#include #include #include #include "BotCommands.h" #include "BotPolicy.h" #include "BotPrefs.h" #include "EmergencyForwarder.h" #include "FirmwareBot.h" #include "KnownBotRegistry.h" #include "ResponseCoordinator.h" static void test_channel_policy() { assert(BotPolicy::classifyChannel(NULL, 0, true) == BOT_CHANNEL_DM); assert(BotPolicy::decide(BOT_CHANNEL_DM) == BOT_POLICY_ALLOW_NORMAL); assert(BotPolicy::isNormalAllowed(BOT_CHANNEL_DM)); assert(BotPolicy::classifyChannel("Public", 6, false) == BOT_CHANNEL_PUBLIC); assert(BotPolicy::classifyChannel("public", 6, false) == BOT_CHANNEL_OTHER); assert(BotPolicy::classifyChannel("#Public", 7, false) == BOT_CHANNEL_OTHER); assert(BotPolicy::decide(BOT_CHANNEL_PUBLIC) == BOT_POLICY_IGNORE); assert(!BotPolicy::isNormalAllowed(BOT_CHANNEL_PUBLIC)); assert(BotPolicy::classifyChannel("#bot", 4, false) == BOT_CHANNEL_BOT); assert(BotPolicy::decide(BOT_CHANNEL_BOT) == BOT_POLICY_ALLOW_NORMAL); assert(BotPolicy::isNormalAllowed(BOT_CHANNEL_BOT)); assert(BotPolicy::classifyChannel("testing", 7, false) == BOT_CHANNEL_TESTING); assert(BotPolicy::decide(BOT_CHANNEL_TESTING) == BOT_POLICY_ALLOW_NORMAL); assert(BotPolicy::isNormalAllowed(BOT_CHANNEL_TESTING)); assert(BotPolicy::classifyChannel("#emergency", 10, false) == BOT_CHANNEL_EMERGENCY); assert(BotPolicy::classifyChannel("emergency", 9, false) == BOT_CHANNEL_OTHER); assert(BotPolicy::classifyChannel("#Emergency", 10, false) == BOT_CHANNEL_OTHER); assert(BotPolicy::decide(BOT_CHANNEL_EMERGENCY) == BOT_POLICY_EMERGENCY_FORWARD); assert(BotPolicy::isEmergency(BOT_CHANNEL_EMERGENCY)); assert(!BotPolicy::isNormalAllowed(BOT_CHANNEL_EMERGENCY)); assert(BotPolicy::classifyChannel("#botnet", 7, false) == BOT_CHANNEL_OTHER); assert(BotPolicy::decide(BOT_CHANNEL_OTHER) == BOT_POLICY_IGNORE); } static void test_bot_prefs_defaults() { BotPrefs prefs; BotPrefsCodec::defaults(prefs); assert(prefs.enabled); assert(prefs.normal_delay_ms == BOT_RESPONSE_DELAY_BASE_MILLIS); assert(prefs.normal_jitter_ms == BOT_RESPONSE_DELAY_JITTER_MILLIS); assert(prefs.local_advert_interval_ms == BOT_PREFS_DEFAULT_LOCAL_ADVERT_MILLIS); assert(prefs.flood_advert_interval_ms == BOT_PREFS_DEFAULT_FLOOD_ADVERT_MILLIS); assert(strcmp(prefs.bot_channel, "#bot") == 0); assert(strcmp(prefs.testing_channel, "#testing") == 0); assert(strcmp(prefs.emergency_channel, "#emergency") == 0); assert(strcmp(prefs.public_channel, "Public") == 0); assert(BotPrefsCodec::serializedSize() == BOT_PREFS_SERIALIZED_SIZE); assert(BotPrefsCodec::commandEnabled(prefs, BOT_COMMAND_PING)); assert(BotPrefsCodec::commandEnabled(prefs, BOT_COMMAND_UNKNOWN)); } static void test_bot_prefs_serialization_round_trip() { BotPrefs prefs; BotPrefsCodec::defaults(prefs); prefs.enabled = false; prefs.normal_delay_ms = 2345; prefs.normal_jitter_ms = 6789; prefs.local_advert_interval_ms = 123456; prefs.flood_advert_interval_ms = 654321; strncpy(prefs.bot_channel, "#ops", sizeof(prefs.bot_channel) - 1); uint8_t key[BOT_SENDER_KEY_PREFIX_LEN] = { 0xA0, 0xB1, 0xC2, 0xD3, 0xE4, 0xF5 }; assert(BotPrefsCodec::addKnownBot(prefs, key, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "alpha")); BotPrefsCodec::setCommandEnabled(prefs, BOT_COMMAND_STATUS, false); uint8_t blob[BOT_PREFS_SERIALIZED_SIZE]; assert(BotPrefsCodec::serialize(prefs, blob, sizeof(blob))); BotPrefs loaded; assert(BotPrefsCodec::deserialize(blob, sizeof(blob), loaded)); assert(!loaded.enabled); assert(loaded.normal_delay_ms == 2345); assert(loaded.normal_jitter_ms == 6789); assert(loaded.local_advert_interval_ms == 123456); assert(loaded.flood_advert_interval_ms == 654321); assert(strcmp(loaded.bot_channel, "#ops") == 0); assert(!BotPrefsCodec::commandEnabled(loaded, BOT_COMMAND_STATUS)); assert(BotPrefsCodec::findKnownBot(loaded, key) != NULL); assert(strcmp(BotPrefsCodec::findKnownBot(loaded, key)->label, "alpha") == 0); } static void test_bot_prefs_rejects_corrupt_and_wrong_version() { BotPrefs prefs; BotPrefsCodec::defaults(prefs); uint8_t blob[BOT_PREFS_SERIALIZED_SIZE]; assert(BotPrefsCodec::serialize(prefs, blob, sizeof(blob))); BotPrefs loaded; blob[20] ^= 0x55; assert(!BotPrefsCodec::deserialize(blob, sizeof(blob), loaded)); assert(loaded.enabled); assert(strcmp(loaded.bot_channel, "#bot") == 0); assert(BotPrefsCodec::serialize(prefs, blob, sizeof(blob))); blob[4] = 0x7F; assert(!BotPrefsCodec::deserialize(blob, sizeof(blob), loaded)); assert(strcmp(loaded.public_channel, "Public") == 0); assert(!BotPrefsCodec::deserialize(blob, sizeof(blob) - 1, loaded)); } static void test_bot_prefs_validation_and_command_mask() { BotPrefs prefs; BotPrefsCodec::defaults(prefs); prefs.normal_delay_ms = BOT_PREFS_MAX_DELAY_MILLIS + 1; prefs.normal_jitter_ms = BOT_PREFS_MAX_DELAY_MILLIS + 1; prefs.local_advert_interval_ms = BOT_PREFS_MAX_ADVERT_MILLIS + 1; prefs.flood_advert_interval_ms = BOT_PREFS_MAX_ADVERT_MILLIS + 1; prefs.max_response_parts = 99; prefs.bot_channel[0] = 0; prefs.command_mask = 0xFFFFFFFFUL; BotPrefsCodec::validate(prefs); assert(prefs.normal_delay_ms == BOT_PREFS_MAX_DELAY_MILLIS); assert(prefs.normal_jitter_ms == BOT_PREFS_MAX_DELAY_MILLIS); assert(prefs.local_advert_interval_ms == BOT_PREFS_MAX_ADVERT_MILLIS); assert(prefs.flood_advert_interval_ms == BOT_PREFS_MAX_ADVERT_MILLIS); assert(prefs.max_response_parts == BOT_EMERGENCY_MAX_PARTS); assert(strcmp(prefs.bot_channel, "#bot") == 0); assert((prefs.command_mask & ~BOT_COMMAND_MASK_ALL) == 0); assert(BotPrefsCodec::channelNameValid("#ops", false)); assert(!BotPrefsCodec::channelNameValid("ops", false)); assert(BotPrefsCodec::channelNameValid("Public", true)); assert(!BotPrefsCodec::channelNameValid("#Public", true)); assert(!BotPrefsCodec::channelNameValid("#abcdefghijklmnopqrstuvw", false)); BotPrefs duplicate_channels; BotPrefsCodec::defaults(duplicate_channels); strncpy(duplicate_channels.testing_channel, "#bot", sizeof(duplicate_channels.testing_channel) - 1); assert(!BotPrefsCodec::channelConfigValid(duplicate_channels)); BotPrefsCodec::validate(duplicate_channels); assert(strcmp(duplicate_channels.testing_channel, "#testing") == 0); BotPrefsCodec::setCommandEnabled(prefs, BOT_COMMAND_PING, false); assert(!BotPrefsCodec::commandEnabled(prefs, BOT_COMMAND_PING)); BotPrefsCodec::setCommandEnabled(prefs, BOT_COMMAND_PING, true); assert(BotPrefsCodec::commandEnabled(prefs, BOT_COMMAND_PING)); BotCommandId id = BOT_COMMAND_NONE; assert(BotPrefsCodec::commandIdForName("ROLL", &id)); assert(id == BOT_COMMAND_DICE); assert(BotPrefsCodec::commandIdForName("t", &id)); assert(id == BOT_COMMAND_TEST); assert(BotPrefsCodec::commandIdForName("ver", &id)); assert(id == BOT_COMMAND_VERSION); assert(BotPrefsCodec::commandIdForName("8ball", &id)); assert(id == BOT_COMMAND_MAGIC8); assert(BotPrefsCodec::commandIdForName("p", &id)); assert(id == BOT_COMMAND_PATH); assert(!BotPrefsCodec::commandIdForName("nope", &id)); } static void test_bot_prefs_known_bot_helpers() { BotPrefs prefs; BotPrefsCodec::defaults(prefs); uint8_t key1[BOT_SENDER_KEY_PREFIX_LEN]; uint8_t key2[BOT_SENDER_KEY_PREFIX_LEN]; char hex[BOT_SENDER_KEY_PREFIX_LEN * 2 + 1]; assert(BotPrefsCodec::parseKeyPrefixHex("010203040506", key1)); assert(!BotPrefsCodec::parseKeyPrefixHex("01020304050", key2)); assert(!BotPrefsCodec::parseKeyPrefixHex("01020304050x", key2)); BotPrefsCodec::formatKeyPrefixHex(key1, hex, sizeof(hex)); assert(strcmp(hex, "010203040506") == 0); assert(BotPrefsCodec::addKnownBot(prefs, key1, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "alpha")); assert(BotPrefsCodec::findKnownBot(prefs, key1) != NULL); assert(BotPrefsCodec::addKnownBot(prefs, key1, 0, "beta")); assert(BotPrefsCodec::findKnownBot(prefs, key1)->flags == 0); assert(strcmp(BotPrefsCodec::findKnownBot(prefs, key1)->label, "beta") == 0); assert(BotPrefsCodec::removeKnownBot(prefs, key1)); assert(!BotPrefsCodec::removeKnownBot(prefs, key1)); for (size_t i = 0; i < BOT_KNOWN_BOT_SLOTS; i++) { for (size_t j = 0; j < BOT_SENDER_KEY_PREFIX_LEN; j++) key2[j] = (uint8_t)(i * 10 + j); assert(BotPrefsCodec::addKnownBot(prefs, key2, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "bot")); } uint8_t overflow[BOT_SENDER_KEY_PREFIX_LEN] = { 99, 98, 97, 96, 95, 94 }; assert(!BotPrefsCodec::addKnownBot(prefs, overflow, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "full")); } static void test_prefs_aware_channel_policy() { BotPrefs prefs; BotPrefsCodec::defaults(prefs); strncpy(prefs.bot_channel, "#ops", sizeof(prefs.bot_channel) - 1); strncpy(prefs.testing_channel, "#lab", sizeof(prefs.testing_channel) - 1); strncpy(prefs.emergency_channel, "#sos", sizeof(prefs.emergency_channel) - 1); strncpy(prefs.public_channel, "Town", sizeof(prefs.public_channel) - 1); assert(BotPolicy::classifyChannel("#ops", 4, false, prefs) == BOT_CHANNEL_BOT); assert(BotPolicy::classifyChannel("ops", 3, false, prefs) == BOT_CHANNEL_BOT); assert(BotPolicy::classifyChannel("#lab", 4, false, prefs) == BOT_CHANNEL_TESTING); assert(BotPolicy::classifyChannel("#sos", 4, false, prefs) == BOT_CHANNEL_EMERGENCY); assert(BotPolicy::classifyChannel("#SOS", 4, false, prefs) == BOT_CHANNEL_OTHER); assert(BotPolicy::classifyChannel("Town", 4, false, prefs) == BOT_CHANNEL_PUBLIC); assert(BotPolicy::classifyChannel("#bot", 4, false, prefs) == BOT_CHANNEL_OTHER); } static void test_normalize_text() { char out[32]; size_t written = 0; const char text[] = " hi\tthere\n\x01mesh "; assert(FirmwareBot::normalizeText(text, sizeof(text) - 1, out, sizeof(out), &written) == BOT_WRITE_OK); assert(strcmp(out, "hi there mesh") == 0); assert(written == strlen(out)); const char with_nul[] = { 'h', 'i', 0, '!', 0 }; assert(FirmwareBot::normalizeText(with_nul, sizeof(with_nul), out, sizeof(out), &written) == BOT_WRITE_OK); assert(strcmp(out, "hi") == 0); const char utf8[] = "!hello café"; assert(FirmwareBot::normalizeText(utf8, sizeof(utf8) - 1, out, sizeof(out), &written) == BOT_WRITE_OK); assert(strcmp(out, "!hello café") == 0); } static void test_normalize_truncation() { char out[6]; size_t written = 0; assert(FirmwareBot::normalizeText("abcdef", 6, out, sizeof(out), &written) == BOT_WRITE_TRUNCATED); assert(strcmp(out, "abcde") == 0); assert(written == 5); assert(FirmwareBot::normalizeText("abc", 3, NULL, 0, &written) == BOT_WRITE_NO_SPACE); char max_input[BOT_MAX_TEXT_LEN + 8]; for (size_t i = 0; i < sizeof(max_input); i++) max_input[i] = 'x'; char max_output[BOT_MAX_TEXT_LEN + 1]; assert(FirmwareBot::normalizeText(max_input, BOT_MAX_TEXT_LEN, max_output, sizeof(max_output), &written) == BOT_WRITE_OK); assert(written == BOT_MAX_TEXT_LEN); assert(max_output[BOT_MAX_TEXT_LEN] == 0); assert(FirmwareBot::normalizeText(max_input, BOT_MAX_TEXT_LEN + 1, max_output, sizeof(max_output), &written) == BOT_WRITE_TRUNCATED); assert(written == BOT_MAX_TEXT_LEN); } static void test_parse_command() { const char* body = NULL; size_t body_len = 0; char sender[BOT_MAX_SENDER_NAME_LEN + 1]; assert(FirmwareBot::splitChannelText("alice: !ping", 12, sender, sizeof(sender), &body, &body_len)); assert(strcmp(sender, "alice") == 0); assert(body_len == 5); assert(strncmp(body, "!ping", body_len) == 0); assert(!FirmwareBot::splitChannelText("alice says !ping", 16, sender, sizeof(sender), &body, &body_len)); BotCommand command; assert(!FirmwareBot::parseCommand("hello bot", 9, &command)); assert(!FirmwareBot::parseCommand("ping", 4, &command)); assert(FirmwareBot::parseCommand("ping", 4, &command, true)); assert(command.id == BOT_COMMAND_PING); assert(command.args_len == 0); assert(FirmwareBot::parseCommand("status please", 13, &command, true)); assert(command.id == BOT_COMMAND_STATUS); assert(strcmp(command.args, "please") == 0); assert(!FirmwareBot::parseCommand("random prose", 12, &command, true)); assert(FirmwareBot::parseCommand("!PING", 5, &command)); assert(command.id == BOT_COMMAND_PING); assert(strcmp(command.name, "ping") == 0); assert(command.args_len == 0); assert(FirmwareBot::parseCommand("/roll: 2d6", 10, &command)); assert(command.id == BOT_COMMAND_DICE); assert(strcmp(command.name, "roll") == 0); assert(strcmp(command.args, "2d6") == 0); assert(FirmwareBot::parseCommand("!help, please", 13, &command)); assert(command.id == BOT_COMMAND_HELP); assert(strcmp(command.args, "please") == 0); assert(FirmwareBot::parseCommand("!channels", 9, &command)); assert(command.id == BOT_COMMAND_CHANNELS); assert(FirmwareBot::parseCommand("!commands", 9, &command)); assert(command.id == BOT_COMMAND_HELP); assert(FirmwareBot::parseCommand("!hi", 3, &command)); assert(command.id == BOT_COMMAND_HELLO); assert(FirmwareBot::parseCommand("t", 1, &command, true)); assert(command.id == BOT_COMMAND_TEST); assert(FirmwareBot::parseCommand("ver", 3, &command, true)); assert(command.id == BOT_COMMAND_VERSION); assert(FirmwareBot::parseCommand("8ball", 5, &command, true)); assert(command.id == BOT_COMMAND_MAGIC8); assert(FirmwareBot::parseCommand("p", 1, &command, true)); assert(command.id == BOT_COMMAND_PATH); assert(FirmwareBot::parseCommand("decode", 6, &command, true)); assert(command.id == BOT_COMMAND_PATH); assert(FirmwareBot::parseCommand("!wat", 4, &command)); assert(command.id == BOT_COMMAND_UNKNOWN); assert(!FirmwareBot::parseCommand("!", 1, &command)); } static void test_response_write() { char out[8]; size_t written = 0; assert(FirmwareBot::writeResponse(out, sizeof(out), "pong", 4, &written) == BOT_WRITE_OK); assert(strcmp(out, "pong") == 0); assert(written == 4); assert(FirmwareBot::writeResponse(out, sizeof(out), "123456789", 9, &written) == BOT_WRITE_TRUNCATED); assert(strcmp(out, "1234567") == 0); assert(written == 7); assert(FirmwareBot::writeResponse(NULL, 0, "x", 1, &written) == BOT_WRITE_NO_SPACE); assert(FirmwareBot::writeResponse(out, sizeof(out), NULL, 1, &written) == BOT_WRITE_NO_SPACE); assert(out[0] == 0); } static BotMessage make_message(const char* channel, const char* text) { BotMessage message; memset(&message, 0, sizeof(message)); message.channel_kind = BotPolicy::classifyChannel(channel, strlen(channel), false); strncpy(message.channel_name, channel, sizeof(message.channel_name) - 1); strncpy(message.sender_name, "alice", sizeof(message.sender_name) - 1); for (size_t i = 0; i < sizeof(message.sender_key_prefix); i++) message.sender_key_prefix[i] = (uint8_t)(i + 1); message.sender_timestamp = 12345; strncpy(message.text, text, sizeof(message.text) - 1); message.text_len = strlen(message.text); return message; } static BotCommandContext make_context() { BotCommandContext context; memset(&context, 0, sizeof(context)); strncpy(context.node_name, "cm-bot", sizeof(context.node_name) - 1); strncpy(context.bot_channel, "#bot", sizeof(context.bot_channel) - 1); strncpy(context.testing_channel, "#testing", sizeof(context.testing_channel) - 1); strncpy(context.emergency_channel, "#emergency", sizeof(context.emergency_channel) - 1); strncpy(context.public_channel, "Public", sizeof(context.public_channel) - 1); context.uptime_seconds = 1234; context.battery_millivolts = 4180; context.storage_used_kb = 12; context.storage_total_kb = 128; context.observed_messages = 9; context.ignored_messages = 2; context.eligible_messages = 5; context.sent_messages = 4; context.send_failures = 1; context.random_seed = 0x12345678; context.channel_count = 4; strncpy(context.firmware_version, "v1.test", sizeof(context.firmware_version) - 1); strncpy(context.firmware_build_date, "14 May 2026", sizeof(context.firmware_build_date) - 1); context.suppressed_responses = 3; context.pending_responses = 6; context.emergency_forwards = 1; context.emergency_forward_failures = 0; context.packets_recv = 77; context.packets_sent = 44; context.packets_recv_errors = 2; context.queue_depth = 3; return context; } static BotCommandResult run_command(const char* text, char* output, size_t output_len) { BotCommand command; assert(FirmwareBot::parseCommand(text, strlen(text), &command)); BotCommandContext context = make_context(); return BotCommands::executeCommand(command, context, output, output_len); } static void test_command_outputs() { char out[BOT_MAX_RESPONSE_LEN + 1]; BotCommandResult result = run_command("!ping", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Pong!") == 0); assert(result.text_len == strlen(out)); result = run_command("!test", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Bot test OK") == 0); result = run_command("!hello", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Hello from cm-bot") == 0); result = run_command("!about", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strstr(out, "Colorado Mesh firmware bot") != NULL); result = run_command("!help", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strstr(out, "ping") != NULL); assert(strstr(out, "path") != NULL); result = run_command("!version", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Firmware v1.test built 14 May 2026") == 0); result = run_command("!stats", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strstr(out, "Bot seen 9 ok 5 sent 4 fail 1") != NULL); assert(strstr(out, "rf rx/tx 77/44") != NULL); result = run_command("!magic8", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strstr(out, "Magic 8-ball:") == out); result = run_command("!path", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Path unavailable") == 0); result = run_command("!channels", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Channels: #bot #testing emergency=#emergency public=Public (4 configured)") == 0); result = run_command("!status", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strstr(out, "cm-bot up 1234s") != NULL); assert(strstr(out, "batt 4180mV") != NULL); assert(strstr(out, "sent 4 fail 1") != NULL); result = run_command("!wat", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Unknown command. Try help") == 0); } static void test_path_command() { char out[BOT_MAX_RESPONSE_LEN + 1]; BotCommand command; assert(FirmwareBot::parseCommand("!path", 5, &command)); BotCommandContext context = make_context(); uint8_t path[] = { 0x12, 0x34, 0xab, 0xcd, 0x00, 0x01 }; context.path = path; context.path_len = (uint8_t)(((2 - 1) << 6) | 3); context.path_hash_size = 2; context.path_hash_count = 3; context.path_snr_quarters = 23; BotCommandResult result = BotCommands::executeCommand(command, context, out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Path 3h x 2B snr 5.75: 1234abcd0001") == 0); context.path = NULL; result = BotCommands::executeCommand(command, context, out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strcmp(out, "Path unavailable") == 0); } static void test_dice_command() { char out[BOT_MAX_RESPONSE_LEN + 1]; BotCommandResult result = run_command("!roll", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Rolled d6: ", 11) == 0); result = run_command("!roll d20", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Rolled d20: ", 12) == 0); result = run_command("!roll 2d6", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Rolled 2d6: ", 12) == 0); assert(strchr(out, '+') != NULL); assert(strchr(out, '=') != NULL); result = run_command("!roll 20", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Rolled d20: ", 12) == 0); result = run_command("!roll d100", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Rolled d100: ", 13) == 0); result = run_command("!roll d1", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Usage: roll", 11) == 0); result = run_command("!roll 0d6", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Usage: roll", 11) == 0); result = run_command("!roll 11d6", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_OK); assert(strncmp(out, "Usage: roll", 11) == 0); } static void test_command_truncation() { char out[12]; BotCommandResult result = run_command("!about", out, sizeof(out)); assert(result.code == BOT_COMMAND_RESULT_TRUNCATED); assert(strcmp(out, "Colorado Me") == 0); assert(result.text_len == strlen(out)); result = run_command("!ping", NULL, 0); assert(result.code == BOT_COMMAND_RESULT_NO_SPACE); assert(result.text_len == 0); } static void test_command_cooldown() { BotCommandCooldown cooldowns[2]; memset(cooldowns, 0, sizeof(cooldowns)); assert(!FirmwareBot::isCommandOnCooldown(cooldowns, 2, BOT_COMMAND_PING, 1000)); FirmwareBot::recordCommandCooldown(cooldowns, 2, BOT_COMMAND_PING, 1000, 5000); assert(FirmwareBot::isCommandOnCooldown(cooldowns, 2, BOT_COMMAND_PING, 5999)); assert(!FirmwareBot::isCommandOnCooldown(cooldowns, 2, BOT_COMMAND_PING, 6000)); assert(!FirmwareBot::isCommandOnCooldown(cooldowns, 2, BOT_COMMAND_STATUS, 2000)); FirmwareBot::recordCommandCooldown(cooldowns, 2, BOT_COMMAND_STATUS, 0xFFFFFFF0UL, 32); assert(FirmwareBot::isCommandOnCooldown(cooldowns, 2, BOT_COMMAND_STATUS, 0xFFFFFFF8UL)); assert(!FirmwareBot::isCommandOnCooldown(cooldowns, 2, BOT_COMMAND_STATUS, 0x00000010UL)); } static void test_group_response_cap() { assert(BOT_MAX_GROUP_RESPONSE_LEN == BOT_MAX_TEXT_LEN - BOT_GROUP_RESPONSE_PREFIX_RESERVE); assert(FirmwareBot::maxResponseLenForChannel(BOT_CHANNEL_DM) == BOT_MAX_RESPONSE_LEN); assert(FirmwareBot::maxResponseLenForChannel(BOT_CHANNEL_BOT) == BOT_MAX_GROUP_RESPONSE_LEN); assert(FirmwareBot::maxResponseLenForChannel(BOT_CHANNEL_TESTING) == BOT_MAX_GROUP_RESPONSE_LEN); assert(BOT_MAX_GROUP_RESPONSE_LEN < BOT_MAX_RESPONSE_LEN); } static void test_emergency_forward_short() { BotMessage message = make_message("#emergency", "need help at trailhead"); BotEmergencyForward forward; assert(EmergencyForwarder::format(message, forward)); assert(forward.part_count == 1); assert(!forward.truncated); assert(strstr(forward.parts[0], "EMERGENCY MESSAGE FROM alice: need help at trailhead") == forward.parts[0]); assert(forward.part_lens[0] == strlen(forward.parts[0])); } static void test_emergency_forward_loop_prevention() { assert(EmergencyForwarder::isForwardedEmergencyText("EMERGENCY MESSAGE FROM alice: need help", 39)); assert(!EmergencyForwarder::isForwardedEmergencyText("FYI EMERGENCY MESSAGE FROM alice", 32)); BotMessage message = make_message("#emergency", "EMERGENCY MESSAGE FROM alice: need help"); BotEmergencyForward forward; assert(!EmergencyForwarder::format(message, forward)); BotMessage public_message = make_message("Public", "!ping"); assert(!EmergencyForwarder::format(public_message, forward)); } static void test_emergency_forward_multipart() { BotMessage message = make_message("#emergency", "short"); memset(message.text, 'a', sizeof(message.text)); message.text[BOT_MAX_TEXT_LEN] = 0; message.text_len = BOT_MAX_TEXT_LEN; BotEmergencyForward forward; assert(EmergencyForwarder::format(message, forward)); assert(forward.part_count > 1); assert(forward.part_count <= BOT_EMERGENCY_MAX_PARTS); assert(!forward.truncated); for (uint8_t i = 0; i < forward.part_count; i++) { assert(strstr(forward.parts[i], "EMERGENCY MESSAGE FROM alice: ") == forward.parts[i]); assert(strstr(forward.parts[i], "[") != NULL); assert(forward.part_lens[i] <= BOT_MAX_GROUP_RESPONSE_LEN); } } static void test_emergency_forward_truncation() { BotMessage message = make_message("#emergency", "short"); memset(message.sender_name, 's', sizeof(message.sender_name) - 1); message.sender_name[sizeof(message.sender_name) - 1] = 0; memset(message.text, 'b', sizeof(message.text)); message.text[BOT_MAX_TEXT_LEN] = 0; message.text_len = BOT_MAX_TEXT_LEN; message.text_truncated = true; BotEmergencyForward forward; assert(EmergencyForwarder::format(message, forward)); assert(forward.truncated); assert(forward.part_count == BOT_EMERGENCY_MAX_PARTS); assert(strstr(forward.parts[forward.part_count - 1], "...") != NULL); } static void test_known_bot_registry() { BotKnownBotEntry entries[2]; uint8_t key1[BOT_SENDER_KEY_PREFIX_LEN] = { 1, 2, 3, 4, 5, 6 }; uint8_t key2[BOT_SENDER_KEY_PREFIX_LEN] = { 7, 8, 9, 10, 11, 12 }; uint8_t key3[BOT_SENDER_KEY_PREFIX_LEN] = { 13, 14, 15, 16, 17, 18 }; KnownBotRegistry::clear(entries, 2); assert(!KnownBotRegistry::find(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::add(entries, 2, key1, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "alpha-bot")); const BotKnownBotEntry* entry = KnownBotRegistry::find(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN); assert(entry != NULL); assert(entry->active); assert(strcmp(entry->label, "alpha-bot") == 0); assert(KnownBotRegistry::canSuppressNormal(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::canSuppressNormal(entries, 2, key1, BOT_MIN_AUTH_SENDER_KEY_PREFIX_LEN)); assert(!KnownBotRegistry::canSuppressNormal(entries, 2, key1, BOT_MIN_AUTH_SENDER_KEY_PREFIX_LEN - 1)); assert(!KnownBotRegistry::canSuppressNormal(entries, 2, key2, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::add(entries, 2, key1, 0, "renamed-bot")); entry = KnownBotRegistry::find(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN); assert(entry != NULL); assert(strcmp(entry->label, "renamed-bot") == 0); assert(!KnownBotRegistry::canSuppressNormal(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::add(entries, 2, key2, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "beta")); assert(!KnownBotRegistry::add(entries, 2, key3, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "gamma")); assert(KnownBotRegistry::remove(entries, 2, key1)); assert(!KnownBotRegistry::find(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::add(entries, 2, key3, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, NULL)); assert(KnownBotRegistry::canSuppressNormal(entries, 2, key3, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::remove(entries, 2, key3)); assert(!KnownBotRegistry::remove(entries, 2, key3)); } static void test_known_bot_registry_ambiguous_short_prefix() { BotKnownBotEntry entries[2]; uint8_t key1[BOT_SENDER_KEY_PREFIX_LEN] = { 1, 2, 3, 4, 5, 6 }; uint8_t key2[BOT_SENDER_KEY_PREFIX_LEN] = { 1, 2, 3, 4, 7, 8 }; KnownBotRegistry::clear(entries, 2); assert(KnownBotRegistry::add(entries, 2, key1, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "alpha")); assert(KnownBotRegistry::add(entries, 2, key2, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "beta")); assert(!KnownBotRegistry::canSuppressNormal(entries, 2, key1, BOT_MIN_AUTH_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::canSuppressNormal(entries, 2, key1, BOT_SENDER_KEY_PREFIX_LEN)); assert(KnownBotRegistry::canSuppressNormal(entries, 2, key2, BOT_SENDER_KEY_PREFIX_LEN)); } static void test_fingerprint() { BotMessage a = make_message("#bot", "!PING"); BotMessage b = make_message("bot", "!ping"); BotMessage c = make_message("#testing", "!ping"); BotFingerprint fa = FirmwareBot::fingerprintFor(a); BotFingerprint fb = FirmwareBot::fingerprintFor(b); BotFingerprint fc = FirmwareBot::fingerprintFor(c); assert(fa.value == fb.value); assert(fa.value != fc.value); b.sender_key_prefix[0] = 99; assert(fa.value != FirmwareBot::fingerprintFor(b).value); b.sender_key_prefix[0] = a.sender_key_prefix[0]; strncpy(b.sender_name, "bob", sizeof(b.sender_name) - 1); assert(fa.value != FirmwareBot::fingerprintFor(b).value); } static void test_response_fingerprint() { BotMessage a = make_message("#bot", "!ping"); BotMessage b = make_message("bot", "!ping"); BotMessage c = make_message("#testing", "!ping"); BotFingerprint fa = FirmwareBot::responseFingerprintFor(a, " Pong! ", 7); BotFingerprint fb = FirmwareBot::responseFingerprintFor(b, "pong!", 5); BotFingerprint fc = FirmwareBot::responseFingerprintFor(c, "pong!", 5); assert(fa.value == fb.value); assert(fa.value != fc.value); a.sender_key_prefix[0] = 99; a.sender_timestamp++; assert(fa.value == FirmwareBot::responseFingerprintFor(a, "pong!", 5).value); assert(fa.value != FirmwareBot::responseFingerprintFor(a, "status", 6).value); BotMessage dm = make_message("#bot", "!ping"); dm.channel_kind = BOT_CHANNEL_DM; dm.channel_name[0] = 0; dm.sender_key_prefix_len = BOT_SENDER_KEY_PREFIX_LEN; BotMessage other_dm = dm; other_dm.sender_key_prefix[0] ^= 0x55; assert(FirmwareBot::responseFingerprintFor(dm, "pong!", 5).value != FirmwareBot::responseFingerprintFor(other_dm, "pong!", 5).value); } static void test_authoritative_suppression_flow() { BotKnownBotEntry entries[1]; uint8_t known_key[BOT_SENDER_KEY_PREFIX_LEN] = { 2, 4, 6, 8, 10, 12 }; KnownBotRegistry::clear(entries, 1); assert(KnownBotRegistry::add(entries, 1, known_key, BOT_KNOWN_BOT_FLAG_SUPPRESS_NORMAL, "known")); BotCoordinatorPending pending[1]; ResponseCoordinator::clear(pending, 1); BotMessage dm = make_message("#bot", "!ping"); dm.channel_kind = BOT_CHANNEL_DM; dm.channel_name[0] = 0; memcpy(dm.sender_key_prefix, known_key, sizeof(known_key)); dm.sender_key_prefix_len = BOT_SENDER_KEY_PREFIX_LEN; BotFingerprint request = FirmwareBot::fingerprintFor(dm); BotFingerprint response = FirmwareBot::responseFingerprintFor(dm, "Pong!", 5); BotFingerprint scheduled; uint32_t due = 0; assert(ResponseCoordinator::schedule(pending, 1, dm, BOT_COMMAND_PING, request, response, 1000, 0, 0x01020304UL, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(KnownBotRegistry::canSuppressNormal(entries, 1, dm.sender_key_prefix, dm.sender_key_prefix_len)); assert(ResponseCoordinator::suppress(pending, 1, FirmwareBot::responseFingerprintFor(dm, "Pong!", 5))); BotCoordinatorReady ready = ResponseCoordinator::poll(pending, 1, 1000); assert(ready.result == BOT_COORDINATOR_READY_SUPPRESSED); assert(ready.request_fingerprint.value == request.value); ResponseCoordinator::clear(pending, 1); BotMessage group = make_message("#bot", "cm-bot: Pong!"); group.sender_key_prefix_len = 0; assert(!KnownBotRegistry::canSuppressNormal(entries, 1, group.sender_key_prefix, group.sender_key_prefix_len)); } static void test_response_coordinator_schedule_poll() { BotCoordinatorPending pending[2]; ResponseCoordinator::clear(pending, 2); BotMessage message = make_message("#bot", "!ping"); BotFingerprint request = FirmwareBot::fingerprintFor(message); BotFingerprint response = FirmwareBot::responseFingerprintFor(message, "Pong!", 5); BotFingerprint scheduled; uint32_t due = 0; uint32_t identity_seed = 0xA5A55A5AUL; uint8_t queue_depth = 1; uint32_t jitter_seed = 17; assert(ResponseCoordinator::schedule(pending, 2, message, BOT_COMMAND_PING, request, response, 1000, jitter_seed, identity_seed, queue_depth, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(scheduled.value == request.value); assert(due == 1000 + ResponseCoordinator::responseDelayMillis(message, BOT_COMMAND_PING, request, identity_seed, queue_depth, jitter_seed)); BotCoordinatorReady ready = ResponseCoordinator::poll(pending, 2, due - 1); assert(ready.result == BOT_COORDINATOR_READY_NONE); ready = ResponseCoordinator::poll(pending, 2, due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == request.value); assert(ready.response_fingerprint.value == response.value); assert(ResponseCoordinator::poll(pending, 2, due).result == BOT_COORDINATOR_READY_NONE); assert(ResponseCoordinator::schedule(pending, 2, message, BOT_COMMAND_PING, request, response, 2000, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::schedule(pending, 2, message, BOT_COMMAND_PING, request, response, 3000, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_REPLACED); ready = ResponseCoordinator::poll(pending, 2, due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == request.value); assert(ready.response_fingerprint.value == response.value); } static void test_response_coordinator_distinct_requests_same_response() { BotCoordinatorPending pending[2]; ResponseCoordinator::clear(pending, 2); BotMessage first = make_message("#bot", "!ping"); BotMessage second = first; second.sender_timestamp++; BotFingerprint first_request = FirmwareBot::fingerprintFor(first); BotFingerprint second_request = FirmwareBot::fingerprintFor(second); BotFingerprint response = FirmwareBot::responseFingerprintFor(first, "Pong!", 5); BotFingerprint scheduled; uint32_t first_due = 0; uint32_t second_due = 0; uint32_t identity_seed = 0x01020304UL; assert(first_request.value != second_request.value); assert(response.value == FirmwareBot::responseFingerprintFor(second, "Pong!", 5).value); assert(ResponseCoordinator::schedule(pending, 2, first, BOT_COMMAND_PING, first_request, response, 1000, 0, identity_seed, 0, &scheduled, &first_due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::schedule(pending, 2, second, BOT_COMMAND_PING, second_request, response, 1000, 0, identity_seed, 0, &scheduled, &second_due) == BOT_COORDINATOR_SCHEDULED); assert(scheduled.value == second_request.value); bool first_is_early = first_due <= second_due; BotCoordinatorReady ready = ResponseCoordinator::poll(pending, 2, first_is_early ? first_due : second_due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == (first_is_early ? first_request.value : second_request.value)); assert(ready.response_fingerprint.value == response.value); ready = ResponseCoordinator::poll(pending, 2, first_is_early ? second_due : first_due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == (first_is_early ? second_request.value : first_request.value)); assert(ready.response_fingerprint.value == response.value); } static void test_response_coordinator_suppression_uses_response_fingerprint() { BotCoordinatorPending pending[2]; ResponseCoordinator::clear(pending, 2); BotMessage first = make_message("#bot", "!ping"); BotMessage second = first; second.sender_timestamp++; BotFingerprint first_request = FirmwareBot::fingerprintFor(first); BotFingerprint second_request = FirmwareBot::fingerprintFor(second); BotFingerprint response = FirmwareBot::responseFingerprintFor(first, "Pong!", 5); BotFingerprint scheduled; uint32_t due = 0; assert(ResponseCoordinator::schedule(pending, 2, first, BOT_COMMAND_PING, first_request, response, 1000, 0, 0x0A0B0C0DUL, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::schedule(pending, 2, second, BOT_COMMAND_PING, second_request, response, 1000, 0, 0x0A0B0C0DUL, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::suppress(pending, 2, response)); BotCoordinatorReady ready = ResponseCoordinator::poll(pending, 2, 1000); assert(ready.result == BOT_COORDINATOR_READY_SUPPRESSED); assert(ready.request_fingerprint.value == first_request.value); assert(ready.response_fingerprint.value == response.value); ready = ResponseCoordinator::poll(pending, 2, due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == second_request.value); assert(ready.response_fingerprint.value == response.value); } static void test_response_coordinator_suppress_expire_full() { BotCoordinatorPending pending[1]; ResponseCoordinator::clear(pending, 1); BotMessage message = make_message("#bot", "!ping"); BotMessage second_message = make_message("#bot", "!test"); BotFingerprint first_request = FirmwareBot::fingerprintFor(message); BotFingerprint second_request = FirmwareBot::fingerprintFor(second_message); BotFingerprint first_response = FirmwareBot::responseFingerprintFor(message, "Pong!", 5); BotFingerprint second_response = FirmwareBot::responseFingerprintFor(second_message, "Bot test OK", 11); BotFingerprint scheduled; uint32_t due = 0; uint32_t identity_seed = 0x11223344UL; assert(ResponseCoordinator::schedule(pending, 1, message, BOT_COMMAND_PING, first_request, first_response, 1000, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::schedule(pending, 1, second_message, BOT_COMMAND_TEST, second_request, second_response, 1000, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_NO_SPACE); assert(ResponseCoordinator::suppress(pending, 1, first_response)); BotCoordinatorReady ready = ResponseCoordinator::poll(pending, 1, 1000); assert(ready.result == BOT_COORDINATOR_READY_SUPPRESSED); assert(ready.request_fingerprint.value == first_request.value); assert(ready.response_fingerprint.value == first_response.value); assert(!ResponseCoordinator::suppress(pending, 1, first_response)); assert(ResponseCoordinator::schedule(pending, 1, message, BOT_COMMAND_PING, first_request, first_response, 1000, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::schedule(pending, 1, second_message, BOT_COMMAND_TEST, second_request, second_response, 1000 + BOT_RESPONSE_PENDING_TTL_MILLIS, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_NO_SPACE); ready = ResponseCoordinator::poll(pending, 1, 1000 + BOT_RESPONSE_PENDING_TTL_MILLIS); assert(ready.result == BOT_COORDINATOR_READY_EXPIRED); assert(ready.request_fingerprint.value == first_request.value); assert(ready.response_fingerprint.value == first_response.value); assert(ResponseCoordinator::schedule(pending, 1, second_message, BOT_COMMAND_TEST, second_request, second_response, 1000 + BOT_RESPONSE_PENDING_TTL_MILLIS, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); ResponseCoordinator::clear(pending, 1); assert(ResponseCoordinator::schedule(pending, 1, message, BOT_COMMAND_PING, first_request, first_response, 0xFFFFFF00UL, 0, identity_seed, 0, &scheduled, &due) == BOT_COORDINATOR_SCHEDULED); ready = ResponseCoordinator::poll(pending, 1, 0xFFFFFF00UL); assert(ready.result == BOT_COORDINATOR_READY_NONE); ready = ResponseCoordinator::poll(pending, 1, due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == first_request.value); assert(ready.response_fingerprint.value == first_response.value); } static void test_response_coordinator_cancel_by_request() { BotCoordinatorPending pending[2]; ResponseCoordinator::clear(pending, 2); BotMessage first = make_message("#bot", "!ping"); BotMessage second = first; second.sender_timestamp++; BotFingerprint first_request = FirmwareBot::fingerprintFor(first); BotFingerprint second_request = FirmwareBot::fingerprintFor(second); BotFingerprint response = FirmwareBot::responseFingerprintFor(first, "Pong!", 5); BotFingerprint scheduled; uint32_t first_due = 0; uint32_t second_due = 0; assert(ResponseCoordinator::schedule(pending, 2, first, BOT_COMMAND_PING, first_request, response, 1000, 0, 0x01020304UL, 0, &scheduled, &first_due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::schedule(pending, 2, second, BOT_COMMAND_PING, second_request, response, 1000, 0, 0x01020304UL, 0, &scheduled, &second_due) == BOT_COORDINATOR_SCHEDULED); assert(ResponseCoordinator::cancel(pending, 2, first_request)); assert(!ResponseCoordinator::cancel(pending, 2, first_request)); BotCoordinatorReady ready = ResponseCoordinator::poll(pending, 2, first_due > second_due ? first_due : second_due); assert(ready.result == BOT_COORDINATOR_READY_SEND); assert(ready.request_fingerprint.value == second_request.value); assert(ready.response_fingerprint.value == response.value); } static void test_response_coordinator_delay_biases() { BotMessage message = make_message("#bot", "!ping"); BotFingerprint request = { 0x0123456789ABCDEFULL }; uint32_t first = ResponseCoordinator::responseDelayMillis(message, BOT_COMMAND_PING, request, 0x01020304UL, 0, 0); uint32_t second = ResponseCoordinator::responseDelayMillis(message, BOT_COMMAND_PING, request, 0x05060708UL, 0, 0); assert(first != second); assert(ResponseCoordinator::responseDelayMillis(message, BOT_COMMAND_PING, request, 0x01020304UL, 2, BOT_RESPONSE_DELAY_JITTER_MILLIS + 17) == first + 300 + 17); } static void test_response_coordinator_recent_responses() { BotCoordinatorRecent recent[1]; ResponseCoordinator::clearRecent(recent, 1); BotFingerprint response = { 0xFEDCBA9876543210ULL }; BotFingerprint zero = { 0 }; assert(!ResponseCoordinator::recentlySent(recent, 1, response, 1000)); ResponseCoordinator::recordRecent(recent, 1, zero, 1000); assert(!ResponseCoordinator::recentlySent(recent, 1, response, 1000)); ResponseCoordinator::recordRecent(recent, 1, response, 1000); assert(ResponseCoordinator::recentlySent(recent, 1, response, 1000)); assert(ResponseCoordinator::recentlySent(recent, 1, response, 1000 + BOT_RESPONSE_RECENT_TTL_MILLIS - 1)); assert(!ResponseCoordinator::recentlySent(recent, 1, response, 1000 + BOT_RESPONSE_RECENT_TTL_MILLIS)); } static void test_response_coordinator_rejects_non_normal() { BotCoordinatorPending pending[1]; ResponseCoordinator::clear(pending, 1); BotMessage bot_message = make_message("#bot", "!ping"); BotMessage public_message = make_message("Public", "!ping"); BotMessage emergency_message = make_message("#emergency", "need help"); BotFingerprint request = FirmwareBot::fingerprintFor(bot_message); BotFingerprint response = FirmwareBot::responseFingerprintFor(bot_message, "Pong!", 5); BotFingerprint zero = { 0 }; BotFingerprint scheduled; uint32_t due = 99; assert(ResponseCoordinator::schedule(pending, 1, public_message, BOT_COMMAND_PING, request, response, 1000, 0, 0, 0, &scheduled, &due) == BOT_COORDINATOR_NOT_NORMAL); assert(scheduled.value == 0); assert(due == 0); assert(ResponseCoordinator::schedule(pending, 1, emergency_message, BOT_COMMAND_PING, request, response, 1000, 0, 0, 0, &scheduled, &due) == BOT_COORDINATOR_NOT_NORMAL); assert(ResponseCoordinator::schedule(pending, 1, bot_message, BOT_COMMAND_PING, zero, response, 1000, 0, 0, 0, &scheduled, &due) == BOT_COORDINATOR_NOT_NORMAL); assert(ResponseCoordinator::schedule(pending, 1, bot_message, BOT_COMMAND_PING, request, zero, 1000, 0, 0, 0, &scheduled, &due) == BOT_COORDINATOR_NOT_NORMAL); } int main() { test_channel_policy(); test_bot_prefs_defaults(); test_bot_prefs_serialization_round_trip(); test_bot_prefs_rejects_corrupt_and_wrong_version(); test_bot_prefs_validation_and_command_mask(); test_bot_prefs_known_bot_helpers(); test_prefs_aware_channel_policy(); test_normalize_text(); test_normalize_truncation(); test_parse_command(); test_response_write(); test_command_outputs(); test_path_command(); test_dice_command(); test_command_truncation(); test_command_cooldown(); test_group_response_cap(); test_emergency_forward_short(); test_emergency_forward_loop_prevention(); test_emergency_forward_multipart(); test_emergency_forward_truncation(); test_known_bot_registry(); test_known_bot_registry_ambiguous_short_prefix(); test_fingerprint(); test_response_fingerprint(); test_authoritative_suppression_flow(); test_response_coordinator_schedule_poll(); test_response_coordinator_distinct_requests_same_response(); test_response_coordinator_suppression_uses_response_fingerprint(); test_response_coordinator_suppress_expire_full(); test_response_coordinator_cancel_by_request(); test_response_coordinator_delay_biases(); test_response_coordinator_recent_responses(); test_response_coordinator_rejects_non_normal(); printf("firmware_bot tests passed\n"); return 0; }