config_parser_unittest.cc 22.7 KB
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// Copyright (C) 2012 Internet Systems Consortium, Inc. ("ISC")
//
// Permission to use, copy, modify, and/or distribute this software for any
// purpose with or without fee is hereby granted, provided that the above
// copyright notice and this permission notice appear in all copies.
//
// THE SOFTWARE IS PROVIDED "AS IS" AND ISC DISCLAIMS ALL WARRANTIES WITH
// REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
// AND FITNESS.  IN NO EVENT SHALL ISC BE LIABLE FOR ANY SPECIAL, DIRECT,
// INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
// LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE
// OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
// PERFORMANCE OF THIS SOFTWARE.

#include <config.h>
#include <iostream>
#include <fstream>
#include <sstream>

#include <arpa/inet.h>
#include <gtest/gtest.h>

#include <dhcp6/dhcp6_srv.h>
#include <dhcp6/config_parser.h>
#include <config/ccsession.h>
#include <dhcp/subnet.h>
#include <dhcp/cfgmgr.h>

using namespace std;
using namespace isc;
using namespace isc::dhcp;
using namespace isc::asiolink;
using namespace isc::data;
using namespace isc::config;

namespace {

class Dhcp6ParserTest : public ::testing::Test {
public:
    Dhcp6ParserTest()
    :rcode_(-1) {
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        // Open port 0 means to not do anything at all. We don't want to
        // deal with sockets here, just check if configuration handling
        // is sane.
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        srv_ = new Dhcpv6Srv(0);
    }

    ~Dhcp6ParserTest() {
        delete srv_;
    };

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    /// @brief Create the simple configuration with single option.
    ///
    /// This function allows to set one of the parameters that configure
    /// option value. These parameters are: "name", "code" and "data".
    ///
    /// @param param_value string holiding option parameter value to be
    /// injected into the configuration string.
    /// @param parameter name of the parameter to be configured with
    /// param value.
    std::string createConfigWithOption(const std::string& param_value,
                                       const std::string& parameter) {
        std::ostringstream stream;
        stream << "{ \"interface\": [ \"all\" ],"
            "\"preferred-lifetime\": 3000,"
            "\"rebind-timer\": 2000, "
            "\"renew-timer\": 1000, "
            "\"subnet6\": [ { "
            "    \"pool\": [ \"2001:db8:1::/80\" ],"
            "    \"subnet\": \"2001:db8:1::/64\", "
            "    \"option-data\": [ {";
        if (parameter == "name") {
            stream <<
                "          \"name\": \"" << param_value << "\","
                "          \"code\": 80,"
                "          \"data\": \"AB CDEF0105\"";
        } else if (parameter == "code") {
            stream <<
                "          \"name\": \"option_foo\","
                "          \"code\": " << param_value << ","
                "          \"data\": \"AB CDEF0105\"";
        } else if (parameter == "data") {
            stream <<
                "          \"name\": \"option_foo\","
                "          \"code\": 80,"
                "          \"data\": \"" << param_value << "\"";
        }
        stream <<
            "        } ]"
            " } ],"
            "\"valid-lifetime\": 4000 }";
        return (stream.str());
    }

    /// @brief Test invalid option parameter value.
    ///
    /// This test function constructs the simple configuration
    /// string and injects invalid option configuration into it.
    /// It expects that parser will fail with provided option code.
    ///
    /// @param param_value string holding invalid option parameter value
    /// to be injected into configuration string.
    /// @param parameter name of the parameter to be configured with
    /// param_value (can be any of "name", "code", "data")
    void testInvalidOptionParam(const std::string& param_value,
                                const std::string& parameter) {
        ConstElementPtr x;
        std::string config = createConfigWithOption(param_value, parameter);
        ElementPtr json = Element::fromJSON(config);
        EXPECT_NO_THROW(x = configureDhcp6Server(*srv_, json));
        ASSERT_TRUE(x);
        comment_ = parseAnswer(rcode_, x);
        ASSERT_EQ(1, rcode_);
    }

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    /// @brief Test option against given code and data.
    ///
    /// @param option_desc option descriptor that carries the option to
    /// be tested.
    /// @param expected_code expected code of the option.
    /// @param expected_data expected data in the option.
    /// @param expected_data_len length of the reference data.
    void testOption(const Subnet::OptionDescriptor& option_desc,
                    uint16_t expected_code, const uint8_t* expected_data,
                    size_t expected_data_len) {
        // Check if option descriptor contains valid option pointer.
        ASSERT_TRUE(option_desc.option);
        // Verify option type.
        EXPECT_EQ(expected_code, option_desc.option->getType());
        // We may have many different option types being created. Some of them
        // have dedicated classes derived from Option class. In such case if
        // we want to verify the option contents against expected_data we have
        // to prepare raw buffer with the contents of the option. The easiest
        // way is to call pack() which will prepare on-wire data.
        util::OutputBuffer buf(option_desc.option->getData().size());
        option_desc.option->pack(buf);
        // The length of the buffer must be at least equal to size of the
        // reference data but it can sometimes be greater than that. This is
        // because some options carry suboptions that increase the overall
        // length.
        ASSERT_GE(buf.getLength() - option_desc.option->getHeaderLen(),
                  expected_data_len);
        // Verify that the data is correct. However do not verify suboptions.
        const uint8_t* data = static_cast<const uint8_t*>(buf.getData());
        EXPECT_TRUE(memcmp(expected_data, data, expected_data_len));
    }

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    Dhcpv6Srv* srv_;
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    int rcode_;
    ConstElementPtr comment_;
};

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// Goal of this test is a verification if a very simple config update
// with just a bumped version number. That's the simplest possible
// config update.
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TEST_F(Dhcp6ParserTest, version) {

    ConstElementPtr x;

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_,
                    Element::fromJSON("{\"version\": 0}")));

    // returned value must be 0 (configuration accepted)
    ASSERT_TRUE(x);
    comment_ = parseAnswer(rcode_, x);
    EXPECT_EQ(0, rcode_);
}

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/// The goal of this test is to verify that the code accepts only
/// valid commands and malformed or unsupported parameters are rejected.
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TEST_F(Dhcp6ParserTest, bogusCommand) {
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    ConstElementPtr x;

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_,
                    Element::fromJSON("{\"bogus\": 5}")));

    // returned value must be 1 (configuration parse error)
    ASSERT_TRUE(x);
    comment_ = parseAnswer(rcode_, x);
    EXPECT_EQ(1, rcode_);
}

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/// The goal of this test is to verify if wrongly defined subnet will
/// be rejected. Properly defined subnet must include at least one
/// pool definition.
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TEST_F(Dhcp6ParserTest, emptySubnet) {
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    ConstElementPtr status;
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    EXPECT_NO_THROW(status = configureDhcp6Server(*srv_,
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                    Element::fromJSON("{ \"interface\": [ \"all\" ],"
                                      "\"preferred-lifetime\": 3000,"
                                      "\"rebind-timer\": 2000, "
                                      "\"renew-timer\": 1000, "
                                      "\"subnet6\": [  ], "
                                      "\"valid-lifetime\": 4000 }")));

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    // returned value should be 0 (success)
    ASSERT_TRUE(status);
    comment_ = parseAnswer(rcode_, status);
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    EXPECT_EQ(0, rcode_);
}

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/// The goal of this test is to verify if defined subnet uses global
/// parameter timer definitions.
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TEST_F(Dhcp6ParserTest, subnetGlobalDefaults) {
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    ConstElementPtr status;
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    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000, "
        "\"renew-timer\": 1000, "
        "\"subnet6\": [ { "
        "    \"pool\": [ \"2001:db8:1::1 - 2001:db8:1::ffff\" ],"
        "    \"subnet\": \"2001:db8:1::/64\" } ],"
        "\"valid-lifetime\": 4000 }";
    cout << config << endl;

    ElementPtr json = Element::fromJSON(config);

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    EXPECT_NO_THROW(status = configureDhcp6Server(*srv_, json));
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    // check if returned status is OK
    ASSERT_TRUE(status);
    comment_ = parseAnswer(rcode_, status);
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    EXPECT_EQ(0, rcode_);

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    // Now check if the configuration was indeed handled and we have
    // expected pool configured.
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    Subnet6Ptr subnet = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet);
    EXPECT_EQ(1000, subnet->getT1());
    EXPECT_EQ(2000, subnet->getT2());
    EXPECT_EQ(3000, subnet->getPreferred());
    EXPECT_EQ(4000, subnet->getValid());
}

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// This test checks if it is possible to override global values
// on a per subnet basis.
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TEST_F(Dhcp6ParserTest, subnetLocal) {
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    ConstElementPtr status;
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    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000, "
        "\"renew-timer\": 1000, "
        "\"subnet6\": [ { "
        "    \"pool\": [ \"2001:db8:1::1 - 2001:db8:1::ffff\" ],"
        "    \"renew-timer\": 1, "
        "    \"rebind-timer\": 2, "
        "    \"preferred-lifetime\": 3,"
        "    \"valid-lifetime\": 4,"
        "    \"subnet\": \"2001:db8:1::/64\" } ],"
        "\"valid-lifetime\": 4000 }";
    cout << config << endl;

    ElementPtr json = Element::fromJSON(config);

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    EXPECT_NO_THROW(status = configureDhcp6Server(*srv_, json));
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    // returned value should be 0 (configuration success)
    ASSERT_TRUE(status);
    comment_ = parseAnswer(rcode_, status);
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    EXPECT_EQ(0, rcode_);

    Subnet6Ptr subnet = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet);
    EXPECT_EQ(1, subnet->getT1());
    EXPECT_EQ(2, subnet->getT2());
    EXPECT_EQ(3, subnet->getPreferred());
    EXPECT_EQ(4, subnet->getValid());
}

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// Test verifies that a subnet with pool values that do not belong to that
// pool are rejected.
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TEST_F(Dhcp6ParserTest, poolOutOfSubnet) {
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    ConstElementPtr status;
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    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000, "
        "\"renew-timer\": 1000, "
        "\"subnet6\": [ { "
        "    \"pool\": [ \"4001:db8:1::/80\" ],"
        "    \"subnet\": \"2001:db8:1::/64\" } ],"
        "\"valid-lifetime\": 4000 }";
    cout << config << endl;

    ElementPtr json = Element::fromJSON(config);

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    EXPECT_NO_THROW(status = configureDhcp6Server(*srv_, json));
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    // returned value must be 2 (values error)
    // as the pool does not belong to that subnet
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    ASSERT_TRUE(status);
    comment_ = parseAnswer(rcode_, status);
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    EXPECT_EQ(2, rcode_);
}

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// Goal of this test is to verify if pools can be defined
// using prefix/length notation. There is no separate test for min-max
// notation as it was tested in several previous tests.
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TEST_F(Dhcp6ParserTest, poolPrefixLen) {
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    ConstElementPtr x;

    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000, "
        "\"renew-timer\": 1000, "
        "\"subnet6\": [ { "
        "    \"pool\": [ \"2001:db8:1::/80\" ],"
        "    \"subnet\": \"2001:db8:1::/64\" } ],"
        "\"valid-lifetime\": 4000 }";
    cout << config << endl;

    ElementPtr json = Element::fromJSON(config);

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_, json));

    // returned value must be 1 (configuration parse error)
    ASSERT_TRUE(x);
    comment_ = parseAnswer(rcode_, x);
    EXPECT_EQ(0, rcode_);

    Subnet6Ptr subnet = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet);
    EXPECT_EQ(1000, subnet->getT1());
    EXPECT_EQ(2000, subnet->getT2());
    EXPECT_EQ(3000, subnet->getPreferred());
    EXPECT_EQ(4000, subnet->getValid());
}

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TEST_F(Dhcp6ParserTest, optionDataDefaults) {
    ConstElementPtr x;
    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000,"
        "\"renew-timer\": 1000,"
        "\"option-data\": [ {"
        "    \"name\": \"option_foo\","
        "    \"code\": 100,"
        "    \"data\": \"AB CDEF0105\""
        " },"
        " {"
        "    \"name\": \"option_foo2\","
        "    \"code\": 101,"
        "    \"data\": \"01\""
        " } ],"
        "\"subnet6\": [ { "
        "    \"pool\": [ \"2001:db8:1::/80\" ],"
        "    \"subnet\": \"2001:db8:1::/64\""
        " } ],"
        "\"valid-lifetime\": 4000 }";

    ElementPtr json = Element::fromJSON(config);

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_, json));
    ASSERT_TRUE(x);
    comment_ = parseAnswer(rcode_, x);
    ASSERT_EQ(0, rcode_);

    Subnet6Ptr subnet = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet);
    const Subnet::OptionContainer& options = subnet->getOptions();
    ASSERT_EQ(2, options.size());

    // Get the search index. Index #1 is to search using option code.
    const Subnet::OptionContainerTypeIndex& idx = options.get<1>();

    // Get the options for specified index. Expecting one option to be
    // returned but in theory we may have multiple options with the same
    // code so we get the range.
    std::pair<Subnet::OptionContainerTypeIndex::const_iterator,
              Subnet::OptionContainerTypeIndex::const_iterator> range =
        idx.equal_range(100);
    // Expect single option with the code equal to 100.
    ASSERT_EQ(1, std::distance(range.first, range.second));
    const uint8_t foo_expected[] = {
        0xAB, 0xCD, 0xEF, 0x01, 0x05
    };
    // Check if option is valid in terms of code and carried data.
    testOption(*range.first, 100, foo_expected, sizeof(foo_expected));

    range = idx.equal_range(101);
    ASSERT_EQ(1, std::distance(range.first, range.second));
    // Do another round of testing with second option.
    const uint8_t foo2_expected[] = {
        0x01
    };
    testOption(*range.first, 101, foo2_expected, sizeof(foo2_expected));
}

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TEST_F(Dhcp6ParserTest, optionDataInSingleSubnet) {
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    ConstElementPtr x;
    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000, "
        "\"renew-timer\": 1000, "
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        "\"option-data\": [ {"
        "      \"name\": \"option_foo\","
        "      \"code\": 100,"
        "      \"data\": \"AB\""
        " } ],"
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        "\"subnet6\": [ { "
        "    \"pool\": [ \"2001:db8:1::/80\" ],"
        "    \"subnet\": \"2001:db8:1::/64\", "
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        "    \"option-data\": [ {"
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        "          \"name\": \"option_foo\","
        "          \"code\": 100,"
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        "          \"data\": \"AB CDEF0105\""
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        "        },"
        "        {"
        "          \"name\": \"option_foo2\","
        "          \"code\": 101,"
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        "          \"data\": \"01\""
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        "        } ]"
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        " } ],"
        "\"valid-lifetime\": 4000 }";

    ElementPtr json = Element::fromJSON(config);

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_, json));
    ASSERT_TRUE(x);
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    comment_ = parseAnswer(rcode_, x);
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    ASSERT_EQ(0, rcode_);
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    Subnet6Ptr subnet = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet);
    const Subnet::OptionContainer& options = subnet->getOptions();
    ASSERT_EQ(2, options.size());
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    // Get the search index. Index #1 is to search using option code.
    const Subnet::OptionContainerTypeIndex& idx = options.get<1>();

    // Get the options for specified index. Expecting one option to be
    // returned but in theory we may have multiple options with the same
    // code so we get the range.
    std::pair<Subnet::OptionContainerTypeIndex::const_iterator,
              Subnet::OptionContainerTypeIndex::const_iterator> range =
        idx.equal_range(100);
    // Expect single option with the code equal to 100.
    ASSERT_EQ(1, std::distance(range.first, range.second));
    const uint8_t foo_expected[] = {
        0xAB, 0xCD, 0xEF, 0x01, 0x05
    };
    // Check if option is valid in terms of code and carried data.
    testOption(*range.first, 100, foo_expected, sizeof(foo_expected));

    range = idx.equal_range(101);
    ASSERT_EQ(1, std::distance(range.first, range.second));
    // Do another round of testing with second option.
    const uint8_t foo2_expected[] = {
        0x01
    };
    testOption(*range.first, 101, foo2_expected, sizeof(foo2_expected));
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}

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TEST_F(Dhcp6ParserTest, optionDataInMultipleSubnets) {
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    ConstElementPtr x;
    string config = "{ \"interface\": [ \"all\" ],"
        "\"preferred-lifetime\": 3000,"
        "\"rebind-timer\": 2000, "
        "\"renew-timer\": 1000, "
        "\"subnet6\": [ { "
        "    \"pool\": [ \"2001:db8:1::/80\" ],"
        "    \"subnet\": \"2001:db8:1::/64\", "
        "    \"option-data\": [ {"
        "          \"name\": \"option_foo\","
        "          \"code\": 100,"
        "          \"data\": \"0102030405060708090A\""
        "        } ]"
        " },"
        " {"
        "    \"pool\": [ \"2001:db8:2::/80\" ],"
        "    \"subnet\": \"2001:db8:2::/64\", "
        "    \"option-data\": [ {"
        "          \"name\": \"option_foo2\","
        "          \"code\": 101,"
        "          \"data\": \"FFFEFDFCFB\""
        "        } ]"
        " } ],"
        "\"valid-lifetime\": 4000 }";

    ElementPtr json = Element::fromJSON(config);

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_, json));
    ASSERT_TRUE(x);
    comment_ = parseAnswer(rcode_, x);
    ASSERT_EQ(0, rcode_);

    Subnet6Ptr subnet1 = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet1);
    const Subnet::OptionContainer& options1 = subnet1->getOptions();
    ASSERT_EQ(1, options1.size());

    // Get the search index. Index #1 is to search using option code.
    const Subnet::OptionContainerTypeIndex& idx1 = options1.get<1>();

    // Get the options for specified index. Expecting one option to be
    // returned but in theory we may have multiple options with the same
    // code so we get the range.
    std::pair<Subnet::OptionContainerTypeIndex::const_iterator,
              Subnet::OptionContainerTypeIndex::const_iterator> range1 =
        idx1.equal_range(100);
    // Expect single option with the code equal to 100.
    ASSERT_EQ(1, std::distance(range1.first, range1.second));
    const uint8_t foo_expected[] = {
        0x01, 0x02, 0x03, 0x04, 0x05,
        0x06, 0x07, 0x08, 0x09, 0x0A
    };
    // Check if option is valid in terms of code and carried data.
    testOption(*range1.first, 100, foo_expected, sizeof(foo_expected));

    // Test another subnet in the same way.
    Subnet6Ptr subnet2 = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:2::4"));
    ASSERT_TRUE(subnet2);
    const Subnet::OptionContainer& options2 = subnet2->getOptions();
    ASSERT_EQ(1, options2.size());

    const Subnet::OptionContainerTypeIndex& idx2 = options2.get<1>();
    std::pair<Subnet::OptionContainerTypeIndex::const_iterator,
              Subnet::OptionContainerTypeIndex::const_iterator> range2 =
        idx2.equal_range(101);
    ASSERT_EQ(1, std::distance(range2.first, range2.second));

    const uint8_t foo2_expected[] = {
        0xFF, 0xFE, 0xFD, 0xFC, 0xFB
    };
    testOption(*range2.first, 101, foo2_expected, sizeof(foo2_expected));
}

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TEST_F(Dhcp6ParserTest, optionNameEmpty) {
    // Empty option names not allowed.
    testInvalidOptionParam("", "name");
}

TEST_F(Dhcp6ParserTest, optionNameSpaces) {
    // Spaces in option names not allowed.
    testInvalidOptionParam("option foo", "name");
}

TEST_F(Dhcp6ParserTest, optionCodeNegativeOverflow) {
    // Using negative code. If range checking is not applied on the
    // value then it may be successfully cast to uint16_t resulting
    // in a value of 65531 (which will be accepted). The code should however
    // detect that it is actually very low negative value and parsing should
    // fail.
    testInvalidOptionParam("-4294901765", "code");
}

TEST_F(Dhcp6ParserTest, optionCodeNegative) {
    // Check negative option code -4. This should fail too.
    testInvalidOptionParam("-4", "code");
}

TEST_F(Dhcp6ParserTest, optionCodeNonUint16) {
    // The valid option codes are uint16_t values so passing
    // uint16_t maximum value incremented by 1 should result
    // in failure.
    testInvalidOptionParam("65536", "code");
}

TEST_F(Dhcp6ParserTest, optionCodeHighNonUint16) {
    // Another check for uint16_t overflow but this time
    // let's pass even greater option code value.
    testInvalidOptionParam("70000", "code");
}

TEST_F(Dhcp6ParserTest, optionCodeZero) {
    // Option code 0 is reserved and should not be accepted
    // by configuration parser.
    testInvalidOptionParam("0", "code");
}

TEST_F(Dhcp6ParserTest, optionDataInvalidChar) {
    // Option code 0 is reserved and should not be accepted
    // by configuration parser.
    testInvalidOptionParam("01020R", "data");
}

TEST_F(Dhcp6ParserTest, optionDataUnexpectedPrefix) {
    // Option code 0 is reserved and should not be accepted
    // by configuration parser.
    testInvalidOptionParam("0x0102", "data");
}

TEST_F(Dhcp6ParserTest, optionDataOddLength) {
    // Option code 0 is reserved and should not be accepted
    // by configuration parser.
    testInvalidOptionParam("123", "data");
}

TEST_F(Dhcp6ParserTest, optionDataLowerCase) {
    ConstElementPtr x;
    std::string config = createConfigWithOption("0a0b0C0D", "data");
    ElementPtr json = Element::fromJSON(config);

    EXPECT_NO_THROW(x = configureDhcp6Server(*srv_, json));
    ASSERT_TRUE(x);
    comment_ = parseAnswer(rcode_, x);
    ASSERT_EQ(0, rcode_);

    Subnet6Ptr subnet = CfgMgr::instance().getSubnet6(IOAddress("2001:db8:1::5"));
    ASSERT_TRUE(subnet);
    const Subnet::OptionContainer& options = subnet->getOptions();
    ASSERT_EQ(1, options.size());

    // Get the search index. Index #1 is to search using option code.
    const Subnet::OptionContainerTypeIndex& idx = options.get<1>();

    // Get the options for specified index. Expecting one option to be
    // returned but in theory we may have multiple options with the same
    // code so we get the range.
    std::pair<Subnet::OptionContainerTypeIndex::const_iterator,
              Subnet::OptionContainerTypeIndex::const_iterator> range =
        idx.equal_range(80);
    // Expect single option with the code equal to 100.
    ASSERT_EQ(1, std::distance(range.first, range.second));
    const uint8_t foo_expected[] = {
        0x0A, 0x0B, 0x0C, 0x0D
    };
    // Check if option is valid in terms of code and carried data.
    testOption(*range.first, 80, foo_expected, sizeof(foo_expected));
}
631

632
};