mirror of
https://github.com/meshcore-dev/MeshCore.git
synced 2026-04-20 22:13:47 +00:00
Merge branch 'meshcore-dev:dev' into dev
This commit is contained in:
commit
7a3e01ae66
55 changed files with 653 additions and 267 deletions
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@ -222,12 +222,14 @@ void DataStore::loadPrefsInt(const char *filename, NodePrefs& _prefs, double& no
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file.read((uint8_t *)&_prefs.rx_delay_base, sizeof(_prefs.rx_delay_base)); // 72
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file.read((uint8_t *)&_prefs.advert_loc_policy, sizeof(_prefs.advert_loc_policy)); // 76
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file.read((uint8_t *)&_prefs.multi_acks, sizeof(_prefs.multi_acks)); // 77
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file.read(pad, 2); // 78
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file.read((uint8_t *)&_prefs.path_hash_mode, sizeof(_prefs.path_hash_mode)); // 78
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file.read(pad, 1); // 79
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file.read((uint8_t *)&_prefs.ble_pin, sizeof(_prefs.ble_pin)); // 80
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file.read((uint8_t *)&_prefs.buzzer_quiet, sizeof(_prefs.buzzer_quiet)); // 84
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file.read((uint8_t *)&_prefs.gps_enabled, sizeof(_prefs.gps_enabled)); // 85
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file.read((uint8_t *)&_prefs.gps_interval, sizeof(_prefs.gps_interval)); // 86
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file.read((uint8_t *)&_prefs.autoadd_config, sizeof(_prefs.autoadd_config)); // 87
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file.read((uint8_t *)&_prefs.autoadd_max_hops, sizeof(_prefs.autoadd_max_hops)); // 88
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file.close();
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}
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@ -257,12 +259,14 @@ void DataStore::savePrefs(const NodePrefs& _prefs, double node_lat, double node_
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file.write((uint8_t *)&_prefs.rx_delay_base, sizeof(_prefs.rx_delay_base)); // 72
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file.write((uint8_t *)&_prefs.advert_loc_policy, sizeof(_prefs.advert_loc_policy)); // 76
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file.write((uint8_t *)&_prefs.multi_acks, sizeof(_prefs.multi_acks)); // 77
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file.write(pad, 2); // 78
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file.write((uint8_t *)&_prefs.path_hash_mode, sizeof(_prefs.path_hash_mode)); // 78
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file.write(pad, 1); // 79
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file.write((uint8_t *)&_prefs.ble_pin, sizeof(_prefs.ble_pin)); // 80
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file.write((uint8_t *)&_prefs.buzzer_quiet, sizeof(_prefs.buzzer_quiet)); // 84
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file.write((uint8_t *)&_prefs.gps_enabled, sizeof(_prefs.gps_enabled)); // 85
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file.write((uint8_t *)&_prefs.gps_interval, sizeof(_prefs.gps_interval)); // 86
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file.write((uint8_t *)&_prefs.autoadd_config, sizeof(_prefs.autoadd_config)); // 87
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file.write((uint8_t *)&_prefs.autoadd_max_hops, sizeof(_prefs.autoadd_max_hops)); // 88
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file.close();
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}
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@ -57,6 +57,7 @@
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#define CMD_SET_AUTOADD_CONFIG 58
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#define CMD_GET_AUTOADD_CONFIG 59
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#define CMD_GET_ALLOWED_REPEAT_FREQ 60
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#define CMD_SET_PATH_HASH_MODE 61
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// Stats sub-types for CMD_GET_STATS
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#define STATS_TYPE_CORE 0
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@ -258,11 +259,11 @@ int MyMesh::calcRxDelay(float score, uint32_t air_time) const {
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}
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uint32_t MyMesh::getRetransmitDelay(const mesh::Packet *packet) {
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uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * 0.5f);
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uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * 0.5f);
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return getRNG()->nextInt(0, 5*t + 1);
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}
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uint32_t MyMesh::getDirectRetransmitDelay(const mesh::Packet *packet) {
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uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * 0.2f);
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uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * 0.2f);
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return getRNG()->nextInt(0, 5*t + 1);
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}
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@ -317,6 +318,10 @@ bool MyMesh::shouldOverwriteWhenFull() const {
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return (_prefs.autoadd_config & AUTO_ADD_OVERWRITE_OLDEST) != 0;
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}
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uint8_t MyMesh::getAutoAddMaxHops() const {
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return _prefs.autoadd_max_hops;
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}
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void MyMesh::onContactOverwrite(const uint8_t* pub_key) {
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_store->deleteBlobByKey(pub_key, PUB_KEY_SIZE); // delete from storage
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if (_serial->isConnected()) {
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@ -349,7 +354,7 @@ void MyMesh::onDiscoveredContact(ContactInfo &contact, bool is_new, uint8_t path
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}
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// add inbound-path to mem cache
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if (path && path_len <= sizeof(AdvertPath::path)) { // check path is valid
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if (path && mesh::Packet::isValidPathLen(path_len)) { // check path is valid
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AdvertPath* p = advert_paths;
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uint32_t oldest = 0xFFFFFFFF;
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for (int i = 0; i < ADVERT_PATH_TABLE_SIZE; i++) { // check if already in table, otherwise evict oldest
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@ -366,8 +371,7 @@ void MyMesh::onDiscoveredContact(ContactInfo &contact, bool is_new, uint8_t path
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memcpy(p->pubkey_prefix, contact.id.pub_key, sizeof(p->pubkey_prefix));
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strcpy(p->name, contact.name);
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p->recv_timestamp = getRTCClock()->getCurrentTime();
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p->path_len = path_len;
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memcpy(p->path, path, p->path_len);
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p->path_len = mesh::Packet::copyPath(p->path, path, path_len);
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}
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if (!is_new) dirty_contacts_expiry = futureMillis(LAZY_CONTACTS_WRITE_DELAY); // only schedule lazy write for contacts that are in contacts[]
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@ -473,23 +477,23 @@ bool MyMesh::allowPacketForward(const mesh::Packet* packet) {
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void MyMesh::sendFloodScoped(const ContactInfo& recipient, mesh::Packet* pkt, uint32_t delay_millis) {
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// TODO: dynamic send_scope, depending on recipient and current 'home' Region
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if (send_scope.isNull()) {
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sendFlood(pkt, delay_millis);
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sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
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} else {
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uint16_t codes[2];
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codes[0] = send_scope.calcTransportCode(pkt);
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codes[1] = 0; // REVISIT: set to 'home' Region, for sender/return region?
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sendFlood(pkt, codes, delay_millis);
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sendFlood(pkt, codes, delay_millis, _prefs.path_hash_mode + 1);
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}
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}
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void MyMesh::sendFloodScoped(const mesh::GroupChannel& channel, mesh::Packet* pkt, uint32_t delay_millis) {
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// TODO: have per-channel send_scope
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if (send_scope.isNull()) {
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sendFlood(pkt, delay_millis);
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sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
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} else {
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uint16_t codes[2];
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codes[0] = send_scope.calcTransportCode(pkt);
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codes[1] = 0; // REVISIT: set to 'home' Region, for sender/return region?
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sendFlood(pkt, codes, delay_millis);
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sendFlood(pkt, codes, delay_millis, _prefs.path_hash_mode + 1);
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}
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}
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@ -686,7 +690,7 @@ bool MyMesh::onContactPathRecv(ContactInfo& contact, uint8_t* in_path, uint8_t i
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if (tag == pending_discovery) { // check for matching response tag)
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pending_discovery = 0;
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if (in_path_len > MAX_PATH_SIZE || out_path_len > MAX_PATH_SIZE) {
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if (!mesh::Packet::isValidPathLen(in_path_len) || !mesh::Packet::isValidPathLen(out_path_len)) {
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MESH_DEBUG_PRINTLN("onContactPathRecv, invalid path sizes: %d, %d", in_path_len, out_path_len);
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} else {
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int i = 0;
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@ -695,11 +699,9 @@ bool MyMesh::onContactPathRecv(ContactInfo& contact, uint8_t* in_path, uint8_t i
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memcpy(&out_frame[i], contact.id.pub_key, 6);
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i += 6; // pub_key_prefix
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out_frame[i++] = out_path_len;
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memcpy(&out_frame[i], out_path, out_path_len);
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i += out_path_len;
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i += mesh::Packet::writePath(&out_frame[i], out_path, out_path_len);
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out_frame[i++] = in_path_len;
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memcpy(&out_frame[i], in_path, in_path_len);
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i += in_path_len;
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i += mesh::Packet::writePath(&out_frame[i], in_path, in_path_len);
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// NOTE: telemetry data in 'extra' is discarded at present
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_serial->writeFrame(out_frame, i);
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@ -785,9 +787,10 @@ uint32_t MyMesh::calcFloodTimeoutMillisFor(uint32_t pkt_airtime_millis) const {
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return SEND_TIMEOUT_BASE_MILLIS + (FLOOD_SEND_TIMEOUT_FACTOR * pkt_airtime_millis);
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}
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uint32_t MyMesh::calcDirectTimeoutMillisFor(uint32_t pkt_airtime_millis, uint8_t path_len) const {
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uint8_t path_hash_count = path_len & 63;
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return SEND_TIMEOUT_BASE_MILLIS +
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((pkt_airtime_millis * DIRECT_SEND_PERHOP_FACTOR + DIRECT_SEND_PERHOP_EXTRA_MILLIS) *
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(path_len + 1));
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(path_hash_count + 1));
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}
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void MyMesh::onSendTimeout() {}
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@ -938,6 +941,7 @@ void MyMesh::handleCmdFrame(size_t len) {
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StrHelper::strzcpy((char *)&out_frame[i], FIRMWARE_VERSION, 20);
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i += 20;
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out_frame[i++] = _prefs.client_repeat; // v9+
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out_frame[i++] = _prefs.path_hash_mode; // v10+
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_serial->writeFrame(out_frame, i);
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} else if (cmd_frame[0] == CMD_APP_START &&
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len >= 8) { // sent when app establishes connection, respond with node ID
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@ -1115,7 +1119,8 @@ void MyMesh::handleCmdFrame(size_t len) {
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}
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if (pkt) {
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if (len >= 2 && cmd_frame[1] == 1) { // optional param (1 = flood, 0 = zero hop)
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sendFlood(pkt);
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unsigned long delay_millis = 0;
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sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
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} else {
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sendZeroHop(pkt);
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}
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@ -1127,7 +1132,7 @@ void MyMesh::handleCmdFrame(size_t len) {
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uint8_t *pub_key = &cmd_frame[1];
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ContactInfo *recipient = lookupContactByPubKey(pub_key, PUB_KEY_SIZE);
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if (recipient) {
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recipient->out_path_len = -1;
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recipient->out_path_len = OUT_PATH_UNKNOWN;
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// recipient->lastmod = ?? shouldn't be needed, app already has this version of contact
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dirty_contacts_expiry = futureMillis(LAZY_CONTACTS_WRITE_DELAY);
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writeOKFrame();
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@ -1312,6 +1317,14 @@ void MyMesh::handleCmdFrame(size_t len) {
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}
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savePrefs();
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writeOKFrame();
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} else if (cmd_frame[0] == CMD_SET_PATH_HASH_MODE && cmd_frame[1] == 0 && len >= 3) {
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if (cmd_frame[2] >= 3) {
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writeErrFrame(ERR_CODE_ILLEGAL_ARG);
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} else {
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_prefs.path_hash_mode = cmd_frame[2];
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savePrefs();
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writeOKFrame();
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}
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} else if (cmd_frame[0] == CMD_REBOOT && memcmp(&cmd_frame[1], "reboot", 6) == 0) {
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if (dirty_contacts_expiry) { // is there are pending dirty contacts write needed?
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saveContacts();
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@ -1449,7 +1462,7 @@ void MyMesh::handleCmdFrame(size_t len) {
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memset(&req_data[2], 0, 3); // reserved
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getRNG()->random(&req_data[5], 4); // random blob to help make packet-hash unique
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auto save = recipient->out_path_len; // temporarily force sendRequest() to flood
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recipient->out_path_len = -1;
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recipient->out_path_len = OUT_PATH_UNKNOWN;
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int result = sendRequest(*recipient, req_data, sizeof(req_data), tag, est_timeout);
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recipient->out_path_len = save;
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if (result == MSG_SEND_FAILED) {
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@ -1686,11 +1699,12 @@ void MyMesh::handleCmdFrame(size_t len) {
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}
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}
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if (found) {
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out_frame[0] = RESP_CODE_ADVERT_PATH;
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memcpy(&out_frame[1], &found->recv_timestamp, 4);
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out_frame[5] = found->path_len;
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memcpy(&out_frame[6], found->path, found->path_len);
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_serial->writeFrame(out_frame, 6 + found->path_len);
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int i = 0;
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out_frame[i++] = RESP_CODE_ADVERT_PATH;
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memcpy(&out_frame[i], &found->recv_timestamp, 4); i += 4;
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out_frame[i++] = found->path_len;
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i += mesh::Packet::writePath(&out_frame[i], found->path, found->path_len);
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_serial->writeFrame(out_frame, i);
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} else {
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writeErrFrame(ERR_CODE_NOT_FOUND);
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}
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@ -1775,12 +1789,16 @@ void MyMesh::handleCmdFrame(size_t len) {
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}
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} else if (cmd_frame[0] == CMD_SET_AUTOADD_CONFIG) {
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_prefs.autoadd_config = cmd_frame[1];
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if (len >= 3) {
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_prefs.autoadd_max_hops = min(cmd_frame[2], (uint8_t)64);
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}
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savePrefs();
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writeOKFrame();
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writeOKFrame();
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} else if (cmd_frame[0] == CMD_GET_AUTOADD_CONFIG) {
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int i = 0;
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out_frame[i++] = RESP_CODE_AUTOADD_CONFIG;
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out_frame[i++] = _prefs.autoadd_config;
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out_frame[i++] = _prefs.autoadd_max_hops;
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_serial->writeFrame(out_frame, i);
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} else if (cmd_frame[0] == CMD_GET_ALLOWED_REPEAT_FREQ) {
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int i = 0;
|
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@ -5,7 +5,7 @@
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#include "AbstractUITask.h"
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|
||||
/*------------ Frame Protocol --------------*/
|
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#define FIRMWARE_VER_CODE 9
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#define FIRMWARE_VER_CODE 10
|
||||
|
||||
#ifndef FIRMWARE_BUILD_DATE
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||||
#define FIRMWARE_BUILD_DATE "15 Feb 2026"
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@ -119,6 +119,7 @@ protected:
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|||
bool isAutoAddEnabled() const override;
|
||||
bool shouldAutoAddContactType(uint8_t type) const override;
|
||||
bool shouldOverwriteWhenFull() const override;
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uint8_t getAutoAddMaxHops() const override;
|
||||
void onContactsFull() override;
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void onContactOverwrite(const uint8_t* pub_key) override;
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bool onContactPathRecv(ContactInfo& from, uint8_t* in_path, uint8_t in_path_len, uint8_t* out_path, uint8_t out_path_len, uint8_t extra_type, uint8_t* extra, uint8_t extra_len) override;
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||||
|
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|||
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@ -29,4 +29,6 @@ struct NodePrefs { // persisted to file
|
|||
uint32_t gps_interval; // GPS read interval in seconds
|
||||
uint8_t autoadd_config; // bitmask for auto-add contacts config
|
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uint8_t client_repeat;
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uint8_t path_hash_mode; // which path mode to use when sending
|
||||
uint8_t autoadd_max_hops; // 0 = no limit, 1 = direct (0 hops), N = up to N-1 hops (max 64)
|
||||
};
|
||||
|
|
@ -129,7 +129,7 @@ uint8_t MyMesh::handleLoginReq(const mesh::Identity& sender, const uint8_t* secr
|
|||
}
|
||||
|
||||
if (is_flood) {
|
||||
client->out_path_len = -1; // need to rediscover out_path
|
||||
client->out_path_len = OUT_PATH_UNKNOWN; // need to rediscover out_path
|
||||
}
|
||||
|
||||
uint32_t now = getRTCClock()->getCurrentTimeUnique();
|
||||
|
|
@ -147,9 +147,12 @@ uint8_t MyMesh::handleLoginReq(const mesh::Identity& sender, const uint8_t* secr
|
|||
uint8_t MyMesh::handleAnonRegionsReq(const mesh::Identity& sender, uint32_t sender_timestamp, const uint8_t* data) {
|
||||
if (anon_limiter.allow(rtc_clock.getCurrentTime())) {
|
||||
// request data has: {reply-path-len}{reply-path}
|
||||
reply_path_len = *data++ & 0x3F;
|
||||
memcpy(reply_path, data, reply_path_len);
|
||||
// data += reply_path_len;
|
||||
reply_path_len = *data & 63;
|
||||
reply_path_hash_size = (*data >> 6) + 1;
|
||||
data++;
|
||||
|
||||
memcpy(reply_path, data, ((uint8_t)reply_path_len) * reply_path_hash_size);
|
||||
// data += (uint8_t)reply_path_len * reply_path_hash_size;
|
||||
|
||||
memcpy(reply_data, &sender_timestamp, 4); // prefix with sender_timestamp, like a tag
|
||||
uint32_t now = getRTCClock()->getCurrentTime();
|
||||
|
|
@ -163,9 +166,12 @@ uint8_t MyMesh::handleAnonRegionsReq(const mesh::Identity& sender, uint32_t send
|
|||
uint8_t MyMesh::handleAnonOwnerReq(const mesh::Identity& sender, uint32_t sender_timestamp, const uint8_t* data) {
|
||||
if (anon_limiter.allow(rtc_clock.getCurrentTime())) {
|
||||
// request data has: {reply-path-len}{reply-path}
|
||||
reply_path_len = *data++ & 0x3F;
|
||||
memcpy(reply_path, data, reply_path_len);
|
||||
// data += reply_path_len;
|
||||
reply_path_len = *data & 63;
|
||||
reply_path_hash_size = (*data >> 6) + 1;
|
||||
data++;
|
||||
|
||||
memcpy(reply_path, data, ((uint8_t)reply_path_len) * reply_path_hash_size);
|
||||
// data += (uint8_t)reply_path_len * reply_path_hash_size;
|
||||
|
||||
memcpy(reply_data, &sender_timestamp, 4); // prefix with sender_timestamp, like a tag
|
||||
uint32_t now = getRTCClock()->getCurrentTime();
|
||||
|
|
@ -180,9 +186,12 @@ uint8_t MyMesh::handleAnonOwnerReq(const mesh::Identity& sender, uint32_t sender
|
|||
uint8_t MyMesh::handleAnonClockReq(const mesh::Identity& sender, uint32_t sender_timestamp, const uint8_t* data) {
|
||||
if (anon_limiter.allow(rtc_clock.getCurrentTime())) {
|
||||
// request data has: {reply-path-len}{reply-path}
|
||||
reply_path_len = *data++ & 0x3F;
|
||||
memcpy(reply_path, data, reply_path_len);
|
||||
// data += reply_path_len;
|
||||
reply_path_len = *data & 63;
|
||||
reply_path_hash_size = (*data >> 6) + 1;
|
||||
data++;
|
||||
|
||||
memcpy(reply_path, data, ((uint8_t)reply_path_len) * reply_path_hash_size);
|
||||
// data += (uint8_t)reply_path_len * reply_path_hash_size;
|
||||
|
||||
memcpy(reply_data, &sender_timestamp, 4); // prefix with sender_timestamp, like a tag
|
||||
uint32_t now = getRTCClock()->getCurrentTime();
|
||||
|
|
@ -387,13 +396,44 @@ File MyMesh::openAppend(const char *fname) {
|
|||
#endif
|
||||
}
|
||||
|
||||
static uint8_t max_loop_minimal[] = { 0, /* 1-byte */ 4, /* 2-byte */ 2, /* 3-byte */ 1 };
|
||||
static uint8_t max_loop_moderate[] = { 0, /* 1-byte */ 2, /* 2-byte */ 1, /* 3-byte */ 1 };
|
||||
static uint8_t max_loop_strict[] = { 0, /* 1-byte */ 1, /* 2-byte */ 1, /* 3-byte */ 1 };
|
||||
|
||||
bool MyMesh::isLooped(const mesh::Packet* packet, const uint8_t max_counters[]) {
|
||||
uint8_t hash_size = packet->getPathHashSize();
|
||||
uint8_t hash_count = packet->getPathHashCount();
|
||||
uint8_t n = 0;
|
||||
const uint8_t* path = packet->path;
|
||||
while (hash_count > 0) { // count how many times this node is already in the path
|
||||
if (self_id.isHashMatch(path, hash_size)) n++;
|
||||
hash_count--;
|
||||
path += hash_size;
|
||||
}
|
||||
return n >= max_counters[hash_size];
|
||||
}
|
||||
|
||||
bool MyMesh::allowPacketForward(const mesh::Packet *packet) {
|
||||
if (_prefs.disable_fwd) return false;
|
||||
if (packet->isRouteFlood() && packet->path_len >= _prefs.flood_max) return false;
|
||||
if (packet->isRouteFlood() && packet->getPathHashCount() >= _prefs.flood_max) return false;
|
||||
if (packet->isRouteFlood() && recv_pkt_region == NULL) {
|
||||
MESH_DEBUG_PRINTLN("allowPacketForward: unknown transport code, or wildcard not allowed for FLOOD packet");
|
||||
return false;
|
||||
}
|
||||
if (packet->isRouteFlood() && _prefs.loop_detect != LOOP_DETECT_OFF) {
|
||||
const uint8_t* maximums;
|
||||
if (_prefs.loop_detect == LOOP_DETECT_MINIMAL) {
|
||||
maximums = max_loop_minimal;
|
||||
} else if (_prefs.loop_detect == LOOP_DETECT_MODERATE) {
|
||||
maximums = max_loop_moderate;
|
||||
} else {
|
||||
maximums = max_loop_strict;
|
||||
}
|
||||
if (isLooped(packet, maximums)) {
|
||||
MESH_DEBUG_PRINTLN("allowPacketForward: FLOOD packet loop detected!");
|
||||
return false;
|
||||
}
|
||||
}
|
||||
return true;
|
||||
}
|
||||
|
||||
|
|
@ -484,11 +524,11 @@ int MyMesh::calcRxDelay(float score, uint32_t air_time) const {
|
|||
}
|
||||
|
||||
uint32_t MyMesh::getRetransmitDelay(const mesh::Packet *packet) {
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * _prefs.tx_delay_factor);
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * _prefs.tx_delay_factor);
|
||||
return getRNG()->nextInt(0, 5*t + 1);
|
||||
}
|
||||
uint32_t MyMesh::getDirectRetransmitDelay(const mesh::Packet *packet) {
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * _prefs.direct_tx_delay_factor);
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * _prefs.direct_tx_delay_factor);
|
||||
return getRNG()->nextInt(0, 5*t + 1);
|
||||
}
|
||||
|
||||
|
|
@ -538,13 +578,14 @@ void MyMesh::onAnonDataRecv(mesh::Packet *packet, const uint8_t *secret, const m
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the response
|
||||
mesh::Packet* path = createPathReturn(sender, secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_RESPONSE, reply_data, reply_len);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else if (reply_path_len < 0) {
|
||||
mesh::Packet* reply = createDatagram(PAYLOAD_TYPE_RESPONSE, sender, secret, reply_data, reply_len);
|
||||
if (reply) sendFlood(reply, SERVER_RESPONSE_DELAY);
|
||||
if (reply) sendFlood(reply, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
mesh::Packet* reply = createDatagram(PAYLOAD_TYPE_RESPONSE, sender, secret, reply_data, reply_len);
|
||||
if (reply) sendDirect(reply, reply_path, reply_path_len, SERVER_RESPONSE_DELAY);
|
||||
uint8_t path_len = ((reply_path_hash_size - 1) << 6) | (reply_path_len & 63);
|
||||
if (reply) sendDirect(reply, reply_path, path_len, SERVER_RESPONSE_DELAY);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -613,15 +654,15 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the response
|
||||
mesh::Packet *path = createPathReturn(client->id, secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_RESPONSE, reply_data, reply_len);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
mesh::Packet *reply =
|
||||
createDatagram(PAYLOAD_TYPE_RESPONSE, client->id, secret, reply_data, reply_len);
|
||||
if (reply) {
|
||||
if (client->out_path_len >= 0) { // we have an out_path, so send DIRECT
|
||||
if (client->out_path_len != OUT_PATH_UNKNOWN) { // we have an out_path, so send DIRECT
|
||||
sendDirect(reply, client->out_path, client->out_path_len, SERVER_RESPONSE_DELAY);
|
||||
} else {
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY);
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -651,8 +692,8 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
|
||||
mesh::Packet *ack = createAck(ack_hash);
|
||||
if (ack) {
|
||||
if (client->out_path_len < 0) {
|
||||
sendFlood(ack, TXT_ACK_DELAY);
|
||||
if (client->out_path_len == OUT_PATH_UNKNOWN) {
|
||||
sendFlood(ack, TXT_ACK_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
sendDirect(ack, client->out_path, client->out_path_len, TXT_ACK_DELAY);
|
||||
}
|
||||
|
|
@ -679,8 +720,8 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
|
||||
auto reply = createDatagram(PAYLOAD_TYPE_TXT_MSG, client->id, secret, temp, 5 + text_len);
|
||||
if (reply) {
|
||||
if (client->out_path_len < 0) {
|
||||
sendFlood(reply, CLI_REPLY_DELAY_MILLIS);
|
||||
if (client->out_path_len == OUT_PATH_UNKNOWN) {
|
||||
sendFlood(reply, CLI_REPLY_DELAY_MILLIS, packet->getPathHashSize());
|
||||
} else {
|
||||
sendDirect(reply, client->out_path, client->out_path_len, CLI_REPLY_DELAY_MILLIS);
|
||||
}
|
||||
|
|
@ -701,7 +742,8 @@ bool MyMesh::onPeerPathRecv(mesh::Packet *packet, int sender_idx, const uint8_t
|
|||
MESH_DEBUG_PRINTLN("PATH to client, path_len=%d", (uint32_t)path_len);
|
||||
auto client = acl.getClientByIdx(i);
|
||||
|
||||
memcpy(client->out_path, path, client->out_path_len = path_len); // store a copy of path, for sendDirect()
|
||||
// store a copy of path, for sendDirect()
|
||||
client->out_path_len = mesh::Packet::copyPath(client->out_path, path, path_len);
|
||||
client->last_activity = getRTCClock()->getCurrentTime();
|
||||
} else {
|
||||
MESH_DEBUG_PRINTLN("onPeerPathRecv: invalid peer idx: %d", i);
|
||||
|
|
@ -906,7 +948,7 @@ void MyMesh::sendSelfAdvertisement(int delay_millis, bool flood) {
|
|||
mesh::Packet *pkt = createSelfAdvert();
|
||||
if (pkt) {
|
||||
if (flood) {
|
||||
sendFlood(pkt, delay_millis);
|
||||
sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
|
||||
} else {
|
||||
sendZeroHop(pkt, delay_millis);
|
||||
}
|
||||
|
|
|
|||
|
|
@ -92,6 +92,7 @@ class MyMesh : public mesh::Mesh, public CommonCLICallbacks {
|
|||
uint8_t reply_data[MAX_PACKET_PAYLOAD];
|
||||
uint8_t reply_path[MAX_PATH_SIZE];
|
||||
int8_t reply_path_len;
|
||||
uint8_t reply_path_hash_size;
|
||||
TransportKeyStore key_store;
|
||||
RegionMap region_map, temp_map;
|
||||
RegionEntry* load_stack[8];
|
||||
|
|
@ -127,6 +128,7 @@ class MyMesh : public mesh::Mesh, public CommonCLICallbacks {
|
|||
mesh::Packet* createSelfAdvert();
|
||||
|
||||
File openAppend(const char* fname);
|
||||
bool isLooped(const mesh::Packet* packet, const uint8_t max_counters[]);
|
||||
|
||||
protected:
|
||||
float getAirtimeBudgetFactor() const override {
|
||||
|
|
|
|||
|
|
@ -73,13 +73,15 @@ void MyMesh::pushPostToClient(ClientInfo *client, PostInfo &post) {
|
|||
|
||||
auto reply = createDatagram(PAYLOAD_TYPE_TXT_MSG, client->id, client->shared_secret, reply_data, len);
|
||||
if (reply) {
|
||||
if (client->out_path_len < 0) {
|
||||
sendFlood(reply);
|
||||
if (client->out_path_len == OUT_PATH_UNKNOWN) {
|
||||
unsigned long delay_millis = 0;
|
||||
sendFlood(reply, delay_millis, _prefs.path_hash_mode + 1);
|
||||
client->extra.room.ack_timeout = futureMillis(PUSH_ACK_TIMEOUT_FLOOD);
|
||||
} else {
|
||||
sendDirect(reply, client->out_path, client->out_path_len);
|
||||
client->extra.room.ack_timeout =
|
||||
futureMillis(PUSH_TIMEOUT_BASE + PUSH_ACK_TIMEOUT_FACTOR * (client->out_path_len + 1));
|
||||
|
||||
uint8_t path_hash_count = client->out_path_len & 63;
|
||||
client->extra.room.ack_timeout = futureMillis(PUSH_TIMEOUT_BASE + PUSH_ACK_TIMEOUT_FACTOR * (path_hash_count + 1));
|
||||
}
|
||||
_num_post_pushes++; // stats
|
||||
} else {
|
||||
|
|
@ -264,17 +266,17 @@ const char *MyMesh::getLogDateTime() {
|
|||
}
|
||||
|
||||
uint32_t MyMesh::getRetransmitDelay(const mesh::Packet *packet) {
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * _prefs.tx_delay_factor);
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * _prefs.tx_delay_factor);
|
||||
return getRNG()->nextInt(0, 5*t + 1);
|
||||
}
|
||||
uint32_t MyMesh::getDirectRetransmitDelay(const mesh::Packet *packet) {
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * _prefs.direct_tx_delay_factor);
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * _prefs.direct_tx_delay_factor);
|
||||
return getRNG()->nextInt(0, 5*t + 1);
|
||||
}
|
||||
|
||||
bool MyMesh::allowPacketForward(const mesh::Packet *packet) {
|
||||
if (_prefs.disable_fwd) return false;
|
||||
if (packet->isRouteFlood() && packet->path_len >= _prefs.flood_max) return false;
|
||||
if (packet->isRouteFlood() && packet->getPathHashCount() >= _prefs.flood_max) return false;
|
||||
return true;
|
||||
}
|
||||
|
||||
|
|
@ -333,7 +335,7 @@ void MyMesh::onAnonDataRecv(mesh::Packet *packet, const uint8_t *secret, const m
|
|||
}
|
||||
|
||||
if (packet->isRouteFlood()) {
|
||||
client->out_path_len = -1; // need to rediscover out_path
|
||||
client->out_path_len = OUT_PATH_UNKNOWN; // need to rediscover out_path
|
||||
}
|
||||
|
||||
uint32_t now = getRTCClock()->getCurrentTimeUnique();
|
||||
|
|
@ -353,14 +355,14 @@ void MyMesh::onAnonDataRecv(mesh::Packet *packet, const uint8_t *secret, const m
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the response
|
||||
mesh::Packet *path = createPathReturn(sender, client->shared_secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_RESPONSE, reply_data, 13);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
mesh::Packet *reply = createDatagram(PAYLOAD_TYPE_RESPONSE, sender, client->shared_secret, reply_data, 13);
|
||||
if (reply) {
|
||||
if (client->out_path_len >= 0) { // we have an out_path, so send DIRECT
|
||||
if (client->out_path_len != OUT_PATH_UNKNOWN) { // we have an out_path, so send DIRECT
|
||||
sendDirect(reply, client->out_path, client->out_path_len, SERVER_RESPONSE_DELAY);
|
||||
} else {
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY);
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -448,9 +450,9 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
|
||||
uint32_t delay_millis;
|
||||
if (send_ack) {
|
||||
if (client->out_path_len < 0) {
|
||||
if (client->out_path_len == OUT_PATH_UNKNOWN) {
|
||||
mesh::Packet *ack = createAck(ack_hash);
|
||||
if (ack) sendFlood(ack, TXT_ACK_DELAY);
|
||||
if (ack) sendFlood(ack, TXT_ACK_DELAY, packet->getPathHashSize());
|
||||
delay_millis = TXT_ACK_DELAY + REPLY_DELAY_MILLIS;
|
||||
} else {
|
||||
uint32_t d = TXT_ACK_DELAY;
|
||||
|
|
@ -482,8 +484,8 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
|
||||
auto reply = createDatagram(PAYLOAD_TYPE_TXT_MSG, client->id, secret, temp, 5 + text_len);
|
||||
if (reply) {
|
||||
if (client->out_path_len < 0) {
|
||||
sendFlood(reply, delay_millis + SERVER_RESPONSE_DELAY);
|
||||
if (client->out_path_len == OUT_PATH_UNKNOWN) {
|
||||
sendFlood(reply, delay_millis + SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
sendDirect(reply, client->out_path, client->out_path_len, delay_millis + SERVER_RESPONSE_DELAY);
|
||||
}
|
||||
|
|
@ -521,7 +523,7 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
// if client sends too quickly, evict()
|
||||
|
||||
// RULE: only send keep_alive response DIRECT!
|
||||
if (client->out_path_len >= 0) {
|
||||
if (client->out_path_len != OUT_PATH_UNKNOWN) {
|
||||
uint32_t ack_hash; // calc ACK to prove to sender that we got request
|
||||
mesh::Utils::sha256((uint8_t *)&ack_hash, 4, data, 9, client->id.pub_key, PUB_KEY_SIZE);
|
||||
|
||||
|
|
@ -538,14 +540,14 @@ void MyMesh::onPeerDataRecv(mesh::Packet *packet, uint8_t type, int sender_idx,
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the response
|
||||
mesh::Packet *path = createPathReturn(client->id, secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_RESPONSE, reply_data, reply_len);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
mesh::Packet *reply = createDatagram(PAYLOAD_TYPE_RESPONSE, client->id, secret, reply_data, reply_len);
|
||||
if (reply) {
|
||||
if (client->out_path_len >= 0) { // we have an out_path, so send DIRECT
|
||||
if (client->out_path_len != OUT_PATH_UNKNOWN) { // we have an out_path, so send DIRECT
|
||||
sendDirect(reply, client->out_path, client->out_path_len, SERVER_RESPONSE_DELAY);
|
||||
} else {
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY);
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -563,7 +565,7 @@ bool MyMesh::onPeerPathRecv(mesh::Packet *packet, int sender_idx, const uint8_t
|
|||
if (i >= 0 && i < acl.getNumClients()) { // get from our known_clients table (sender SHOULD already be known in this context)
|
||||
MESH_DEBUG_PRINTLN("PATH to client, path_len=%d", (uint32_t)path_len);
|
||||
auto client = acl.getClientByIdx(i);
|
||||
memcpy(client->out_path, path, client->out_path_len = path_len); // store a copy of path, for sendDirect()
|
||||
client->out_path_len = mesh::Packet::copyPath(client->out_path, path, path_len); // store a copy of path, for sendDirect()
|
||||
client->last_activity = getRTCClock()->getCurrentTime();
|
||||
} else {
|
||||
MESH_DEBUG_PRINTLN("onPeerPathRecv: invalid peer idx: %d", i);
|
||||
|
|
@ -679,7 +681,7 @@ void MyMesh::sendSelfAdvertisement(int delay_millis, bool flood) {
|
|||
mesh::Packet *pkt = createSelfAdvert();
|
||||
if (pkt) {
|
||||
if (flood) {
|
||||
sendFlood(pkt, delay_millis);
|
||||
sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
|
||||
} else {
|
||||
sendZeroHop(pkt, delay_millis);
|
||||
}
|
||||
|
|
|
|||
|
|
@ -213,7 +213,7 @@ protected:
|
|||
}
|
||||
|
||||
void onContactPathUpdated(const ContactInfo& contact) override {
|
||||
Serial.printf("PATH to: %s, path_len=%d\n", contact.name, (int32_t) contact.out_path_len);
|
||||
Serial.printf("PATH to: %s, path_len=%d\n", contact.name, (uint32_t) contact.out_path_len);
|
||||
saveContacts();
|
||||
}
|
||||
|
||||
|
|
@ -266,8 +266,9 @@ protected:
|
|||
return SEND_TIMEOUT_BASE_MILLIS + (FLOOD_SEND_TIMEOUT_FACTOR * pkt_airtime_millis);
|
||||
}
|
||||
uint32_t calcDirectTimeoutMillisFor(uint32_t pkt_airtime_millis, uint8_t path_len) const override {
|
||||
uint8_t path_hash_count = path_len & 63;
|
||||
return SEND_TIMEOUT_BASE_MILLIS +
|
||||
( (pkt_airtime_millis*DIRECT_SEND_PERHOP_FACTOR + DIRECT_SEND_PERHOP_EXTRA_MILLIS) * (path_len + 1));
|
||||
( (pkt_airtime_millis*DIRECT_SEND_PERHOP_FACTOR + DIRECT_SEND_PERHOP_EXTRA_MILLIS) * (path_hash_count + 1));
|
||||
}
|
||||
|
||||
void onSendTimeout() override {
|
||||
|
|
|
|||
|
|
@ -258,10 +258,11 @@ void SensorMesh::sendAlert(const ClientInfo* c, Trigger* t) {
|
|||
|
||||
auto pkt = createDatagram(PAYLOAD_TYPE_TXT_MSG, c->id, c->shared_secret, data, 5 + text_len);
|
||||
if (pkt) {
|
||||
if (c->out_path_len >= 0) { // we have an out_path, so send DIRECT
|
||||
if (c->out_path_len != OUT_PATH_UNKNOWN) { // we have an out_path, so send DIRECT
|
||||
sendDirect(pkt, c->out_path, c->out_path_len);
|
||||
} else {
|
||||
sendFlood(pkt);
|
||||
unsigned long delay_millis = 0;
|
||||
sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
|
||||
}
|
||||
}
|
||||
t->send_expiry = futureMillis(ALERT_ACK_EXPIRY_MILLIS);
|
||||
|
|
@ -302,7 +303,7 @@ float SensorMesh::getAirtimeBudgetFactor() const {
|
|||
|
||||
bool SensorMesh::allowPacketForward(const mesh::Packet* packet) {
|
||||
if (_prefs.disable_fwd) return false;
|
||||
if (packet->isRouteFlood() && packet->path_len >= _prefs.flood_max) return false;
|
||||
if (packet->isRouteFlood() && packet->getPathHashCount() >= _prefs.flood_max) return false;
|
||||
return true;
|
||||
}
|
||||
|
||||
|
|
@ -312,11 +313,11 @@ int SensorMesh::calcRxDelay(float score, uint32_t air_time) const {
|
|||
}
|
||||
|
||||
uint32_t SensorMesh::getRetransmitDelay(const mesh::Packet* packet) {
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * _prefs.tx_delay_factor);
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * _prefs.tx_delay_factor);
|
||||
return getRNG()->nextInt(0, 6)*t;
|
||||
}
|
||||
uint32_t SensorMesh::getDirectRetransmitDelay(const mesh::Packet* packet) {
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->path_len + packet->payload_len + 2) * _prefs.direct_tx_delay_factor);
|
||||
uint32_t t = (_radio->getEstAirtimeFor(packet->getPathByteLen() + packet->payload_len + 2) * _prefs.direct_tx_delay_factor);
|
||||
return getRNG()->nextInt(0, 6)*t;
|
||||
}
|
||||
int SensorMesh::getInterferenceThreshold() const {
|
||||
|
|
@ -360,7 +361,7 @@ uint8_t SensorMesh::handleLoginReq(const mesh::Identity& sender, const uint8_t*
|
|||
}
|
||||
|
||||
if (is_flood) {
|
||||
client->out_path_len = -1; // need to rediscover out_path
|
||||
client->out_path_len = OUT_PATH_UNKNOWN; // need to rediscover out_path
|
||||
}
|
||||
|
||||
uint32_t now = getRTCClock()->getCurrentTimeUnique();
|
||||
|
|
@ -468,10 +469,10 @@ void SensorMesh::onAnonDataRecv(mesh::Packet* packet, const uint8_t* secret, con
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the response
|
||||
mesh::Packet* path = createPathReturn(sender, secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_RESPONSE, reply_data, reply_len);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
mesh::Packet* reply = createDatagram(PAYLOAD_TYPE_RESPONSE, sender, secret, reply_data, reply_len);
|
||||
if (reply) sendFlood(reply, SERVER_RESPONSE_DELAY);
|
||||
if (reply) sendFlood(reply, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -496,10 +497,10 @@ void SensorMesh::getPeerSharedSecret(uint8_t* dest_secret, int peer_idx) {
|
|||
}
|
||||
}
|
||||
|
||||
void SensorMesh::sendAckTo(const ClientInfo& dest, uint32_t ack_hash) {
|
||||
if (dest.out_path_len < 0) {
|
||||
void SensorMesh::sendAckTo(const ClientInfo& dest, uint32_t ack_hash, uint8_t path_hash_size) {
|
||||
if (dest.out_path_len == OUT_PATH_UNKNOWN) {
|
||||
mesh::Packet* ack = createAck(ack_hash);
|
||||
if (ack) sendFlood(ack, TXT_ACK_DELAY);
|
||||
if (ack) sendFlood(ack, TXT_ACK_DELAY, path_hash_size);
|
||||
} else {
|
||||
uint32_t d = TXT_ACK_DELAY;
|
||||
if (getExtraAckTransmitCount() > 0) {
|
||||
|
|
@ -537,14 +538,14 @@ void SensorMesh::onPeerDataRecv(mesh::Packet* packet, uint8_t type, int sender_i
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the response
|
||||
mesh::Packet* path = createPathReturn(from->id, secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_RESPONSE, reply_data, reply_len);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY);
|
||||
if (path) sendFlood(path, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
mesh::Packet* reply = createDatagram(PAYLOAD_TYPE_RESPONSE, from->id, secret, reply_data, reply_len);
|
||||
if (reply) {
|
||||
if (from->out_path_len >= 0) { // we have an out_path, so send DIRECT
|
||||
if (from->out_path_len != OUT_PATH_UNKNOWN) { // we have an out_path, so send DIRECT
|
||||
sendDirect(reply, from->out_path, from->out_path_len, SERVER_RESPONSE_DELAY);
|
||||
} else {
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY);
|
||||
sendFlood(reply, SERVER_RESPONSE_DELAY, packet->getPathHashSize());
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
@ -567,9 +568,9 @@ void SensorMesh::onPeerDataRecv(mesh::Packet* packet, uint8_t type, int sender_i
|
|||
// let this sender know path TO here, so they can use sendDirect(), and ALSO encode the ACK
|
||||
mesh::Packet* path = createPathReturn(from->id, secret, packet->path, packet->path_len,
|
||||
PAYLOAD_TYPE_ACK, (uint8_t *) &ack_hash, 4);
|
||||
if (path) sendFlood(path, TXT_ACK_DELAY);
|
||||
if (path) sendFlood(path, TXT_ACK_DELAY, packet->getPathHashSize());
|
||||
} else {
|
||||
sendAckTo(*from, ack_hash);
|
||||
sendAckTo(*from, ack_hash, packet->getPathHashSize());
|
||||
}
|
||||
}
|
||||
} else if (flags == TXT_TYPE_CLI_DATA) {
|
||||
|
|
@ -596,8 +597,8 @@ void SensorMesh::onPeerDataRecv(mesh::Packet* packet, uint8_t type, int sender_i
|
|||
|
||||
auto reply = createDatagram(PAYLOAD_TYPE_TXT_MSG, from->id, secret, temp, 5 + text_len);
|
||||
if (reply) {
|
||||
if (from->out_path_len < 0) {
|
||||
sendFlood(reply, CLI_REPLY_DELAY_MILLIS);
|
||||
if (from->out_path_len == OUT_PATH_UNKNOWN) {
|
||||
sendFlood(reply, CLI_REPLY_DELAY_MILLIS, packet->getPathHashSize());
|
||||
} else {
|
||||
sendDirect(reply, from->out_path, from->out_path_len, CLI_REPLY_DELAY_MILLIS);
|
||||
}
|
||||
|
|
@ -666,7 +667,7 @@ bool SensorMesh::onPeerPathRecv(mesh::Packet* packet, int sender_idx, const uint
|
|||
MESH_DEBUG_PRINTLN("PATH to contact, path_len=%d", (uint32_t) path_len);
|
||||
// NOTE: for this impl, we just replace the current 'out_path' regardless, whenever sender sends us a new out_path.
|
||||
// FUTURE: could store multiple out_paths per contact, and try to find which is the 'best'(?)
|
||||
memcpy(from->out_path, path, from->out_path_len = path_len); // store a copy of path, for sendDirect()
|
||||
from->out_path_len = mesh::Packet::copyPath(from->out_path, path, path_len); // store a copy of path, for sendDirect()
|
||||
from->last_activity = getRTCClock()->getCurrentTime();
|
||||
|
||||
// REVISIT: maybe make ALL out_paths non-persisted to minimise flash writes??
|
||||
|
|
@ -791,7 +792,7 @@ void SensorMesh::sendSelfAdvertisement(int delay_millis, bool flood) {
|
|||
mesh::Packet* pkt = createSelfAdvert();
|
||||
if (pkt) {
|
||||
if (flood) {
|
||||
sendFlood(pkt, delay_millis);
|
||||
sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
|
||||
} else {
|
||||
sendZeroHop(pkt, delay_millis);
|
||||
}
|
||||
|
|
@ -868,7 +869,8 @@ void SensorMesh::loop() {
|
|||
|
||||
if (next_flood_advert && millisHasNowPassed(next_flood_advert)) {
|
||||
mesh::Packet* pkt = createSelfAdvert();
|
||||
if (pkt) sendFlood(pkt);
|
||||
unsigned long delay_millis = 0;
|
||||
if (pkt) sendFlood(pkt, delay_millis, _prefs.path_hash_mode + 1);
|
||||
|
||||
updateFloodAdvertTimer(); // schedule next flood advert
|
||||
updateAdvertTimer(); // also schedule local advert (so they don't overlap)
|
||||
|
|
|
|||
|
|
@ -128,7 +128,7 @@ protected:
|
|||
void onControlDataRecv(mesh::Packet* packet) override;
|
||||
void onAckRecv(mesh::Packet* packet, uint32_t ack_crc) override;
|
||||
virtual bool handleIncomingMsg(ClientInfo& from, uint32_t timestamp, uint8_t* data, uint8_t flags, size_t len);
|
||||
void sendAckTo(const ClientInfo& dest, uint32_t ack_hash);
|
||||
void sendAckTo(const ClientInfo& dest, uint32_t ack_hash, uint8_t path_hash_size=1);
|
||||
private:
|
||||
FILESYSTEM* _fs;
|
||||
unsigned long next_local_advert, next_flood_advert;
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue