Implement radio2, tempradio2, radioat2 and tempradioat2 across Mesh roles,
with RX-only/RX+TX operation, optional preambles and persistent cross-TX
policy. Keep temporary OTA traffic on its profile by default and maintain
independent retry ownership and backoff for each profile.
Use slow-first receive scanning with 4.8-symbol visits and automatic
preambles rounded up in steps of eight. Preserve pending RX, restore power
saving on exit, and discard work bound to changed or expired profiles.
Restore the infrastructure path.hash.mode setter and report unsupported
extra.sf settings consistently. Add CLI, scheduling, scan and retry tests,
setup documentation, and the V4/XIAO hardware validation results.
Validation: 1,422 native tests, eight KISS tests, 63 final focused profile
tests, 18 checks from the staged source, sanitizer-enabled OTA transfers,
and builds for V4 Mesh roles, Full XIAO Companion and nRF52 T1000-E.
Hardware checks cover reception, cross-TX policy, expiry, reboot and OTA
discovery while receiving main-channel adverts.
Integrate ExpressLRS TX module support and its stacked ESP32 heap changes.
Use the approved Linkflow calibration (17-30 dBm), preserve the PA drive
and output path after radio recovery, and keep LoRa OTA enabled.
Preserve stored ACLs and filters on allocation failure, release owned
client/filter buffers, service heap OTA contexts on Companions, release
self-serving workspaces after TempRadio, and reset staged-resume state
when a context is released. Keep manual staging and active operations
alive. Account for all moved allocations in the runtime RAM gate.
Validation: 1,393 native cases; radio-power, heap-context, ACL persistence,
shared-queue transfer, display/inbox, radio receive, and memory regressions.
Firmware builds passed for Linkflow, Heltec V2 Companion, T-Beam MQTT
repeater, Heltec V4 R8 MQTT repeater, RAK4631 repeater, and Indicator Full.
Physical verification awaits access to the currently offline lab Pi.
Accept the upstream empty-prefix neighbor.remove command after whitespace normalization while preserving invalid-key checks. Cover repeater and room-server removal paths with regression tests.
Fixes#8
Move OTA_HEAP_CONTEXT from two hand-edited envs to a pre-script gated on
build.mcu == "esp32", so every classic ESP32 image gets it and none can drift.
S2/S3/C-series and nRF52 keep the .bss singleton: they have no equivalent
static-DRAM ceiling, so there a guaranteed-present workspace is the better
trade for what is ultimately a recovery path. It has to be a build flag rather
than a header default, because OTA_HEAP_CONTEXT must hold the same value in
every translation unit that sees OtaContext.h - OtaContext.cpp included - and a
header test on CONFIG_IDF_TARGET_ESP32 would depend on include order relative
to sdkconfig.h. The script defers to OTA_SHARED_COMPANION_QUEUE where a Full
Companion recipe already owns the storage.
Fix a gap this exposes in the roles that now use it. Only CLI entry points
acquire the context, so once it was released, a repeater with the temporary
radio profile up would no longer serve or announce its own firmware - LoRa OTA
would look enabled and silently do nothing. ota_service_temp_radio_context()
holds the workspace for exactly the temp-radio window and hands it back
outside it, which is where the saving was coming from anyway. Wired into the
repeater, room server and sensor loops; the Companion keeps its own
acquire-on-host-demand policy, since its context is borrowed from the offline
message queue and must not be taken speculatively.
Static DRAM, classic ESP32 (bytes occupied of a 124,580 region):
Heltec_v2_repeater 108,332 -> 70,732
Heltec_v2_room_server 83,716 -> 68,300
Heltec_v2_companion_radio_ble 123,236 -> 107,772 (was failing on main)
Tbeam_SX1262_repeater 86,932 -> 71,468
Tbeam_SX1262_repeater_observer_mqtt 121,132 -> 83,532 (was failing)
Reserve board-specific GPIOs, make ESP-NOW channel/format handling configurable, and coordinate WiFi, BLE, NTP, MQTT, and host actions safely.
Add the Indicator message page, exclusive transport selector, dynamic 480/320 rendering, larger transport typography, pairing cleanup, and corresponding tests and documentation.
Add durable TempRadio, ACL, clock, bridge, GPS/I2C, USB logging, and Indicator recovery safeguards together with expanded automation, build/profile contracts, release metadata, and the hardware validation ledger.
Add selectable shared ESP-NOW channels, raw/wrapped bridge compatibility, and bounded fragmentation for maximum-size packets.\n\nGive ESP32 Full profiles WiFi coexistence, stabilize WebConfig and USB terminal lifecycles, and keep disabled bridges stopped during observer updates.\n\nUpdate generated UI, firmware selection, documentation, and regression coverage.
Adding build_date to the WebConfigServer constructor broke every
*_room_server_observer_mqtt target: simple_room_server constructs the portal as
well, and only simple_repeater was updated. Nothing caught it because every
build run to that point had been a repeater target.
Improve companion BLE delivery and idempotent remote CLI retries, make FPF7 persistence atomic with FPF6 migration, verify staged OTA data on resume, and clarify filter policy wildcard and BlackHole semantics.
Neighbors publication was gated on BOARD_HAS_PSRAM. Removing that gate alone
was not enough: the feature built but was inert without PSRAM, because three
allocation sites asked for MALLOC_CAP_SPIRAM (which returns null with no
PSRAM), the bridge's persistent buffer was allocated inside a BOARD_HAS_PSRAM
block, and neighborDiscoverReady() rejected every pass at runtime on
psramFound(). The entry table also did not fit: finishNeighborDiscover put
pubkey_hex[50][65] plus entries[50] on the stack, a 4752-byte frame against
the mesh loop task's 8 KB.
- Gate on MAX_NEIGHBOURS plus PSRAM or an explicit per-variant
MQTT_NEIGHBORS_WITHOUT_PSRAM opt-in.
- Move the entry table and its hex strings into one heap block sized to the
pass; the frame drops from 4752 to 304 bytes.
- Prefer PSRAM and fall back to internal DRAM in the mesh-side allocations
and the ArduinoJson pool; hoist the bridge's persistent buffer out of the
BOARD_HAS_PSRAM block (psram_malloc already falls back).
- Keep the runtime psramFound() check only where the buffers are sized for
PSRAM, so a board whose PSRAM failed to init still refuses.
- Size for internal DRAM without PSRAM: 4 KB text buffer and 20 entries per
publish, keeping the pool to a single block and the peak near 13 KB rather
than ~35 KB. Oversized tables truncate and report total_neighbors as before.
Enabled on the ESP32-S3 observer envs (Heltec V3/WSL3, RAK3112, Heltec
Tracker v1.1/v2). Left off for the classic ESP32 T-LoRa V2.1-1.6, which is
already limited to one active TLS slot.
Costs ~7.4 KB static DRAM on repeaters and ~9.6 KB on room servers. The
prefs layout is unchanged, so this is neutral for existing devices.
ArduinoJson v7 hands out document-pool blocks in fixed 4096-byte chunks, so
the pool is not bounded by the size of the text it serialises to. Budgeting
it at NEIGHBORS_JSON_BUFFER_SIZE starved it once the table grew: a 50-entry
table needs 12541 B of pool against the 10240 B cap, and a starved allocator
sets doc.overflowed(), which makes buildNeighborsMessage return 0 and drop
the entire publish rather than truncating the tail.
Repeaters with roughly 40 or more neighbours therefore published no neighbors
message at all, silently, while smaller tables published normally.
Give the pool its own NEIGHBORS_DOC_POOL_BUDGET and add an explicit
NEIGHBORS_MAX_PUBLISH_ENTRIES cap alongside the existing text-size check.