struct afs_addr_cursor ac = {
.index = 0,
};
+ struct afs_call *call;
bool in_progress = false;
- int err;
_enter("%pU", &server->uuid);
server->probe.rtt = UINT_MAX;
for (ac.index = 0; ac.index < ac.alist->nr_addrs; ac.index++) {
- err = afs_fs_get_capabilities(net, server, &ac, key, server_index,
- true);
- if (err == -EINPROGRESS)
+ call = afs_fs_get_capabilities(net, server, &ac, key, server_index);
+ if (!IS_ERR(call)) {
+ afs_put_call(call);
in_progress = true;
- else
- afs_prioritise_error(_e, err, ac.abort_code);
+ } else {
+ afs_prioritise_error(_e, PTR_ERR(call), ac.abort_code);
+ }
}
if (!in_progress)
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &dvnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &orig_dvnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
*bp++ = htonl((u32) i_size);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
*bp++ = htonl(FSGIVEUPALLCALLBACKS);
/* Can't take a ref on server */
- return afs_make_call(ac, call, GFP_NOFS, false);
+ afs_make_call(ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, ac);
}
/*
* Probe a fileserver for the capabilities that it supports. This can
* return up to 196 words.
*/
-int afs_fs_get_capabilities(struct afs_net *net,
- struct afs_server *server,
- struct afs_addr_cursor *ac,
- struct key *key,
- unsigned int server_index,
- bool async)
+struct afs_call *afs_fs_get_capabilities(struct afs_net *net,
+ struct afs_server *server,
+ struct afs_addr_cursor *ac,
+ struct key *key,
+ unsigned int server_index)
{
struct afs_call *call;
__be32 *bp;
call = afs_alloc_flat_call(net, &afs_RXFSGetCapabilities, 1 * 4, 16 * 4);
if (!call)
- return -ENOMEM;
+ return ERR_PTR(-ENOMEM);
call->key = key;
call->reply[0] = afs_get_server(server);
call->reply[1] = (void *)(long)server_index;
call->upgrade = true;
call->want_reply_time = true;
+ call->async = true;
/* marshall the parameters */
bp = call->request;
/* Can't take a ref on server */
trace_afs_make_fs_call(call, NULL);
- return afs_make_call(ac, call, GFP_NOFS, async);
+ afs_make_call(ac, call, GFP_NOFS);
+ return call;
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &fids[0]);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
extern int afs_fs_release_lock(struct afs_fs_cursor *);
extern int afs_fs_give_up_all_callbacks(struct afs_net *, struct afs_server *,
struct afs_addr_cursor *, struct key *);
-extern int afs_fs_get_capabilities(struct afs_net *, struct afs_server *,
- struct afs_addr_cursor *, struct key *, unsigned int, bool);
+extern struct afs_call *afs_fs_get_capabilities(struct afs_net *, struct afs_server *,
+ struct afs_addr_cursor *, struct key *,
+ unsigned int);
extern int afs_fs_inline_bulk_status(struct afs_fs_cursor *, struct afs_net *,
struct afs_fid *, struct afs_file_status *,
struct afs_callback *, unsigned int,
extern void __net_exit afs_close_socket(struct afs_net *);
extern void afs_charge_preallocation(struct work_struct *);
extern void afs_put_call(struct afs_call *);
-extern long afs_make_call(struct afs_addr_cursor *, struct afs_call *, gfp_t, bool);
+extern void afs_make_call(struct afs_addr_cursor *, struct afs_call *, gfp_t);
+extern long afs_wait_for_call_to_complete(struct afs_call *, struct afs_addr_cursor *);
extern struct afs_call *afs_alloc_flat_call(struct afs_net *,
const struct afs_call_type *,
size_t, size_t);
extern struct afs_vldb_entry *afs_vl_get_entry_by_name_u(struct afs_vl_cursor *,
const char *, int);
extern struct afs_addr_list *afs_vl_get_addrs_u(struct afs_vl_cursor *, const uuid_t *);
-extern int afs_vl_get_capabilities(struct afs_net *, struct afs_addr_cursor *, struct key *,
- struct afs_vlserver *, unsigned int, bool);
+extern struct afs_call *afs_vl_get_capabilities(struct afs_net *, struct afs_addr_cursor *,
+ struct key *, struct afs_vlserver *, unsigned int);
extern struct afs_addr_list *afs_yfsvl_get_endpoints(struct afs_vl_cursor *, const uuid_t *);
/*
struct workqueue_struct *afs_async_calls;
static void afs_wake_up_call_waiter(struct sock *, struct rxrpc_call *, unsigned long);
-static long afs_wait_for_call_to_complete(struct afs_call *, struct afs_addr_cursor *);
static void afs_wake_up_async_call(struct sock *, struct rxrpc_call *, unsigned long);
static void afs_delete_async_call(struct work_struct *);
static void afs_process_async_call(struct work_struct *);
}
/*
- * initiate a call
+ * Initiate a call and synchronously queue up the parameters for dispatch. Any
+ * error is stored into the call struct, which the caller must check for.
*/
-long afs_make_call(struct afs_addr_cursor *ac, struct afs_call *call,
- gfp_t gfp, bool async)
+void afs_make_call(struct afs_addr_cursor *ac, struct afs_call *call, gfp_t gfp)
{
struct sockaddr_rxrpc *srx = &ac->alist->addrs[ac->index];
struct rxrpc_call *rxcall;
call, call->type->name, key_serial(call->key),
atomic_read(&call->net->nr_outstanding_calls));
- call->async = async;
call->addr_ix = ac->index;
call->alist = afs_get_addrlist(ac->alist);
rxcall = rxrpc_kernel_begin_call(call->net->socket, srx, call->key,
(unsigned long)call,
tx_total_len, gfp,
- (async ?
+ (call->async ?
afs_wake_up_async_call :
afs_wake_up_call_waiter),
call->upgrade,
/* Note that at this point, we may have received the reply or an abort
* - and an asynchronous call may already have completed.
+ *
+ * afs_wait_for_call_to_complete(call, ac)
+ * must be called to synchronously clean up.
*/
- if (call->async) {
- afs_put_call(call);
- return -EINPROGRESS;
- }
-
- return afs_wait_for_call_to_complete(call, ac);
+ return;
error_do_abort:
if (ret != -ECONNABORTED) {
ac->error = ret;
call->state = AFS_CALL_COMPLETE;
- afs_put_call(call);
_leave(" = %d", ret);
- return ret;
}
/*
}
/*
- * wait synchronously for a call to complete
+ * Wait synchronously for a call to complete and clean up the call struct.
*/
-static long afs_wait_for_call_to_complete(struct afs_call *call,
- struct afs_addr_cursor *ac)
+long afs_wait_for_call_to_complete(struct afs_call *call,
+ struct afs_addr_cursor *ac)
{
signed long rtt2, timeout;
long ret;
_enter("");
+ ret = call->error;
+ if (ret < 0)
+ goto out;
+
rtt = rxrpc_kernel_get_rtt(call->net->socket, call->rxcall);
rtt2 = nsecs_to_jiffies64(rtt) * 2;
if (rtt2 < 2)
break;
}
+out:
_debug("call complete");
afs_put_call(call);
_leave(" = %p", (void *)ret);
struct afs_addr_cursor ac = {
.index = 0,
};
+ struct afs_call *call;
bool in_progress = false;
- int err;
_enter("%s", server->name);
server->probe.rtt = UINT_MAX;
for (ac.index = 0; ac.index < ac.alist->nr_addrs; ac.index++) {
- err = afs_vl_get_capabilities(net, &ac, key, server,
- server_index, true);
- if (err == -EINPROGRESS)
+ call = afs_vl_get_capabilities(net, &ac, key, server,
+ server_index);
+ if (!IS_ERR(call)) {
+ afs_put_call(call);
in_progress = true;
- else
- afs_prioritise_error(_e, err, ac.abort_code);
+ } else {
+ afs_prioritise_error(_e, PTR_ERR(call), ac.abort_code);
+ }
}
if (!in_progress)
memset((void *)bp + volnamesz, 0, padsz);
trace_afs_make_vl_call(call);
- return (struct afs_vldb_entry *)afs_make_call(&vc->ac, call, GFP_KERNEL, false);
+ afs_make_call(&vc->ac, call, GFP_KERNEL);
+ return (struct afs_vldb_entry *)afs_wait_for_call_to_complete(call, &vc->ac);
}
/*
r->uuid.node[i] = htonl(u->node[i]);
trace_afs_make_vl_call(call);
- return (struct afs_addr_list *)afs_make_call(&vc->ac, call, GFP_KERNEL, false);
+ afs_make_call(&vc->ac, call, GFP_KERNEL);
+ return (struct afs_addr_list *)afs_wait_for_call_to_complete(call, &vc->ac);
}
/*
* We use this to probe for service upgrade to determine what the server at the
* other end supports.
*/
-int afs_vl_get_capabilities(struct afs_net *net,
- struct afs_addr_cursor *ac,
- struct key *key,
- struct afs_vlserver *server,
- unsigned int server_index,
- bool async)
+struct afs_call *afs_vl_get_capabilities(struct afs_net *net,
+ struct afs_addr_cursor *ac,
+ struct key *key,
+ struct afs_vlserver *server,
+ unsigned int server_index)
{
struct afs_call *call;
__be32 *bp;
call = afs_alloc_flat_call(net, &afs_RXVLGetCapabilities, 1 * 4, 16 * 4);
if (!call)
- return -ENOMEM;
+ return ERR_PTR(-ENOMEM);
call->key = key;
call->reply[0] = afs_get_vlserver(server);
call->reply[1] = (void *)(long)server_index;
call->upgrade = true;
call->want_reply_time = true;
+ call->async = true;
/* marshall the parameters */
bp = call->request;
/* Can't take a ref on server */
trace_afs_make_vl_call(call);
- return afs_make_call(ac, call, GFP_KERNEL, async);
+ afs_make_call(ac, call, GFP_KERNEL);
+ return call;
}
/*
memcpy(bp, uuid, sizeof(*uuid)); /* Type opr_uuid */
trace_afs_make_vl_call(call);
- return (struct afs_addr_list *)afs_make_call(&vc->ac, call, GFP_KERNEL, false);
+ afs_make_call(&vc->ac, call, GFP_KERNEL);
+ return (struct afs_addr_list *)afs_wait_for_call_to_complete(call, &vc->ac);
}
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
static const struct afs_call_type yfs_RXFSMakeDir = {
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &dvnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &dvnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &dvnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &orig_dvnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &vnode->fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, fid);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}
/*
call->cb_break = fc->cb_break;
afs_use_fs_server(call, fc->cbi);
trace_afs_make_fs_call(call, &fids[0]);
- return afs_make_call(&fc->ac, call, GFP_NOFS, false);
+ afs_make_call(&fc->ac, call, GFP_NOFS);
+ return afs_wait_for_call_to_complete(call, &fc->ac);
}