2023-07-25 11:53:09 +02:00
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#include "group_moderation.h"
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#include <gtest/gtest.h>
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#include <algorithm>
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#include <array>
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#include <vector>
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#include "crypto_core.h"
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#include "logger.h"
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#include "util.h"
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namespace {
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using ExtPublicKey = std::array<uint8_t, EXT_PUBLIC_KEY_SIZE>;
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using ExtSecretKey = std::array<uint8_t, EXT_SECRET_KEY_SIZE>;
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using ModerationHash = std::array<uint8_t, MOD_MODERATION_HASH_SIZE>;
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TEST(ModList, PackedSizeOfEmptyModListIsZero)
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{
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Moderation mods{system_memory()};
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EXPECT_EQ(mod_list_packed_size(&mods), 0);
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uint8_t byte = 1;
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mod_list_pack(&mods, &byte);
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EXPECT_EQ(byte, 1);
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}
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TEST(ModList, UnpackingZeroSizeArrayIsNoop)
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{
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Moderation mods{system_memory()};
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const uint8_t byte = 1;
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EXPECT_EQ(mod_list_unpack(&mods, &byte, 0, 0), 0);
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}
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TEST(ModList, AddRemoveMultipleMods)
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{
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Moderation mods{system_memory()};
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uint8_t sig_pk1[32] = {1};
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uint8_t sig_pk2[32] = {2};
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EXPECT_TRUE(mod_list_add_entry(&mods, sig_pk1));
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EXPECT_TRUE(mod_list_add_entry(&mods, sig_pk2));
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EXPECT_TRUE(mod_list_remove_entry(&mods, sig_pk1));
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EXPECT_TRUE(mod_list_remove_entry(&mods, sig_pk2));
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}
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TEST(ModList, PackingAndUnpackingList)
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{
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using ModListEntry = std::array<uint8_t, MOD_LIST_ENTRY_SIZE>;
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Moderation mods{system_memory()};
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EXPECT_TRUE(mod_list_add_entry(&mods, ModListEntry{}.data()));
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std::vector<uint8_t> packed(mod_list_packed_size(&mods));
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mod_list_pack(&mods, packed.data());
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EXPECT_TRUE(mod_list_remove_entry(&mods, ModListEntry{}.data()));
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Moderation mods2{system_memory()};
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EXPECT_EQ(mod_list_unpack(&mods2, packed.data(), packed.size(), 1), packed.size());
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EXPECT_TRUE(mod_list_remove_entry(&mods2, ModListEntry{}.data()));
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}
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TEST(ModList, UnpackingTooManyModsFails)
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{
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using ModListEntry = std::array<uint8_t, MOD_LIST_ENTRY_SIZE>;
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Moderation mods{system_memory()};
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EXPECT_TRUE(mod_list_add_entry(&mods, ModListEntry{}.data()));
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std::vector<uint8_t> packed(mod_list_packed_size(&mods));
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mod_list_pack(&mods, packed.data());
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Moderation mods2{system_memory()};
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EXPECT_EQ(mod_list_unpack(&mods2, packed.data(), packed.size(), 2), -1);
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EXPECT_TRUE(mod_list_remove_entry(&mods, ModListEntry{}.data()));
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}
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TEST(ModList, UnpackingFromEmptyBufferFails)
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{
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std::vector<uint8_t> packed(1);
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Moderation mods{system_memory()};
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EXPECT_EQ(mod_list_unpack(&mods, packed.data(), 0, 1), -1);
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}
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TEST(ModList, HashOfEmptyModListZeroesOutBuffer)
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{
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const Random *rng = system_random();
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ASSERT_NE(rng, nullptr);
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Moderation mods{system_memory()};
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// Fill with random data, check that it's zeroed.
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ModerationHash hash;
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random_bytes(rng, hash.data(), hash.size());
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EXPECT_TRUE(mod_list_make_hash(&mods, hash.data()));
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EXPECT_EQ(hash, ModerationHash{});
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}
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TEST(ModList, RemoveIndexFromEmptyModListFails)
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{
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Moderation mods{system_memory()};
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EXPECT_FALSE(mod_list_remove_index(&mods, 0));
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EXPECT_FALSE(mod_list_remove_index(&mods, UINT16_MAX));
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}
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TEST(ModList, RemoveEntryFromEmptyModListFails)
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{
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Moderation mods{system_memory()};
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uint8_t sig_pk[32] = {0};
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EXPECT_FALSE(mod_list_remove_entry(&mods, sig_pk));
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}
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TEST(ModList, ModListRemoveIndex)
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{
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Moderation mods{system_memory()};
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uint8_t sig_pk[32] = {1};
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EXPECT_TRUE(mod_list_add_entry(&mods, sig_pk));
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EXPECT_TRUE(mod_list_remove_index(&mods, 0));
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}
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TEST(ModList, CleanupOnEmptyModsIsNoop)
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{
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Moderation mods{system_memory()};
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mod_list_cleanup(&mods);
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}
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TEST(ModList, EmptyModListCannotVerifyAnySigPk)
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{
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Moderation mods{system_memory()};
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uint8_t sig_pk[32] = {1};
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EXPECT_FALSE(mod_list_verify_sig_pk(&mods, sig_pk));
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}
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TEST(ModList, ModListAddVerifyRemoveSigPK)
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{
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Moderation mods{system_memory()};
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uint8_t sig_pk[32] = {1};
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EXPECT_TRUE(mod_list_add_entry(&mods, sig_pk));
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EXPECT_TRUE(mod_list_verify_sig_pk(&mods, sig_pk));
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EXPECT_TRUE(mod_list_remove_entry(&mods, sig_pk));
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EXPECT_FALSE(mod_list_verify_sig_pk(&mods, sig_pk));
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}
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TEST(ModList, ModListHashCheck)
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{
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Moderation mods1{system_memory()};
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uint8_t sig_pk1[32] = {1};
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std::array<uint8_t, MOD_MODERATION_HASH_SIZE> hash1;
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EXPECT_TRUE(mod_list_add_entry(&mods1, sig_pk1));
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EXPECT_TRUE(mod_list_make_hash(&mods1, hash1.data()));
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EXPECT_TRUE(mod_list_remove_entry(&mods1, sig_pk1));
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}
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TEST(SanctionsList, PackingIntoUndersizedBufferFails)
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{
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Mod_Sanction sanctions[1] = {};
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std::array<uint8_t, 1> packed;
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EXPECT_EQ(sanctions_list_pack(packed.data(), packed.size(), sanctions, 1, nullptr), -1);
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uint16_t length = sanctions_list_packed_size(1) - 1;
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std::vector<uint8_t> packed2(length);
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EXPECT_EQ(sanctions_list_pack(packed2.data(), packed2.size(), sanctions, 1, nullptr), -1);
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}
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TEST(SanctionsList, PackUnpackSanctionsCreds)
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{
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Moderation mod{system_memory()};
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std::array<uint8_t, MOD_SANCTIONS_CREDS_SIZE> packed;
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EXPECT_EQ(sanctions_creds_pack(&mod.sanctions_creds, packed.data()), MOD_SANCTIONS_CREDS_SIZE);
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EXPECT_EQ(
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sanctions_creds_unpack(&mod.sanctions_creds, packed.data()), MOD_SANCTIONS_CREDS_SIZE);
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}
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struct SanctionsListMod : ::testing::Test {
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protected:
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ExtPublicKey pk;
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ExtSecretKey sk;
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Logger *log = logger_new();
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Moderation mod{system_memory()};
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Mod_Sanction sanctions[2] = {};
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const uint8_t sanctioned_pk1[32] = {1};
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const uint8_t sanctioned_pk2[32] = {2};
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void SetUp() override
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{
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ASSERT_TRUE(create_extended_keypair(pk.data(), sk.data()));
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mod.log = log;
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memcpy(mod.self_public_sig_key, get_sig_pk(pk.data()), SIG_PUBLIC_KEY_SIZE);
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memcpy(mod.self_secret_sig_key, get_sig_sk(sk.data()), SIG_SECRET_KEY_SIZE);
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ASSERT_TRUE(mod_list_add_entry(&mod, get_sig_pk(pk.data())));
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EXPECT_FALSE(sanctions_list_check_integrity(&mod, &mod.sanctions_creds, &sanctions[0], 0));
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EXPECT_FALSE(sanctions_list_check_integrity(&mod, &mod.sanctions_creds, &sanctions[0], 1));
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EXPECT_FALSE(
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sanctions_list_check_integrity(&mod, &mod.sanctions_creds, &sanctions[0], UINT16_MAX));
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EXPECT_TRUE(sanctions_list_make_entry(&mod, sanctioned_pk1, &sanctions[0], SA_OBSERVER));
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EXPECT_TRUE(sanctions_list_check_integrity(
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&mod, &mod.sanctions_creds, sanctions, mod.num_sanctions));
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EXPECT_TRUE(sanctions_list_make_entry(&mod, sanctioned_pk2, &sanctions[1], SA_OBSERVER));
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EXPECT_TRUE(sanctions_list_check_integrity(
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&mod, &mod.sanctions_creds, sanctions, mod.num_sanctions));
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}
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~SanctionsListMod() override
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{
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EXPECT_TRUE(sanctions_list_remove_observer(&mod, sanctioned_pk1, nullptr));
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EXPECT_TRUE(sanctions_list_remove_observer(&mod, sanctioned_pk2, nullptr));
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EXPECT_FALSE(sanctions_list_entry_exists(&mod, &sanctions[0]));
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EXPECT_FALSE(sanctions_list_entry_exists(&mod, &sanctions[1]));
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EXPECT_TRUE(mod_list_remove_entry(&mod, get_sig_pk(pk.data())));
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logger_kill(log);
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}
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};
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// TODO(JFreegman): Split this up into smaller subtests
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TEST_F(SanctionsListMod, PackUnpackSanction)
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{
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std::vector<uint8_t> packed(sanctions_list_packed_size(2));
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EXPECT_EQ(
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sanctions_list_pack(packed.data(), packed.size(), sanctions, 2, nullptr), packed.size());
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Mod_Sanction unpacked_sanctions[2] = {};
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uint16_t processed_data_len = 0;
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EXPECT_EQ(sanctions_list_unpack(unpacked_sanctions, &mod.sanctions_creds, 2, packed.data(),
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packed.size(), &processed_data_len),
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2);
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EXPECT_EQ(processed_data_len, packed.size());
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EXPECT_TRUE(sanctions_list_check_integrity(
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&mod, &mod.sanctions_creds, unpacked_sanctions, mod.num_sanctions));
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EXPECT_TRUE(sanctions_list_entry_exists(&mod, &unpacked_sanctions[0]));
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EXPECT_TRUE(sanctions_list_entry_exists(&mod, &unpacked_sanctions[1]));
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}
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TEST_F(SanctionsListMod, ReplaceSanctionSignatures)
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{
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EXPECT_EQ(sanctions_list_replace_sig(&mod, mod.self_public_sig_key), mod.num_sanctions);
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EXPECT_TRUE(
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sanctions_list_check_integrity(&mod, &mod.sanctions_creds, sanctions, mod.num_sanctions));
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}
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} // namespace
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