deliver_fs_xxxx_lock,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * FS.ReleaseLock operation type
 */
static const struct afs_call_type afs_RXFSReleaseLock = {
	.name		= "FS.ReleaseLock",
	.deliver	= afs_deliver_fs_xxxx_lock,
	.abort_to_error	= afs_abort_to_error,
	.destructor	= afs_flat_call_destructor,
};

/*
 * get a lock on a file
 */
int afs_fs_set_lock(struct afs_server *server,
		    struct key *key,
		    struct afs_vnode *vnode,
		    afs_lock_type_t type,
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		    bool async)
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{
	struct afs_call *call;
	__be32 *bp;

	_enter("");

	call = afs_alloc_flat_call(&afs_RXFSSetLock, 5 * 4, 6 * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSSETLOCK);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);
	*bp++ = htonl(type);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}

/*
 * extend a lock on a file
 */
int afs_fs_extend_lock(struct afs_server *server,
		       struct key *key,
		       struct afs_vnode *vnode,
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		       bool async)
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{
	struct afs_call *call;
	__be32 *bp;

	_enter("");

	call = afs_alloc_flat_call(&afs_RXFSExtendLock, 4 * 4, 6 * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSEXTENDLOCK);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}

/*
 * release a lock on a file
 */
int afs_fs_release_lock(struct afs_server *server,
			struct key *key,
			struct afs_vnode *vnode,
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			bool async)
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{
	struct afs_call *call;
	__be32 *bp;

	_enter("");

	call = afs_alloc_flat_call(&afs_RXFSReleaseLock, 4 * 4, 6 * 4);
	if (!call)
		return -ENOMEM;

	call->key = key;
	call->reply = vnode;
	call->service_id = FS_SERVICE;
	call->port = htons(AFS_FS_PORT);

	/* marshall the parameters */
	bp = call->request;
	*bp++ = htonl(FSRELEASELOCK);
	*bp++ = htonl(vnode->fid.vid);
	*bp++ = htonl(vnode->fid.vnode);
	*bp++ = htonl(vnode->fid.unique);

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	return afs_make_call(&server->addr, call, GFP_NOFS, async);
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}