mirror of
https://github.com/mfontanini/libtins
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168 lines
4.9 KiB
C++
168 lines
4.9 KiB
C++
#include <gtest/gtest.h>
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#include <cstring>
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#include <string>
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#include <iostream>
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#include <stdint.h>
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#include "arp.h"
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#include "utils.h"
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#include "ip_address.h"
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using namespace std;
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using namespace Tins;
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typedef ARP::hwaddress_type address_type;
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class ARPTest : public testing::Test {
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public:
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static const address_type empty_addr;
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static const address_type hw_addr1;
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static const address_type hw_addr2;
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static const string ip_addr1;
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static const uint8_t expected_packet[];
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static const IPv4Address addr1, addr2;
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void test_equals(const ARP &arp1, const ARP &arp2);
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};
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const address_type ARPTest::empty_addr;
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const address_type ARPTest::hw_addr1("13:da:de:f1:01:85");
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const address_type ARPTest::hw_addr2("7a:1f:f4:39:ab:0d");
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const uint8_t ARPTest::expected_packet[] = {
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'\x00', '\x01', '\x08', '\x00', '\x06', '\x04', '\x00', '\x02',
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'\x03', '\xde', '\xf5', '\x12', '\t', '\xfa', '\xc0', '\xa8', '-',
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'\xe7', '\xf5', '\x12', '\xda', 'g', '\xbd', '\r', ' ', '\x9b', 'Q',
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'\xfe'
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};
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const IPv4Address ARPTest::addr1(0x1234), ARPTest::addr2(0xa3f1);
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void ARPTest::test_equals(const ARP &arp1, const ARP &arp2) {
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EXPECT_EQ(arp1.opcode(), arp2.opcode());
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ASSERT_EQ(arp1.hw_addr_length(), arp2.hw_addr_length());
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EXPECT_EQ(arp1.hw_addr_format(), arp2.hw_addr_format());
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ASSERT_EQ(arp1.prot_addr_length(), arp2.prot_addr_length());
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EXPECT_EQ(arp1.prot_addr_format(), arp2.prot_addr_format());
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EXPECT_EQ(arp1.sender_ip_addr(), arp2.sender_ip_addr());
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EXPECT_EQ(arp1.target_ip_addr(), arp2.target_ip_addr());
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EXPECT_EQ(arp1.sender_hw_addr(), arp2.sender_hw_addr());
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EXPECT_EQ(arp1.target_hw_addr(), arp2.target_hw_addr());
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EXPECT_EQ((bool)arp1.inner_pdu(), (bool)arp2.inner_pdu());
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}
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TEST_F(ARPTest, DefaultContructor) {
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ARP arp;
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EXPECT_EQ(arp.target_ip_addr(), IPv4Address());
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EXPECT_EQ(arp.sender_ip_addr(), IPv4Address());
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EXPECT_EQ(arp.target_hw_addr(), empty_addr);
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EXPECT_EQ(arp.target_hw_addr(), empty_addr);
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EXPECT_EQ(arp.pdu_type(), PDU::ARP);
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}
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TEST_F(ARPTest, CopyContructor) {
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ARP arp1(addr1, addr2, hw_addr1, hw_addr2);
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ARP arp2(arp1);
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test_equals(arp1, arp2);
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}
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TEST_F(ARPTest, CopyAssignmentOperator) {
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ARP arp1(addr1, addr2, hw_addr1, hw_addr2);
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ARP arp2 = arp1;
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test_equals(arp1, arp2);
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}
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TEST_F(ARPTest, NestedCopy) {
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ARP *nested_arp = new ARP(addr1, addr2, hw_addr1, hw_addr2);
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ARP arp1(addr1, addr2, hw_addr1, hw_addr2);
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arp1.inner_pdu(nested_arp);
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ARP arp2(arp1);
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test_equals(arp1, arp2);
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}
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TEST_F(ARPTest, CompleteContructor) {
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ARP arp(addr1, addr2, hw_addr1, hw_addr2);
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EXPECT_EQ(arp.target_hw_addr(), hw_addr1);
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EXPECT_EQ(arp.sender_hw_addr(), hw_addr2);
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EXPECT_EQ(arp.target_ip_addr(), addr1);
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EXPECT_EQ(arp.sender_ip_addr(), addr2);
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}
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TEST_F(ARPTest, SenderIPAddrInt) {
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ARP arp;
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arp.sender_ip_addr(addr1);
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EXPECT_EQ(arp.sender_ip_addr(), addr1);
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}
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TEST_F(ARPTest, TargetIPAddrInt) {
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ARP arp;
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arp.target_ip_addr(addr1);
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EXPECT_EQ(arp.target_ip_addr(), addr1);
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}
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TEST_F(ARPTest, TargetHWAddr) {
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ARP arp;
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arp.target_hw_addr(hw_addr1);
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EXPECT_EQ(arp.target_hw_addr(), hw_addr1);
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}
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TEST_F(ARPTest, SenderHWAddr) {
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ARP arp;
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arp.sender_hw_addr(hw_addr1);
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EXPECT_EQ(arp.sender_hw_addr(), hw_addr1);
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}
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TEST_F(ARPTest, ProtAddrFormat) {
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ARP arp;
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arp.prot_addr_format(0x45fa);
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EXPECT_EQ(arp.prot_addr_format(), 0x45fa);
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}
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TEST_F(ARPTest, ProtAddrLength) {
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ARP arp;
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arp.prot_addr_length(0x4f);
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EXPECT_EQ(arp.prot_addr_length(), 0x4f);
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}
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TEST_F(ARPTest, HWAddrFormat) {
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ARP arp;
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arp.hw_addr_format(0x45fa);
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EXPECT_EQ(arp.hw_addr_format(), 0x45fa);
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}
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TEST_F(ARPTest, HWAddrLength) {
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ARP arp;
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arp.hw_addr_length(0xd1);
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EXPECT_EQ(arp.hw_addr_length(), 0xd1);
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}
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TEST_F(ARPTest, Opcode) {
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ARP arp;
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arp.opcode(ARP::REQUEST);
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EXPECT_EQ(arp.opcode(), ARP::REQUEST);
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}
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TEST_F(ARPTest, Serialize) {
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ARP arp1("192.168.0.1", "192.168.0.100", hw_addr1, hw_addr2);
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PDU::serialization_type buffer = arp1.serialize();
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ARP arp2(arp1);
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PDU::serialization_type buffer2 = arp2.serialize();
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EXPECT_EQ(buffer, buffer2);
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}
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TEST_F(ARPTest, ConstructorFromBuffer) {
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ARP arp1(expected_packet, sizeof(expected_packet));
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PDU::serialization_type buffer = arp1.serialize();
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ARP arp2(&buffer[0], buffer.size());
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EXPECT_EQ(arp1.opcode(), arp2.opcode());
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ASSERT_EQ(arp1.hw_addr_length(), arp2.hw_addr_length());
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EXPECT_EQ(arp1.hw_addr_format(), arp2.hw_addr_format());
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ASSERT_EQ(arp1.prot_addr_length(), arp2.prot_addr_length());
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EXPECT_EQ(arp1.prot_addr_format(), arp2.prot_addr_format());
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EXPECT_EQ(arp1.sender_ip_addr(), arp2.sender_ip_addr());
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EXPECT_EQ(arp1.target_ip_addr(), arp2.target_ip_addr());
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EXPECT_EQ(arp1.sender_hw_addr(), arp2.sender_hw_addr());
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EXPECT_EQ(arp1.target_hw_addr(), arp2.target_hw_addr());
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}
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