Compare commits
8 Commits
nilmrun-0.
...
nilmrun-1.
Author | SHA1 | Date | |
---|---|---|---|
b2bdf784ac | |||
e0709f0d17 | |||
18d3cff772 | |||
a7b9656916 | |||
2e9ec63675 | |||
6d295b840a | |||
74a05d05d6 | |||
35b20c90a5 |
@@ -21,13 +21,13 @@ arbitrary commands.
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SSLEngine On
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WSGIScriptAlias /nilmrun /home/nilm/nilmrun.wsgi
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WSGIApplicationGroup nilmrun-appgroup
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WSGIProcessGroup nilmrun-procgroup
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WSGIDaemonProcess nilmrun-procgroup threads=32 user=nilm group=nilm
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<Location /nilmrun>
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WSGIApplicationGroup nilmrun-appgroup
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SSLRequireSSL
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# Access control example:
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<Location /nilmrun>
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SSLRequireSSL
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Order deny,allow
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Deny from all
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Allow from 1.2.3.4
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@@ -1 +0,0 @@
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# Filters
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@@ -1,260 +0,0 @@
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#!/usr/bin/python
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from nilmdb.utils.printf import *
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import nilmdb.client
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import nilmtools.filter
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from nilmdb.utils.time import (timestamp_to_human,
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timestamp_to_seconds,
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seconds_to_timestamp)
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from nilmdb.utils.interval import Interval
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import numpy as np
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import scipy
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import scipy.signal
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from numpy.core.umath_tests import inner1d
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import nilmrun
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from collections import OrderedDict
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class DataError(ValueError):
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pass
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class Data(object):
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def __init__(self, name, url, stream, start, end, columns):
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"""Initialize, get stream info, check columns"""
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self.name = name
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self.url = url
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self.stream = stream
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self.start = start
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self.end = end
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# Get stream info
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self.client = nilmdb.client.numpyclient.NumpyClient(url)
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self.info = nilmtools.filter.get_stream_info(self.client, stream)
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# Build up name => index mapping for the columns
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self.columns = OrderedDict()
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for c in columns:
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if (c['name'] in self.columns.keys() or
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c['index'] in self.columns.values()):
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raise DataError("duplicated columns")
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if (c['index'] < 0 or c['index'] >= self.info.layout_count):
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raise DataError("bad column number")
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self.columns[c['name']] = c['index']
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if not len(self.columns):
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raise DataError("no columns")
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# Count points
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self.count = self.client.stream_count(self.stream, self.start, self.end)
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def __str__(self):
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return sprintf("%-20s: %s%s, %s rows",
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self.name, self.stream, str(self.columns.keys()),
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self.count)
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def fetch(self, min_rows = 10, max_rows = 100000):
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"""Fetch all the data into self.data. This is intended for
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exemplars, and can only handle a relatively small number of
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rows"""
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# Verify count
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if self.count == 0:
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raise DataError("No data in this exemplar!")
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if self.count < min_rows:
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raise DataError("Too few data points: " + str(self.count))
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if self.count > max_rows:
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raise DataError("Too many data points: " + str(self.count))
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# Extract the data
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datagen = self.client.stream_extract_numpy(self.stream,
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self.start, self.end,
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self.info.layout,
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maxrows = self.count)
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self.data = list(datagen)[0]
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# Discard timestamp
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self.data = self.data[:,1:]
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# Subtract the mean from each column
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self.data = self.data - self.data.mean(axis=0)
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# Get scale factors for each column by computing dot product
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# of each column with itself.
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self.scale = inner1d(self.data.T, self.data.T)
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# Ensure a minimum (nonzero) scale and convert to list
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self.scale = np.maximum(self.scale, [1e-9]).tolist()
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def process(main, function, args = None, rows = 200000):
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"""Process through the data; similar to nilmtools.Filter.process_numpy"""
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if args is None:
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args = []
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extractor = main.client.stream_extract_numpy
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old_array = np.array([])
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for new_array in extractor(main.stream, main.start, main.end,
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layout = main.info.layout, maxrows = rows):
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# If we still had old data left, combine it
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if old_array.shape[0] != 0:
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array = np.vstack((old_array, new_array))
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else:
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array = new_array
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# Process it
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processed = function(array, args)
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# Save the unprocessed parts
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if processed >= 0:
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old_array = array[processed:]
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else:
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raise Exception(sprintf("%s return value %s must be >= 0",
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str(function), str(processed)))
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# Warn if there's too much data remaining
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if old_array.shape[0] > 3 * rows:
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printf("warning: %d unprocessed rows in buffer\n",
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old_array.shape[0])
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# Handle leftover data
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if old_array.shape[0] != 0:
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processed = function(array, args)
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def peak_detect(data, delta):
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"""Simple min/max peak detection algorithm, taken from my code
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in the disagg.m from the 10-8-5 paper"""
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mins = [];
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maxs = [];
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cur_min = (None, np.inf)
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cur_max = (None, -np.inf)
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lookformax = False
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for (n, p) in enumerate(data):
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if p > cur_max[1]:
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cur_max = (n, p)
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if p < cur_min[1]:
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cur_min = (n, p)
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if lookformax:
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if p < (cur_max[1] - delta):
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maxs.append(cur_max)
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cur_min = (n, p)
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lookformax = False
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else:
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if p > (cur_min[1] + delta):
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mins.append(cur_min)
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cur_max = (n, p)
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lookformax = True
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return (mins, maxs)
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def match(data, args):
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"""Perform cross-correlation match"""
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( columns, exemplars ) = args
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nrows = data.shape[0]
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# We want at least 10% more points than the widest exemplar.
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widest = max([ x.count for x in exemplars ])
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if (widest * 1.1) > nrows:
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return 0
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# This is how many points we'll consider valid in the
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# cross-correlation.
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valid = nrows + 1 - widest
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matches = []
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# Try matching against each of the exemplars
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for e_num, e in enumerate(exemplars):
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corrs = []
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# Compute cross-correlation for each column
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for c in e.columns:
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a = data[:,columns[c] + 1]
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b = e.data[:,e.columns[c]]
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corr = scipy.signal.fftconvolve(a, np.flipud(b), 'valid')[0:valid]
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# Scale by the norm of the exemplar
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corr = corr / e.scale[columns[c]]
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corrs.append(corr)
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# Find the peaks using the column with the largest amplitude
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biggest = e.scale.index(max(e.scale))
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peaks_minmax = peak_detect(corrs[biggest], 0.1)
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peaks = [ p[0] for p in peaks_minmax[1] ]
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# Now look at every peak
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for p in peaks:
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# Correlation for each column must be close enough to 1.
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for (corr, scale) in zip(corrs, e.scale):
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# The accepted distance from 1 is based on the relative
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# amplitude of the column. Use a linear mapping:
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# scale 1.0 -> distance 0.1
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# scale 0.0 -> distance 1.0
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distance = 1 - 0.9 * (scale / e.scale[biggest])
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if abs(corr[p] - 1) > distance:
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# No match
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break
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else:
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# Successful match
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matches.append((p, e_num))
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# Print matches
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for (point, e_num) in sorted(matches):
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# Ignore matches that showed up at the very tail of the window,
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# and shorten the window accordingly. This is an attempt to avoid
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# problems at chunk boundaries.
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if point > (valid - 50):
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valid -= 50
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break
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print "matched", data[point,0], "exemplar", exemplars[e_num].name
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#from matplotlib import pyplot as p
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#p.plot(data[:,1:3])
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#p.show()
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return max(valid, 0)
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def trainola(conf):
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# Load main stream data
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print "Loading stream data"
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main = Data(None, conf['url'], conf['stream'],
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conf['start'], conf['end'], conf['columns'])
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# Pull in the exemplar data
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exemplars = []
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for n, e in enumerate(conf['exemplars']):
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print sprintf("Loading exemplar %d: %s", n, e['name'])
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ex = Data(e['name'], e['url'], e['stream'],
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e['start'], e['end'], e['columns'])
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ex.fetch()
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exemplars.append(ex)
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# Verify that the exemplar columns are all represented in the main data
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for n, ex in enumerate(exemplars):
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for col in ex.columns:
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if col not in main.columns:
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raise DataError(sprintf("Exemplar %d column %s is not "
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"available in main data", n, col))
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# Process the main data
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process(main, match, (main.columns, exemplars))
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return "done"
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filterfunc = trainola
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def main(argv = None):
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import simplejson as json
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import argparse
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import sys
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parser = argparse.ArgumentParser(
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formatter_class = argparse.RawDescriptionHelpFormatter,
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version = nilmrun.__version__,
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description = """Run Trainola using parameters passed in as
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JSON-formatted data.""")
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parser.add_argument("file", metavar="FILE", nargs="?",
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type=argparse.FileType('r'), default=sys.stdin)
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args = parser.parse_args(argv)
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conf = json.loads(args.file.read())
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result = trainola(conf)
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print json.dumps(result, sort_keys = True, indent = 2 * ' ')
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if __name__ == "__main__":
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main()
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@@ -3,7 +3,7 @@
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from nilmdb.utils.printf import *
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import threading
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import multiprocessing
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import subprocess
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import cStringIO
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import sys
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import os
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@@ -11,8 +11,12 @@ import signal
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import time
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import uuid
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import psutil
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import imp
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import traceback
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import tempfile
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import atexit
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import shutil
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class ProcessError(Exception):
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pass
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class LogReceiver(object):
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"""Spawn a thread that listens to a pipe for log messages,
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@@ -38,9 +42,8 @@ class LogReceiver(object):
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self.log = cStringIO.StringIO()
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class Process(object):
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"""Spawn and manage a process that calls a Python function"""
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def __init__(self, name, function, parameters):
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self.parameters = parameters
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"""Spawn and manage a subprocess, and capture its output."""
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def __init__(self, name, argv, tempfile = None):
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self.start_time = None
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self.name = name
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@@ -48,65 +51,39 @@ class Process(object):
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(rpipe, wpipe) = os.pipe()
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self._log = LogReceiver(rpipe)
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# Start the function in a new process
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self._process = multiprocessing.Process(
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target = self._trampoline, name = name,
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args = (function, rpipe, wpipe, parameters))
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self._process.daemon = True
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self._process.start()
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# Stdin is null
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nullfd = os.open(os.devnull, os.O_RDONLY)
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# Close the writer end of the pipe, get process info
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# Spawn the new process
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try:
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self._process = subprocess.Popen(args = argv, stdin = nullfd,
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stdout = wpipe, stderr = wpipe,
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close_fds = True, cwd = "/tmp")
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except (OSError, TypeError) as e:
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raise ProcessError(str(e))
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finally:
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# Close the FDs we don't need
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os.close(wpipe)
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os.close(nullfd)
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# Get process info
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self.start_time = time.time()
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self.pid = str(uuid.uuid1(self._process.pid or 0))
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def _trampoline(self, func, rpipe, wpipe, param): # pragma: no cover
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# No coverage report for this, because it's executed in a subprocess
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"""Trampoline function to set up stdio and call the real function."""
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# Close the reader end of the pipe
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os.close(rpipe)
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# Like os.close() but ignores errors
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def tryclose(fd):
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try:
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os.close(fd)
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except OSError:
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pass
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# Remap stdio to go to the pipe. We do this at the OS level,
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# replacing FDs, so that future spawned processes do the right thing.
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# stdin
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sys.stdin.close()
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tryclose(0)
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fd = os.open(os.devnull, os.O_RDONLY) # 0
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sys.stdin = os.fdopen(fd, 'r', 0)
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# stdout
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sys.stdout.close()
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tryclose(1)
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fd = os.dup(wpipe) # 1
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sys.stdout = os.fdopen(fd, 'w', 0)
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# stdout
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sys.stderr.close()
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tryclose(2)
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fd = os.dup(wpipe) # 2
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sys.stderr = os.fdopen(fd, 'w', 0)
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# Don't need this extra fd
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os.close(wpipe)
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# Ready to go -- call the function, exit when it's done
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func(param)
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sys.exit(0)
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def _join(self, timeout = 1.0):
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start = time.time()
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while True:
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if self._process.poll() is not None:
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return True
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if (time.time() - start) >= timeout:
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return False
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time.sleep(0.1)
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def terminate(self, timeout = 1.0):
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"""Terminate a process, and all of its children that are in the same
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process group."""
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# First give it some time to die on its own
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self._process.join(timeout)
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if not self.alive:
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if self._join(timeout):
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return True
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def getpgid(pid):
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@@ -126,8 +103,7 @@ class Process(object):
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os.kill(proc.pid, signal.SIGTERM)
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# Wait for it to die again
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self._process.join(timeout)
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if not self.alive:
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if self._join(timeout):
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return True
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# One more try with SIGKILL
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@@ -136,8 +112,7 @@ class Process(object):
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os.kill(proc.pid, signal.SIGKILL)
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# See if it worked
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self._process.join(timeout)
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return not self.alive
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return self._join(timeout)
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def clear_log(self):
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self._log.clear()
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@@ -148,59 +123,19 @@ class Process(object):
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|
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@property
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def alive(self):
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return self._process.is_alive()
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return self._process.poll() is None
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@property
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def exitcode(self):
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return self._process.exitcode
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|
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def _exec_user_code(codeargs): # pragma: no cover (runs in subprocess)
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"""Execute 'code' as if it were placed into a file and executed"""
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(code, args) = codeargs
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# This is split off into a separate function because the Python3
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# syntax of "exec" triggers a SyntaxError in Python2, if it's within
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# a nested function.
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imp.acquire_lock()
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try:
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module = imp.new_module("__main__")
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finally:
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imp.release_lock()
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module.__file__ = "<user-code>"
|
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sys.argv = [''] + args
|
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# Wrap the compile and exec in a try/except so we can format the
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# exception more nicely.
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try:
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codeobj = compile(code, '<user-code>', 'exec',
|
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flags = 0, dont_inherit = 1)
|
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exec(codeobj, module.__dict__, {})
|
||||
except:
|
||||
# Pull out the exception
|
||||
info = sys.exc_info()
|
||||
tblist = traceback.extract_tb(info[2])
|
||||
|
||||
# First entry is probably this code; get rid of it
|
||||
if len(tblist) and tblist[0][2] == '_exec_user_code':
|
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tblist = tblist[1:]
|
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|
||||
# Add the user's source code to every line that's missing it
|
||||
lines = code.splitlines()
|
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for (n, (name, line, func, text)) in enumerate(tblist):
|
||||
if name == '<user-code>' and text is None and line <= len(lines):
|
||||
tblist[n] = (name, line, func, lines[line-1].strip())
|
||||
|
||||
# Print it to stderr in the usual format
|
||||
out = ['Traceback (most recent call last):\n']
|
||||
out.extend(traceback.format_list(tblist))
|
||||
out.extend(traceback.format_exception_only(info[0], info[1]))
|
||||
sys.stderr.write("".join(out))
|
||||
sys.stderr.flush()
|
||||
sys.exit(1)
|
||||
sys.exit(0)
|
||||
return self._process.returncode
|
||||
|
||||
class ProcessManager(object):
|
||||
"""Track and manage a collection of Process objects"""
|
||||
def __init__(self):
|
||||
self.processes = {}
|
||||
self.tmpfiles = {}
|
||||
self.tmpdir = tempfile.mkdtemp(prefix = "nilmrun-usercode-")
|
||||
atexit.register(shutil.rmtree, self.tmpdir)
|
||||
|
||||
def __iter__(self):
|
||||
return iter(self.processes.keys())
|
||||
@@ -208,35 +143,35 @@ class ProcessManager(object):
|
||||
def __getitem__(self, key):
|
||||
return self.processes[key]
|
||||
|
||||
def run_function(self, procname, function, parameters):
|
||||
"""Run a Python function that already exists"""
|
||||
new = Process(procname, function, parameters)
|
||||
self.processes[new.pid] = new
|
||||
return new.pid
|
||||
|
||||
def run_code(self, procname, code, args):
|
||||
"""Evaluate 'code' as if it were placed into a Python file and
|
||||
executed. The arguments will be accessible in the code as
|
||||
sys.argv[1:]."""
|
||||
return self.run_function(procname, _exec_user_code, (code, args))
|
||||
executed. The arguments, which must be strings, will be
|
||||
accessible in the code as sys.argv[1:]."""
|
||||
# The easiest way to do this, by far, is to just write the
|
||||
# code to a file.
|
||||
(fd, path) = tempfile.mkstemp(prefix = "nilmrun-usercode-",
|
||||
suffix = ".py", dir=self.tmpdir)
|
||||
with os.fdopen(fd, 'w') as f:
|
||||
f.write(code)
|
||||
argv = [ sys.executable, "-B", "-s", "-u", path ] + args
|
||||
pid = self.run_command(procname, argv)
|
||||
self.tmpfiles[pid] = path
|
||||
return pid
|
||||
|
||||
def run_command(self, procname, argv):
|
||||
"""Execute a command line program"""
|
||||
def spwan_user_command(argv): # pragma: no cover (runs in subprocess)
|
||||
try:
|
||||
maxfd = os.sysconf("SC_OPEN_MAX")
|
||||
except Exception:
|
||||
maxfd = 256
|
||||
os.closerange(3, maxfd)
|
||||
try:
|
||||
os.chdir("/tmp")
|
||||
except OSError:
|
||||
pass
|
||||
os.execvp(argv[0], argv)
|
||||
return self.run_function(procname, spwan_user_command, argv)
|
||||
new = Process(procname, argv)
|
||||
self.processes[new.pid] = new
|
||||
return new.pid
|
||||
|
||||
def terminate(self, pid):
|
||||
return self.processes[pid].terminate()
|
||||
|
||||
def remove(self, pid):
|
||||
if pid in self.tmpfiles:
|
||||
try:
|
||||
os.unlink(self.tmpfiles[pid])
|
||||
except OSError: # pragma: no cover
|
||||
pass
|
||||
del self.tmpfiles[pid]
|
||||
del self.processes[pid]
|
||||
|
@@ -25,8 +25,7 @@ from nilmdb.server.serverutil import (
|
||||
cherrypy_stop,
|
||||
)
|
||||
import nilmrun
|
||||
import nilmrun.filters.trainola
|
||||
import nilmrun.filters.dummy
|
||||
import nilmrun.testfilter
|
||||
|
||||
# Add CORS_allow tool
|
||||
cherrypy.tools.CORS_allow = cherrypy.Tool('on_start_resource', CORS_allow)
|
||||
@@ -69,7 +68,6 @@ class AppProcess(object):
|
||||
"exitcode": self.manager[pid].exitcode,
|
||||
"name": self.manager[pid].name,
|
||||
"start_time": self.manager[pid].start_time,
|
||||
"parameters": self.manager[pid].parameters,
|
||||
"log": self.manager[pid].log,
|
||||
}
|
||||
|
||||
@@ -117,44 +115,34 @@ class AppRun(object):
|
||||
@cherrypy.expose
|
||||
@cherrypy.tools.json_in()
|
||||
@cherrypy.tools.json_out()
|
||||
@exception_to_httperror(nilmrun.processmanager.ProcessError)
|
||||
@cherrypy.tools.CORS_allow(methods = ["POST"])
|
||||
def command(self, argv):
|
||||
"""Execute an arbitrary program on the server. argv is a
|
||||
list of the program and its arguments: 'argv[0]' is the program
|
||||
and 'argv[1:]' are arguments"""
|
||||
if not isinstance(argv, list):
|
||||
raise cherrypy.HTTPError("400 Bad Request",
|
||||
"argv must be a list of strings")
|
||||
return self.manager.run_command("command", argv)
|
||||
|
||||
# /run/code
|
||||
@cherrypy.expose
|
||||
@cherrypy.tools.json_in()
|
||||
@cherrypy.tools.json_out()
|
||||
@exception_to_httperror(nilmrun.processmanager.ProcessError)
|
||||
@cherrypy.tools.CORS_allow(methods = ["POST"])
|
||||
def code(self, code, args):
|
||||
"""Execute arbitrary Python code. 'code' is a formatted string.
|
||||
It will be run as if it were written into a Python file and
|
||||
executed, with the arguments in 'args' passed on the command line
|
||||
(i.e., they end up in sys.argv[1:])"""
|
||||
executed. 'args' is a list of strings, and they are passed
|
||||
on the command line as additional arguments (i.e., they end up
|
||||
in sys.argv[1:])"""
|
||||
if not isinstance(args, list):
|
||||
raise cherrypy.HTTPError("400 Bad Request",
|
||||
"args must be a list of strings")
|
||||
return self.manager.run_code("usercode", code, args)
|
||||
|
||||
# /run/trainola
|
||||
@cherrypy.expose
|
||||
@cherrypy.tools.json_in()
|
||||
@cherrypy.tools.json_out()
|
||||
@exception_to_httperror(KeyError, ValueError)
|
||||
@cherrypy.tools.CORS_allow(methods = ["POST"])
|
||||
def trainola(self, data):
|
||||
return self.manager.run_function(
|
||||
"trainola", nilmrun.filters.trainola.filterfunc, data)
|
||||
|
||||
# /run/dummy
|
||||
@cherrypy.expose
|
||||
@cherrypy.tools.json_in()
|
||||
@cherrypy.tools.json_out()
|
||||
@exception_to_httperror(KeyError, ValueError)
|
||||
@cherrypy.tools.CORS_allow(methods = ["POST"])
|
||||
def dummy(self, data):
|
||||
return self.manager.run_function(
|
||||
"dummy", nilmrun.filters.dummy.filterfunc, data)
|
||||
|
||||
class Server(object):
|
||||
def __init__(self, host = '127.0.0.1', port = 8080,
|
||||
embedded = True, # hide diagnostics and output, etc
|
||||
|
@@ -6,7 +6,7 @@ import signal
|
||||
import sys
|
||||
|
||||
# This is just for testing the process management.
|
||||
def filterfunc(n):
|
||||
def test(n):
|
||||
n = int(n)
|
||||
if n < 0: # raise an exception
|
||||
raise Exception("test exception")
|
@@ -1,3 +1,3 @@
|
||||
test_client.py
|
||||
test_nilmrun.py
|
||||
|
||||
test_*.py
|
||||
|
@@ -30,6 +30,7 @@ import textwrap
|
||||
from testutil.helpers import *
|
||||
|
||||
testurl = "http://localhost:32181/"
|
||||
#testurl = "http://bucket.mit.edu/nilmrun/"
|
||||
|
||||
def setup_module():
|
||||
global test_server
|
||||
@@ -49,10 +50,10 @@ class TestClient(object):
|
||||
|
||||
def wait_kill(self, client, pid, timeout = 1):
|
||||
time.sleep(timeout)
|
||||
status = client.get("/process/status", { "pid": pid })
|
||||
status = client.get("process/status", { "pid": pid })
|
||||
if not status["alive"]:
|
||||
raise AssertionError("died before we could kill it")
|
||||
status = client.post("/process/remove", { "pid": pid })
|
||||
status = client.post("process/remove", { "pid": pid })
|
||||
if status["alive"]:
|
||||
raise AssertionError("didn't get killed")
|
||||
return status
|
||||
@@ -61,180 +62,46 @@ class TestClient(object):
|
||||
start = time.time()
|
||||
status = None
|
||||
while (time.time() - start) < timeout:
|
||||
status = client.get("/process/status", { "pid": pid })
|
||||
status = client.get("process/status", { "pid": pid })
|
||||
if status["alive"] == False:
|
||||
break
|
||||
else:
|
||||
raise AssertionError("process " + str(pid) + " didn't die in " +
|
||||
str(timeout) + " seconds: " + repr(status))
|
||||
if remove:
|
||||
status = client.post("/process/remove", { "pid": pid })
|
||||
status = client.post("process/remove", { "pid": pid })
|
||||
return status
|
||||
|
||||
def test_client_01_basic(self):
|
||||
client = HTTPClient(baseurl = testurl)
|
||||
version = client.get("/version")
|
||||
version = client.get("version")
|
||||
eq_(distutils.version.LooseVersion(version),
|
||||
distutils.version.LooseVersion(nilmrun.__version__))
|
||||
|
||||
in_("This is NilmRun", client.get("/"))
|
||||
in_("This is NilmRun", client.get(""))
|
||||
|
||||
with assert_raises(ClientError):
|
||||
client.get("/favicon.ico")
|
||||
client.get("favicon.ico")
|
||||
|
||||
def test_client_02_manager(self):
|
||||
client = HTTPClient(baseurl = testurl)
|
||||
|
||||
eq_(client.get("/process/list"), [])
|
||||
eq_(client.get("process/list"), [])
|
||||
|
||||
with assert_raises(ClientError) as e:
|
||||
client.get("/process/status", { "pid": 12345 })
|
||||
client.get("process/status", { "pid": 12345 })
|
||||
in_("No such PID", str(e.exception))
|
||||
with assert_raises(ClientError):
|
||||
client.get("/process/remove", { "pid": 12345 })
|
||||
client.get("process/remove", { "pid": 12345 })
|
||||
in_("No such PID", str(e.exception))
|
||||
|
||||
def test_client_03_process_basic(self):
|
||||
def test_client_03_run_command(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
|
||||
# start dummy filter
|
||||
pid = client.post("/run/dummy", { "data": 30 })
|
||||
eq_(client.get("/process/list"), [pid])
|
||||
time.sleep(1)
|
||||
|
||||
# Verify that status looks OK
|
||||
status = client.get("/process/status", { "pid": pid, "clear": True })
|
||||
for x in [ "pid", "alive", "exitcode", "name",
|
||||
"start_time", "parameters", "log" ]:
|
||||
in_(x, status)
|
||||
in_("dummy 0\ndummy 1\ndummy 2\ndummy 3\n", status["log"])
|
||||
eq_(status["alive"], True)
|
||||
eq_(status["exitcode"], None)
|
||||
|
||||
# Check that the log got cleared
|
||||
status = client.get("/process/status", { "pid": pid })
|
||||
nin_("dummy 0\ndummy 1\ndummy 2\ndummy 3\n", status["log"])
|
||||
|
||||
# See that it ended properly
|
||||
status = self.wait_end(client, pid, remove = False)
|
||||
in_("dummy 27\ndummy 28\ndummy 29\n", status["log"])
|
||||
eq_(status["exitcode"], 0)
|
||||
|
||||
# Remove it
|
||||
killstatus = client.post("/process/remove", { "pid": pid })
|
||||
eq_(status, killstatus)
|
||||
eq_(client.get("/process/list"), [])
|
||||
with assert_raises(ClientError) as e:
|
||||
client.post("/process/remove", { "pid": pid })
|
||||
in_("No such PID", str(e.exception))
|
||||
|
||||
def test_client_04_process_terminate(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
|
||||
# Trigger exception in filter
|
||||
pid = client.post("/run/dummy", { "data": -1 })
|
||||
time.sleep(0.5)
|
||||
status = client.get("/process/status", { "pid": pid })
|
||||
eq_(status["alive"], False)
|
||||
eq_(status["exitcode"], 1)
|
||||
in_("Exception: test exception", status["log"])
|
||||
client.post("/process/remove", { "pid": pid })
|
||||
|
||||
# Kill a running filter by removing it early
|
||||
newpid = client.post("/run/dummy", { "data": 50 })
|
||||
ne_(newpid, pid)
|
||||
time.sleep(0.5)
|
||||
start = time.time()
|
||||
status = client.post("/process/remove", { "pid": newpid })
|
||||
elapsed = time.time() - start
|
||||
# Should have died in slightly over 1 second
|
||||
assert(0.5 < elapsed < 2)
|
||||
eq_(status["alive"], False)
|
||||
ne_(status["exitcode"], 0)
|
||||
|
||||
# No more
|
||||
eq_(client.get("/process/list"), [])
|
||||
|
||||
# Try to remove a running filter that ignored SIGTERM
|
||||
pid = client.post("/run/dummy", { "data": 0 })
|
||||
start = time.time()
|
||||
status = client.post("/process/remove", { "pid": pid })
|
||||
elapsed = time.time() - start
|
||||
# Should have died in slightly over 2 seconds
|
||||
assert(1.5 < elapsed < 3)
|
||||
eq_(status["alive"], False)
|
||||
ne_(status["exitcode"], 0)
|
||||
|
||||
def test_client_05_trainola_simple(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
pid = client.post("/run/trainola", { "data": {} })
|
||||
status = self.wait_end(client, pid, remove = False)
|
||||
ne_(status["exitcode"], 0)
|
||||
status = client.post("/process/remove", { "pid": pid })
|
||||
|
||||
@unittest.skip("needs a running nilmdb")
|
||||
def test_client_06_trainola(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
|
||||
data = { "url": "http://bucket.mit.edu/nilmdb",
|
||||
"stream": "/sharon/prep-a",
|
||||
"start": 1366111383280463,
|
||||
"end": 1366126163457797,
|
||||
"columns": [ { "name": "P1", "index": 0 },
|
||||
{ "name": "Q1", "index": 1 },
|
||||
{ "name": "P3", "index": 2 } ],
|
||||
"exemplars": [
|
||||
{ "name": "Boiler Pump ON",
|
||||
"url": "http://bucket.mit.edu/nilmdb",
|
||||
"stream": "/sharon/prep-a",
|
||||
"start": 1366260494269078,
|
||||
"end": 1366260608185031,
|
||||
"columns": [ { "name": "P1", "index": 0 },
|
||||
{ "name": "Q1", "index": 1 }
|
||||
]
|
||||
},
|
||||
{ "name": "Boiler Pump OFF",
|
||||
"url": "http://bucket.mit.edu/nilmdb",
|
||||
"stream": "/sharon/prep-a",
|
||||
"start": 1366260864215764,
|
||||
"end": 1366260870882998,
|
||||
"columns": [ { "name": "P1", "index": 0 },
|
||||
{ "name": "Q1", "index": 1 }
|
||||
]
|
||||
}
|
||||
]
|
||||
}
|
||||
|
||||
# start trainola
|
||||
pid = client.post("/run/trainola", { "data": data })
|
||||
|
||||
# wait for it to finish
|
||||
for i in range(60):
|
||||
time.sleep(1)
|
||||
if i == 2:
|
||||
status = client.get("/process/status", { "pid": pid,
|
||||
"clear": True })
|
||||
in_("Loading stream data", status['log'])
|
||||
elif i == 3:
|
||||
status = client.get("/process/status", { "pid": pid })
|
||||
nin_("Loading stream data", status['log'])
|
||||
else:
|
||||
status = client.get("/process/status", { "pid": pid })
|
||||
if status["alive"] == False:
|
||||
break
|
||||
else:
|
||||
client.post("/process/remove", {"pid": pid })
|
||||
raise AssertionError("took too long")
|
||||
if i < 3:
|
||||
raise AssertionError("too fast?")
|
||||
|
||||
def test_client_07_run_command(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
eq_(client.get("/process/list"), [])
|
||||
eq_(client.get("process/list"), [])
|
||||
|
||||
def do(argv, kill):
|
||||
pid = client.post("/run/command", { "argv": argv } )
|
||||
eq_(client.get("/process/list"), [pid])
|
||||
pid = client.post("run/command", { "argv": argv } )
|
||||
eq_(client.get("process/list"), [pid])
|
||||
if kill:
|
||||
return self.wait_kill(client, pid)
|
||||
return self.wait_end(client, pid)
|
||||
@@ -250,26 +117,153 @@ class TestClient(object):
|
||||
eq_("3\n", status["log"])
|
||||
|
||||
# Missing command
|
||||
status = do(["/no-such-command-blah-blah"], False)
|
||||
ne_(status["exitcode"], 0)
|
||||
with assert_raises(ClientError) as e:
|
||||
do(["/no-such-command-blah-blah"], False)
|
||||
in_("No such file or directory", str(e.exception))
|
||||
|
||||
# Kill a slow command
|
||||
status = do(["sleep", "60"], True)
|
||||
ne_(status["exitcode"], 0)
|
||||
|
||||
def test_client_08_run_code(self):
|
||||
def _run_testfilter(self, client, args):
|
||||
code = textwrap.dedent("""
|
||||
import nilmrun.testfilter
|
||||
import simplejson as json
|
||||
import sys
|
||||
nilmrun.testfilter.test(json.loads(sys.argv[1]))
|
||||
""")
|
||||
jsonargs = json.dumps(args)
|
||||
return client.post("run/code", { "code": code, "args": [ jsonargs ] })
|
||||
|
||||
def test_client_04_process_basic(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
eq_(client.get("/process/list"), [])
|
||||
|
||||
# start dummy filter
|
||||
pid = self._run_testfilter(client, 30)
|
||||
eq_(client.get("process/list"), [pid])
|
||||
time.sleep(1)
|
||||
|
||||
# Verify that status looks OK
|
||||
status = client.get("process/status", { "pid": pid, "clear": True })
|
||||
for x in [ "pid", "alive", "exitcode", "name", "start_time", "log" ]:
|
||||
in_(x, status)
|
||||
in_("dummy 0\ndummy 1\ndummy 2\ndummy 3\n", status["log"])
|
||||
eq_(status["alive"], True)
|
||||
eq_(status["exitcode"], None)
|
||||
|
||||
# Check that the log got cleared
|
||||
status = client.get("process/status", { "pid": pid })
|
||||
nin_("dummy 0\ndummy 1\ndummy 2\ndummy 3\n", status["log"])
|
||||
|
||||
# See that it ended properly
|
||||
status = self.wait_end(client, pid, remove = False)
|
||||
in_("dummy 27\ndummy 28\ndummy 29\n", status["log"])
|
||||
eq_(status["exitcode"], 0)
|
||||
|
||||
# Remove it
|
||||
killstatus = client.post("process/remove", { "pid": pid })
|
||||
eq_(status, killstatus)
|
||||
eq_(client.get("process/list"), [])
|
||||
with assert_raises(ClientError) as e:
|
||||
client.post("process/remove", { "pid": pid })
|
||||
in_("No such PID", str(e.exception))
|
||||
|
||||
def test_client_05_process_terminate(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
|
||||
# Trigger exception in filter
|
||||
pid = self._run_testfilter(client, -1)
|
||||
time.sleep(0.5)
|
||||
status = client.get("process/status", { "pid": pid })
|
||||
eq_(status["alive"], False)
|
||||
eq_(status["exitcode"], 1)
|
||||
in_("Exception: test exception", status["log"])
|
||||
client.post("process/remove", { "pid": pid })
|
||||
|
||||
# Kill a running filter by removing it early
|
||||
newpid = self._run_testfilter(client, 50)
|
||||
ne_(newpid, pid)
|
||||
time.sleep(0.5)
|
||||
start = time.time()
|
||||
status = client.post("process/remove", { "pid": newpid })
|
||||
elapsed = time.time() - start
|
||||
# Should have died in slightly over 1 second
|
||||
assert(0.5 < elapsed < 2)
|
||||
eq_(status["alive"], False)
|
||||
ne_(status["exitcode"], 0)
|
||||
|
||||
# No more
|
||||
eq_(client.get("process/list"), [])
|
||||
|
||||
# Try to remove a running filter that ignored SIGTERM
|
||||
pid = self._run_testfilter(client, 0)
|
||||
start = time.time()
|
||||
status = client.post("process/remove", { "pid": pid })
|
||||
elapsed = time.time() - start
|
||||
# Should have died in slightly over 2 seconds
|
||||
assert(1.5 < elapsed < 3)
|
||||
eq_(status["alive"], False)
|
||||
ne_(status["exitcode"], 0)
|
||||
|
||||
@unittest.skip("needs a running nilmdb; trainola moved to nilmtools")
|
||||
def test_client_06_trainola(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
data = { "url": "http://bucket.mit.edu/nilmdb",
|
||||
"dest_stream": "/sharon/prep-a-matches",
|
||||
"stream": "/sharon/prep-a",
|
||||
"start": 1366111383280463,
|
||||
"end": 1366126163457797,
|
||||
"columns": [ { "name": "P1", "index": 0 },
|
||||
{ "name": "Q1", "index": 1 },
|
||||
{ "name": "P3", "index": 2 } ],
|
||||
"exemplars": [
|
||||
{ "name": "Boiler Pump ON",
|
||||
"url": "http://bucket.mit.edu/nilmdb",
|
||||
"stream": "/sharon/prep-a",
|
||||
"start": 1366260494269078,
|
||||
"end": 1366260608185031,
|
||||
"dest_column": 0,
|
||||
"columns": [ { "name": "P1", "index": 0 },
|
||||
{ "name": "Q1", "index": 1 }
|
||||
]
|
||||
},
|
||||
{ "name": "Boiler Pump OFF",
|
||||
"url": "http://bucket.mit.edu/nilmdb",
|
||||
"stream": "/sharon/prep-a",
|
||||
"start": 1366260864215764,
|
||||
"end": 1366260870882998,
|
||||
"dest_column": 1,
|
||||
"columns": [ { "name": "P1", "index": 0 },
|
||||
{ "name": "Q1", "index": 1 }
|
||||
]
|
||||
}
|
||||
]
|
||||
}
|
||||
pid = client.post("run/code", { "code": "import nilmtools.trainola\n" +
|
||||
"nilmtools.trainola.main()",
|
||||
"args": [ data ] })
|
||||
while True:
|
||||
status = client.get("process/status", { "pid": pid, "clear": 1 })
|
||||
sys.stdout.write(status["log"])
|
||||
sys.stdout.flush()
|
||||
if status["alive"] == False:
|
||||
break
|
||||
status = client.post("process/remove", { "pid": pid })
|
||||
os._exit(int(status["exitcode"]))
|
||||
|
||||
def test_client_07_run_code(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
eq_(client.get("process/list"), [])
|
||||
|
||||
def do(code, args, kill):
|
||||
pid = client.post("/run/code", { "code": code, "args": args } )
|
||||
eq_(client.get("/process/list"), [pid])
|
||||
pid = client.post("run/code", { "code": code, "args": args } )
|
||||
eq_(client.get("process/list"), [pid])
|
||||
if kill:
|
||||
return self.wait_kill(client, pid)
|
||||
return self.wait_end(client, pid)
|
||||
|
||||
# basic code snippet
|
||||
code=textwrap.dedent("""
|
||||
code = textwrap.dedent("""
|
||||
print 'hello'
|
||||
def foo(arg):
|
||||
print 'world'
|
||||
@@ -279,7 +273,7 @@ class TestClient(object):
|
||||
eq_(status["exitcode"], 0)
|
||||
|
||||
# compile error
|
||||
code=textwrap.dedent("""
|
||||
code = textwrap.dedent("""
|
||||
def foo(arg:
|
||||
print 'hello'
|
||||
""")
|
||||
@@ -288,31 +282,36 @@ class TestClient(object):
|
||||
eq_(status["exitcode"], 1)
|
||||
|
||||
# traceback in user code should be formatted nicely
|
||||
code=textwrap.dedent("""
|
||||
code = textwrap.dedent("""
|
||||
def foo(arg):
|
||||
raise Exception(arg)
|
||||
foo(123)
|
||||
""")
|
||||
status = do(code, [], False)
|
||||
cleaned_log = re.sub('File "[^"]*",', 'File "",', status["log"])
|
||||
eq_('Traceback (most recent call last):\n' +
|
||||
' File "<user-code>", line 4, in <module>\n' +
|
||||
' File "", line 4, in <module>\n' +
|
||||
' foo(123)\n' +
|
||||
' File "<user-code>", line 3, in foo\n' +
|
||||
' File "", line 3, in foo\n' +
|
||||
' raise Exception(arg)\n' +
|
||||
'Exception: 123\n', status["log"])
|
||||
'Exception: 123\n', cleaned_log)
|
||||
eq_(status["exitcode"], 1)
|
||||
|
||||
# argument handling (strings come in as unicode)
|
||||
code=textwrap.dedent("""
|
||||
code = textwrap.dedent("""
|
||||
import sys
|
||||
print sys.argv[1].encode('ascii'), sys.argv[2]
|
||||
sys.exit(0) # also test raising SystemExit
|
||||
""")
|
||||
status = do(code, ["hello", 123], False)
|
||||
with assert_raises(ClientError) as e:
|
||||
do(code, ["hello", 123], False)
|
||||
in_("400 Bad Request", str(e.exception))
|
||||
status = do(code, ["hello", "123"], False)
|
||||
eq_(status["log"], "hello 123\n")
|
||||
eq_(status["exitcode"], 0)
|
||||
|
||||
# try killing a long-running process
|
||||
code=textwrap.dedent("""
|
||||
code = textwrap.dedent("""
|
||||
import time
|
||||
print 'hello'
|
||||
time.sleep(60)
|
||||
@@ -321,3 +320,14 @@ class TestClient(object):
|
||||
status = do(code, [], True)
|
||||
eq_(status["log"], "hello\n")
|
||||
ne_(status["exitcode"], 0)
|
||||
|
||||
def test_client_08_bad_types(self):
|
||||
client = HTTPClient(baseurl = testurl, post_json = True)
|
||||
|
||||
with assert_raises(ClientError) as e:
|
||||
client.post("run/code", { "code": "asdf", "args": "qwer" })
|
||||
in_("must be a list", str(e.exception))
|
||||
|
||||
with assert_raises(ClientError) as e:
|
||||
client.post("run/command", { "argv": "asdf" })
|
||||
in_("must be a list", str(e.exception))
|
Reference in New Issue
Block a user