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Merge remote-tracking branch 'upstream/dev' into HEAD

pull/2325/head
mikecarper 2 months ago
parent
commit
ae10246afe
  1. 28
      docs/cli_commands.md
  2. 17
      examples/companion_radio/MyMesh.cpp
  3. 1
      examples/companion_radio/MyMesh.h
  4. 3
      examples/simple_repeater/MyMesh.cpp
  5. 3
      examples/simple_repeater/MyMesh.h
  6. 3
      examples/simple_repeater/UITask.cpp
  7. 3
      examples/simple_room_server/MyMesh.cpp
  8. 3
      examples/simple_room_server/MyMesh.h
  9. 3
      examples/simple_room_server/UITask.cpp
  10. 2
      examples/simple_secure_chat/main.cpp
  11. 6
      examples/simple_sensor/SensorMesh.cpp
  12. 1
      examples/simple_sensor/SensorMesh.h
  13. 3
      examples/simple_sensor/UITask.cpp
  14. 1
      src/Dispatcher.cpp
  15. 3
      src/Dispatcher.h
  16. 4
      src/Mesh.cpp
  17. 3
      src/MeshCore.h
  18. 52
      src/helpers/BaseChatMesh.cpp
  19. 17
      src/helpers/BaseChatMesh.h
  20. 62
      src/helpers/CommonCLI.cpp
  21. 2
      src/helpers/CommonCLI.h
  22. 23
      src/helpers/radiolib/RadioLibWrappers.cpp
  23. 5
      src/helpers/radiolib/RadioLibWrappers.h
  24. 3
      variants/heltec_t096/LoRaFEMControl.h
  25. 20
      variants/heltec_t096/T096Board.cpp
  26. 3
      variants/heltec_t096/T096Board.h
  27. 18
      variants/heltec_tracker_v2/HeltecTrackerV2Board.cpp
  28. 3
      variants/heltec_tracker_v2/HeltecTrackerV2Board.h
  29. 3
      variants/heltec_tracker_v2/LoRaFEMControl.h
  30. 18
      variants/heltec_v4/HeltecV4Board.cpp
  31. 3
      variants/heltec_v4/HeltecV4Board.h
  32. 3
      variants/heltec_v4/LoRaFEMControl.h

28
docs/cli_commands.md

@ -286,6 +286,20 @@ This document provides an overview of CLI commands that can be sent to MeshCore
--- ---
#### View or change the LoRa FEM receive-path gain state on supported boards
**Usage:**
- `get radio.fem.rxgain`
- `set radio.fem.rxgain <state>`
**Parameters:**
- `state`: `on`|`off`
**Notes:**
- This controls the external LoRa FEM receive-path LNA where the board supports it.
- This is separate from `radio.rxgain`, which controls the radio chip receive gain mode.
---
### System ### System
#### View or change this node's name #### View or change this node's name
@ -587,6 +601,20 @@ This document provides an overview of CLI commands that can be sent to MeshCore
--- ---
#### Enable or disable hardware Channel Activity Detection (CAD)
**Usage:**
- `get cad`
- `set cad <on|off>`
**Description:** When enabled, the radio performs a hardware Channel Activity Detection scan before transmitting and defers if the channel is busy. Runs independently of `int.thresh` — either, both, or none may be active.
**Parameters:**
- `on|off`: Enable or disable hardware CAD
**Default:** `off`
---
#### View or change the AGC Reset Interval #### View or change the AGC Reset Interval
**Usage:** **Usage:**
- `get agc.reset.interval` - `get agc.reset.interval`

17
examples/companion_radio/MyMesh.cpp

@ -261,6 +261,9 @@ float MyMesh::getAirtimeBudgetFactor() const {
int MyMesh::getInterferenceThreshold() const { int MyMesh::getInterferenceThreshold() const {
return 0; // disabled for now, until currentRSSI() problem is resolved return 0; // disabled for now, until currentRSSI() problem is resolved
} }
bool MyMesh::getCADEnabled() const {
return true; // hardware CAD before TX (no CLI toggle on companion; enabled by default)
}
int MyMesh::calcRxDelay(float score, uint32_t air_time) const { int MyMesh::calcRxDelay(float score, uint32_t air_time) const {
if (_prefs.rx_delay_base <= 0.0f) return 0; if (_prefs.rx_delay_base <= 0.0f) return 0;
@ -854,7 +857,7 @@ void MyMesh::onSendTimeout() {}
MyMesh::MyMesh(mesh::Radio &radio, mesh::RNG &rng, mesh::RTCClock &rtc, SimpleMeshTables &tables, DataStore& store, AbstractUITask* ui) MyMesh::MyMesh(mesh::Radio &radio, mesh::RNG &rng, mesh::RTCClock &rtc, SimpleMeshTables &tables, DataStore& store, AbstractUITask* ui)
: BaseChatMesh(radio, *new ArduinoMillis(), rng, rtc, *new StaticPoolPacketManager(16), tables), : BaseChatMesh(radio, *new ArduinoMillis(), rng, rtc, *new StaticPoolPacketManager(16), tables),
_serial(NULL), telemetry(MAX_PACKET_PAYLOAD - 4), _store(&store), _ui(ui) { _serial(NULL), telemetry(MAX_PACKET_PAYLOAD - 4), _store(&store), _ui(ui), _iter(0) {
_iter_started = false; _iter_started = false;
_cli_rescue = false; _cli_rescue = false;
offline_queue_len = 0; offline_queue_len = 0;
@ -1542,6 +1545,7 @@ void MyMesh::handleCmdFrame(size_t len) {
memcpy(anon.id.pub_key, pub_key, PUB_KEY_SIZE); memcpy(anon.id.pub_key, pub_key, PUB_KEY_SIZE);
anon.out_path_len = 0; // default to zero-hop direct anon.out_path_len = 0; // default to zero-hop direct
anon.type = ADV_TYPE_NONE; // unknown anon.type = ADV_TYPE_NONE; // unknown
anon.lastmod = getRTCClock()->getCurrentTime();
if (addContact(anon)) recipient = &anon; if (addContact(anon)) recipient = &anon;
} }
@ -1981,6 +1985,7 @@ void MyMesh::handleCmdFrame(size_t len) {
sendPacket(pkt, priority, 0); sendPacket(pkt, priority, 0);
writeOKFrame(); writeOKFrame();
} else { } else {
releasePacket(pkt);
writeErrFrame(ERR_CODE_ILLEGAL_ARG); writeErrFrame(ERR_CODE_ILLEGAL_ARG);
} }
} else { } else {
@ -2186,15 +2191,7 @@ void MyMesh::checkSerialInterface() {
&& !_serial->isWriteBusy() // don't spam the Serial Interface too quickly! && !_serial->isWriteBusy() // don't spam the Serial Interface too quickly!
) { ) {
ContactInfo contact; ContactInfo contact;
bool found = false; if (_iter.hasNext(this, contact)) {
while (_iter.hasNext(this, contact)) {
if (contact.type != ADV_TYPE_NONE) {
found = true;
break;
}
}
if (found) {
if (contact.lastmod > _iter_filter_since) { // apply the 'since' filter if (contact.lastmod > _iter_filter_since) { // apply the 'since' filter
writeContactRespFrame(RESP_CODE_CONTACT, contact); writeContactRespFrame(RESP_CODE_CONTACT, contact);
if (contact.lastmod > _most_recent_lastmod) { if (contact.lastmod > _most_recent_lastmod) {

1
examples/companion_radio/MyMesh.h

@ -105,6 +105,7 @@ public:
protected: protected:
float getAirtimeBudgetFactor() const override; float getAirtimeBudgetFactor() const override;
int getInterferenceThreshold() const override; int getInterferenceThreshold() const override;
bool getCADEnabled() const override;
int calcRxDelay(float score, uint32_t air_time) const override; int calcRxDelay(float score, uint32_t air_time) const override;
uint32_t getRetransmitDelay(const mesh::Packet *packet) override; uint32_t getRetransmitDelay(const mesh::Packet *packet) override;
uint32_t getDirectRetransmitDelay(const mesh::Packet *packet) override; uint32_t getDirectRetransmitDelay(const mesh::Packet *packet) override;

3
examples/simple_repeater/MyMesh.cpp

@ -893,6 +893,7 @@ MyMesh::MyMesh(mesh::MainBoard &board, mesh::Radio &radio, mesh::MillisecondCloc
_prefs.flood_max_unscoped = 64; _prefs.flood_max_unscoped = 64;
_prefs.flood_max_advert = 8; _prefs.flood_max_advert = 8;
_prefs.interference_threshold = 0; // disabled _prefs.interference_threshold = 0; // disabled
_prefs.cad_enabled = 0; // hardware CAD before TX (off by default; 'set cad on')
// bridge defaults // bridge defaults
_prefs.bridge_enabled = 1; // enabled _prefs.bridge_enabled = 1; // enabled
@ -917,6 +918,7 @@ MyMesh::MyMesh(mesh::MainBoard &board, mesh::Radio &radio, mesh::MillisecondCloc
_prefs.rx_boosted_gain = 1; // enabled by default; _prefs.rx_boosted_gain = 1; // enabled by default;
#endif #endif
#endif #endif
_prefs.radio_fem_rxgain = 1;
pending_discover_tag = 0; pending_discover_tag = 0;
pending_discover_until = 0; pending_discover_until = 0;
@ -965,6 +967,7 @@ void MyMesh::begin(FILESYSTEM *fs) {
radio_driver.setRxBoostedGainMode(_prefs.rx_boosted_gain); radio_driver.setRxBoostedGainMode(_prefs.rx_boosted_gain);
MESH_DEBUG_PRINTLN("RX Boosted Gain Mode: %s", MESH_DEBUG_PRINTLN("RX Boosted Gain Mode: %s",
radio_driver.getRxBoostedGainMode() ? "Enabled" : "Disabled"); radio_driver.getRxBoostedGainMode() ? "Enabled" : "Disabled");
board.setLoRaFemLnaEnabled(_prefs.radio_fem_rxgain);
updateAdvertTimer(); updateAdvertTimer();
updateFloodAdvertTimer(); updateFloodAdvertTimer();

3
examples/simple_repeater/MyMesh.h

@ -150,6 +150,9 @@ protected:
int getInterferenceThreshold() const override { int getInterferenceThreshold() const override {
return _prefs.interference_threshold; return _prefs.interference_threshold;
} }
bool getCADEnabled() const override {
return _prefs.cad_enabled;
}
int getAGCResetInterval() const override { int getAGCResetInterval() const override {
return ((int)_prefs.agc_reset_interval) * 4000; // milliseconds return ((int)_prefs.agc_reset_interval) * 4000; // milliseconds
} }

3
examples/simple_repeater/UITask.cpp

@ -41,7 +41,8 @@ void UITask::begin(NodePrefs* node_prefs, const char* build_date, const char* fi
} }
// v1.2.3 (1 Jan 2025) // v1.2.3 (1 Jan 2025)
sprintf(_version_info, "%s (%s)", version, build_date); snprintf(_version_info, sizeof(_version_info), "%s (%s)", version, build_date);
free(version);
} }
void UITask::renderCurrScreen() { void UITask::renderCurrScreen() {

3
examples/simple_room_server/MyMesh.cpp

@ -650,6 +650,7 @@ MyMesh::MyMesh(mesh::MainBoard &board, mesh::Radio &radio, mesh::MillisecondCloc
_prefs.flood_max_unscoped = 64; _prefs.flood_max_unscoped = 64;
_prefs.flood_max_advert = 8; _prefs.flood_max_advert = 8;
_prefs.interference_threshold = 0; // disabled _prefs.interference_threshold = 0; // disabled
_prefs.cad_enabled = 0; // hardware CAD before TX (off by default; 'set cad on')
#ifdef ROOM_PASSWORD #ifdef ROOM_PASSWORD
StrHelper::strncpy(_prefs.guest_password, ROOM_PASSWORD, sizeof(_prefs.guest_password)); StrHelper::strncpy(_prefs.guest_password, ROOM_PASSWORD, sizeof(_prefs.guest_password));
#endif #endif
@ -658,6 +659,7 @@ MyMesh::MyMesh(mesh::MainBoard &board, mesh::Radio &radio, mesh::MillisecondCloc
_prefs.gps_enabled = 0; _prefs.gps_enabled = 0;
_prefs.gps_interval = 0; _prefs.gps_interval = 0;
_prefs.advert_loc_policy = ADVERT_LOC_PREFS; _prefs.advert_loc_policy = ADVERT_LOC_PREFS;
_prefs.radio_fem_rxgain = 1;
next_post_idx = 0; next_post_idx = 0;
next_client_idx = 0; next_client_idx = 0;
@ -699,6 +701,7 @@ void MyMesh::begin(FILESYSTEM *fs) {
radio_driver.setParams(_prefs.freq, _prefs.bw, _prefs.sf, _prefs.cr); radio_driver.setParams(_prefs.freq, _prefs.bw, _prefs.sf, _prefs.cr);
radio_driver.setTxPower(_prefs.tx_power_dbm); radio_driver.setTxPower(_prefs.tx_power_dbm);
board.setLoRaFemLnaEnabled(_prefs.radio_fem_rxgain);
updateAdvertTimer(); updateAdvertTimer();
updateFloodAdvertTimer(); updateFloodAdvertTimer();

3
examples/simple_room_server/MyMesh.h

@ -144,6 +144,9 @@ protected:
int getInterferenceThreshold() const override { int getInterferenceThreshold() const override {
return _prefs.interference_threshold; return _prefs.interference_threshold;
} }
bool getCADEnabled() const override {
return _prefs.cad_enabled;
}
int getAGCResetInterval() const override { int getAGCResetInterval() const override {
return ((int)_prefs.agc_reset_interval) * 4000; // milliseconds return ((int)_prefs.agc_reset_interval) * 4000; // milliseconds
} }

3
examples/simple_room_server/UITask.cpp

@ -41,7 +41,8 @@ void UITask::begin(NodePrefs* node_prefs, const char* build_date, const char* fi
} }
// v1.2.3 (1 Jan 2025) // v1.2.3 (1 Jan 2025)
sprintf(_version_info, "%s (%s)", version, build_date); snprintf(_version_info, sizeof(_version_info), "%s (%s)", version, build_date);
free(version);
} }
void UITask::renderCurrScreen() { void UITask::renderCurrScreen() {

2
examples/simple_secure_chat/main.cpp

@ -135,7 +135,7 @@ class MyMesh : public BaseChatMesh, ContactVisitor {
File file = _fs->open("/contacts", "w", true); File file = _fs->open("/contacts", "w", true);
#endif #endif
if (file) { if (file) {
ContactsIterator iter; ContactsIterator iter = startContactsIterator();
ContactInfo c; ContactInfo c;
uint8_t unused = 0; uint8_t unused = 0;
uint32_t reserved = 0; uint32_t reserved = 0;

6
examples/simple_sensor/SensorMesh.cpp

@ -323,6 +323,9 @@ uint32_t SensorMesh::getDirectRetransmitDelay(const mesh::Packet* packet) {
int SensorMesh::getInterferenceThreshold() const { int SensorMesh::getInterferenceThreshold() const {
return _prefs.interference_threshold; return _prefs.interference_threshold;
} }
bool SensorMesh::getCADEnabled() const {
return _prefs.cad_enabled;
}
int SensorMesh::getAGCResetInterval() const { int SensorMesh::getAGCResetInterval() const {
return ((int)_prefs.agc_reset_interval) * 4000; // milliseconds return ((int)_prefs.agc_reset_interval) * 4000; // milliseconds
} }
@ -726,11 +729,13 @@ SensorMesh::SensorMesh(mesh::MainBoard& board, mesh::Radio& radio, mesh::Millise
_prefs.disable_fwd = true; _prefs.disable_fwd = true;
_prefs.flood_max = 64; _prefs.flood_max = 64;
_prefs.interference_threshold = 0; // disabled _prefs.interference_threshold = 0; // disabled
_prefs.cad_enabled = 0; // hardware CAD before TX (off by default; 'set cad on')
// GPS defaults // GPS defaults
_prefs.gps_enabled = 0; _prefs.gps_enabled = 0;
_prefs.gps_interval = 0; _prefs.gps_interval = 0;
_prefs.advert_loc_policy = ADVERT_LOC_PREFS; _prefs.advert_loc_policy = ADVERT_LOC_PREFS;
_prefs.radio_fem_rxgain = 1;
memset(default_scope.key, 0, sizeof(default_scope.key)); memset(default_scope.key, 0, sizeof(default_scope.key));
} }
@ -766,6 +771,7 @@ void SensorMesh::begin(FILESYSTEM* fs) {
radio_driver.setParams(_prefs.freq, _prefs.bw, _prefs.sf, _prefs.cr); radio_driver.setParams(_prefs.freq, _prefs.bw, _prefs.sf, _prefs.cr);
radio_driver.setTxPower(_prefs.tx_power_dbm); radio_driver.setTxPower(_prefs.tx_power_dbm);
board.setLoRaFemLnaEnabled(_prefs.radio_fem_rxgain);
updateAdvertTimer(); updateAdvertTimer();
updateFloodAdvertTimer(); updateFloodAdvertTimer();

1
examples/simple_sensor/SensorMesh.h

@ -120,6 +120,7 @@ protected:
uint32_t getRetransmitDelay(const mesh::Packet* packet) override; uint32_t getRetransmitDelay(const mesh::Packet* packet) override;
uint32_t getDirectRetransmitDelay(const mesh::Packet* packet) override; uint32_t getDirectRetransmitDelay(const mesh::Packet* packet) override;
int getInterferenceThreshold() const override; int getInterferenceThreshold() const override;
bool getCADEnabled() const override;
int getAGCResetInterval() const override; int getAGCResetInterval() const override;
void onAnonDataRecv(mesh::Packet* packet, const uint8_t* secret, const mesh::Identity& sender, uint8_t* data, size_t len) override; void onAnonDataRecv(mesh::Packet* packet, const uint8_t* secret, const mesh::Identity& sender, uint8_t* data, size_t len) override;
int searchPeersByHash(const uint8_t* hash) override; int searchPeersByHash(const uint8_t* hash) override;

3
examples/simple_sensor/UITask.cpp

@ -41,7 +41,8 @@ void UITask::begin(NodePrefs* node_prefs, const char* build_date, const char* fi
} }
// v1.2.3 (1 Jan 2025) // v1.2.3 (1 Jan 2025)
sprintf(_version_info, "%s (%s)", version, build_date); snprintf(_version_info, sizeof(_version_info), "%s (%s)", version, build_date);
free(version);
} }
void UITask::renderCurrScreen() { void UITask::renderCurrScreen() {

1
src/Dispatcher.cpp

@ -66,6 +66,7 @@ uint32_t Dispatcher::getCADFailMaxDuration() const {
void Dispatcher::loop() { void Dispatcher::loop() {
if (millisHasNowPassed(next_floor_calib_time)) { if (millisHasNowPassed(next_floor_calib_time)) {
_radio->triggerNoiseFloorCalibrate(getInterferenceThreshold()); _radio->triggerNoiseFloorCalibrate(getInterferenceThreshold());
_radio->setCADEnabled(getCADEnabled());
next_floor_calib_time = futureMillis(NOISE_FLOOR_CALIB_INTERVAL); next_floor_calib_time = futureMillis(NOISE_FLOOR_CALIB_INTERVAL);
} }
_radio->loop(); _radio->loop();

3
src/Dispatcher.h

@ -65,6 +65,8 @@ public:
virtual void triggerNoiseFloorCalibrate(int threshold) { } virtual void triggerNoiseFloorCalibrate(int threshold) { }
virtual void setCADEnabled(bool enable) { }
virtual void resetAGC() { } virtual void resetAGC() { }
virtual bool isInRecvMode() const = 0; virtual bool isInRecvMode() const = 0;
@ -166,6 +168,7 @@ protected:
virtual uint32_t getCADFailRetryDelay() const; virtual uint32_t getCADFailRetryDelay() const;
virtual uint32_t getCADFailMaxDuration() const; virtual uint32_t getCADFailMaxDuration() const;
virtual int getInterferenceThreshold() const { return 0; } // disabled by default virtual int getInterferenceThreshold() const { return 0; } // disabled by default
virtual bool getCADEnabled() const { return false; } // hardware CAD disabled by default
virtual int getAGCResetInterval() const { return 0; } // disabled by default virtual int getAGCResetInterval() const { return 0; } // disabled by default
virtual unsigned long getDutyCycleWindowMs() const { return 3600000; } virtual unsigned long getDutyCycleWindowMs() const { return 3600000; }

4
src/Mesh.cpp

@ -155,6 +155,10 @@ DispatcherAction Mesh::onRecvPacket(Packet* pkt) {
if (pkt->getPayloadType() == PAYLOAD_TYPE_PATH) { if (pkt->getPayloadType() == PAYLOAD_TYPE_PATH) {
int k = 0; int k = 0;
uint8_t path_len = data[k++]; uint8_t path_len = data[k++];
if (!Packet::isValidPathLen(path_len)) {
MESH_DEBUG_PRINTLN("%s PAYLOAD_TYPE_PATH, bad path_len: %u", getLogDateTime(), (uint32_t)path_len);
break; // reject bad encoding
}
uint8_t hash_size = (path_len >> 6) + 1; uint8_t hash_size = (path_len >> 6) + 1;
uint8_t hash_count = path_len & 63; uint8_t hash_count = path_len & 63;
uint8_t* path = &data[k]; k += hash_size*hash_count; uint8_t* path = &data[k]; k += hash_size*hash_count;

3
src/MeshCore.h

@ -64,6 +64,9 @@ public:
virtual uint8_t getStartupReason() const = 0; virtual uint8_t getStartupReason() const = 0;
virtual bool getBootloaderVersion(char* version, size_t max_len) { return false; } virtual bool getBootloaderVersion(char* version, size_t max_len) { return false; }
virtual bool startOTAUpdate(const char* id, char reply[]) { return false; } // not supported virtual bool startOTAUpdate(const char* id, char reply[]) { return false; } // not supported
virtual bool setLoRaFemLnaEnabled(bool enable) { return false; }
virtual bool canControlLoRaFemLna() const { return false; }
virtual bool isLoRaFemLnaEnabled() const { return false; }
// Power management interface (boards with power management override these) // Power management interface (boards with power management override these)
virtual bool isExternalPowered() { return false; } virtual bool isExternalPowered() { return false; }

52
src/helpers/BaseChatMesh.cpp

@ -68,29 +68,36 @@ void BaseChatMesh::bootstrapRTCfromContacts() {
} }
ContactInfo* BaseChatMesh::allocateContactSlot(bool transient_only) { ContactInfo* BaseChatMesh::allocateContactSlot(bool transient_only) {
if (num_contacts < MAX_CONTACTS) { int oldest_idx = -1;
return &contacts[num_contacts++]; uint32_t oldest_lastmod = 0xFFFFFFFF;
} else if (transient_only || shouldOverwriteWhenFull()) { if (transient_only) {
// Find oldest non-favourite contact by oldest lastmod timestamp // only allocate from first N
int oldest_idx = -1; for (int i = 0; i < MAX_ANON_CONTACTS; i++) {
uint32_t oldest_lastmod = 0xFFFFFFFF; if (contacts[i].type == ADV_TYPE_NONE && contacts[i].lastmod < oldest_lastmod) {
for (int i = 0; i < num_contacts; i++) { oldest_lastmod = contacts[i].lastmod;
if (transient_only) { oldest_idx = i;
if (contacts[i].type == ADV_TYPE_NONE && contacts[i].lastmod < oldest_lastmod) { }
oldest_lastmod = contacts[i].lastmod; }
oldest_idx = i; if (oldest_idx >= 0) {
} // NOTE: do NOT call onContactOverwrite()
} else { return &contacts[oldest_idx];
}
} else {
if (num_contacts < MAX_ANON_CONTACTS+MAX_CONTACTS) {
return &contacts[num_contacts++];
} else if (shouldOverwriteWhenFull()) {
// Find oldest non-favourite contact by oldest lastmod timestamp
for (int i = MAX_ANON_CONTACTS; i < num_contacts; i++) {
bool is_favourite = (contacts[i].flags & 0x01) != 0; bool is_favourite = (contacts[i].flags & 0x01) != 0;
if (!is_favourite && contacts[i].lastmod < oldest_lastmod && contacts[i].type != ADV_TYPE_NONE) { if (!is_favourite && contacts[i].lastmod < oldest_lastmod) {
oldest_lastmod = contacts[i].lastmod; oldest_lastmod = contacts[i].lastmod;
oldest_idx = i; oldest_idx = i;
} }
} }
} if (oldest_idx >= 0) {
if (oldest_idx >= 0) { onContactOverwrite(contacts[oldest_idx].id.pub_key);
onContactOverwrite(contacts[oldest_idx].id.pub_key); return &contacts[oldest_idx];
return &contacts[oldest_idx]; }
} }
} }
return NULL; // no space, no overwrite or all contacts are all favourites return NULL; // no space, no overwrite or all contacts are all favourites
@ -139,6 +146,11 @@ void BaseChatMesh::onAdvertRecv(mesh::Packet* packet, const mesh::Identity& id,
packet->header = save; packet->header = save;
} }
if (from && from->type == ADV_TYPE_NONE) { // already in contacts, but from a temporary ANON_REQ ?
memset(from, 0, sizeof(*from)); // clear the anon/temp slot
from = NULL; // do normal 'add' flow
}
bool is_new = false; // true = not in contacts[], false = exists in contacts[] bool is_new = false; // true = not in contacts[], false = exists in contacts[]
if (from == NULL) { if (from == NULL) {
if (!shouldAutoAddContactType(parser.getType())) { if (!shouldAutoAddContactType(parser.getType())) {
@ -930,11 +942,11 @@ bool BaseChatMesh::getContactByIdx(uint32_t idx, ContactInfo& contact) {
} }
ContactsIterator BaseChatMesh::startContactsIterator() { ContactsIterator BaseChatMesh::startContactsIterator() {
return ContactsIterator(); return ContactsIterator(MAX_ANON_CONTACTS); // start at offset, skip the anon entries
} }
bool ContactsIterator::hasNext(const BaseChatMesh* mesh, ContactInfo& dest) { bool ContactsIterator::hasNext(const BaseChatMesh* mesh, ContactInfo& dest) {
if (next_idx >= mesh->getNumContacts()) return false; if (next_idx >= mesh->getTotalContactSlots()) return false;
dest = mesh->contacts[next_idx++]; dest = mesh->contacts[next_idx++];
return true; return true;

17
src/helpers/BaseChatMesh.h

@ -28,8 +28,9 @@ public:
class BaseChatMesh; class BaseChatMesh;
class ContactsIterator { class ContactsIterator {
int next_idx = 0; int next_idx;
public: public:
ContactsIterator(int start) { next_idx = start; }
bool hasNext(const BaseChatMesh* mesh, ContactInfo& dest); bool hasNext(const BaseChatMesh* mesh, ContactInfo& dest);
}; };
@ -79,8 +80,9 @@ class BaseChatMesh : public mesh::Mesh {
protected: protected:
BaseChatMesh(mesh::Radio& radio, mesh::MillisecondClock& ms, mesh::RNG& rng, mesh::RTCClock& rtc, mesh::PacketManager& mgr, mesh::MeshTables& tables) BaseChatMesh(mesh::Radio& radio, mesh::MillisecondClock& ms, mesh::RNG& rng, mesh::RTCClock& rtc, mesh::PacketManager& mgr, mesh::MeshTables& tables)
: mesh::Mesh(radio, ms, rng, rtc, mgr, tables) : mesh::Mesh(radio, ms, rng, rtc, mgr, tables)
{ {
num_contacts = 0; resetContacts();
#ifdef MAX_GROUP_CHANNELS #ifdef MAX_GROUP_CHANNELS
memset(channels, 0, sizeof(channels)); memset(channels, 0, sizeof(channels));
num_channels = 0; num_channels = 0;
@ -91,7 +93,11 @@ protected:
} }
void bootstrapRTCfromContacts(); void bootstrapRTCfromContacts();
void resetContacts() { num_contacts = 0; }
void resetContacts() {
memset(contacts, 0, sizeof(contacts[0])*MAX_ANON_CONTACTS); // set all to have type = ADV_TYPE_NONE(0)
num_contacts = MAX_ANON_CONTACTS; // seed the first contacts for anon requests
}
void populateContactFromAdvert(ContactInfo& ci, const mesh::Identity& id, const AdvertDataParser& parser, uint32_t timestamp); void populateContactFromAdvert(ContactInfo& ci, const mesh::Identity& id, const AdvertDataParser& parser, uint32_t timestamp);
ContactInfo* allocateContactSlot(bool transient_only=false); // helper to find slot for new contact ContactInfo* allocateContactSlot(bool transient_only=false); // helper to find slot for new contact
@ -166,7 +172,8 @@ public:
ContactInfo* lookupContactByPubKey(const uint8_t* pub_key, int prefix_len); ContactInfo* lookupContactByPubKey(const uint8_t* pub_key, int prefix_len);
bool removeContact(ContactInfo& contact); bool removeContact(ContactInfo& contact);
bool addContact(const ContactInfo& contact); bool addContact(const ContactInfo& contact);
int getNumContacts() const { return num_contacts; } int getTotalContactSlots() const { return num_contacts; }
int getNumContacts() const { return num_contacts - MAX_ANON_CONTACTS; } // don't include the reserved slots at start
bool getContactByIdx(uint32_t idx, ContactInfo& contact); bool getContactByIdx(uint32_t idx, ContactInfo& contact);
ContactsIterator startContactsIterator(); ContactsIterator startContactsIterator();
ChannelDetails* addChannel(const char* name, const char* psk_base64); ChannelDetails* addChannel(const char* name, const char* psk_base64);

62
src/helpers/CommonCLI.cpp

@ -111,10 +111,12 @@ void CommonCLI::loadPrefsInt(FILESYSTEM* fs, const char* filename) {
file.read((uint8_t *)&_prefs->discovery_mod_timestamp, sizeof(_prefs->discovery_mod_timestamp)); // 162 file.read((uint8_t *)&_prefs->discovery_mod_timestamp, sizeof(_prefs->discovery_mod_timestamp)); // 162
file.read((uint8_t *)&_prefs->adc_multiplier, sizeof(_prefs->adc_multiplier)); // 166 file.read((uint8_t *)&_prefs->adc_multiplier, sizeof(_prefs->adc_multiplier)); // 166
file.read((uint8_t *)_prefs->owner_info, sizeof(_prefs->owner_info)); // 170 file.read((uint8_t *)_prefs->owner_info, sizeof(_prefs->owner_info)); // 170
file.read((uint8_t *)&_prefs->rx_boosted_gain, sizeof(_prefs->rx_boosted_gain)); // 290 file.read((uint8_t *)&_prefs->rx_boosted_gain, sizeof(_prefs->rx_boosted_gain)); // 290
file.read((uint8_t *)&_prefs->flood_max_unscoped, sizeof(_prefs->flood_max_unscoped)); // 291 file.read((uint8_t *)&_prefs->flood_max_unscoped, sizeof(_prefs->flood_max_unscoped)); // 291
file.read((uint8_t *)&_prefs->flood_max_advert, sizeof(_prefs->flood_max_advert)); // 292 file.read((uint8_t *)&_prefs->flood_max_advert, sizeof(_prefs->flood_max_advert)); // 292
// next: 293 file.read((uint8_t *)&_prefs->radio_fem_rxgain, sizeof(_prefs->radio_fem_rxgain)); // 293
file.read((uint8_t *)&_prefs->cad_enabled, sizeof(_prefs->cad_enabled)); // 294
// next: 295
// sanitise bad pref values // sanitise bad pref values
_prefs->rx_delay_base = constrain(_prefs->rx_delay_base, 0, 20.0f); _prefs->rx_delay_base = constrain(_prefs->rx_delay_base, 0, 20.0f);
@ -144,6 +146,8 @@ void CommonCLI::loadPrefsInt(FILESYSTEM* fs, const char* filename) {
// sanitise settings // sanitise settings
_prefs->rx_boosted_gain = constrain(_prefs->rx_boosted_gain, 0, 1); // boolean _prefs->rx_boosted_gain = constrain(_prefs->rx_boosted_gain, 0, 1); // boolean
_prefs->radio_fem_rxgain = constrain(_prefs->radio_fem_rxgain, 0, 1); // boolean
_prefs->cad_enabled = constrain(_prefs->cad_enabled, 0, 1); // boolean
file.close(); file.close();
} }
@ -204,10 +208,12 @@ void CommonCLI::savePrefs(FILESYSTEM* fs) {
file.write((uint8_t *)&_prefs->discovery_mod_timestamp, sizeof(_prefs->discovery_mod_timestamp)); // 162 file.write((uint8_t *)&_prefs->discovery_mod_timestamp, sizeof(_prefs->discovery_mod_timestamp)); // 162
file.write((uint8_t *)&_prefs->adc_multiplier, sizeof(_prefs->adc_multiplier)); // 166 file.write((uint8_t *)&_prefs->adc_multiplier, sizeof(_prefs->adc_multiplier)); // 166
file.write((uint8_t *)_prefs->owner_info, sizeof(_prefs->owner_info)); // 170 file.write((uint8_t *)_prefs->owner_info, sizeof(_prefs->owner_info)); // 170
file.write((uint8_t *)&_prefs->rx_boosted_gain, sizeof(_prefs->rx_boosted_gain)); // 290 file.write((uint8_t *)&_prefs->rx_boosted_gain, sizeof(_prefs->rx_boosted_gain)); // 290
file.write((uint8_t *)&_prefs->flood_max_unscoped, sizeof(_prefs->flood_max_unscoped)); // 291 file.write((uint8_t *)&_prefs->flood_max_unscoped, sizeof(_prefs->flood_max_unscoped)); // 291
file.write((uint8_t *)&_prefs->flood_max_advert, sizeof(_prefs->flood_max_advert)); // 292 file.write((uint8_t *)&_prefs->flood_max_advert, sizeof(_prefs->flood_max_advert)); // 292
// next: 293 file.write((uint8_t *)&_prefs->radio_fem_rxgain, sizeof(_prefs->radio_fem_rxgain)); // 293
file.write((uint8_t *)&_prefs->cad_enabled, sizeof(_prefs->cad_enabled)); // 294
// next: 295
file.close(); file.close();
} }
@ -529,6 +535,10 @@ void CommonCLI::handleSetCmd(uint32_t sender_timestamp, char* command, char* rep
_prefs->interference_threshold = atoi(&config[11]); _prefs->interference_threshold = atoi(&config[11]);
savePrefs(); savePrefs();
strcpy(reply, "OK"); strcpy(reply, "OK");
} else if (memcmp(config, "cad ", 4) == 0) {
_prefs->cad_enabled = memcmp(&config[4], "on", 2) == 0;
savePrefs();
strcpy(reply, "OK");
} else if (memcmp(config, "agc.reset.interval ", 19) == 0) { } else if (memcmp(config, "agc.reset.interval ", 19) == 0) {
_prefs->agc_reset_interval = atoi(&config[19]) / 4; _prefs->agc_reset_interval = atoi(&config[19]) / 4;
savePrefs(); savePrefs();
@ -597,6 +607,28 @@ void CommonCLI::handleSetCmd(uint32_t sender_timestamp, char* command, char* rep
savePrefs(); savePrefs();
_callbacks->setRxBoostedGain(_prefs->rx_boosted_gain); _callbacks->setRxBoostedGain(_prefs->rx_boosted_gain);
#endif #endif
} else if (memcmp(config, "radio.fem.rxgain ", 17) == 0) {
if (!_board->canControlLoRaFemLna()) {
strcpy(reply, "Error: unsupported");
} else if (memcmp(&config[17], "on", 2) == 0) {
if (_board->setLoRaFemLnaEnabled(true)) {
_prefs->radio_fem_rxgain = 1;
savePrefs();
strcpy(reply, "OK - LoRa FEM RX gain on");
} else {
strcpy(reply, "Error: failed to apply LoRa FEM RX gain");
}
} else if (memcmp(&config[17], "off", 3) == 0) {
if (_board->setLoRaFemLnaEnabled(false)) {
_prefs->radio_fem_rxgain = 0;
savePrefs();
strcpy(reply, "OK - LoRa FEM RX gain off");
} else {
strcpy(reply, "Error: failed to apply LoRa FEM RX gain");
}
} else {
strcpy(reply, "Error: state must be on or off");
}
} else if (memcmp(config, "radio ", 6) == 0) { } else if (memcmp(config, "radio ", 6) == 0) {
strcpy(tmp, &config[6]); strcpy(tmp, &config[6]);
const char *parts[4]; const char *parts[4];
@ -786,7 +818,7 @@ void CommonCLI::handleSetCmd(uint32_t sender_timestamp, char* command, char* rep
} }
} else { } else {
_prefs->adc_multiplier = 0.0f; _prefs->adc_multiplier = 0.0f;
strcpy(reply, "Error: unsupported by this board"); strcpy(reply, "Error: unsupported");
}; };
} else { } else {
strcpy(reply, "unknown config: "); strcpy(reply, "unknown config: ");
@ -805,6 +837,8 @@ void CommonCLI::handleGetCmd(uint32_t sender_timestamp, char* command, char* rep
sprintf(reply, "> %s", StrHelper::ftoa(_prefs->airtime_factor)); sprintf(reply, "> %s", StrHelper::ftoa(_prefs->airtime_factor));
} else if (memcmp(config, "int.thresh", 10) == 0) { } else if (memcmp(config, "int.thresh", 10) == 0) {
sprintf(reply, "> %d", (uint32_t) _prefs->interference_threshold); sprintf(reply, "> %d", (uint32_t) _prefs->interference_threshold);
} else if (memcmp(config, "cad", 3) == 0) {
sprintf(reply, "> %s", _prefs->cad_enabled ? "on" : "off");
} else if (memcmp(config, "agc.reset.interval", 18) == 0) { } else if (memcmp(config, "agc.reset.interval", 18) == 0) {
sprintf(reply, "> %d", ((uint32_t) _prefs->agc_reset_interval) * 4); sprintf(reply, "> %d", ((uint32_t) _prefs->agc_reset_interval) * 4);
} else if (memcmp(config, "multi.acks", 10) == 0) { } else if (memcmp(config, "multi.acks", 10) == 0) {
@ -834,6 +868,12 @@ void CommonCLI::handleGetCmd(uint32_t sender_timestamp, char* command, char* rep
} else if (memcmp(config, "radio.rxgain", 12) == 0) { } else if (memcmp(config, "radio.rxgain", 12) == 0) {
sprintf(reply, "> %s", _prefs->rx_boosted_gain ? "on" : "off"); sprintf(reply, "> %s", _prefs->rx_boosted_gain ? "on" : "off");
#endif #endif
} else if (memcmp(config, "radio.fem.rxgain", 16) == 0) {
if (!_board->canControlLoRaFemLna()) {
strcpy(reply, "Error: unsupported");
} else {
sprintf(reply, "> %s", _board->isLoRaFemLnaEnabled() ? "on" : "off");
}
} else if (memcmp(config, "radio", 5) == 0) { } else if (memcmp(config, "radio", 5) == 0) {
char freq[16], bw[16]; char freq[16], bw[16];
strcpy(freq, StrHelper::ftoa(_prefs->freq)); strcpy(freq, StrHelper::ftoa(_prefs->freq));
@ -919,12 +959,12 @@ void CommonCLI::handleGetCmd(uint32_t sender_timestamp, char* command, char* rep
strcpy(reply, "> unknown"); strcpy(reply, "> unknown");
} }
#else #else
strcpy(reply, "ERROR: unsupported"); strcpy(reply, "Error: unsupported");
#endif #endif
} else if (memcmp(config, "adc.multiplier", 14) == 0) { } else if (memcmp(config, "adc.multiplier", 14) == 0) {
float adc_mult = _board->getAdcMultiplier(); float adc_mult = _board->getAdcMultiplier();
if (adc_mult == 0.0f) { if (adc_mult == 0.0f) {
strcpy(reply, "Error: unsupported by this board"); strcpy(reply, "Error: unsupported");
} else { } else {
sprintf(reply, "> %.3f", adc_mult); sprintf(reply, "> %.3f", adc_mult);
} }

2
src/helpers/CommonCLI.h

@ -61,8 +61,10 @@ struct NodePrefs { // persisted to file
float adc_multiplier; float adc_multiplier;
char owner_info[120]; char owner_info[120];
uint8_t rx_boosted_gain; // power settings uint8_t rx_boosted_gain; // power settings
uint8_t radio_fem_rxgain; // LoRa FEM RX gain setting
uint8_t path_hash_mode; // which path mode to use when sending uint8_t path_hash_mode; // which path mode to use when sending
uint8_t loop_detect; uint8_t loop_detect;
uint8_t cad_enabled; // hardware Channel Activity Detection before TX (boolean)
}; };
class CommonCLICallbacks { class CommonCLICallbacks {

23
src/helpers/radiolib/RadioLibWrappers.cpp

@ -36,6 +36,7 @@ void RadioLibWrapper::begin() {
_noise_floor = 0; _noise_floor = 0;
_threshold = 0; _threshold = 0;
_cad_enabled = false;
// start average out some samples // start average out some samples
_num_floor_samples = 0; _num_floor_samples = 0;
@ -178,10 +179,26 @@ void RadioLibWrapper::onSendFinished() {
state = STATE_IDLE; state = STATE_IDLE;
} }
int16_t RadioLibWrapper::performChannelScan() {
return _radio->scanChannel();
}
bool RadioLibWrapper::isChannelActive() { bool RadioLibWrapper::isChannelActive() {
return _threshold == 0 // int.thresh: RSSI-based interference detection (relative to noise floor)
? false // interference check is disabled if (_threshold != 0 && getCurrentRSSI() > _noise_floor + _threshold) return true;
: getCurrentRSSI() > _noise_floor + _threshold;
// cad: hardware channel activity detection
if (_cad_enabled) {
int16_t result = performChannelScan();
// scanChannel() triggers DIO interrupt (CAD done) which sets STATE_INT_READY
// via setFlag() ISR. Clear it before restarting RX so recvRaw() doesn't
// try to read a non-existent packet and count a spurious recv error.
state = STATE_IDLE;
startRecv();
if (result != RADIOLIB_CHANNEL_FREE) return true;
}
return false;
} }
float RadioLibWrapper::getLastRSSI() const { float RadioLibWrapper::getLastRSSI() const {

5
src/helpers/radiolib/RadioLibWrappers.h

@ -9,6 +9,7 @@ protected:
mesh::MainBoard* _board; mesh::MainBoard* _board;
uint32_t n_recv, n_sent, n_recv_errors; uint32_t n_recv, n_sent, n_recv_errors;
int16_t _noise_floor, _threshold; int16_t _noise_floor, _threshold;
bool _cad_enabled;
uint16_t _num_floor_samples; uint16_t _num_floor_samples;
int32_t _floor_sample_sum; int32_t _floor_sample_sum;
uint8_t _preamble_sf; uint8_t _preamble_sf;
@ -32,7 +33,7 @@ public:
bool isInRecvMode() const override; bool isInRecvMode() const override;
bool isChannelActive(); bool isChannelActive();
bool isReceiving() override { bool isReceiving() override {
if (isReceivingPacket()) return true; if (isReceivingPacket()) return true;
return isChannelActive(); return isChannelActive();
@ -46,9 +47,11 @@ public:
virtual uint8_t getSpreadingFactor() const { return LORA_SF; } virtual uint8_t getSpreadingFactor() const { return LORA_SF; }
static uint16_t preambleLengthForSF(uint8_t sf) { return sf <= 8 ? 32 : 16; } static uint16_t preambleLengthForSF(uint8_t sf) { return sf <= 8 ? 32 : 16; }
void updatePreamble(uint8_t sf) { _preamble_sf = sf; _radio->setPreambleLength(preambleLengthForSF(sf)); } void updatePreamble(uint8_t sf) { _preamble_sf = sf; _radio->setPreambleLength(preambleLengthForSF(sf)); }
virtual int16_t performChannelScan();
int getNoiseFloor() const override { return _noise_floor; } int getNoiseFloor() const override { return _noise_floor; }
void triggerNoiseFloorCalibrate(int threshold) override; void triggerNoiseFloorCalibrate(int threshold) override;
void setCADEnabled(bool enable) override { _cad_enabled = enable; }
void resetAGC() override; void resetAGC() override;
void loop() override; void loop() override;

3
variants/heltec_t096/LoRaFEMControl.h

@ -12,8 +12,9 @@ class LoRaFEMControl
void setRxModeEnable(void); void setRxModeEnable(void);
void setRxModeEnableWhenMCUSleep(void); void setRxModeEnableWhenMCUSleep(void);
void setLNAEnable(bool enabled); void setLNAEnable(bool enabled);
bool isLnaCanControl(void) { return lna_can_control; } bool isLnaCanControl(void) const { return lna_can_control; }
void setLnaCanControl(bool can_control) { lna_can_control = can_control; } void setLnaCanControl(bool can_control) { lna_can_control = can_control; }
bool isLNAEnabled(void) const { return lna_enabled; }
private: private:
bool lna_enabled = false; bool lna_enabled = false;

20
variants/heltec_t096/T096Board.cpp

@ -123,4 +123,22 @@ void T096Board::powerOff() {
const char* T096Board::getManufacturerName() const { const char* T096Board::getManufacturerName() const {
return "Heltec T096"; return "Heltec T096";
} }
bool T096Board::setLoRaFemLnaEnabled(bool enable) {
if (!loRaFEMControl.isLnaCanControl()) {
return false;
}
loRaFEMControl.setLNAEnable(enable);
loRaFEMControl.setRxModeEnable();
return true;
}
bool T096Board::canControlLoRaFemLna() const {
return loRaFEMControl.isLnaCanControl();
}
bool T096Board::isLoRaFemLnaEnabled() const {
return loRaFEMControl.isLNAEnabled();
}

3
variants/heltec_t096/T096Board.h

@ -25,4 +25,7 @@ public:
uint16_t getBattMilliVolts() override; uint16_t getBattMilliVolts() override;
const char* getManufacturerName() const override ; const char* getManufacturerName() const override ;
void powerOff() override; void powerOff() override;
bool setLoRaFemLnaEnabled(bool enable) override;
bool canControlLoRaFemLna() const override;
bool isLoRaFemLnaEnabled() const override;
}; };

18
variants/heltec_tracker_v2/HeltecTrackerV2Board.cpp

@ -82,3 +82,21 @@ void HeltecTrackerV2Board::begin() {
const char* HeltecTrackerV2Board::getManufacturerName() const { const char* HeltecTrackerV2Board::getManufacturerName() const {
return "Heltec Tracker V2"; return "Heltec Tracker V2";
} }
bool HeltecTrackerV2Board::setLoRaFemLnaEnabled(bool enable) {
if (!loRaFEMControl.isLnaCanControl()) {
return false;
}
loRaFEMControl.setLNAEnable(enable);
loRaFEMControl.setRxModeEnable();
return true;
}
bool HeltecTrackerV2Board::canControlLoRaFemLna() const {
return loRaFEMControl.isLnaCanControl();
}
bool HeltecTrackerV2Board::isLoRaFemLnaEnabled() const {
return loRaFEMControl.isLNAEnabled();
}

3
variants/heltec_tracker_v2/HeltecTrackerV2Board.h

@ -21,5 +21,8 @@ public:
void powerOff() override; void powerOff() override;
uint16_t getBattMilliVolts() override; uint16_t getBattMilliVolts() override;
const char* getManufacturerName() const override ; const char* getManufacturerName() const override ;
bool setLoRaFemLnaEnabled(bool enable) override;
bool canControlLoRaFemLna() const override;
bool isLoRaFemLnaEnabled() const override;
}; };

3
variants/heltec_tracker_v2/LoRaFEMControl.h

@ -12,8 +12,9 @@ class LoRaFEMControl
void setRxModeEnable(void); void setRxModeEnable(void);
void setRxModeEnableWhenMCUSleep(void); void setRxModeEnableWhenMCUSleep(void);
void setLNAEnable(bool enabled); void setLNAEnable(bool enabled);
bool isLnaCanControl(void) { return lna_can_control; } bool isLnaCanControl(void) const { return lna_can_control; }
void setLnaCanControl(bool can_control) { lna_can_control = can_control; } void setLnaCanControl(bool can_control) { lna_can_control = can_control; }
bool isLNAEnabled(void) const { return lna_enabled; }
private: private:
bool lna_enabled = false; bool lna_enabled = false;

18
variants/heltec_v4/HeltecV4Board.cpp

@ -83,3 +83,21 @@ void HeltecV4Board::begin() {
return loRaFEMControl.getFEMType() == KCT8103L_PA ? "Heltec V4.3 OLED" : "Heltec V4 OLED"; return loRaFEMControl.getFEMType() == KCT8103L_PA ? "Heltec V4.3 OLED" : "Heltec V4 OLED";
#endif #endif
} }
bool HeltecV4Board::setLoRaFemLnaEnabled(bool enable) {
if (!loRaFEMControl.isLnaCanControl()) {
return false;
}
loRaFEMControl.setLNAEnable(enable);
loRaFEMControl.setRxModeEnable();
return true;
}
bool HeltecV4Board::canControlLoRaFemLna() const {
return loRaFEMControl.isLnaCanControl();
}
bool HeltecV4Board::isLoRaFemLnaEnabled() const {
return loRaFEMControl.isLNAEnabled();
}

3
variants/heltec_v4/HeltecV4Board.h

@ -25,6 +25,9 @@ public:
void onAfterTransmit(void) override; void onAfterTransmit(void) override;
void enterDeepSleep(uint32_t secs, int pin_wake_btn = -1); void enterDeepSleep(uint32_t secs, int pin_wake_btn = -1);
void powerOff() override; void powerOff() override;
bool setLoRaFemLnaEnabled(bool enable) override;
bool canControlLoRaFemLna() const override;
bool isLoRaFemLnaEnabled() const override;
uint16_t getBattMilliVolts() override; uint16_t getBattMilliVolts() override;
bool setAdcMultiplier(float multiplier) override { bool setAdcMultiplier(float multiplier) override {
if (multiplier == 0.0f) { if (multiplier == 0.0f) {

3
variants/heltec_v4/LoRaFEMControl.h

@ -18,8 +18,9 @@ class LoRaFEMControl
void setRxModeEnable(void); void setRxModeEnable(void);
void setRxModeEnableWhenMCUSleep(void); void setRxModeEnableWhenMCUSleep(void);
void setLNAEnable(bool enabled); void setLNAEnable(bool enabled);
bool isLnaCanControl(void) { return lna_can_control; } bool isLnaCanControl(void) const { return lna_can_control; }
void setLnaCanControl(bool can_control) { lna_can_control = can_control; } void setLnaCanControl(bool can_control) { lna_can_control = can_control; }
bool isLNAEnabled(void) const { return lna_enabled; }
LoRaFEMType getFEMType(void) const { return fem_type; } LoRaFEMType getFEMType(void) const { return fem_type; }
private: private:
LoRaFEMType fem_type=OTHER_FEM_TYPES; LoRaFEMType fem_type=OTHER_FEM_TYPES;

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