drjones 63db10d400 fw: robust HTTP body reads, CORS preflight, LED off at boot; update docs
- app_net.c: replace bare httpd_req_recv with recv_body_capped/alloc
  helpers (TCP-safe, full-body reads); add OPTIONS/* CORS preflight
  handler; bump WS broadcast buffer to 2048; add CORS Allow-Methods
- CMakeLists (net_service): add http_parser dep for HTTP_OPTIONS
- nfc_engine/pn532_core: add nfc_access_lock/unlock mutex, board-RGB
  quiet helper, UL type detection, general-status improvements
- pn532_transport: minor cleanup
- main.c: call board_rgb_led_quiet() at boot to kill onboard LED
- sdkconfig.defaults: add board RGB Kconfig defaults
- README, docs/LIMITATIONS, docs/PINOUT: expand and correct

Made-with: Cursor
2026-04-07 21:23:04 -07:00

PN532 NFC Toolkit

The browser-native NFC lab that fits in your pocket.
ESP32-S3 + PN532 + a serious web UI — no desktop app, no dongle software, no mystery binaries. You join WiFi, open a URL, and youre operating the reader from any phone or laptop.


Why this is the best tool for PN532 workflows

  1. Full remote control in the browser — Dashboard, live scan, deep capture, read/write helpers, dictionary attack, raw PN532 commands, and live status — all over HTTP + WebSocket. You can stand across the room with your phone while the hardware sits on the bench.

  2. “Deep capture” is actually deep (for a PN532) — On each new UID the firmware doesnt stop at inventory: it builds a JSON profile with MIFARE Classic sector sweeps (default keys, Key A then B per sector trailer, 1K and 4K layouts) with every readable block as hex, or an Ultralight/NTAG-style page sweep (up to 240 pages in firmware). Unknown or non-Classic paths still get solid ATQA/SAK/UID plus whatever the stack can return — nothing is silently dropped.

  3. RAM session buffer with a hard stop + phone download — Captures live in on-chip RAM (48 KB buffer, NDJSON lines). When the buffer is full, RF polling pauses so you never lose data to silent overflow. You tap Download NDJSON, get one file with every profile, then Clear to resume. That workflow is built for field audits, bench sessions, and anything where “I need the dump on my phone, now” matters.

  4. Self-hosted on the device — Default SoftAP: SSID PN532-Toolkit, open network (no password, lab default). mDNS hostname pn532tool.local (HTTP port 80). No cloud, no account, no telemetry.

  5. Honest architectureESP-IDF, explicit components (pn532_host, nfc_engine, net_service), Vite/React UI embedded in SPIFFS. You extend it like real firmware, not a black-box sketch. PN532 talks SPI, I2C, or UART (HSU) — pins and bus are menuconfig, not guesses.

  6. Raw PN532 path — When the high-level UI isnt enough, Raw sends command bytes; the stack handles transport framing. GET /api/pn532/general-status exposes the controllers general status bytes for debugging. Thats how you stay aligned with the real chip, not a toy abstraction.

  7. UI that matches the ambition — Live WebSocket stream (scan + capture), browser-side log (thousands of events, exportable JSON), optional apiBase for talking to the box from another host, HashRouter so refreshes dont fight the server, and lab fixtures (synthetic card blobs, keys, SHA checks) so you can validate the UI without burning tags.

This stack is not a Proxmark replacement (no LF, no raw carrier manipulation, no FPGA tricks). For hosted NFC with a PN532, its the full pocket operator: remote UI, deep reads, session export, Classic dictionary work, Ultralight read/write, card emulation hooks, and a straight line to the command set when you need it.


Every feature, in one pass

Firmware (what the chip actually does)

Capability What you get
Transport PN532 over SPI (default pins in Kconfig), I2C, or UART (HSU) — bit rate and GPIOs set in menuconfig.
Continuous scan Background task polls passive targets; ~65 ms when not in deep mode, ~220 ms when deep capture is on (more time per tag for heavy work). Toggle via POST /api/nfc/scan or the Dashboard.
RF sensitivity On init, high passive-activation retries (RFConfiguration 0x05) so marginal tags get more chances to answer.
Deep profile Per new UID: Classic sector layout detection (1K / 4K), per-sector auth with built-in default keys, block hex arrays; Ultralight/NTAG page reads up to firmware limit; structured JSON for export.
Session RAM ~48 KB NDJSON capture buffer; mutex-protected; full flag stops polling until you clear.
HTTP API JSON in/out on documented routes; CORS headers on API responses; OPTIONS /* preflight for cross-origin clients. POST bodies are read completely (chunked TCP-safe).
WebSocket /ws: JSON envelopes {"channel":"…","payload":…}scan (inventory / present:false when tag leaves), capture (recorded, bufferFull, etc.), pong for keepalive.
OTA endpoint POST /api/ota now performs a real HTTPS OTA with the ESP-IDF certificate bundle; successful updates reboot into the new slot and rollback support is enabled.
Onboard RGB (DevKit-style) Optional boot-time shutdown of a WS2812/SK6812 on GPIO 48 (Kconfig) so the addressable LED isnt left on a random color — not on all boards; power LEDs are hardware.
Status /api/status: uptime, free heap, WiFi mode, PN532 firmware version (when reachable), scan flag, targetActive, and session stats.
Probe API POST /api/nfc/probe builds a richer capability profile for the present tag, including structured-clone suitability and Type 2 GET_VERSION when supported.
Structured clone flow POST /api/clone/capture normalizes MIFARE Classic and Type 2 tags into JSON snapshots; POST /api/clone/program writes supported snapshots back to a destination tag with safe defaults.
Target mode POST /api/nfc/target/* provides status, start, recv, send, and stop around TgInitAsTarget / TgGetData / TgSetData, with a raw-parameter escape hatch when you need exact bytes.

Web UI (each page)

Page Purpose
Dash Live status poll, continuous scan on/off, manual poll (uses live tag from WebSocket when present), hero readout.
Read-all (Capture) Toggle deep capture, export NDJSON from device RAM, clear buffer, progress vs 48 KB budget.
Read MIFARE block read with key + Key A/B; Ultralight page read; paste a sector trailer to decode access bits in the browser.
Write MIFARE block write (16-byte hex, confirm dialog); Ul page write; lab fixture loader for offline testing flows; ties into live UID from WebSocket when available.
Brute Classic 1K / 4K dictionary attack: firmwares built-in key set + your lines, optional bounded variations; shows JSON result.
Emu TgInitAsTarget and friends via POST /api/nfc/emulate-raw — you supply hex; experimental (bad sequences can require power cycle).
KeyLab XOR span across up to three 6-byte base keys (all combinations → candidates for Brute/Keys); Shannon entropy on arbitrary hex blobs. Stage for Keys copies candidates into sessionStorage for the Keys page.
Lib Saved hex snippets in localStorage; seed from built-in lab catalog samples; fixture loader for repeatable demos.
Keys Browser-local key dictionary (defaults + your lines); merge lab keys; import Key Lab stash from staged session. Used when you copy keys into Brute manually — not auto-uploaded to flash.
Raw Hex command payload → /api/raw/pn532; general status dump from /api/pn532/general-status; local TX/RX log.
Set apiBase (empty = same host), theme (light/dark), reminder of SoftAP + mDNS.

Browser extras (no extra server)

  • Top barDownload log JSON: last 5000 WebSocket messages from sessionStorage (scan + capture + anything else the firmware sends).
  • Scan feedback — Visual/audio “hit” flourishes on new tag / capture events (debounced so it doesnt spam).
  • Validation fixtures — Shared lab blobs and notes (validationFixtures.ts) for UI testing and teaching.

Remote deep capture (how to use it)

  1. Power on → firmware starts continuous scan by default (toggle on the Dashboard).
  2. Open Read-all (Capture) → enable passive read-all (POST /api/session/deep).
  3. Present tags; each new UID appends one NDJSON line: full deep profile JSON.
  4. When the progress bar hits the end, scanning pauses automatically.
  5. Tap Download NDJSON — browser saves pn532-deep-capture-*.ndjson.
  6. Tap Clear buffer to free RAM and resume.

Session API (automation)

Method Path Purpose
GET /api/status App name, uptime, heap, WiFi mode, PN532 version, scanning, session (usedBytes, maxBytes, lines, full, deepCapture)
POST /api/session/deep Body {"enable": true} or false
GET /api/session/export text/plain / NDJSON attachment
POST /api/session/clear Clears RAM buffer

Live NFC API

Method Path Purpose
POST /api/nfc/poll One-shot poll; body may be {} — returns present, optional tag
POST /api/nfc/probe Rich capability probe for the current tag; adds clone/program hints and Type 2 GET_VERSION when available
POST /api/nfc/scan Body {"enable": true} or false — continuous background scan
GET /api/pn532/general-status Raw PN532 general status byte array
POST /api/mifare/read-block block, key (12 hex), keyB
POST /api/mifare/write-block block, key, keyB, data (32 hex)
POST /api/ul/read-page page
POST /api/ul/write-page page, data (8 hex)
POST /api/raw/pn532 frame — PN532 command bytes (not a full transport frame)
POST /api/mifare/dictionary-attack readerType (classic1k / classic4k), variations, optional keysHex[], optional sectorFirst / sectorLast
POST /api/clone/capture Optional mode (auto / classic / type2), optional keysHex[], variations, maxPages — returns a structured snapshot for supported tags
POST /api/clone/program snapshot plus optional includeTrailers / includeLockPages — programs a supported destination tag with safe skips by default
POST /api/nfc/target/status Returns whether PN532 target mode is active
POST /api/nfc/target/start Start target mode from semantic JSON fields or rawParamsHex
POST /api/nfc/target/recv Wait for initiator bytes and return status + payload hex
POST /api/nfc/target/send Send target response bytes back to the initiator
POST /api/nfc/target/stop Return PN532 to normal SAM mode
POST /api/nfc/emulate-raw hex — raw command bytes (e.g. 0x8C sequences)
POST /api/ota url (HTTPS), optional reboot — performs a real OTA update via esp_https_ota

WebSocket: GET /ws — JSON text frames as above; send ping, receive pong.

Browser memory log

The SPA keeps the last 5000 WebSocket events in sessionStorage. Download log JSON saves a pretty file on your phone or PC without using device RAM. Clear that log separately from the device capture buffer.

Dictionary “brute” (Classic)

Brute page → Classic 1K / 4K, optional variations, paste extra keys. Firmware runs POST /api/mifare/dictionary-attack: built-in public default keys (same family as community lists like Proxmark3 mfc_default_keys.dic) plus your lines, Key A then B per sector trailer. Variations add bounded XOR / nibble-style tweaks — not a full 2⁴⁸ search. You wont magically open every sector; you systematically try keys people actually leak in the wild.

Card emulation (PN532 target mode)

Emulate now has two layers: a higher-level /api/nfc/target/* subsystem for TgInitAsTarget / TgGetData / TgSetData, plus POST /api/nfc/emulate-raw when you want to drive the exact byte stream yourself. The structured path is safer; raw mode is still experimental and bad sequences can wedge the front end until re-init or power cycle.


Build

One-command local run

./start-firmware.sh

What it does (see script for flags): bootstraps ESP-IDF under a local prefix if needed, builds the web UI into firmware/data, targets esp32s3, auto-detects serial when possible, builds and flashes.

Options include --build-only, --monitor, --port, etc.

Web UI → SPIFFS image

cd web
npm install
npm run build:fw

Firmware (ESP-IDF 5.x)

cd firmware
idf.py set-target esp32s3
idf.py menuconfig   # PN532 Host: SPI / I2C / UART + pins; Board indicators (RGB) if you use DevKitC-1
idf.py build flash monitor

Common red PN532 module notes

The common red Elechouse-style PN532 board usually selects its bus with two onboard switches: HSU = OFF/OFF, I2C = ON/OFF, SPI = OFF/ON. HSU and I2C usually share header pins, and many boards ship in HSU by default, so a “dead” SPI/I2C setup is often just a switch mismatch rather than bad firmware.

From firmware/, with IDF already in your environment, you can also ./flash.sh (uses ESPPORT or the first argument as the serial device).

See docs/FLASHING.md and docs/PINOUT.md. Limitations and scope notes: docs/LIMITATIONS.md.


Repo layout

Path Role
firmware/ ESP-IDF: PN532 transport, NFC engine, session buffer, deep profile, HTTP/WebSocket, SPIFFS
web/ React UI: Dashboard, Capture, Read, Write, Brute, Emulate, KeyLab, Library, Keys, Raw, Settings
docs/ Flashing, pinout, workflows, limitations
start-firmware.sh One-shot IDF bootstrap + build + flash
Description
firmware that doesnt suck at swiping
Readme MIT 930 KiB
Languages
TypeScript 46.7%
C 45.3%
Shell 3.2%
CSS 1.8%
JavaScript 1.8%
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