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class_filter.cc
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class_filter.cc
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/*
This file is part of Kismet
Kismet 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.
Kismet 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 Kismet; if not, write to the Free Software
Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
#include "config.h"
#include "fmt.h"
#include "class_filter.h"
#include "util.h"
#include "devicetracker.h"
class_filter::class_filter(const std::string& in_id, const std::string& in_description,
const std::string& in_type) :
tracker_component() {
mutex.set_name("classfilter");
register_fields();
reserve_fields(nullptr);
set_filter_id(in_id);
set_filter_description(in_description);
set_filter_type(in_type);
set_filter_default(false);
base_uri = fmt::format("/filters/class/{}", in_id);
auto url = fmt::format("{}/filter", base_uri);
auto httpd = Globalreg::fetch_mandatory_global_as<kis_net_beast_httpd>();
httpd->register_route(url, {"GET", "POST"}, httpd->RO_ROLE, {},
std::make_shared<kis_net_web_tracked_endpoint>(
[this, url](std::shared_ptr<kis_net_beast_httpd_connection> con) {
return self_endp_handler();
}, mutex));
auto posturl = fmt::format("{}/set_default", base_uri);
httpd->register_route(url, {"POST"}, httpd->LOGON_ROLE, {"cmd"},
std::make_shared<kis_net_web_function_endpoint>(
[this, posturl](std::shared_ptr<kis_net_beast_httpd_connection> con) {
return default_set_endp_handler(con);
}, mutex));
}
void class_filter::default_set_endp_handler(std::shared_ptr<kis_net_beast_httpd_connection> con) {
std::ostream stream(&con->response_stream());
try {
set_filter_default(filterstring_to_bool(con->json()["default"]));
stream << "Default filter: " << get_filter_default() << "\n";
return;
} catch (const std::exception& e) {
con->set_status(500);
stream << "Invalid request: " << e.what() << "\n";
return;
}
con->set_status(500);
stream << "Unhandled request\n";
}
void class_filter::build_self_content(std::shared_ptr<tracker_element_map> content) {
content->insert(filter_id);
content->insert(filter_description);
content->insert(filter_type);
content->insert(filter_default);
}
bool class_filter::filterstring_to_bool(const std::string& str) {
auto cstr = str_lower(str);
if (cstr == "1")
return true;
if (cstr == "true")
return true;
if (cstr == "t")
return true;
if (cstr == "reject")
return true;
if (cstr == "deny")
return true;
if (cstr == "filter")
return true;
if (cstr == "block")
return true;
return false;
}
class_filter_mac_addr::class_filter_mac_addr(const std::string& in_id, const std::string& in_description) :
class_filter(in_id, in_description, "mac_addr") {
register_fields();
reserve_fields(nullptr);
devicetracker = Globalreg::fetch_mandatory_global_as<device_tracker>();
eventbus = Globalreg::fetch_mandatory_global_as<event_bus>();
eb_id =
eventbus->register_listener(device_tracker::event_new_phy(),
[this](std::shared_ptr<eventbus_event> evt) {
update_phy_map(evt);
});
// Set and clear endpoints
auto seturl = fmt::format("/filters/class/{}/:phyname/set_filter", get_filter_id());
auto remurl = fmt::format("/filters/class/{}/:phyname/remove_filter", get_filter_id());
auto httpd = Globalreg::fetch_mandatory_global_as<kis_net_beast_httpd>();
httpd->register_route(seturl, {"POST"}, httpd->LOGON_ROLE, {"cmd"},
std::make_shared<kis_net_web_function_endpoint>(
[this, seturl](std::shared_ptr<kis_net_beast_httpd_connection> con) {
return edit_endp_handler(con);
}, mutex));
httpd->register_route(remurl, {"POST"}, httpd->LOGON_ROLE, {"cmd"},
std::make_shared<kis_net_web_function_endpoint>(
[this, seturl](std::shared_ptr<kis_net_beast_httpd_connection> con) {
return remove_endp_handler(con);
}, mutex));
}
class_filter_mac_addr::~class_filter_mac_addr() {
if (eventbus != nullptr)
eventbus->remove_listener(eb_id);
}
void class_filter_mac_addr::set_filter(mac_addr in_mac, const std::string& in_phy, bool value) {
kis_lock_guard<kis_mutex> lk(mutex, "class_filter_mac_addr set_filter");
// Build the tracked version of the record, building any containers we need along the way, this
// always gets built even for unknown phys
auto tracked_phy_key = filter_phy_block->find(in_phy);
std::shared_ptr<tracker_element_macfilter_map> tracked_mac_map;
if (tracked_phy_key == filter_phy_block->end()) {
tracked_mac_map = std::make_shared<tracker_element_macfilter_map>(filter_sub_mac_id);
filter_phy_block->insert(in_phy, tracked_mac_map);
} else {
tracked_mac_map = tracker_element::safe_cast_as<tracker_element_macfilter_map>(tracked_phy_key->second);
}
auto tracked_mac_key = tracked_mac_map->find(in_mac);
if (tracked_mac_key == tracked_mac_map->end()) {
auto tracked_value = std::make_shared<tracker_element_uint8>(filter_sub_value_id);
tracked_value->set(value);
tracked_mac_map->insert(in_mac, tracked_value);
} else {
auto bool_value = tracker_element::safe_cast_as<tracker_element_uint8>(tracked_mac_key->second);
bool_value->set(value);
}
// Try to build the id-based lookup table
auto phy = devicetracker->fetch_phy_handler_by_name(in_phy);
// Cache unknown for future lookups
if (phy == nullptr) {
unknown_phy_mac_filter_map[in_phy][in_mac] = value;
return;
}
// Set known phy types
phy_mac_filter_map[phy->fetch_phy_id()][in_mac] = value;
}
void class_filter_mac_addr::remove_filter(mac_addr in_mac, const std::string& in_phy) {
kis_lock_guard<kis_mutex> lk(mutex, "class_filter_mac_addr remove_filter");
// Remove it from the tracked version we display
auto tracked_phy_key = filter_phy_block->find(in_phy);
if (tracked_phy_key != filter_phy_block->end()) {
auto tracked_mac_map = tracker_element::safe_cast_as<tracker_element_macfilter_map>(tracked_phy_key->second);
auto tracked_mac_key = tracked_mac_map->find(in_mac);
if (tracked_mac_key != tracked_mac_map->end())
tracked_mac_map->erase(tracked_mac_key);
}
// Remove it from the known and unknown internal tables
auto phy = devicetracker->fetch_phy_handler_by_name(in_phy);
if (phy == nullptr) {
auto unknown_phy = unknown_phy_mac_filter_map.find(in_phy);
if (unknown_phy == unknown_phy_mac_filter_map.end())
return;
auto unknown_match = unknown_phy->second.find(in_mac);
if (unknown_match != unknown_phy->second.end())
unknown_phy->second.erase(unknown_match);
return;
}
auto known_phy = phy_mac_filter_map.find(phy->fetch_phy_id());
if (known_phy == phy_mac_filter_map.end())
return;
auto known_match = known_phy->second.find(in_mac);
if (known_match != known_phy->second.end())
known_phy->second.erase(known_match);
}
void class_filter_mac_addr::update_phy_map(std::shared_ptr<eventbus_event> evt) {
kis_lock_guard<kis_mutex> lk(mutex, "class_filter_mac_addr update_phy_map");
if (unknown_phy_mac_filter_map.size() == 0)
return;
const auto phyname_k =
evt->get_event_content()->find(devicetracker->event_new_phy());
if (phyname_k == evt->get_event_content()->end())
return;
auto phy = devicetracker->fetch_phy_handler_by_name(get_tracker_value<std::string>(phyname_k->second));
if (phy == nullptr)
return;
// Do we have any pending filters that match this key?
auto unknown_key = unknown_phy_mac_filter_map.find(phy->fetch_phy_name());
if (unknown_key == unknown_phy_mac_filter_map.end())
return;
// Copy the map over to the known key
phy_mac_filter_map[phy->fetch_phy_id()] = unknown_key->second;
// Purge the unknown record
unknown_phy_mac_filter_map.erase(unknown_key);
}
void class_filter_mac_addr::edit_endp_handler(std::shared_ptr<kis_net_beast_httpd_connection> con) {
std::ostream stream(&con->response_stream());
try {
auto filter = con->json()["filter"];
if (!filter.is_object()) {
con->set_status(500);
stream << "Expected 'filter' as a dictionary\n";
return;
}
for (const auto& i : filter.items()) {
mac_addr m(i.key());
bool v = i.value();
if (m.state.error) {
const auto e = fmt::format("Invalid MAC address: '{}'", con->escape_html(i.key()));
throw std::runtime_error(e);
}
auto phy_k = con->uri_params().find(":phyname");
set_filter(m, phy_k->second, v);
}
stream << "Set filter\n";
return;
} catch (const std::exception& e) {
con->set_status(500);
stream << "Error handling request: " << e.what() << "\n";
return;
}
con->set_status(500);
stream << "Unhandled request\n";
}
void class_filter_mac_addr::remove_endp_handler(std::shared_ptr<kis_net_beast_httpd_connection> con) {
std::ostream stream(&con->response_stream());
try {
auto filter = con->json()["filter"];
if (!filter.is_array()) {
con->set_status(500);
stream << "Expected 'filter' as an array\n";
return;
}
for (const auto& i : filter) {
mac_addr m(i.get<std::string>());
if (m.state.error) {
const auto e = fmt::format("Invalid MAC address: '{}'", con->escape_html(i));
throw std::runtime_error(e);
}
auto phy_k = con->uri_params().find(":phyname");
remove_filter(m, phy_k->second);
}
stream << "Removed filter\n";
return;
} catch (const std::exception& e) {
con->set_status(500);
stream << "Error handling request: " << e.what() << "\n";
return;
}
con->set_status(500);
stream << "Unhandled request\n";
}
bool class_filter_mac_addr::filter(mac_addr mac, unsigned int phy) {
kis_lock_guard<kis_mutex> lk(mutex, "class_filter_mac_addr filter");
auto pi = phy_mac_filter_map.find(phy);
if (pi == phy_mac_filter_map.end())
return get_filter_default();
auto si = pi->second.find(mac);
if (si == pi->second.end())
return get_filter_default();
return si->second;
}
std::shared_ptr<tracker_element_map> class_filter_mac_addr::self_endp_handler() {
auto ret = std::make_shared<tracker_element_map>();
build_self_content(ret);
return ret;
}
void class_filter_mac_addr::build_self_content(std::shared_ptr<tracker_element_map> content) {
class_filter::build_self_content(content);
content->insert(filter_phy_block);
}