# FPGA-Neural — project instructions for Claude Code Hardware neural accelerator for a custom PCB: bare **Xilinx XC7A100T-CSG324-2** (Artix-7) chip + real DDR3, designed and assembled by the user themselves — never a Digilent/dev-board purchase. An ESP32 is the host/central processor, talking to the FPGA over a dedicated SPI bus (FPGA is slave there) and, via the FPGA, through to a separate config flash used only for FPGA bootstrapping (FPGA is master on that second, physically distinct SPI bus). Active branch: **`v3-artix7`**. `hardware/v3/` is the current, real target. `hardware/v2/` is the archived ECP5 baseline (frozen, DSP-count-limited, superseded — do not build on it, some of its RTL is still *reused* unmodified by v3, e.g. `layer_prefetch_ctrl.v`/`layer_weight_buffer.v`). `hardware/v1/` is older still, reference only. ## Read first - `docs/PHYSICAL_REALIZATION.md` — every real pin assignment, part number, timing number, and memory-layout convention needed for the physical board and for host (ESP32) firmware. Keep it in sync with reality — if a pin assignment or timing number changes, update this file in the same commit. - `docs/ARCHITECTURE_ANALYSIS.md` — real, measured bottleneck analysis (DDR3 bandwidth is the real ceiling, not DSP count — see it before proposing to scale core count) and ranked recommended interventions. Update it whenever a recommendation from it gets built or a new real bottleneck is found. - `hardware/v2/logs/experiments.log` — the real project history, one `EXP-NNNN` entry per real experiment/change (context/method/result/ decision/next_action). Read the tail before starting new work; append a new entry for anything non-trivial you do. This log — not memory, not chat history — is the authoritative record of what's been tried and why. ## Toolchains (real paths, already working — don't re-diagnose from scratch) - **Vivado 2026.1**: `source /home/michele/tools_cache/Xilinx/2026.1/Vivado/settings64.sh`, then `export LD_LIBRARY_PATH="/home/michele/tools_cache/Xilinx/2026.1/Vivado/lib/lnx64.o/Ubuntu/24:$LD_LIBRARY_PATH"` (this machine's Ubuntu is too new for Vivado's own OS detection; the LD_LIBRARY_PATH points at Vivado's own bundled compat libs — not a real distro package, must be set every session). - **OSS CAD Suite** (iverilog/vvp for fast plain-Verilog sims, no Xilinx primitives): `source /home/michele/tools_cache/oss-cad-suite/environment`. - Real Vivado project: `Vivado/NeuralProcessor/NeuralProcessor.xpr` — the MIG DDR3 IP lives there, real, already generated for the exact part. ## Hard-won lessons (do not re-derive these the slow way) - **Vivado's imported source copies go stale silently.** If a project file under `NeuralProcessor.srcs/sources_1/imports/...` was ever edited on disk *after* being added to the project, diff it against the live `hardware/v3/...` source before trusting any P&R result — `add_files`/ `update_compile_order` do NOT auto-refresh it, and a stale copy produces no error, just silently wrong (old) synthesis results (EXP-0078). Prefer adding new files so they stay a direct reference (check `IS_GLOBAL_INCLUDE`/ the file's own path isn't under `imports/`) rather than get copied. - **Testbench stimulus must use nonblocking assignment (`<=`), not blocking (`=`), when driving a DUT's inputs from a separate `always`/`initial` block.** Blocking assignment races the DUT's own `posedge`-triggered always block under Icarus and can silently corrupt data OR miss a one-shot pulse entirely (causing a real hang) — hit and fixed repeatedly (EXP-0073, 0075, 0077) before this became standing practice. If a new Icarus testbench shows shuffled/duplicated fields or an inexplicable hang, suspect this class of bug before assuming the RTL is wrong. - **Never use a runtime-indexed part-select** (`data[idx*W +: W]` where `idx` is a signal, not a constant) on a wide bus in anything synthesizable — a known real Fmax killer (`weight_tile_gather.v`'s own header, EXP-0061). Use fixed shift-concat, or (as `act_tile_fetch.v` does, EXP-0079) design the memory layout so only a fixed slice is ever needed. The current real P&R timing margin is thin (WNS +0.013ns, EXP-0078) — there is no slack to absorb a new critical path. - **A one-shot-pulse requester on a shared/arbitrated bus must see its own grant the SAME cycle its own `active` signal first asserts** — a registered/one-cycle-late grant silently loses the request forever (EXP-0066's own real bug, now a standing design rule for every arbiter/ requester pair in this project). - **`xvlog`/`iverilog` need `-sv`/`-g2012`** respectively to accept SystemVerilog-only syntax (e.g. `'0`) even in a plain `.v` file — prefer just not using SV-only syntax in synthesizable RTL (Vivado's `synth_design` has no such escape hatch at all). - **Verify real component availability (LCSC) before committing to a part** — the user has asked for this explicitly more than once. Don't guess availability or specs from training data; search when it matters. - **Real, measured numbers only — never estimate/guess a timing or performance figure and present it as fact.** Out-of-context synthesis is not a real signoff; only a real in-context `place_design`/`route_design` run on the actual top-level module counts. If a number is a projection (not measured), say so explicitly and show the real numbers it's built from. ## Working discipline - Fork before promote: don't edit an already-verified, in-use RTL file in place for a new experiment — copy/fork it, verify the fork, then decide whether to promote it. (Established V2-era convention, still followed in V3.) - One variable at a time: verify a new module in isolation before wiring it into a larger system; verify the larger system before trusting a P&R number built on top of it. - Root-cause every anomaly via hierarchical signal tracing — never guess or paper over an unexplained result. Several real bugs in this project were found exactly this way, not by inspection. - After ANY RTL change to logic that's part of the real synthesis target (`hardware/v3/rtl/n2_system_ddr3_top.v` and its dependents), re-run a real P&R before claiming it's still timing-clean — the margin is thin enough that this is not optional caution, it's load-bearing. - Commit messages end with the attribution lines already configured for this session (Co-Authored-By + Claude-Session) — keep using them.