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bin_interface.c
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bin_interface.c
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/*
* Copyright (C) 2013 OpenSIPS Solutions
*
* This file is part of opensips, a free SIP server.
*
* opensips 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
*
* opensips 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 General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*
* History:
* -------
* 2013-04-10: Created (Liviu)
*/
#include "bin_interface.h"
#include "config.h"
#include "daemonize.h"
#include "pt.h"
#include "net/net_udp.h"
static int bin_extend(bin_packet_t *packet, int size);
static struct packet_cb_list *reg_cbs;
void set_len(bin_packet_t *packet) {
memcpy(packet->buffer.s + BIN_PACKET_MARKER_SIZE, &packet->buffer.len, sizeof(unsigned int));
}
/**
* _bin_init - begins the construction of a new binary packet (header part):
*
* +-----------------------------+-------------------------------------------------------+
* | 12-byte HEADER | BODY max 65535 bytes |
* +-----------------------------+-------------------------------------------------------+
* | PK_MARKER |PGK LEN| VERSION | LEN | CAP | CMD | LEN | FIELD | LEN | FIELD |.........|
* +-------------------+-----------------------------------------------------------------+
*
* @param: { LEN, CAP } + CMD + VERSION
* @length: initial packet size. specify 0 to use the default size (BIN_MAX_BUF_LEN)
*/
int _bin_init(bin_packet_t *packet, str *capability, int packet_type,
short version, int length, int use_sysmalloc)
{
if (length != 0 && length < MIN_BIN_PACKET_SIZE + capability->len) {
LM_ERR("Length parameter has to be greater than: %zu\n",
MIN_BIN_PACKET_SIZE + capability->len);
return -1;
}
if (!length)
length = BIN_MAX_BUF_LEN;
if (use_sysmalloc) {
packet->buffer.s = malloc(length);
packet->flags = BINFL_SYSMEM;
} else {
packet->buffer.s = pkg_malloc(length);
packet->flags = 0;
}
if (!packet->buffer.s) {
LM_ERR("No more pkg memory!\n");
return -1;
}
packet->buffer.len = 0;
packet->type = packet_type;
packet->size = length;
/* binary packet header: marker + pkg_len */
memcpy(packet->buffer.s + packet->buffer.len,
BIN_PACKET_MARKER, BIN_PACKET_MARKER_SIZE);
packet->buffer.len += BIN_PACKET_MARKER_SIZE + PKG_LEN_FIELD_SIZE;
/* bin version */
memcpy(packet->buffer.s + packet->buffer.len, &version, sizeof(version));
packet->buffer.len += VERSION_FIELD_SIZE;
/* capability name */
memcpy(packet->buffer.s + packet->buffer.len, &capability->len, LEN_FIELD_SIZE);
packet->buffer.len += LEN_FIELD_SIZE;
memcpy(packet->buffer.s + packet->buffer.len, capability->s, capability->len);
packet->buffer.len += capability->len;
memcpy(packet->buffer.s + packet->buffer.len, &packet_type, sizeof(packet_type));
packet->buffer.len += sizeof(packet_type);
set_len(packet);
return 0;
}
void bin_get_capability(bin_packet_t *packet, str *capability)
{
unsigned short len;
memcpy(&len, packet->buffer.s + HEADER_SIZE, sizeof(unsigned short));
capability->len = len;
capability->s = packet->buffer.s + HEADER_SIZE + LEN_FIELD_SIZE;
}
/*
* initializes a packet with a buffer received
* this is useful when you only have a pre-built buffer
*/
void bin_init_buffer(bin_packet_t *packet, char *buffer, int length)
{
str capability;
packet->buffer.len = length;
packet->buffer.s = buffer;
packet->size = length;
packet->flags = 0;
bin_get_capability(packet, &capability);
memcpy(&packet->type, capability.s + capability.len, sizeof(int));
packet->front_pointer = capability.s + capability.len + CMD_FIELD_SIZE;
LM_DBG("init buffer length %d\n", length);
}
int bin_append_buffer(bin_packet_t *packet, str *buf)
{
if (!packet->buffer.s || !packet->size) {
LM_ERR("not initialized yet, call bin_init before altering buffer\n");
return -1;
}
if (packet->buffer.len + buf->len > packet->size) {
if (bin_extend(packet, buf->len) < 0)
return -1;
}
memcpy(packet->buffer.s + packet->buffer.len, buf->s, buf->len);
packet->buffer.len += buf->len;
set_len(packet);
return packet->buffer.len;
}
/*
* copies the given string at the end position in the packet
* allows null strings (NULL content or NULL param)
*
* @return:
* > 0: success, the size of the packet
* < 0: internal buffer limit reached
*/
int bin_push_str(bin_packet_t *packet, const str *info)
{
if (!packet->buffer.s || !packet->size) {
LM_ERR("not initialized yet, call bin_init before altering buffer\n");
return -1;
}
if (packet->buffer.len + LEN_FIELD_SIZE + (info ? info->len : 0) > packet->size) {
if (bin_extend(packet, LEN_FIELD_SIZE + (info ? info->len : 0)) < 0)
return -1;
}
if (!info || info->len == 0 || !info->s) {
memset(packet->buffer.s + packet->buffer.len, 0, LEN_FIELD_SIZE);
packet->buffer.len += LEN_FIELD_SIZE;
set_len(packet);
return packet->buffer.len;
}
memcpy(packet->buffer.s + packet->buffer.len, &info->len, LEN_FIELD_SIZE);
packet->buffer.len += LEN_FIELD_SIZE;
memcpy(packet->buffer.s + packet->buffer.len, info->s, info->len);
packet->buffer.len += info->len;
set_len(packet);
return packet->buffer.len;
}
/*
* adds a new integer value at the end position in the packet
*
* @return:
* > 0: success, the size of the packet
* < 0: internal buffer limit reached
*/
int bin_push_int(bin_packet_t *packet, int info)
{
if (!packet->buffer.s || !packet->size) {
LM_ERR("not initialized yet, call bin_init before altering buffer\n");
return -1;
}
if (packet->buffer.len + sizeof info > packet->size) {
if (bin_extend(packet, sizeof info) < 0)
return -1;
}
memcpy(packet->buffer.s + packet->buffer.len, &info, sizeof info);
packet->buffer.len += sizeof info;
set_len(packet);
return packet->buffer.len;
}
/*
* removes @count integers from the end of the packet
*
* @return:
* 0: success
* < 0: error, no more integers in buffer
*/
int bin_remove_int_buffer_end(bin_packet_t *packet, int count)
{
if (!packet->buffer.s || !packet->size ||
(int)(packet->buffer.len - count * sizeof(int)) < 0){
LM_ERR("binary packet underflow\n");
return -1;
}
packet->buffer.len -= count * sizeof(int);
set_len(packet);
return 0;
}
/*
* skips @count integers in the end of the packet
*
* @return:
* 0: success
* < 0: error, no more integers in buffer
*/
int bin_skip_int_packet_end(bin_packet_t *packet, int count)
{
if (!packet->buffer.s || !packet->size ||
(packet->buffer.len + count * sizeof(int)) > packet->size) {
return -1;
}
packet->buffer.len += count * sizeof(int);
set_len(packet);
return 0;
}
/*
* skips @count integers from the current position in the received binary packet
*
* @return:
* 0: success
* < 0: error, buffer limit reached
*/
int bin_skip_int(bin_packet_t *packet, int count)
{
if (packet->front_pointer - packet->buffer.s + count * sizeof(int) >
packet->buffer.len) {
packet->front_pointer = packet->buffer.s + packet->buffer.len;
LM_ERR("Buffer limit reached\n");
return -1;
}
packet->front_pointer += count * sizeof(int);
return 0;
}
/*
* skips @count strings from the current position in a received binary packet
*
* @return:
* 0: success
* < 0: error, buffer limit reached
*/
int bin_skip_str(bin_packet_t *packet, int count)
{
int i, len;
for (i = 0; i < count; i++) {
if (packet->front_pointer - packet->buffer.s + LEN_FIELD_SIZE >
packet->buffer.len)
goto error;
len = 0;
memcpy(&len, packet->front_pointer, LEN_FIELD_SIZE);
packet->front_pointer += LEN_FIELD_SIZE;
if (packet->front_pointer - packet->buffer.s + len > packet->buffer.len)
goto error;
packet->front_pointer += len;
}
return 0;
error:
LM_ERR("Receive binary packet buffer overflow\n");
return -1;
}
/*
* pops an str from the current position in the packet
* @info: pointer to store the result
*
* @return:
* 0 (success): info retrieved
* 1 (success): nothing returned, all data has been consumed!
* < 0: error
*
* Note: The pointer returned in @info str is only valid for the duration of
* the callback. Don't forget to copy the info into a safe buffer!
*/
int bin_pop_str(bin_packet_t *packet, str *info)
{
if (packet->front_pointer - packet->buffer.s == packet->buffer.len)
return 1;
if (packet->front_pointer - packet->buffer.s > packet->buffer.len ||
packet->front_pointer - packet->buffer.s + LEN_FIELD_SIZE > packet->buffer.len)
goto error;
info->len = 0;
memcpy(&info->len, packet->front_pointer, LEN_FIELD_SIZE);
packet->front_pointer += LEN_FIELD_SIZE;
if (packet->front_pointer - packet->buffer.s + info->len > packet->buffer.len)
goto error;
if (info->len == 0)
info->s = NULL;
else
info->s = packet->front_pointer;
packet->front_pointer += info->len;
LM_DBG("Popped: '%.*s' [%d]\n", info->len, info->s, info->len);
return 0;
error:
LM_ERR("Receive binary packet buffer overflow\n");
return -1;
}
/*
* pops an integer value from the current position in the buffer
* @info: pointer to store the result
*
* @return:
* 0 (success): info retrieved
* 1 (success): nothing returned, all data has been consumed!
* < 0: error
*/
int bin_pop_int(bin_packet_t *packet, void *info)
{
if (packet->front_pointer - packet->buffer.s == packet->buffer.len)
return 1;
if (packet->front_pointer - packet->buffer.s + sizeof(int) > packet->buffer.len) {
LM_ERR("Receive binary packet buffer overflow\n");
return -1;
}
memcpy(info, packet->front_pointer, sizeof(int));
packet->front_pointer += sizeof(int);
return 0;
}
/*
* pops an integer value from the end of the packet
* @info: pointer to store the result
*
* @return:
* 0 (success): info retrieved
* 1 (success): nothing returned, all data has been consumed!
* < 0: error
*/
int bin_pop_back_int(bin_packet_t *packet, void *info)
{
if (packet->buffer.len < MIN_BIN_PACKET_SIZE + sizeof(int)) {
LM_ERR("attempt to pop data on an empty packet!\n");
return -1;
}
memcpy(info, packet->buffer.s + packet->buffer.len - sizeof(int), sizeof(int));
packet->buffer.len -= sizeof(int);
return 0;
}
/**
* bin_register_cb - registers a handler for a specific capability
* @cap: used to classify the incoming packets
* @cb: the handler function, called once for each matched packet
*
* @return: 0 on success
*/
int bin_register_cb(str *cap, void (*cb)(bin_packet_t *, int,
struct receive_info *, void * atr), void *att, int att_len)
{
struct packet_cb_list *new_cb;
new_cb = pkg_malloc(sizeof(*new_cb) + att_len);
if (!new_cb) {
LM_ERR("No more pkg mem!\n");
return -1;
}
memset(new_cb, 0, sizeof(*new_cb));
new_cb->cbf = cb;
new_cb->capability.len = cap->len;
new_cb->capability.s = cap->s;
if (att) {
new_cb->att = (void *)(new_cb + 1);
memcpy(new_cb->att, att, att_len);
}
new_cb->next = reg_cbs;
reg_cbs = new_cb;
return 0;
}
/*
* main binary packet receiver loop
*/
void call_callbacks(char* buffer, struct receive_info *rcv)
{
struct packet_cb_list *p;
unsigned int pkg_len;
bin_packet_t packet;
str capability;
memcpy(&pkg_len, buffer + BIN_PACKET_MARKER_SIZE, sizeof(unsigned int));
//add extra size so a realloc wont trigger after small altering of the packet
packet.buffer.s = pkg_malloc(pkg_len + 50);
if (!packet.buffer.s) {
LM_ERR("oom\n");
return;
}
packet.buffer.len = pkg_len;
packet.size = pkg_len + 50;
packet.flags = 0;
memcpy(packet.buffer.s, buffer, pkg_len);
bin_get_capability(&packet, &capability);
packet.front_pointer = capability.s + capability.len + CMD_FIELD_SIZE;
memcpy(&packet.type, capability.s + capability.len, sizeof(int));
/* packet will be now processed for a specific capability */
for (p = reg_cbs; p; p = p->next) {
if (p->capability.len == capability.len &&
memcmp(capability.s, p->capability.s, capability.len) == 0) {
LM_DBG("binary Packet CMD: %d. Capability: %.*s\n",
packet.type, capability.len, capability.s);
p->cbf(&packet, packet.type, rcv,p->att);
break;
}
}
bin_free_packet(&packet);
}
static int bin_extend(bin_packet_t *packet, int size)
{
int required;
if (size < 0 || packet->buffer.len + size > BIN_MAX_BUF_LEN) {
LM_ERR("cannot make the buffer bigger\n");
return -1;
}
required = packet->buffer.len + size;
if (2 * required > BIN_MAX_BUF_LEN)
packet->size = BIN_MAX_BUF_LEN;
else
packet->size = 2 * required;
packet->buffer.s = (packet->flags & BINFL_SYSMEM) ?
realloc(packet->buffer.s, packet->size) :
pkg_realloc(packet->buffer.s, packet->size);
if (!packet->buffer.s) {
LM_ERR("pkg realloc failed\n");
return -1;
}
return 0;
}
void bin_free_packet(bin_packet_t *packet)
{
if (packet->buffer.s) {
if (packet->flags & BINFL_SYSMEM)
free(packet->buffer.s);
else
pkg_free(packet->buffer.s);
packet->buffer.s = NULL;
} else {
LM_INFO("atempting to free uninitialized binary packet\n");
}
}
int bin_get_buffer(bin_packet_t *packet, str *buffer)
{
if (!buffer)
return -1;
buffer->s = packet->buffer.s;
buffer->len = packet->buffer.len;
return 1;
}
int bin_get_content_start(bin_packet_t *packet, str *buf)
{
unsigned short clen;
if (!buf)
return -1;
memcpy(&clen, packet->buffer.s + HEADER_SIZE, sizeof(clen));
buf->s = packet->buffer.s + HEADER_SIZE + LEN_FIELD_SIZE +
clen + sizeof(int);
buf->len = packet->buffer.len - (buf->s - packet->buffer.s);
return buf->len;
}
int bin_get_content_pos(bin_packet_t *packet, str *buf)
{
if (!buf)
return -1;
buf->s = packet->front_pointer;
buf->len = packet->buffer.len - (packet->front_pointer -
packet->buffer.s);
return buf->len;
}
int bin_reset_back_pointer(bin_packet_t *packet)
{
unsigned short cap_len;
if (!packet->buffer.s || !packet->size)
return -1;
memcpy(&cap_len, packet->buffer.s + HEADER_SIZE, sizeof(unsigned short));
packet->buffer.len = HEADER_SIZE + LEN_FIELD_SIZE + CMD_FIELD_SIZE + cap_len;
return 0;
}