libnfs/lib/pdu.c

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/*
Copyright (C) 2010 by Ronnie Sahlberg <ronniesahlberg@gmail.com>
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with this program; if not, see <http://www.gnu.org/licenses/>.
*/
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#ifdef WIN32
#include "win32_compat.h"
#ifndef MSG_DONTWAIT
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#define MSG_DONTWAIT 0
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#endif
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#else
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#include <strings.h>
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#endif/*WIN32*/
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#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/socket.h>
#include <netinet/in.h>
#include <assert.h>
#include <errno.h>
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#include "slist.h"
#include "libnfs-zdr.h"
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#include "libnfs.h"
#include "libnfs-raw.h"
#include "libnfs-private.h"
struct rpc_pdu *rpc_allocate_pdu(struct rpc_context *rpc, int program, int version, int procedure, rpc_cb cb, void *private_data, zdrproc_t zdr_decode_fn, int zdr_decode_bufsize)
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{
struct rpc_pdu *pdu;
struct rpc_msg msg;
assert(rpc->magic == RPC_CONTEXT_MAGIC);
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pdu = malloc(sizeof(struct rpc_pdu));
if (pdu == NULL) {
rpc_set_error(rpc, "Out of memory: Failed to allocate pdu structure");
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return NULL;
}
memset(pdu, 0, sizeof(struct rpc_pdu));
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pdu->xid = rpc->xid++;
pdu->cb = cb;
pdu->private_data = private_data;
pdu->zdr_decode_fn = zdr_decode_fn;
pdu->zdr_decode_bufsize = zdr_decode_bufsize;
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zdrmem_create(&pdu->zdr, rpc->encodebuf, rpc->encodebuflen, ZDR_ENCODE);
if (rpc->is_udp == 0) {
zdr_setpos(&pdu->zdr, 4); /* skip past the record marker */
}
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memset(&msg, 0, sizeof(struct rpc_msg));
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msg.rm_xid = pdu->xid;
msg.rm_direction = CALL;
msg.rm_call.cb_rpcvers = RPC_MSG_VERSION;
msg.rm_call.cb_prog = program;
msg.rm_call.cb_vers = version;
msg.rm_call.cb_proc = procedure;
msg.rm_call.cb_cred = rpc->auth->ah_cred;
msg.rm_call.cb_verf = rpc->auth->ah_verf;
if (zdr_callmsg(&pdu->zdr, &msg) == 0) {
rpc_set_error(rpc, "zdr_callmsg failed");
zdr_destroy(&pdu->zdr);
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free(pdu);
return NULL;
}
return pdu;
}
void rpc_free_pdu(struct rpc_context *rpc, struct rpc_pdu *pdu)
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{
assert(rpc->magic == RPC_CONTEXT_MAGIC);
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if (pdu->outdata.data != NULL) {
free(pdu->outdata.data);
pdu->outdata.data = NULL;
}
if (pdu->zdr_decode_buf != NULL) {
zdr_free(pdu->zdr_decode_fn, pdu->zdr_decode_buf);
free(pdu->zdr_decode_buf);
pdu->zdr_decode_buf = NULL;
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}
zdr_destroy(&pdu->zdr);
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free(pdu);
}
int rpc_queue_pdu(struct rpc_context *rpc, struct rpc_pdu *pdu)
{
int size, recordmarker;
assert(rpc->magic == RPC_CONTEXT_MAGIC);
size = zdr_getpos(&pdu->zdr);
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/* for udp we dont queue, we just send it straight away */
if (rpc->is_udp != 0) {
// XXX add a rpc->udp_dest_sock_size and get rid of sys/socket.h and netinet/in.h
if (sendto(rpc->fd, rpc->encodebuf, size, MSG_DONTWAIT, rpc->udp_dest, sizeof(struct sockaddr_in)) < 0) {
rpc_set_error(rpc, "Sendto failed with errno %s", strerror(errno));
rpc_free_pdu(rpc, pdu);
return -1;
}
SLIST_ADD_END(&rpc->waitpdu, pdu);
return 0;
}
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/* write recordmarker */
zdr_setpos(&pdu->zdr, 0);
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recordmarker = (size - 4) | 0x80000000;
zdr_int(&pdu->zdr, &recordmarker);
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pdu->outdata.size = size;
pdu->outdata.data = malloc(pdu->outdata.size);
if (pdu->outdata.data == NULL) {
rpc_set_error(rpc, "Out of memory. Failed to allocate buffer for pdu\n");
rpc_free_pdu(rpc, pdu);
return -1;
}
memcpy(pdu->outdata.data, rpc->encodebuf, pdu->outdata.size);
SLIST_ADD_END(&rpc->outqueue, pdu);
return 0;
}
int rpc_get_pdu_size(char *buf)
{
uint32_t size;
size = ntohl(*(uint32_t *)buf);
return (size & 0x7fffffff) + 4;
}
static int rpc_process_reply(struct rpc_context *rpc, struct rpc_pdu *pdu, ZDR *zdr)
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{
struct rpc_msg msg;
assert(rpc->magic == RPC_CONTEXT_MAGIC);
memset(&msg, 0, sizeof(struct rpc_msg));
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msg.acpted_rply.ar_verf = _null_auth;
if (pdu->zdr_decode_bufsize > 0) {
if (pdu->zdr_decode_buf != NULL) {
free(pdu->zdr_decode_buf);
}
pdu->zdr_decode_buf = malloc(pdu->zdr_decode_bufsize);
if (pdu->zdr_decode_buf == NULL) {
rpc_set_error(rpc, "zdr_replymsg failed in portmap_getport_reply");
pdu->cb(rpc, RPC_STATUS_ERROR, "Failed to allocate buffer for decoding of ZDR reply", pdu->private_data);
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return 0;
}
memset(pdu->zdr_decode_buf, 0, pdu->zdr_decode_bufsize);
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}
msg.acpted_rply.ar_results.where = pdu->zdr_decode_buf;
msg.acpted_rply.ar_results.proc = pdu->zdr_decode_fn;
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if (zdr_replymsg(zdr, &msg) == 0) {
rpc_set_error(rpc, "zdr_replymsg failed in portmap_getport_reply");
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pdu->cb(rpc, RPC_STATUS_ERROR, "Message rejected by server", pdu->private_data);
if (pdu->zdr_decode_buf != NULL) {
free(pdu->zdr_decode_buf);
pdu->zdr_decode_buf = NULL;
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}
return 0;
}
if (msg.rm_reply.rp_stat != MSG_ACCEPTED) {
pdu->cb(rpc, RPC_STATUS_ERROR, "RPC Packet not accepted by the server", pdu->private_data);
return 0;
}
switch (msg.rm_reply.rp_acpt.ar_stat) {
case SUCCESS:
pdu->cb(rpc, RPC_STATUS_SUCCESS, pdu->zdr_decode_buf, pdu->private_data);
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break;
case PROG_UNAVAIL:
pdu->cb(rpc, RPC_STATUS_ERROR, "Server responded: Program not available", pdu->private_data);
break;
case PROG_MISMATCH:
pdu->cb(rpc, RPC_STATUS_ERROR, "Server responded: Program version mismatch", pdu->private_data);
break;
case PROC_UNAVAIL:
pdu->cb(rpc, RPC_STATUS_ERROR, "Server responded: Procedure not available", pdu->private_data);
break;
case GARBAGE_ARGS:
pdu->cb(rpc, RPC_STATUS_ERROR, "Server responded: Garbage arguments", pdu->private_data);
break;
case SYSTEM_ERR:
pdu->cb(rpc, RPC_STATUS_ERROR, "Server responded: System Error", pdu->private_data);
break;
default:
pdu->cb(rpc, RPC_STATUS_ERROR, "Unknown rpc response from server", pdu->private_data);
break;
}
return 0;
}
int rpc_process_pdu(struct rpc_context *rpc, char *buf, int size)
{
struct rpc_pdu *pdu;
ZDR zdr;
int pos, recordmarker = 0;
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unsigned int xid;
char *reasbuf = NULL;
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assert(rpc->magic == RPC_CONTEXT_MAGIC);
memset(&zdr, 0, sizeof(ZDR));
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zdrmem_create(&zdr, buf, size, ZDR_DECODE);
if (rpc->is_udp == 0) {
if (zdr_int(&zdr, &recordmarker) == 0) {
rpc_set_error(rpc, "zdr_int reading recordmarker failed");
zdr_destroy(&zdr);
return -1;
}
if (!(recordmarker&0x80000000)) {
zdr_destroy(&zdr);
if (rpc_add_fragment(rpc, buf+4, size-4) != 0) {
rpc_set_error(rpc, "Failed to queue fragment for reassembly.");
return -1;
}
return 0;
}
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}
/* reassembly */
if (recordmarker != 0 && rpc->fragments != NULL) {
struct rpc_fragment *fragment;
uint32_t total = size - 4;
char *ptr;
zdr_destroy(&zdr);
for (fragment = rpc->fragments; fragment; fragment = fragment->next) {
total += fragment->size;
}
reasbuf = malloc(total);
if (reasbuf == NULL) {
rpc_set_error(rpc, "Failed to reassemble PDU");
rpc_free_all_fragments(rpc);
return -1;
}
ptr = reasbuf;
for (fragment = rpc->fragments; fragment; fragment = fragment->next) {
memcpy(ptr, fragment->data, fragment->size);
ptr += fragment->size;
}
memcpy(ptr, buf + 4, size - 4);
zdrmem_create(&zdr, reasbuf, total, ZDR_DECODE);
rpc_free_all_fragments(rpc);
}
pos = zdr_getpos(&zdr);
if (zdr_int(&zdr, (int *)&xid) == 0) {
rpc_set_error(rpc, "zdr_int reading xid failed");
zdr_destroy(&zdr);
if (reasbuf != NULL) {
free(reasbuf);
}
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return -1;
}
zdr_setpos(&zdr, pos);
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for (pdu=rpc->waitpdu; pdu; pdu=pdu->next) {
if (pdu->xid != xid) {
continue;
}
if (rpc->is_udp == 0 || rpc->is_broadcast == 0) {
SLIST_REMOVE(&rpc->waitpdu, pdu);
}
if (rpc_process_reply(rpc, pdu, &zdr) != 0) {
rpc_set_error(rpc, "rpc_procdess_reply failed");
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}
zdr_destroy(&zdr);
if (rpc->is_udp == 0 || rpc->is_broadcast == 0) {
rpc_free_pdu(rpc, pdu);
}
if (reasbuf != NULL) {
free(reasbuf);
}
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return 0;
}
rpc_set_error(rpc, "No matching pdu found for xid:%d", xid);
zdr_destroy(&zdr);
if (reasbuf != NULL) {
free(reasbuf);
}
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return -1;
}