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/* -*- mode: c++; c-basic-offset: 2; indent-tabs-mode: nil; -*-
* vim:expandtab:shiftwidth=2:tabstop=2:smarttab:
*
* Copyright (C) 2010 Monty Taylor <mordred@inaugust.com>
* Copyright (C) 2011 Canonical, Ltd.
* Author: Clint Byrum <clint.byrum@canonical.com>
*
* Copied from simple_user_policy
*
* This program 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; version 2 of the License.
*
* 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 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 St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include <config.h>
#include <drizzled/plugin/authorization.h>
#include <drizzled/module/option_map.h>
#include "policy.h"
namespace po= boost::program_options;
using namespace std;
using namespace drizzled;
namespace regex_policy
{
static int init(module::Context &context)
{
const module::option_map &vm= context.getOptions();
Policy *policy= new Policy(fs::path(vm["policy"].as<string>()));
if (not policy->loadFile())
{
errmsg_printf(error::ERROR, _("Could not load regex policy file: %s\n"),
(policy ? policy->getError().str().c_str() : _("Unknown")));
delete policy;
return 1;
}
context.add(policy);
context.registerVariable(new sys_var_const_string_val("policy", vm["policy"].as<string>()));
return 0;
}
static void init_options(drizzled::module::option_context &context)
{
context("policy",
po::value<string>()->default_value(DEFAULT_POLICY_FILE.string()),
N_("File to load for regex authorization policies"));
}
bool Policy::loadFile()
{
ifstream file(policy_file.string().c_str());
boost::regex comment_re;
boost::regex empty_re;
boost::regex table_matches_re;
boost::regex process_matches_re;
boost::regex schema_matches_re;
try
{
comment_re= comment_regex;
empty_re= empty_regex;
table_matches_re= table_match_regex;
process_matches_re= process_match_regex;
schema_matches_re= schema_match_regex;
}
catch (const std::exception &e)
{
error << e.what();
return false;
}
if (! file.is_open())
{
error << "Unable to open regex policy file: " << policy_file.string();
return false;
}
int lines= 0;
try
{
while (! file.eof())
{
++lines;
string line;
getline(file, line);
if (boost::regex_match(line, comment_re))
{
continue;
}
if (boost::regex_match(line, empty_re))
{
continue;
}
boost::smatch matches;
PolicyItemList *policies;
if (boost::regex_match(line, matches, table_matches_re, boost::match_extra))
{
policies= &table_policies;
}
else if (boost::regex_match(line, matches, process_matches_re, boost::match_extra))
{
policies= &process_policies;
}
else if (boost::regex_match(line, matches, schema_matches_re, boost::match_extra))
{
policies= &schema_policies;
}
else
{
throw std::exception();
}
string user_regex;
string object_regex;
string action;
user_regex= matches[MATCH_REGEX_USER_POS];
object_regex= matches[MATCH_REGEX_OBJECT_POS];
action= matches[MATCH_REGEX_ACTION_POS];
PolicyItem *i;
try
{
i= new PolicyItem(user_regex, object_regex, action);
}
catch (const std::exception &e)
{
error << "Bad policy item: user=" << user_regex << " object=" << object_regex << " action=" << action;
throw std::exception();
}
policies->push_back(i);
}
return true;
}
catch (const std::exception &e)
{
/* On any non-EOF break, unparseable line */
error << "Unable to parse line " << lines << " of policy file " << policy_file.string() << ":" << e.what();
return false;
}
}
void clearPolicyItemList(PolicyItemList policies)
{
for (PolicyItemList::iterator x= policies.begin() ; x != policies.end() ; ++x)
{
delete *x;
*x= NULL;
}
}
Policy::~Policy()
{
clearPolicyItemList(table_policies);
clearPolicyItemList(process_policies);
clearPolicyItemList(schema_policies);
delete table_check_cache;
delete process_check_cache;
delete schema_check_cache;
}
bool Policy::restrictObject(const drizzled::identifier::User &user_ctx,
const string &obj, const PolicyItemList &policies,
CheckMap **check_cache)
{
CheckItem c(user_ctx.username(), obj, check_cache);
if (!c.hasCachedResult())
{
PolicyItemList::const_iterator m= find_if(policies.begin(), policies.end(), c);
if (m != policies.end())
{
c.setCachedResult((*m)->isRestricted());
}
else
{
/* TODO: make default action configurable */
c.setCachedResult(false);
}
}
return c.getCachedResult();
}
bool Policy::restrictSchema(const drizzled::identifier::User &user_ctx,
const drizzled::identifier::Schema& schema)
{
return restrictObject(user_ctx, schema.getSchemaName(), schema_policies, &schema_check_cache);
}
bool Policy::restrictProcess(const drizzled::identifier::User &user_ctx,
const drizzled::identifier::User &session_ctx)
{
return restrictObject(user_ctx, session_ctx.username(), process_policies, &process_check_cache);
}
bool Policy::restrictTable(const drizzled::identifier::User& user_ctx,
const drizzled::identifier::Table& table)
{
return restrictObject(user_ctx, table.getTableName(), table_policies, &table_check_cache);
}
bool CheckItem::operator()(PolicyItem *p)
{
if (p->userMatches(user))
{
errmsg_printf(error::INSPECT, _("User %s matches regex\n"), user.c_str());
if (p->objectMatches(object))
{
errmsg_printf(error::INSPECT, _("Object %s matches regex %s (%s)\n"),
object.c_str(),
p->getObject().c_str(),
p->getAction());
return true;
}
errmsg_printf(error::INSPECT, _("Object %s NOT restricted by regex %s (%s)\n"),
object.c_str(),
p->getObject().c_str(),
p->getAction());
}
return false;
}
CheckItem::CheckItem(const std::string &user_in, const std::string &obj_in, CheckMap **check_cache_in)
: user(user_in), object(obj_in), has_cached_result(false), check_cache(check_cache_in)
{
CheckMap::iterator check_val;
std::stringstream keystream;
keystream << user << "_" << object;
key= keystream.str();
/* using RCU to only need to lock when updating the cache */
if ((*check_cache) && (check_val= (*check_cache)->find(key)) != (*check_cache)->end())
{
setCachedResult(check_val->second);
}
}
void CheckItem::setCachedResult(bool result)
{
// TODO: make the mutex per-cache
boost::mutex::scoped_lock lock(check_cache_mutex, boost::defer_lock);
lock.lock();
// Copy the current one
CheckMap* new_cache= *check_cache ? new CheckMap(**check_cache) : new CheckMap;
// Update it
(*new_cache)[key]= result;
// Replace old
CheckMap* old_cache= *check_cache;
*check_cache= new_cache;
lock.unlock();
has_cached_result= true;
cached_result= result;
delete old_cache;
}
} /* namespace regex_policy */
DRIZZLE_PLUGIN(regex_policy::init, NULL, regex_policy::init_options);
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