src/player/decode.s parses DLX1 and decodes straight into GVRAM. Verified pixel-exact over a 120-frame sequential run of the worst sustained window on the disc -- all four block modes, full temporal recursion, so the last frame is only right if all 120 were. In check.sh. It costs a mean of 81.7% of a 12fps frame budget, and 31% of frames exceed 100% (42% at scsi). CPU is now the binding constraint. FINDINGS 28. Three things that were believed and are not true: - The dual-display-path plan of FINDINGS 24.5/25.6 is incoherent. The compose path needs a RAM copy of the previous reconstruction; the direct path's selling point is that it keeps none. Mixing them shows stale pixels on 70 of 120 frames, worst frame 18.8% of the screen. Every coherent repair is dearer than not mixing, and 24.5's two figures were both copies with no decode in either, so there was never a crossover to find. One path ships, and the 96KB reference frame is gone. tools/analysis/10_pathmix_drift.py keeps the counterexample runnable; check.sh asserts it still reproduces. - The four block modes do not cost the same. V1 300, V4 448, RAW 400 cycles against the old model's flat 207.8. V4 is 25% of blocks and 50% of the cycles, and the mode decision charges it bytes it does not charge cycles for. tools/analysis/11_cpu_budget.py reproduces all four frames timed on the 68000 to within 1 point. Hand-derived timings agree to 0.5% on V1. - The container is big-endian but not aligned. Variable-length records laid end to end put frame 1's length field at an odd address, and move.l (a0)+ there is an address error: frame 0 decoded perfectly and then vectored into the IPL for 59 emulated seconds looking like a hang. Found by dumping PC, not by reading the source. Also: an all-V1 frame, the cheapest possible full redraw, is 110.5% of budget. No mode assignment fits a scene cut at 12fps. That one needs a decision, not a measurement. Next: charge cycles in the mode decision and bisect against 833,333 per frame, the way session 6 bisects lam against bytes -- but with no bucket, because a late frame cannot be banked. Claude-Session: https://claude.ai/code/session_01194oWYW8DQXK1SZ2DnChW6
74 lines
3.7 KiB
Bash
Executable File
74 lines
3.7 KiB
Bash
Executable File
#!/bin/bash
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# Green-light check: re-runs both display regression tests AND the rate-control
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# drift test, from the Blu-ray. ~2 min. Run from the repo root. Any non-zero
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# exit means something drifted.
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set -e
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cd "$(dirname "$0")/../.."
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[ -d /media/reala-misaki/BDROM ] || {
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echo "Blu-ray not mounted. udisksctl loop-setup -r -f DRAGONS_LAIR.iso"; exit 2; }
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python3 tools/encoder/extract.py 00020 tmp/fr_00020 12 crop
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mkdir -p tmp/snap_verify tmp/snap256
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run() { # run <script> <snapdir>
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rm -f "tmp/$2/x68000"/*.png
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( cd tmp && SDL_VIDEODRIVER=dummy timeout -k 5 120 mame x68000 -bios ipl10 \
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-video soft -window -sound none -nothrottle -plugins \
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-autoboot_script "../tools/bench/$1" \
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-snapshot_directory "./$2" -snapview native -seconds_to_run 6 >"$2.log" 2>&1 )
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}
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echo "--- session 3: 768-wide IPL timing (FINDINGS 22) ---"
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python3 tools/bench/prep_frame.py tmp/fr_00020 tmp/frame.bin 0
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run show_frame.lua snap_verify
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python3 tools/bench/verify_frame.py
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echo "--- session 4: real 256x256 mode (FINDINGS 23) ---"
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python3 tools/bench/prep_frame.py tmp/fr_00020 tmp/frame256.bin 0 --reserve-black
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run show_frame256.lua snap256
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python3 tools/bench/verify_frame256.py
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echo "--- session 6: rate-control drift (FINDINGS 26/27) ---"
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# The codec is temporally recursive, so a rate controller can report quality for
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# a reconstruction no decoder will ever produce -- silently. This asserts that a
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# decoder replaying the emitted stream rebuilds exactly what the encoder
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# recorded. ~55 s, nearly all of it k-means in H.build.
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[ -d tmp/fr_singe ] || python3 tools/encoder/extract.py 00223 tmp/fr_singe 12 crop 539.4 10.0
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# NOT piped into tail: a pipeline's exit status is the last command's, which
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# would swallow the failure this whole script exists to catch.
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python3 tools/analysis/09_ratectl_drift.py > tmp/drift_check.log 2>&1 \
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|| { cat tmp/drift_check.log; exit 1; }
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tail -9 tmp/drift_check.log
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echo "--- session 7: display-path coherency (FINDINGS 28.1) ---"
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# 10_pathmix_drift.py is a COUNTEREXAMPLE, kept runnable: the dual-path plan of
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# FINDINGS 24.5/25.6 must still be shown to corrupt frames, and the strategy the
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# player actually uses must still be clean. A green light here means the reason
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# decode.s has one display path is still demonstrable, not just asserted.
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python3 tools/analysis/10_pathmix_drift.py > tmp/pathmix.log 2>&1 \
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&& { echo "FAIL: the dual-path plan no longer reproduces its own defect"; \
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cat tmp/pathmix.log; exit 1; }
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grep -a "frames displaying pixels" tmp/pathmix.log
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python3 tools/analysis/10_pathmix_drift.py --fix direct > tmp/pathmix_direct.log 2>&1 \
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|| { echo "FAIL: direct-to-GVRAM is no longer coherent"; cat tmp/pathmix_direct.log; exit 1; }
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echo "--- session 7: 68000 decoder is pixel-exact (FINDINGS 28) ---"
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# The strongest display test in the tree: 120 frames decoded in sequence by
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# 68000 code, every block mode, full temporal recursion. A SKIP block is a claim
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# about the previous frame still being on screen, so the last frame is only
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# right if all 120 were.
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DLX=tmp/rc_fr_singe_sasi_rcprofile.dlx
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[ -f "$DLX" ] || python3 tools/encoder/encode.py tmp/fr_singe "$DLX" --profile sasi
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python3 tools/bench/prep_dlx.py "$DLX" > tmp/prep_dlx.log
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tools/vasm/vasmm68k_mot -Fbin -o tmp/decode.bin src/player/decode.s > /dev/null
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mkdir -p tmp/snap_decode
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rm -f tmp/snap_decode/x68000/*.png
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( cd tmp && DLX_VERIFY_ONLY=1 SDL_VIDEODRIVER=dummy timeout -k 5 300 mame x68000 \
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-bios ipl10 -ramsize 2M -video soft -window -sound none -nothrottle -plugins \
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-autoboot_script ../tools/bench/decode.lua \
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-snapshot_directory ./snap_decode -snapview native -seconds_to_run 20 \
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> decode_check.log 2>&1 )
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python3 tools/bench/verify_decode.py "$DLX"
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echo "ALL GREEN"
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