Three sequential plans for MicroPython ESP32 firmware: - 07-01: Scaffold (UDP listener, packet discriminator, LED drivers, config) - 07-02: Animation renderer (all 7 types ported from lightsync) - 07-03: Frame mode (DRGB/DRGBW/DNRGB parsing, reassembly, timeout) Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
17 KiB
Plan 07-03: Frame Mode Renderer
Phase: 7 — Microcontroller Firmware Goal: The firmware receives DRGB/DRGBW/DNRGB raw frame packets and outputs correct pixel values to the physical LED strip, with multi-packet reassembly for DNRGB and automatic fallback to animation mode when frames stop arriving.
Prompt
This plan builds on 07-01 and 07-02 (both complete). The firmware has a working UDP listener, packet discriminator, animation renderer, and LED strip drivers. Now add raw frame mode: receiving pixel data from the server and writing it directly to the strip.
Update 1: firmware/protocol.py — Add DNRGB reassembly helper
Add a FrameAssembler class at the bottom of firmware/protocol.py that handles multi-packet DNRGB reassembly. This is needed for strips > 489 LEDs (RGB) where one frame spans multiple UDP packets.
Add this code to the end of the existing firmware/protocol.py:
class FrameAssembler:
"""Reassembles multi-packet DNRGB frames.
For 300-LED strips, frames fit in one packet so reassembly never triggers.
Implemented for completeness and future strip sizes.
"""
def __init__(self, expected_count):
self.expected_count = expected_count
self._buf = {} # start_index -> list of (R,G,B)
self._last_ms = 0
self._TIMEOUT_MS = 200
def feed(self, start_index, pixels, now_ms):
"""Feed a DNRGB chunk. Returns complete frame list or None."""
# Timeout: discard stale partial frames
if self._buf and (now_ms - self._last_ms) > self._TIMEOUT_MS:
self._buf.clear()
self._last_ms = now_ms
for i, px in enumerate(pixels):
self._buf[start_index + i] = px
if len(self._buf) >= self.expected_count:
frame = [self._buf.get(i, (0, 0, 0)) for i in range(self.expected_count)]
self._buf.clear()
return frame
return None
def reset(self):
self._buf.clear()
Update 2: firmware/main.py — Wire frame mode into the render loop
Replace the entire firmware/main.py with the final version that handles all three modes: animation, DRGB/DRGBW direct frames, and DNRGB reassembled frames.
Key changes from 07-02 version:
- Import frame parsers:
parse_drgb,parse_drgbw,parse_dnrgb,FrameAssembler - Add
frame_timeout_ms = 2000— if no frame packet arrives for 2 seconds, revert to last animation command - Add
last_frame_mstracking for timeout detection - Parse and store frame pixels in the UDP listener
- Write frame pixels in the render loop using appropriate driver method (
write_rgbfor DRGB/DNRGB,write_rgbwfor DRGBW)
Here is the complete final firmware/main.py:
"""LightSync firmware — main entry point.
Two asyncio tasks:
1. udp_listener_task: non-blocking UDP socket, parses packets, updates state
2. render_task: 60fps loop, renders animations or writes frame data to strip
Modes:
- 'idle': strip is off, waiting for first packet
- 'animation': running a locally-rendered animation (from 0xAC command)
- 'frame': displaying raw pixel data (from DRGB/DRGBW/DNRGB packets)
Frame timeout: if no frame packet arrives for 2 seconds, reverts to last animation.
"""
import asyncio
import socket
import select
import time
import json
from protocol import (
classify_packet, parse_animation_cmd,
parse_drgb, parse_drgbw, parse_dnrgb, FrameAssembler
)
from led_driver import create_strip
from animations import create_animation
# --- Global state ---
config = None
strip = None
current_mode = 'idle' # 'idle', 'animation', 'frame'
current_animation = None # dict from parse_animation_cmd
current_anim_instance = None # animation object with render()
animation_start_ms = 0
frame_pixels = None # list of (R,G,B) or (R,G,B,W) tuples
frame_is_rgbw = False # True if last frame was DRGBW
last_frame_ms = 0 # ticks_ms of last frame packet
frame_assembler = None # FrameAssembler for DNRGB
FRAME_TIMEOUT_MS = 2000 # revert to animation after 2s without frames
def load_config():
try:
with open('config.json') as f:
return json.load(f)
except OSError:
return {'led_count': 300, 'strip_type': 'sk6812', 'led_pin': 5,
'spi_id': 1, 'udp_port': 21324}
async def udp_listener_task(port):
"""Non-blocking UDP listener using select.poll(0) inside asyncio."""
global current_mode, current_animation, current_anim_instance
global animation_start_ms, frame_pixels, frame_is_rgbw
global last_frame_ms, frame_assembler
sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
sock.bind(('0.0.0.0', port))
sock.setblocking(False)
poller = select.poll()
poller.register(sock, select.POLLIN)
print('[udp] Listening on port', port)
while True:
events = poller.poll(0)
if events:
try:
data, addr = sock.recvfrom(1500)
ptype = classify_packet(data)
if ptype == 'anim_cmd':
cmd = parse_animation_cmd(data)
if cmd:
current_animation = cmd
current_anim_instance = create_animation(cmd)
current_mode = 'animation'
animation_start_ms = time.ticks_ms()
print('[udp] Animation:', cmd['animation'])
elif ptype == 'drgb':
pixels = parse_drgb(data)
frame_pixels = pixels
frame_is_rgbw = False
current_mode = 'frame'
last_frame_ms = time.ticks_ms()
elif ptype == 'drgbw':
pixels = parse_drgbw(data)
frame_pixels = pixels
frame_is_rgbw = True
current_mode = 'frame'
last_frame_ms = time.ticks_ms()
elif ptype == 'dnrgb':
start_idx, pixels = parse_dnrgb(data)
now = time.ticks_ms()
complete = frame_assembler.feed(start_idx, pixels, now)
if complete:
frame_pixels = complete
frame_is_rgbw = False # DNRGB is always RGB
current_mode = 'frame'
last_frame_ms = now
else:
print('[udp] Unknown packet type:', data[0] if data else '?')
except OSError:
pass
await asyncio.sleep_ms(5)
async def render_task():
"""Animation/frame render loop at ~60fps."""
global current_mode, frame_pixels
while True:
if current_mode == 'frame' and frame_pixels:
# Check frame timeout — revert to animation if no packets for 2s
if time.ticks_diff(time.ticks_ms(), last_frame_ms) > FRAME_TIMEOUT_MS:
if current_anim_instance:
current_mode = 'animation'
animation_start_ms = time.ticks_ms()
print('[render] Frame timeout, reverting to animation')
else:
current_mode = 'idle'
strip.clear()
else:
# Write frame to strip
if frame_is_rgbw:
strip.write_rgbw(frame_pixels)
else:
strip.write_rgb(frame_pixels)
elif current_mode == 'animation' and current_anim_instance:
t = time.ticks_diff(time.ticks_ms(), animation_start_ms) / 1000.0
pixels = current_anim_instance.render(t, config['led_count'])
strip.write_rgb(pixels)
await asyncio.sleep_ms(16) # ~60 fps
async def main():
global config, strip, frame_assembler
config = load_config()
strip = create_strip(config)
strip.clear()
frame_assembler = FrameAssembler(config['led_count'])
print('[main] LightSync firmware ready')
print('[main] Strip:', config['strip_type'], '/', config['led_count'], 'LEDs')
print('[main] UDP port:', config['udp_port'])
asyncio.create_task(udp_listener_task(config['udp_port']))
asyncio.create_task(render_task())
while True:
await asyncio.sleep(1)
asyncio.run(main())
File 3: tests/test_firmware_frames.py
Create host-side tests that verify end-to-end frame handling: server encodes pixels -> firmware parses -> correct pixel values extracted. Also test DNRGB reassembly and the frame assembler.
"""Host-side tests for firmware frame mode.
Tests DRGB/DRGBW/DNRGB parsing and DNRGB multi-packet reassembly.
Run with: python -m pytest tests/test_firmware_frames.py -v
"""
import sys
import os
import pytest
sys.path.insert(0, os.path.join(os.path.dirname(__file__), '..', 'firmware'))
from protocol import parse_drgb, parse_drgbw, parse_dnrgb, FrameAssembler
from lightsync.protocol.drgb import encode_drgb, encode_drgbw, encode_dnrgb_packets
class TestDRGBFrames:
def test_single_pixel(self):
packet = encode_drgb([(255, 0, 0)])
pixels = parse_drgb(packet)
assert pixels == [(255, 0, 0)]
def test_300_leds(self):
src = [(i % 256, (i * 7) % 256, (i * 13) % 256) for i in range(300)]
packet = encode_drgb(src)
pixels = parse_drgb(packet)
assert len(pixels) == 300
assert pixels[0] == src[0]
assert pixels[149] == src[149]
assert pixels[299] == src[299]
def test_all_black(self):
src = [(0, 0, 0)] * 100
packet = encode_drgb(src)
pixels = parse_drgb(packet)
assert all(p == (0, 0, 0) for p in pixels)
def test_all_white(self):
src = [(255, 255, 255)] * 50
packet = encode_drgb(src)
pixels = parse_drgb(packet)
assert all(p == (255, 255, 255) for p in pixels)
class TestDRGBWFrames:
def test_single_pixel(self):
packet = encode_drgbw([(255, 0, 0, 128)])
pixels = parse_drgbw(packet)
assert pixels == [(255, 0, 0, 128)]
def test_300_leds_rgbw(self):
src = [(i % 256, (i * 3) % 256, (i * 5) % 256, (i * 7) % 256) for i in range(300)]
packet = encode_drgbw(src)
pixels = parse_drgbw(packet)
assert len(pixels) == 300
assert pixels[0] == src[0]
assert pixels[299] == src[299]
def test_w_channel_preserved(self):
"""Verify the W channel survives encode/decode round-trip."""
src = [(100, 100, 100, 200)]
packet = encode_drgbw(src)
pixels = parse_drgbw(packet)
assert pixels[0][3] == 200
class TestDNRGBFrames:
def test_single_packet_small(self):
src = [(255, 0, 0)] * 100
packets = encode_dnrgb_packets(src)
assert len(packets) == 1
start_idx, pixels = parse_dnrgb(packets[0])
assert start_idx == 0
assert len(pixels) == 100
assert pixels[0] == (255, 0, 0)
def test_multi_packet_600_leds(self):
"""600 LEDs = 2 DNRGB packets (489 + 111)."""
src = [(i % 256, 0, 0) for i in range(600)]
packets = encode_dnrgb_packets(src)
assert len(packets) == 2
s0, px0 = parse_dnrgb(packets[0])
s1, px1 = parse_dnrgb(packets[1])
assert s0 == 0
assert s1 == 489
assert len(px0) == 489
assert len(px1) == 111
# Verify pixel values survive round-trip
assert px0[0] == src[0]
assert px0[488] == src[488]
assert px1[0] == src[489]
assert px1[110] == src[599]
def test_start_index_offset(self):
"""Packets with non-zero start_index."""
src = [(0, 255, 0)] * 50
packets = encode_dnrgb_packets(src, start_index=100)
assert len(packets) == 1
start_idx, pixels = parse_dnrgb(packets[0])
assert start_idx == 100
assert len(pixels) == 50
class TestFrameAssembler:
def test_single_chunk_completes(self):
asm = FrameAssembler(100)
pixels = [(i, 0, 0) for i in range(100)]
result = asm.feed(0, pixels, 1000)
assert result is not None
assert len(result) == 100
assert result[0] == (0, 0, 0)
assert result[99] == (99, 0, 0)
def test_two_chunks(self):
asm = FrameAssembler(200)
chunk1 = [(i, 0, 0) for i in range(100)]
chunk2 = [(100 + i, 0, 0) for i in range(100)]
result1 = asm.feed(0, chunk1, 1000)
assert result1 is None # not complete yet
result2 = asm.feed(100, chunk2, 1010)
assert result2 is not None
assert len(result2) == 200
assert result2[0] == (0, 0, 0)
assert result2[100] == (100, 0, 0)
assert result2[199] == (199, 0, 0)
def test_timeout_clears_buffer(self):
asm = FrameAssembler(200)
chunk1 = [(i, 0, 0) for i in range(100)]
asm.feed(0, chunk1, 1000)
assert len(asm._buf) == 100
# Feed again after timeout (300ms > 200ms timeout)
chunk2 = [(50 + i, 0, 0) for i in range(50)]
asm.feed(0, chunk2, 1300)
# Buffer should have been cleared, only chunk2 remains
assert len(asm._buf) == 50
def test_reset(self):
asm = FrameAssembler(100)
asm.feed(0, [(0, 0, 0)] * 50, 1000)
asm.reset()
assert len(asm._buf) == 0
def test_full_round_trip_with_encoder(self):
"""Multi-packet DNRGB: encode 600 LEDs -> feed both packets -> get complete frame."""
asm = FrameAssembler(600)
src = [(i % 256, (i * 3) % 256, (i * 7) % 256) for i in range(600)]
packets = encode_dnrgb_packets(src)
assert len(packets) == 2
s0, px0 = parse_dnrgb(packets[0])
result = asm.feed(s0, px0, 1000)
assert result is None
s1, px1 = parse_dnrgb(packets[1])
result = asm.feed(s1, px1, 1005)
assert result is not None
assert len(result) == 600
assert result[0] == src[0]
assert result[599] == src[599]
class TestFrameModeIntegration:
"""Test that SK6812 (RGBW) and WS2801 (RGB) frame paths work correctly."""
def test_drgb_for_ws2801(self):
"""WS2801 is RGB — DRGB packets contain 3 bytes per pixel."""
src = [(255, 128, 64)] * 300
packet = encode_drgb(src)
pixels = parse_drgb(packet)
# All pixels should be RGB tuples
assert all(len(p) == 3 for p in pixels)
assert pixels[0] == (255, 128, 64)
def test_drgbw_for_sk6812(self):
"""SK6812 is RGBW — DRGBW packets contain 4 bytes per pixel."""
src = [(255, 128, 64, 200)] * 300
packet = encode_drgbw(src)
pixels = parse_drgbw(packet)
# All pixels should be RGBW tuples
assert all(len(p) == 4 for p in pixels)
assert pixels[0] == (255, 128, 64, 200)
def test_drgb_pixel_count_matches(self):
"""300 LED DRGB: 2 + 300*3 = 902 bytes, fits in one packet."""
src = [(0, 0, 0)] * 300
packet = encode_drgb(src)
assert len(packet) == 902
pixels = parse_drgb(packet)
assert len(pixels) == 300
def test_drgbw_pixel_count_matches(self):
"""300 LED DRGBW: 2 + 300*4 = 1202 bytes, fits in one packet."""
src = [(0, 0, 0, 0)] * 300
packet = encode_drgbw(src)
assert len(packet) == 1202
pixels = parse_drgbw(packet)
assert len(pixels) == 300
Verification
python -m pytest tests/test_firmware_frames.py -vpasses all testsfirmware/protocol.pycontainsFrameAssemblerclass withfeed(),reset(), and 200ms timeoutfirmware/main.pyhandles all 3 frame types: DRGB (direct RGB write), DRGBW (direct RGBW write), DNRGB (via FrameAssembler)- Frame mode uses
strip.write_rgbw()for DRGBW packets andstrip.write_rgb()for DRGB/DNRGB packets - Frame timeout (2 seconds) reverts to last animation command mode
- DNRGB reassembly correctly handles 600-LED multi-packet frame (2 packets: 489 + 111 LEDs)
- 300-LED DRGB packet = 902 bytes, 300-LED DRGBW packet = 1202 bytes — both fit in single UDP packet
FrameAssemblerclears stale partial frames after 200ms timeout- WS2801 strips receive RGB data via
write_rgb()(W channel dropped by driver) - SK6812 strips receive RGBW data via
write_rgbw()when DRGBW packets arrive
Notes
- For the 300-LED strips used in this project, DRGB (902 bytes) and DRGBW (1202 bytes) both fit in a single UDP packet. DNRGB reassembly will never trigger in practice but is implemented for future strip sizes.
- Frame mode takes priority over animation mode: when a raw frame arrives, the strip immediately shows it. After 2 seconds without frame packets, the firmware reverts to the last animation command (if any). This matches WLED's behavior.
- The
frame_is_rgbwflag tracks whether to usewrite_rgborwrite_rgbw. DRGB and DNRGB are always RGB (3 bytes/pixel). DRGBW is always RGBW (4 bytes/pixel). The strip driver handles the mismatch:WS2801Strip.write_rgbw()silently drops the W channel,NeoPixelStrip.write_rgb()sets W=0. - The render task checks frame timeout BEFORE writing — this avoids re-writing stale frame data every 16ms when no new packets arrive. Once timeout triggers, it reverts to animation mode which produces fresh frames each cycle.