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dbbcf1a | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 | """Render paper figures and tables directly from the public numerical ledger."""
from pathlib import Path
import json
import matplotlib
matplotlib.use('Agg')
import matplotlib.pyplot as plt
ROOT=Path(__file__).resolve().parents[1]
rows=json.loads((ROOT/'results/processed/runs.json').read_text())['runs']
labels={
'ornith-normal-thinking-repair':'Ornith normal',
'ornith-uncensored-thinking-repair':'Ornith abliterated',
'coder390-none-0-repair':'Coder390: none / b11036',
'coder390-mtp-4-repair':'Coder390: MTP4 / b11036',
'coder390-mtp-4-wired-repair':'Coder390: MTP4 / residency',
'coder390-mtp-4-b11538-repair':'Coder390: MTP4 / b11538',
'coder390-dflash-0-repair':'Coder390: DFlash2 / Splash',
'fable-mtp-4-repair':'Fable: MTP4 / b11036',
'fable-mtp-2-b11538-repair':'Fable: MTP2 / b11538',
'fable-none-0-b11538-repair':'Fable: none / b11538'}
order=list(labels);byid={r['run_id']:r for r in rows};ordered=[byid[n] for n in order]
plt.rcParams.update({'font.size':9,'axes.spines.top':False,'axes.spines.right':False,'pdf.fonttype':42})
fig,ax=plt.subplots(figsize=(8.6,4.4))
colors=['#1f4e79' if r['run_id'].startswith('ornith') else '#b7443d' if not r['completed'] else '#cb983b' for r in ordered]
y=list(range(len(ordered)));ax.barh(y,[r['elapsed_s'] for r in ordered],color=colors)
ax.set_yticks(y,[labels[r['run_id']] for r in ordered]);ax.invert_yaxis();ax.set_xlabel('Whole-task elapsed (seconds)');ax.set_xlim(0,1080)
for i,r in enumerate(ordered):ax.text(r['elapsed_s']+10,i,f"{r['elapsed_s']:.0f}s"+(' · timeout' if not r['completed'] else ''),va='center',fontsize=8)
ax.axvline(900,color='#777',linestyle='--',linewidth=.8);fig.tight_layout();fig.savefig(ROOT/'paper/figures/task-wall.pdf');fig.savefig(ROOT/'paper/figures/task-wall.png',dpi=180);plt.close(fig)
completed=[r for r in ordered if r['completed']]
fig,ax=plt.subplots(figsize=(8.6,3.3));positions=list(range(len(completed)));width=.36
ax.bar([p-width/2 for p in positions],[r['visible_stream_tps'] for r in completed],width,label='Visible streaming',color='#1f4e79')
ax.bar([p+width/2 for p in positions],[r['visible_cycle_tps'] for r in completed],width,label='Visible / full final-cycle time',color='#cb983b')
ax.set_xticks(positions,[labels[r['run_id']].replace(': ','\n') for r in completed],fontsize=8)
ax.set_ylabel('Visible tokens/s');ax.axhline(20,color='#777',linestyle='--',linewidth=.8);ax.legend(frameon=False);fig.tight_layout();fig.savefig(ROOT/'paper/figures/visible-rates.pdf');fig.savefig(ROOT/'paper/figures/visible-rates.png',dpi=180);plt.close(fig)
with (ROOT/'paper/results-table.tex').open('w') as f:
for r in ordered:
elapsed=f"{r['elapsed_s']:.2f}"
stream=f"{r['visible_stream_tps']:.2f}" if r['visible_stream_tps'] is not None else '--'
cycle=f"{r['visible_cycle_tps']:.2f}" if r['visible_cycle_tps'] is not None else '--'
outcome='Pass' if r['repair_verified'] and r['completed'] else 'Timeout'
name=labels[r['run_id']].replace('/','/')
f.write(f'{name} & {elapsed} & {r["initial_ttft_s"]:.2f} & {stream} & {cycle} & {outcome}\\\\\n')
with (ROOT/'paper/results-table.tex').open('a') as f:f.write('\\bottomrule\n')
print('Rendered two figures and numerical table from all ten runs.')
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