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- LIGHTBURN.md: mandatory "Before you cut" safety section; the walkthrough now reflects the firing machine (dry runs need the layer output off or M5; live first-cut instructions); the homing entry documents homing_mode and the gfcloud method; the machine address is a placeholder. - README.md: condensed safety section linking the full text and the regulatory notes. - INSTALL.md: "Regulatory and legal" section ahead of the install steps; routine updates route through the panel updater rather than the installer. - BRINGUP.md: the release signing key is described as held offline (no on-disk path); bench address and credential notes removed; Next-work item 7 corrected (the installer embeds the production release key); status entry for audit remediation Phases 0-1; the GATE A kernel drills join the pending image-flash checklist. - bench scripts: the target host comes from GF_HOST (or argv) instead of a hardcoded address. - laser_stream_test.py: per-session controller runs with a hermetic cooling-verdict publisher; new assertions that every stream terminates with FIRE clear (including M3 held to stream end) and that no FIRE bit rides a zero-step gap; a cycle-churn session exercises the stop/start seams. Audit findings D-1, D-2, D-3, D-5, D-10, D-12, B-10, and the harness half of D-4/G-1.
98 lines
2.9 KiB
Python
98 lines
2.9 KiB
Python
#!/usr/bin/env python3
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"""Sustained-load test for periodic flow re-checks.
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Question: what does repeated interrogation cost thermally over a long
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job, and does the loop reach equilibrium or climb without bound? Runs
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the driver's real check cadence (M8 held for the duration) with the
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cut-profile fans, logging bulk coolant temperature and every verdict.
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Usage: flow_sustained.py [minutes] (default 30)
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"""
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import math
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import os
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import re
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import socket
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import subprocess
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import sys
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import time
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HOST = os.environ.get('GF_HOST')
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if not HOST:
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raise SystemExit('set GF_HOST to the machine IP address')
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F = 1024.0 * 1.3
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RD, BETA = 10000.0, 3380.0
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RINF = 10000.0 * math.exp(-3380.0 / 298.15)
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def degc(raw):
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r = RD / (F / float(raw) - 1.0)
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return BETA / math.log(r / RINF) - 273.15
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def board(cmd):
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r = subprocess.run(['wsl', '-d', 'forge-yocto', '--', 'ssh',
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'-o', 'PreferredAuthentications=none',
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'root@' + HOST, cmd],
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capture_output=True, text=True, timeout=30)
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return r.stdout.strip()
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def temps():
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o = board('cat /sys/glowforge/pic/water_temp_1 /sys/glowforge/pic/water_temp_2').split()
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return degc(o[0]), degc(o[1])
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minutes = float(sys.argv[1]) if len(sys.argv) > 1 else 30
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s = socket.create_connection((HOST, 23), timeout=5)
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s.settimeout(0.3)
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time.sleep(0.5)
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try:
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while s.recv(4096):
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pass
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except socket.timeout:
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pass
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d0, u0 = temps()
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print('start: down=%.2f up=%.2f running M8 for %.0f min' % (d0, u0, minutes))
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s.sendall(b'M8\n')
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t0 = time.time()
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verdicts = []
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peak_up = u0
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buf = ''
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while time.time() - t0 < minutes * 60:
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try:
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buf += s.recv(4096).decode('ascii', 'replace')
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except socket.timeout:
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pass
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for line in buf.split('\n'):
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if 'flow' in line and ('verified' in line or 'FAULT' in line):
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m = re.search(r'rise ([\d.]+) C', line)
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if m and (not verdicts or verdicts[-1][1] != float(m.group(1))):
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el = (time.time() - t0) / 60
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verdicts.append((el, float(m.group(1)), 'FAULT' in line))
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d, u = temps()
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peak_up = max(peak_up, u)
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print(' %5.1f min rise=%5.2f %-8s loop down=%.2f up=%.2f (%+.2f from start)'
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% (el, float(m.group(1)), 'FAULT' if 'FAULT' in line else 'ok', d, u, u - u0),
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flush=True)
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buf = buf[-2000:]
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time.sleep(5)
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s.sendall(b'M9\n')
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time.sleep(1)
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s.close()
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d, u = temps()
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print()
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print('checks run: %d over %.0f min' % (len(verdicts), minutes))
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if verdicts:
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rises = [v[1] for v in verdicts]
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print('rise values: min=%.2f max=%.2f mean=%.2f (threshold 13.7)'
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% (min(rises), max(rises), sum(rises) / len(rises)))
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print('false faults: %d' % sum(1 for v in verdicts if v[2]))
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print('loop temperature: start %.2f -> end %.2f (%+.2f C), peak %.2f'
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% (u0, u, u - u0, peak_up))
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print('cadence: %.1f min between checks' % (minutes / max(1, len(verdicts))))
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