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api.c
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/* Pi-hole: A black hole for Internet advertisements
* (c) 2017 Pi-hole, LLC (https://pi-hole.net)
* Network-wide ad blocking via your own hardware.
*
* FTL Engine
* API Implementation
*
* This file is copyright under the latest version of the EUPL.
* Please see LICENSE file for your rights under this license. */
#include "../FTL.h"
#include "api.h"
#include "../enums.h"
// getstr()
#include "../shmem.h"
// read_setupVarsconf()
#include "../setupVars.h"
// istelnet()
#include "socket.h"
// get_FTL_db_filesize()
#include "../files.h"
// logg()
#include "../log.h"
#include "request.h"
// struct config
#include "../config.h"
// get_sqlite3_version()
#include "../database/common.h"
// get_number_of_queries_in_DB()
#include "../database/query-table.h"
// in_auditlist()
#include "../database/gravity-db.h"
// struct overTime
#include "../overTime.h"
// Version information
#include "../version.h"
// enum REGEX
#include "../regex_r.h"
// get_aliasclient_list()
#include "../database/aliasclients.h"
#define min(a,b) ({ __typeof__ (a) _a = (a); __typeof__ (b) _b = (b); _a < _b ? _a : _b; })
/* qsort comparision function (count field), sort ASC */
static int __attribute__((pure)) cmpasc(const void *a, const void *b)
{
const int *elem1 = (int*)a;
const int *elem2 = (int*)b;
if (elem1[1] < elem2[1])
return -1;
else if (elem1[1] > elem2[1])
return 1;
else
return 0;
}
// qsort subroutine, sort DESC
static int __attribute__((pure)) cmpdesc(const void *a, const void *b)
{
const int *elem1 = (int*)a;
const int *elem2 = (int*)b;
if (elem1[1] > elem2[1])
return -1;
else if (elem1[1] < elem2[1])
return 1;
else
return 0;
}
void getStats(const int *sock)
{
const int blocked = counters->blocked;
const int total = counters->queries;
float percentage = 0.0f;
// Avoid 1/0 condition
if(total > 0)
percentage = 1e2f*blocked/total;
// Send domains being blocked
if(istelnet[*sock]) {
ssend(*sock, "domains_being_blocked %i\n", counters->gravity);
}
else
pack_int32(*sock, counters->gravity);
// unique_clients: count only clients that have been active within the most recent 24 hours
int activeclients = 0;
for(int clientID=0; clientID < counters->clients; clientID++)
{
// Get client pointer
const clientsData* client = getClient(clientID, true);
if(client == NULL)
continue;
if(client->count > 0)
activeclients++;
}
if(istelnet[*sock]) {
ssend(*sock, "dns_queries_today %i\nads_blocked_today %i\nads_percentage_today %f\n",
total, blocked, percentage);
ssend(*sock, "unique_domains %i\nqueries_forwarded %i\nqueries_cached %i\n",
counters->domains, counters->forwarded, counters->cached);
ssend(*sock, "clients_ever_seen %i\n", counters->clients);
ssend(*sock, "unique_clients %i\n", activeclients);
// Sum up all query types (A, AAAA, ANY, SRV, SOA, ...)
int sumalltypes = 0;
for(int queryType=0; queryType < TYPE_MAX-1; queryType++)
{
sumalltypes += counters->querytype[queryType];
}
ssend(*sock, "dns_queries_all_types %i\n", sumalltypes);
// Send individual reply type counters
ssend(*sock, "reply_NODATA %i\nreply_NXDOMAIN %i\nreply_CNAME %i\nreply_IP %i\n",
counters->reply_NODATA, counters->reply_NXDOMAIN, counters->reply_CNAME, counters->reply_IP);
ssend(*sock, "privacy_level %i\n", config.privacylevel);
}
else
{
pack_int32(*sock, total);
pack_int32(*sock, blocked);
pack_float(*sock, percentage);
pack_int32(*sock, counters->domains);
pack_int32(*sock, counters->forwarded);
pack_int32(*sock, counters->cached);
pack_int32(*sock, counters->clients);
pack_int32(*sock, activeclients);
}
// Send status
if(istelnet[*sock]) {
ssend(*sock, "status %s\n", blockingstatus ? "enabled" : "disabled");
}
else
pack_uint8(*sock, blockingstatus);
}
void getOverTime(const int *sock)
{
int from = 0, until = OVERTIME_SLOTS;
bool found = false;
time_t mintime = overTime[0].timestamp;
// Start with the first non-empty overTime slot
for(int slot = 0; slot < OVERTIME_SLOTS; slot++)
{
if((overTime[slot].total > 0 || overTime[slot].blocked > 0) &&
overTime[slot].timestamp >= mintime)
{
from = slot;
found = true;
break;
}
}
// End with last non-empty overTime slot
for(int slot = 0; slot < OVERTIME_SLOTS; slot++)
{
if(overTime[slot].timestamp >= time(NULL))
{
until = slot;
break;
}
}
// Check if there is any data to be sent
if(!found)
return;
if(istelnet[*sock])
{
for(int slot = from; slot < until; slot++)
{
ssend(*sock,"%lli %i %i\n",
(long long)overTime[slot].timestamp,
overTime[slot].total,
overTime[slot].blocked);
}
}
else
{
// We can use the map16 type because there should only be about 288 time slots (TIMEFRAME set to "yesterday")
// and map16 can hold up to (2^16)-1 = 65535 pairs
// Send domains over time
pack_map16_start(*sock, (uint16_t) (until - from));
for(int slot = from; slot < until; slot++) {
pack_int32(*sock, (int32_t)overTime[slot].timestamp);
pack_int32(*sock, overTime[slot].total);
}
// Send ads over time
pack_map16_start(*sock, (uint16_t) (until - from));
for(int slot = from; slot < until; slot++) {
pack_int32(*sock, (int32_t)overTime[slot].timestamp);
pack_int32(*sock, overTime[slot].blocked);
}
}
}
void getTopDomains(const char *client_message, const int *sock)
{
int temparray[counters->domains][2], count=10, num;
bool audit = false, asc = false;
const bool blocked = command(client_message, ">top-ads");
// Exit before processing any data if requested via config setting
get_privacy_level(NULL);
if(config.privacylevel >= PRIVACY_HIDE_DOMAINS) {
// Always send the total number of domains, but pretend it's 0
if(!istelnet[*sock])
pack_int32(*sock, 0);
return;
}
// Match both top-domains and top-ads
// example: >top-domains (15)
if(sscanf(client_message, "%*[^(](%i)", &num) > 0) {
// User wants a different number of requests
count = num;
}
// Apply Audit Log filtering?
// example: >top-domains for audit
if(command(client_message, " for audit"))
audit = true;
// Sort in ascending order?
// example: >top-domains asc
if(command(client_message, " asc"))
asc = true;
for(int domainID=0; domainID < counters->domains; domainID++)
{
// Get domain pointer
const domainsData* domain = getDomain(domainID, true);
if(domain == NULL)
continue;
temparray[domainID][0] = domainID;
if(blocked)
temparray[domainID][1] = domain->blockedcount;
else
// Count only permitted queries
temparray[domainID][1] = (domain->count - domain->blockedcount);
}
// Sort temporary array
if(asc)
qsort(temparray, counters->domains, sizeof(int[2]), cmpasc);
else
qsort(temparray, counters->domains, sizeof(int[2]), cmpdesc);
// Get filter
const char* filter = read_setupVarsconf("API_QUERY_LOG_SHOW");
bool showpermitted = true, showblocked = true;
if(filter != NULL)
{
if((strcmp(filter, "permittedonly")) == 0)
showblocked = false;
else if((strcmp(filter, "blockedonly")) == 0)
showpermitted = false;
else if((strcmp(filter, "nothing")) == 0)
{
showpermitted = false;
showblocked = false;
}
}
clearSetupVarsArray();
// Get domains which the user doesn't want to see
char * excludedomains = NULL;
if(!audit)
{
excludedomains = read_setupVarsconf("API_EXCLUDE_DOMAINS");
if(excludedomains != NULL)
{
getSetupVarsArray(excludedomains);
}
}
if(!istelnet[*sock])
{
// Send the data required to get the percentage each domain has been blocked / queried
if(blocked)
pack_int32(*sock, counters->blocked);
else
pack_int32(*sock, counters->queries);
}
int n = 0;
for(int i=0; i < counters->domains; i++)
{
// Get sorted index
const int domainID = temparray[i][0];
// Get domain pointer
const domainsData* domain = getDomain(domainID, true);
if(domain == NULL)
continue;
// Skip this domain if there is a filter on it
if(excludedomains != NULL && insetupVarsArray(getstr(domain->domainpos)))
continue;
// Skip this domain if already audited
if(audit && in_auditlist(getstr(domain->domainpos)) > 0)
{
if(config.debug & DEBUG_API)
logg("API: %s has been audited.", getstr(domain->domainpos));
continue;
}
// Hidden domain, probably due to privacy level. Skip this in the top lists
if(strcmp(getstr(domain->domainpos), HIDDEN_DOMAIN) == 0)
continue;
if(blocked && showblocked && domain->blockedcount > 0)
{
if(istelnet[*sock])
ssend(*sock, "%i %i %s\n", n, domain->blockedcount, getstr(domain->domainpos));
else {
if(!pack_str32(*sock, getstr(domain->domainpos)))
return;
pack_int32(*sock, domain->blockedcount);
}
n++;
}
else if(!blocked && showpermitted && (domain->count - domain->blockedcount) > 0)
{
if(istelnet[*sock])
ssend(*sock,"%i %i %s\n",n,(domain->count - domain->blockedcount),getstr(domain->domainpos));
else
{
if(!pack_str32(*sock, getstr(domain->domainpos)))
return;
pack_int32(*sock, domain->count - domain->blockedcount);
}
n++;
}
// Only count entries that are actually sent and return when we have send enough data
if(n == count)
break;
}
if(excludedomains != NULL)
clearSetupVarsArray();
}
void getTopClients(const char *client_message, const int *sock)
{
int temparray[counters->clients][2], count=10, num;
// Exit before processing any data if requested via config setting
get_privacy_level(NULL);
if(config.privacylevel >= PRIVACY_HIDE_DOMAINS_CLIENTS) {
// Always send the total number of clients, but pretend it's 0
if(!istelnet[*sock])
pack_int32(*sock, 0);
return;
}
// Match both top-domains and top-ads
// example: >top-clients (15)
if(sscanf(client_message, "%*[^(](%i)", &num) > 0) {
// User wants a different number of requests
count = num;
}
// Show also clients which have not been active recently?
// This option can be combined with existing options,
// i.e. both >top-clients withzero" and ">top-clients withzero (123)" are valid
bool includezeroclients = false;
if(command(client_message, " withzero"))
includezeroclients = true;
// Show number of blocked queries instead of total number?
// This option can be combined with existing options,
// i.e. ">top-clients withzero blocked (123)" would be valid
bool blockedonly = false;
if(command(client_message, " blocked"))
blockedonly = true;
for(int clientID = 0; clientID < counters->clients; clientID++)
{
// Get client pointer
const clientsData* client = getClient(clientID, true);
// Skip invalid clients and also those managed by alias clients
if(client == NULL || (!client->flags.aliasclient && client->aliasclient_id >= 0))
{
temparray[clientID][0] = -1;
continue;
}
temparray[clientID][0] = clientID;
// Use either blocked or total count based on request string
temparray[clientID][1] = blockedonly ? client->blockedcount : client->count;
}
// Sort in ascending order?
// example: >top-clients asc
bool asc = false;
if(command(client_message, " asc"))
asc = true;
// Sort temporary array
if(asc)
qsort(temparray, counters->clients, sizeof(int[2]), cmpasc);
else
qsort(temparray, counters->clients, sizeof(int[2]), cmpdesc);
// Get clients which the user doesn't want to see
const char* excludeclients = read_setupVarsconf("API_EXCLUDE_CLIENTS");
if(excludeclients != NULL)
{
getSetupVarsArray(excludeclients);
}
if(!istelnet[*sock])
{
// Send the total queries so they can make percentages from this data
pack_int32(*sock, counters->queries);
}
int n = 0;
for(int i=0; i < counters->clients; i++)
{
// Get sorted indices and counter values (may be either total or blocked count)
const int clientID = temparray[i][0];
const int ccount = temparray[i][1];
// clientID -1 means this client is to be skipped (managed by a alias-client)
if(clientID < 0)
continue;
// Get client pointer
const clientsData* client = getClient(clientID, true);
// Skip invalid clients
if(client == NULL)
continue;
// Skip this client if there is a filter on it
if(excludeclients != NULL &&
(insetupVarsArray(getstr(client->ippos)) || insetupVarsArray(getstr(client->namepos))))
continue;
// Hidden client, probably due to privacy level. Skip this in the top lists
if(strcmp(getstr(client->ippos), HIDDEN_CLIENT) == 0)
continue;
// Get client IP and name
const char *client_ip = getstr(client->ippos);
const char *client_name = getstr(client->namepos);
// Return this client if either
// - "withzero" option is set, and/or
// - the client made at least one query within the most recent 24 hours
if(includezeroclients || ccount > 0)
{
if(istelnet[*sock])
ssend(*sock,"%i %i %s %s\n", n, ccount, client_ip, client_name);
else
{
if(!pack_str32(*sock, "") || !pack_str32(*sock, client_ip))
return;
pack_int32(*sock, ccount);
}
n++;
}
if(n == count)
break;
}
if(excludeclients != NULL)
clearSetupVarsArray();
}
void getUpstreamDestinations(const char *client_message, const int *sock)
{
bool sort = true;
int temparray[counters->upstreams][2], totalqueries = 0;
if(command(client_message, "unsorted"))
sort = false;
for(int upstreamID = 0; upstreamID < counters->upstreams; upstreamID++)
{
// If we want to print a sorted output, we fill the temporary array with
// the values we will use for sorting afterwards
if(sort) {
// Get forward pointer
const upstreamsData* forward = getUpstream(upstreamID, true);
if(forward == NULL)
continue;
temparray[upstreamID][0] = upstreamID;
temparray[upstreamID][1] = forward->count;
}
}
if(sort)
{
// Sort temporary array in descending order
qsort(temparray, counters->upstreams, sizeof(int[2]), cmpdesc);
}
totalqueries = counters->forwarded + counters->cached + counters->blocked;
// Loop over available forward destinations
for(int i = -2; i < min(counters->upstreams, 8); i++)
{
float percentage = 0.0f;
const char* ip, *name;
in_port_t upstream_port = 0;
if(i == -2)
{
// Blocked queries (local lists)
ip = "blocklist";
name = ip;
if(totalqueries > 0)
// Whats the percentage of locked queries on the total amount of queries?
percentage = 1e2f * counters->blocked / totalqueries;
}
else if(i == -1)
{
// Local cache
ip = "cache";
name = ip;
if(totalqueries > 0)
// Whats the percentage of cached queries on the total amount of queries?
percentage = 1e2f * counters->cached / totalqueries;
}
else
{
// Regular upstream destination
// Get sorted indices
int upstreamID;
if(sort)
upstreamID = temparray[i][0];
else
upstreamID = i;
// Get upstream pointer
const upstreamsData* upstream = getUpstream(upstreamID, true);
if(upstream == NULL)
continue;
// Get IP and host name of upstream destination if available
ip = getstr(upstream->ippos);
if(upstream->namepos != 0)
name = getstr(upstream->namepos);
else
name = getstr(upstream->ippos);
upstream_port = upstream->port;
// Get percentage
if(totalqueries > 0)
percentage = 1e2f * upstream->count / totalqueries;
}
// Send data:
// - always if i < 0 (special upstreams: blocklist and cache)
// - only if percentage > 0.0 for all others (i > 0)
if(percentage > 0.0f || i < 0)
{
if(istelnet[*sock])
if(upstream_port != 0)
ssend(*sock, "%i %.2f %s#%u %s#%u\n", i, percentage,
ip, upstream_port, name, upstream_port);
else
ssend(*sock, "%i %.2f %s %s\n", i, percentage, ip, name);
else
{
if(!pack_str32(*sock, name) || !pack_str32(*sock, ip))
return;
pack_float(*sock, percentage);
}
}
}
}
void getQueryTypes(const int *sock)
{
int total = 0;
for(enum query_types type = TYPE_A; type < TYPE_MAX; type++)
{
total += counters->querytype[type - 1];
}
float percentage[TYPE_MAX] = { 0.0 };
// Prevent floating point exceptions by checking if the divisor is != 0
if(total > 0)
{
for(enum query_types type = TYPE_A; type < TYPE_MAX; type++)
{
percentage[type] = 1e2f*counters->querytype[type - 1]/total;
}
}
if(istelnet[*sock]) {
ssend(*sock, "A (IPv4): %.2f\nAAAA (IPv6): %.2f\nANY: %.2f\nSRV: %.2f\n"
"SOA: %.2f\nPTR: %.2f\nTXT: %.2f\nNAPTR: %.2f\n"
"MX: %.2f\nDS: %.2f\nRRSIG: %.2f\nDNSKEY: %.2f\n"
"NS: %.2f\n" "OTHER: %.2f\n\nSVCB: %.2f\nHTTPS: %.2f\n",
percentage[TYPE_A], percentage[TYPE_AAAA], percentage[TYPE_ANY], percentage[TYPE_SRV],
percentage[TYPE_SOA], percentage[TYPE_PTR], percentage[TYPE_TXT], percentage[TYPE_NAPTR],
percentage[TYPE_MX], percentage[TYPE_DS], percentage[TYPE_RRSIG], percentage[TYPE_DNSKEY],
percentage[TYPE_NS], percentage[TYPE_OTHER], percentage[TYPE_SVCB], percentage[TYPE_HTTPS]);
}
else {
pack_str32(*sock, "A (IPv4)");
pack_float(*sock, percentage[TYPE_A]);
pack_str32(*sock, "AAAA (IPv6)");
pack_float(*sock, percentage[TYPE_AAAA]);
pack_str32(*sock, "ANY");
pack_float(*sock, percentage[TYPE_ANY]);
pack_str32(*sock, "SRV");
pack_float(*sock, percentage[TYPE_SRV]);
pack_str32(*sock, "SOA");
pack_float(*sock, percentage[TYPE_SOA]);
pack_str32(*sock, "PTR");
pack_float(*sock, percentage[TYPE_PTR]);
pack_str32(*sock, "TXT");
pack_float(*sock, percentage[TYPE_TXT]);
pack_str32(*sock, "NAPTR");
pack_float(*sock, percentage[TYPE_NAPTR]);
pack_str32(*sock, "MX");
pack_float(*sock, percentage[TYPE_MX]);
pack_str32(*sock, "DS");
pack_float(*sock, percentage[TYPE_DS]);
pack_str32(*sock, "RRSIG");
pack_float(*sock, percentage[TYPE_RRSIG]);
pack_str32(*sock, "DNSKEY");
pack_float(*sock, percentage[TYPE_DNSKEY]);
pack_str32(*sock, "NS");
pack_float(*sock, percentage[TYPE_NS]);
pack_str32(*sock, "OTHER");
pack_float(*sock, percentage[TYPE_OTHER]);
pack_str32(*sock, "SVCB");
pack_float(*sock, percentage[TYPE_SVCB]);
pack_str32(*sock, "HTTPS");
pack_float(*sock, percentage[TYPE_HTTPS]);
}
}
void getAllQueries(const char *client_message, const int *sock)
{
// Exit before processing any data if requested via config setting
get_privacy_level(NULL);
if(config.privacylevel >= PRIVACY_MAXIMUM)
return;
// Do we want a more specific version of this command (domain/client/time interval filtered)?
int from = 0, until = 0;
bool showpermitted = true, showblocked = true;
char *domainname = NULL;
bool filterdomainname = false;
int domainid = -1;
char *clientname = NULL;
bool filterclientname = false;
int clientid = -1;
int *clientid_list = NULL;
unsigned char querytype = 0;
char *forwarddest = NULL;
bool filterforwarddest = false;
int forwarddestid = 0;
// Time filtering?
if(command(client_message, ">getallqueries-time")) {
sscanf(client_message, ">getallqueries-time %i %i",&from, &until);
}
// Query type filtering?
if(command(client_message, ">getallqueries-qtype")) {
// Get query type we want to see only
unsigned int qtype = 0;
sscanf(client_message, ">getallqueries-qtype %u", &qtype);
if(qtype < TYPE_A || qtype >= TYPE_MAX)
{
// Invalid query type requested
return;
}
querytype = qtype;
}
// Forward destination filtering?
if(command(client_message, ">getallqueries-forward")) {
// Get forward destination name we want to see only (limit length to 255 chars)
forwarddest = calloc(256, sizeof(char));
if(forwarddest == NULL) return;
sscanf(client_message, ">getallqueries-forward %255s", forwarddest);
filterforwarddest = true;
if(strcmp(forwarddest, "cache") == 0)
forwarddestid = -1;
else if(strcmp(forwarddest, "blocklist") == 0)
forwarddestid = -2;
else
{
// Extract address/name and port
char serv_addr[INET6_ADDRSTRLEN] = { 0 };
unsigned int serv_port = 53;
// We limit the number of bytes written into the serv_addr buffer
// to prevent buffer overflows. If there is no port available in
// the database, we skip extracting them and use the default port
sscanf(forwarddest, "%"xstr(INET6_ADDRSTRLEN)"[^#]#%u", serv_addr, &serv_port);
serv_addr[INET6_ADDRSTRLEN-1] = '\0';
// Iterate through all known forward destinations
forwarddestid = -3;
for(int i = 0; i < counters->upstreams; i++)
{
// Get forward pointer
const upstreamsData* forward = getUpstream(i, true);
if(forward == NULL)
continue;
// Try to match the requested string against their IP addresses and
// (if available) their host names
if((strcmp(getstr(forward->ippos), serv_addr) == 0 ||
(forward->namepos != 0 &&
strcasecmp(getstr(forward->namepos), serv_addr) == 0)) && forward->port == serv_port)
{
forwarddestid = i;
break;
}
}
if(forwarddestid < 0)
{
// Requested forward destination has not been found, we directly
// exit here as there is no data to be returned
free(forwarddest);
return;
}
}
}
// Domain filtering?
if(command(client_message, ">getallqueries-domain")) {
// Get domain name we want to see only (limit length to 255 chars)
domainname = calloc(256, sizeof(char));
if(domainname == NULL) return;
sscanf(client_message, ">getallqueries-domain %255s", domainname);
filterdomainname = true;
// Iterate through all known domains
for(int domainID = 0; domainID < counters->domains; domainID++)
{
// Get domain pointer
const domainsData* domain = getDomain(domainID, true);
if(domain == NULL)
continue;
// Try to match the requested string
if(strcmp(getstr(domain->domainpos), domainname) == 0)
{
domainid = domainID;
break;
}
}
if(domainid < 0)
{
// Requested domain has not been found, we directly
// exit here as there is no data to be returned
free(domainname);
return;
}
}
// Client filtering?
if(command(client_message, ">getallqueries-client")) {
// Get client name we want to see only (limit length to 255 chars)
clientname = calloc(256, sizeof(char));
if(clientname == NULL) return;
if(command(client_message, ">getallqueries-client-blocked"))
{
showpermitted = false;
sscanf(client_message, ">getallqueries-client-blocked %255s", clientname);
}
else
{
sscanf(client_message, ">getallqueries-client %255s", clientname);
}
filterclientname = true;
// Iterate through all known clients
for(int i = 0; i < counters->clients; i++)
{
// Get client pointer
const clientsData* client = getClient(i, true);
// Skip invalid clients and also those managed by alias clients
if(client == NULL || client->aliasclient_id >= 0)
continue;
// Try to match the requested string
if(strcmp(getstr(client->ippos), clientname) == 0 ||
(client->namepos != 0 &&
strcasecmp(getstr(client->namepos), clientname) == 0))
{
clientid = i;
// Is this a alias-client?
if(client->flags.aliasclient)
clientid_list = get_aliasclient_list(i);
break;
}
}
if(clientid == -1)
{
// Requested client has not been found, we directly
// exit here as there is no data to be returned
free(clientname);
return;
}
}
int ibeg = 0, num;
// Test for integer that specifies number of entries to be shown
if(sscanf(client_message, "%*[^(](%i)", &num) > 0)
{
// User wants a different number of requests
// Don't allow a start index that is smaller than zero
ibeg = counters->queries-num;
if(ibeg < 0)
ibeg = 0;
}
// Get potentially existing filtering flags
char * filter = read_setupVarsconf("API_QUERY_LOG_SHOW");
if(filter != NULL)
{
if((strcmp(filter, "permittedonly")) == 0)
showblocked = false;
else if((strcmp(filter, "blockedonly")) == 0)
showpermitted = false;
else if((strcmp(filter, "nothing")) == 0)
{
showpermitted = false;
showblocked = false;
}
}
clearSetupVarsArray();
for(int queryID = ibeg; queryID < counters->queries; queryID++)
{
const queriesData* query = getQuery(queryID, true);
// Check if this query has been create while in maximum privacy mode
if(query == NULL || query->privacylevel >= PRIVACY_MAXIMUM)
continue;
// Verify query type
if(query->type >= TYPE_MAX)
continue;
// Get query type
const char *qtype = querytypes[query->type];
char othertype[12] = { 0 }; // Maximum is "TYPE65535" = 10 bytes
if(query->type == TYPE_OTHER)
{
// Format custom type into buffer
sprintf(othertype, "TYPE%u", query->qtype);
// Replace qtype pointer
qtype = othertype;
}
// Hide UNKNOWN queries when not requesting both query status types
if(query->status == QUERY_UNKNOWN && !(showpermitted && showblocked))
continue;
// Skip blocked queries when asked to
if(query->flags.blocked && !showblocked)
continue;
// Skip permitted queries when asked to
if(!query->flags.blocked && !showpermitted)
continue;
// Skip those entries which so not meet the requested timeframe
if((from > query->timestamp && from != 0) || (query->timestamp > until && until != 0))
continue;
// Skip if domain is not identical with what the user wants to see
if(filterdomainname)
{
// Check direct match
if(query->domainID == domainid)
{
// Get this query
}
// If the domain of this query did not match, the CNAME
// domain may still match - we have to check it in
// addition if this query is of CNAME blocked type
else if(query->CNAME_domainID > -1)
{
// Get this query
}
else
{
// Skip this query
continue;
}
}
// Skip if client name and IP are not identical with what the user wants to see
if(filterclientname)
{
// Normal clients
if(clientid_list == NULL && query->clientID != clientid)
continue;
// Alias-clients (we have to check for all clients managed by this alias-client)
else if(clientid_list != NULL)
{
bool found = false;
for(int i = 0; i < clientid_list[0]; i++)
if(query->clientID == clientid_list[i + 1])
found = true;
if(!found)
continue;
}
}
// Skip if query type is not identical with what the user wants to see
if(querytype != 0 && querytype != query->type)
continue;
if(filterforwarddest)
{
// Skip if not from the virtual blocking "upstream" server
if(forwarddestid == -2 && !query->flags.blocked)
continue;
// Does the user want to see queries answered from local cache?
else if(forwarddestid == -1 && query->status != QUERY_CACHE)
continue;
// Does the user want to see queries answered by an upstream server?
else if(forwarddestid >= 0 && forwarddestid != query->upstreamID)
continue;
}
// Ask subroutine for domain. It may return "hidden" depending on
// the privacy settings at the time the query was made
const char *domain = getDomainString(query);
// Similarly for the client
const char *clientIPName = NULL;
// Get client pointer
const clientsData* client = getClient(query->clientID, true);
if(domain == NULL || client == NULL)
continue;
if(strlen(getstr(client->namepos)) > 0)
clientIPName = getClientNameString(query);
else
clientIPName = getClientIPString(query);
unsigned long delay = query->response;
// Check if received (delay should be smaller than 30min)
if(delay > 1.8e7)
delay = 0;
// Get domain blocked during deep CNAME inspection, if applicable
const char *CNAME_domain = "N/A";
if(query->CNAME_domainID > -1)
{
CNAME_domain = getCNAMEDomainString(query);
}
// Get ID of blocking regex, if applicable and permitted by privacy settings
int regex_idx = -1;
if ((query->status == QUERY_REGEX || query->status == QUERY_REGEX_CNAME) &&
config.privacylevel < PRIVACY_HIDE_DOMAINS)
{
unsigned int cacheID = findCacheID(query->domainID, query->clientID, query->type);
DNSCacheData *dns_cache = getDNSCache(cacheID, true);
if(dns_cache != NULL)
regex_idx = dns_cache->black_regex_idx;
}