blob: 3433d8f8672b68fc9ce3b34a340cbf230bd1c3b3 [file] [log] [blame]
// Copyright 2019 The Chromium OS Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "patchpanel/address_manager.h"
#include <map>
#include <utility>
#include <vector>
#include <arpa/inet.h>
#include "patchpanel/net_util.h"
#include <base/rand_util.h>
#include <gtest/gtest.h>
namespace patchpanel {
TEST(AddressManager, BaseAddresses) {
std::map<AddressManager::Guest, size_t> addrs = {
{AddressManager::Guest::ARC, Ipv4Addr(100, 115, 92, 0)},
{AddressManager::Guest::ARC_NET, Ipv4Addr(100, 115, 92, 4)},
{AddressManager::Guest::VM_TERMINA, Ipv4Addr(100, 115, 92, 24)},
{AddressManager::Guest::VM_PLUGIN, Ipv4Addr(100, 115, 93, 0)},
{AddressManager::Guest::CONTAINER, Ipv4Addr(100, 115, 92, 192)},
{AddressManager::Guest::MINIJAIL_NETNS, Ipv4Addr(100, 115, 92, 128)},
};
AddressManager mgr;
for (const auto a : addrs) {
auto subnet = mgr.AllocateIPv4Subnet(a.first);
ASSERT_TRUE(subnet != nullptr);
// The first address (offset 0) returned by Subnet is not the base address,
// rather it's the first usable IP address... so the base is 1 less.
EXPECT_EQ(a.second, htonl(ntohl(subnet->AddressAtOffset(0)) - 1));
}
}
TEST(AddressManager, AddressesPerSubnet) {
std::map<AddressManager::Guest, size_t> addrs = {
{AddressManager::Guest::ARC, 2},
{AddressManager::Guest::ARC_NET, 2},
{AddressManager::Guest::VM_TERMINA, 2},
{AddressManager::Guest::VM_PLUGIN, 6},
{AddressManager::Guest::CONTAINER, 14},
{AddressManager::Guest::MINIJAIL_NETNS, 2},
};
AddressManager mgr;
for (const auto a : addrs) {
auto subnet = mgr.AllocateIPv4Subnet(a.first);
ASSERT_TRUE(subnet != nullptr);
EXPECT_EQ(a.second, subnet->AvailableCount());
}
}
TEST(AddressManager, SubnetsPerPool) {
std::map<AddressManager::Guest, size_t> addrs = {
{AddressManager::Guest::ARC, 1},
{AddressManager::Guest::ARC_NET, 5},
{AddressManager::Guest::VM_TERMINA, 26},
{AddressManager::Guest::VM_PLUGIN, 32},
{AddressManager::Guest::CONTAINER, 4},
{AddressManager::Guest::MINIJAIL_NETNS, 16},
};
AddressManager mgr;
for (const auto a : addrs) {
std::vector<std::unique_ptr<Subnet>> subnets;
for (size_t i = 0; i < a.second; ++i) {
auto subnet = mgr.AllocateIPv4Subnet(a.first);
EXPECT_TRUE(subnet != nullptr);
subnets.emplace_back(std::move(subnet));
}
auto subnet = mgr.AllocateIPv4Subnet(a.first);
EXPECT_TRUE(subnet == nullptr);
}
}
TEST(AddressManager, SubnetIndexing) {
AddressManager mgr;
EXPECT_FALSE(mgr.AllocateIPv4Subnet(AddressManager::Guest::ARC, 1));
EXPECT_FALSE(mgr.AllocateIPv4Subnet(AddressManager::Guest::ARC_NET, 1));
EXPECT_FALSE(mgr.AllocateIPv4Subnet(AddressManager::Guest::VM_TERMINA, 1));
EXPECT_TRUE(mgr.AllocateIPv4Subnet(AddressManager::Guest::VM_PLUGIN, 1));
EXPECT_FALSE(mgr.AllocateIPv4Subnet(AddressManager::Guest::CONTAINER, 1));
EXPECT_FALSE(
mgr.AllocateIPv4Subnet(AddressManager::Guest::MINIJAIL_NETNS, 1));
}
TEST(AddressManager, StableMacAddresses) {
AddressManager mgr;
EXPECT_NE(mgr.GenerateMacAddress(), mgr.GenerateMacAddress());
EXPECT_NE(mgr.GenerateMacAddress(kAnySubnetIndex),
mgr.GenerateMacAddress(kAnySubnetIndex));
for (int i = 0; i < 100; ++i) {
uint8_t index = 0;
while (index == 0) {
base::RandBytes(&index, 1);
}
EXPECT_EQ(mgr.GenerateMacAddress(index), mgr.GenerateMacAddress(index));
}
}
} // namespace patchpanel