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module-camd35-cacheex.c
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module-camd35-cacheex.c
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#define MODULE_LOG_PREFIX "camd35"
#include "globals.h"
#include "ncam-array.h"
#if defined(CS_CACHEEX) && (defined(MODULE_CAMD35) || defined(MODULE_CAMD35_TCP))
#include "module-cacheex.h"
#include "module-camd35.h"
#include "module-camd35-cacheex.h"
#include "ncam-cache.h"
#include "ncam-client.h"
#include "ncam-ecm.h"
#include "ncam-string.h"
#include "ncam-reader.h"
uint8_t camd35_node_id[8];
#define CSP_HASH_SWAP(n) (((((uint32_t)(n) & 0xFF)) << 24) | \
((((uint32_t)(n) & 0xFF00)) << 8) | \
((((uint32_t)(n) & 0xFF0000)) >> 8) | \
((((uint32_t)(n) & 0xFF000000)) >> 24))
/**
* send push filter
*/
void camd35_cacheex_send_push_filter(struct s_client *cl, uint8_t mode)
{
struct s_reader *rdr = cl->reader;
int i = 20, j;
CECSPVALUETAB *filter;
//maximum size: 20+255
uint8_t buf[20+242];
memset(buf, 0, sizeof(buf));
buf[0] = 0x3c;
buf[1] = 0xf2;
//mode==2 send filters from rdr
if(mode == 2 && rdr)
{
filter = &rdr->cacheex.filter_caidtab;
}
//mode==3 send filters from acc
else if(mode == 3 && cl->typ == 'c' && cl->account)
{
filter = &cl->account->cacheex.filter_caidtab;
}
else {
return;
}
i2b_buf(2, filter->cevnum, buf + i);
i += 2;
int32_t max_filters = 15;
for(j=0; j<max_filters; j++)
{
if(filter->cevnum > j){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
i2b_buf(4, d->caid, buf + i);
}
i += 4;
}
for(j=0; j<max_filters; j++)
{
if(filter->cevnum > j){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
i2b_buf(4, d->cmask, buf + i);
}
i += 4;
}
for(j=0; j<max_filters; j++)
{
if(filter->cevnum > j){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
i2b_buf(4, d->prid, buf + i);
}
i += 4;
}
for(j=0; j<max_filters; j++)
{
if(filter->cevnum > j){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
i2b_buf(4, d->srvid, buf + i);
}
i += 4;
}
cs_log_dbg(D_CACHEEX, "cacheex: sending push filter request to %s", username(cl));
camd35_send_without_timeout(cl, buf, 242); //send adds +20
}
/**
* store received push filter
*/
static void camd35_cacheex_push_filter(struct s_client *cl, uint8_t *buf, uint8_t mode)
{
struct s_reader *rdr = cl->reader;
int i = 20, j;
int32_t caid, cmask, provid, srvid;
CECSPVALUETAB *filter;
//mode==2 write filters to acc
if(mode == 2 && cl->typ == 'c' && cl->account && cl->account->cacheex.mode == 2
&& cl->account->cacheex.allow_filter == 1)
{
filter = &cl->account->cacheex.filter_caidtab;
}
//mode==3 write filters to rdr
else if(mode == 3 && rdr && rdr->cacheex.allow_filter == 1)
{
filter = &rdr->cacheex.filter_caidtab;
}
else {
return;
}
cecspvaluetab_clear(filter);
i += 2;
int32_t max_filters = 15;
for(j=0; j<max_filters; j++)
{
caid = b2i(4, buf + i);
if(caid > 0){
CECSPVALUETAB_DATA d;
memset(&d, 0, sizeof(d));
d.caid = b2i(4, buf + i);
cecspvaluetab_add(filter, &d);
}
i += 4;
}
for(j=0; j<max_filters; j++)
{
cmask = b2i(4, buf + i);
if(j<filter->cevnum){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
d->cmask = cmask;
}
i += 4;
}
for(j=0; j<max_filters; j++)
{
provid = b2i(4, buf + i);
if(j<filter->cevnum){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
d->prid = provid;
}
i += 4;
}
for(j=0; j<max_filters; j++)
{
srvid = b2i(4, buf + i);
if(j<filter->cevnum){
CECSPVALUETAB_DATA *d = &filter->cevdata[j];
d->srvid = srvid;
}
i += 4;
}
cs_log_dbg(D_CACHEEX, "cacheex: received push filter request from %s", username(cl));
}
static int32_t camd35_cacheex_push_chk(struct s_client *cl, ECM_REQUEST *er)
{
if(ll_count(er->csp_lastnodes) >= cacheex_maxhop(cl)) //check max 10 nodes to push:
{
cs_log_dbg(D_CACHEEX, "cacheex: nodelist reached %d nodes, no push", cacheex_maxhop(cl));
return 0;
}
if(cl->reader)
{
if(!cl->reader->tcp_connected)
{
cs_log_dbg(D_CACHEEX, "cacheex: not connected %s -> no push", username(cl));
return 0;
}
}
//if(chk_is_null_nodeid(remote_node,8)){
if(!cl->ncd_skey[8])
{
cs_log_dbg(D_CACHEEX, "cacheex: NO peer_node_id got yet, skip!");
return 0;
}
uint8_t *remote_node = cl->ncd_skey; //it is sended by reader(mode 2) or client (mode 3) each 30s using keepalive msgs
//search existing peer nodes:
LL_LOCKITER *li = ll_li_create(er->csp_lastnodes, 0);
uint8_t *node;
while((node = ll_li_next(li)))
{
cs_log_dbg(D_CACHEEX, "cacheex: check node %" PRIu64 "X == %" PRIu64 "X ?", cacheex_node_id(node), cacheex_node_id(remote_node));
if(memcmp(node, remote_node, 8) == 0)
{
break;
}
}
ll_li_destroy(li);
//node found, so we got it from there, do not push:
if(node)
{
cs_log_dbg(D_CACHEEX,
"cacheex: node %" PRIu64 "X found in list => skip push!", cacheex_node_id(node));
return 0;
}
//check if cw is already pushed
if(check_is_pushed(er->cw_cache, cl))
{ return 0; }
cs_log_dbg(D_CACHEEX, "cacheex: push ok %" PRIu64 "X to %" PRIu64 "X %s", cacheex_node_id(camd35_node_id), cacheex_node_id(remote_node), username(cl));
return 1;
}
static int32_t camd35_cacheex_push_out(struct s_client *cl, struct ecm_request_t *er)
{
int8_t rc = (er->rc < E_NOTFOUND) ? E_FOUND : er->rc;
if(rc != E_FOUND && rc != E_UNHANDLED) { return -1; } //Maybe later we could support other rcs
//E_FOUND : we have the CW,
//E_UNHANDLED : incoming ECM request
if(cl->reader)
{
if(!camd35_tcp_connect(cl))
{
cs_log_dbg(D_CACHEEX, "cacheex: not connected %s -> no push", username(cl));
return (-1);
}
}
uint32_t size = sizeof(er->ecmd5) + sizeof(er->csp_hash) + sizeof(er->cw) + sizeof(uint8_t) +
(ll_count(er->csp_lastnodes) + 1) * 8;
uint8_t *buf;
if(!cs_malloc(&buf, size + 20)) //camd35_send() adds +20
{ return -1; }
buf[0] = 0x3f; //New Command: Cache-push
buf[1] = size & 0xff;
buf[2] = size >> 8;
buf[3] = rc;
i2b_buf(2, er->srvid, buf + 8);
i2b_buf(2, er->caid, buf + 10);
i2b_buf(4, er->prid, buf + 12);
//i2b_buf(2, er->idx, buf + 16); // Not relevant...?
if(er->cwc_cycletime && er->cwc_next_cw_cycle < 2)
{
buf[18] = er->cwc_cycletime; // contains cwc stage3 cycletime
if(er->cwc_next_cw_cycle == 1)
{ buf[18] = (buf[18] | 0x80); } // set bit 8 to high
if(cl->typ == 'c' && cl->account && cl->account->cacheex.mode)
{ cl->account->cwc_info++; }
else if((cl->typ == 'p' || cl->typ == 'r') && (cl->reader && cl->reader->cacheex.mode))
{ cl->cwc_info++; }
cs_log_dbg(D_CWC, "CWC (CE) push to %s cycletime: %isek - nextcwcycle: CW%i for %04X@%06X:%04X", username(cl), er->cwc_cycletime, er->cwc_next_cw_cycle, er->caid, er->prid, er->srvid);
}
buf[19] = er->ecm[0] != 0x80 && er->ecm[0] != 0x81 ? 0 : er->ecm[0];
uint8_t *ofs = buf + 20;
//write ncam ecmd5:
memcpy(ofs, er->ecmd5, sizeof(er->ecmd5)); //16
ofs += sizeof(er->ecmd5);
//write csp hashcode:
i2b_buf(4, CSP_HASH_SWAP(er->csp_hash), ofs);
ofs += 4;
//write cw:
memcpy(ofs, er->cw, sizeof(er->cw)); //16
ofs += sizeof(er->cw);
//write node count:
*ofs = ll_count(er->csp_lastnodes) + 1;
ofs++;
//write own node:
memcpy(ofs, camd35_node_id, 8);
ofs += 8;
//write other nodes:
LL_LOCKITER *li = ll_li_create(er->csp_lastnodes, 0);
uint8_t *node;
while((node = ll_li_next(li)))
{
memcpy(ofs, node, 8);
ofs += 8;
}
ll_li_destroy(li);
int32_t res = camd35_send(cl, buf, size);
NULLFREE(buf);
return res;
}
static void camd35_cacheex_push_in(struct s_client *cl, uint8_t *buf)
{
int8_t rc = buf[3];
if(rc != E_FOUND && rc != E_UNHANDLED) //Maybe later we could support other rcs
{ return; }
ECM_REQUEST *er;
uint16_t size = buf[1] | (buf[2] << 8);
if(size < sizeof(er->ecmd5) + sizeof(er->csp_hash) + sizeof(er->cw))
{
cs_log_dbg(D_CACHEEX, "cacheex: %s received old cache-push format! data ignored!", username(cl));
return;
}
if(!(er = get_ecmtask()))
{ return; }
er->srvid = b2i(2, buf + 8);
er->caid = b2i(2, buf + 10);
er->prid = b2i(4, buf + 12);
er->pid = b2i(2, buf + 16);
er->ecm[0] = buf[19]!=0x80 && buf[19]!=0x81 ? 0 : buf[19]; //odd/even byte, usefull to send it over CSP and to check cw for swapping
er->rc = rc;
er->ecmlen = 0;
if(buf[18])
{
if(buf[18] & (0x01 << 7))
{
er->cwc_cycletime = (buf[18] & 0x7F); // remove bit 8 to get cycletime
er->cwc_next_cw_cycle = 1;
}
else
{
er->cwc_cycletime = buf[18];
er->cwc_next_cw_cycle = 0;
}
}
if (er->cwc_cycletime && er->cwc_next_cw_cycle < 2)
{
if(cl->typ == 'c' && cl->account && cl->account->cacheex.mode)
{ cl->account->cwc_info++; }
else if((cl->typ == 'p' || cl->typ == 'r') && (cl->reader && cl->reader->cacheex.mode))
{ cl->cwc_info++; }
cs_log_dbg(D_CWC, "CWC (CE) received from %s cycletime: %isek - nextcwcycle: CW%i for %04X@%06X:%04X", username(cl), er->cwc_cycletime, er->cwc_next_cw_cycle, er->caid, er->prid, er->srvid);
}
uint8_t *ofs = buf + 20;
//Read ecmd5
memcpy(er->ecmd5, ofs, sizeof(er->ecmd5)); //16
ofs += sizeof(er->ecmd5);
if(!check_cacheex_filter(cl, er))
{ return; }
//Read csp_hash:
er->csp_hash = CSP_HASH_SWAP(b2i(4, ofs));
ofs += 4;
//Read cw:
memcpy(er->cw, ofs, sizeof(er->cw)); //16
ofs += sizeof(er->cw);
//Check auf neues Format:
uint8_t *data;
if(size > (sizeof(er->ecmd5) + sizeof(er->csp_hash) + sizeof(er->cw)))
{
//Read lastnodes:
uint8_t count = *ofs;
ofs++;
//check max nodes:
if(count > cacheex_maxhop(cl))
{
cs_log_dbg(D_CACHEEX, "cacheex: received %d nodes (max=%d), ignored! %s", (int32_t)count, cacheex_maxhop(cl), username(cl));
NULLFREE(er);
return;
}
cs_log_dbg(D_CACHEEX, "cacheex: received %d nodes %s", (int32_t)count, username(cl));
if (er){
er->csp_lastnodes = ll_create("csp_lastnodes");
}
while(count)
{
if(!cs_malloc(&data, 8))
{ break; }
memcpy(data, ofs, 8);
ofs += 8;
ll_append(er->csp_lastnodes, data);
count--;
cs_log_dbg(D_CACHEEX, "cacheex: received node %" PRIu64 "X %s", cacheex_node_id(data), username(cl));
}
}
else
{
cs_log_dbg(D_CACHEEX, "cacheex: received old cachex from %s", username(cl));
er->csp_lastnodes = ll_create("csp_lastnodes");
}
//store remote node id if we got one. The remote node is the first node in the node list
data = ll_has_elements(er->csp_lastnodes);
if(data && !cl->ncd_skey[8]) //Ok, this is tricky, we use newcamd key storage for saving the remote node
{
memcpy(cl->ncd_skey, data, 8);
cl->ncd_skey[8] = 1; //Mark as valid node
}
cs_log_dbg(D_CACHEEX, "cacheex: received cacheex from remote node id %" PRIu64 "X", cacheex_node_id(cl->ncd_skey));
//for compatibility: add peer node if no node received (not working now, maybe later):
if(!ll_count(er->csp_lastnodes) && cl->ncd_skey[8])
{
if(!cs_malloc(&data, 8))
{ return; }
memcpy(data, cl->ncd_skey, 8);
ll_append(er->csp_lastnodes, data);
cs_log_dbg(D_CACHEEX, "cacheex: added missing remote node id %" PRIu64 "X", cacheex_node_id(data));
}
cacheex_add_to_cache(cl, er);
}
void camd35_cacheex_recv_ce1_cwc_info(struct s_client *cl, uint8_t *buf, int32_t idx)
{
if(!(buf[0] == 0x01 && buf[18] < 0xFF && buf[18] > 0x00)) // cwc info ; normal camd3 ecms send 0xFF but we need no cycletime of 255 ;)
return;
ECM_REQUEST *er = NULL;
int32_t i;
for(i = 0; i < cfg.max_pending; i++)
{
if (cl->ecmtask[i].idx == idx)
{
er = &cl->ecmtask[i];
break;
}
}
if(!er)
{ return; }
int8_t rc = buf[3];
if(rc != E_FOUND)
{ return; }
if(buf[18])
{
if(buf[18] & (0x01 << 7))
{
er->cwc_cycletime = (buf[18] & 0x7F); // remove bit 8 to get cycletime
er->parent->cwc_cycletime = er->cwc_cycletime;
er->cwc_next_cw_cycle = 1;
er->parent->cwc_next_cw_cycle = er->cwc_next_cw_cycle;
}
else
{
er->cwc_cycletime = buf[18];
er->parent->cwc_cycletime = er->cwc_cycletime;
er->cwc_next_cw_cycle = 0;
er->parent->cwc_next_cw_cycle = er->cwc_next_cw_cycle;
}
}
if(cl->typ == 'c' && cl->account && cl->account->cacheex.mode)
{ cl->account->cwc_info++; }
else if((cl->typ == 'p' || cl->typ == 'r') && (cl->reader && cl->reader->cacheex.mode))
{ cl->cwc_info++; }
cs_log_dbg(D_CWC, "CWC (CE1) received from %s cycletime: %isek - nextcwcycle: CW%i for %04X@%06X:%04X", username(cl), er->cwc_cycletime, er->cwc_next_cw_cycle, er->caid, er->prid, er->srvid);
}
/**
* when a server client connects
*/
static void camd35_server_client_init(struct s_client *cl)
{
if(!cl->init_done)
{
cl->cacheex_needfilter = 1;
}
}
/**
* store received remote id
*/
static void camd35_cacheex_push_receive_remote_id(struct s_client *cl, uint8_t *buf)
{
memcpy(cl->ncd_skey, buf + 20, 8);
cl->ncd_skey[8] = 1;
cs_log_dbg(D_CACHEEX, "cacheex: received id answer from %s: %" PRIu64 "X", username(cl), cacheex_node_id(cl->ncd_skey));
}
void camd35_cacheex_init_dcw(struct s_client *client, ECM_REQUEST *er)
{
uint8_t *buf = er->src_data; // get orig request
if(((client->typ == 'c' && client->account && client->account->cacheex.mode)
|| ((client->typ == 'p' || client->typ == 'r') && (client->reader && client->reader->cacheex.mode)))
&& er->cwc_cycletime && er->cwc_next_cw_cycle < 2) // ce1
{
buf[18] = er->cwc_cycletime; // contains cwc stage3 cycletime
if(er->cwc_next_cw_cycle == 1)
{ buf[18] = (buf[18] | 0x80); } // set bit 8 to high
if(client->typ == 'c' && client->account && client->account->cacheex.mode)
{ client->account->cwc_info++; }
else if((client->typ == 'p' || client->typ == 'r') && (client->reader && client->reader->cacheex.mode))
{ client->cwc_info++; }
cs_log_dbg(D_CWC, "CWC (CE1) push to %s cycletime: %isek - nextcwcycle: CW%i for %04X@%06X:%04X", username(client), er->cwc_cycletime, er->cwc_next_cw_cycle, er->caid, er->prid, er->srvid);
buf[19] = er->ecm[0];
}
}
/**
* send own id
*/
void camd35_cacheex_push_send_own_id(struct s_client *cl, uint8_t *mbuf)
{
uint8_t rbuf[32]; //minimal size
if(!cl->crypted) { return; }
cs_log_dbg(D_CACHEEX, "cacheex: received id request from node %" PRIu64 "X %s", cacheex_node_id(mbuf + 20), username(cl));
memset(rbuf, 0, sizeof(rbuf));
rbuf[0] = 0x3e;
rbuf[1] = 12;
rbuf[2] = 0;
memcpy(rbuf + 20, camd35_node_id, 8);
cs_log_dbg(D_CACHEEX, "cacheex: sending own id %" PRIu64 "X request %s", cacheex_node_id(camd35_node_id), username(cl));
camd35_send(cl, rbuf, 12); //send adds +20
}
bool camd35_cacheex_server(struct s_client *client, uint8_t *mbuf)
{
switch(mbuf[0])
{
case 0x3c: // Cache-push filter request
if(client->account && client->account->cacheex.mode==2){
camd35_cacheex_push_filter(client, mbuf, 2);
}
break;
case 0x3d: // Cache-push id request
camd35_cacheex_push_receive_remote_id(client, mbuf); //reader send request id with its nodeid, so we save it!
camd35_cacheex_push_send_own_id(client, mbuf);
if(client->cacheex_needfilter && client->account && client->account->cacheex.mode==3){
camd35_cacheex_send_push_filter(client, 3);
client->cacheex_needfilter = 0;
}
break;
case 0x3e: // Cache-push id answer
camd35_cacheex_push_receive_remote_id(client, mbuf);
break;
case 0x3f: // Cache-push
camd35_cacheex_push_in(client, mbuf);
break;
default:
return 0; // Not processed by cacheex
}
return 1; // Processed by cacheex
}
bool camd35_cacheex_recv_chk(struct s_client *client, uint8_t *buf)
{
struct s_reader *rdr = client->reader;
switch(buf[0])
{
case 0x3c: // Cache-push filter request
if(rdr->cacheex.mode==3){
camd35_cacheex_push_filter(client, buf, 3);
}
break;
case 0x3d: // Cache-push id request
camd35_cacheex_push_receive_remote_id(client, buf); //client send request id with its nodeid, so we save it!
camd35_cacheex_push_send_own_id(client, buf);
break;
case 0x3e: // Cache-push id answer
camd35_cacheex_push_receive_remote_id(client, buf);
break;
case 0x3f: //cache-push
camd35_cacheex_push_in(client, buf);
break;
default:
return 0; // Not processed by cacheex
}
return 1; // Processed by cacheex
}
/**
* request remote id
*/
void camd35_cacheex_push_request_remote_id(struct s_client *cl)
{
uint8_t rbuf[32];//minimal size
memset(rbuf, 0, sizeof(rbuf));
rbuf[0] = 0x3d;
rbuf[1] = 12;
rbuf[2] = 0;
memcpy(rbuf + 20, camd35_node_id, 8);
cs_log_dbg(D_CACHEEX, "cacheex: sending id request to %s", username(cl));
camd35_send(cl, rbuf, 12); //send adds +20
}
void camd35_cacheex_module_init(struct s_module *ph)
{
ph->c_cache_push = camd35_cacheex_push_out;
ph->c_cache_push_chk = camd35_cacheex_push_chk;
ph->s_init = camd35_server_client_init;
}
#endif