The toner report says what is empty now. It could not say what to order, and nothing recorded how fast anything drains - every level read was cached for five minutes and then discarded. Zabbix has been keeping the history all along; we simply never asked. One history.get gives both answers, because a cartridge only goes DOWN while it is in use: a rise is a replacement. Count the rises and you have how many cartridges a printer has been through; fit a slope to the readings SINCE the last rise and you have days-to-empty. Fitting across a replacement averages a spent cartridge with a fresh one and describes neither. Sorted by days left, which is the point. A cartridge at 60% dropping 5% a day needs ordering before one sitting at 8% that has not moved in months, and a level-sorted list ranks those backwards. It refuses to guess. Too few readings, a level that has not moved enough - many printers report in 10% steps and sit on a plateau for a fortnight - or a recent replacement each produce no estimate and say which. Those printers are listed separately rather than sorted in as 0 or as 999, since a printer without an estimate is neither urgent nor safe. Estimates show what they rest on, because "9 days from 21 days of readings" and "9 days from 2 readings" are not the same claim. A separate report card, not an extension of the toner report: that one is an exceptions list a tech acts on today, this is an ordering view read monthly, and the history query is heavier than the live read it would have slowed down. The analysis is pure arithmetic over a list of readings, so the 14 tests cover the noise wobble, the plateau, the swap, junk rows and division by zero without needing Zabbix. Zabbix being unreachable is reported as such rather than rendering an empty table that reads as "nothing is due".
163 lines
5.6 KiB
Python
163 lines
5.6 KiB
Python
"""Read a supply's level history and say what it means.
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Two questions come out of the same series of readings:
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* how fast is it draining, and when does it hit empty
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* how many times has it been replaced
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Both hang on one observation: a cartridge only ever goes DOWN while it is in
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use, so a rise is a replacement. Everything here is built on locating those
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rises and treating each stretch between them as one cartridge's life.
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The maths is deliberately kept away from Zabbix so it can be tested against a
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list of numbers. The service layer fetches; this decides.
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"""
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from datetime import datetime, timezone
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# A reading can wobble by a point without anything happening - SNMP rounding,
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# a gauge settling after a power cycle. A rise has to clear this to count as a
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# new cartridge rather than noise.
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REPLACEMENT_RISE = 10
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# Below this many readings a slope is arithmetic, not evidence. Two points
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# through a coarse gauge can "prove" any rate at all.
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MIN_POINTS_FOR_ESTIMATE = 4
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# Many printers report in 10% steps, so a fortnight can pass on one plateau.
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# Without a minimum observed drop the slope reads as zero and the forecast
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# says "never", which is worse than saying nothing.
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MIN_DROP_FOR_ESTIMATE = 2
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def _asfloat(value):
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try:
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return float(value)
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except (TypeError, ValueError):
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return None
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def normalise(points):
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"""[(clock, value)] -> sorted [(datetime, float)], junk dropped.
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Zabbix returns clock as a unix string and value as a string; a history
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table can also carry the odd unparseable row.
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"""
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out = []
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for clock, value in points:
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seconds = _asfloat(clock)
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level = _asfloat(value)
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if seconds is None or level is None:
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continue
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out.append((datetime.fromtimestamp(seconds, tz=timezone.utc), level))
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out.sort(key=lambda p: p[0])
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return out
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def find_replacements(points, rise=REPLACEMENT_RISE):
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"""Timestamps where the level jumped up - one per cartridge change.
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Returns [] for a series that only falls. A rise smaller than `rise` is
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treated as noise, not a replacement.
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"""
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replacements = []
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for (_, previous), (when, current) in zip(points, points[1:]):
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if current - previous >= rise:
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replacements.append(when)
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return replacements
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def current_run(points, rise=REPLACEMENT_RISE):
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"""The readings since the last replacement.
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Fitting across a replacement averages a spent cartridge with a fresh one
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and produces a slope that describes neither.
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"""
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if not points:
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return []
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start = 0
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for index in range(1, len(points)):
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if points[index][1] - points[index - 1][1] >= rise:
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start = index
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return points[start:]
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def burn_rate(points):
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"""Percent consumed per day over these readings, or None.
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None means "no honest estimate": too few readings, no elapsed time, or a
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drop too small to distinguish from a gauge that has not moved yet.
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"""
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if len(points) < MIN_POINTS_FOR_ESTIMATE:
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return None
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first_when, first_level = points[0]
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last_when, last_level = points[-1]
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days = (last_when - first_when).total_seconds() / 86400
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if days <= 0:
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return None
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drop = first_level - last_level
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if drop < MIN_DROP_FOR_ESTIMATE:
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return None
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return drop / days
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def analyse(points, rise=REPLACEMENT_RISE):
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"""Everything the report needs about one supply.
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Returns:
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currentlevel latest reading, or None
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daysleft at the current rate, or None when there is no estimate
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burnrateperday percent per day, or None
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reason why there is no estimate - shown rather than hidden, so
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a missing forecast is explained instead of looking broken
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replacements how many times it has been changed in this window
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lastreplaced when, or None
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basisdays span of readings the estimate rests on
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points the run since the last replacement, for the chart
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"""
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points = normalise(points)
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result = {
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'currentlevel': None, 'daysleft': None, 'burnrateperday': None,
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'reason': None, 'replacements': 0, 'lastreplaced': None,
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'basisdays': 0, 'points': [],
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}
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if not points:
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result['reason'] = 'no history'
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return result
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replacements = find_replacements(points, rise=rise)
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result['replacements'] = len(replacements)
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result['lastreplaced'] = replacements[-1].isoformat() if replacements else None
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run = current_run(points, rise=rise)
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result['currentlevel'] = run[-1][1]
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result['points'] = [(when.isoformat(), level) for when, level in run]
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if len(run) >= 2:
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result['basisdays'] = round(
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(run[-1][0] - run[0][0]).total_seconds() / 86400, 1)
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rate = burn_rate(run)
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if rate is None:
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# Say which of the three it is; "no estimate" alone invites a bug report.
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if len(run) < MIN_POINTS_FOR_ESTIMATE:
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result['reason'] = ('replaced recently' if replacements
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else 'not enough history yet')
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else:
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result['reason'] = 'level has not moved enough to estimate'
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return result
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result['burnrateperday'] = round(rate, 2)
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result['daysleft'] = max(0, int(run[-1][1] / rate))
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return result
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def soonest(supplies):
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"""Days-left of the supply that runs out first, or None if none estimate.
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The report sorts printers by this: a printer is as urgent as its most
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pressing cartridge, and listing it once per supply would scatter it down
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the page.
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"""
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days = [s['daysleft'] for s in supplies if s.get('daysleft') is not None]
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return min(days) if days else None
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