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343 lines
10 KiB
C
343 lines
10 KiB
C
/* NFSv4.1 client for Windows
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* Copyright © 2012 The Regents of the University of Michigan
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*
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* Olga Kornievskaia <aglo@umich.edu>
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* Casey Bodley <cbodley@umich.edu>
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*
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* This library is free software; you can redistribute it and/or modify it
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* under the terms of the GNU Lesser General Public License as published by
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* the Free Software Foundation; either version 2.1 of the License, or (at
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* your option) any later version.
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*
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* This library is distributed in the hope that it will be useful, but
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* without any warranty; without even the implied warranty of merchantability
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* or fitness for a particular purpose. See the GNU Lesser General Public
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* License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with this library; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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*/
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#include <windows.h>
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#include <strsafe.h>
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#include <stdio.h>
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#include "wintirpc.h"
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#include "rpc/rpc.h"
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#include "name_cache.h"
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#include "daemon_debug.h"
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#include "nfs41.h"
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#include "util.h"
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#define SRVLVL 2 /* dprintf level for server logging */
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/* nfs41_server_list */
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struct server_list {
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struct list_entry head;
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CRITICAL_SECTION lock;
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};
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static struct server_list g_server_list;
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#define server_entry(pos) list_container(pos, nfs41_server, entry)
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void nfs41_server_list_init()
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{
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list_init(&g_server_list.head);
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InitializeCriticalSection(&g_server_list.lock);
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}
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/* http://tools.ietf.org/html/rfc5661#section-1.6
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* 1.6. General Definitions: Server Owner:
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* "When the client has two connections each to a peer with the same major
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* identifier, the client assumes that both peers are the same server (the
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* server namespace is the same via each connection)" */
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/* http://tools.ietf.org/html/rfc5661#section-2.10.4
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* 2.10.4. Server Scope
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* "When the server scope values are the same, server owner value may be
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* validly compared. In cases where the server scope values are different,
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* server owner values are treated as different even if they contain all
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* identical bytes." */
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/* given these definitions, we require that both the server_owner.major_id
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* and server_scope are identical when matching instances of nfs41_server */
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struct server_info {
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const char *scope;
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const char *owner;
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};
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static int server_compare(
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const struct list_entry *entry,
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const void *value)
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{
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const nfs41_server *server = server_entry(entry);
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const struct server_info *info = (const struct server_info*)value;
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const int diff = strncmp(server->scope, info->scope, NFS4_OPAQUE_LIMIT);
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return diff ? diff : strncmp(server->owner, info->owner, NFS4_OPAQUE_LIMIT);
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}
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static int server_entry_find(
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IN struct server_list *servers,
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IN const struct server_info *info,
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OUT struct list_entry **entry_out)
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{
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*entry_out = list_search(&servers->head, info, server_compare);
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return *entry_out ? NO_ERROR : ERROR_FILE_NOT_FOUND;
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}
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static int server_create(
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IN const struct server_info *info,
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OUT nfs41_server **server_out)
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{
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int status = NO_ERROR;
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nfs41_server *server;
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server = calloc(1, sizeof(nfs41_server));
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if (server == NULL) {
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status = GetLastError();
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eprintf("failed to allocate server %s\n", info->owner);
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goto out;
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}
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StringCchCopyA(server->scope, NFS4_OPAQUE_LIMIT, info->scope);
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StringCchCopyA(server->owner, NFS4_OPAQUE_LIMIT, info->owner);
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InitializeSRWLock(&server->addrs.lock);
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nfs41_superblock_list_init(&server->superblocks);
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status = nfs41_name_cache_create(&server->name_cache);
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if (status) {
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eprintf("nfs41_name_cache_create() failed with %d\n", status);
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goto out_free;
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}
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out:
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*server_out = server;
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return status;
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out_free:
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free(server);
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server = NULL;
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goto out;
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}
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static void server_free(
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IN nfs41_server *server)
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{
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dprintf(SRVLVL, "server_free(%s)\n", server->owner);
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nfs41_superblock_list_free(&server->superblocks);
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nfs41_name_cache_free(&server->name_cache);
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free(server);
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}
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static __inline void server_ref_locked(
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IN nfs41_server *server)
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{
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server->ref_count++;
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dprintf(SRVLVL, "nfs41_server_ref(%s) count %d\n",
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server->owner, server->ref_count);
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}
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void nfs41_server_ref(
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IN nfs41_server *server)
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{
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EnterCriticalSection(&g_server_list.lock);
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server_ref_locked(server);
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LeaveCriticalSection(&g_server_list.lock);
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}
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void nfs41_server_deref(
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IN nfs41_server *server)
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{
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EnterCriticalSection(&g_server_list.lock);
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server->ref_count--;
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dprintf(SRVLVL, "nfs41_server_deref(%s) count %d\n",
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server->owner, server->ref_count);
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if (server->ref_count == 0) {
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list_remove(&server->entry);
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server_free(server);
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}
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LeaveCriticalSection(&g_server_list.lock);
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}
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static void server_addrs_add(
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IN OUT struct server_addrs *addrs,
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IN const netaddr4 *addr)
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{
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/* we keep a list of addrs used to connect to each server. once it gets
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* bigger than NFS41_ADDRS_PER_SERVER, overwrite the oldest addrs. use
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* server_addrs.next_index to implement a circular array */
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AcquireSRWLockExclusive(&addrs->lock);
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if (multi_addr_find(&addrs->addrs, addr, NULL)) {
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dprintf(SRVLVL, "server_addrs_add() found existing addr '%s'.\n",
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addr->uaddr);
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} else {
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/* overwrite the address at 'next_index' */
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StringCchCopyA(addrs->addrs.arr[addrs->next_index].netid,
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NFS41_NETWORK_ID_LEN+1, addr->netid);
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StringCchCopyA(addrs->addrs.arr[addrs->next_index].uaddr,
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NFS41_UNIVERSAL_ADDR_LEN+1, addr->uaddr);
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/* increment/wrap next_index */
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addrs->next_index = (addrs->next_index + 1) % NFS41_ADDRS_PER_SERVER;
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/* update addrs.count if necessary */
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if (addrs->addrs.count < addrs->next_index)
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addrs->addrs.count = addrs->next_index;
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dprintf(SRVLVL, "server_addrs_add() added new addr '%s'.\n",
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addr->uaddr);
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}
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ReleaseSRWLockExclusive(&addrs->lock);
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}
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void nfs41_server_addrs(
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IN nfs41_server *server,
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OUT multi_addr4 *addrs)
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{
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struct server_addrs *saddrs = &server->addrs;
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uint32_t i, j;
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/* make a copy of the server's addrs, with most recent first */
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AcquireSRWLockShared(&saddrs->lock);
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j = saddrs->next_index;
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for (i = 0; i < saddrs->addrs.count; i++) {
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/* decrement/wrap j */
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j = (NFS41_ADDRS_PER_SERVER + j - 1) % NFS41_ADDRS_PER_SERVER;
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memcpy(&addrs->arr[i], &saddrs->addrs.arr[j], sizeof(netaddr4));
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}
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ReleaseSRWLockShared(&saddrs->lock);
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}
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int nfs41_server_find_or_create(
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IN const char *server_owner_major_id,
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IN const char *server_scope,
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IN const netaddr4 *addr,
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OUT nfs41_server **server_out)
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{
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struct server_info info;
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struct list_entry *entry;
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nfs41_server *server;
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int status;
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info.owner = server_owner_major_id;
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info.scope = server_scope;
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dprintf(SRVLVL, "--> nfs41_server_find_or_create(%s)\n", info.owner);
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EnterCriticalSection(&g_server_list.lock);
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/* search for an existing server */
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entry = list_search(&g_server_list.head, &info, server_compare);
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if (entry == NULL) {
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/* create a new server */
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status = server_create(&info, &server);
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if (status == NO_ERROR) {
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/* add it to the list */
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list_add_tail(&g_server_list.head, &server->entry);
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*server_out = server;
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dprintf(SRVLVL, "<-- nfs41_server_find_or_create() "
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"returning new server %p\n", server);
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} else {
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dprintf(SRVLVL, "<-- nfs41_server_find_or_create() "
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"returning %d\n", status);
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}
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} else {
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server = server_entry(entry);
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status = NO_ERROR;
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dprintf(SRVLVL, "<-- nfs41_server_find_or_create() "
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"returning existing server %p\n", server);
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}
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if (server) {
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/* register the address used to connect */
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server_addrs_add(&server->addrs, addr);
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server_ref_locked(server);
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}
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*server_out = server;
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LeaveCriticalSection(&g_server_list.lock);
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return status;
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}
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int nfs41_server_resolve(
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IN const char *hostname,
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IN unsigned short port,
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OUT multi_addr4 *addrs)
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{
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int status = ERROR_BAD_NET_NAME;
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char service[16];
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struct addrinfo hints = { 0 }, *res, *info;
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struct netconfig *nconf;
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struct netbuf addr;
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char *netid, *uaddr;
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dprintf(SRVLVL, "--> nfs41_server_resolve(%s:%u)\n",
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hostname, port);
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addrs->count = 0;
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StringCchPrintfA(service, 16, "%u", port);
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/* request a list of tcp addrs for the given hostname,port */
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hints.ai_family = AF_UNSPEC;
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hints.ai_socktype = SOCK_STREAM;
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hints.ai_protocol = IPPROTO_TCP;
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if (getaddrinfo(hostname, service, &hints, &res) != 0)
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goto out;
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for (info = res; info != NULL; info = info->ai_next) {
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/* find the appropriate entry in /etc/netconfig */
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switch (info->ai_family) {
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case AF_INET: netid = "tcp"; break;
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case AF_INET6: netid = "tcp6"; break;
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default: continue;
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}
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nconf = getnetconfigent(netid);
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if (nconf == NULL)
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continue;
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/* convert to a transport-independent universal address */
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addr.buf = info->ai_addr;
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addr.maxlen = addr.len = (unsigned int)info->ai_addrlen;
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uaddr = taddr2uaddr(nconf, &addr);
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freenetconfigent(nconf);
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if (uaddr == NULL)
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continue;
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StringCchCopyA(addrs->arr[addrs->count].netid,
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NFS41_NETWORK_ID_LEN+1, netid);
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StringCchCopyA(addrs->arr[addrs->count].uaddr,
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NFS41_UNIVERSAL_ADDR_LEN+1, uaddr);
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freeuaddr(uaddr);
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status = NO_ERROR;
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if (++addrs->count >= NFS41_ADDRS_PER_SERVER)
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break;
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}
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freeaddrinfo(res);
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out:
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if (status)
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dprintf(SRVLVL, "<-- nfs41_server_resolve(%s:%u) returning "
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"error %d\n", hostname, port, status);
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else
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dprintf(SRVLVL, "<-- nfs41_server_resolve(%s:%u) returning "
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"%s\n", hostname, port, addrs->arr[0].uaddr);
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return status;
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}
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