mirror of
https://github.com/MarekZegare4/MeshCore-Solo.git
synced 2026-09-28 21:56:38 +00:00
Merge branch 'dev' into solar-watchdog
This commit is contained in:
@@ -560,14 +560,20 @@ bool DataStore::putBlobByKey(const uint8_t key[], int key_len, const uint8_t src
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}
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return false; // error
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}
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bool DataStore::deleteBlobByKey(const uint8_t key[], int key_len) {
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return true; // this is just a stub on NRF52/STM32 platforms
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}
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#else
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uint8_t DataStore::getBlobByKey(const uint8_t key[], int key_len, uint8_t dest_buf[]) {
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char path[64];
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inline void makeBlobPath(const uint8_t key[], int key_len, char* path, size_t path_size) {
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char fname[18];
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if (key_len > 8) key_len = 8; // just use first 8 bytes (prefix)
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mesh::Utils::toHex(fname, key, key_len);
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sprintf(path, "/bl/%s", fname);
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}
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uint8_t DataStore::getBlobByKey(const uint8_t key[], int key_len, uint8_t dest_buf[]) {
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char path[64];
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makeBlobPath(key, key_len, path, sizeof(path));
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if (_fs->exists(path)) {
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File f = openRead(_fs, path);
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@@ -582,11 +588,7 @@ uint8_t DataStore::getBlobByKey(const uint8_t key[], int key_len, uint8_t dest_b
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bool DataStore::putBlobByKey(const uint8_t key[], int key_len, const uint8_t src_buf[], uint8_t len) {
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char path[64];
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char fname[18];
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if (key_len > 8) key_len = 8; // just use first 8 bytes (prefix)
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mesh::Utils::toHex(fname, key, key_len);
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sprintf(path, "/bl/%s", fname);
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makeBlobPath(key, key_len, path, sizeof(path));
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File f = openWrite(_fs, path);
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if (f) {
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@@ -598,4 +600,13 @@ bool DataStore::putBlobByKey(const uint8_t key[], int key_len, const uint8_t src
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}
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return false; // error
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}
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bool DataStore::deleteBlobByKey(const uint8_t key[], int key_len) {
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char path[64];
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makeBlobPath(key, key_len, path, sizeof(path));
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_fs->remove(path);
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return true; // return true even if file did not exist
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}
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#endif
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@@ -42,6 +42,7 @@ public:
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void migrateToSecondaryFS();
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uint8_t getBlobByKey(const uint8_t key[], int key_len, uint8_t dest_buf[]);
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bool putBlobByKey(const uint8_t key[], int key_len, const uint8_t src_buf[], uint8_t len);
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bool deleteBlobByKey(const uint8_t key[], int key_len);
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File openRead(const char* filename);
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File openRead(FILESYSTEM* fs, const char* filename);
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bool removeFile(const char* filename);
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@@ -307,6 +307,7 @@ bool MyMesh::shouldOverwriteWhenFull() const {
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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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out_frame[0] = PUSH_CODE_CONTACT_DELETED;
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memcpy(&out_frame[1], pub_key, PUB_KEY_SIZE);
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@@ -817,14 +818,14 @@ void MyMesh::begin(bool has_display) {
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_store->saveMainIdentity(self_id);
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}
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// if name is provided as a build flag, use that as default node name instead
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#ifdef ADVERT_NAME
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strcpy(_prefs.node_name, ADVERT_NAME);
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#else
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// use hex of first 4 bytes of identity public key as default node name
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char pub_key_hex[10];
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mesh::Utils::toHex(pub_key_hex, self_id.pub_key, 4);
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strcpy(_prefs.node_name, pub_key_hex);
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// if name is provided as a build flag, use that as default node name instead
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#ifdef ADVERT_NAME
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strcpy(_prefs.node_name, ADVERT_NAME);
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#endif
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// load persisted prefs
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@@ -837,7 +838,7 @@ void MyMesh::begin(bool has_display) {
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_prefs.bw = constrain(_prefs.bw, 7.8f, 500.0f);
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_prefs.sf = constrain(_prefs.sf, 5, 12);
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_prefs.cr = constrain(_prefs.cr, 5, 8);
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_prefs.tx_power_dbm = constrain(_prefs.tx_power_dbm, 1, MAX_LORA_TX_POWER);
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_prefs.tx_power_dbm = constrain(_prefs.tx_power_dbm, -9, MAX_LORA_TX_POWER);
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_prefs.gps_enabled = constrain(_prefs.gps_enabled, 0, 1); // Ensure boolean 0 or 1
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_prefs.gps_interval = constrain(_prefs.gps_interval, 0, 86400); // Max 24 hours
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@@ -1124,6 +1125,7 @@ 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 && removeContact(*recipient)) {
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_store->deleteBlobByKey(pub_key, PUB_KEY_SIZE);
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dirty_contacts_expiry = futureMillis(LAZY_CONTACTS_WRITE_DELAY);
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writeOKFrame();
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} else {
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@@ -1226,10 +1228,11 @@ void MyMesh::handleCmdFrame(size_t len) {
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writeErrFrame(ERR_CODE_ILLEGAL_ARG);
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}
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} else if (cmd_frame[0] == CMD_SET_RADIO_TX_POWER) {
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if (cmd_frame[1] > MAX_LORA_TX_POWER) {
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int8_t power = (int8_t)cmd_frame[1];
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if (power < -9 || power > MAX_LORA_TX_POWER) {
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writeErrFrame(ERR_CODE_ILLEGAL_ARG);
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} else {
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_prefs.tx_power_dbm = cmd_frame[1];
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_prefs.tx_power_dbm = power;
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savePrefs();
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radio_set_tx_power(_prefs.tx_power_dbm);
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writeOKFrame();
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@@ -1295,16 +1298,20 @@ void MyMesh::handleCmdFrame(size_t len) {
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#endif
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} else if (cmd_frame[0] == CMD_IMPORT_PRIVATE_KEY && len >= 65) {
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#if ENABLE_PRIVATE_KEY_IMPORT
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mesh::LocalIdentity identity;
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identity.readFrom(&cmd_frame[1], 64);
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if (_store->saveMainIdentity(identity)) {
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self_id = identity;
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writeOKFrame();
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// re-load contacts, to invalidate ecdh shared_secrets
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resetContacts();
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_store->loadContacts(this);
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if (!mesh::LocalIdentity::validatePrivateKey(&cmd_frame[1])) {
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writeErrFrame(ERR_CODE_ILLEGAL_ARG); // invalid key
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} else {
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writeErrFrame(ERR_CODE_FILE_IO_ERROR);
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mesh::LocalIdentity identity;
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identity.readFrom(&cmd_frame[1], 64);
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if (_store->saveMainIdentity(identity)) {
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self_id = identity;
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writeOKFrame();
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// re-load contacts, to invalidate ecdh shared_secrets
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resetContacts();
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_store->loadContacts(this);
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} else {
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writeErrFrame(ERR_CODE_FILE_IO_ERROR);
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}
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}
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#else
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writeDisabledFrame();
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@@ -1685,12 +1692,14 @@ void MyMesh::handleCmdFrame(size_t len) {
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uint32_t n_sent_direct = getNumSentDirect();
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uint32_t n_recv_flood = getNumRecvFlood();
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uint32_t n_recv_direct = getNumRecvDirect();
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uint32_t n_recv_errors = radio_driver.getPacketsRecvErrors();
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memcpy(&out_frame[i], &recv, 4); i += 4;
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memcpy(&out_frame[i], &sent, 4); i += 4;
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memcpy(&out_frame[i], &n_sent_flood, 4); i += 4;
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memcpy(&out_frame[i], &n_sent_direct, 4); i += 4;
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memcpy(&out_frame[i], &n_recv_flood, 4); i += 4;
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memcpy(&out_frame[i], &n_recv_direct, 4); i += 4;
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memcpy(&out_frame[i], &n_recv_errors, 4); i += 4;
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_serial->writeFrame(out_frame, i);
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} else {
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writeErrFrame(ERR_CODE_ILLEGAL_ARG); // invalid stats sub-type
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@@ -8,11 +8,11 @@
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#define FIRMWARE_VER_CODE 8
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#ifndef FIRMWARE_BUILD_DATE
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#define FIRMWARE_BUILD_DATE "30 Nov 2025"
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#define FIRMWARE_BUILD_DATE "29 Jan 2026"
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#endif
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#ifndef FIRMWARE_VERSION
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#define FIRMWARE_VERSION "v1.11.0"
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#define FIRMWARE_VERSION "v1.12.0"
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#endif
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#if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
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@@ -17,7 +17,7 @@ struct NodePrefs { // persisted to file
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uint8_t multi_acks;
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uint8_t manual_add_contacts;
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float bw;
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uint8_t tx_power_dbm;
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int8_t tx_power_dbm;
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uint8_t telemetry_mode_base;
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uint8_t telemetry_mode_loc;
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uint8_t telemetry_mode_env;
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@@ -155,9 +155,7 @@ void setup() {
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);
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#ifdef BLE_PIN_CODE
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char dev_name[32+16];
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sprintf(dev_name, "%s%s", BLE_NAME_PREFIX, the_mesh.getNodeName());
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serial_interface.begin(dev_name, the_mesh.getBLEPin());
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serial_interface.begin(BLE_NAME_PREFIX, the_mesh.getNodePrefs()->node_name, the_mesh.getBLEPin());
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#else
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serial_interface.begin(Serial);
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#endif
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@@ -200,12 +198,11 @@ void setup() {
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);
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#ifdef WIFI_SSID
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board.setInhibitSleep(true); // prevent sleep when WiFi is active
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WiFi.begin(WIFI_SSID, WIFI_PWD);
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serial_interface.begin(TCP_PORT);
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#elif defined(BLE_PIN_CODE)
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char dev_name[32+16];
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sprintf(dev_name, "%s%s", BLE_NAME_PREFIX, the_mesh.getNodeName());
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serial_interface.begin(dev_name, the_mesh.getBLEPin());
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serial_interface.begin(BLE_NAME_PREFIX, the_mesh.getNodePrefs()->node_name, the_mesh.getBLEPin());
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#elif defined(SERIAL_RX)
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companion_serial.setPins(SERIAL_RX, SERIAL_TX);
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companion_serial.begin(115200);
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@@ -103,8 +103,14 @@ class HomeScreen : public UIScreen {
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void renderBatteryIndicator(DisplayDriver& display, uint16_t batteryMilliVolts) {
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// Convert millivolts to percentage
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const int minMilliVolts = 3000; // Minimum voltage (e.g., 3.0V)
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const int maxMilliVolts = 4200; // Maximum voltage (e.g., 4.2V)
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#ifndef BATT_MIN_MILLIVOLTS
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#define BATT_MIN_MILLIVOLTS 3000
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#endif
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#ifndef BATT_MAX_MILLIVOLTS
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#define BATT_MAX_MILLIVOLTS 4200
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#endif
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const int minMilliVolts = BATT_MIN_MILLIVOLTS;
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const int maxMilliVolts = BATT_MAX_MILLIVOLTS;
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int batteryPercentage = ((batteryMilliVolts - minMilliVolts) * 100) / (maxMilliVolts - minMilliVolts);
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if (batteryPercentage < 0) batteryPercentage = 0; // Clamp to 0%
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if (batteryPercentage > 100) batteryPercentage = 100; // Clamp to 100%
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@@ -452,15 +458,17 @@ class MsgPreviewScreen : public UIScreen {
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};
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#define MAX_UNREAD_MSGS 32
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int num_unread;
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int head = MAX_UNREAD_MSGS - 1; // index of latest unread message
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MsgEntry unread[MAX_UNREAD_MSGS];
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public:
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MsgPreviewScreen(UITask* task, mesh::RTCClock* rtc) : _task(task), _rtc(rtc) { num_unread = 0; }
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void addPreview(uint8_t path_len, const char* from_name, const char* msg) {
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if (num_unread >= MAX_UNREAD_MSGS) return; // full
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head = (head + 1) % MAX_UNREAD_MSGS;
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if (num_unread < MAX_UNREAD_MSGS) num_unread++;
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auto p = &unread[num_unread++];
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auto p = &unread[head];
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p->timestamp = _rtc->getCurrentTime();
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if (path_len == 0xFF) {
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sprintf(p->origin, "(D) %s:", from_name);
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@@ -478,7 +486,7 @@ public:
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sprintf(tmp, "Unread: %d", num_unread);
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display.print(tmp);
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auto p = &unread[0];
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auto p = &unread[head];
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int secs = _rtc->getCurrentTime() - p->timestamp;
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if (secs < 60) {
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@@ -514,14 +522,10 @@ public:
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bool handleInput(char c) override {
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if (c == KEY_NEXT || c == KEY_RIGHT) {
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head = (head + MAX_UNREAD_MSGS - 1) % MAX_UNREAD_MSGS;
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num_unread--;
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if (num_unread == 0) {
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_task->gotoHomeScreen();
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} else {
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// delete first/curr item from unread queue
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for (int i = 0; i < num_unread; i++) {
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unread[i] = unread[i + 1];
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}
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}
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return true;
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}
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@@ -149,8 +149,14 @@ void UITask::newMsg(uint8_t path_len, const char* from_name, const char* text, i
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void UITask::renderBatteryIndicator(uint16_t batteryMilliVolts) {
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// Convert millivolts to percentage
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const int minMilliVolts = 3000; // Minimum voltage (e.g., 3.0V)
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const int maxMilliVolts = 4200; // Maximum voltage (e.g., 4.2V)
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#ifndef BATT_MIN_MILLIVOLTS
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#define BATT_MIN_MILLIVOLTS 3000
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#endif
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#ifndef BATT_MAX_MILLIVOLTS
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#define BATT_MAX_MILLIVOLTS 4200
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#endif
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const int minMilliVolts = BATT_MIN_MILLIVOLTS;
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const int maxMilliVolts = BATT_MAX_MILLIVOLTS;
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int batteryPercentage = ((batteryMilliVolts - minMilliVolts) * 100) / (maxMilliVolts - minMilliVolts);
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if (batteryPercentage < 0) batteryPercentage = 0; // Clamp to 0%
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if (batteryPercentage > 100) batteryPercentage = 100; // Clamp to 100%
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