6ba3447e58
Hardware bring-up correction (Dennis, 2026-08-22): writing the FT2232H product string to the undersized 93LC46B (U7) does NOT harmlessly fail — the partial, mirrored write lands a checksum-valid-but-garbage config, and the FT2232H then FAILS USB enumeration entirely (dead silent, no dmesg attach). It does NOT fall back to ROM defaults; only a blank/checksum-invalid EEPROM does. The earlier claim that "a bad EEPROM always falls back and still enumerates" was WRONG. Recovery (confirmed working): power on with U7 CLK shorted to GND so the FT2232H can't read a valid config -> forces ROM defaults -> enumerates -> then erase U7. Updated REVIEW.md, TODO.md, the flash-re-bba-rb skill (do-not-program warning + recovery, native-Linux troubleshooting), and flash_ftdi_eeprom.py comments/help to state the soft-brick reality. The script already refuses the write on mirroring detection; --force now documented as "reproduce the soft-brick". Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
136 lines
7.1 KiB
Markdown
136 lines
7.1 KiB
Markdown
---
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name: flash-re-bba-rb
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description: Use when flashing the re-bba-rb board (GC BBA FPGA replacement) — programming the iCE40UP5K bitstream with iceprog from inside the devcontainer (native-Linux or WSL2 host USB passthrough). Covers USB prerequisites, best-seed bitstream selection, sudo/libusb access. WARNING: on V1 the FT2232H EEPROM (U7 93LC46B) is undersized and writing the product string SOFT-BRICKS enumeration — the skill documents why not to, and the CLK-to-GND recovery.
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---
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# Flashing the re-bba-rb board
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The board is FT2232H (USB) → iCE40UP5K (FPGA) + W5100S (ethernet). Two flashable
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targets, done **in this order**:
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1. **FPGA bitstream** via `iceprog` (MPSSE on FT2232H channel A) — the functional
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flash. Do this first; it works with a blank EEPROM.
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2. **FT2232H EEPROM** product string via `pyftdi` — cosmetic ("re-BBA-rb" instead
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of "Dual RS232-HS"). Optional, do it only after the bitstream is proven.
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Both need USB access to the FT2232H (VID:PID `0403:6010`) from inside the
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container. The `vscode` user reaches the root-owned `/dev/bus/usb` nodes via
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passwordless `sudo`.
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## Prerequisites (once per session)
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1. **Container built with USB access.** `.devcontainer/` must have `--privileged`,
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the `/dev/bus/usb` bind mount, `sudo`, `libusb-1.0-0`, `libftdi1-2`, and
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`pyftdi`. If `.devcontainer/` was just edited, the user must **rebuild the
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container** — those changes are baked at build/create time.
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2. **Device attached to WSL2.** On the Windows host, as Administrator:
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`.devcontainer/attach-icebreaker.ps1` (wraps `usbipd attach`). Attach before
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or after container start — the bind mount is live, so a later attach still
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appears.
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3. **Confirm the device is visible from inside the container:**
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```bash
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ls /dev/bus/usb/*/* # nodes must exist
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sudo /opt/venv/bin/python -c "import usb.core,usb.backend.libusb1 as b; \
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print(usb.core.find(idVendor=0x0403, idProduct=0x6010, backend=b.get_backend()))"
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```
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A non-`None` device object means libusb can see it. If `/dev/bus/usb` is empty,
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the device is not attached (fix on the Windows side) — see Troubleshooting.
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## Step 1 — Flash the FPGA bitstream
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The design's `capture` domain (54 MHz) closes on only a **minority of seeds** —
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always sweep and flash the **best passing** seed, never the default seed-1 build.
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```bash
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# Build all 8 seeds (from workspace root). Prints the best passing seed + path.
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python -m exi_bba.synth --seeds 8
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```
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Note the reported best seed, e.g. `Best seed: 4 ... build/seed4/top.bin`. (As of
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the last build: **seed 4, `build/seed4/top.bin`, capture 58.36 MHz**, 4/8 pass.
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`build/` is on the host bind mount, so it survives container rebuilds.)
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Flash it (SRAM-less part → `iceprog` writes the SPI flash; the FPGA boots from
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it):
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```bash
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sudo iceprog build/seed4/top.bin # substitute the reported best-seed path
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```
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Expect `iceprog` to detect the FTDI, erase, write, and **verify OK**. If it says
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"Can't find iCE FTDI USB device", the USB passthrough is not working — see
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Troubleshooting. After a successful flash, power-cycle / re-plug to boot the new
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image.
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`ICEPROG=/path/to/iceprog` overrides the binary if needed; the container's is on
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`PATH`.
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## Step 2 — FT2232H EEPROM product string — ⚠️ DO NOT DO THIS ON V1
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**On the re-bba-rb V1 board, writing the EEPROM product string SOFT-BRICKS the
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FT2232H.** U7 is a 93LC46B (128 B), too small for the FT2232H (which needs a
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93LC56B / 256 B). A string write lands a partial, checksum-valid-but-garbage
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config; the FT2232H reads it at power-up and **fails USB enumeration entirely —
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dead silent, no `dmesg` attach.** It does NOT fall back to ROM defaults (only a
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BLANK / checksum-invalid EEPROM does). Confirmed on hardware 2026-08-22.
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`flash_ftdi_eeprom.py` **detects the mirrored/undersized chip and refuses the
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write** — leave it that way. There is no way to program the string on V1; it
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needs a 93LC56B at U7 (a future rev). The board is fully functional without it:
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it enumerates on ROM defaults (`Dual RS232-HS`, `0403:6010`) and iceprog + the
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channel-B UART work normally.
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### Recovery — if U7 ever gets a bad config written (soft-brick)
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Symptom: the FT2232H disappears from USB completely (no `dmesg` on plug) even
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though it's powered (3.3 V on VCC/VPHY/RESET#/DP all present). Fix — the classic
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FTDI EEPROM recovery, done on the V1 unit and confirmed working:
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1. **Power the board on with U7's CLK pin shorted to GND.** This corrupts the
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EEPROM read so the FT2232H can't load the bad config → it enumerates on ROM
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defaults (`0403:6010`).
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2. Release the short and immediately blank U7:
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```bash
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sudo /opt/venv/bin/python hardware/re-bba-rb/flash_ftdi_eeprom.py --erase --commit
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```
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(On the mirrored chip pyftdi's 256-byte verify trips even though the 0xFF
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writes land — the script loops and checks actual content, so ignore the
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per-attempt verify warnings; it reports "fully blank" when done.)
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To restore a saved backup instead, write `eeprom-backup.bin` back as a raw image.
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## Troubleshooting
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- **`/dev/bus/usb` empty / device object is `None`** → the FT2232H isn't on the
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host bus (the container's `/dev/bus/usb` mirrors the host live). On a **native
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Linux host** (e.g. Arch — Docker directly): `lsusb | grep 0403` on the host; if
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missing, re-plug the cable. On a **Windows/WSL2 host**: run
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`.devcontainer/attach-icebreaker.ps1` (admin) and check `usbipd list` shows it
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`Attached`.
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- **Powered but totally silent on plug (no `dmesg` attach at all)** → most likely
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a soft-bricked FT2232H EEPROM (see Step 2 recovery) if the EEPROM was ever
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written; otherwise a severed USB power/data via from the board repair. A blank
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EEPROM does NOT cause this — a *partial* write does.
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- **`Permission denied` / `LIBUSB_ERROR_ACCESS`** → run the command under `sudo`
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(the nodes are root-owned). Both `iceprog` and the pyftdi script need it.
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- **`iceprog` can't find the device but `pyftdi` sees it (or vice-versa)** → a
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kernel driver (`ftdi_sio`) may hold an interface. `iceprog`/`pyftdi` detach it
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automatically under sudo; if stuck, `sudo modprobe -r ftdi_sio` (or re-attach
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the device) and retry.
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- **`iceprog` verify fails / flakey** → the drilled-out-via repair on this V1
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unit may have damaged a flash/CDONE/CRESET trace; check continuity of the SPI
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flash lines and CRESET_B/CDONE to the FPGA before assuming gateware fault.
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- **FPGA boots but the GC won't enumerate the BBA** → this is a *timing* seed
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issue, not a flash issue. Re-flash the reported **best passing** seed (the
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capture domain fails on ~half of seeds). See CLAUDE.md "Current Implementation
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State".
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## Guardrails
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- **Do NOT program the EEPROM string on V1 — it soft-bricks the FT2232H** (U7 is
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an undersized 93LC46B; see Step 2). The script refuses by design; do not
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`--force` it. Recovery is CLK-to-GND at boot + `--erase`.
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- **Never change VID/PID** in the EEPROM — `iceprog` and D2XX look for
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`0403:6010`. The script/conf keep it; don't override.
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- **Always flash the swept best-seed** `.bin`, never a no-`--seeds` seed-1 build
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(capture timing fails on it).
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- A **blank** EEPROM is the correct, working state on V1; only a *partial* write
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is dangerous.
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