hardware/v1/ was created (dc0b331) as a frozen snapshot of the V1
project that then lived at the repo root (rtl/, sim/, synth/, tools/,
docs/). Root received zero further commits to those files after the
freeze -- confirmed byte-identical to the hardware/v1/ copy for every
file removed here. Root was the "before", hardware/v1/ is the
curated, canonical "after".
Removed (all verified exact-hash duplicates of hardware/v1/ content):
- rtl/ (20 files, 100% covered by hardware/v1/rtl/)
- tools/{netasm,pinout,run_regression.py,flash_catalog,validation,
fpga_benchmark.py} (19 files, 100% covered by hardware/v1/tools/;
tools/neural_sim/ kept -- unique, post-freeze, no counterpart)
- sim/*.v (47 testbenches, 100% covered by hardware/v1/sim/; the
~38 remaining sim/ entries are compiled binaries and .vcd
waveform dumps, left as a separate cleanup decision)
- synth/ecp5/{p2,p4,p8,post_fix_verify} (25 files, exact duplicates
of hardware/v1/synthesis/; the other ~84 synth/ecp5/* experiment
build directories are historical artifacts never carried into the
freeze, left as a separate decision)
- WORKLOG.md (duplicate of hardware/v1/docs/WORKLOG.md)
- docs/{FPGA-Neural-Datapatch-Benchmark,FPGA-Neural-Hardware-Design,
FPGA-NeuralNetwork-Engine}.md, docs/validation/*.md (18 files),
docs/FPGA-Neural-Datasheet-{EN,IT}.pdf -- all exact duplicates of
hardware/v1/docs/ content
- hardware/v1/docs/DatasheetLatex/ (24 files) -- exact duplicate of
hardware/v2/docs/datasheet/files/docs/datasheet/en/ (discovered
during this audit; not the same DatasheetLatex already removed
from hardware/v2/docs/ in an earlier commit)
Moved (genuine, unique, post-freeze V2 content -- not duplicated
anywhere, just living in the wrong/legacy root docs/ location):
- docs/architecture/*.md -> hardware/v2/docs/architecture/
- docs/pinouts.md, docs/FPGA_NEURAL_V2_DATASHEET.md,
docs/FPGA_NEURAL_V2_SCHEMATIC.md,
docs/FPGA-Neural-V2-Datasheet-EN.pdf -> hardware/v2/docs/
Left untouched (separate decisions, not part of this cleanup):
- docs/FPGA-Neural-Flash-Subsystem-Verification.md, docs/
v2-description.md -- orphaned root-only content, no duplicate
found anywhere, but also not part of the reviewed plan
- synth/ecp5/* experiment dirs and sim/*_sim + sim/*.vcd build
artifacts -- not literal duplicates, flagged as candidates for a
future, separate cleanup pass
Verified no functional breakage: grepped all remaining scripts/docs
for references to every removed path -- only prose/comment mentions
found, no executable imports or build-script paths broken.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_013xXuuRUWZScuo1DeYJxs3v
93 lines
4.3 KiB
Markdown
93 lines
4.3 KiB
Markdown
# NMS Activation Fill Controller Timing (STEP14 Part B)
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Status: fixed, real post-P&R verified, bit-exact, adopted. Full data:
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`hardware/v2/reports/step14_activation_timing.csv`. Full narrative:
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`hardware/v2/logs/experiments.log` (EXP-0029, 0030, 0031),
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`decisions.log` (DEC-0026, DEC-0027).
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## B1 — Exact critical path (not assumed)
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Mined directly from the real nextpnr-ecp5 P&R report for
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`nms_neural_multiprocessor_stream.v` at N_SLOTS=4
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(Fmax=55.22 MHz, FAIL @ 80 MHz). Full path, 18.11 ns total (6.25 ns
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logic + 11.85 ns routing):
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```
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SOURCE: u_act_fill.resident_tag[11] (register Q)
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-> COMBINATIONAL, chained, NO register in between:
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(1) max_n_tiles computation, nms_activation_fill_ctrl.v:92
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(N_SLOTS-wide running-max fold, each iteration gated by a
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23-bit tag-equality check) -- long CCU2C carry chain
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(2) resident_count < max_n_tiles comparison, line 165
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(the ST_IDLE refill/continue decision) -- ANOTHER 16-bit
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magnitude-comparison carry chain, feeding directly off (1)
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in the SAME cycle
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(3) into pf_start's own next-state logic
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DESTINATION: u_act_fill.pf_addr's clock-enable (CE) pin
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```
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Two full 16-bit magnitude comparisons sit in **one** combinational
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cone across **one** clock edge. This confirms, at the exact RTL-line
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level, the failure class DEC-0016/EXP-0022 predicted analytically
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("O(N_SLOTS) unpipelined combinational scan feeding directly into a
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control decision") — but precisely localizes it to the comparison
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logic (lines 92 and 165), *not* the priority-encoder
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(`desired_valid`/`desired_x_base`, lines 77-86), which does not appear
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in this critical path at all.
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## B2 — Scaling behavior
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The bottleneck is the `max_n_tiles` running-max fold: an imperative
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`for` loop creates a data dependency between iterations (`max_n_tiles`
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after iteration *i* depends on iteration *i-1*), which Yosys
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synthesizes as a sequentially-chained carry structure — inherently
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O(N_SLOTS) deep, not O(log N_SLOTS). At N_SLOTS=4 the chain reached
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6.25 ns logic + 11.85 ns routing; at N_SLOTS=8 it doubles again (see
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below).
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## B3 — Minimum fix (two iterations, evidence-driven)
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**v2** (one pipeline stage: register `max_n_tiles` before its use in
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the `resident_count` comparison): Fmax 55.22 → 72.78 MHz (+31.8%) —
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real improvement, still fails 80 MHz. Re-tracing showed the *remaining*
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critical path was entirely inside `max_n_tiles`'s own computation
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(now feeding its own register), confirming the fix needed to go one
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level deeper.
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**v3** (second stage: register each slot's tag-equality/masking result
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first — independent per-slot work, no N_SLOTS-dependent chain — *then*
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fold the already-registered, already-masked values): Fmax 55.22 →
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**106.81 MHz** (+93.4%). **PASSES** 80 MHz with real margin. Resource
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cost: LUT4 -5.5%, FF +1.4% (2 added pipeline registers), CCU2C
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unchanged.
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## B4 — No serialization reintroduced
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Verified directly: N_SLOTS=2 bit-exact regression test (D-Stress, real
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V1 PSRAM chain) gives **numerically identical** cycle count and
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sustained MAC/cycle before and after the fix (185270/185270 cycles,
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0.1769/0.1769 MAC/cycle). The 3 total cycles of added latency apply
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only to the rare, tile-refill-boundary-only decision — never to the
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real-time per-tile consumption path (already fully decoupled by
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STEP13's own streaming manager). Higher Fmax, zero throughput cost —
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satisfying B4's explicit requirement.
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## N=8 (exploratory)
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`nms_activation_fill_ctrl_v3.v` at N_SLOTS=8: DSP=64/72 (89%, FEASIBLE),
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LUT4=4653, FF=10855 (both comfortably FEASIBLE). **Fmax=52.25 MHz,
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FAILS 80 MHz** — the v3 fix's second stage (the max-fold itself) is
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still O(N_SLOTS)-deep; at N=8 it is twice as deep as at N=4 and becomes
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dominant again. This is expected: v3 shifted the crossover point, it
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did not eliminate the underlying dependency. A genuine balanced-tree
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reduction (or a pipeline scaling with log₂(N_SLOTS) rather than a flat
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2-stage split) would be required for N=8 — not undertaken this round
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(N=8 is explicitly exploratory; the limiting resource (Fmax, not
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DSP/LUT/FF/BRAM) is precisely identified and quantified, per spec).
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## Adoption
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`nms_activation_fill_ctrl_v3.v` is adopted as the reference activation
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fill controller for N_SLOTS≥4 configurations (DEC-0027). The original
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and the insufficient v2 are preserved for reference.
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